Pressure detection device for building thermal insulation material
By designing a combination of components such as a workbench, conveyor belt, motor, and hydraulic rod, rapid clamping and pressure testing of aerated concrete was achieved, solving the problem of insufficient clamping structure in existing devices and improving testing efficiency.
Patent Information
- Application Number
- CN202423029976.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Existing testing devices for building exterior wall insulation materials lack a quick-connect structure for aerated concrete, requiring users to frequently place and limit the position, thus affecting work efficiency.
A pressure testing device was designed, comprising a workbench, a conveyor belt, a motor, a quick-clamping mechanism, a hydraulic rod, and a collecting plate. The quick-clamping mechanism is moved by the conveyor belt, the conveyor belt is rotated by the motor, the hydraulic rod applies pressure, and the collecting plate collects debris, thereby realizing the quick clamping and pressure testing of aerated concrete.
It improves the efficiency of pressure testing of aerated concrete by reducing the frequency of manual operation and improving the user's work efficiency through quick clamping and automated processing.
Smart Images

Figure CN223637280U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pressure detection technical field, especially relate to a building thermal insulation material pressure detection device. BACKGROUND
[0002] The building thermal insulation material pressure detection device is mainly designed to accurately measure and evaluate the pressure bearing performance of building thermal insulation materials under various conditions.
[0003] At present, the Chinese utility model with publication number CN216051148U discloses a building external wall thermal insulation material detection device, which belongs to the technical field of building material detection and comprises a base and a support baffle.
[0004] When detecting the pressure of building thermal insulation materials, a building external wall thermal insulation material detection device is used, and the building thermal insulation material pressure detection device is one of the devices. UTILITY MODEL CONTENTS
[0005] The utility model provides a building thermal insulation material pressure detection device, which aims to solve the problem that the existing building external wall thermal insulation material detection device lacks a structure for quickly clamping aerated concrete, which requires the user to frequently place and limit the aerated concrete, thereby affecting the user's work efficiency.
[0006] The utility model discloses a kind of pressure detection devices for building thermal insulation materials, including workbench and quick clamping mechanism, the inside of workbench is rotatably connected with conveyor belt, the right side of workbench is bolted with motor, the output of motor is connected with the right side of conveyor belt and workbench and is rotatably connected, quick clamping mechanism is fixedly connected on the surface of conveyor belt, the rear side of the top of workbench inside is slidably connected with collection plate, the top of workbench is bolted with support frame, the bottom of support frame is bolted with hydraulic rod, the bottom of hydraulic rod is bolted with pressing plate.
[0007] The quick clamping mechanism includes a fixed plate, a limiting hole, a limiting slot, a return spring, and a support plate. The fixed plate is fixedly connected to the surface of the conveyor belt. The limiting hole is formed in the inner side of the fixed plate. The limiting slot is formed on both sides of the fixed plate. The return spring is bolted to the inner side of the limiting slot. The support plate is bolted to the top of the return spring.
[0008] To achieve the effect of protecting the top of the support plate, as a preferred pressure detection device for building thermal insulation materials of the utility model, a protective sleeve is provided on the surface of the support plate. The surface of the protective sleeve is engraved with anti-skid lines.
[0009] To achieve the effect of increasing the stability of the bolt connection between the motor and the workbench, as a preferred pressure detection device for building thermal insulation materials of the utility model, a reinforcing gasket is bolted to the side of the motor close to the workbench. The reinforcing gasket is bolted to the inner side of the workbench away from the motor.
[0010] To achieve the effect of increasing the stability of the bolt connection between the hydraulic rod and the pressing plate, as a preferred pressure detection device for building thermal insulation materials of the utility model, an auxiliary ring is bolted to the bottom of the hydraulic rod. The auxiliary ring is bolted to the top of the pressing plate away from the hydraulic rod.
[0011] To achieve the effect of protecting the inner side of the limiting hole, as a preferred pressure detection device for building thermal insulation materials of the utility model, a protective pad is provided on the inner side of the limiting hole. The surface of the protective pad is engraved with anti-skid lines.
[0012] To achieve the effect of facilitating the collection of debris by the user, as a preferred pressure detection device for building thermal insulation materials of the utility model, the inner side of the collection plate is inclined. A baffle is connected to the rear side of the collection plate.
[0013] To achieve the effect of increasing the sliding flexibility of the collection plate, as a preferred pressure detection device for building thermal insulation materials of the utility model, a sliding groove is formed on the rear side of the inner side of the workbench. Sliding blocks are bolted to both sides of the collection plate. The sliding blocks are slidably connected to the inner side of the sliding groove.
[0014] In order to increase the flexibility of the conveyor belt when rotating, as a kind of building insulation material pressure detection device, the left side of the inside of the workbench is hinged with a rotating shaft, and the inside of the rotating shaft is rotatably connected with the left side of the conveyor belt.
[0015] Compared with the prior art, the building insulation material pressure detection device has the beneficial effects that:
[0016] The building insulation material pressure detection device has the following advantages. The workbench can support and limit the conveyor belt, motor, support frame and collection plate. The conveyor belt can support and limit the quick clamping mechanism and move the quick clamping mechanism. The motor can drive the conveyor belt to rotate. The collection plate can collect the debris caused by the crushing of aerated concrete that fails the pressure test. The support frame can support and limit the hydraulic rod. The hydraulic rod can drive the pressing plate to move downward. The pressing plate can apply pressure to the aerated concrete when moving downward, so as to test the pressure of the aerated concrete. The fixed plate can limit and support the limiting hole and the limiting groove. The limiting hole can support and limit the aerated concrete. The limiting groove can support and limit the return spring and the support plate. The support plate can support the bottom of the aerated concrete and move downward due to the gravity of the aerated concrete, so as to apply pressure to the return spring. After the pressure test of the aerated concrete is completed, the aerated concrete that fails the test will be deformed or damaged. After being transported to the top of the collection plate by the conveyor belt, the aerated concrete will fall into the inside of the collection plate. The return spring will reset the support plate due to the loss of pressure. The aerated concrete that passes the pressure test will be taken out by the user when being transported to the back side of the workbench by the conveyor belt. The return spring resets the support plate due to the loss of pressure of the aerated concrete, so that the user can quickly clamp and test the pressure of the aerated concrete, and the working efficiency of the user is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a whole structure diagram of the building insulation material pressure detection device of the utility model.
[0018] Figure 2 It is a structure schematic view of the return spring in the utility model.
[0019] Figure 3 It is a structure schematic view of the conveyor belt in the utility model.
[0020] Figure 4 It is a structure schematic view of the hydraulic rod in the utility model.
[0021] Figure 5 It is a structure schematic view of the collection plate in the utility model.
[0022] Figure 6 For the utility model Figure 3 A place amplification schematic view in the middle.
[0023] In the figure, 1, workbench;2, quick clamping mechanism;201, fixed plate;202, limit hole;203, limit slot;204, reset spring;205, support plate;3, conveying belt;4, motor;5, collection plate;6, support frame;7, hydraulic rod;8, pressing plate;9, protective sleeve;10, reinforcing gasket;11, auxiliary ring;12, protective pad;13, baffle;14, chute;15, sliding block;16, rotating shaft. DETAILED DESCRIPTION
[0024] In order to make the utility model purposes, technical scheme and advantages more clearly, the following is combined with the embodiment, and the utility model is further detailed.The specific embodiments described herein are merely used to explain the utility model, and are not used to limit the utility model.
[0025] In the description of the utility model, it is understood that the orientation or positional relationship indicated by the terms such as“length”,“width”,“upper”,“lower”,“front”,“rear”,“left”,“right”,“vertical”,“horizontal”,“top”,“bottom”,“inner”,“outer” is based on the orientation or positional relationship shown in the drawing, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.In addition, in the description of the utility model, the meaning of“multiple” is two or more than two, unless otherwise specifically limited.
[0026] Please refer to Figures 1-6 The utility model provides technical scheme: a building thermal insulation material pressure detection device, including workbench 1 and quick clamping mechanism 2, the inner side of workbench 1 is rotatably connected with conveying belt 3, the right side of workbench 1 is bolted with motor 4, the output end of motor 4 is rotatably connected with the right side of conveying belt 3 through workbench 1, quick clamping mechanism 2 is fixedly connected on the surface of conveying belt 3, the rear side of the inner side top of workbench 1 is slidably connected with collection plate 5, the top of workbench 1 is bolted with support frame 6, the bottom of support frame 6 is bolted with hydraulic rod 7, the bottom of hydraulic rod 7 is bolted with pressing plate 8;
[0027] The quick clamping mechanism 2 comprises a fixed plate 201, a limiting hole 202, a limiting groove 203, a reset spring 204 and a supporting plate 205, the fixed plate 201 is fixedly connected to the surface of the conveying belt 3, the limiting hole 202 is formed in the inner side of the fixed plate 201, the limiting groove 203 is formed in the two sides of the fixed plate 201, the reset spring 204 is bolted to the inner side of the limiting groove 203, and the supporting plate 205 is bolted to the top of the reset spring 204.
[0028] In the embodiment, the workbench 1 can support and limit the conveying belt 3, the motor 4, the supporting frame 6 and the collecting plate 5, the conveying belt 3 can support and limit the quick clamping mechanism 2 and drive the quick clamping mechanism 2 to move, the motor 4 can drive the conveying belt 3 to rotate, the collecting plate 5 can collect the debris caused by the broken aerated concrete due to the pressure test, the supporting frame 6 can support and limit the hydraulic rod 7, the hydraulic rod 7 can drive the pressing plate 8 to move downward, the pressing plate 8 can exert pressure on the aerated concrete when moving downward, the aerated concrete is subjected to the pressure test, the fixed plate 201 can limit and support the limiting hole 202 and the limiting groove 203, the limiting hole 202 can support and limit the aerated concrete, the limiting groove 203 can support and limit the reset spring 204 and the supporting plate 205, the supporting plate 205 can support the bottom of the aerated concrete, and the supporting plate 205 is driven to move downward due to the gravity of the aerated concrete, so that the reset spring 204 is subjected to pressure, the aerated concrete that fails to pass the test is deformed or damaged, and after being transported to the top of the collecting plate 5 by the conveying belt 3, the aerated concrete falls into the inner side of the collecting plate 5, and the reset spring 204 drives the supporting plate 205 to reset due to the loss of pressure, the aerated concrete that passes the test is taken out by the user when being conveyed to the rear side of the workbench 1 by the conveying belt 3, and the reset spring 204 drives the supporting plate 205 to reset due to the loss of pressure of the aerated concrete, so that the user can quickly clamp and test the aerated concrete, and the working efficiency of the user is improved.
[0029] As the technical optimization scheme of the utility model, the surface of the supporting plate 205 is sleeved with a protective sleeve 9, and the surface of the protective sleeve 9 is engraved with anti-skid lines.
[0030] In the embodiment, the surface of the supporting plate 205 is protected by the protective sleeve 9, and the friction between the protective sleeve 9 and the aerated concrete is increased by the anti-skid lines.
[0031] As the technical optimization scheme of the utility model, the motor 4 is bolted with a reinforcing gasket 10 on the side close to the workbench 1, and the reinforcing gasket 10 is bolted to the inner side of the workbench 1 on the side away from the motor 4.
[0032] In the embodiment, the reinforcing gasket 10 is arranged, so that the stability of the bolt connection between the motor 4 and the workbench 1 is increased.
[0033] As a technical optimization scheme of the utility model, the bottom of the hydraulic rod 7 is bolted with an auxiliary ring 11, and the side of the auxiliary ring 11 away from the hydraulic rod 7 is bolted on the top of the pressing plate 8.
[0034] In the embodiment, the auxiliary ring 11 is arranged, so that the stability of the bolt connection between the hydraulic rod 7 and the pressing plate 8 is increased.
[0035] As a technical optimization scheme of the utility model, the inner side of the limiting hole 202 is sleeved with a protective pad 12, and the surface of the protective pad 12 is engraved with anti-skid lines.
[0036] In the embodiment, the protective pad 12 is arranged, so that the inner side of the limiting hole 202 is protected, and the anti-skid lines are arranged, so that the friction between the protective pad 12 and the aerated concrete is increased.
[0037] As a technical optimization scheme of the utility model, the inner side of the collecting plate 5 is a slope, and the rear side of the collecting plate 5 is clamped with a baffle 13.
[0038] In the embodiment, the inner side of the collecting plate 5 is a slope, so that the damaged aerated concrete or aerated concrete debris collected in the inner side of the collecting plate 5 is guided to one side of the baffle 13, and the baffle 13 is arranged, so that after the user slides the collecting plate 5 out of the workbench 1, the aerated concrete or aerated concrete debris in the inner side of the collecting plate 5 is discharged by opening the baffle 13, which is convenient for the user to collect.
[0039] As a technical optimization scheme of the utility model, the rear side of the inner side of the workbench 1 is provided with a sliding groove 14, and the two sides of the collecting plate 5 are bolted with sliding blocks 15, and the sliding blocks 15 are slidingly connected to the inner side of the sliding groove 14.
[0040] In the embodiment, the sliding groove 14 is arranged, so that the sliding blocks 15 are limited, and the sliding blocks 15 are arranged, so that the flexibility of the collecting plate 5 when sliding on the inner side of the workbench 1 is increased.
[0041] As a technical optimization scheme of the utility model, the left side of the inner side of the workbench 1 is bolted with a rotating shaft 16, and the inner side of the rotating shaft 16 is rotatably connected with the left side of the conveying belt 3.
[0042] In the embodiment, the rotating shaft 16 is arranged, so that the flexibility of the conveying belt 3 when rotating is increased.
[0043] Working principle: first, the user will workbench 1 to the desired work site, and then the user power and start the motor 4, the motor 4 will drive the conveyor belt 3 rotation, in the conveyor belt 3 rotation, will drive the fixed plate 201 reciprocating motion, after the user will aerated concrete carding to the inside of the limiting hole 202, in the aerated concrete and limiting hole 202 carding, the bottom of the two sides of the aerated concrete will support plate 205 to apply pressure downward, drive support plate 205 through the limiting groove 203 to move down, in support plate 205 moves to the bottom of the limiting groove 203, aerated concrete will be in the limiting hole 202 carding complete, then through the conveyor belt 3 to the bottom of the support frame 6, then the user power and start the hydraulic rod 7, the hydraulic rod 7 will drive the pressure plate 8 to move down, to test the pressure of aerated concrete, after the aerated concrete through the test, the conveyor belt 3 will drive the fixed plate 201 to the back of the workbench 1, the user will aerated concrete from the inside of the limiting hole 202, support plate 205 will lose the weight of aerated concrete and lose the pressure of the reset spring 204, the reset spring 204 will drive the support plate 205 to move up to reset, and the aerated concrete that does not pass the pressure test, will be driven by the fixed plate 201 to move to the bottom of the conveyor belt 3 and the top of the collection plate 5, aerated concrete will fall to the inside of the collection plate 5 due to gravity, and the support plate 205 will be reset by the reset spring 204, finally, after the user detects the work is completed, the user pulls the collection plate 5, the collection plate 5 through the two sides of the slider 15 slide out of the inside of the workbench 1, the user will baffle 13 open the collection plate 5 inside the damaged aerated concrete or aerated concrete debris recycling can be.
[0044] The above is only the preferred embodiment of the present application, and is not intended to limit the present application, any modification, equivalent replacement and improvement within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. A pressure detection device for building insulation material, comprising a workbench (1) and a quick clamping mechanism (2), characterized in that: The inner side of the workbench (1) is rotatably connected with a conveyor belt (3), the right side of the workbench (1) is hingedly connected with a motor (4), the output end of the motor (4) penetrates the workbench (1) and is rotatably connected with the right side of the conveyor belt (3), the quick clamping mechanism (2) is fixedly connected to the surface of the conveyor belt (3), the rear side of the top of the inner side of the workbench (1) is slidably connected with a collecting plate (5), the top of the workbench (1) is hingedly connected with a support frame (6), the bottom of the support frame (6) is hingedly connected with a hydraulic rod (7), and the bottom of the hydraulic rod (7) is hingedly connected with a pressing plate (8). The quick clamping mechanism (2) comprises a fixed plate (201), a limiting hole (202), a limiting groove (203), a reset spring (204) and a supporting plate (205), the fixed plate (201) is fixedly connected to the surface of the conveyor belt (3), the limiting hole (202) is formed in the inner side of the fixed plate (201), the limiting groove (203) is formed on the two sides of the fixed plate (201), the reset spring (204) is hingedly connected to the inner side of the limiting groove (203), and the supporting plate (205) is hingedly connected to the top of the reset spring (204).
2. The pressure detecting device for building insulation material according to claim 1, wherein: The surface of the supporting plate (205) is sleeved with a protective sleeve (9), and the surface of the protective sleeve (9) is engraved with anti-skid lines.
3. The pressure detecting device for building insulation material according to claim 1, characterized in that: The side of the motor (4) close to the workbench (1) is hingedly connected with a reinforcing gasket (10), and the side of the reinforcing gasket (10) away from the motor (4) is hingedly connected to the inner side of the workbench (1).
4. The pressure detecting device for building insulation material according to claim 1, wherein: The bottom of the hydraulic rod (7) is hingedly connected with an auxiliary ring (11), and the side of the auxiliary ring (11) away from the hydraulic rod (7) is hingedly connected to the top of the pressing plate (8).
5. The pressure detecting device for building insulation material according to claim 1, wherein: The inner side of the limiting hole (202) is sleeved with a protective pad (12), and the surface of the protective pad (12) is engraved with anti-skid lines.
6. The pressure detecting device for building insulation material according to claim 1, wherein: The inner side of the collecting plate (5) is inclined, and the rear side of the collecting plate (5) is hingedly connected with a baffle (13).
7. The pressure detecting device for building insulation material according to claim 1, wherein: The rear side of the inner side of the workbench (1) is provided with a sliding groove (14), the two sides of the collecting plate (5) are hingedly connected with sliding blocks (15), and the sliding blocks (15) are slidably connected to the inner side of the sliding groove (14).
8. The pressure detecting device for building insulation material according to claim 1, wherein: The left side of the inner side of the workbench (1) is hingedly connected with a rotating shaft (16), and the inner side of the rotating shaft (16) is rotatably connected with the left side of the conveyor belt (3).
Citation Information
Patent Citations
Thermal insulation material detection device for building external wall
CN216051148U