Forestry desertification control vegetation drip irrigation equipment
By designing forestry desertification prevention and control vegetation drip irrigation equipment, using steel wire ropes to drive the movement of polyhedrons and push the baffles to rotate, water can be directly injected into the sand, solving the problems of low drip irrigation efficiency and water resource waste in existing technologies and improving drip irrigation efficiency.
Patent Information
- Application Number
- CN202422882780.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-26
AI Technical Summary
The existing drip irrigation method for preventing and controlling forest desertification is inefficient and causes serious waste of water resources.
A forestry vegetation drip irrigation equipment for desertification control is designed. The multi-prism is driven by a steel wire rope to move, and the push plate drives the baffle to rotate, so that water is directly injected into the sand. Drip irrigation is carried out through drainage holes to reduce water waste.
It realizes the direct injection of water into the sand, reduces water waste and improves drip irrigation efficiency.
Smart Images

Figure CN223364722U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of preventing desertification, in particular to a forestry desertification prevention and control vegetation drip irrigation device. Background Art
[0002] In the northwest of my country, due to climatic reasons, the soil is severely desertified, so it is necessary to plant in the desertified sand to prevent complete desertification. Water needs to be added after planting, and regular irrigation is also required after planting. The traditional penetration method is mainly through drip irrigation, which uses a water truck to deliver water to the planting site, and then drip irrigation is carried out at the base of the vegetation through a drip irrigation pipe. However, this drip irrigation method requires long-term drip irrigation and it is difficult to deliver water to the roots. Therefore, this application provides a drip irrigation device that can be inserted into the sand. Utility Model Content
[0003] The technical problem to be solved by the present invention is to provide a forestry desertification prevention and control vegetation drip irrigation equipment to solve the problems of low efficiency and serious waste of water resources in the existing technology described in the background art for the drip irrigation method for desert planting.
[0004] To achieve the above purpose, the present invention provides the following technical solutions: a forestry desertification prevention and control vegetation drip irrigation equipment, comprising
[0005] The barrel body has a butt-jointed tube on its side wall;
[0006] The prism tube has a small open end that is seamlessly connected and communicated with the open end of the barrel body, and each inclined surface of the prism tube is provided with a drainage hole;
[0007] A plurality of baffles are located in the drainage hole, and one end of the baffle close to the barrel body is rotatably connected to the inner wall of the drainage hole;
[0008] The vertebral body is fixedly connected to the large open end of the prism tube;
[0009] A polygonal prism is located in the barrel, and the polygonal prism is movably arranged in the barrel;
[0010] A plurality of push plates are respectively arranged at one end of the polygonal prism extending into the prism tube, and the plurality of push plates are respectively facing the plurality of baffles, and the push plates are used to move with the polygonal prism to push the baffles to rotate;
[0011] A sliding sleeve is provided on the polygonal column;
[0012] A plurality of second springs have one end fixedly connected to the plurality of baffles respectively and the other end fixedly connected to the sliding sleeve.
[0013] Preferably, the inner wall of the barrel body is fixedly connected to a positioning net, the polygonal prism slides through the positioning net, a movable net is fixedly sleeved on the polygonal prism, a first spring is provided between the movable net and the positioning net, a steering tube is provided on the side wall of the barrel body that passes through the barrel body, a steel wire rope is provided on the steering tube that passes through the steering tube, and one end of the steel wire rope extends into the barrel body and is connected to the polygonal prism.
[0014] Preferably, a waterproof cloth is sealed in the barrel body, and the steel wire rope passes through the waterproof cloth and is seamlessly connected to the waterproof cloth.
[0015] Preferably, one end of the steel wire rope extending out of the steering tube has a pull ring.
[0016] The beneficial effects of adopting the above technical solution are:
[0017] In this application, the polygonal prism is driven to move by the steel wire rope, and the polygonal prism drives the push plate to move, and the push plate pushes the baffle to rotate. At this time, the second spring is stretched, and the polygonal prism moves relative to the sliding sleeve. At this time, the external water pipe of the docking tube injects water into the barrel body and discharges it from the drainage hole, thereby directly injecting water into the sand and reducing water waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a front view of a forestry desertification prevention and control vegetation drip irrigation device of the utility model.
[0019] Figure 2 The utility model is a cross-sectional view of a forestry desertification prevention and control vegetation drip irrigation device.
[0020] Figure 3 It is a cross-sectional view of the utility model after the baffle is rotated.
[0021] Among them: barrel body 10, handle 11, docking tube 12, prism tube 20, vertebral body 30, baffle 40, drainage hole 41, push plate 50, polygonal column 60, moving net 61, positioning net 62, first spring 63, wire rope 64, steering tube 65, pull ring 66, waterproof cloth 70, sliding sleeve 80, second spring 81. DETAILED DESCRIPTION
[0022] The embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0023] like Figure 1-3 In the first embodiment, a forestry desertification prevention and control vegetation drip irrigation device includes:
[0024] The barrel body 10 has a butt-joint tube 12 on its side wall;
[0025] The prism tube 20 has a small open end that is seamlessly connected and communicates with the open end of the barrel body 10. Each inclined surface of the prism tube 20 is provided with a drainage hole 41.
[0026] A plurality of baffles 40 are located in the drainage hole 41, and one end of the baffle 40 close to the barrel body 10 is rotatably connected to the inner wall of the drainage hole 41;
[0027] The cone 30 is fixedly connected to the large open end of the prism tube 20;
[0028] The polygonal column 60 is located in the barrel body 10 and is movably disposed in the barrel body 10;
[0029] A plurality of push plates 50 are respectively disposed at one end of the polygonal prism 60 extending into the prism tube 20. The push plates 50 are respectively opposite to the baffles 40. The push plates 50 are used to move with the polygonal prism 60 to push the baffles 40 to rotate.
[0030] Sliding sleeve 80, which is mounted on the polygonal column 60;
[0031] A plurality of second springs 81 have one end fixedly connected to the plurality of baffles 40 and the other end fixedly connected to the sliding sleeve 80 .
[0032] This embodiment is implemented as follows:
[0033] When the present application is in use, one hand holds the handle 11 and inserts the barrel body 10 downward so that the vertebral body 30 can be inserted into the sand, and then the polygonal column 60 moves in the barrel body 10, so that the polygonal column 60 can drive the push plate 50 to move, so that the push plate 50 can push the baffle 40, so that the baffle 40 rotates out of the drainage hole 41, so that the drainage hole 41 opens a gap. When the polygonal column 60 moves, it will move in the sliding sleeve 80. At this time, the second spring 81 will be stretched, and then the water pipe connected to the butt pipe 12 will send water into the barrel body 10, and then into the prism tube 20. After the water injection is completed, the polygonal column 60 is reset. Under the action of the second spring 81, the baffle 40 is reset, and finally the barrel body 10 is pulled out of the sand. In this process, some sand will enter the prism tube 20 and be flushed out of the prism tube 20 during the next drip irrigation process.
[0034] The advantage of the present application over the prior art is that water can be directly injected into the sand.
[0035] See also Figure 1 、 2 3. A positioning net 62 is fixedly connected to the inner wall of the barrel body 10, and the polygonal column 60 slides through the positioning net 62. A movable net 61 is fixedly sleeved on the polygonal column 60, and a first spring 81 is provided between the movable net 61 and the positioning net 62. A steering tube 65 is provided on the side wall of the barrel body 10 and passes through the barrel body 10. The steering tube 65 has a steel wire rope 64 passing through the steering tube 65, and one end of the steel wire rope 64 extending into the barrel body 10 is connected to the polygonal column 60.
[0036] By pulling the steel wire rope 64 , the polygonal column 60 can be driven to move, and the first spring 81 can reset the polygonal column 60 , thereby driving the push plate 50 to reset.
[0037] See also Figure 2 、 3 A waterproof cloth 70 is sealed and connected to the barrel body 10 , and the steel wire rope 64 passes through the waterproof cloth 70 and is seamlessly connected to the waterproof cloth 70 .
[0038] The provision of the waterproof cloth 70 can prevent water from entering the steering tube 65 .
[0039] See also Figure 1 、 2 3. One end of the wire rope 64 extending out of the steering tube 65 has a pull ring 66.
[0040] The pull ring 66 can facilitate workers to manually pull the wire rope 64 .
[0041] The above are only preferred embodiments of the present invention. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the creative concept of the present invention, and these all fall within the scope of protection of the present invention.
Claims
1. A forestry desertification prevention and control vegetation drip irrigation equipment, characterized in that: include The barrel body has a butt-jointed tube on its side wall; The prism tube has a small open end that is seamlessly connected and communicated with the open end of the barrel body, and each inclined surface of the prism tube is provided with a drainage hole; A plurality of baffles are located in the drainage hole, and one end of the baffle close to the barrel body is rotatably connected to the inner wall of the drainage hole; The vertebral body is fixedly connected to the large open end of the prism tube; A polygonal prism is located in the barrel, and the polygonal prism is movably arranged in the barrel; A plurality of push plates are respectively arranged at one end of the polygonal prism extending into the prism tube, and the plurality of push plates are respectively facing the plurality of baffles, and the push plates are used to move with the polygonal prism to push the baffles to rotate; A sliding sleeve is provided on the polygonal column; A plurality of second springs have one end fixedly connected to the plurality of baffles respectively and the other end fixedly connected to the sliding sleeve.
2. The forestry desertification control vegetation drip irrigation equipment according to claim 1, characterized in that: The inner wall of the barrel body is fixedly connected to a positioning net, the polygonal prism slides through the positioning net, a movable net is fixedly sleeved on the polygonal prism, a first spring is arranged between the movable net and the positioning net, a steering tube is provided on the side wall of the barrel body that passes through the barrel body, a steel wire rope is provided on the steering tube that passes through the steering tube, and one end of the steel wire rope extending into the barrel body is connected to the polygonal prism.
3. The forestry desertification control vegetation drip irrigation equipment according to claim 2, characterized in that: A waterproof cloth is sealed and connected to the barrel body, and the steel wire rope passes through the waterproof cloth and is seamlessly connected to the waterproof cloth.
4. The forestry desertification control vegetation drip irrigation equipment according to claim 2, characterized in that: One end of the steel wire rope extending out of the steering tube is provided with a pull ring.