Embodiments of the disclosed subject matter are directed to a container assembly and a system and a method thereof. In particular, embodiments of the disclosed subject matter can involve a container assembly comprised of a container circumscribed by a sleeve.
According to one or more embodiments of the disclosed subject matter, a containment system is provided. The containment system can comprise a container including: an upper wall portion, a lower wall portion, and a middle wall portion between the upper wall portion and the lower wall portion, where the middle wall portion has a surface geometry that includes a plurality of projections. The containment system can also comprise a sleeve including: an outer surface, an inner surface, a first end, and a second end opposite the first end. The inner surface of the sleeve can be fixedly coupled to at least one of the upper wall portion, the lower wall portion, and the middle wall portion, and the middle wall portion can have a rigidity greater than a rigidity of the sleeve.
Additionally, one or more embodiments of the disclosed subject matter can involve a method. The method can be comprised of providing a container having: an upper wall portion, a lower wall portion, and a middle wall portion between the upper wall portion and the lower wall portion, where the middle wall portion has a surface geometry that includes a plurality of projections. The method can also comprise providing a sleeve having: an outer surface, an inner surface, a first end, and a second end opposite the first end. The inner surface of the sleeve can be fixedly coupled to at least one of the upper wall portion, the lower wall portion, and the middle wall portion, and the middle wall portion can have a rigidity greater than a rigidity of the sleeve.
According to one or more embodiments of the disclosed subject matter a container assembly is provided. The container assembly can be comprised of a plastic container having: an upper wall portion, a lower wall portion, and a middle wall portion between the upper wall portion and the lower wall portion, where the middle well portion has a surface geometry that precludes receipt of a pre-printed pressure sensitive decoration and direct printing of a decoration, the surface geometry defining a plurality of projections. The container assembly can also comprise a plastic sleeve having an outer surface, an inner surface, a first open end, and a second end opposite the first open end. The plastic sleeve can surround the middle wall portion of the plastic container, wherein the inner surface of the plastic sleeve can be adjacent to at least one of the plurality of projections of the surface geometry of the middle wall portion and fixedly coupled to at least one of the upper wall portion at the first open end and the lower wall portion at the second end, and the middle wall portion can have a rigidity greater than a rigidity of the plastic sleeve.
Embodiments of the disclosed subject matter can also involve a containment system comprising: a blow molded plastic container configured to directly contain in an inner volume thereof a consumer product, the blow molded plastic container having: a shoulder portion, a base forming a bottom portion of the blow molded plastic container and configured to support the blow molded plastic container in an upright, standing position, on a standing surface, and at least one rigid, vertical sidewall between the shoulder portion and the base, with a surface geometry that precludes receipt of a pre-printed pressure sensitive decoration and direct printing of a decoration, the surface geometry defining a plurality of peaks and a plurality of valleys; and a semi-rigid plastic sleeve having a smooth outer surface, a smooth inner surface, a first open end, and a second open end opposite the first open end, the semi-rigid plastic sleeve surrounding said at least one rigid vertical wall such that the smooth inner surface of the semi-rigid plastic sleeve is fixed to the shoulder portion at the first open end and fixed to the base at the second open end, and in direct contact with the plurality of peaks, wherein the rigid vertical sidewall has a rigidity greater than that of the semi-rigid plastic sleeve, and wherein the semi-rigid plastic sleeve is transparent, semi-transparent, or opaque, except at a decoration area having a decoration thereon.
Embodiments can also include methods of providing, making, and/or using containers, containment assemblies, and containment systems, or portions thereof, according to one or more embodiments of the disclosed subject matter.
The preceding summary is to provide an understanding of some aspects of the disclosure. As will be appreciated, other embodiments of the disclosure are possible utilizing, alone or in combination, one or more of the features set forth above or described in detail below. Also, while the disclosure is presented in terms of exemplary embodiments, it should be appreciated that individual aspects of the disclosure can be separately claimed.
The accompanying drawings, which are incorporated in and constitute a part of the specification, are illustrative of one or more embodiments of the disclosed subject matter, and, together with the description, explain various embodiments of the disclosed subject matter. Further, the accompanying drawings have not necessarily been drawn to scale, and any values or dimensions in the accompanying drawings are for illustration purposes only and may or may not represent actual or preferred values or dimensions. Where applicable, some or all select features may not be illustrated to assist in the description and understanding of underlying features.
The description set forth below in connection with the appended drawings is intended as a description of various embodiments of the described subject matter and is not necessarily intended to represent the only embodiment(s). In certain instances, the description includes specific details for the purpose of providing an understanding of the described subject matter. However, it will be apparent to those skilled in the art that embodiments may be practiced without these specific details. In some instances, structures and components may be shown in block diagram form in order to avoid obscuring the concepts of the described subject matter. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or the like parts.
Any reference in the specification to “one embodiment” or “an embodiment” means that a particular feature, structure, characteristic, operation, or function described in connection with an embodiment is included in at least one embodiment. Thus, any appearance of the phrases “in one embodiment” or “in an embodiment” in the specification is not necessarily referring to the same embodiment. Further, the particular features, structures, characteristics, operations, or functions may be combined in any suitable manner in one or more embodiments, and it is intended that embodiments of the described subject matter can and do cover modifications and variations of the described embodiments.
It must also be noted that, as used in the specification, appended claims and abstract, the singular forms “a,” “an,” and “the” include plural referents unless the context clearly dictates otherwise. That is, unless clearly specified otherwise, as used herein the words “a” and “an” and the like carry the meaning of “one or more” or “at least one.” The phrases “at least one,” “one or more,” “or,” and “and/or” are open-ended expressions that can be both conjunctive and disjunctive in operation. For example, each of the expressions “at least one of A, B and C,” “at least one of A, B, or C,” “one or more of A, B, and C,” “one or more of A, B, or C,” “A, B, and/or C,” and “A, B, or C” can mean A alone, B alone, C alone, A and B together, A and C together, B and C together, or A, B and C together. It is also to be noted that the terms “comprising,” “including,” and “having” can be used interchangeably.
It is to be understood that terms such as “left,” “right,” “top,” “bottom,” “front,” “rear,” “side,” “height,” “length,” “width,” “upper,” “lower,” “interior,” “exterior,” “inner,” “outer,” and the like that may be used herein, merely describe points of reference and do not necessarily limit embodiments of the described subject matter to any particular orientation or configuration. Furthermore, terms such as “first,” “second,” “third,” etc. merely identify one of a number of portions, components, points of reference, operations and/or functions as described herein, and likewise do not necessarily limit embodiments of the described subject matter to any particular configuration or orientation.
Generally, embodiments of the disclosed subject matter involve a container assembly and a system and a method thereof. In particular, embodiments of the disclosed subject matter involve a container assembly comprised of a container circumscribed by a sleeve.
Generally, container assemblies according to embodiments of the disclosed subject matter can provide a means by which to decorate or add information to a container (e.g., bottle), particularly in a case where the container has a sidewall (or sidewalls) with surface geometry that may prevent or make difficult the application of either a pre-printed pressure sensitive label or direct printing. Non-limiting examples of such surface geometry for the sidewall(s) of the container include compound, undulated, waved, bubbled, rippled, pillowed, or ribbed surfaces. In particular, in embodiments of the disclosed subject matter, a sleeve can have thereon a decoration or added information associated with the underlying container and be provided over the sidewall(s) of the underlying container with the surface geometry. The sleeve can be supported by the underlying container and may have a rigidity less than a rigidity of the sidewall(s) with the surface geometry of the underlying container.
Embodiments of the disclosed subject matter can provide one or more of the following benefits: the sleeve can be applicable to a wide range of surface treatments and highly undulated compound surfaces; the sleeve can add another dimension to current 2-D decoration with 2-D to 3-D registration; the sleeve can provide the option for adding a new tactical feel to an underlying container; the sleeve can accept advanced printing methods, including hot stamping and tactical ink printing; the sleeve can allow graphics to extend 360 degrees around the underlying container; and can increase container volume perception and shelf impression.
Generally, according to embodiments of the disclosed subject matter, the sleeve can be fixedly coupled to the underlying container at one or more portions of the underlying container. Optionally, the sleeve may be adjacent to (which may include in contact with or not in contact with) portions of the surface geometry of the sidewall(s) of the underlying container. Thus, in one or more embodiments, at least the surface geometry of the sidewall(s) of the underlying container may provide superficial contact to the sleeve, particularly when a user handles the container assembly by way of the sleeve. For example, the rigidity of the sleeve may be such that the sleeve elastically deforms inward so as to contact portions of the surface geometry when the user applies a squeezing force (e.g., from their hand) to the sleeve to handle the container assembly. The sleeve may return to its original form when the squeezing force is removed.
Turning to the figures,
The container 120 may be made of plastic, such as high density polyethylene (HDPE), polypropylene (PP), and polyethylene terephthalate (PET). Further, the container 120 may be formed by blow molding, for instance, extrusion or injection blow molding. The sleeve 150 may be made of plastic, such as a semi-rigid plastic. Thus, the sleeve 150, due to the type and configuration of the plastic, may be less rigid than some or all of the container 120. Further, discussed in more detail below, the sleeve 150 may be formed from a flat sheet of the semi-rigid plastic.
The container 120 can include an upper wall portion 122, a lower wall portion 125, and a middle wall portion 130 between the upper wall portion 122 and the lower wall portion 125. The upper wall portion 122, the lower wall portion 125, and the middle wall portion 130 may form one or more sidewalls of the container 120.
The upper wall portion 122 may have a shoulder 123 and a neck 124 that defines an opening to receive and dispense product contained in an inner volume 121 of the container 120. The neck 124 may have an interface, such as threads, to removably couple thereto a cap or dispensing apparatus (not shown). The lower wall portion 125 may form base 126, which may be configured to support the container 120 in an upright, standing position on a standing surface (not shown).
The middle wall portion 130 may extend vertically or substantially vertically between the upper wall portion 122 and the lower wall portion 125. The middle wall portion 130 can have a surface geometry that includes a plurality of projections or raised portions 132 and non-raised portions 134. Thus, embodiments of the disclosed subject matter can have a middle wall portion with a surface geometry that defines peaks and valleys. Such surface geometry may prohibit or preclude receipt of a pre-printed pressure sensitive decoration and/or direct printing of a decoration. As used herein, decoration may mean or include a label. Further, the middle wall portion according to embodiments of the disclosed subject matter, such as middle wall portion 130, may not have a relatively flat decoration panel configured to receive a pre-printed pressure sensitive decoration and/or direct printing of a decoration.
The sleeve 150 can include an outer surface 152, an inner surface 154, a first end 156, and a second end 158 opposite the first end 156. The sleeve 150 may define one or more sidewalls. For instance,
The sleeve 150 may have a thicknesses less than a thickness of some or all of the container 120, such as the middle wall portion 130, each of the upper wall portion 122 and the lower wall portion 125, or each of the upper wall portion 122, the lower wall portion 125, and the middle wall portion 130. Thus, the sleeve 150, due its thickness in addition to or in the alternative of its plastic composition, may be less rigid than some or all of the container 120.
In embodiments of the disclosed subject matter, one or both of the first end 156 and the second end 158 may be open.
The bottom end 158 of the sleeve 150 may be flush with the base 126 of the container 120, or, alternatively, the bottom end 158 of the sleeve 150 may be at a height above the base 126, such as shown in
The inner surface 154 and/or the outer surface 152 of the sleeve 150 can be smooth. For instance, the inner surface 154 and/or the outer surface 152 of the sleeve 150 can be configured to receive a pre-printed pressure sensitive decoration and/or direct printing of a decoration. In one or more embodiments, such decoration may be applied to the sleeve 150 prior to the sleeve being provided around the container 120.
The sleeve 150 may be transparent, semi-transparent, or opaque, or a combination thereof. For example, the sleeve 150 may be transparent or semi-transparent, except at an area having a decoration. Such area may be semi-transparent or opaque, or a combination of the two.
The sleeve 150 can be provided so as to circumscribe the container 120. For example,
The inner surface 154 of the sleeve 150 may be fixedly coupled to one, some, or all of the upper wall portion 122, the lower wall portion 125, and the middle wall portion 130.
However, the inner surface 154 of the sleeve 150 may be adjacent to the middle wall portion 130, particularly some or all of the projections 132. In this context, adjacent to can mean that the inner surface 154 of the sleeve 150 contacts some or all of the projections 132 in a normal state. Alternatively, adjacent to can mean that the inner surface 154 of the sleeve 150 does not contact any of the projections 132 in the normal state, but an inward force may be applied to the outer surface 152 of the sleeve 150 to cause the inner surface 154 to come into contact with one or more of the projections 132 in a handled state. The handled state may occur when a user grabs the container assembly 100 by squeezing the sleeve 150, particularly the outer surface 152 of the sleeve 150. Thus, one, some, or all of the projections 132 that contact the inner surface 154 of the sleeve 150 may provide superficial contact with the container 120 in the normal state and/or the handled state.
The inner surface 154 of the sleeve 150 may be fixedly coupled to the container 120 via diametral interference, i.e., press or friction fit, or via an adhesive, heat bonding, snap or bead fit, or notch-fit via a notch and notch receptacle configuration. Optionally, the sleeve 150 and container 120 may be configured such that the sleeve 150 can be introduced for fixedly coupling to the container 120 in only one direction, such as sliding the sleeve 150 over the container 120 from the top or from the bottom of the container 120. Alternatively, the sleeve 150 may be slid onto the container 120 from either direction.
The container 220 and the sleeve 250 can be similar to as discussed above for
Though
In the case of the containment system 200 of
Of course, the sleeve 250 may be adjacent to the middle wall portion 230, particularly some or all of the raised portions 232. In this context, adjacent to can mean that the sleeve 250 contacts some or all of the raised portions 232 in a normal state. Alternatively, adjacent to can mean that the sleeve 250 does not contact any of the raised portions 232 in the normal state, but an inward force may be applied to the sleeve 250 to cause the sleeve 250 to come into contact with one or more of the raised portions 232 in a handled state. The handled state may occur when a user grabs the containment system 200 by squeezing the sleeve 250. Thus, one, some, or all of the raised portions 232 that contact the sleeve 250 may provide superficial contact with the container 220 in the normal state and/or the handled state. The sleeve 250 may return to a pre-inward force position when the predetermined amount of inward force is removed.
The container 320 and the sleeve 350 can be similar to as discussed above for
For example, the container 320 can have a middle wall portion 330 with a surface geometry that includes a plurality of projections or raised portions 332 and non-raised portions 334. Such surface geometry may prohibit or preclude receipt of a pre-printed pressure sensitive decoration and/or direct printing of a decoration. Further, the middle wall portion 330 may not have a relatively flat decoration panel configured to receive a pre-printed pressure sensitive decoration and/or direct printing of a decoration.
Though
In the case of the containment system 300 of
The sleeve 350 may be adjacent to the middle wall portion 330, particularly some or all of the raised portions 332. In this context, adjacent to can mean that the sleeve 350 contacts some or all of the raised portions 332 in a normal state. Alternatively, adjacent to can mean that the sleeve 350 does not contact any of the raised portions 332 in the normal state, but an inward force may be applied to the sleeve 350 to cause the sleeve 350 to come into contact with one or more of the raised portions 332 in a handled state. The handled state may occur when a user grabs the containment system 300 by squeezing the sleeve 350. Thus, one, some, or all of the raised portions 332 that contact the sleeve 350 may provide superficial contact with the container 320 in the normal state and/or the handled state. The sleeve 350 may return to a pre-inward force position when the predetermined amount of inward force is removed.
The container 520 and the sleeve 550 can be similar to as discussed above for
The sleeve 550 of
In the case of the containment system 500 of
The sleeve 550 may be adjacent to the middle wall portion 530, particularly some or all of the raised portions 532. Adjacent to can mean that the sleeve 550 contacts some or all of the raised portions 532 in a normal state. Alternatively, adjacent to can mean that the sleeve 550 does not contact any of the raised portions 532 in the normal state, but an inward force may be applied to the sleeve 550 to cause the sleeve 550 to come into contact with one or more of the raised portions 532 in a handled state. The handled state may occur when a user grabs the containment system 500 by squeezing the sleeve 550. Thus, one, some, or all of the raised portions 532 that contact the sleeve 550 may provide superficial contact with the container 520 in the normal state and/or the handled state. The sleeve 550 may return to a pre-inward force position when the predetermined amount of inward force is removed.
Generally, the container 720 in
The method 900 can include a block 902 whereby a container according to embodiments of the disclosed subject matter is provided. Block 902 can represent the operation of making such container and/or providing or using such container, including in combination with a sleeve according to embodiments of the disclosed subject matter. The method 900 can also include a block 904 whereby a sleeve according to embodiments of the disclosed subject matter is provided. Block 904 can represent the operation of making such sleeve and/or providing or using such sleeve, including in combination with the container provided at block 902. Also
As shown in
A size of the curled sheet 1002 may need to be adjusted. For example, as shown in
As shown in
Embodiments of the disclosed subject matter may also be as set forth according to the parentheticals in the following paragraphs.
(1) A containment system comprising: a blow molded plastic container configured to directly contain in an inner volume thereof a consumer product, the blow molded plastic container having: a shoulder portion, a base forming a bottom portion of the blow molded plastic container and configured to support the blow molded plastic container in an upright, standing position, on a standing surface, and at least one rigid, vertical sidewall between the shoulder portion and the base, with a surface geometry that precludes receipt of a pre-printed pressure sensitive decoration and direct printing of a decoration, the surface geometry defining a plurality of peaks and a plurality of valleys; and a semi-rigid plastic sleeve having a smooth outer surface, a smooth inner surface, a first open end, and a second open end opposite the first open end, the semi-rigid plastic sleeve surrounding said at least one rigid vertical wall such that the smooth inner surface of the semi-rigid plastic sleeve is fixed to the shoulder portion at the first open end and fixed to the base at the second open end, and in direct contact with the plurality of peaks, wherein the rigid vertical sidewall has a rigidity greater than that of the semi-rigid plastic sleeve, and wherein the semi-rigid plastic sleeve is transparent, semi-transparent, or opaque, except at a decoration area having a decoration thereon.
(2) The containment system according to (1), wherein the sleeve is cylindrical.
(3) The containment system according to (1) or (2), wherein the sleeve has a plurality of sidewalls.
(4) The containment system according to any one of (1) to (3), wherein the rigid vertical sidewall has a thickness greater than that of the semi-rigid plastic sleeve.
(5) The containment system according to any one of (1) to (4), wherein said at least one rigid vertical sidewall includes a plurality of rigid vertical sidewalls.
(6) The containment system according to any one of (1) to (5), wherein the plurality of rigid vertical sidewalls is three or more vertical sidewalls.
(7) The containment system according to any one of (1) to (6), wherein a total number of the sidewall or sidewalls of the sleeve matches a total number of the rigid vertical sidewall or sidewalls of the blow molded plastic container.
(8) The containment system according to any one of (1) to (7), wherein a total number of the sidewall or sidewalls of the sleeve is less than a total number of rigid vertical sidewalls of the blow molded plastic container.
(9) The containment system according to any one of (1) to (8), wherein the second open end of the sleeve is flush with the bottom portion of the base of the blow molded plastic container so as to support the sleeve in the upright standing position on the standing surface.
(10) The containment system according to any one of (1) to (9), wherein the second open end of the sleeve is at a height above the bottom portion of the base of the blow molded plastic container, and configured such that the second open end of the sleeve does not contact the standing surface when the bottom portion of the base of the blow molded plastic container supports the blow molded plastic container in the upright standing position on the standing surface.
(11) The containment system according to any one of (1) to (10), wherein the sleeve is fixed to the shoulder portion at the first open end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(12) The containment system according to any one of (1) to (11), wherein the sleeve is fixed to the base at the second open end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(13) The containment system according to any one of (1) to (12), wherein the sleeve is formed, from a flat sheet of semi-rigid plastic, such that opposite end portions of the semi-rigid plastic sheet are adjacent to each other.
(14) The containment system according to any one of (1) to (13), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled to each other.
(15) The containment system according to any one of (1) to (14), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled together via one of heat bonding and an adhesive.
(16) A container assembly comprising: a plastic container having: an upper wall portion, a lower wall portion, and a middle wall portion between the upper wall portion and the lower wall portion, the middle well portion having a surface geometry that precludes receipt of a pre-printed pressure sensitive decoration and direct printing of a decoration, the surface geometry defining a plurality of projections; and a plastic sleeve having an outer surface, an inner surface, a first open end, and a second end opposite the first open end, wherein the plastic sleeve surrounds the middle wall portion of the plastic container, wherein the inner surface of the plastic sleeve is adjacent to at least one of the plurality of projections of the surface geometry of the middle wall portion and fixedly coupled to at least one of the upper wall portion at the first open end and the lower wall portion at the second end, and wherein the middle wall portion has a rigidity greater than a rigidity of the plastic sleeve.
(17) The container assembly according to (16), wherein the inner surface of the plastic sleeve contacts at least one of the plurality of projections of the surface geometry of the middle wall portion.
(18) The container assembly according to (16) or (17), wherein the inner surface of the plastic sleeve contacts all of the plurality of projections of the surface geometry of the middle wall portion.
(19) The container assembly according to any one of (16) to (18), wherein the inner surface of the plastic sleeve contacts said at least one of the plurality of projections of the surface geometry of the middle wall portion, but is not fixedly coupled to each said at least one of the plurality of projections.
(20) The container assembly according to any one of (16) to (19), wherein the inner surface of the plastic sleeve does not contact any of the plurality of projections of the surface geometry of the middle wall portion.
(21) The container assembly according to any one of (16) to (20), wherein the rigidity of the plastic sleeve is such that a predetermined amount of inward force applied to the plastic sleeve causes the inner surface of the plastic sleeve to contact at least one of the plurality of projections of the surface geometry of the middle wall portion, and such that the inner surface of the plastic sleeve returns to a pre-inward force position when the predetermined amount of inward force is removed.
(22) The container assembly according to any one of (16) to (21), wherein the inner surface of the plastic sleeve is fixedly coupled to the upper wall portion at the first open end and the lower wall portion at the second end.
(23) The container assembly according to any one of (16) to (22), wherein the inner surface of the plastic sleeve is fixedly coupled to the upper wall portion at the first open end and the lower wall portion at the second end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(24) The container assembly according to any one of (16) to (23), wherein the inner surface of the plastic sleeve is fixedly coupled to the upper wall portion at the first open end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration, and wherein the inner surface of the plastic sleeve is fixedly coupled to the lower wall portion at the second end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(25) The container assembly according to any one of (16) to (24), wherein the inner surface of the plastic sleeve is fixedly coupled to one of the upper wall portion at the first open end and the lower wall portion at the second end, and wherein the inner surface of the plastic sleeve is not fixedly coupled to the other of the upper wall portion at the first open end and the lower wall portion at the second end.
(26) The container assembly according to any one of (16) to (25), wherein the second end of the plastic sleeve is closed.
(27) The container assembly according to any one of (16) to (26), wherein the second end of the plastic sleeve is open.
(28) The container assembly according to any one of (16) to (27), wherein the plastic sleeve is cylindrical.
(29) The container assembly according to any one of (16) to (28), wherein the plastic sleeve has a plurality of sidewalls.
(30) The container assembly according to any one of (16) to (29), wherein the plurality of sidewalls is three or more sidewalls.
(31) The container assembly according to any one of (16) to (31), wherein the middle wall portion is comprised of a plurality of vertical sidewalls.
(32) The container assembly according to any one of (16) to (32), wherein the plurality of vertical sidewalls is three or more vertical sidewalls.
(33) The container assembly according to any one of (16) to (32), wherein a total number of the sidewall or sidewalls of the plastic sleeve matches a total number of sidewall or sidewalls of the middle wall portion of the plastic container.
(34) The container assembly according to any one of (16) to (33), wherein a total number of the sidewall or sidewalls of the sleeve is less than a number of rigid vertical sidewalls of the plastic container.
(35) The container assembly according to any one of (16) to (34), wherein the second end of the plastic sleeve is flush with the lower wall portion of the plastic container such that the second end of the plastic sleeve defines a surface on which to stand the container assembly on a standing surface.
(36) The container assembly according to any one of (16) to (35), wherein the second end of the plastic sleeve defines a surface on which to stand the container assembly on a standing surface.
(37) The container assembly according to any one of (16) to (36), wherein the second end of the plastic sleeve is at a height above a bottom of the lower wall portion of the plastic container, and configured such that the second end of the plastic sleeve does not contact a standing surface when the bottom of the lower wall portion of the plastic container supports the plastic container in an upright standing position on the standing surface.
(38) The container assembly according to any one of (16) to (37), wherein the plastic sleeve is formed, from a flat sheet of semi-rigid plastic, such that opposite end portions of the semi-rigid plastic sheet are adjacent each other.
(39) The container assembly according to any one of (16) to (38), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled to each other.
(40) The containment assembly according to any one of (16) to (39), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled together via one of heat bonding and an adhesive.
(41) The containment assembly according to any one of (16) to (40), wherein the middle wall portion has a maximum thickness greater than that of the plastic sleeve.
(42) A containment system comprising: a container including: an upper wall portion, a lower wall portion, and a middle wall portion between the upper wall portion and the lower wall portion, the middle wall portion having a surface geometry that includes a plurality of projections; and a sleeve including: an outer surface, an inner surface, a first end, and a second end opposite the first end, wherein the inner surface of the sleeve is fixedly coupled to at least one of the upper wall portion, the lower wall portion, and the middle wall portion, and wherein the middle wall portion has a rigidity greater than a rigidity of the sleeve.
(43) The containment system according to (42), wherein the inner surface of the sleeve is fixedly coupled to at least two of the upper wall portion, the lower wall portion, and the middle wall portion.
(44) The containment system according to (42) or (43), wherein the inner surface of the sleeve is fixedly coupled to all of the upper wall portion, the lower wall portion, and the middle wall portion.
(45) The containment system according to any one of (42) to (44), wherein the surface geometry precludes receipt of a pre-printed pressure sensitive decoration and direct printing of a decoration.
(46) The containment system according to any one of (42) to (45), wherein the first end of the sleeve is open and the second end of the sleeve is one of open or closed.
(47) The containment system according to any one of (42) to (46), wherein the sleeve is plastic.
(48) The containment system according to any one of (42) to (47), wherein the container is plastic.
(49) The containment system according to any one of (42) to (48), wherein the inner surface of the sleeve is adjacent to at least one of the plurality of projections of the surface geometry of the middle wall portion.
(50) The containment system according to any one of (42) to (49), wherein the inner surface of the sleeve contacts at least one of the plurality of projections of the surface geometry of the middle wall portion.
(51) The containment system according to any one of (42) to (50), wherein the inner surface of the sleeve contacts all of the plurality of projections of the surface geometry of the middle wall portion.
(52) The containment system according to any one of (42) to (51), wherein the inner surface of the sleeve contacts said at least one of the plurality of projections of the surface geometry of the middle wall portion, but is not fixedly coupled to each said at least one of the plurality of projections.
(53) The containment system according to any one of (42) to (52), wherein the inner surface of the sleeve does not contact any of the plurality of projections of the surface geometry of the middle wall portion.
(54) The containment system according to any one of (42) to (53), wherein the rigidity of the sleeve is such that a predetermined amount of inward force applied to the sleeve causes the inner surface of the sleeve to contact said at least one of the plurality of projections of the surface geometry of the middle wall portion, and such that the inner surface of the sleeve returns to a pre-inward force position when the predetermined amount of inward force is removed.
(55) The containment system according to any one of (42) to (54), wherein the inner surface of the sleeve is fixedly coupled to the upper wall portion at the first end, the lower wall portion at the second end, and/or the middle wall portion via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(56) The containment system according to any one of (42) to (55), wherein the inner surface of the sleeve is fixedly coupled to the upper wall portion at the first end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration, and wherein the inner surface of the sleeve is fixedly coupled to the lower wall portion at the second end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(57) The containment system according to any one of (42) to (56), wherein the inner surface of the sleeve is fixedly coupled to the middle wall portion.
(58) The containment system according to any one of (42) to (57), wherein the inner surface of the sleeve is fixedly coupled to one of the upper wall portion at the first end and the lower wall portion at the second end, and wherein the inner surface of the sleeve is not fixedly coupled to the other of the upper wall portion at the first end and the lower wall portion at the second end.
(59) The containment system according to any one of (42) to (58), wherein the sleeve is cylindrical or has a plurality of sidewalls.
(60) The containment system according to any one of (42) to (59), wherein the plurality of sidewalls is three or more sidewalls.
(61) The containment system according to any one of (42) to (60), wherein the middle wall portion is comprised of a plurality of vertical sidewalls.
(62) The containment system according to any one of (42) to (61), wherein the plurality of vertical sidewalls is three or more vertical sidewalls.
(63) The containment system according to any one of (42) to (62), wherein a total number of the sidewall or sidewalls of the sleeve matches a total number of sidewall or sidewalls of the middle wall portion of the container.
(64) The containment system according to any one of (42) to (63), wherein a total number of the sidewall or sidewalls of the sleeve is less than a number of rigid vertical sidewalls of the container.
(65) The containment system according to any one of (42) to (64), wherein the second end of the sleeve is flush with the lower wall portion of the container such that the second end of the sleeve defines a surface on which to stand on a standing surface.
(66) The containment system according to any one of (42) to (65), wherein the second end of the sleeve defines a surface on which to stand on a standing surface.
(67) The containment system according to any one of (42) to (66), wherein the second end of the sleeve is at a height above a bottom of the lower wall portion of the container, and configured such that the second end of the sleeve does not contact a standing surface when the bottom of the lower wall portion of the container supports the container in an upright standing position on the standing surface.
(68) The containment system according to any one of (42) to (67), wherein the sleeve is formed, from a flat sheet of semi-rigid plastic, such that opposite end portions of the semi-rigid plastic sheet are adjacent each other.
(69) The containment system according to any one of (42) to (68), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled to each other.
(70) The containment system according to any one of (42) to (69), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled together via one of heat bonding and an adhesive.
(71) The containment system according to any one of (42) to (70), wherein the sleeve is one of clear, semi-transparent, or opaque.
(72) A method comprising: providing a container having: an upper wall portion, a lower wall portion, and a middle wall portion between the upper wall portion and the lower wall portion, the middle wall portion having a surface geometry that includes a plurality of projections; providing a sleeve having: an outer surface, an inner surface, a first end, and a second end opposite the first end, wherein the inner surface of the sleeve is fixedly coupled to at least one of the upper wall portion, the lower wall portion, and the middle wall portion, and wherein the middle wall portion has a rigidity greater than a rigidity of the sleeve.
(73) The method according to (72), further comprising: forming the sleeve, said forming including, from a flat sheet of semi-rigid plastic, forming the flat sheet such that opposite end portions of the semi-rigid plastic sheet are adjacent each other.
(74) The method according to (72) or (73), wherein said forming the sleeve includes fixedly coupling open end portions of the semi-rigid plastic sheet to each other.
(75) The method according to any one of (72) to (74), wherein the opposite end portions of the semi-rigid plastic sheet are fixedly coupled together via one of heat bonding and an adhesive.
(76) The method according to any one of (72) to (75), wherein the inner surface of the sleeve is fixedly coupled to at least two of the upper wall portion, the lower wall portion, and the middle wall portion.
(77) The method according to any one of (72) to (76), wherein the inner surface of the sleeve is fixedly coupled to all of the upper wall portion, the lower wall portion, and the middle wall portion.
(78) The method according to any one of (72) to (77), wherein the surface geometry precludes receipt of a pre-printed pressure sensitive decoration and direct printing of a decoration.
(79) The method according to any one of (72) to (78), wherein the first end of the sleeve is open and the second end of the sleeve is one of open or closed.
(80) The method according to any one of (72) to (79), wherein the sleeve is plastic.
(81) The method according to any one of (72) to (80), wherein the container is plastic.
(82) The method according to any one of (72) to (81), wherein the inner surface of the sleeve is adjacent to at least one of the plurality of projections of the surface geometry of the middle wall portion.
(83) The method according to any one of (72) to (82), wherein the inner surface of the sleeve contacts at least one of the plurality of projections of the surface geometry of the middle wall portion.
(84) The method according to any one of (72) to (83), wherein the inner surface of the sleeve contacts all of the plurality of projections of the surface geometry of the middle wall portion.
(85) The method according to any one of (72) to (84), wherein the inner surface of the sleeve contacts said at least one of the plurality of projections of the surface geometry of the middle wall portion, but is not fixedly coupled to each said at least one of the plurality of projections.
(86) The method according to any one of (72) to (85), wherein the inner surface of the sleeve does not contact any of the plurality of projections of the surface geometry of the middle wall portion in an initial state of the sleeve.
(87) The method according to any one of (72) to (86), wherein the rigidity of the sleeve is such that a predetermined amount of inward force applied to the sleeve when the sleeve is in the initial state causes the inner surface of the sleeve to contact said at least one of the plurality of projections of the surface geometry of the middle wall portion, and such that the inner surface of the sleeve returns to a pre-inward force position when the predetermined amount of inward force is removed.
(88) The method according to any one of (72) to (87), wherein the inner surface of the sleeve is fixedly coupled to the upper wall portion at the first end, the lower wall portion at the second end, and/or the middle wall portion via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(89) The method according to any one of (72) to (88), wherein the inner surface of the sleeve is fixedly coupled to the upper wall portion at the first end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration, and wherein the inner surface of the sleeve is fixedly coupled to the lower wall portion at the second end via one of friction fit, an adhesive, and notch-fit via a notch and notch receptacle configuration.
(90) The method according to any one of (72) to (89), wherein the inner surface of the sleeve is fixedly coupled to one of the upper wall portion at the first end and the lower wall portion at the second end, and wherein the inner surface of the sleeve is not fixedly coupled to the other of the upper wall portion at the first end and the lower wall portion at the second end.
(91) The method according to any one of (72) to (90), wherein the sleeve is cylindrical.
(92) The method according to any one of (72) to (91), wherein the sleeve has a plurality of sidewalls.
(93) The method according to any one of (72) to (92), wherein the plurality of sidewalls is three or more sidewalls.
(94) The method according to any one of (72) to (93), wherein the middle wall portion is comprised of a plurality of vertical sidewalls.
(95) The method according to any one of (72) to (94), wherein the plurality of vertical sidewalls is three or more vertical sidewalls.
(96) The method according to any one of (72) to (95), wherein a total number of the sidewall or sidewalls of the sleeve matches a total number of sidewall or sidewalls of the middle wall portion of the container.
(97) The method according to any one of (72) to (96), wherein a total number of the sidewall or sidewalls of the sleeve is less than a number of rigid vertical sidewalls of the container.
(98) The method according to any one of (72) to (97), wherein the second end of the sleeve is flush with the lower wall portion of the container such that the second end of the sleeve defines a surface on which to stand on a standing surface.
(99) The method according to any one of (72) to (98), wherein the second end of the sleeve defines a surface on which to stand on a standing surface.
(100) The method according to any one of (72) to (99), wherein the second end of the sleeve is at a height above a bottom of the lower wall portion of the container, and configured such that the second end of the sleeve does not contact a standing surface when the bottom of the lower wall portion of the container supports the container in an upright standing position on the standing surface.
(101) The method according to any one of (72) to (100), wherein the sleeve is one of clear, semi-transparent, or opaque.
(102) The method according to any one of (72) to (101), wherein a maximum thickness of the sleeve is less than a maximum thickness of the middle wall portion, the upper wall portion, and/or the lower wall portion.
Having now described embodiments of the disclosed subject matter, it should be apparent to those skilled in the art that the foregoing is merely illustrative and not limiting, having been presented by way of example only. Thus, although particular configurations have been discussed and illustrated herein, other configurations can be and are also employed. Further, numerous modifications and other embodiments (e.g., combinations, rearrangements, etc.) are enabled by the present disclosure and are contemplated as falling within the scope of the disclosed subject matter and any equivalents thereto. Features of the disclosed embodiments can be combined, rearranged, omitted, etc., within the scope of described subject matter to produce additional embodiments. Furthermore, certain features may sometimes be used to advantage without a corresponding use of other features. Accordingly, Applicant intends to embrace all such alternatives, modifications, equivalents, and variations that are within the spirit and scope of the present disclosure. Further, it is therefore to be understood that within the scope of the appended claims, the disclosure may be practiced otherwise than as specifically described herein.
This application is based upon and claims benefit of priority from U.S. Provisional Patent Application 62/696,691, filed on Jul. 11, 2018, the entire contents of which are incorporated herein by reference.
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Entry |
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The International Search Report and Written Opinion of the International Searching Authority dated Oct. 4, 2019 in PCT/US19/41436 filed Jul. 11, 2019, citing documents AA-AE and AO, 10 pages. |
Number | Date | Country | |
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20200017257 A1 | Jan 2020 | US |
Number | Date | Country | |
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62696691 | Jul 2018 | US |