Slope drip irrigation water-saving device capable of adding fertilizer
By introducing a reinforcement and wear-resistant anti-bending mechanism into the drip irrigation water-saving device, the problem of loosening and detachment of the drip arrows during slope fertilization was solved, achieving stable installation of the drip arrows and efficient fertilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2026-03-17
AI Technical Summary
When existing drip irrigation water-saving devices are used for fertilizing plants on slopes, the drip arrows are prone to instability due to soil loosening, and may even detach from the ground, affecting the fertilization effect.
A reinforcement mechanism and a wear-resistant and bend-resistant mechanism were designed, including an installation component, a reinforcement insertion component, a bend-resistant component, and a wear-resistant component. The drip arrow is reinforced by a reinforcement rod and a tapered body, while the protective tube and elastic protective tube prevent loosening and bending, thereby improving the stability and wear resistance of the drip arrow.
It effectively improves the fixation and stability of the drip arrow when applying fertilizer to slopes, ensures the fertilization effect, prevents loosening and detachment, and improves the reliability of drip irrigation water-saving devices.
Smart Images

Figure CN223993970U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of drip irrigation water-saving devices, specifically relating to a slope drip irrigation water-saving device that can add fertilizer. Background Technology
[0002] The existing drip irrigation water-saving device is a device installed on the slope for water-saving drip irrigation. It is easy to connect to the fertilizer outlet for continuous fertilizer drip irrigation. During drip irrigation, the drip arrow can penetrate deep into the soil to accurately deliver water and nutrients to the plant roots, improve the efficiency of irrigation and fertilization, and ensure that bougainvillea grows vigorously under suitable water and nutrient conditions.
[0003] When existing drip irrigation water-saving devices are used for fertilizing plants on slopes, and the fertilizer pump continuously supplies waste and water, the drip arrows connected to the end of the water pipe are directly inserted into the soil to be fertilized. At this time, the soil around the drip arrows is constantly soaked by water, causing them to loosen. This loosening of the soil around the drip arrows makes them unstable, and they may even detach from the ground, reducing the fertilization effect. This affects the stability of the drip arrow installation when the drip irrigation water-saving device is used for slope fertilization. Therefore, this utility model proposes a slope drip irrigation water-saving device that can be supplemented with fertilizer. Utility Model Content
[0004] The purpose of this utility model is to provide a slope drip irrigation water-saving device that can add fertilizer, in order to solve the problem mentioned in the background art that when the drip irrigation water-saving device is used for fertilization of plants on the slope, the drip arrow is directly inserted into the soil to be fertilized, and the soil around the drip arrow is constantly soaked by water, causing the drip arrow to become loose and unstable, or even detach from the ground, thus reducing the fertilization effect.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a slope drip irrigation water-saving device capable of adding fertilizer, comprising a drip irrigation water-saving device body, the drip irrigation water-saving device body including an installation box, an inlet pipe and an outlet pipe respectively arranged on both sides of the interior of the installation box, a main pipe arranged at the end of the outlet pipe, flexible branch pipes equidistantly installed on one side of the main pipe, connectors equidistantly arranged on the side of the flexible branch pipes, four auxiliary hoses sealed and installed inside the connectors, drip arrows arranged at the ends of the auxiliary hoses, and the drip irrigation water-saving device body also provided with:
[0006] A reinforcement mechanism, comprising a mounting assembly disposed at the tip of the droplet, wherein a reinforcement fitting assembly is disposed on the lower surface of the mounting assembly;
[0007] A wear-resistant and bend-resistant mechanism is provided, and the wear-resistant and bend-resistant mechanism includes bend-resistant components disposed on the outer surfaces of the auxiliary hose and the flexible branch pipe, wherein the outer surface of the bend-resistant components is provided with wear-resistant components.
[0008] Preferably, a solenoid valve is installed at the middle position of the outlet pipe inside the installation box, a filter is installed at the middle position of the inlet pipe inside the installation box, a fertilizer pump is installed at the end connection of the inlet pipe and the outlet pipe, a fertilizer inlet pipe is provided at the bottom of the fertilizer pump, and a connecting pipe is installed at the end side connection of the inlet pipe and the outlet pipe.
[0009] Preferably, a control box is installed at the bottom of the installation box, a main power line is provided on one side of the control box, a wireless communication module is provided inside the control box, and the fertilizer pump and the solenoid valve are electrically connected to the inside of the control box through auxiliary wires.
[0010] Preferably, the mounting assembly includes a fixing ring that is fixedly mounted to the top of the outer surface of the drop arrow by screws, the outer surface of the fixing ring is provided with a mounting ring, and a connecting rod is integrally provided at the connection between the inner surface of the mounting ring and the outer surface of the fixing ring.
[0011] Preferably, the reinforcing fitting assembly includes three reinforcing rods fixedly installed at the edge of the lower surface of the mounting ring, and the bottom end of each reinforcing rod is provided with a tapered body.
[0012] Preferably, the anti-bending assembly includes a protective tube fitted onto the outer surface of the flexible branch pipe and the auxiliary hose, the inner surface of the protective tube being provided with an elastic bend-resistant protective tube, and the inner surface of the elastic bend-resistant protective tube contacting the outer surface of the auxiliary hose.
[0013] Preferably, the wear-resistant component includes a wear-resistant outer jacket disposed on the outer surface of the protective tube, and the cross-section of the wear-resistant outer jacket is annular.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] By designing a reinforcement mechanism, the fixing ring and installation ring can be moved downwards and pressed when the drip arrow is inserted, allowing the conical body and reinforcement rod to be inserted deeper underground. This prevents the drip arrow from becoming loose when the soil around it is soaked for a long time during fertilization and drip irrigation. The reinforcement rod and conical body reinforce the drip arrow, making it less prone to instability and loosening. This reinforces the drip arrow for underground drip irrigation, effectively fertilizing and improving the stability of the drip arrow installation when the drip irrigation water-saving device is used on slopes for fertilization. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the internal structure of the mounting box of this utility model;
[0018] Figure 3 This utility model Figure 1 Enlarged structural diagram of section A;
[0019] Figure 4 This utility model Figure 3 Enlarged structural diagram of section B;
[0020] Figure 5 This is a schematic diagram of the auxiliary hose, protective tube, and flexible, bend-resistant protective tube of this utility model.
[0021] In the diagram: 100, main body of the drip irrigation water-saving device; 101, mounting box; 1011, fertilizer pump; 1012, fertilizer inlet pipe; 1013, control box; 1014, filter; 1015, solenoid valve; 1016, connecting pipe; 102, water inlet pipe; 103, water outlet pipe; 104, main pipe; 105, flexible branch pipe; 106, connector; 107, auxiliary hose; 1071, wear-resistant outer sleeve; 1072, protective pipe; 1073, elastic and bend-resistant protective pipe; 108, drip arrow; 1081, fixing ring; 1082, connecting rod; 1083, mounting ring; 1084, reinforcing rod; 1085, cone-shaped body. Detailed Implementation
[0022] 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.
[0023] Please see Figures 1 to 5 This utility model provides a technical solution: a slope drip irrigation water-saving device that can add fertilizer, including a drip irrigation water-saving device body 100, the drip irrigation water-saving device body 100 including an installation box 101, an inlet pipe 102 and an outlet pipe 103 respectively arranged on both sides of the inside of the installation box 101, a main pipe 104 arranged at the end of the outlet pipe 103, a flexible branch pipe 105 equidistantly installed on one side of the main pipe 104, a connector 106 equidistantly arranged on the side of the flexible branch pipe 105, four auxiliary hoses 107 sealed inside the connector 106, and a drip arrow 108 arranged at the end of the auxiliary hoses 107. Before use, the drip irrigation water-saving device body 100 can be fixedly installed at the fertilized slope.
[0024] A solenoid valve 1015 is installed at the middle position of the outlet pipe 103 inside the mounting box 101. A filter 1014 is installed at the middle position of the inlet pipe 102 inside the mounting box 101. A fertilizer pump 1011 is installed at the end connection between the inlet pipe 102 and the outlet pipe 103. A fertilizer inlet pipe 1012 is provided at the bottom of the fertilizer pump 1011. A connecting pipe 1016 is installed at the side connection between the end of the inlet pipe 102 and the outlet pipe 103. A control box 1013 is installed at the bottom of the mounting box 101. A main power line is provided on one side of the control box 1013. A wireless communication module is installed inside the control box 1013. Both the fertilizer pump 1011 and the solenoid valve 1015 communicate with the inside of the control box 1013. The auxiliary power cord is electrically connected, and the main power cord is plugged into an external power source. The wireless communication module connects to an external APP for control via mobile phone. During use, the remote control control box 1013 powers the fertilizer pump 1011 and solenoid valve 1015. When the fertilizer pump 1011 is running, it draws external water through the inlet pipe 102, which is then filtered by the filter 1014. The fertilizer inlet pipe 1012 draws external fertilizer, mixes it, and enters the outlet pipe 103. The fertilizer then flows through the outlet pipe 103 and into the flexible branch pipe 105, finally entering the auxiliary hose 107 and drip arrows 108, and then into the underground planting area for fertilization, stabilizing the soil structure. Four drip arrows 108 are provided per square meter. The main body 100 of the drip irrigation water-saving device also includes:
[0025] The reinforcement mechanism includes an installation component at the top of the drip arrow 108. The lower surface of the installation component is provided with a reinforcement insertion component. When the drip irrigation water-saving device body 100 is inserted into the ground during drip irrigation, the reinforcement mechanism assists in reinforcing the installation of the drip arrow 108, making the drip irrigation process more stable.
[0026] To facilitate the installation of the reinforcing rod 1084 using the mounting assembly, and to make the installation and use of the reinforcing rod easier, in this embodiment, preferably, the mounting assembly includes a fixing ring 1081 that is fixedly mounted to the top of the outer surface of the dripping arrow 108 by screws. The outer surface of the fixing ring 1081 is provided with a mounting ring 1083. A connecting rod 1082 is integrally provided at the connection between the inner surface of the mounting ring 1083 and the outer surface of the fixing ring 1081. The fixing ring 1081 and the mounting ring 1083 can be fixedly mounted on the outer surface of the dripping arrow 108, and the reinforcing rod 1084 can be installed and used through the mounting ring 1083.
[0027] In order to facilitate the reinforcing installation of the drip arrow 108 after it has been inserted into the ground, in this embodiment, preferably, the reinforcing insertion assembly includes three reinforcing rods 1084 fixedly installed at the edge of the lower surface of the mounting ring 1083. The bottom end of the reinforcing rod 1084 is provided with a conical body 1085, which can drive the reinforcing rods 1084 to be inserted into the ground simultaneously to assist in the reinforcing installation when the drip arrow 108 is inserted into the ground, so that the drip arrow 108 is not prone to loosening or instability when soaked.
[0028] The wear-resistant and bend-resistant mechanism includes bend-resistant components on the outer surfaces of the auxiliary hose 107 and the flexible branch pipe 105. The outer surface of the bend-resistant components is provided with wear-resistant components. When the main body 100 of the drip irrigation water-saving device is used for drip irrigation on slopes, the wear-resistant and bend-resistant mechanism is used to prevent bends and wear on the flexible branch pipe 105 and the auxiliary hose 107 during the laying process, which is less likely to cause friction damage and blockage, and effectively achieves drip irrigation.
[0029] To facilitate bend protection during the installation of the auxiliary hose 107 and flexible branch pipe 105 using an anti-bend component, and to prevent bends and blockages, in this embodiment, preferably, the anti-bend component includes a protective tube 1072 fitted onto the outer surface of the flexible branch pipe 105 and the auxiliary hose 107. The inner surface of the protective tube 1072 is provided with an elastic bend-resistant protective tube 1073, and the inner surface of the elastic bend-resistant protective tube 1073 is in contact with the outer surface of the auxiliary hose 107. During the installation of the auxiliary hose 107 and the flexible branch pipe 105, the protective tube 1072 and the elastic bend-resistant protective tube 1073 elastically drive the auxiliary hose 107 and the flexible branch pipe 105 to spring back to their original position, preventing severe bends that could lead to blockages.
[0030] In order to facilitate wear-resistant treatment of the outer surfaces of the auxiliary hose 107 and the flexible branch pipe 105 through the wear-resistant component and to prevent damage from friction with the ground, in this embodiment, preferably, the wear-resistant component includes a wear-resistant outer sleeve 1071 disposed on the outer surface of the protective pipe 1072, and the cross-section of the wear-resistant outer sleeve 1071 is annular. When the auxiliary hose 107 and the flexible branch pipe 105 are installed and laid, the wear-resistant outer sleeve 1071 provides wear-resistant protection when the auxiliary hose 107 and the flexible branch pipe 105 slide in contact with the ground, preventing damage.
[0031] In this utility model, the main pipe 104 is made of PVC, the auxiliary hose 107 and the flexible branch pipe 105 are made of PE, and the solenoid valve 1015 is model 100-PGA.
[0032] The working principle and usage process of this utility model: When using this slope drip irrigation water-saving device that can add fertilizer, firstly, the installation box 101 is fixedly installed at the transfer station of the slope fertilization site. Secondly, the water outlet pipe 103 and the flexible branch pipe 105 are installed. Then, the drip arrow 108 is inserted into the ground at the planting site through the auxiliary hose 107. At this time, the water inlet pipe 102 is connected to the external water pipe, the fertilizer inlet pipe 1012 is connected to the fertilizer tank, the main line is connected to the external power supply, and the wireless communication module is connected to the external APP for control and processing via mobile phone. According to the set program, the irrigation and fertilization time and duration are precisely controlled. They work closely together and coordinate to provide precise and efficient automated control for slope irrigation and fertilization.
[0033] When in use, the remote control box 1013 powers the fertilizer pump 1011 and the solenoid valve 1015. When the fertilizer pump 1011 is running, it draws in external water through the inlet pipe 102 and filters it through the filter 1014. The fertilizer inlet pipe 1012 draws in external fertilizer and mixes it into the inside of the outlet pipe 103. The fertilizer then enters the outlet pipe 103 and the flexible branch pipe 105, and finally enters the auxiliary hose 107 and the drip arrow 108 and enters the underground planting area for fertilization. When drip irrigation is used, the fertilizer pump 1011 is turned off and the water is dripped through the connecting pipe 1016.
[0034] Then, when the drip irrigation water-saving device body 100 is in use and the drip arrow 108 is inserted and installed, the fixing ring 1081 and the installation ring 1083 can be moved down and pressed when the drip arrow 108 is inserted. At this time, the conical body 1085 and the reinforcing rod 1084 are inserted into a deeper position underground. Until the drip arrow 108 is inserted and installed, the reinforcing rod 1084 and the conical body 1085 are installed. This makes it less likely for the soil around the drip arrow 108 to become loose when it is soaked for a long time during the insertion and installation of the drip arrow 108 for fertilization and drip irrigation. The reinforcing rod 1084 and the conical body 1085 reinforce the installation of the drip arrow 108 and prevent it from becoming unstable and loose. The reinforced embedded underground drip irrigation is used for effective fertilization treatment and improves the fixation of the drip arrow 108 installation of the drip irrigation water-saving device body 100 when fertilizing on slopes.
[0035] Finally, before using the main body 100 of the drip irrigation water-saving device, a protective pipe 1072 can be fitted onto the outer surface of the flexible branch pipe 105 and the auxiliary hose 107, thereby closing the wear-resistant outer jacket 1071 and the elastic bend-resistant protective pipe 1073. After installation, the flexible branch pipe 105 and the auxiliary hose 107 are in contact with the ground and are treated with wear resistance by the wear-resistant outer jacket 1071. When laid underground, the auxiliary hose 107 and the flexible branch pipe 105 are bent, and the protective pipe 1072 and the elastic bend-resistant protective pipe 1073 have a certain degree of elasticity to prevent bending and blockage, which facilitates bending protection, effective fertilization treatment, and improves the convenience of the main body 100 of the drip irrigation water-saving device in preventing bending and wear of the auxiliary hose 107 and the flexible branch pipe 105 when fertilizing on slopes.
[0036] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A side slope drip irrigation water-saving device with added fertilizer, comprising a drip irrigation water-saving device body (100), the drip irrigation water-saving device body (100) comprises a mounting box (101), the inside of the mounting box (101) is provided with a water inlet pipe (102) and a water outlet pipe (103) respectively, the end of the water outlet pipe (103) is provided with a main pipe (104), one side of the main pipe (104) is equidistantly provided with a soft branch pipe (105), the side of the soft branch pipe (105) is equidistantly provided with a joint (106), the inside of the joint (106) is sealingly provided with four auxiliary soft pipes (107), the end of the auxiliary soft pipe (107) is provided with a drip arrow (108), characterized in that: The drip irrigation water-saving device body (100) is also provided with: The reinforcing mechanism comprises a mounting assembly arranged at the top end of the drip arrow (108), and the lower surface of the mounting assembly is provided with a reinforcing plug-in assembly; The wear-resistant and anti-bending mechanism comprises an anti-bending assembly arranged on the outer surfaces of the auxiliary hose (107) and the soft branch pipe (105), and the outer surface of the anti-bending assembly is provided with a wear-resistant assembly.
2. The slope surface drip irrigation water saving device with added fertilizer according to claim 1, characterized in that: An electromagnetic valve (1015) is arranged at the middle position of the water outlet pipe (103) inside the mounting box (101), a filter (1014) is arranged at the middle position of the water inlet pipe (102) inside the mounting box (101), a fertilizer pump (1011) is arranged at the end connection of the water inlet pipe (102) and the water outlet pipe (103), the bottom end of the fertilizer pump (1011) is provided with a fertilizer inlet pipe (1012), and a communication pipe (1016) is arranged at the side connection of the water inlet pipe (102) and the water outlet pipe (103).
3. A slope surface drip irrigation water saving device to which fertilizer can be added according to claim 2, characterized in that: A control electric box (1013) is arranged at the bottom end inside the mounting box (101), one side of the control electric box (1013) is provided with a plug-in main line, a wireless communication module is arranged inside the control electric box (1013), and the fertilizer pump (1011) and the electromagnetic valve (1015) are both electrically connected to the inside of the control electric box (1013) through auxiliary wires.
4. The slope surface drip irrigation water saving device with added fertilizer according to claim 1, characterized in that: The mounting assembly comprises a fixing ring (1081) fixedly installed at the top end of the outer surface of the drip arrow (108) through screws, the outer surface of the fixing ring (1081) is provided with a mounting ring (1083), and the inner surface of the mounting ring (1083) is integrally provided with a connecting rod (1082) at the connection position with the outer surface of the fixing ring (1081).
5. A slope drip irrigation water saving device to which fertilizer can be added according to claim 4, characterized in that: The reinforcing plug-in assembly comprises three reinforcing plug rods (1084) fixedly installed at the lower surface edges of the mounting ring (1083), and the bottom end of each reinforcing plug rod (1084) is provided with a conical body (1085).
6. The slope surface drip irrigation water saving device with added fertilizer according to claim 1, characterized in that: The anti-bending assembly comprises a protective pipe (1072) sleevedly installed on the outer surfaces of the soft branch pipe (105) and the auxiliary hose (107), the inner surface of the protective pipe (1072) is provided with an elastic anti-bending protective pipe (1073), and the inner surface of the elastic anti-bending protective pipe (1073) is in contact with the outer surface of the auxiliary hose (107).
7. A slope surface drip irrigation water saving device to which fertilizer can be added according to claim 6, characterized in that: The wear-resistant assembly comprises a wear-resistant sleeve (1071) arranged on the outer surface of the protective pipe (1072), and the cross section of the wear-resistant sleeve (1071) is in a ring shape.