Insulation board detector
By designing a thermal insulation panel detector combining compression strength detection equipment, thickness detection equipment and flamethrower, the problem of inability to simultaneously detect compression strength, thickness and fire resistance in the prior art is solved, and efficient and comprehensive inspection is achieved.
Patent Information
- Application Number
- CN202421821454.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The existing insulation board detection device cannot conduct comprehensive inspection of the compression strength, thickness and fire resistance of the insulation board at the same time, resulting in low detection efficiency and poor practicality.
An insulation board detector is designed, combining compression strength detection equipment, thickness detection equipment and flamethrower to achieve synchronous detection of the insulation board through electric slide rails and clamping components, including clamping, compression strength detection, thickness detection and fire resistance detection.
Synchronous detection of the compression strength, thickness and fire resistance of the insulation board is achieved, and the detection efficiency and practicality are improved.
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Figure CN223051033U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of thermal insulation board detectors, and particularly relates to a thermal insulation board detector. Background Art
[0002] The application number 201922380888.7 provides a thermal insulation board detector for building safety detection. By setting a base, the effect of placing the first slider is achieved. By the first slider, the effect of driving the first fixing plate to move is achieved. By the first fixing plate, the effect of placing the thermal insulation board is achieved. By the first cylinder and the clamping plate, the effect of fixing the thermal insulation board is achieved. By the detection mechanism, the effect of detecting the thickness of the thermal insulation board is achieved. By the pressing plate, the effect of detecting the hardness of the thermal insulation board is achieved. This detector can detect the hardness and thickness of the thermal insulation board; by the support legs, the effect of supporting the base is achieved. By the pressure sensor, the effect of detecting the weight of the thermal insulation board is achieved. By the support rod, the effect of supporting the support plate is achieved. By the second fixing plate and the scale plate, it is convenient to detect the moving distance of the insertion rod, and it is convenient for people to observe the thickness of the thermal insulation board. By the second slider and the third cylinder, the effect of driving the pressing plate to move is achieved;
[0003] When the existing thermal insulation board is detected, the compressive strength, thickness and fire resistance of the thermal insulation board are usually detected. This device lacks the detection of the fire resistance of the thermal insulation board; however, the existing various detections of the thermal insulation board need to move the thermal insulation board to different detection devices for detection, and it is impossible to comprehensively detect a single thermal insulation board at the same time, resulting in low detection efficiency and poor practicability. Content of the Utility Model
[0004] In order to solve the problem of inconvenient simultaneous detection of thermal insulation boards in the above-mentioned existing technology, the utility model provides a thermal insulation board detector, which adopts a compressive strength detection device, a thickness detection device and a flamethrower to achieve the effect of synchronous detection of the thermal insulation board. The specific technical solution is as follows: A thermal insulation board detector, comprising: a detection box, a detection slot is opened in the middle of the detection box, a clamping member is connected to the bottom of the detection slot, an electric slide rail one is connected to the top of the detection slot, a connecting plate is connected to the output end of the electric slide rail one, and a compressive strength detection device and a thickness detection device are respectively installed at the bottom of the connecting plate; two chute bodies are symmetrically installed on the inner wall of the detection slot, an electric slide rail two is slidably connected between the two chute bodies, a connecting block is connected to the output end of the electric slide rail two, and a flamethrower is installed on the outer wall of the connecting block.
[0005] Preferably, the clamping component includes: a base, a connecting seat, a rotating shaft, a motor, a placement plate and a limiting plate. The bottom of the detection groove is connected with the base. Two connecting seats are installed on the top of the base. A rotating shaft is rotatably connected between the two connecting seats. A motor is connected to the outer wall of one of the connecting seats. The motor is connected to the rotating shaft. A placement plate is connected to the outer wall of the rotating shaft. A first chute is formed in the top of the placement plate. Two first sliders are symmetrically and slidably connected in the first chute. A limiting plate is connected to the top of the first slider. A first double-threaded rod is rotatably connected in the first chute. The two first sliders are threadedly connected to the outer wall of the first double-threaded rod. A first knob is rotatably connected to the side wall of the placement plate. The first knob is connected to the first double-threaded rod.
[0006] Preferably, two second chutes are formed in the opposite surfaces of the two limiting plates. A second slider is slidably connected in the second chute. A clamping plate is connected to the outer wall of the second slider. Two supporting seats are installed on the top of the base. The supporting seats are located at the bottom of the placement plate and are in contact with each other.
[0007] Preferably, a worm is rotatably connected to the middle of the limiting plate. A worm gear is meshed with the surface of the worm. A second double-threaded rod is sleeved in the central hole of the worm gear. The second double-threaded rod is rotatably connected in the two second chutes. The second slider is threadedly connected to the outer wall of the second double-threaded rod. A second knob is rotatably connected to the outer wall of the limiting plate. The second knob is connected to the worm.
[0008] Preferably, a hydraulic cylinder is connected to the top of the chute body. An inner slider is slidably connected in the chute body. An electric slide rail II is connected to the outer walls of the two inner sliders. An output shaft is connected to the top of the inner slider. The output shaft is connected to the hydraulic cylinder.
[0009] Preferably, a camera is connected to the top of the connecting block.
[0010] In addition, the insulation board detector provided by the above technical solution of the present utility model may further have the following additional technical features: a display screen is installed on the front outer wall of the detection box.
[0011] In the above technical solution, universal wheels are connected to the four corners of the bottom of the detection box.
[0012] A heat preservation board detector of the present utility model has the following beneficial effects compared with the prior art: The heat preservation board detector fixes the heat preservation board through a clamping component, and then drives the connecting plate to move through an electric slide rail 1, so that the compressive strength detection device and the thickness detection device move to the upper part of the heat preservation board respectively, and the heat preservation board is detected by the compressive strength detection device and the thickness detection device respectively; then the motor drives the rotating shaft to rotate, so that the placing plate rotates to a vertical state, and then the heat preservation board is detected by a flame sprayer; the flame sprayer is driven to move through a chute body and an electric slide rail 2, which is convenient for detecting the fire resistance of different positions of the heat preservation board, and the practicability is strong. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 FIG. 1 is a three-dimensional structural schematic diagram of the heat preservation board detector provided by the present utility model;
[0014] Figure 2 FIG. Figure 1 is an enlarged view of part A of
[0015] Figure 3 FIG. 2 is a front view structural schematic diagram of the heat preservation board detector provided by the present utility model;
[0016] Figure 4 FIG. Figure 3 is an enlarged view of part B of
[0017] Figure 5 FIG. 3 is a top view structural schematic diagram of the clamping component provided by the present utility model;
[0018] Among them, Figures 1 to 5 the reference numerals in the drawings and the component names are: 1, detection box; 2, detection groove; 3, clamping component; 4, electric slide rail 1; 5, connecting plate; 6, compressive strength detection device; 7, thickness detection device; 8, chute body; 9, electric slide rail 2; 10, connecting block; 11, flame sprayer; 12, camera; 13, inner slider; 14, hydraulic cylinder; 15, output shaft; 16, chute 2; 17, slider 2; 18, clamping plate; 19, double threaded rod 2; 20, worm; 21, worm gear; 22, turning knob 2; 23, display screen; 24, universal wheel; 25, support seat; 31, base; 32, connecting seat; 33, rotating shaft; 34, motor; 35, placing plate; 36, chute 1; 37, slider 1; 38, limiting plate; 39, double threaded rod 1; 310, turning knob 1. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] The following combines specific implementation cases and attached Figures 1 - 5The present utility model will be further described, but the present utility model is not limited to these embodiments. The present utility model provides a technical solution: a thermal insulation board detector, including: a detection box 1, a detection slot 2 is opened in the middle of the detection box 1, the detection slot 2 is opened on the front outer wall of the detection box 1, a clamping component 3 is connected to the bottom of the detection slot 2, an electric slide rail 1 4 is connected to the top of the detection slot 2, the output end of the electric slide rail 1 4 is connected to a connecting plate 5, a compressive strength detection device 6 and a thickness detection device 7 are respectively installed at the bottom of the connecting plate 5, and the compressive strength detection device 6 and the thickness detection device 7 are respectively adapted to the clamping component 3;
[0020] Two chute bodies 8 are symmetrically installed on the inner wall of the detection slot 2, the two chute bodies 8 are arranged in parallel, an electric slide rail 2 9 is slidably connected between the two chute bodies 8, the output end of the electric slide rail 2 9 is connected to a connecting block 10, and a flame sprayer 11 is installed on the outer wall of the connecting block 10.
[0021] As a preferred solution, further, the clamping component 3 includes: a base 31, a connecting seat 32, a rotating shaft 33, a motor 34, a placing plate 35 and a limiting plate 38. The base 31 is connected to the bottom of the detection slot 2, two connecting seats 32 are installed on the top of the base 31, the two connecting seats 32 are arranged in parallel, a rotating shaft 33 is rotatably connected between the two connecting seats 32, a motor 34 is connected to the outer wall of one connecting seat 32, the motor 34 is connected to the rotating shaft 33, a placing plate 35 is connected to the outer wall of the rotating shaft 33, a chute 1 36 is opened on the top of the placing plate 35, two slider 1s 37 are symmetrically and slidably connected in the chute 1 36, a limiting plate 38 is connected to the top of the slider 1 37, a double threaded rod 1 39 is rotatably connected in the chute 1 36, and the two slider 1s 37 are respectively threadedly connected to the outer walls of the two reverse threads on both sides of the double threaded rod 1 39. A turning knob 1 310 is rotatably connected to the side wall of the placing plate 35, and the turning knob 1 310 is connected to the double threaded rod 1 39.
[0022] As a preferred solution, further, two chute 2s 16 are opened on the opposite surfaces of the two limiting plates 38, the two chute 2s 16 are symmetrically opened on the outer wall of the limiting plate 38, a slider 2 17 is slidably connected in the chute 2 16, a clamping plate 18 is connected to the outer wall of the slider 2 17, and the two clamping plates 18 on the same side are symmetrically arranged; two support seats 25 are installed on the top of the base 31, the two support seats 25 are located on the side away from the connecting seat 32, the support seats 25 are located at the bottom of the placing plate 35 and are in contact with each other, and the support seats 25 are used to support the placing plate 35 in a horizontal position.
[0023] As a preferred solution, further, a worm 20 is rotatably connected to the middle of the limit plate 38. A worm gear 21 is meshed on the surface of the worm 20. A double threaded rod two 19 is sleeved in the central hole of the worm gear 21. The double threaded rod two 19 is rotatably connected in two chutes two 16. A slider two 17 is threadedly connected to the outer wall of the double threaded rod two 19. Opposite threads are provided on the outer walls on both sides of the double threaded rod two 19. A knob two 22 is rotatably connected to the outer wall of the limit plate 38. The knob two 22 is connected to the worm 20.
[0024] As a preferred solution, further, a hydraulic cylinder 14 is connected to the top of the chute body 8. An inner slider 13 is slidably connected in the chute body 8. An electric slide rail two 9 is connected to the outer walls of the two inner sliders 13. An output shaft 15 is connected to the top of the inner slider 13. The output shaft 15 is connected to the hydraulic cylinder 14. The hydraulic cylinder 14 drives the output shaft 15 to move, so that the output shaft 15 drives the inner slider 13 to slide in the chute body 8, changing the height of the electric slide rail two 9.
[0025] As a preferred solution, further, a camera 12 is connected to the top of the connecting block 10, which is convenient for the user to observe the detection process through the camera 12.
[0026] As a preferred solution, further, a display screen 23 is installed on the front outer wall of the detection box 1. The display screen 23 is used to display the detection results of the insulation board. Universal wheels 24 are connected to the four corners of the bottom of the detection box 1. The universal wheels 24 facilitate the movement of the detection box 1.
[0027] The electric slide rail one, compression strength detection device, thickness detection device, electric slide rail two, flame sprayer, camera, hydraulic cylinder and motor in this case are prior arts. The compression strength detection device, thickness detection device, hydraulic cylinder and motor have the same structures and connection manners as those in the cited documents. The motor is a three-phase motor. As long as the electric slide rail one, compression strength detection device, thickness detection device, electric slide rail two, flame sprayer, camera, hydraulic cylinder and motor meet the requirements of this case, they are acceptable.
[0028] Working principle: When the electrical components appearing in this application are in use, they are externally connected to a power supply and a control switch. After the present utility model is installed, first check the installation and fixation as well as the safety protection of the present utility model, and then it can be used. When in use, the user places the insulation board on the top of the placement plate 35, rotates the first knob 310, so that the first knob 310 drives the first double-threaded rod 39 to rotate. The first double-threaded rod 39 drives the two sliders 37 on both sides to move towards the center, so that the slider 37 drives the limiting plate 38 to move. The limiting plate 38 moves the insulation board to the center of the top of the placement plate 35 through the clamping plate 18. Then, rotate the two second knobs 22 on both sides respectively. The second knob 22 drives the worm 20 to rotate. The worm 20 meshes with the worm gear 21 to rotate, so that the worm gear 21 drives the second double-threaded rod 19 to rotate. The second double-threaded rod 19 drives the two sliders 17 on both sides to move towards the center of the limiting plate 38, and clamps and fixes the insulation board through the clamping plate 18. Then, control the thickness detection device 7 to detect the thickness of the insulation board, and then drive the connecting plate 5 to move through the first electric slide rail 4, so that the compressive strength detection device 6 moves above the insulation board, and then detect the insulation board through the compressive strength detection device 6. The user understands the detection result of the insulation board by observing the parameters on the display screen 23. Finally, drive the rotating shaft 33 to rotate through the motor 34, so that the rotating shaft 33 drives the placement plate 35 to rotate, and the placement plate 35 rotates to a vertical state. Start the flame sprayer 11 to detect the fire resistance of the insulation board. During the detection process, drive the output shaft 15 to move through the hydraulic cylinder 14. The output shaft 15 drives the inner slider 13 to slide in the chute body 8, changes the height of the second electric slide rail 9, and then drives the connecting block 10 to move horizontally through the second electric slide rail 9, so as to change the positions of the connecting block 10 and the flame sprayer 11, which is convenient for fire resistance detection of different parts of the insulation board. If the detected part of the insulation board does not catch fire and does not flow down, it means that the quality of the insulation board is qualified and the practicability is relatively strong.
[0029] In the description of the present utility model, the term "a plurality of" refers to two or more, unless otherwise clearly defined. The orientation or positional relationship indicated by terms such as "upper" and "lower" is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present utility model; terms such as "connection", "installation", and "fixation" should all be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0030] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, the present utility model may have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A thermal insulation board detector, comprising: The detection box (1) is characterized in that a detection slot (2) is provided in the middle of the detection box (1), a clamping component (3) is connected to the bottom of the detection slot (2), an electric slide rail (4) is connected to the top of the detection slot (2), a connecting plate (5) is connected to the output end of the electric slide rail (4), and a compression strength detection device (6) and a thickness detection device (7) are respectively installed at the bottom of the connecting plate (5); Two slide trough bodies (8) are symmetrically mounted on the inner wall of the detection trough (2); an electric slide rail 2 (9) is slidably connected between the two slide trough bodies (8); an output end of the electric slide rail 2 (9) is connected to a connecting block (10); and a flamethrower (11) is mounted on the outer wall of the connecting block (10).
2. The insulation board detector according to claim 1, characterized in that: The clamping component (3) comprises: a base (31), a connecting seat (32), a rotating shaft (33), a motor (34), a placement plate (35) and a limit plate (38); the bottom of the detection slot (2) is connected to the base (31); two connecting seats (32) are mounted on the top of the base (31); a rotating shaft (33) is rotatably connected between the two connecting seats (32); a motor (34) is connected to the outer wall of one side of the connecting seat (32); the motor (34) is connected to the rotating shaft (33); and a placement plate (35) is connected to the outer wall of the rotating shaft (33). A placement plate (35), wherein a slide groove (36) is provided on the top of the placement plate (35), wherein two sliders (37) are symmetrically slidably connected in the slide groove (36), wherein the top of the sliders (37) are connected to a limiting plate (38), wherein a double-threaded rod (39) is rotatably connected in the slide groove (36), wherein the two sliders (37) are threadedly connected to the outer wall of the double-threaded rod (39), and a rotating knob (310) is rotatably connected on the side wall of the placement plate (35), wherein the rotating knob (310) is connected to the double-threaded rod (39).
3. The insulation board detector according to claim 2, characterized in that: Two second slide grooves (16) are provided on opposite surfaces of the two limit plates (38), a second slide block (17) is slidably connected in the second slide groove (16), and a clamping plate (18) is connected to the outer wall of the second slide block (17); two support seats (25) are installed on the top of the base (31), and the support seats (25) are located at the bottom of the placement plate (35) and fit with each other.
4. The insulation board detector according to claim 3, characterized in that: A worm (20) is rotatably connected to the middle of the limit plate (38), a worm wheel (21) is meshed on the surface of the worm (20), a double-threaded rod (19) is sleeved on the center hole of the worm wheel (21), the double-threaded rod (19) is rotatably connected in the two slide grooves (16), the slider (17) is threadedly connected to the outer wall of the double-threaded rod (19), and a knob (22) is rotatably connected to the outer wall of the limit plate (38), and the knob (22) is connected to the worm (20).
5. The insulation board detector according to claim 1, characterized in that: The top of the slide trough body (8) is connected to a hydraulic cylinder (14), an inner sliding block (13) is slidably connected inside the slide trough body (8), the outer walls of the two inner sliding blocks (13) are connected to electric slide rails 2 (9), the top of the inner sliding blocks (13) is connected to an output shaft (15), and the output shaft (15) is connected to the hydraulic cylinder (14).
6. The insulation board detector according to claim 5, characterized in that: A camera (12) is connected to the top of the connection block (10).
7. The insulation board detector according to claim 1, characterized in that: A display screen (23) is installed on the front outer wall of the detection box (1), and universal wheels (24) are connected to the four corners of the bottom of the detection box (1).
Citation Information
Patent Citations
Insulation board detector for building safety detection
CN211576838U
Cited By
Detection device for production of ceramic-based heat insulation plate
CN120760601A