This disclosure relates to a transport assembly and a method of transporting packaging units.
In industrial contexts, products are generally transported and sold in packaging units. Packaging units can include vials, cartridges, ampoules, bottles, or pre-fillable syringes. In many industries, these different types of packaging units are collectively known as “primary packaging,” i.e., the packaging that comes into direct contact with an end product. The end product may be a food product, a cosmetic product, or a pharmaceutical product. Primary packaging can undergo numerous manufacturing processes before being filled with the end product. During these processes, primary packaging is often processed in batches.
US 2017/0247132 A1 describes a supporting structure that comprises a box-shaped upper part and a box-shaped bottom part. The upper part has a flat rectangular bottom, two side walls, and a front and rear side wall that each protrude vertically from the bottom. The bottom part has a corresponding shape and comprises a flat rectangular bottom and two side walls, each of which projects perpendicularly from the bottom. The front and rear side walls of the upper part can be folded down and then forms a common plane together with the bottom, and are folded-up again for forming the box-shaped bottom part.
Aspects of the present disclosure aim to alleviate problems associated with known transport assemblies.
According to a first general aspect of the present disclosure, a transport assembly includes a box portion that includes a box surface, a box front, a box back, and a pair of box sides, wherein the box front, the box back, and the box sides each extend from the box surface, wherein a gap extends between the box front and each of the box sides; and a drawer portion that includes a drawer surface, a drawer front, and a pair of drawer sides, wherein the drawer front and the drawer sides each extend from the drawer surface, wherein the drawer surface and drawer sides define an open back portion that faces the drawer front, wherein a gap extends between the drawer front and each of the drawer sides, wherein the box portion and the drawer portion can be arranged such that an inner surface of the drawer front faces an outer surface of the box front and an inner surface of each box side faces an outer surface of a corresponding drawer side. The transport assembly according to the present disclosure may enclose a plurality of packaging units from all sides to group, transport, and protect the packaging units.
Each box side may releasably latch to a corresponding drawer side. For example, the outer surface of each drawer side may include one or more hooks, and the inner surface of each box side may include one or more indentations configured to releasably engage the one or more hooks. The hook may extend along a length of the drawer side. Each box side may include a plurality of indentations that are spaced along a height of the box side.
The drawer front may releasably latch to the box front. The outer surface of the box front may include a hook, and the inner surface of the drawer front may include one or more indentations configured to releasably engage the hook. The inner surface of the drawer front may include a plurality of indentations that are spaced along a height of the drawer front. The drawer front may include two or more tabs that releasably engage the gap that extends between the box front and each of the box sides.
The box front, the box back, and the box sides may each form an obtuse angle relative to the box surface. The drawer front and the drawer sides may each form an obtuse angle relative to the drawer surface.
The transport assembly may further include an insert that defines a plurality of openings, each opening configured to receive a packaging unit. each insert opening may have a substantially hexagonal shape. The insert may include a flexible material and is configured to expand and collapse.
The drawer surface may include one or more ridges that substantially extend along the length of the drawer surface.
One or both drawer sides may include one or more apertures that extend through a thickness of the drawer side and are arranged adjacent to the drawer surface.
According to a second general aspect of the present disclosure, a method includes receiving a box portion that includes a box surface, a box front, a box back, and a pair of box sides, wherein the box front, the box back, and the box sides each extend from the box surface, wherein a front gap extends between the box front and each of the box sides; arranging a plurality of packaging units in the box portion; receiving a drawer portion that includes a drawer surface, a drawer front, and a pair of drawer sides, wherein the drawer front and the drawer sides each extend from the drawer surface, wherein the drawer surface and drawer sides define an open back portion that faces the drawer front, wherein a drawer gap extends between the drawer front and each of the drawer sides; and arranging the drawer portion relative to the box portion such that an inner surface of the drawer front faces an outer surface of the box front and an inner surface of each box side faces an outer surface of a corresponding drawer side.
Arranging the plurality of packaging units in the box portion may include receiving an insert that defines a plurality of openings, each opening configured to receive a respective container and having a substantially hexagonal opening; laying the insert inside the box portion; and arranging one of the plurality of packaging units in each insert opening.
The method may include placing drawer surface on a supported surface; sliding the drawer portion away from the box portion while the box portion is held in place; and lifting the box portion, and optionally the insert, from the plurality of packaging units.
These and other embodiments described herein may provide one or more of the following benefits. The transport assembly may be made of a rigid or semi-rigid material (e.g., plastic) to protect the packaging units stored in the transport assembly. The transport assembly may be configured to accommodate packaging units of varying heights. The transport assembly may increase the density with which packaging units can be loaded in a transport assembly. The same transport assembly can be used to load packaging units facing in different directions. The transport assembly may unload a plurality of packaging units at the same time. The transport assembly may be suitable for both manual and automated loading and unloading. The components of the transport assembly may be designed to be reusable.
Certain embodiments will now be described, by way of example only, with reference to the accompanying drawings, in which:
Like reference numbers and designations in the various drawings indicate like elements.
As shown in
When the box portion 12 and the drawer portion 30 are coupled, they form a transport assembly 10, e.g., for a plurality of packaging units. The transport assembly 10 can be used as secondary packaging for primary packaging in the food, cosmetic, or pharmaceutical industries, i.e., packaging that groups, stores, and protects primary packaging. Although the expression “primary packaging” can encompass vials, cartridges, ampoules, bottles, and syringes to name a few examples, the following description will refer to “vials” for all types of primary packaging.
Although the vials can be loaded in the transport assembly 10 without any additional structures,
In some instances, vertical ribs 47 may be integrally formed along the sides 52 of the honeycomb insert 46, for example at the corners of the honeycomb shape (
Referring again to
Once the vials 100 have been loaded in the box portion 12, the drawer portion 30 can be placed on top of the box portion 12, as shown by the downward arrow in
As shown in
In order to secure the transport assembly 10, e.g., when it is flipped to unload the vials, each box side 20 can releasably latch to a corresponding drawer side 36. Examples of such latches are shown in
As shown in
In some instances, the height of the indentations 66 can be adapted to specific vial sizes so that the box surface 14 and the drawer surface 32 can clamp a variety of vial sizes between them. Clamping the vials (not shown) between the box surface 14 and the drawer surface 32 may further secure the vials, as well as decrease the overall size of the transport assembly 10. In some instances, the box surface 14 may also include a textured or corrugated pattern 67 (
Similarly, the drawer surface 32 can also include a textured pattern. In some cases, the pattern may create a passage for the sterilization gas to flow under the bottom of the vials. For example,
As shown in
In some instances, the drawer front 34 may also releasably latch to the box front 16. Such a latch may prevent the drawer portion 30 from inadvertently sliding away from the box portion 12 (see
As shown in
Further, as shown in
The method 200 includes receiving 202 a box portion that includes a box surface, a box front, a box back, and a pair of box sides. The box front, the box back, and the box sides each extend from the box surface, and a front gap extends between the box front and each of the box sides. The method 200 further includes arranging 204 a plurality of packaging units in the box portion. The method 200 further includes receiving 206 a drawer portion that includes a drawer surface, a drawer front, and a pair of drawer sides. The drawer front and the drawer sides each extend from the drawer surface, and the drawer surface and drawer sides define an open back portion that faces the drawer front. A drawer gap extends between the drawer front and each of the drawer sides. The method 200 further includes arranging 208 the drawer portion relative to the box portion such that an inner surface of the drawer front faces an outer surface of the box front and an inner surface of each box side faces an outer surface of a corresponding drawer side.
Arranging 208 the plurality of packaging units in the box portion may include receiving an insert that defines a plurality of openings, each opening configured to receive a respective container and having a substantially hexagonal opening; laying the insert inside the box portion; and arranging one of the plurality of packaging units in each insert opening.
The method may 200 include placing drawer surface on a supported surface; sliding the drawer portion away from the box portion while the box portion is held in place; and lifting the box portion, and optionally the insert, from the plurality of packaging units.
A number of embodiments have been described. Nevertheless, numerous alternative embodiments within the scope of the claims will be readily appreciated by those skilled in the art. The presently described embodiments are not to be taken as limiting the scope of the invention.
This application claims the benefit of priority to U.S. Provisional Patent Application No. 63/190,071, filed on May 18, 2021, which is hereby incorporated by reference in its entirety.
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Number | Date | Country | |
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