Intelligent valve irrigation control device and control method thereof
A control device and intelligent valve technology, applied in the field of agricultural irrigation, can solve the problems of increasing labor burden of workers and wasting time efficiency, waste of water and fertilizer, valves can not be opened on time, etc., to avoid waste of water resources, improve fine management, and ensure normal growth Effect
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Embodiment 1
[0038] See attached Figure 1-3, this embodiment discloses a control device for intelligent valve irrigation, comprising a multi-way pipe fitting 1, the multi-way pipe fitting 1 is vertically installed on the main and branch pipes for irrigation in the farmland, the multi-way pipe fitting 1 has a water inlet 2 and at least one The water outlet 3 and the water inlet 2 are connected to the water outlet on the branch pipe, and each water outlet 3 is equipped with a valve 4, and the water outlet of the valve 4 is connected to the irrigation water delivery soft belt 5 or the irrigation water delivery hose, and the water outlet 3 The connected valve 4 is provided with a mounting bracket 6, each mounting bracket 6 is fixedly installed with an electric actuator 7, each electric actuator 7 corresponds to a valve 4, and the electric actuator 7 is located above the valve 4, The power output shaft 8 of the electric actuator 7 is connected with the spool drive shaft 9 of the valve 4;
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Embodiment 2
[0048] This embodiment is further optimized on the basis of Embodiment 1. In this embodiment, the power output shaft 8 of the electric actuator 7 is connected to the valve core driving shaft 9 of the valve 4 through a bushing 18 .
[0049] Wherein, the upper end of the shaft sleeve 18 is provided with a first connecting hole 19 , and the lower end is provided with a second connecting hole 20 , both of the first connecting hole 19 and the second connecting hole 20 are polygonal holes.
[0050] Further defined, the first connection hole 19 and the second connection hole 20 are triangular holes, quadrilateral holes, pentagonal holes, hexagonal holes or heptagonal holes.
[0051] The provided sleeve 18 can make the connection between the power output shaft 8 of the electric actuator 7 and the valve core drive shaft 9 of the valve 4 more simple.
[0052] It is further defined that the depth of the first connecting hole 19 is greater than the depth of the second connecting hole 20. ...
Embodiment 3
[0055] As attached to the manual Figure 4 and Figure 5 As shown, this embodiment is further optimized on the basis of Embodiment 2. In this embodiment, the electric actuator includes a housing 22, a motor 23, a drive shaft 24, a power output shaft 8, a first gear transmission mechanism 26, a second The gear transmission mechanism 27, the drive shaft 24 and the power output shaft 8 are installed in the housing 22 through the bearing seat 37, the output shaft of the motor 22 is connected with the drive shaft 24 through the first gear transmission mechanism 26, and the drive shaft 24 is connected through the second gear transmission mechanism 27 Connect with power take-off shaft 8.
[0056] Further defined, the power take-off shaft 8 is mainly composed of an angular shaft 28 and a circular shaft 29. The upper end of the circular shaft 29 extends from the upper end of the housing 22, the lower end of the angular shaft 28 extends from the lower end of the outer shell 22, and the...
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