A hydraulic engineering detection device for hydraulic engineering
Patent Information
- Application Number
- CN202521768784.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-20
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-08-20
AI Technical Summary
现有技术中在对水利工程的地基进行检测时多通过让敲击锤作自由落体运动,对地基进行敲打,实现检波器对检测到的数据进行收集,但是这样的方式,在进行一次敲击后若需要继续检测则需重新摇动摇把将敲击锤提起,较为繁琐,且在检测时有时需要不断通过敲击地基来进行检测,因此不能连续检测,不能边移动边检测,不能实现自动化,工作效率较低,为此,我们提出一种水利工程用水利工程检测装置
[0010]与现有技术相比,本实用新型的有益效果是:本水利工程用水利工程检测装置,具有以下好处:
Smart Images

Figure CN224651107U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water conservancy engineering technology, specifically to a water conservancy engineering testing device. Background Technology
[0002] Water conservancy projects are a general term for various engineering constructions undertaken to control, utilize, and protect surface and underground water resources and the environment. When constructing water conservancy projects, it is necessary to lay a solid foundation before construction can begin. Foundation testing of water conservancy projects is a major issue concerning the safety of people's lives and property. In existing technologies, the foundation testing of water conservancy projects is often carried out by allowing a hammer to fall freely and strike the foundation, with a detector collecting the data. However, this method is cumbersome, requiring the hammer to be lifted again after each strike, and sometimes requires continuous striking of the foundation, making continuous testing impossible, as is testing while moving the hammer, and it lacks automation, resulting in low work efficiency. Therefore, we propose a water conservancy project testing device. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the existing defects and provide a water conservancy project testing device that can automatically control the hammer to strike the foundation and can move and test at the same time, which can effectively solve the problems in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a water conservancy project testing device, comprising a mounting bucket and a hammering assembly; Mounting barrel: A control switch assembly is installed at the top, a detector and a battery are installed inside the mounting barrel, an adjustment assembly is installed inside the mounting barrel, a moving assembly is installed on the circumferential surface of the mounting barrel, and a conical ring is fixed at the lower end inside the mounting barrel. Hammering assembly: includes a connecting plate, guide tube, slide rod, hammer, extrusion plate, and spring. The connecting plate is installed inside the mounting barrel. A guide hole is opened in the middle of the connecting plate. A guide tube is fixed inside the guide hole. A slide rod is slidably connected inside the guide tube. A hammer is fixed to the lower end of the slide rod. An extrusion plate is fixed to the upper end of the slide rod. A spring is sleeved on the circumference of the slide rod. The upper end of the spring is fixed to the lower end of the extrusion plate. The lower end of the spring is fixed to the upper end of the mounting barrel. An extrusion assembly is installed on the upper side of the connecting plate. An adjustment assembly is connected to the connecting plate. The hammering assembly is used to hammer the foundation of the water conservancy project. Wherein: the input terminal of the control switch group is electrically connected to the output terminal of the battery, and the output terminal of the control switch group is electrically connected to the input terminal of the detector.
[0005] Furthermore, the extrusion assembly includes a fixed plate, a first motor, and a cam. The fixed plate is fixed to the upper side of the connecting plate, and the first motor is installed on the rear side of the fixed plate. The cam is fixed on the output shaft of the first motor and fits against the extrusion disc. The input end of the first motor is electrically connected to the output end of the control switch group. The extrusion assembly is used to extrude the extrusion disc.
[0006] Furthermore, the adjustment assembly includes a second motor, a threaded rod, and a limiting rod. A threaded hole is provided on the left side of the connecting plate, and a threaded rod is threadedly connected inside the threaded hole. The threaded rod is rotatably connected inside the mounting barrel. A limiting hole is provided on the right side of the connecting plate, and a limiting rod is slidably connected inside the limiting hole. The limiting rod is fixed inside the mounting barrel. A second motor is installed at the upper end of the mounting barrel, and the output shaft of the second motor is fixed to the upper end of the threaded rod. The input end of the second motor is electrically connected to the output end of the control switch group. The height of the striking hammer is adjusted by setting the adjustment assembly.
[0007] Furthermore, the movable component includes a fixing ring, a support frame, casters, and a brake plate. The fixing ring is fixed on the circumferential surface of the mounting barrel, and two corresponding support frames are fixed on the front and rear sides of the fixing ring. Two corresponding casters are installed on the lower side of the support frames, and brake plates are installed on the sides of the casters. The movable component facilitates the movement of the mounting barrel.
[0008] Furthermore, a fixing strip is fixed to the left end of the circumferential surface of the fixing ring, and two corresponding push rods are fixed to the front and rear sides of the fixing strip. The surface of the push rod is fixed with a rubber sleeve, and the user can push the installation bucket to move it by pushing the push rod.
[0009] Furthermore, an observation port is provided on the circumferential surface of the installation bucket, and a transparent plate is fixed inside the observation port. By setting the transparent plate, the user can easily observe the situation inside the installation bucket.
[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: This water conservancy project uses a water conservancy project testing device, which has the following advantages: The height of the hammering component can be adjusted by setting the adjustment component. After adjustment, the squeezing component is activated, causing the slide bar to move up and down reciprocally. The up and down reciprocating motion of the slide bar drives the hammer to move up and down reciprocally. During the up and down reciprocating motion, the foundation of the water conservancy project can be hammered. During the hammering process, the vibration generated by the hammering is analyzed by the detector. After analysis, the condition of the foundation of the water conservancy project can be known. At the same time, during the inspection, the installation bucket can be moved by the push rod to move and inspect the foundation of the water conservancy project. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the front structure of this utility model; Figure 2 This is a schematic diagram of the extrusion assembly structure of this utility model; Figure 3 This is a schematic diagram of the adjustment component structure of this utility model.
[0012] In the diagram: 1. Installation bucket, 2. Control switch assembly, 3. Detector, 4. Battery, 5. Hammering assembly, 51. Connecting plate, 52. Guide tube, 53. Slide rod, 54. Hammer, 55. Extrusion plate, 56. Spring, 6. Extrusion assembly, 61. Fixing plate, 62. First motor, 63. Cam, 7. Adjustment assembly, 71. Second motor, 72. Threaded rod, 73. Limiting rod, 8. Moving assembly, 81. Fixing ring, 82. Support frame, 83. Caster wheel, 84. Brake plate, 9. Conical ring, 10. Transparent plate, 11. Fixing strip, 12. Push rod, 13. Rubber sleeve. Detailed Implementation
[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0014] Please see Figure 1-3 This embodiment provides a technical solution: a water conservancy project testing device, including a mounting bucket 1 and a hammering assembly 5; Mounting barrel 1: A control switch assembly 2 is installed at the top. A detector 3 and a battery 4 are installed inside the mounting barrel 1. An adjustment assembly 7 is installed inside the mounting barrel 1. A moving assembly 8 is installed on the circumference of the mounting barrel 1. A conical ring 9 is fixed at the lower end inside the mounting barrel 1. The adjustment assembly 7 includes a second motor 71, a threaded rod 72, and a limit rod 73. A threaded hole is opened on the left side of the connecting plate 51, and the threaded rod 72 is threadedly connected inside the threaded hole. The threaded rod 72 is rotatably connected inside the mounting barrel 1. A limit hole is opened on the right side of the connecting plate 51, and a limit rod 73 is slidably connected inside the limit hole. The limit rod 73 is fixed inside the mounting barrel 1. A second motor 71 is installed at the upper end of the barrel 1. The output shaft of the second motor 71 is fixed at the upper end of the threaded rod 72. The input end of the second motor 71 is electrically connected to the output end of the control switch group 2. The moving component 8 includes a fixing ring 81, a support frame 82, a caster wheel 83, and a brake plate 84. A fixing ring 81 is fixed on the circumferential surface of the barrel 1. Two corresponding support frames 82 are fixed on the front and rear sides of the fixing ring 81. Two corresponding caster wheels 83 are installed on the lower side of the support frame 82. A brake plate 84 is installed on the side of the caster wheel 83. The moving component 8 facilitates the movement of the barrel 1. The height of the striking hammer 54 is adjusted by the adjusting component 7. Hammering assembly 5 includes a connecting plate 51, a guide tube 52, a slide rod 53, a hammer 54, a pressing disc 55, and a spring 56. The connecting plate 51 is located inside the mounting barrel 1. A guide hole is formed in the middle of the connecting plate 51, and a guide tube 52 is fixed inside the guide hole. A slide rod 53 is slidably connected inside the guide tube 52. The hammer 54 is fixed to the lower end of the slide rod 53, and the pressing disc 55 is fixed to the upper end of the slide rod 53. A spring 56 is fitted onto the circumference of the slide rod 53. The upper end of the spring 56 is fixed to the lower end of the pressing disc 55, and the lower end of the spring 56 is fixed to the upper end of the mounting barrel 1. An extrusion assembly 6 is installed on the upper side of the connecting plate 51, and an adjustment assembly 7 is connected to the connecting plate 51. The extrusion assembly 6 includes a fixed plate 61, a first motor 62, and a cam 63. The fixed plate 61 is fixed on the upper side of the connecting plate 51, and the first motor 62 is installed on the rear side of the fixed plate 61. The cam 63 is fixed on the output shaft of the first motor 62. The cam 63 is in contact with the extrusion disc 55. The input end of the first motor 62 is electrically connected to the output end of the control switch group 2. The extrusion assembly 6 is used to extrude the extrusion disc 55, and the hammering assembly 5 is used to hammer the foundation of the water conservancy project. Wherein: the input terminal of control switch group 2 is electrically connected to the output terminal of battery 4, and the output terminal of control switch group 2 is electrically connected to the input terminal of detector 3.
[0015] Among them: a fixing strip 11 is fixed to the left end of the circumferential surface of the fixing ring 81, and two corresponding push rods 12 are fixed on the front and rear sides of the fixing strip 11. A rubber sleeve 13 is fixed to the surface of the push rod 12, and the user can push the installation bucket 1 to move through the push rod 12.
[0016] The installation bucket 1 has an observation port on its circumference, and a transparent plate 10 is fixed inside the observation port. The transparent plate 10 allows the user to easily observe the inside of the installation bucket 1.
[0017] The working principle of the water conservancy engineering testing device provided by this utility model is as follows: During use, the second motor 71 is started to rotate the threaded rod 72. The rotation of the threaded rod 72 drives the connecting plate 51 to move, which in turn moves the striking hammer 54 downwards to adjust its height. After adjustment, the first motor 62 is started to rotate the cam 63. During the rotation of the cam 63, when its protruding part contacts the extrusion plate 55, it extrudes the extrusion plate 55 downwards. When the protruding part of the cam 63 moves away from the extrusion plate 55, the extrusion plate 55 will move downwards under the action of the spring 56. The continuous rotation of cam 63 will cause the extrusion plate 55 to reciprocate up and down. The up and down movement of the extrusion plate 55 will cause the slide rod 53 to reciprocate up and down. The up and down movement of the slide rod 53 will drive the hammer 54 to reciprocate up and down. During the up and down reciprocating movement, the foundation of the water conservancy project can be hammered. During the hammering process, the detector 3 will analyze the knocking generated by the hammering. After analysis, the foundation condition of the water conservancy project can be known. At the same time, during the detection process, the installation bucket 1 can be moved by the push rod 12 to move and detect the foundation of the water conservancy project.
[0018] It is worth noting that the control switch group 2 disclosed in the above embodiments is provided with buttons that correspond one-to-one with the first motor 62, the second motor 71 and the detector 3.
[0019] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A water conservancy project testing device, characterized in that: Includes the installation bucket (1) and the hammering assembly (5); Mounting barrel (1): A control switch group (2) is installed at the upper end. A detector (3) and a storage battery (4) are installed inside the mounting barrel (1). An adjustment component (7) is installed inside the mounting barrel (1). A moving component (8) is installed on the circumferential surface of the mounting barrel (1). A conical ring (9) is fixed at the lower end inside the mounting barrel (1). Hammering assembly (5): includes a connecting plate (51), a guide tube (52), a slide rod (53), a hammer (54), a pressing plate (55), and a spring (56). The mounting barrel (1) is provided with a connecting plate (51). A guide hole is provided in the middle of the connecting plate (51). A guide tube (52) is fixed inside the guide hole. A slide rod (53) is slidably connected inside the guide tube (52). A hammer (54) is fixed at the lower end of the slide rod (53). A pressing plate (55) is fixed at the upper end of the slide rod (53). A spring (56) is sleeved on the circumferential surface of the slide rod (53). The upper end of the spring (56) is fixed to the lower end of the pressing plate (55). The lower end of the spring (56) is fixed to the upper end of the mounting barrel (1). A pressing assembly (6) is installed on the upper side of the connecting plate (51). An adjusting assembly (7) is connected to the connecting plate (51). Wherein: the input end of the control switch group (2) is electrically connected to the output end of the storage battery (4), and the output end of the control switch group (2) is electrically connected to the input end of the detector (3).
2. The hydraulic engineering detection device for hydraulic engineering according to claim 1, characterized in that: The extrusion assembly (6) includes a fixed plate (61), a first motor (62) and a cam (63). The fixed plate (61) is fixed on the upper side of the connecting plate (51), and the first motor (62) is installed on the rear side of the fixed plate (61). The cam (63) is fixed on the output shaft of the first motor (62). The cam (63) is in contact with the extrusion disc (55). The input end of the first motor (62) is electrically connected to the output end of the control switch group (2).
3. The hydraulic engineering detection device for hydraulic engineering according to claim 1, characterized in that: The adjustment assembly (7) includes a second motor (71), a threaded rod (72), and a limiting rod (73). A threaded hole is provided on the left side of the connecting plate (51), and the threaded rod (72) is threadedly connected inside the threaded hole. The threaded rod (72) is rotatably connected inside the mounting barrel (1). A limiting hole is provided on the right side of the connecting plate (51), and a limiting rod (73) is slidably connected inside the limiting hole. The limiting rod (73) is fixed inside the mounting barrel (1). The second motor (71) is installed at the upper end of the mounting barrel (1). The output shaft of the second motor (71) is fixed at the upper end of the threaded rod (72). The input end of the second motor (71) is electrically connected to the output end of the control switch group (2).
4. The hydraulic engineering detection device for hydraulic engineering according to claim 1, characterized in that: The moving component (8) includes a fixing ring (81), a support frame (82), a caster wheel (83), and a brake plate (84). The fixing ring (81) is fixed on the circumferential surface of the mounting barrel (1). Two corresponding support frames (82) are fixed on the front and rear sides of the fixing ring (81). Two corresponding caster wheels (83) are installed on the lower side of the support frame (82). A brake plate (84) is installed on the side of the caster wheel (83).
5. The hydraulic engineering detection device for hydraulic engineering according to claim 4, characterized in that: A fixing strip (11) is fixed to the left end of the circumference of the fixing ring (81), and two corresponding push rods (12) are fixed to the front and rear sides of the fixing strip (11), and a rubber sleeve (13) is fixed to the surface of the push rod (12).
6. The water conservancy project testing device according to claim 1, characterized in that: An observation port is provided on the circumferential surface of the installation bucket (1), and a transparent plate (10) is fixed inside the observation port.