Building waterproof roll performance detection device with intelligent sensor

By combining the designed spraying and cleaning devices, the accuracy of waterproof coil performance detection and efficient utilization of water resources are achieved, and the detection error and resource waste caused by uneven water flow are solved.

CN120334097AInactive Publication Date: 2025-07-18SHANGHAI KANQIONG INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510576440.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-07-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing waterproof coil performance detection device has uneven water flow sprayed when there are minor defects, resulting in detection errors and low water resource utilization efficiency.

Method used

The combined design of push rod, circular plate, puncture rod, fixed block, water tank, water outlet pipe, water spray barrel, gear, water spray pipe, long plate, tooth block, bump, connecting plate, filter plate and water intake frame is adopted to realize the water flow detection of two parts, and combine the cleaning device of rotary rod, roller, scraper, rotary plate, arc block, telescopic elastic rod, and convex plate to realize the recycling of water flow.

Benefits of technology

Ensure the accuracy and reliability of the inspection, avoid errors caused by uneven water flow, save water resources, improve detection efficiency and reduce costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a building waterproof roll performance detection device with an intelligent sensor, and relates to the field of building materials.The building waterproof roll performance detection device with the intelligent sensor comprises an equipment frame, a discharging plate fixedly penetrates through the interior of the equipment frame, and a motor is fixedly installed above the equipment frame; the device further comprises a spraying device. Wherein the spraying device comprises a push rod, a circular plate, a puncture rod, a fixing block, a water tank, a water outlet pipe, a water spraying cylinder, a gear, a water spraying pipe, a long plate, a tooth block, a convex block, a connecting plate, a filtering plate and a water taking frame, the push rod is fixedly installed at the output end of the motor, and the puncture rod is fixedly installed below the circular plate; according to the building waterproof roll performance detection device with the intelligent sensor, water flow of two parts can be detected respectively, the detection accuracy is ensured, meanwhile, rotation can be performed when water is sprayed on a roll, so that spraying on the surface of the roll is more uniform, and errors caused by non-uniform water flow distribution during detection are prevented.
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Description

Technical Field

[0001] The present invention relates to the field of building materials, and particularly to a performance detection device for building waterproof coiled materials with intelligent sensors. Background Art

[0002] The performance detection device for building waterproof coiled materials with intelligent sensors is used to evaluate the quality and performance of waterproof coiled materials, ensure that they meet relevant standards and specifications, and the importance of the performance detection device for building waterproof coiled materials with intelligent sensors in ensuring the waterproof effect of buildings and extending the service life. It can provide a scientific basis for building construction and reduce the risk of leakage.

[0003] The patent with the patent announcement number CN219573863U relates to the technical problem of this patent: when the waterproof performance of the waterproof coiled material has only minor defects, only a small amount of water penetrates through the waterproof coiled material, and the water will only stay on the lower side of the waterproof coiled material without dripping down. At this time, it is impossible to judge the waterproof performance of the waterproof coiled material by observing the amount of water. The technical solution of this patent is: a performance detection device for building waterproof coiled materials, including a detection box and a box door, etc.; two box doors are installed in the front of the detection box. This patent scrapes the water on the lower side of the waterproof coiled material through a scraper, and the scraped water finally flows into the liquid level tube. In this way, even when the waterproof performance of the waterproof coiled material has only minor defects, the staff can also judge the damage degree of the waterproof coiled material by observing the amount of water in the liquid level tube.

[0004] In the above patent, the water on the lower side of the waterproof coiled material is scraped off through a scraper, and the scraped water finally flows into the liquid level tube, realizing that even when the waterproof performance of the waterproof coiled material has only minor defects, the staff can judge the damage degree of the waterproof coiled material by observing the amount of water in the liquid level tube. However, in the above patent, the water flow is sprayed at the same position and cannot fully simulate the natural state, which may cause uneven spraying of the water flow on the surface of the coiled material, resulting in detection errors. Therefore, a performance detection device for building waterproof coiled materials with intelligent sensors that can improve the detection accuracy is designed. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a performance detection device for building waterproof coiled materials with intelligent sensors, which solves the problems raised in the above background art.

[0006] To achieve the above object, the present invention is realized by the following technical solutions: A performance detection device for waterproof building materials with intelligent sensors, including an equipment frame, a feeding plate fixedly penetrating through the interior of the equipment frame, a motor fixedly installed above the equipment frame, and a spraying device; wherein, the spraying device includes a push rod, a circular plate, a puncture rod, a fixed block, a water tank, a water outlet pipe, a water spraying cylinder, a gear, a water spraying pipe, a long plate, a tooth block, a convex block, a connecting plate, a filter plate and a water intake frame. The push rod is fixedly installed at the output end of the motor, the circular plate is fixedly installed on the circumferential surface of the push rod, the puncture rod is fixedly installed below the circular plate, the fixed block is fixedly installed above the circular plate, the water tank is fixedly installed above the equipment frame, the water outlet pipe fixedly penetrates through the inner and outer walls of the water tank, the water spraying cylinder is rotatably installed at the end of the water outlet pipe away from the water tank, the gear is fixedly installed on the circumferential surface of the water spraying cylinder, the water spraying pipe is fixedly installed on the circumferential surface of the water spraying cylinder, the long plate is slidably installed on the top inner wall of the equipment frame, the tooth block is fixedly installed below the long plate, the convex block is fixedly installed below the long plate, the connecting plate is hinged inside the convex block, the filter plate is fixedly installed below the feeding plate, and the water intake frame is fixedly installed below the filter plate. When the circular plate moves downward, it drives the fixed block to move. The movement of the fixed block drives the connecting plate to rotate. The rotation of the connecting plate drives the convex block to move away from the circular plate. The movement of the convex block drives the long plate to move. The movement of the long plate drives the tooth block to move. The movement of the tooth block contacts and squeezes the gear to rotate. The rotation of the gear drives the water spraying cylinder to rotate.

[0007] According to the above technical solution, the gear meshes with the tooth block. One end of the connecting plate away from the convex block is hinged to the fixed block. At the same time, the water in the water tank enters the interior of the water spraying cylinder through the water outlet pipe. The rotation of the gear drives the water spraying cylinder to rotate.

[0008] According to the above technical solution, the cleaning device includes a rotating rod, a roller, a scraping plate, a rotating plate, an arc block and a convex plate. The rotating rod is rotatably installed inside the equipment frame. The roller is fixedly installed on the circumferential surface of the rotating rod. The scraping plate is fixedly installed inside the equipment frame. The rotating plate is fixedly installed on the circumferential surface of the rotating rod. The arc block is fixedly installed on the circumferential surface of the rotating plate. A moving groove is formed on the surface of the feeding plate. The convex plate is slidably installed inside the moving groove. The telescopic end of the telescopic spring rod resets and generates a knock, vibrating the residual water flow on the surface of the feeding plate to the bottom of the equipment frame.

[0009] According to the above technical solution, a telescopic spring rod is fixedly installed inside the moving groove. The free end of the telescopic spring rod is fixedly connected to the convex plate. When the convex plate moves downward, it squeezes the telescopic end of the telescopic spring rod to expand and contract. Subsequently, the telescopic end of the telescopic spring rod resets.

[0010] According to the above technical solution, one end of the arc block away from the rotating plate is set as arc surface one. One end of the convex plate away from the telescopic spring rod is set as arc surface two. The arc block rotates and contacts and squeezes the convex plate while preventing the arc block from rotating.

[0011] According to the above technical solution, the pressure device includes a moving plate, a pressing plate, a sliding plate and a pressure pipe. The moving plate slides through the inner and outer walls of the filter plate. The pressing plate is fixedly installed below the moving plate. The sliding plate is slidably installed inside the equipment frame. The pressure pipe fixedly penetrates the inner and outer walls of the equipment frame. When the pressing plate moves downward to contact and drive the sliding plate to move downward, at the same time, the water flow slides to the bottom of the equipment frame through the inclined surface of the sliding plate. The sliding plate continues to move downward to squeeze the water flow below, and the water flow enters the pressure pipe and enters the water tank through the pressure continuously exerted downward by the sliding plate.

[0012] According to the above technical solution, one end of the moving plate away from the pressing plate is set as arc surface three, and the upper part of the sliding plate is set as an inclined surface. When the moving plate moves downward, it drives the pressing plate to move downward, and the water flow slides to the bottom of the equipment frame through the inclined surface of the sliding plate.

[0013] According to the above technical solution, a first spring is arranged between the lower part of the feeding plate and the upper part of the filter plate, and a second spring is arranged between the lower part of the sliding plate and the bottom of the equipment frame. One end of the pressure pipe away from the equipment frame fixedly penetrates the inner and outer walls of the water tank. When the sliding plate moves downward to squeeze the second spring to contract, when the arc block does not contact the moving plate, it is reset by the second spring, and when the filter plate moves downward, it drives the first spring to stretch.

[0014] The present invention provides a performance detection device for building waterproof coiled materials with intelligent sensors, having the following beneficial effects: (1) For the performance detection device for building waterproof coiled materials with intelligent sensors, through the coordinated operation among the push rod, the round plate, the puncture rod, the fixed block, the water tank, the water outlet pipe, the water spraying cylinder, the gear, the water spraying pipe, the long plate, the tooth block, the convex block, the connecting plate, the filter plate, and the water intake frame, the detection is carried out by two parts of water flows respectively, preventing inaccurate detection of one part. Detecting with two parts of water flows can ensure the accuracy during detection, enhance the reliability of detection, and at the same time, when spraying water on the surface of the coiled material, it can rotate to make the water spraying more uniform. Uniform water spraying can ensure the uniform distribution of water on the surface of the coiled material, thereby more accurately detecting the waterproof performance of the coiled material, and at the same time, it can avoid errors caused by uneven water flow distribution during detection.

[0015] (2) The performance detection device for building waterproof coiled materials with intelligent sensors, through the coordinated operation among the rotating rod, roller, scraper, rotating plate, arc block, telescopic elastic rod, and convex plate, generates knocking to vibrate the residual water flow on the surface of the feeding plate to the bottom of the equipment frame, preventing water accumulation in the detection area, which may affect the detection due to the accumulated water, and at the same time, the accumulated water may cause errors during detection. Drainage can ensure the accuracy of detection. At the same time, when the arc block rotates and contacts and presses the convex plate, it simultaneously prevents the arc block from rotating. Also, when the coiled material enters above the feeding plate, it prevents warping during the piercing process of the coiled material, which may cause deformation of the coiled material and reduce the detection efficiency, resulting in production errors during detection.

[0016] (3) The performance detection device for building waterproof coiled materials with intelligent sensors, through the coordinated operation among the moving plate, pressing plate, sliding plate, spring one, spring two, and pressure pipe, realizes the recycling of water flow, reduces the consumption of water flow, helps to save water flow, thereby reducing costs. At the same time, the recycling of water flow shortens the preparation time and improves the detection efficiency. At the same time, the vibration generated by spring one enables the water flow contacting the bottom of equipment frame 1 through the filter plate to enter faster, improving the filtering effect and increasing the efficiency during operation. Description of the Drawings

[0017] Figure 1 is the schematic diagram of the overall structure of the present invention; Figure 2 is the schematic diagram of the overall sectional structure of the present invention; Figure 3 is the schematic diagram of the position structure of the water outlet pipe and the water spray cylinder of the present invention; Figure 4 is the present invention Figure 3 the enlarged schematic diagram of structure A; Figure 5 is the schematic diagram of the position structure of the rotating rod and the roller of the present invention; Figure 6 is the present invention Figure 5 the enlarged schematic diagram of structure B; Figure 7 is the schematic diagram of the position structure of the moving plate and the pressing plate of the present invention; Figure 8 is the schematic diagram of the position structure of the filter plate and the water intake frame of the present invention.

[0018] In the figure: 1. Equipment frame; 2. Feeding plate; 3. Motor; 4. Push rod; 5. Circular plate; 6. Puncturing rod; 7. Fixed block; 8. Water tank; 9. Water outlet pipe; 10. Water spraying cylinder; 11. Gear; 12. Water spraying pipe; 13. Long plate; 14. Tooth block; 15. Convex block; 16. Connecting plate; 17. Filter plate; 18. Water intake frame; 191. Rotating rod; 192. Drum; 193. Scraper; 194. Rotating plate; 195. Arc block; 196. Convex plate; 197. Telescopic spring rod; 198. Moving groove; 201. Moving plate; 202. Pressing plate; 203. Sliding plate; 204. Spring one; 205. Spring two; 206. Pressing pipe. Detailed implementation manner

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1 - 8, an embodiment of the present invention is: a performance detection device for building waterproof coiled materials with intelligent sensors, including an equipment frame 1, a feeding plate 2 fixedly penetrating through the inside of the equipment frame 1, a motor 3 fixedly installed above the equipment frame 1, and further including a spraying device; wherein, the spraying device includes a push rod 4, a circular plate 5, a puncturing rod 6, a fixing block 7, a water tank 8, a water outlet pipe 9, a water spraying cylinder 10, a gear 11, a water spraying pipe 12, a long plate 13, a tooth block 14, a convex block 15, a connecting plate 16, a filter plate 17 and a water intake frame 18. The push rod 4 is fixedly installed at the output end of the motor 3, the circular plate 5 is fixedly installed on the circumferential surface of the push rod 4, and an intelligent sensor is arranged inside the circular plate 5. The intelligent sensor includes a temperature sensor and a humidity sensor. The temperature sensor and the humidity sensor can detect the moisture content on the surface of the waterproof coiled material. Especially when detecting the water permeability or water penetration of the waterproof layer, by measuring the humidity change, the temperature sensor is used to monitor the construction environment and the temperature of the waterproof coiled material. Because temperature changes may affect the expansion, contraction and performance of the coiled material, the waterproof coiled material behaves differently in high-temperature or low-temperature environments. The temperature sensor can help record these environmental factors and can evaluate the effectiveness of the waterproof layer. The puncturing rod 6 is fixedly installed below the circular plate 5, the fixing block 7 is fixedly installed above the circular plate 5, the water tank 8 is fixedly installed above the equipment frame 1, the water outlet pipe 9 fixedly penetrates through the inner and outer walls of the water tank 8, the water spraying cylinder 10 is rotatably installed at one end of the water outlet pipe 9 away from the water tank 8, the gear 11 is fixedly installed on the circumferential surface of the water spraying cylinder 10, the water spraying pipe 12 is fixedly installed on the circumferential surface of the water spraying cylinder 10, the long plate 13 is slidably installed at the top of the inner wall of the equipment frame 1, the tooth block 14 is fixedly installed below the long plate 13, the convex block 15 is fixedly installed below the long plate 13, the connecting plate 16 is hinged inside the convex block 15, the filter plate 17 is fixedly installed below the feeding plate 2, and the water intake frame 18 is fixedly installed below the filter plate 17. The rotation of the water spraying cylinder 10 drives the rotation of the water spraying pipe 12, realizing that when spraying water on the surface of the coiled material, it can rotate to make the water spraying more uniform. Uniform water spraying can ensure that the water is evenly distributed on the surface of the coiled material, thereby more accurately detecting the waterproof performance of the coiled material, and at the same time, it can avoid errors caused by uneven water flow distribution during detection.

[0021] The gear 11 meshes with the tooth block 14, one end of the connecting plate 16 away from the convex block 15 is hinged to the fixing block 7, and at the same time, the water in the upper part of the water tank 8 enters the inside of the water spraying cylinder 10 through the water outlet pipe 9, and the rotation of the gear 11 drives the rotation of the water spraying cylinder 10.

[0022] During the operation of this embodiment: When it is necessary to detect the performance of the coil material, the motor 3 is started. The output end of the motor 3 moves downward to drive the push rod 4 to move downward. The push rod 4 moves downward to drive the round plate 5 to move downward. The round plate 5 moves downward to drive the puncture rod 6 to move downward. The puncture rod 6 moves downward to contact and squeeze the coil material and perform puncture. At the same time, the water in the water tank 8 enters the inside of the water spraying cylinder 10 through the water outlet pipe 9. The water inside the water spraying cylinder 10 is sprayed onto the surface of the coil material through the water spraying pipe 12. Part of the water flows along the punctured part of the coil material and enters the inside of the water collection frame 18 through the filter plate 17. Another part flows along the notch above the material feeding plate 2 and enters the bottom of the equipment frame 1 through the filter plate 17. The two parts of the water flow are used for detection respectively to prevent inaccurate detection of one part. Detecting with the two parts of the water flow can ensure the accuracy during detection, increase the reliability of the detection. At the same time, when the round plate 5 moves downward, it drives the fixed block 7 to move. The fixed block 7 moves to drive the connecting plate 16 to rotate. The connecting plate 16 rotates to drive the convex block 15 to move away from the round plate 5. The convex block 15 moves to drive the long plate 13 to move. The long plate 13 moves to drive the tooth block 14 to move. The tooth block 14 moves to contact and squeeze the gear 11 to rotate. The gear 11 rotates to drive the water spraying cylinder 10 to rotate. The water spraying cylinder 10 rotates to drive the water spraying pipe 12 to rotate, realizing that when spraying water on the surface of the coil material, it can rotate to make the water spraying more uniform. Uniform water spraying can ensure the uniform distribution of water on the surface of the coil material, thus more accurately detecting the waterproof performance of the coil material, and at the same time, it can avoid errors caused by uneven water flow distribution during detection.

[0023] Please refer to Figures 1 - 8 , in another embodiment of the present invention, it further includes a cleaning device and a pressure device; The cleaning device includes a rotating rod 191, a roller 192, a scraping plate 193, a rotating plate 194, an arc-shaped block 195 and a convex plate 196. The rotating rod 191 is rotatably installed inside the equipment frame 1. The roller 192 is fixedly installed on the circumferential surface of the rotating rod 191. The scraping plate 193 is fixedly installed inside the equipment frame 1. The rotating plate 194 is fixedly installed on the circumferential surface of the rotating rod 191. The arc-shaped block 195 is fixedly installed on the circumferential surface of the rotating plate 194. A moving groove 198 is formed on the surface of the material feeding plate 2. The convex plate 196 is slidably installed inside the moving groove 198. The telescopic end of the telescopic elastic rod 197 resets and generates a knock, vibrating the residual water flow on the surface of the material feeding plate 2 to the bottom of the equipment frame 1, preventing water accumulation from piling up in the detection area, which may affect the detection due to the accumulated water, and at the same time, the accumulated water may cause errors during detection. Draining the water can ensure the accuracy of the detection.

[0024] A telescopic elastic rod 197 is fixedly installed inside the moving groove 198. The free end of the telescopic elastic rod 197 is fixedly connected to the convex plate 196. The convex plate 196 moves downward to squeeze the telescopic end of the telescopic elastic rod 197 to expand and contract, and then the telescopic end of the telescopic elastic rod 197 resets.

[0025] One end of the arc block 195 away from the rotating plate 194 is set as the first arc surface, and one end of the convex plate 196 away from the telescopic spring rod 197 is set as the second arc surface. The arc block 195 rotates and contacts to squeeze the convex plate 196 while preventing the arc block 195 from rotating.

[0026] The pressure device includes a moving plate 201, a pressing plate 202, a sliding plate 203 and a pressure pipe 206. The moving plate 201 slides through the inner and outer walls of the filter plate 17. The pressing plate 202 is fixedly installed below the moving plate 201. The sliding plate 203 is slidably installed inside the equipment frame 1. The pressure pipe 206 fixedly penetrates the inner and outer walls of the equipment frame 1. The sliding plate 203 continues to move downward to squeeze the water flow below. The water flow enters the inside of the pressure pipe 206 and enters the inside of the water tank 8 under the pressure continuously squeezed by the sliding plate 203, realizing the recycling of the water flow, reducing the consumption of the water flow, helping to save the water flow, thereby reducing the cost. At the same time, the recycling of the water flow shortens the preparation time and improves the detection efficiency.

[0027] One end of the moving plate 201 away from the pressing plate 202 is set as the third arc surface, and the upper part of the sliding plate 203 is set as an inclined surface. The moving plate 201 moves downward to drive the pressing plate 202 to move downward, and the water flow slides to the bottom of the equipment frame 1 through the inclined surface of the sliding plate 203.

[0028] A first spring 204 is arranged between the lower part of the feeding plate 2 and the upper part of the filter plate 17, and a second spring 205 is arranged between the lower part of the sliding plate 203 and the bottom of the equipment frame 1. One end of the pressure pipe 206 away from the equipment frame 1 fixedly penetrates the inner and outer walls of the water tank 8. The sliding plate 203 moves downward to squeeze the second spring 205 to contract, and when the arc block 195 does not contact the moving plate 201, it is reset by the second spring 205. The filter plate 17 moves downward to drive the first spring 204 to stretch.

[0029] When the coil is taken out and contacts the scraping plate 193, the accumulated water on the surface of the coil is scraped off. At the same time, taking out the coil drives the rotating rod 191 to rotate. The rotating rod 191 rotates to drive the roller 192 to rotate. The roller 192 rotates to drive the rotating plate 194 to rotate. The rotating plate 194 rotates to drive the arc block 195 to rotate. The arc block 195 rotates and contacts to squeeze the convex plate 196 to move downward. The convex plate 196 moves downward to squeeze the telescopic end of the telescopic spring rod 197 to stretch. Subsequently, the telescopic end of the telescopic spring rod 197 resets and generates a knock, vibrating the residual water flow on the surface of the feeding plate 2 to the bottom of the equipment frame 1, preventing the accumulated water from accumulating in the detection area and affecting the detection. At the same time, the accumulated water may cause errors during the detection. Draining the water can ensure the accuracy of the detection. When the coil enters above the feeding plate 2, it drives the roller 192 to rotate. The arc block 195 rotates through the rotating rod 191. The arc block 195 rotates and contacts to squeeze the convex plate 196 while preventing the arc block 195 from rotating, preventing the coil from warping during the piercing process, resulting in deformation of the coil and reducing the detection efficiency, resulting in production errors during the detection.

[0030] When the arc block 195 rotates and contacts to squeeze the moving plate 201 to move downward, the downward movement of the moving plate 201 drives the pressing plate 202 to move downward. The downward movement of the pressing plate 202 contacts and drives the sliding plate 203 to move downward. At the same time, water flows through the inclined surface of the sliding plate 203 to the bottom of the equipment frame 1. The sliding plate 203 continues to move downward to squeeze the water flow below. The water flow enters the inside of the pressure pipe 206 and enters the inside of the water tank 8 under the pressure continuously squeezed by the sliding plate 203, realizing the recycling of the water flow, reducing the consumption of the water flow, helping to save the water flow, thereby reducing the cost. At the same time, the recycling of the water flow shortens the preparation time and improves the detection efficiency. The sliding plate 203 moves downward to squeeze the second spring 205 to contract. When the arc block 195 does not contact the moving plate 201, it is reset by the second spring 205. The reset of the second spring 205 drives the sliding plate 203 to reset. At the same time, the downward movement of the moving plate 201 drives the filter plate 17 to move downward. The downward movement of the filter plate 17 drives the first spring 204 to stretch, and then the reset generates vibration, enabling the water flow contacting the bottom of the equipment frame 1 through the filter plate 17 to enter faster, increasing the filtering effect and the working efficiency at the same time.

[0031] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A performance detection device for waterproof building materials with intelligent sensors, comprising an equipment frame (1), a feeding plate (2) fixedly penetrating through the interior of the equipment frame (1), and a motor (3) fixedly installed above the equipment frame (1), characterized in that: It also includes a spraying device, a cleaning device and a pressure device Among them, the spraying device includes a push rod (4), a circular plate (5), a puncture rod (6), a fixing block (7), a water tank (8), a water outlet pipe (9), a water spraying cylinder (10), a gear (11), a water spraying pipe (12), a long plate (13), a tooth block (14), a convex block (15), a connecting plate (16), a filter plate (17) and a water intake frame (18). The push rod (4) is fixedly installed at the output end of the motor (3). The circular plate (5) is fixedly installed on the circumferential surface of the push rod (4). The puncture rod (6) is fixedly installed below the circular plate (5). The fixing block (7) is fixedly installed above the circular plate (5). The water tank (8) is fixedly installed above the equipment frame (1). The water outlet pipe (9) fixedly penetrates the inner and outer walls of the water tank (8). The water spraying cylinder (10) is rotatably installed at one end of the water outlet pipe (9) away from the water tank (8). The gear (11) is fixedly installed on the circumferential surface of the water spraying cylinder (10). The water spraying pipe (12) is fixedly installed on the circumferential surface of the water spraying cylinder (10). The long plate (13) is slidably installed at the top of the inner wall of the equipment frame (1). The tooth block (14) is fixedly installed below the long plate (13). The convex block (15) is fixedly installed below the long plate (13). The connecting plate (16) is hinged inside the convex block (15). The filter plate (17) is fixedly installed below the feeding plate (2). The water intake frame (18) is fixedly installed below the filter plate (17).

2. The performance detection device for building waterproof coiled materials with intelligent sensors according to claim 1, characterized in that: The gear (11) meshes with the tooth block (14), and one end of the connecting plate (16) away from the convex block (15) is hinged to the fixing block (7).

3. The performance detection device for building waterproof coiled materials with intelligent sensors according to claim 2, characterized in that: The cleaning device includes a rotating rod (191), a roller (192), a scraping plate (193), a rotating plate (194), an arc block (195) and a convex plate (196). The rotating rod (191) is rotatably installed inside the equipment frame (1). The roller (192) is fixedly installed on the circumferential surface of the rotating rod (191). The scraping plate (193) is fixedly installed inside the equipment frame (1). The rotating plate (194) is fixedly installed on the circumferential surface of the rotating rod (191). The arc block (195) is fixedly installed on the circumferential surface of the rotating plate (194). A moving groove (198) is formed on the surface of the feeding plate (2). The convex plate (196) is slidably installed inside the moving groove (198).

4. The performance detection device for building waterproof coiled materials with intelligent sensors according to claim 3, characterized in that: An elastic telescopic rod (197) is fixedly installed inside the moving groove (198), and the free end of the elastic telescopic rod (197) is fixedly connected to the convex plate (196).

5. The performance detection device for building waterproof coiled materials with intelligent sensors according to claim 4, characterized in that: One end of the arc block (195) away from the rotating plate (194) is set as a first arc surface, and one end of the convex plate (196) away from the elastic telescopic rod (197) is set as a second arc surface.

6. The performance detection device for building waterproof coiled materials with intelligent sensors according to claim 5, characterized in that: The pressure device includes a moving plate (201), a pressing plate (202), a sliding plate (203) and a pressing pipe (206). The moving plate (201) slides through the inner and outer walls of the filter plate (17). The pressing plate (202) is fixedly installed below the moving plate (201). The sliding plate (203) is slidably installed inside the equipment frame (1). The pressing pipe (206) fixedly penetrates the inner and outer walls of the equipment frame (1).

7. The performance detection device for building waterproof coiled materials with intelligent sensors according to claim 6, characterized in that: One end of the moving plate (201) away from the pressing plate (202) is set as arc surface three. The upper part of the sliding plate (203) is set as an inclined surface.

8. The performance detection device for waterproof building membranes with intelligent sensors according to claim 7, characterized in that: A first spring (204) is arranged between the lower part of the feeding plate (2) and the upper part of the filter plate (17). A second spring (205) is arranged between the lower part of the sliding plate (203) and the bottom of the equipment frame (1). One end of the pressing pipe (206) away from the equipment frame (1) fixedly penetrates the inner and outer walls of the water tank (8).

Citation Information

Patent Citations

  • Device for detecting performance of waterproof coiled material for building

    CN219573863U