Anti-cracking damping support frame in perforated brick transportation

By designing a crack-resistant and shock-absorbing support frame, and utilizing components such as positioning columns and foam layers, the problem of cracks and wear caused by collisions during the transportation of porous bricks was solved, thus enabling the safe transportation and normal use of porous bricks.

CN223792137UActive Publication Date: 2026-01-13ZHENJIANG WEISHENG NEW BUILDING MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520548386.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-01-13
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Porous bricks are prone to cracking or wear during transportation, which affects their normal use.

Method used

A crack-resistant and shock-absorbing support frame is adopted, including components such as a base plate, first positioning column, second positioning column, stop bar and foam layer. The porous bricks are protected through positioning and shock absorption measures to prevent displacement and wear.

Benefits of technology

It effectively reduces the displacement and wear of porous bricks during transportation, ensures the integrity of the bricks, and improves their service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an anti-cracking damping supporting frame in perforated brick transportation, and belongs to the field of perforated bricks. The anti-cracking damping supporting frame comprises a bottom plate, a first foam layer is arranged on the bottom plate, a plurality of first positioning columns are fixedly connected to the bottom plate, an auxiliary plate is arranged above the bottom plate, supporting sleeves are fixedly connected to the bottom of the auxiliary plate, and the first positioning columns are sleeved with the supporting sleeves; a plurality of second positioning columns are fixedly connected to the upper portion of the auxiliary plate, a stop lever is connected to the bottom plate and used for limiting the porous bricks, and a protection rod is arranged on the outer side of the stop lever. The perforated bricks can be positioned through the first positioning columns, the second positioning columns and the stop rods, damping can be conducted on the perforated bricks through the first foam layer, and cracks or damage caused by abrasion of the perforated bricks is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of porous bricks, in particular to a crack-proof shock-absorbing support frame for porous bricks in transportation. BACKGROUND

[0002] Porous bricks refer to bricks made of clay, shale and fly ash as main materials, which are formed and baked, and are a new variety of wall materials after ordinary and light aggregate concrete small hollow blocks, have the characteristics of low production energy consumption, soil saving and waste utilization, convenient construction, light weight, high strength, good thermal insulation effect, durability, small shrinkage and deformation, regular appearance, etc., and are an ideal material to replace fired clay bricks.

[0003] At present, when transporting porous bricks on the market, the porous bricks are usually stacked and transported, and the porous bricks are prone to collision during transportation, which causes cracks or wear of the porous bricks and affects the normal use of the porous bricks. CONTENT OF THE INVENTION

[0004] In order to improve the above problems, the present application provides a crack-proof shock-absorbing support frame for porous bricks in transportation.

[0005] The crack-proof shock-absorbing support frame for porous bricks in transportation provided by the present application adopts the following technical solution:

[0006] A crack-proof shock-absorbing support frame for porous bricks in transportation, comprising a bottom plate, a first foam layer is arranged on the bottom plate, a plurality of first positioning columns are fixedly connected to the bottom plate, an auxiliary plate is arranged above the bottom plate, a support sleeve is fixedly connected to the bottom of the auxiliary plate, the support sleeve is sleeved on the first positioning column, a plurality of second positioning columns are fixedly connected to the top of the auxiliary plate, a blocking rod is connected to the bottom plate, the blocking rod is used for limiting the porous bricks, and a protection rod is arranged on the outside of the blocking rod.

[0007] By adopting the above technical solution, the first positioning column, the second positioning column and the blocking rod can position the porous bricks, reduce the possibility of deviation of the porous bricks during transportation, and the first foam layer can shock-absorb the porous bricks, reduce cracks or damage of the porous bricks due to wear, and facilitate the normal use of the porous bricks.

[0008] Preferably, a mounting groove is arranged on the bottom plate, and the bottom end of the blocking rod is embedded in the mounting groove.

[0009] By adopting the above technical solution, when the porous bricks are placed, the operator can embed the bottom end of the blocking rod into the mounting groove, the mounting groove can limit the blocking rod, and the installation of the blocking rod is facilitated, so that the blocking rod can limit the porous bricks.

[0010] Preferably, the stop lever is fixedly connected with a mounting block, the mounting block is provided with a mounting bolt, and the mounting bolt is threadedly connected with the bottom of the mounting block and the bottom of the mounting groove.

[0011] Through the above technical scheme, when the bottom end of the stop lever is embedded in the mounting groove, the movement of the stop lever can drive the mounting block to be embedded in the mounting groove, and then the mounting bolt is screwed in, so that the mounting bolt can limit the mounting block, and the stop lever is fixedly installed.

[0012] Preferably, the inner side of the stop lever is provided with a second foam layer, and the second foam layer abuts against the perforated brick.

[0013] Through the above technical scheme, the second foam layer can protect the perforated brick, reducing the possibility of direct contact between the perforated brick and the stop lever, thereby reducing the possibility of damage to the perforated brick.

[0014] Preferably, the stop lever is fixedly connected with a clamping block, and the protection lever is provided with a clamping groove for embedding the clamping block.

[0015] Through the above technical scheme, when the protection lever needs to be installed, the operator can move the protection lever to embed the clamping block in the clamping groove, thereby positioning the protection lever and the stop lever, and achieving the installation of the protection lever, which is also convenient for the protection of the perforated brick by the protection lever.

[0016] Preferably, the first positioning column and the second positioning column are tapered from bottom to top, the first positioning column is provided with a first protection layer, the second positioning column is provided with a second protection layer, and the first protection layer and the second protection layer are made of rubber.

[0017] Through the above technical scheme, the first positioning column and the second positioning column can guide the movement of the perforated brick, which is convenient for the movement of the perforated brick to the appropriate position; and the first protection layer and the second protection layer can protect the perforated brick, reducing the possibility of damage to the perforated brick due to friction.

[0018] In summary, the present application has at least one of the following beneficial technical effects:

[0019] 1. Through the arrangement of the first positioning column, the second positioning column, the stop lever and the first foam layer, the first positioning column, the second positioning column and the stop lever can position the perforated brick, reducing the possibility of deviation of the perforated brick during transportation, and the first foam layer can dampen the perforated brick, reducing the possibility of cracks or damage to the perforated brick due to wear, thereby facilitating the normal use of the perforated brick;

[0020] 2. Through the arrangement of the mounting block and the mounting bolt, when the bottom end of the stop lever is embedded in the mounting groove, the movement of the stop lever can drive the mounting block to be embedded in the mounting groove, and then the mounting bolt is screwed in, so that the mounting bolt can limit the mounting block, and the stop lever is fixedly installed. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is the overall structure schematic diagram for embodying the anti-cracking shock-absorbing support frame in the embodiment of the present application.

[0022] Figure 2 is the overall structure schematic diagram for embodying the base and the blocking rod in the embodiment of the present application.

[0023] Figure 3 is the exploded structure schematic diagram for embodying the base and the auxiliary plate in the embodiment of the present application.

[0024] Figure 4 is the exploded structure schematic diagram for embodying the blocking rod and the protection rod in the embodiment of the present application.

[0025] Reference signs: 1, bottom plate; 11, first positioning column; 12, mounting groove; 2, auxiliary plate; 21, support sleeve; 22, second positioning column; 3, blocking rod; 31, mounting block; 32, mounting bolt; 33, clamping block; 4, protection rod; 41, clamping groove. DETAILED DESCRIPTION

[0026] In order to make the purposes, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0027] The following will be described in detail in conjunction with the drawings in the embodiments of the present application. Figures 1-4 The present application will be described in further detail.

[0028] The embodiments of the present application disclose an anti-cracking shock-absorbing support frame in the transportation of perforated bricks, as shown in Figure 1 and 2 , which comprises a bottom plate 1, the bottom plate 1 is bonded with a first foam layer, and the first foam layer is provided for placing perforated bricks. The bottom plate 1 is fixedly connected with a plurality of first positioning columns 11, when the perforated bricks are placed on the first foam layer, the first positioning columns 11 are arranged in the through holes of the perforated bricks.

[0029] As shown in Figure 1 , 2As shown in Figure 3, multiple auxiliary plates 2 are provided above the base plate 1. A support sleeve 21 is fixedly connected to the bottom of the auxiliary plate 2. The support sleeve 21 is fitted onto the first positioning post 11 and can abut against the base plate 1. The support sleeve 21 is used to support the auxiliary plate 2. Perforated bricks are placed on the auxiliary plate 2. Multiple second positioning posts 22 are fixedly connected above the auxiliary plate 2. The second positioning posts 22 pass through the through holes of the perforated bricks. The support sleeve 21 of the upper auxiliary plate 2 is fitted onto the second positioning post 22 of the lower auxiliary plate 2. The first positioning post 11 and the second positioning post 22 are both tapered from bottom to top. A first protective layer is fitted onto the first positioning post 11, and a second protective layer is fitted onto the second positioning post 22. Both the first and second protective layers are made of rubber. The first positioning post 11 and the second positioning post 22 can guide the movement of the porous brick and limit its movement, making it easier for the porous brick to move to a suitable position; the first protective layer and the second protective layer can protect the porous brick and reduce the possibility of damage to the porous brick due to friction.

[0030] like Figure 1 , 2 As shown in Figure 4, a stop bar 3 is connected to the base plate 1. The length of the stop bar is vertical, and a second foam layer is provided on the inner side of the stop bar 3, which abuts against the porous brick. An mounting groove 12 is provided on the base plate 1. The mounting groove 12 has an L-shaped cross-section, allowing the bottom end of the stop bar 3 to be inserted. A mounting block 31 is fixedly connected to the stop bar 3, and a mounting bolt 32 is provided on the mounting block 31. The mounting bolt 32 passes through the mounting block 31 and is threadedly connected to the bottom of the mounting groove 12. After the porous brick is placed, the operator can insert the bottom end of the stop bar 3 into the mounting groove 12. The movement of the stop bar 3 can drive the mounting block 31 into the mounting groove 12, and then the mounting bolt 32 is screwed in. The mounting bolt 32 can limit the mounting block 31, thus achieving the fixed installation of the stop bar 3. The second foam layer can protect the porous brick, reducing the possibility of direct contact between the porous brick and the stop bar 3, thereby reducing the possibility of damage to the porous brick.

[0031] like Figure 1 and 4 As shown, a protective rod 4 is provided on the outer side of the stop bar 3. The length direction of the protective rod 4 is perpendicular to the length direction of the stop bar. A snap-fit ​​block 33 is fixedly connected to the stop bar 3, and a snap-fit ​​groove 41 is provided on the protective rod 4 for the snap-fit ​​block 33 to be inserted. When it is necessary to install the protective rod 4, the operator can move the protective rod 4 so that the snap-fit ​​block 33 is inserted into the snap-fit ​​groove 41, thereby positioning the protective rod 4 and the stop bar 3, thus realizing the installation of the protective rod 4 and facilitating the protection of the porous brick by the protective rod 4.

[0032] The implementation principle of the anti-crack and shock-absorbing support frame for transporting porous bricks in this application embodiment is as follows:

[0033] The operator places the perforated brick on the bottom plate 1, and the first positioning column 11 is arranged in the through hole of the perforated brick, then the support sleeve 21 is placed on the first positioning column 11, and then the perforated brick is placed on the auxiliary plate 2, and the second positioning column 22 is arranged in the through hole of the perforated brick, then the support sleeve 21 on the other auxiliary plate 2 is placed on the second positioning column 22, and the above operation is repeated until the perforated bricks are placed completely; the blocking rod 3 is moved into the installation groove 12, and the installation bolt 32 is screwed to fix the blocking rod, the second foam layer can protect the perforated brick, realize the shock absorption of the perforated brick, then the protection rod 4 is installed on the blocking rod 3, the clamping block 33 is embedded in the clamping groove 41, the positioning of the protection rod 4 and the blocking rod 3 is realized, the structural strength of the blocking rod 3 is improved, and the protection of the perforated brick by the protection rod 4 is facilitated.

[0034] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A crack-resistant and shock-absorbing support frame for transporting porous bricks, characterized in that: Includes a base plate (1), on which a first foam layer is provided, and a plurality of first positioning posts (11) are fixedly connected to the base plate (1). An auxiliary plate (2) is provided above the base plate (1), and a support sleeve (21) is fixedly connected to the bottom of the auxiliary plate (2). The support sleeve (21) is sleeved on the first positioning posts (11). A plurality of second positioning posts (22) are fixedly connected to the top of the auxiliary plate (2). A stop bar (3) is connected to the base plate (1). The stop bar (3) is used to limit the perforated brick. A protective rod (4) is provided on the outside of the stop bar (3).

2. The anti-crack and shock-absorbing support frame for transporting porous bricks according to claim 1, characterized in that: The base plate (1) has an installation groove (12) for the bottom end of the stop bar (3) to be inserted.

3. The anti-crack and shock-absorbing support frame for transporting porous bricks according to claim 2, characterized in that: A mounting block (31) is fixedly connected to the stop bar (3), and a mounting bolt (32) is provided on the mounting block (31). The mounting bolt (32) passes through the mounting block (31) and is threadedly connected to the bottom of the mounting groove (12).

4. The anti-crack and shock-absorbing support frame for transporting porous bricks according to claim 1, characterized in that: The inner side of the stop bar (3) is provided with a second foam layer, which abuts against the porous brick.

5. The anti-crack and shock-absorbing support frame for transporting porous bricks according to claim 1, characterized in that: A snap-fit ​​block (33) is fixedly connected to the stop bar (3), and a snap-fit ​​groove (41) is provided on the protective rod (4), which allows the snap-fit ​​block (33) to be inserted.

6. The anti-crack and shock-absorbing support frame for transporting porous bricks according to claim 1, characterized in that: The first positioning post (11) and the second positioning post (22) are both tapered from bottom to top. The first positioning post (11) is provided with a first protective layer, and the second positioning post (22) is provided with a second protective layer. The first protective layer and the second protective layer are both made of rubber.