Variable and controllable cavitator

A cavitation and variable technology, applied in the field of cavitation, can solve the problems of reducing the cavitation effect, and achieve the effect of improving the state, improving the cavitation effect, and strong adaptability

Pending Publication Date: 2019-12-06
MYANDE GRP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing collapse zone still continues the practice of equal-diameter pipes that meet the general flow velocity. The upstream high-speed fluid has not been fully expanded. Collapse barrier, bubbles are not fully collapsed so that the cavitation effect is greatly reduced

Method used

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  • Variable and controllable cavitator
  • Variable and controllable cavitator
  • Variable and controllable cavitator

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Embodiment Construction

[0029] Such as Figure 1 to Figure 4 As shown, the variable and controllable cavitator of the present invention includes a large cylinder 1 and a small cylinder 2 connected in a step shape and coaxial, and the small cylinder 2 is located on the right side of the large cylinder 1 and inside the two The cavities communicate with each other, the left port of the large cylinder body 1 is covered with a large cylinder end cover 3, the right port of the small cylinder body 2 is covered with a right end cover 16, and the right end peripheral wall of the small cylinder body 2 is connected with a fluid inlet 2a, and the large cylinder body 1 is connected with a fluid outlet 1a on the circumference of the right end, and the left port of the small cylinder body 2 is provided with a cut-off cone 12, and is provided with a flow throat along the axis of the cut-off cone 12; The slide plate 6 that slides axially on the inner wall of the cylinder, and the bottom of the circumferential wall at...

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Abstract

The invention relates to a variable and controllable cavitator, which comprises a large jar body and a small jar body, wherein the small jar body is located on the right side of the large jar body, and is communicated to the large jar body, the left port of the large jar body is covered with a large jar end cover, the right port of the small jar body is covered with a right end cover, the right end of the small jar body is connected to a fluid inlet, the right end of the large jar body is connected to a fluid outlet, the left port of the small jar body is provided with a flow intercepting cone, a flow passing throat port is arranged along the axis of the flow intercepting cone, a sliding plate capable of axially sliding along the inner wall of the large jar body is arranged on the middle section of the inner cavity of the large jar body, the left side of the large jar end cover is connected to an end cover box, a piston is arranged in the center hole of the large jar end cover, is driven by a screw rod sleeve, and is connected to the sliding plate through a connecting cylinder, a screw rod shaft is screwed in the screw rod sleeve, a jet cone is fixed on the right end head of the screw rod shaft, and is inserted into the flow passing throat port of the flow intercepting cone, and a fixed pore plate is arranged on the right end of the flow intercepting cone, and is provided withan adjustable center hole and peripheral holes. According to the present invention, the cavitator can achieve multiple cavitation modes, and has characteristics of high raw material adaptability and good cavitation effect.

Description

technical field [0001] The invention relates to a variable and controllable cavitator, which belongs to the technical field of fluid reaction devices. Background technique [0002] The hydraulic cavitation phenomenon is that the internal pressure drops when the fluid flows through a restricted flow area (orifice plate, Venturi tube, annulus, etc.). Cavitation bubbles, when the cavitation bubbles flow through the instantaneous expansion channel, the pressure of the liquid rises, and the volume of the cavitation bubbles shrinks sharply until it collapses. At the moment of its collapse, it is accompanied by high temperature, high pressure, strong shock waves and micro jets . The huge instantaneous energy released when the cavitation collapses can destroy the chemical chain and speed up the reaction process. Therefore, hydraulic cavitation is widely used in wastewater treatment, food, and enhanced reaction processes. [0003] At present, researchers at home and abroad generall...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J19/24B01J19/00
CPCB01J19/0053B01J19/24
Inventor 杭明郭红磷袁媛
Owner MYANDE GRP CO LTD
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