Concrete experiment mold

By using support components to fix the front and rear side plates in the concrete experimental mold, the problem of plate deformation during the pouring of concrete test blocks is solved, and the molding standardization of the test blocks is ensured.

CN223044789UActive Publication Date: 2025-07-01NINGBO HANGZHOU BAY NEW AREA PUDONG CONCRETE CO LTD
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Patent Information

Application Number
CN202421439973.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-21
Publication Date
2025-07-01
Estimated Expiration
2034-06-21

AI Technical Summary

Technical Problem

During the pouring of concrete test blocks, the deformation of the front side plate and the rear side plate leads to irregular molding of the concrete test block, affecting subsequent quality inspection.

Method used

A concrete experimental mold was designed, and the front side plate and the rear side plate were fixed with support components to improve its stability and reduce deformation.

Benefits of technology

The support component improves the stability of fixation between the front side plate and the rear side plate, reduces the deformation of the plate during concrete pouring, and ensures the standardization of the forming of the concrete test block.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a concrete experiment mold, and relates to the technical field of concrete experiment equipment. The device comprises a pouring bottom plate, a front side plate detachably installed on the pouring bottom plate, a rear side plate detachably installed on the pouring bottom plate, a left side plate detachably installed on the pouring bottom plate, a right side plate detachably installed on the pouring bottom plate and a supporting assembly installed on the front side plate and the rear side plate. The supporting assembly is arranged on the front side plate and the rear side plate in a supporting frame mode. The fixing stability between the front side plate and the rear side plate can be improved through the supporting assembly.
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Description

Technical Field

[0001] This application relates to the technical field of concrete test equipment, and particularly to a concrete test mold. Background Art

[0002] Concrete is one of the most important civil engineering materials in modern times. It is an artificial stone prepared by mixing binder materials, granular aggregates, water, and, if necessary, admixtures and fillers in a certain proportion, uniformly stirred, densely formed, and cured and hardened. Concrete has the characteristics of high compressive strength, good durability, and a wide range of strength grades.

[0003] To ensure the reliability of concrete structures, it is necessary to evaluate the production control and passing line of concrete. First, test blocks need to be made from the concrete, and then the quality performance of the concrete test blocks needs to be detected. Therefore, it is necessary to pour the concrete into a test mold, and after the concrete is formed, take it out for quality performance detection. A concrete test mold generally includes a mold-making bottom plate, a front side plate surrounding the front side of the mold-making bottom plate, a rear side plate surrounding the rear side of the mold-making bottom plate, and side plates surrounding the left and right sides of the mold-making bottom plate. The mold-making bottom plate, the front side plate, the rear side plate, and the side plates are all detachably connected and form a pouring cavity for pouring concrete around them. When the concrete is poured and formed, the front side plate, the rear side wall, and the side plates are removed, and the concrete test block is taken out for quality inspection.

[0004] Since the concrete test block needs to be poured into a relatively large block, during the pouring process, the pressure of the concrete is relatively large and the lengths of the front side plate and the rear side plate are relatively long. Therefore, it is easy to cause deformation of the front side plate and the rear side plate, which is likely to cause the concrete test block to be formed less regularly and affect the subsequent quality inspection of the concrete test block. Utility Model Content

[0005] In order to improve the stability of the fixation between the front side plate and the rear side plate, this application provides a concrete test mold.

[0006] A concrete test mold provided by this application adopts the following technical solution:

[0007] It includes a pouring bottom plate, a front side plate detachably installed on the pouring bottom plate, a rear side plate detachably installed on the pouring bottom plate, a left side plate detachably installed on the pouring bottom plate, a right side plate detachably installed on the pouring bottom plate, and a support assembly installed on the front side plate and the rear side plate. The support assembly is supported on the front side plate and the rear side plate.

[0008] By adopting the above technical scheme, when the concrete test mold is used to cast the concrete test block, the front side plate, the rear side plate, the left side plate and the right side plate are surrounded on the casting bottom plate, so that a casting cavity for concrete casting is formed between the front side plate, the rear side plate, the left side plate and the right side plate. Afterwards, the support assembly is installed and mounted on the front side plate and the rear side plate, so that the stability of the fixation between the front side plate and the rear side plate can be improved by the support assembly, thereby reducing the deformation of the front side plate and the rear side plate during the concrete casting process.

[0009] Optionally, the supporting assembly includes a support rod member mounted on the front side plate and the rear side plate, a first abutment member slidably mounted on the support rod member and pressed against the side of the front side plate toward the rear side plate, and a second abutment member slidably mounted on the support rod member and pressed against the side of the rear side plate toward the front side plate; the support rod member is provided with a third abutment member pressed against the side of the front side plate away from the rear side plate, and a fourth abutment member pressed against the side of the rear side plate away from the front side plate.

[0010] By adopting the above technical solution, when installing the support assembly, the support rod member is erected on the front side plate and the rear side plate, the first abutment is slidably installed on the support rod member and pressed against the front side plate, the second abutment is slidably installed on the support rod member and pressed against the rear side plate, and the third abutment on the support rod member is pressed against the other side of the front side plate, and the fourth abutment is pressed against the other side of the rear side plate, thereby enabling the support to be clamped more stably on the opposite sides of the front side plate and the rear side plate.

[0011] Optionally, the first abutment includes a first ring sleeve portion slidably sleeved on the support rod member and a first abutment portion pressed against one side of the front side plate, and the first ring sleeve portion is provided with a first locking member for locking the first ring sleeve portion.

[0012] By adopting the above technical solution, when installing the first abutment, the first ring sleeve portion of the first abutment is slidably sleeved on the support rod member, so that the first abutting portion abuts against one side of the front side plate, and the first ring sleeve portion is fixed to the support rod member by the first locking member, thereby facilitating the installation and adjustment of the first abutment.

[0013] Optionally, the second abutment member includes a second ring sleeve portion slidably sleeved on the support rod member and a second abutment portion pressed against one side of the rear side plate, and the second ring sleeve portion is provided with a second locking member for locking the second ring sleeve portion.

[0014] By adopting the above technical solution, when installing the second abutment, the second ring sleeve portion of the second abutment is slidably sleeved on the support rod member, so that the second abutting portion abuts against one side of the rear side plate, and the second ring sleeve portion is fixed to the support rod member by the second locking member, thereby facilitating the installation and adjustment of the second abutment.

[0015] Optionally, the fourth abutting member is slidably mounted on the strut member.

[0016] By adopting the above technical solution, the fourth abutting member is slidably mounted on the strut member, so that the distance between the third abutting member and the fourth abutting member can be adjusted. Thus, the fourth abutting member can be adjusted according to the widths of different left side plates and right side plates, making the support assembly adaptable to concrete test molds of more sizes.

[0017] Optionally, the fourth abutting member includes a fourth ring sleeve portion slidably sleeved on the strut member and a fourth abutting portion abutted against one side of the rear side plate. A fourth locking member for locking the fourth ring sleeve portion is provided on the fourth ring sleeve portion.

[0018] By adopting the above technical solution, when installing the fourth abutting member, the fourth ring sleeve portion of the fourth abutting member is slidably sleeved on the strut member, so that the fourth abutting portion abuts against one side of the rear side plate. The fourth ring sleeve portion is fixed on the strut member by the fourth locking member, thereby facilitating the installation and adjustment of the fourth abutting member.

[0019] Optionally, a first sliding groove for the front side plate to slidably engage is formed on the casting bottom plate, and a first sliding block slidably engaging in the first sliding groove is provided on the bottom side of the front side plate.

[0020] By adopting the above technical solution, when installing the front side plate, the first sliding block on the bottom side of the front side plate is slidably inserted into the first sliding groove on the casting bottom plate. This connection method is relatively convenient and can achieve the detachable installation of the front side plate.

[0021] Optionally, a second sliding groove for the rear side plate to slidably engage is formed on the casting bottom plate, and a second sliding block slidably engaging in the second sliding groove is provided on the bottom side of the rear side plate.

[0022] By adopting the above technical solution, when installing the rear side plate, the second sliding block on the bottom side of the rear side plate is slidably inserted into the second sliding groove on the casting bottom plate. This connection method is relatively convenient and can achieve the detachable installation of the rear side plate.

[0023] Optionally, a third sliding groove for the left side plate to slidably engage is formed on the casting bottom plate, and a third sliding block slidably engaging in the third sliding groove is provided on the bottom side of the left side plate.

[0024] By adopting the above technical solution, when installing the left side plate, the third sliding block on the bottom side of the left side plate is slidably inserted into the third sliding groove on the casting bottom plate. This connection method is relatively convenient and can achieve the detachable installation of the left side plate.

[0025] Optionally, a fourth sliding groove for the right side plate to slidably engage is formed on the casting bottom plate, and a fourth sliding block slidably engaging in the fourth sliding groove is provided on the bottom side of the right side plate.

[0026] By adopting the above technical solution, when installing the right side plate, the fourth slider at the bottom side of the right side plate is slidably inserted into the fourth chute on the casting bottom plate. This connection method is relatively convenient and can realize the detachable installation of the right side plate.

[0027] In summary, the present application includes at least one of the following beneficial technical effects:

[0028] 1. The present application includes a casting bottom plate, a front side plate, a rear side plate, a left side plate, a right side plate and a support assembly. The support assembly can improve the stability of the fixation between the front side plate and the rear side plate, thereby reducing the deformation of the front side plate and the rear side plate during the concrete pouring process.

[0029] 2. The fourth abutting member of the present application is slidably installed on the strut rod, so that the distance between the third abutting member and the fourth abutting member can be adjusted. Thus, the fourth abutting member can be adjusted according to the widths of different left side plates and right side plates, making the support assembly adaptable to concrete test molds of more sizes.

[0030] 3. The front side plate, the rear side plate, the left side plate and the right side plate of the present application are all slidably and detachably installed on the casting bottom plate. This connection method is relatively convenient, thus facilitating the loading and unloading of the concrete test mold. Description of the Drawings

[0031] Figure 1 is an overall structural schematic diagram of a concrete test mold according to an embodiment of the present application.

[0032] Figure 2 is a partial exploded schematic Figure 1 .

[0033] Figure 3 is a partial exploded schematic of a concrete test mold according to an embodiment of the present application. Figure 2 .

[0034] Description of reference numerals: 1, casting bottom plate; 11, first chute; 12, second chute; 13, third chute; 14, fourth chute; 2, front side plate; 21, first slider; 22, first card slot; 23, fourth card block; 3, rear side plate; 31, second slider; 32, second card block; 33, third card slot; 4, left side plate; 41, third slider; 42, first card block; 43, second card slot; 5, right side plate; 51, fourth slider; 52, third card block; 53, fourth card slot; 6, support assembly; 61, support rod member; 62, first abutting member; 621, first ring sleeve portion; 6211, first screw hole; 622, first abutting portion; 623, first locking member; 63, second abutting member; 631, second ring sleeve portion; 6311, second screw hole; 632, second abutting portion; 633, second locking member; 64, third abutting member; 65, fourth abutting member; 651, fourth ring sleeve portion; 6511, fourth screw hole; 652, fourth abutting portion; 653, fourth locking member. Detailed implementation manners

[0035] The following will further elaborate on this application in conjunction with the attached Figures 1-3 drawings.

[0036] An embodiment of this application discloses a concrete experiment mold. Refer to Figure 1 , the concrete experiment mold includes a casting bottom plate 1, a front side plate 2 detachably installed on the casting bottom plate 1, a rear side plate 3 detachably installed on the casting bottom plate 1, a left side plate 4 detachably installed on the casting bottom plate 1, a right side plate 5 detachably installed on the casting bottom plate 1, and a support assembly 6 installed on the front side plate 2 and the rear side plate 3.

[0037] Refer to Figure 2 , a first chute 11 for the front side plate 2 to slide and snap into is provided on the casting bottom plate 1. A first slider 21 that slides and snaps into the first chute 11 is provided on the bottom side of the front side plate 2. In this embodiment, the first chute 11 extends horizontally from left to right on the casting bottom plate 1. There can be various connection methods between the first slider 21 and the front side plate 2. In this embodiment, the first slider 21 and the front side plate 2 are integrally formed. When installing the front side plate 2, the first slider 21 on the bottom side of the front side plate 2 is slidably inserted into the first chute 11 on the casting bottom plate 1. This connection method is relatively convenient and can realize the detachable installation of the front side plate 2.

[0038] Refer to Figure 2, a second chute 12 for the rear side plate 3 to slide and engage is provided on the casting bottom plate 1. A second slider 31 that slides and engages into the second chute 12 is provided on the bottom side of the rear side plate 3. In this embodiment, the second chute 12 is horizontally extended and opened on the casting bottom plate 1 from right to left. There can be various connection methods between the second slider 31 and the rear side plate 3. In this embodiment, the second slider 31 and the rear side plate 3 are integrally formed. When installing the rear side plate 3, the second slider 31 on the bottom side of the rear side plate 3 is slidably inserted into the second chute 12 on the casting bottom plate 1. This connection method is relatively convenient and can realize the detachable installation of the rear side plate 3.

[0039] See Figure 2 , a third chute 13 for the left side plate 4 to slide and engage is provided on the casting bottom plate 1. A third slider 41 that slides and engages into the third chute 13 is provided on the bottom side of the left side plate 4. In this embodiment, the third chute 13 is horizontally extended and opened on the casting bottom plate 1 from back to front. There can be various connection methods between the third slider 41 and the left side plate 4. In this embodiment, the third slider 41 and the left side plate 4 are integrally formed. When installing the left side plate 4, the third slider 41 on the bottom side of the left side plate 4 is slidably inserted into the third chute 13 on the casting bottom plate 1. This connection method is relatively convenient and can realize the detachable installation of the left side plate 4.

[0040] See Figure 2 , a fourth chute 14 for the right side plate 5 to slide and engage is provided on the casting bottom plate 1. A fourth slider 51 that slides and engages into the fourth chute 14 is provided on the bottom side of the right side plate 5. In this embodiment, the fourth chute 14 is horizontally extended and opened on the casting bottom plate 1 from front to back. There can be various connection methods between the fourth slider 51 and the right side plate 5. In this embodiment, the fourth slider 51 and the right side plate 5 are integrally formed. When installing the right side plate 5, the fourth slider 51 on the bottom side of the right side plate 5 is slidably inserted into the fourth chute 14 on the casting bottom plate 1. This connection method is relatively convenient and can realize the detachable installation of the right side plate 5.

[0041] See Figure 2The front side panel 2 is provided with a first card slot 22 for the left side panel 4 to be inserted into, and the left side panel 4 is provided with a first card block 42 for inserting into the first card slot 22 on the side facing the front side panel 2, thereby the front side panel 2 and the left side panel 4 can be connected relatively stably through the cooperation between the first card block 42 and the first card slot 22. The left side panel 4 is provided with a second card slot 43 for the rear side panel 3 to be inserted into, and the rear side panel 3 is provided with a second card block 32 for inserting into the second card slot 43 on the side facing the left side panel 4, thereby the left side panel 4 and the rear side panel 3 can be connected relatively stably through the cooperation between the second card block 32 and the second card slot 43. The rear side panel 3 is provided with a third card slot 33 for the right side panel 5 to be inserted into, and the right side panel 5 is provided with a third card block 52 for inserting into the third card slot 33 on the side facing the rear side panel 3, thereby the right side panel 5 and the rear side panel 3 can be connected relatively stably through the cooperation between the third card block 52 and the third card slot 33. A fourth slot 53 for the front side panel 2 to be inserted into is provided on the right side panel 5, and a fourth block 23 which is inserted into the fourth slot 53 is provided on the side of the front side panel 2 facing the right side panel 5, so that the front side panel 2 and the right side panel 5 can be connected more stably through the cooperation between the fourth block 23 and the fourth slot 53.

[0042] See also Figure 3 The support assembly 6 is supported and mounted on the front side plate 2 and the rear side plate 3. The support assembly 6 includes a support rod 61 mounted on the front side plate 2 and the rear side plate 3, a first abutment 62 slidably mounted on the support rod 61 and pressed against the side of the front side plate 2 facing the rear side plate 3, and a second abutment 63 slidably mounted on the support rod 61 and pressed against the side of the rear side plate 3 facing the front side plate 2. The support rod 61 is provided with a third abutment 64 pressed against the side of the front side plate 2 away from the rear side plate 3, and a fourth abutment 65 pressed against the side of the rear side plate 3 away from the front side plate 2. When installing the support assembly 6, the support rod member 61 is erected on the front side plate 2 and the rear side plate 3, the first abutment 62 is slidably installed on the support rod member 61 and pressed against the front side plate 2, the second abutment 63 is slidably installed on the support rod member 61 and pressed against the rear side plate 3, and the third abutment 64 on the support rod member 61 is pressed against the other side of the front side plate 2, and the fourth abutment 65 is pressed against the other side of the rear side plate 3, thereby enabling the support to be clamped more stably on the opposite sides of the front side plate 2 and the rear side plate 3.

[0043] See also Figure 3, the first abutting member 62 includes a first ring sleeve portion 621 slidably sleeved on the support rod 61 and a first abutting portion 622 abutting against one side of the front side plate 2. A first locking member 623 for locking the first ring sleeve portion 621 is provided on the first ring sleeve portion 621. The first locking member 623 can be provided in various forms. In this embodiment, a first screw hole 6211 is formed in the first ring sleeve portion 621, and the first locking member 623 is provided as a bolt member that is inserted and tightened into the first screw hole 6211. When installing the first abutting member 62, the first ring sleeve portion 621 of the first abutting member 62 is slidably sleeved on the support rod 61, so that the first abutting portion 622 abuts against one side of the front side plate 2, and the first ring sleeve portion 621 is fixed to the support rod 61 through the first locking member 623, thereby facilitating the installation and adjustment of the first abutting member 62.

[0044] See Figure 3 , the second abutting member 63 includes a second ring sleeve portion 631 slidably sleeved on the support rod 61 and a second abutting portion 632 abutting against one side of the rear side plate 3. A second locking member 633 for locking the second ring sleeve portion 631 is provided on the second ring sleeve portion 631. The second locking member 633 can be provided in various forms. In this embodiment, a second screw hole 6311 is formed in the second ring sleeve portion 631, and the second locking member 633 is provided as a bolt member that is inserted and tightened into the second screw hole 6311. When installing the second abutting member 63, the second ring sleeve portion 631 of the second abutting member 63 is slidably sleeved on the support rod 61, so that the second abutting portion 632 abuts against one side of the rear side plate 3, and the second ring sleeve portion 631 is fixed to the support rod 61 through the second locking member 633, thereby facilitating the installation and adjustment of the second abutting member 63.

[0045] See Figure 3 , the fourth abutting member 65 is slidably mounted on the support rod 61. The fourth abutting member 65 is slidably mounted on the support rod 61, so that the distance between the third abutting member 64 and the fourth abutting member 65 can be adjusted. Thus, the fourth abutting member 65 can be adjusted according to the widths of different left side plates 4 and right side plates 5, so that the support assembly 6 can be adapted to concrete test molds of more sizes.

[0046] See Figure 3, the fourth abutting member 65 includes a fourth ring sleeve portion 651 slidably sleeved on the strut member 61 and a fourth abutting portion 652 abutting against one side of the rear side plate 3. A fourth locking member 653 for locking the fourth ring sleeve portion 651 is provided on the fourth ring sleeve portion 651. The fourth locking member 653 can be provided in various forms. In this embodiment, a fourth screw hole 6511 is formed in the fourth ring sleeve portion 651, and the fourth locking member 653 is provided as a bolt member that is inserted and tightened into the fourth screw hole 6511. When installing the fourth abutting member 65, the fourth ring sleeve portion 651 of the fourth abutting member 65 is slidably sleeved on the strut member 61, so that the fourth abutting portion 652 abuts against one side of the rear side plate 3, and the fourth ring sleeve portion 651 is fixed to the strut member 61 through the fourth locking member 653, thereby facilitating the installation and adjustment of the fourth abutting member 65.

[0047] The implementation principle of a concrete test mold according to an embodiment of the present application is as follows:

[0048] When using this concrete test mold to pour a concrete test block, the front side plate 2, the rear side plate 3, the left side plate 4, and the right side plate 5 are surrounded on the pouring bottom plate 1, so that a pouring cavity for pouring concrete is formed between the front side plate 2, the rear side plate 3, the left side plate 4, and the right side plate 5. Then, the support assembly 6 is installed on the front side plate 2 and the rear side plate 3, thereby improving the stability of the fixation between the front side plate 2 and the rear side plate 3 through the support assembly 6.

[0049] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A concrete test mold, characterized in that: The invention comprises a casting bottom plate (1), a front side plate (2) detachably mounted on the casting bottom plate (1), a rear side plate (3) detachably mounted on the casting bottom plate (1), a left side plate (4) detachably mounted on the casting bottom plate (1), a right side plate (5) detachably mounted on the casting bottom plate (1), and a support assembly (6) mounted on the front side plate (2) and the rear side plate (3), wherein the support assembly (6) is supported and mounted on the front side plate (2) and the rear side plate (3); the support assembly (6) comprises a support assembly (6) mounted on the front side plate (2) and the rear side plate (3); A support member (61) on the rear side plate (3), a first stop member (62) slidably mounted on the support member (61) and pressed against the side of the front side plate (2) facing the rear side plate (3), and a second stop member (63) slidably mounted on the support member (61) and pressed against the side of the rear side plate (3) facing the front side plate (2), wherein the support member (61) is provided with a third stop member (64) pressed against the side of the front side plate (2) facing away from the rear side plate (3), and a fourth stop member (65) pressed against the side of the rear side plate (3) facing away from the front side plate (2).

2. A concrete test mold according to claim 1, characterized in that: The first abutment member (62) comprises a first ring sleeve portion (621) slidably sleeved on the support rod member (61) and a first abutment portion (622) pressed against one side of the front side plate (2), and the first ring sleeve portion (621) is provided with a first locking member (623) for locking the first ring sleeve portion (621).

3. A concrete test mold according to claim 1, characterized in that: The second abutment member (63) comprises a second annular sleeve portion (631) slidably sleeved on the support rod member (61) and a second abutment portion (632) abutting against one side of the rear side plate (3), and the second annular sleeve portion (631) is provided with a second locking member (633) for locking the second annular sleeve portion (631).

4. A concrete test mold according to claim 1, characterized in that: The fourth abutment member (65) is slidably mounted on the support rod member (61).

5. A concrete test mold according to claim 4, characterized in that: The fourth abutment member (65) comprises a fourth ring sleeve portion (651) slidably sleeved on the support rod member (61) and a fourth abutment portion (652) abutting against one side of the rear side plate (3); the fourth ring sleeve portion (651) is provided with a fourth locking member (653) for locking the fourth ring sleeve portion (651).

6. A concrete test mold according to claim 1, characterized in that: The casting bottom plate (1) is provided with a first sliding groove (11) for the front side plate (2) to slide into, and the bottom side of the front side plate (2) is provided with a first sliding block (21) that slides into the first sliding groove (11).

7. A concrete test mold according to claim 1, characterized in that: The casting bottom plate (1) is provided with a second sliding groove (12) for the rear side plate (3) to slide into, and the bottom side of the rear side plate (3) is provided with a second sliding block (31) that slides into the second sliding groove (12).

8. A concrete test mold according to claim 1, characterized in that: The casting bottom plate (1) is provided with a third sliding groove (13) for the left side plate (4) to slide into, and the bottom side of the left side plate (4) is provided with a third sliding block (41) that slides into the third sliding groove (13).

9. A concrete test mold according to claim 1, characterized in that: The casting bottom plate (1) is provided with a fourth sliding groove (14) for the right side plate (5) to slide into, and a fourth sliding block (51) is provided on the bottom side of the right side plate (5) for sliding into the fourth sliding groove (14).