The present disclosure relates to an adjustment apparatus for workstations, work tables, shelf systems and rack systems.
This section provides background information related to the present disclosure and is not necessarily prior art.
Workstations, work tables, shelf systems and rack systems are utilized in various industries, including food service, healthcare, manufacturing and retail industries, to name a few. Work tasks performed using workstations, work tables, shelf systems and rack systems can be a labor-intensive and require a worker to perform numerous manual tasks on a surface of a work table or workstation and/or utilize various shelves or racks. Accordingly, there is a need for an apparatus that enables a user to adjust a position of the surface and/or the shelf and/or the rack in order to, for example, maximize the efficiency and comfort of the individual while performing various manual tasks.
This section provides a general summary of the disclosure, and this section is not a comprehensive disclosure of its full scope or all of its features.
The present disclosure provides an adjustment apparatus including a release mechanism (or position release), a pawl coupled to the release mechanism and a sleeve including a plurality of slots. In one aspect of the disclosure, the plurality of slots is configured to receive a locking portion of the pawl, the sleeve is configured to be coupled to a support element (e.g., a leg or post) of a structure (e.g., a workstation, a work table, shelf system and/or a rack system) and while the release mechanism is activated the locking portion is configured to disengage from one of the plurality of slots and a height of a surface of the structure is configured to be adjusted. The surface of the structure is coupled to the apparatus via an end cap adapter.
In another aspect of the disclosure, the apparatus also includes a spring, coupled to the pawl and configured to compress in response to the release mechanism being activated. In still another aspect of the disclosure, the apparatus further includes a sleeve housing configured to encase at least one of a portion of the sleeve, a portion of the support element, and a portion of the pawl.
In still another aspect of the disclosure, an inner surface of the sleeve is coupled to an outer surface of the support element. In yet another aspect of the disclosure, each of the plurality of slots is defined by a rounded side and a straight side and the locking portion includes a rounded side and a straight side. Each of the plurality of slots is associated with a predefined height of the surface.
In another aspect of the disclosure, an outer surface of the sleeve includes a plurality of indicators and each of the plurality of indicators corresponds to a predefined height of the surface. In another aspect of the disclosure, the apparatus includes a sleeve housing having an opening and a position of the opening is associated with the height of the surface and one of the plurality of indicators. A height adjustment range of the structure is associated with the number of slots.
In a further aspect of the disclosure, the release mechanism is one of a release button and a release handle and is activated by being depressed and/or in response to an upward force that is applied to the surface.
In still another aspect of the disclosure, the apparatus includes a stop slot that is configured to prevent the height of the surface from being adjusted while the release mechanism is not activated. The stop slot is defined by a pair of parallel sides of the sleeve.
Further areas of applicability will become apparent from the description provided herein. The description and specific examples in this summary are intended for purposes of illustration only and are not intended to limit the scope of the present disclosure.
The drawings described herein are for illustrative purposes only of selected embodiments and not all possible implementations, and the drawings are not intended to limit the scope of the present disclosure.
Corresponding reference numerals indicate corresponding parts throughout the several views of the drawings.
Example embodiments will now be described more fully with reference to the accompanying drawings.
Height adjustment apparatuses for the work platforms or shelves of workstations, work tables, shelf systems and rack systems used in various industries, including foodservice, healthcare, manufacturing and retail industries, are disclosed below. In response to activating a height adjustment apparatus, a user can quickly and efficiently adjust a height of at least one work platform or shelf of a workstation, work table, shelf system and rack system, thereby improving the user's productivity and efficiency while performing various manual tasks.
With reference to
The workstation 100 may include a first work platform 102, a second work platform 104, and a third work platform 106. The first work platform 102 and the second work platform 104 are horizontally oriented platforms, and a user may place kitchen utensils, containers, storage vessels, and other apparatuses used in the food service industry on the first work platform 102 and the second work platform 104. As an example, the individual may place a container rack 107, which is configured to support at least one container (e.g., a food pan), on the second work platform 104.
The third work platform 106 may include a pair of horizontal support rails 114, a work surface 110 supported on the support rails 114, and one or more openings 112 created between the support rails 114. The work surface 110 may be a horizontal surface. Food items, utensils, ingredients, and/or other items may be placed on and manipulated on the work surface 110. As an example, the work surface 110 may be implemented by a cutting board or other similar apparatus. Furthermore, the user may adjust a position of the work surface 110 by moving the work surface along the pair of horizontal support rails 114 of the workstation 100, as illustrated in
The workstation 100 may also include a base 116 that is configured to support the first work platform 102, the second work platform 104, and the third work platform 106 at a desired height above the floor. The base 116 may include one or more legs 118 (e.g., vertical support members or posts) or and one or more casters 120. The legs 118 are vertical columns that are connected to the casters 120 and extend upward to support the first work platform 102, the second work platform 104, and the third work platform 106. As shown in
The casters 120 are connected to a bottom surface of each of the legs 118. The casters 120 are configured to enable the user to easily move the workstation 100 from a first location to a desired location. Specifically, the user may roll the workstation 100 on the casters 120 in order to move the workstation 100 from the first location to the desired location. Furthermore, the casters 120 may include a releasable locking mechanism that is configured to prevent the workstation 100 from moving, thereby preventing undesired movements of the workstation 100 once it is at the desired location.
The first work platform 102 and the second work platform 104 may be connected to the legs 118 via respective corner supports 122 of the first work platform 102 and the second work platform 104. As an example, the corner supports 122 may include an opening that is configured to receive the legs 118, thereby enabling the base 116 to support the first work platform 102 and the second work platform 104. A shape of the opening may correspond to the cross-sectional profile of the legs 118 (i.e., if the legs 118 have a circular cross-sectional profile, the opening may also be circular). While this embodiment illustrates the corner supports 122 as part of the first work platform 102 and the second work platform 104, in other embodiments, the corner supports 122 may be included as part of the legs 118.
The third work platform 106 may be connected to the legs 118 via a respective adjustment apparatus 124 (collectively referred to as adjustment apparatuses 124). Using at least one of the adjustment apparatuses 124, the user may adjust a height of the third work platform 106, as indicated by arrow 126. Furthermore, the adjustment apparatuses 124 may include an opening that is configured to receive the legs 118, thereby enabling the base 116 to support the third work platform 106. The adjustment apparatus 124 is described below in further detail with reference to
While
With reference to
With reference to
With reference to
Similar to the workstation 100 and the work tables 200, 210, 220, 230, 240, 250, 260 described above, the user may adjust a vertical position of at least one of the work platforms 106, 128 or shelves 134 using at least one adjustment apparatus 124 associated with the respective work platforms or shelves 134. As a specific example and as indicated by arrow 136, the user may move shelf 134-2 from its current position to a second position, as indicated by grayed-out shelf 138.
Referring now to
With reference to
In one embodiment and as shown in
As shown in
Referring now to
In other embodiments, the straight side 154A and rounded side 154B of the locking tab 154 may have other geometries. As an example, the straight side 154A may have a nonlinear geometry. As another example, the rounded side 154B may be implemented by different sides having various slopes. Likewise, the straight side 156A and the rounded side 156B defining the slot 156 may have alternative geometries that accommodate the geometry of the locking tab 154.
With reference again to
Furthermore, the user may raise the height of the surface (e.g., the third work platform 106 illustrated in
Additionally, the user may raise the height of the surface by applying the upward force on the surface while activating the release mechanism 150. As an example, once the release mechanism 150 is depressed, the user may apply the upward force to the surface (e.g., the third work platform 106 illustrated in
Each of the plurality of slots 156 may correspond to a predefined height, and a number of slots may indicate a height adjustment range of the corresponding surface. As an example and as shown in
When the height of the surface corresponds to the nominal position, the locking tab 154 may refrain from engaging with any of the slots 156. In order to provide structural support to the work surface while the locking tab 154 is disengaged from the slots 156, the leg insert 144 and the insert screw 145 may be configured to couple the leg 118 to the surface (e.g., the third work platform 106) and/or end cap adapter 140 at the nominal position.
With reference again to
With reference to
As illustrated in
Referring now to
Additionally and as illustrated in
In other embodiments, the adjustment apparatus 124 may include a stop pin (not shown) or other similar apparatus that is configured to prevent the user from inadvertently or purposefully removing the surface from the workstation 100, work table 200, or shelf system 300 while adjusting the height of the respective surface. As an example, the stop pin may be disposed within the leg sleeve 146 and/or the leg 118 in order to provide a preferred range of height adjustment for a surface or provide an upper and lower vertical adjustment limit for the surface.
While the above embodiments illustrate the adjustment apparatus 124 including the release mechanism 150 and being configured to adjust the height of the surface while engaging the release mechanism, in other embodiments, the workstation 100, work table 200, or shelf system 300 may include one or more actuators (not shown) that are configured to simultaneously engage at least one of the adjustment apparatuses 124. As an example, the workstation 100 may include an actuator (e.g., a bar) that is physically coupled to each of the release buttons 153 of the respective adjustment apparatuses 124 (i.e., the actuator is physically coupled to four (4) of the release buttons 153). Accordingly, activation of each of the release mechanisms 150 is initiated by actuating the actuator. As another example, the workstation 100 may include two actuators (2) that are each physically coupled to two (2) of the release buttons 153. Accordingly, activation of each of the release mechanisms 150 is initiated by actuating both of the actuators.
The foregoing description of the embodiments has been provided for purposes of illustration and description. It is not intended to be exhaustive or to limit the disclosure. Individual elements or features of a particular embodiment are generally not limited to that particular embodiment, but, where applicable, are interchangeable and can be used in a selected embodiment, even if not specifically shown or described. The same may also be varied in many ways. Such variations are not to be regarded as a departure from the disclosure, and all such modifications are intended to be included within the scope of the disclosure.
Although the terms first, second, third, etc. may be used herein to describe various elements, components, regions, layers and/or sections, these elements, components, regions, layers and/or sections should not be limited by these terms. These terms may be only used to distinguish one element, component, region, layer or section from another region, layer or section. Terms such as “first,” “second,” and other numerical terms when used herein do not imply a sequence or order unless clearly indicated by the context. Thus, a first element, component, region, layer or section discussed below could be termed a second element, component, region, layer or section without departing from the teachings of the example embodiments.
This application claims the benefit of U.S. Provisional Application No. 62/799,089, filed on Jan. 31, 2019. The entire disclosure of the above application is incorporated herein by reference.
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