Convertible pallet with selectively actuated rolling feature
11338958 · 2022-05-24
Assignee
Inventors
Cpc classification
B62B5/0093
PERFORMING OPERATIONS; TRANSPORTING
B65D19/0095
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00437
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00333
PERFORMING OPERATIONS; TRANSPORTING
B65D19/42
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00293
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00572
PERFORMING OPERATIONS; TRANSPORTING
B65D19/0026
PERFORMING OPERATIONS; TRANSPORTING
B65D19/0024
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00273
PERFORMING OPERATIONS; TRANSPORTING
B62B2206/006
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00781
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00323
PERFORMING OPERATIONS; TRANSPORTING
B62B2301/05
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D19/42
PERFORMING OPERATIONS; TRANSPORTING
B65D19/00
PERFORMING OPERATIONS; TRANSPORTING
B62B5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A convertible pallet assembly, and associated method of making the convertible pallet, includes a first, planar pallet surface, and a second, planar support surface spaced therefrom. First and second sidewalls extend in parallel relation between the pallet surface and the support surface from adjacent opposite sides thereof. The sidewalls include first and second wheels with respective rotational axes that extend perpendicular to the sidewalls. An actuation mechanism is associated with each sidewall. The actuation mechanism has (i) a first position that allows the first and second wheels on one side to move upwardly and downwardly relative to the sidewall in a non-load carrying condition, and (ii) a second position such that the first and second wheels on the one side project outwardly from the support surface in a load carrying condition whereby the assembly can be rolled on the wheels as a cart.
Claims
1. A convertible pallet assembly comprising: a first, planar pallet surface; a second, planar support surface; first and second sidewalls extending between the pallet surface and the support surface from adjacent opposite sides thereof, the sidewalls disposed in parallel relation to one another and each sidewall includes at least first and second wheels with respective rotational axes that extend perpendicular to the sidewalls; and an actuation mechanism operatively associated with each sidewall, the actuation mechanism having (i) a first position that allows the first and second wheels on one side to move upwardly and downwardly relative to the sidewall in a non-load carrying condition, and (ii) a second position such that the first and second wheels on the one side project outwardly from the support surface in a load carrying condition whereby the assembly can be rolled on the wheels as a cart, wherein the first and second wheels of the first sidewall are interconnected and thereby move together upwardly and downwardly relative thereto, and further wherein the first and second wheels of the second sidewall are interconnected and thereby move together upwardly and downwardly relative thereto, and move upwardly and downwardly independent of the first and second wheels of the first sidewall.
2. The pallet assembly of claim 1 wherein the first and second wheels of the second sidewall are interconnected and thereby move together upwardly and downwardly relative thereto.
3. The pallet assembly of claim 1 wherein the pallet surface and the support surface are spaced apart by a predetermined dimension adapted to receive associated arms of an associated pallet jack or associated forklift.
4. The pallet assembly of claim 1 wherein the actuation mechanism includes an interconnecting member joining the first and second wheels on each side.
5. The pallet assembly of claim 4 wherein the interconnecting member is configured to slide fore and aft relative to the respective sidewall.
6. The pallet assembly of claim 5 wherein the interconnecting member is configured to slide upwardly and downwardly relative to the support surface.
7. The pallet assembly of claim 6 wherein the interconnecting member includes at least one raised surface extending outwardly therefrom that selectively engages a projecting surface operatively associated with the pallet surface, the raised surface and the projecting surface spaced from one another in the first position of the actuation mechanism, and abutting one another in the second position of the actuation mechanism.
8. The pallet assembly of claim 1 wherein each sidewall includes first and second wall portions forming a cavity therebetween that receives the first and second wheels on a respective side.
9. A convertible pallet assembly comprising: a first, planar pallet surface; a second, planar support surface; first and second sidewalls extending between the pallet surface and the support surface from adjacent opposite sides thereof, the sidewalls disposed in parallel relation to one another and each sidewall includes at least first and second wheels with respective rotational axes that extend perpendicular to the sidewalls; and an actuation mechanism operatively associated with each sidewall, the actuation mechanism having (i) a first position that allows the first and second wheels on one side to move upwardly and downwardly relative to the sidewall in a non-load carrying condition, and (ii) a second position such that the first and second wheels on the one side project outwardly from the support surface in a load carrying condition whereby the assembly can be rolled on the wheels as a cart, wherein the actuation mechanism includes an interconnecting member joining the first and second wheels on each side, the interconnecting member is configured to slide fore and aft relative to the respective sidewall and also slide upwardly and downwardly relative to the support surface upwardly and downwardly relative to the support surface, and the interconnecting member further includes at least one raised surface extending outwardly therefrom that selectively engages a projecting surface operatively associated with the pallet surface, the raised surface and the projecting surface spaced from one another in the first position of the actuating mechanism, and abutting one another in the second position of the actuating mechanism; and a recess that receives the raised surface in the first position of the actuation mechanism.
10. The pallet assembly of claim 9 wherein each actuation mechanism includes a cam and a follower that is interposed between the pallet surface and the first and second wheels.
11. The pallet assembly of claim 10 wherein the cam is provided on one of the pallet surface and the sidewall, and the follower is provided on the interconnecting member.
12. The pallet assembly of claim 11 wherein the cam is a face cam having a generally L-shaped slot formed by first and second portions in which the first portion extends between the pallet surface and the support surface, and the second portion extends generally parallel to the support surface.
13. The pallet assembly of claim 12 wherein the cam surface further includes first and second detents at distal ends of the first portion and second portion, respectively.
14. A method of making a convertible pallet assembly comprising: providing a first, planar pallet surface; providing a second, planar support surface; joining the pallet surface to the support surface with first and second sidewalls extending therebetween, wherein each sidewall includes at least first and second wheels; interconnecting the first and second wheels of the first sidewall to move together upwardly and downwardly relative to the first sidewall; interconnecting the first and second wheels of the second sidewall to move together upwardly and downwardly relative to the second sidewall, and move upwardly and downwardly independent of the first and second wheels of the first sidewall; and moving the first and second wheels between (i) a first position that allows the first and second wheels on one side to move upwardly and downwardly relative to the sidewall in a non-load carrying condition, and (ii) a second position such that the first and second wheels on the one side project outwardly from the support surface in a load carrying condition whereby the assembly can be rolled on the wheels as a cart.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(15) With continued reference to
(16) An actuating mechanism 150 is operatively associated with each sidewall 106, 108. A cam 152 forms a part of the actuating mechanism 150 and, as shown, in a preferred arrangement is fixedly secured to one of the pallet surface 102 and/or the sidewall. The cam 152 can adopt a wide variety of configurations but in this particular instance operates like a face cam in which a generally L-shaped slot 154 includes a vertical, first portion 156 and a horizontal, second portion 158. Thus the first portion 156 of the slot 154 generally extends in a direction between the pallet surface 102 and the support surface 104. On the other hand, the second portion 158 of the slot 154 generally extends in a direction parallel to the pallet surface 102 and the support surface 104. The slot 154 includes detents 160, 162 at respective distal ends of the first and second portions 156, 158 of the slot 154, and proximal ends of the first and second portions intersect to form the L-shape of the slot.
(17) A comparison of
(18) On the other hand, and as best illustrated in
(19) To further support the first and second wheels 140, 142 and effectively transfer load when the wheels are in the second position or load carrying condition, at least one raised surface (shown here as three horizontally spaced load carrying blocks 180, 182, 184) extend(s) upwardly from the interconnecting member 146 and selectively cooperates (engage or abut) with a respective projecting surface(s) (shown here as three horizontally spaced abutment surfaces 190, 192, 194) that extend(s) downwardly from the cam 150 that is secured to an underside of the pallet surface 102. The particular number of raised surfaces 180, 182, 184 and projecting surfaces 190, 192, 194 may vary, and likewise the location of these surfaces may vary as will be appreciated by one skilled in the art. Further, one or more recesses 196 are then preferably situated between the raised surfaces 180, 182, 184, and similarly one or more recesses 198 are preferably situated between the projecting surfaces 190, 192, 194 so that the load carrying blocks do not abut with the abutment surfaces in the first position (non-load carrying condition) of the actuation mechanism. Instead, the load carrying blocks 180, 182, 184 are received in the recesses 198, and the abutment surfaces 190, 192, 194 are received in the recesses 196.
(20) Consequently, when the pins 174 are received in the vertical portions 156 of the L-shaped slots 154, the wheels 140, 142 can freely move upwardly and downwardly in the non-load carrying condition. However, when the pins 174 are received in the horizontal portions 158 of the L-shaped slots 154, the first and second wheels 140, 142 are constrained from vertical movement and thus establish the load carrying condition. Preferably, the pins 174 are received in the detent 162 of the second slot portions 158, the load carrying blocks are aligned with the abutment surfaces. Advancement of the pins 174 to either one of the detents 160, 162 is preferred in order to retain the actuation mechanism in the desired first position (non-load carrying condition) or the second position (load carrying condition) as desired.
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(22) As shown in
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(24) Another feature is that an enlarged cut-out 310 in the side of the pallet is provided so that a user cannot inadvertently get a finger or an object caught or pinched when converting the pallet from a pallet configuration (wheels up—
(25) A rigid protection member such as a common joist hanger 320 (
(26) A comparison of
(27) This written description uses examples to describe the disclosure, including the best mode, and also to enable any person skilled in the art to make and use the disclosure. Other examples that occur to those skilled in the art are intended to be within the scope of the invention if they have structural elements or process steps that do not differ from the same concept, or if they include equivalent structural elements or process steps with insubstantial differences.