一种土工膜破损检测装置
By designing a geomembrane damage detection device, the problem of mud on the geomembrane surface affecting the detection quality was solved by using automatic detection and cleaning components. This enabled automatic cleaning and winding, improving detection accuracy and processing efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU ZHENGYAN TESTING TECHNOLOGY CO LTD
- Filing Date
- 2025-06-03
- Publication Date
- 2026-07-17
AI Technical Summary
Existing geomembranes suffer from surface mud adhesion during damage testing, affecting the quality of the test. Furthermore, manual unloading is required after winding, which reduces processing efficiency.
A geomembrane damage detection device was designed, comprising a material guiding structure, a detection structure, a winding structure, and a cleaning component. It utilizes components such as an automatic detector, a robotic arm marking, a cleaning sponge, and a conveyor belt to achieve automatic cleaning and winding, reducing manual intervention.
It effectively removes mud and impurities from the surface of the geomembrane, ensuring accurate testing, and improves processing efficiency and reduces manpower consumption through an automatic winding structure.
Smart Images

Figure CN224518587U_ABST
Abstract
Claims
1. A geomembrane breakage detection device, comprising a material guiding structure (1), a detection structure (2) and a winding structure (3) are fixed on the material guiding structure (1), the winding structure (3) is located on the right side of the detection structure (2), characterized in that, The material guiding structure (1) includes a bottom box (11), and a detection box (12) is fixed on the upper side of the bottom box (11). The detection box (12) adjusts the position of the tension adjustment component (13) by telescopic structure. The tension adjustment assembly (13) includes a support frame (131), on which a motor drives an adjustment roller (132) to rotate; The winding structure (3) includes an unloading assembly (31), which is located below the winding roller (38). A moving assembly (32) is slidably connected to the bottom box (11). A first fixing plate (33) is fixed on the moving assembly (32). A second motor box (34) is fixed on the first fixing plate (33). A motor in the second motor box (34) drives the first limiting clamping assembly (35) to rotate. The first limiting clamping assembly (35) is located in front of the second limiting clamping assembly (36). The second limiting clamping assembly (36) is rotatably connected to the second fixing plate (37). The winding roller (38) is clamped and fixed between the second limiting clamping assembly (36) and the first limiting clamping assembly (35). The unloading assembly (31) includes a guide plate (311), which adjusts the position of the conveyor belt body (312) by telescopic structure. The moving component (32) includes a first motor housing (321), in which a motor drives a lead screw (322) to rotate, and the rotation of the lead screw (322) causes the slider (323) to slide back and forth; The first limiting clamping assembly (35) includes a hollow cover (351), which adjusts the position of the arc-shaped clamping plate (352) by telescopic structure.
2. The geomembrane break detection device according to claim 1, characterized in that: The detection structure (2) includes a support base (21), an automatic detector body (22) is fixed on the support base (21), a camera (23) is embedded on the automatic detector body (22), a position adjustment component (24) is fixed on the left side of the automatic detector body (22), a cleaning component (25) is fixed on the position adjustment component (24), and a marking component (26) is fixed on the right side of the automatic detector body (22).
3. The geomembrane break detection device of claim 2, wherein: The position adjustment component (24) includes a baffle (241), on which a motor drives a first rotating rod (242) to rotate, and an electric telescopic rod (243) is fixed on the first rotating rod (242).
4. The geomembrane break detection device of claim 2, wherein: The cleaning component (25) includes a support ring (251), in which a water storage pipe (252) is embedded. The water storage pipe (252) is connected to a water outlet pipe (254) through a water supply pipe (253). The water outlet pipe (254) is connected to a water outlet (255), which is located inside the cleaning sponge (256).
5. The geomembrane breach detection apparatus of claim 2, wherein: The marking assembly (26) includes a rotator (261), a robotic arm (262) fixed on the rotator (261), a robotic gripper (263) fixed on the robotic arm (262), and a marking pen (264) held between the robotic grippers (263).