A valve and vacuum low temperature boiling cleaning system
A technology for cleaning systems and valves, which is applied in the field of cleaning systems, can solve problems such as the limited range of use of solenoid valves, difficulty in using fluid on-off control, etc., and achieve the effects of simplifying pipeline layout, reducing control difficulty, and reducing the number of valves
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Embodiment 1
[0062] The valve provided in this embodiment is the first valve 10 .
[0063] refer to figure 1 , figure 1 It is a schematic diagram of the internal structure of the first valve 10 in Embodiment 1 of the present invention. The first valve 10 includes a housing 100 , a valve core 200 and a driving device 300 .
[0064] The inner wall of the housing 100 includes a circular first inner surface 110 . Edges of the first inner surface 110 extend substantially perpendicular to the first inner surface 110 , thereby forming a first inner peripheral surface 120 . The first inner surface 110 and the first inner peripheral surface 120 together define a cavity 150 having an opening 130 .
[0065] The valve core 200 is generally cylindrical, and the outer surface of the valve core 200 includes opposite first end surfaces 210 and second end surfaces 220 , and a first outer peripheral surface 230 extending from the first end surface 210 to the second end surface 220 . The valve core 200 ...
Embodiment 2
[0083] refer to Figure 6 , Figure 6 It is a schematic structural diagram of the second valve 20 in Embodiment 2 of the present invention. This embodiment provides a valve, which is the second valve 20 . The structure of the second valve 20 is basically the same as that of the first valve 10 . The difference lies in that the number and position of the interfaces are different, and the relative positions of the convex strips and the interfaces are different.
[0084] The second valve 20 includes four ports, namely a fourth port 514 , a fifth port 515 , a sixth port 516 and a seventh port 517 . The fourth interface 514 , the fifth interface 515 , the sixth interface 516 and the seventh interface 517 are sequentially arranged around the central axis of the cavity 150 .
[0085] The angle between the fourth interface 514 and the fifth interface 515 is 60°, the clamping between the fifth interface 515 and the sixth interface 516 is 60°, and the angle between the sixth interfac...
Embodiment 3
[0091] In order to more clearly illustrate how the first valve 10 described in Embodiment 1 and the second valve 20 described in Embodiment 2 perform complex fluid on-off control, in this embodiment, the first valve 10 and the second valve 20 It is used in a cleaning system 30 to further explain the working principle of the first valve 10 and the second valve 20 . At the same time, since the cleaning system 30 uses the first valve 10 and the second valve 20 as the fluid control parts, the cleaning system 30 also reduces the number of valves compared with the existing cleaning system, simplifies the pipeline layout, and reduces the control pressure. difficulty.
[0092] It should be noted that the use of the first valve 10 and the second valve 20 in the cleaning system 30 is only an example. The first valve 10 and the second valve 20 can also be used in other fields, for example, as fluid control parts in medical equipment, or in hydraulic or pneumatic pipelines.
[0093] ref...
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