Molded tray assembly

By introducing a pressure equalizing plate and foot block alignment structure into the molded pallet assembly, and utilizing the interlocking connection of blind holes and protrusions, the stability and durability problems caused by excessive local pressure are solved, the force-bearing area is expanded and precise alignment is achieved, and the overall stability and service life of the molded pallet are improved.

CN223751374UActive Publication Date: 2026-01-02ANHUI LITUO ENVIRONMENTAL PROTECTION NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520429422.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-02
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

When the feet of the existing molded pallet come into contact with the external force-bearing surface, the local pressure is too high and unstable, which can easily lead to damage.

Method used

The molded pallet assembly is designed with a pressure equalizing plate and foot block connected by an alignment structure to increase the stress area and distribute the pressure, ensuring that the contact surface of the foot block is always on the same plane. Precise alignment is achieved by using blind holes and protrusions to fit together.

Benefits of technology

It effectively disperses pressure, improves the stability and durability of the molding tray, and avoids damage caused by excessive local pressure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a mould pressing tray assembly which comprises a mould pressing tray body and a plurality of foot piers arranged on the lower surface of the mould pressing tray body, the lower end of each foot pier is provided with a bottom plane, and the mould pressing tray further comprises a pressure equalizing plate in contact with the foot piers. The upper surface of the pressure equalizing plate is connected with the bottom plane through an alignment structure, at least part of the alignment structure is arranged on the bottom plane, and the rest part of the alignment structure is arranged on the upper surface of the pressure equalizing plate. The mold pressing tray has the advantages that the foot piers are connected with the pressure equalizing plate, the stress area is increased, the pressure intensity is effectively dispersed, meanwhile, the pressure equalizing plate is arranged, the foot pier contact faces of the mold pressing tray are located on the same plane all the time, and therefore the stability and durability problems caused by too large local pressure intensity in the prior art are solved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of bamboo and wood mold pressing pallets, and particularly relates to a mold pressing pallet assembly. BACKGROUND

[0002] In the prior art, the mold pressing pallet needs to bear a large pressure or vibration during operation, and the prior art directly contacts the foot block with the external force receiving surface. Since the bottom plane area of the foot block is small or the contact surface is uneven, the local pressure of the force receiving surface is too large and the force is unstable, which is easy to cause damage to the foot block or the force receiving surface. CONTENT OF THE UTILITY MODEL

[0003] The utility model aims at the above problems and provides a mold pressing pallet assembly which can solve the above technical problems.

[0004] To achieve the above purpose, the utility model adopts the following technical scheme:

[0005] The mold pressing pallet assembly comprises a mold pressing pallet body and a plurality of foot blocks arranged on the lower surface of the mold pressing pallet body, wherein the lower end of each foot block is provided with a bottom plane, the mold pressing pallet further comprises a pressure equalizing plate in contact with the foot blocks, the upper surface of the pressure equalizing plate is connected with the bottom plane through an alignment structure, at least part of the alignment structure is arranged on the bottom plane, and the remaining part of the alignment structure is arranged on the upper surface of the pressure equalizing plate.

[0006] Further, the alignment structure comprises a blind hole and a protruding block, and any one of the blind hole and the protruding block is arranged on the bottom plane, and the remaining one is arranged on the pressure equalizing plate, and the blind hole and the protruding block are one-to-one matched.

[0007] Further, the alignment structure comprises a blind hole and a protruding block, and at least one blind hole and at least one protruding block are arranged on the foot block; at least one protruding block and at least one blind hole are arranged on the pressure equalizing plate in a corresponding manner; the blind hole on the foot block corresponds in position to the protruding block on the pressure equalizing plate and is matched therewith; meanwhile, the protruding block on the foot block corresponds in position to the blind hole on the pressure equalizing plate and is matched therewith.

[0008] Further, there are a plurality of blind holes and a plurality of protruding blocks, and each blind hole is matched with one protruding block.

[0009] Further, the inner contour shape of the blind hole is the same as the outer contour shape of the protruding block.

[0010] Further, the hole body depth of the blind hole is greater than the block body height of the protruding block.

[0011] Further, an arc surface for calibrating the position is further arranged on the protruding block.

[0012] Further, the surface area of the side of the equalizing plate away from the foot block is greater than the surface area of the bottom plane.

[0013] Further, the surface of the side of the molded tray body away from the foot block is provided with a foot block recess corresponding to the foot block.

[0014] Further, the surface of the molded tray body is further provided with a reinforcing rib, and two adjacent foot blocks are connected to each other by the reinforcing rib.

[0015] Compared with the prior art, the application has the advantages that the foot block is connected with the equalizing plate, the stress area is increased, the pressure is effectively dispersed, the equalizing plate is arranged, the contact surface of the foot block of the molded tray is always on the same plane, and the problems of stability and durability caused by excessive local pressure in the prior art are solved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is an assembly view of the main structure of the molded tray of the application;

[0017] Figure 2 is an exploded view of the main structure of the molded tray of the application;

[0018] Figure 3 is Figure 2 is an enlarged detail view of the main component in area A;

[0019] Figure 4 is an assembly top view of the main structure of the molded tray of the application;

[0020] Figure 5 is an assembly bottom view of the main structure of the molded tray of the application;

[0021] Figure 6 is a hidden equalizing plate bottom view of the main structure of the molded tray of the application;

[0022] Figure 7 is an assembly side view of the main structure of the molded tray of the application;

[0023] In the figure, the molded tray body 1, the foot block recess 10, the reinforcing rib 11, the foot block 2, the bottom plane 20, the equalizing plate 3, the alignment structure 4, the blind hole 40, the protruding block 41, and the arc surface 410. DETAILED DESCRIPTION

[0024] The application will be further described in detail below in combination with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the application, and not to limit the application. In addition, it should be noted that, in order to facilitate description, only the parts related to the application are shown in the drawings, not all structures.

[0025] In the description of the utility model, unless another definite provision and limitation, the term "link", "connect", "fix" should be broad sense understanding, for example, can be fixed connection, also can be detachable connection, or into an organic whole, can be mechanical connection, also can be electrical connection, can be directly connected, also can indirectly connect through the intermediate medium, can be two element internal communication or two element mutual action relation. For ordinary skilled in the art, can understand the concrete meaning of the above-mentioned term in the utility model according to specific circumstances.

[0026] In the utility model, unless another definite provision and limitation, the first feature is "on" or "under" the second feature can include the first and second features direct contact, also can include the first and second features is not direct contact but is through the contact between other features between them. Moreover, the first feature is "on", "above" and "on" the second feature includes the first feature is directly above and obliquely above the second feature, or just indicates that the horizontal height of the first feature is higher than the second feature. The first feature is "under", "below" and "under" the second feature includes the first feature is directly below and obliquely below the second feature, or just indicates that the horizontal height of the first feature is less than the second feature.

[0027] In the description of the embodiment, the orientation or position relationship of the terms "on", "under", "right", "left" and the like is based on the orientation or position relationship shown in the drawing, only for the convenience of description and simplification operation, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.

[0028] Embodiment one

[0029] As Figures 1-2As shown, the molded pallet assembly includes a molded pallet body 1. A plurality of support feet 2 are provided on the lower surface of the molded pallet body 1. These support feet 2 are evenly distributed in an array on the lower surface of the molded pallet body 1, with nine support feet 2. The molded pallet also includes a pressure equalizing plate 3 that contacts the support feet 2. Each support foot 2 contacts the pressure equalizing plate 3. The surface area of ​​the pressure equalizing plate 3 away from the support feet 2 is larger than the surface area of ​​the bottom plane 20. This increased surface area design of the pressure equalizing plate 3 away from the support feet 2 effectively reduces the unit pressure in that area, avoiding deformation of the stress surface or uneven pressure distribution caused by excessive local pressure concentration. As a preferred embodiment, in this case, every three support feet 2 are connected to a pressure equalizing plate 3. The upper surface of the pressure equalizing plate 3 and the bottom plane 20 are connected by an alignment structure 4. The alignment structure 4 is at least partially located on the bottom plane 20, and the remaining portion is located on the upper surface of the pressure equalizing plate 3. The even distribution of the nine foot blocks 2 ensures the balance of the pallet's load, avoiding tilting or damage caused by uneven local load. Secondly, every three foot blocks 2 share a pressure equalizing plate 3, which further optimizes the load distribution and improves the overall stability and load-bearing capacity of the pallet. The pressure equalizing plate 3 is connected to the bottom plane 20 through the alignment structure 4, which enables quick and accurate installation and disassembly, facilitating operation and maintenance.

[0030] The alignment structure 4 includes blind holes 40 and protrusions 41. One of the blind holes 40 and protrusions 41 is located on the bottom plane 20, and the other is located on the pressure equalizing plate 3. The blind holes 40 and protrusions 41 are fitted together in a one-to-one correspondence. Specifically, the blind holes 40 and protrusions 41 are designed in a one-to-one correspondence. Through precise fitting, the alignment between the pressure equalizing plate 3 and the bottom plane 20 is ensured, guaranteeing the accurate installation position of the molding tray.

[0031] like Figure 6 As shown, in this embodiment, blind holes 40 can be disposed on the bottom plane 20, and protrusions 41 are disposed on the upper surface of the pressure equalizing plate 3. The blind holes 40 and protrusions 41 are mechanically connected through an alignment structure to ensure that the relative position of the pressure equalizing plate 3 and the bottom plane 20 remains consistent, avoiding molding offset problems caused by installation errors. There are several blind holes 40 and several protrusions 41, and each blind hole 40 is matched with one protrusion 41.

[0032] The inner contour shape of the blind hole 40 is the same as the outer contour shape of the protrusion 41, ensuring a precise one-to-one fit between the two, thereby improving the stability and accuracy of the connection. The depth of the blind hole 40 is greater than the height of the protrusion 41. This design provides a receiving space for the protrusion 41, allowing it some room to move during the fitting process to accommodate minor installation errors or position adjustment needs.

[0033] And as Figure 3As shown, the protrusion 41 is also provided with an arc surface 410 for calibrating the position. The arc surface 410 is provided on the side wall of the protrusion 41 and its shape matches the inner wall shape of the blind hole 40. Through the guiding effect, it helps the protrusion 41 to quickly and accurately embed into the blind hole 40, thereby simplifying the installation process and improving the alignment accuracy.

[0034] In this embodiment, the molded pallet body 1 used for support has feet connected to a pressure equalizing plate 3. For easy storage, a foot-foot recess 10 corresponding to a foot-foot 2 is provided on the surface of the molded pallet body 1 away from the foot-foot 2. This design allows the molded pallet body 1 to be folded or stored when not in use, reducing space occupation and improving convenience. The shape and size of the foot-foot recess 10 match the shape of the foot-foot 2, ensuring that the foot-foot can be fully embedded in the recess.

[0035] like Figures 4-5 As shown, the surface of the molded pallet body 1 is also provided with reinforcing ribs 11, and two adjacent foot blocks 2 are connected to each other through the reinforcing ribs 11. This design further improves the structural strength and stability of the molded pallet body 1. As a supporting structure, the reinforcing ribs 11 can effectively disperse and transmit forces from the outside, avoiding local deformation or damage to a single foot block 2 due to excessive load concentration.

[0036] Example 2

[0037] The structure and principle of this embodiment are basically the same as those of Embodiment 1. The difference lies in that, for the molded tray assembly of Embodiment 1, this embodiment describes another way of aligning the structures.

[0038] In this embodiment, the alignment structure 4 also adopts a combination design of blind holes 40 and protrusions 41, but the specific implementation method has been optimized and improved. The foot block 2 is provided with at least one blind hole 40 and at least one protrusion 41; the pressure equalizing plate 3 is correspondingly provided with at least one protrusion 41 and at least one blind hole 40. This design allows the blind holes 40 on the foot block 2 to be precisely aligned and engaged with the protrusions 41 on the pressure equalizing plate 3, while the protrusions 41 on the foot block 2 can also correspond in position to the blind holes 40 on the pressure equalizing plate 3, achieving mutual engagement.

[0039] The design of the aforementioned alignment structure 4 simplifies the installation process and improves the connection accuracy. Through the bidirectional interlocking of the blind hole 40 and the protrusion 41, the stability and alignment accuracy of the molding tray can be ensured without adding extra complexity. Furthermore, the shape and size of the blind hole 40 and the protrusion 41 can be adjusted according to actual needs, further optimizing the smoothness and stability of the interlocking process.

[0040] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art of the present application can make various modifications or supplements to the described specific embodiments or replace them with similar ways, but will not deviate from the spirit of the present application or exceed the scope defined by the appended claims.

Claims

1. A moulded tray assembly comprising a moulded tray body (1) and a plurality of feet (2) provided on the lower surface of the moulded tray body (1), each of the feet (2) having a bottom surface (20) at the lower end thereof, characterised in that, The mold pressing tray further comprises a pressure equalizing plate (3) in contact with the foot block (2), the upper surface of the pressure equalizing plate (3) and the bottom plane (20) are connected through a positioning structure (4), the positioning structure (4) is at least partially provided on the bottom plane (20), and the remaining part of the positioning structure (4) is provided on the upper surface of the pressure equalizing plate (3).

2. The molded tray assembly of claim 1, wherein, The positioning structure (4) comprises a blind hole (40) and a protrusion (41), either one of the blind hole (40) and the protrusion (41) is provided on the bottom plane (20), and the other one is provided on the pressure equalizing plate (3), and the blind hole (40) and the protrusion (41) are one-to-one corresponding and embedded.

3. The molded tray assembly of claim 1, wherein, The positioning structure (4) comprises a blind hole (40) and a protrusion (41), the foot block (2) is provided with at least one blind hole (40) and at least one protrusion (41); the pressure equalizing plate (3) is correspondingly provided with at least one protrusion (41) and at least one blind hole (40); the blind hole (40) on the foot block (2) and the protrusion (41) on the pressure equalizing plate (3) are positionally corresponding and embedded with each other; at the same time, the protrusion (41) on the foot block (2) and the blind hole (40) on the pressure equalizing plate (3) are positionally corresponding and embedded with each other.

4. The molded tray assembly of claim 2 or 3, wherein, The blind hole (40) has a plurality of blind holes, the protrusion (41) has a plurality of protrusions, and each blind hole (40) is matched with one protrusion (41).

5. The molded tray assembly of claim 2 or 3, wherein, The inner contour shape of the blind hole (40) is the same as the outer contour shape of the protrusion (41).

6. The molded tray assembly of claim 2 or 3, wherein, The hole depth of the blind hole (40) is greater than the block height of the protrusion (41).

7. The molded tray assembly of claim 2 or 3, wherein, An arc surface (410) for calibrating position is further provided on the protrusion (41).

8. The molded tray assembly of claim 1, wherein, The surface area of the pressure equalizing plate (3) away from the foot block (2) is greater than the surface area of the bottom plane (20).

9. The molded tray assembly of claim 1, wherein, A foot block recessed groove (10) corresponding to the foot block (2) is provided on the surface of the mold pressing tray body (1) away from the foot block (2).

10. The molded tray assembly of claim 1, wherein, The surface of the mold pressing tray body (1) is further provided with a reinforcing rib (11), and two adjacent foot blocks (2) are connected with each other through the reinforcing rib (11).