CN216469171U - Basalt high-load tray - Google Patents
Basalt high-load tray Download PDFInfo
- Publication number
- CN216469171U CN216469171U CN202122503887.4U CN202122503887U CN216469171U CN 216469171 U CN216469171 U CN 216469171U CN 202122503887 U CN202122503887 U CN 202122503887U CN 216469171 U CN216469171 U CN 216469171U
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- floor plate
- top floor
- tray
- layer
- supporting block
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Abstract
The utility model discloses a basalt high-load tray, and relates to a tray for a logistics warehouse; the device comprises a top floor plate and a bottom floor plate, wherein a first support column is connected between the central axes of the top floor plate and the bottom floor plate, vertical plates are connected with the edges of the top floor plate and the bottom floor plate, the top floor plate and the bottom floor plate are both of a double-layer structure, and the double-layer structure consists of a lower basalt fiber layer and an upper elastic resin layer; the cross section of the top floor plate is wavy; two second support columns are connected between the top floor board and the bottom floor board and are respectively positioned between the first support column and the vertical board; a supporting block is arranged at the joint of the second supporting column and the top floor plate, the top surface of the supporting block is attached to the bottom surface of the top floor plate, and the bottom surface of the supporting block is a downward convex cambered surface; the utility model has better buffering and force-releasing capacity, improves the integral bearing capacity of the tray by combining the supporting structure and simultaneously prolongs the service life of the tray.
Description
Technical Field
The utility model relates to a pallet for a logistics warehouse, in particular to a basalt high-load pallet.
Background
The purpose of the pallet is to provide support for the goods, especially during shipping and storage. Due to different standards and requirements, there is an increasing demand for such trays to become more sophisticated. The trays may be formed of wood (e.g., lumber), but these trays have some disadvantages due to the inherent characteristics of wood. For example, wooden pallets are naturally heavy, bulky, and can be expensive due to the nature of the materials used in their construction. Furthermore, wooden pallets suffer from deterioration due to severe weather conditions and may suffer from damage from water that may be present at the location where the pallet is used. The existing tray has small load, limits the weight of the contained articles and is easy to break and damage in the using process.
SUMMERY OF THE UTILITY MODEL
The utility model overcomes the defects of the prior art, provides the basalt high-load tray, improves the loading force of the tray and prolongs the service life of the tray.
In order to achieve the above object, the present invention is achieved by the following technical solutions.
A basalt high-load tray comprises a top floor plate and a bottom floor plate, wherein a first supporting column is connected between the central axes of the top floor plate and the bottom floor plate, vertical plates are connected with the edges of the top floor plate and the bottom floor plate, the top floor plate and the bottom floor plate are both of a double-layer structure, and the double-layer structure is composed of a lower basalt fiber layer and an upper elastic resin layer; the cross section of the top floor plate is wavy; two second support columns are connected between the top floor board and the bottom floor board and are respectively positioned between the first support column and the vertical board; the second support column is provided with a supporting block at the joint with the top plank, the top surface of the supporting block is attached to the bottom surface of the top plank, and the bottom surface of the supporting block is a cambered surface protruding downwards.
Furthermore, the first support column and the second support column are both of an inner-outer double-layer structure, the inner layer is an epoxy ethylene resin layer, and the outer layer is a basalt fiber layer.
Furthermore, the supporting block is made of a silica gel block.
Compared with the prior art, the utility model has the following beneficial effects:
the top floor plate and the bottom floor plate are compounded through the basalt fiber layer and the elastic resin layer, and meanwhile, the surface of the top floor plate forms a micro-undulated wave shape, so that the overall buffer performance of the tray is improved to a great extent; the second support columns arranged on the two sides of the first support column are combined, so that the overall bearing performance and stability of the tray are improved on the basis of ensuring an overall buffering structure; the supporting block enlarges the bearing surface contacted by the curve, and further improves the bearing capacity.
The tray has better buffering and force-releasing capacity, the integral bearing capacity of the tray is improved by combining the supporting structure, and the service life of the tray is prolonged.
Drawings
Fig. 1 is a top view of a tray according to the present invention.
Fig. 2 is a side view of the tray of the present invention.
In the figure, 1 is a top plank; 2 is a bottom plank; 3 is a first support column; 4 is a vertical plate; 5 is a basalt fiber layer, 6 is an elastic resin layer, 7 is a second supporting column, and 8 is a supporting block.
Detailed Description
In order to make the technical problems, technical solutions and advantageous effects to be solved by the present invention more clearly apparent, the present invention is further described in detail with reference to the embodiments and the accompanying drawings. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model. The technical solution of the present invention is described in detail below with reference to the embodiments and the drawings, but the scope of protection is not limited thereto.
As shown in fig. 1 and 2, the basalt high-load pallet comprises a top floor board 1 and a bottom floor board 2, wherein a first support column 3 is connected between the central axes of the top floor board 1 and the bottom floor board 2, vertical boards 4 are connected to the edges of the top floor board 1 and the bottom floor board 2, the top floor board 1 and the bottom floor board 2 are both of a double-layer structure, and the double-layer structure is composed of a lower basalt fiber layer 5 and an upper elastic resin layer 6; wherein the basalt fiber layer 5 is formed by compounding a plurality of layers of basalt fiber mats, and the basalt fiber mats are conventional materials; the elastic resin layer 6 is made of bisphenol A type epoxy vinyl resin, which is also a conventional material.
The cross section of the top floor plate 1 is wavy; two second support columns 7 are connected between the top floor board 1 and the bottom floor board 2, and the two second support columns 7 are respectively positioned between the first support column 3 and the vertical board 4; the second support column 7 is provided with a support block 8 with the top floor board 1 junction, the top surface of support block 8 and the bottom surface laminating of top floor board 1, the bottom surface of support block 8 is the cambered surface of downward bulge.
The first support column 3 and the second support column 7 are both of an inner-outer double-layer structure, the inner layer is an epoxy ethylene resin layer, and the outer layer is a basalt fiber layer. The supporting block 8 is made of a silica gel block.
The top floor board 1 and the bottom floor board 2 of the tray are compounded through the basalt fiber layer 5 and the elastic resin layer 6, and meanwhile, the surface of the top floor board 1 forms a micro-undulate wave shape, so that the overall buffer performance of the tray is greatly improved; the second supporting columns 7 arranged on the two sides of the first supporting column 3 are combined, so that the overall bearing performance and stability of the tray are improved on the basis of ensuring an overall buffering structure; the supporting block 8 enlarges the bearing surface contacted by the curve, and further improves the bearing capacity. The tray with the structure is more suitable for a granary to use and place grains and other articles.
While the utility model has been described in further detail with reference to specific preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the utility model as defined by the appended claims.
Claims (3)
1. A basalt high-load tray comprises a top floor plate (1) and a bottom floor plate (2), wherein a first support column (3) is connected between the central axes of the top floor plate (1) and the bottom floor plate (2), and vertical plates (4) are connected with the edges of the top floor plate (1) and the bottom floor plate (2), and the basalt high-load tray is characterized in that the top floor plate (1) and the bottom floor plate (2) are both of a double-layer structure, and the double-layer structure consists of a lower basalt fiber layer (5) and an upper elastic resin layer (6); the cross section of the top plank (1) is wavy; two second supporting columns (7) are further connected between the top floor board (1) and the bottom floor board (2), and the two second supporting columns (7) are respectively located between the first supporting column (3) and the vertical plate (4); the second support column (7) is provided with a supporting block (8) with the top floor (1) junction, the top surface of supporting block (8) is laminated with the bottom surface of top floor (1), the bottom surface of supporting block (8) is the convex cambered surface downwards.
2. The basalt high-load pallet according to claim 1, wherein the first support column (3) and the second support column (7) are both of an inner and outer double-layer structure, the inner layer is an epoxy ethylene resin layer, and the outer layer is a basalt fiber layer.
3. Basalt high-load pallet according to claim 2, characterised in that the supporting block (8) is made of a silicone block.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122503887.4U CN216469171U (en) | 2021-10-18 | 2021-10-18 | Basalt high-load tray |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122503887.4U CN216469171U (en) | 2021-10-18 | 2021-10-18 | Basalt high-load tray |
Publications (1)
Publication Number | Publication Date |
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CN216469171U true CN216469171U (en) | 2022-05-10 |
Family
ID=81440653
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202122503887.4U Active CN216469171U (en) | 2021-10-18 | 2021-10-18 | Basalt high-load tray |
Country Status (1)
Country | Link |
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CN (1) | CN216469171U (en) |
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2021
- 2021-10-18 CN CN202122503887.4U patent/CN216469171U/en active Active
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