CN212354751U - Light suit tray - Google Patents
Light suit tray Download PDFInfo
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- CN212354751U CN212354751U CN202020196477.2U CN202020196477U CN212354751U CN 212354751 U CN212354751 U CN 212354751U CN 202020196477 U CN202020196477 U CN 202020196477U CN 212354751 U CN212354751 U CN 212354751U
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- tray
- flat
- archways
- archway
- lightweight
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W30/00—Technologies for solid waste management
- Y02W30/50—Reuse, recycling or recovery technologies
- Y02W30/80—Packaging reuse or recycling, e.g. of multilayer packaging
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Abstract
The utility model discloses a light body suit tray, the tray has four netted flat top archways, the flat top archway has set into the fork passageway, tray basement four peripheral parts add limit portion boss structure for latticed limit portion bottom plate, flat top archway portion is hollow out construction, the both sides wall of every flat top archway has all been opened flutedly, the tray middle zone that four flat top archways enclose adds middle zone boss structure for latticed middle zone bottom plate, the tray bottom is provided with horizontal lacing wire strip with flat top archway bottom, the tray four corners sets up the label recess of installation RFID electronic tags. The tray can be molded by micro-foaming low-pressure injection molding or compression molding, has light self weight, can be recycled, has large load, can be forked in four directions, and can be sleeved to remarkably reduce the volume when in no-load.
Description
Technical Field
The utility model relates to a packing and commodity circulation carrier, especially a light suit tray.
Background
The tray is packing and commodity circulation field commonly used carrier, and current tray mainly is wooden flat tray, and wooden tray cost of manufacture is lower, but wooden tray easily wets, perishable, fragile, and the dead weight is great, occupation space is big, can increase the cost of transportation when taking the tray to transport the goods, and the tray recycle is also uneconomical when no-load. Therefore, the wooden pallets are basically disposable, which not only consumes forest resources and causes environmental pressure, but also increases logistics packaging cost. Paper tube pallets, i.e. double-pillow pallets made of a single cardboard plus 2 cut semicircular paper tubes, are also found in the literature, are light in weight and space-saving, but are easily damaged by moisture, and can only be used once, and because the height difference between the cardboard base and the pillow top is too large, the pallets are unbalanced and have poor stability when loaded with goods, the carrying capacity is low, the pallets are greatly limited by the paper tubes, and the forklift operation is inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model provides an arch adds light body suit tray of network structure utilizes to bear the weight of the distribution of goods load and pressure support characteristics, carries out the subregion planning to tray atress structure to tray bearing capacity problem when four arch flat top structures are solved the fork and are lifted the operation, and the quadriversal advances fork operation convenience problem. Meanwhile, the non-key stress parts are processed by a net structure and hollowing out, so that the self weight of the tray is reduced, and the manufacturing cost is reduced. The staggered design of the concave-convex cross of the trays can ensure that the trays can be mutually nested and loaded, thus reducing the space occupation and the logistics cost.
The utility model provides a technical scheme that its technical problem adopted is:
the utility model provides a light suit tray, including four netted flat top archways, the fork passageway of advancing under the flat top archways, tray base four peripheral parts are latticed limit portion bottom plate and add limit portion boss structure, the fretwork beam structure at flat top archway top, the recess of the both sides wall of every flat top archway, the tray middle zone that four flat top archways enclose adds middle zone boss structure for latticed middle zone bottom plate, the horizontal lacing wire strip of tray bottom and flat top archway bottom, the label recess of installation RFID electronic tags is set up to the tray four corners. The tray is compatible with micro-foaming low-pressure injection molding and compression molding processes.
Furthermore, the tops of the four flat-topped archways of the pallet are flat rather than circular, so that the pallet can be kept in contact with the loaded cargo surface, and meanwhile, the # -shaped structure is superior to the "|" and "|" in the aspect of cargo stabilityThe shape structure is uniform in stress and firmer.
Furthermore, fork tooth entering channels are arranged below the flat arch of the pallet, so that the forklift can conveniently fork and lift from four directions.
Further, the peripheral part of tray base four is latticed limit portion bottom plate and adds limit portion boss structure, under the condition that does not increase the tray dead weight, through the material stretching to limit portion boss position, forms protrudingly to support the goods, existing goods stability of being favorable to has also improved tray limit portion intensity simultaneously.
Furthermore, the top of the flat-top arch road of the tray is of a hollow beam structure, so that the material consumption and the dead weight can be reduced, and the mechanical property is not influenced.
Furthermore, two side walls of each arch channel of the tray are provided with U-shaped grooves, the height of the bottom of each groove is 3 cm higher than that of the base plate, so that the overall strength of the arch channel structure is enhanced, and meanwhile, a tray gap is reserved when empty trays are sleeved, so that the tray can be conveniently disassembled and assembled.
Furthermore, the middle area of the tray surrounded by the four flat-top archways of the tray is of a grid-shaped middle area bottom plate and middle area boss structure, under the condition that the self weight of the tray is not increased, the protruding structure is formed by stretching materials at the boss position of the middle area, the mechanical property of the tray is stronger than that of a flat plate structure, the low-lying of the middle area is avoided, goods are better supported, the stability of the goods is facilitated, and meanwhile, the strength of the middle area of the tray is also improved.
Furthermore, a transverse tie bar is arranged between the bottom of the tray and the bottom of the flat-top arch channel, the stability of the arch channel during heavy load is improved through the tension effect of the transverse tie bar, the collapse of the arch channel is avoided, and meanwhile, the transverse tie bar can also form the isolation of lower-layer goods during cargo stacking of the tray.
Furthermore, four corners of the tray are provided with tag grooves for mounting the REID electronic tags, so that the tray has digital identities and is convenient to track and trace.
The beneficial effects of the utility model are that, the utility model discloses light body suit tray adopts four netted flat top archways, and latticed bottom plate adds the boss structure in addition, can save the preparation material and reduce the tray dead weight under satisfying the tray load requirement condition, simultaneously, bears the weight of goods equilibrium stability, can follow four directions and advance the fork operation. The U-shaped grooves of the archways are staggered with the hollow beam structures, so that the trays can be overlapped when the trays are empty, empty transportation space is saved, and logistics cost is reduced. The transverse tie bars arranged at the bottom of the flat-top archway can improve the strength of the flat-top archway and the whole tray, bear heavy weight, and prevent goods from sliding and being forked due to the pressure bearing deformation of the goods during stacking.
Drawings
FIG. 1 is a schematic view of the present invention;
FIG. 2 is a bottom view of FIG. 1;
fig. 3 is a schematic diagram of the present invention.
In the figure, 1, a flat arch channel, 2, a fork inlet channel, 3, an edge bottom plate, 4, an edge boss structure, 5, a flat hollow beam structure, 6, a groove, 7, a middle area bottom plate, 8, a middle area boss structure, 9, a transverse tie bar and 10, a label groove are arranged.
Detailed Description
As shown in fig. 1, fig. 2 and fig. 3, the embodiment of the utility model provides a light suit tray, including four netted flat top archways 1, the fork passageway 2 of advancing under the flat top archway 1, tray base four peripheral parts are latticed limit portion bottom plate 3 plus limit portion boss structure 4, the fretwork beam structure 5 at 1 top of flat top archway, the recess 6 of the both sides wall of every flat top archway 1, the tray middle zone that four flat top archways 1 enclose adds middle zone boss structure 8 for latticed middle zone bottom plate 7, the transverse lacing wire strip 9 of tray bottom and flat top archway 1 bottom, the tray four corners sets up the label recess 10 of installation RFID electronic tags.
The flat-top arch way 1 is a flat-top arch, the cross section of the flat-top arch way is similar to a trapezoid, the upper part of the flat-top arch way is a plane, the bottom of the arch is provided with transverse pull ribs 9, the width of the bottom of the arch is larger than that of the arch top, two side surfaces of the arch are provided with certain radians, and the arch top, the bottom of the arch and the joints of the two sides are connected through arcs so as to improve the strength and the shock. The four criss-cross flat arch ways 1 form a # structure, and can be stressed uniformly and firmly when bearing cargoes.
The fork feeding channel 2 is composed of the flat-top arch tunnel 1 and the transverse lacing bars 9, and the internal height of the fork feeding channel 2, namely the distance from the inner side of the arch top end to the upper edge of the transverse lacing bars 9, is not less than 8 cm.
The bottom plate 3 at the edge of the tray is used as the peripheral substrate part of the tray.
The lug boss structure 4 at the edge of the tray stretches the material at the lug boss position to form a protrusion, so that the strength of the edge of the tray is improved.
The flat arch top and the hollow beam structure 5 are provided with long strip-shaped hole grooves at the arched beams, so that materials and weight can be saved, and the sliding between goods and a tray can be reduced.
A U-shaped groove with the width of about 4 cm is formed in the corresponding position of the flat-top arch road 1, and the U-shaped groove and the hollowed-out beam structure 5 are staggered, so that the tray can be nested when the tray is empty. The bottom of the U-shaped groove and the base plate are kept at a height of 3 cm to enhance the overall strength of the arch road structure, and meanwhile, a gap can be reserved for the tray sleeving so as to facilitate the dismounting operation.
The middle area floor 7 serves as a tray middle area base plate portion.
The boss structure 8 in the middle area stretches the material at the boss position to form a protrusion, so that the middle strength of the tray is improved.
The transverse lacing bars 9 correspond to the U-shaped grooves 6, the transverse lacing bars 9 vertical to the flat-topped archways 1 are formed at the positions 2-3mm higher than the bottom plates, and the width of the transverse lacing bars 9 is about 3mm less than that of the U-shaped grooves. The purpose that horizontal lacing wire strip 9 is higher than the bottom plate slightly is to reserve the deformation that the top goods of lower floor's goods probably produced when the tray is piled up, can reduce the pressure of lower floor's goods to horizontal lacing wire strip 9 like this, avoids the lacing wire fracture. Meanwhile, the goods can be prevented from sliding horizontally.
The label groove 10 is a rectangular groove with a depth of 3mm reserved at four corners of the tray and is used for installing RFID electronic labels, bar code labels, two-dimensional code labels and coating marks.
The light suit tray can adopt the micro-foaming low-pressure injection molding and compression molding technology, and the material of the light suit tray can be plastic or composite material.
The present invention is not limited to the above-mentioned preferred embodiments, and any other products in various forms can be obtained by the teaching of the present invention, but any changes in the shape or structure thereof, which have the same or similar technical solutions as the present invention, fall within the protection scope of the present invention.
Claims (11)
1. The utility model provides a light suit tray, a serial communication port, including four netted flat-top archways (1), fork passageway (2) of advancing under flat-top archways (1), tray base is latticed limit portion bottom plate (3) adds limit portion boss structure (4) all around, fretwork beam structure (5) at flat-top archway (1) top, recess (6) of the both sides wall of every flat-top archway (1), the tray middle zone that four flat-top archways (1) enclose adds middle zone boss structure (8) for latticed middle zone bottom plate (7), horizontal lacing bar (9) of tray bottom and flat-top archway (1) bottom, tray four corners set up the label recess (10) of installation RFID electronic tags.
2. The light nested tray of claim 1, wherein the flat-top archways (1) are in a net shape and are in a flat-top arch shape, four vertically and horizontally crossed flat-top archways (1) form a # shape structure, the cross sections of the flat-top archways (1) are similar to a trapezoid, the upper parts of the flat-top archways are in a plane, transverse pulling ribs (9) are arranged at the bottoms of the arch shapes, the widths of the bottoms of the arch shapes are larger than those of the arch shapes, the two side surfaces of the arch shapes are provided with radians, and the joints of the arch shapes, the arch.
3. A lightweight nested pallet according to claim 1, characterized in that the fork-in passage (2) is formed by the flat-topped archways (1) and cross lacing bars (9).
4. A lightweight nested pallet according to claim 1, characterised in that the edge floor (3) serves as a peripheral base portion of the pallet.
5. A lightweight nested pallet according to claim 1 wherein the edge boss means (4) is means for stretching the material to form a protrusion to increase the strength of the edge of the pallet.
6. A lightweight nested pallet according to claim 1, characterized in that the hollowed beam structure (5) at the top of the flat-topped archway (1) is in the form of elongated slots.
7. A lightweight nested pallet according to claim 1, characterised in that the grooves (6) are U-shaped, the grooves (6) being staggered with the hollow beam structure (5) so that the pallet can telescope when empty, the bottom of the grooves (6) remaining 3 cm high from the base.
8. A lightweight nested pallet according to claim 1, characterized in that the middle area floor (7) serves as a pallet middle area base plate part.
9. A lightweight nested pallet according to claim 1 wherein the central region boss formation (8) is a formation which stretches the material to form a protrusion to increase the strength of the central portion of the pallet.
10. A lightweight package tray according to claim 1, wherein the transverse lacing bars (9) are formed perpendicular to the flat-topped archways (1) at a position 2-3mm above the bottom plate corresponding to the position of the grooves (6).
11. A light weight nested tray according to claim 1, wherein the label recess (10) is a rectangular recess 3mm deep at the four corners of the tray.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020196477.2U CN212354751U (en) | 2020-02-21 | 2020-02-21 | Light suit tray |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020196477.2U CN212354751U (en) | 2020-02-21 | 2020-02-21 | Light suit tray |
Publications (1)
Publication Number | Publication Date |
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CN212354751U true CN212354751U (en) | 2021-01-15 |
Family
ID=74145003
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202020196477.2U Active CN212354751U (en) | 2020-02-21 | 2020-02-21 | Light suit tray |
Country Status (1)
Country | Link |
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CN (1) | CN212354751U (en) |
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2020
- 2020-02-21 CN CN202020196477.2U patent/CN212354751U/en active Active
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