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Step-by-step pressurizing device for liquid

A step-by-step pressurization and liquid technology, which is applied to the components of pumping devices for elastic fluids, liquid variable displacement machines, liquid fuel engines, etc., can solve the problems of affecting effective application and high energy consumption, and achieve energy saving consumption, low energy consumption

Pending Publication Date: 2020-02-11
梁荷
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Existing liquid pressurization devices include various liquid booster pumps. The energy consumption of these liquid booster pumps is relatively high during the pressurization process. Especially when the required liquid pressure is high, the energy consumption is higher, which affects its performance in the atmosphere. Effective applications in pollution control, agricultural water-saving irrigation, regional ecological restoration, urban landscape design, etc.

Method used

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  • Step-by-step pressurizing device for liquid
  • Step-by-step pressurizing device for liquid

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] This embodiment provides a liquid step-by-step pressurization device, which is used to provide high-pressure liquid capable of promoting liquid atomization during laboratory experiments, including simulated atomization, water treatment aeration experiments, and the like. as attached figure 1 As shown, the liquid step-by-step pressurization device includes a pressurization cylinder 10 and a pressurization chamber. The pressurization cylinder 10 includes a cylinder body, a piston 16 arranged in the cylinder body, and a piston 16 used to drive the piston 16 to slide up and down along the cylinder body. The driving device; the driving device is the driving cylinder 40, and the telescopic rod of the driving cylinder 40 is fixedly connected with the piston 16; the pressurized chamber of the present embodiment is set as the second pressurized chamber 20; the bottom of the cylinder body is conductively connected with the first liquid inlet Pipe 11, the end of the first liquid i...

Embodiment 2

[0029] This embodiment provides a liquid step-by-step pressurization device, which is used to provide the pressurized liquid required for atomization during air pollution control.

[0030] as attached figure 2 As shown: the liquid step-by-step pressurization device of the present embodiment includes a pressurization cylinder 10 and 2 pressurization chambers, the pressurization cylinder 10 includes a cylinder body, a piston 16 located in the cylinder body, and a cylinder for driving the piston 16 along the cylinder. The driving device that slides up and down the body;

[0031] The driving device of the present embodiment includes a drive rod 54 and a power generating windmill. The power generating windmill includes a blade 51 and a blade shaft 52. An articulated shaft 53 is fixedly arranged on the end of the blade 51 away from the blade shaft 52. The articulated shaft 53 is distributed parallel to the blade shaft 52; One end of the rod 54 is hinged to the hinge shaft 53, and ...

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Abstract

The invention provides a step-by-step pressurizing device for liquid. The step-by-step pressurizing device comprises a pressurizing cylinder and a plurality of pressurizing chambers. The pressurizingcylinder comprises a cylinder body, a piston and a driving device. The volumes of the pressurizing chambers are gradually reduced, and the pressurizing chamber with the largest volume is set as a second pressurizing chamber. The cylinder body communicates with a first liquid inlet pipe, the first liquid inlet pipe communicates with a liquid storage device, and a first one-way valve is arranged onthe first liquid inlet pipe. A second liquid inlet pipe is arranged between the cylinder body and the second pressurizing chamber, and a second one-way valve is arranged on the second liquid inlet pipe. The second pressurizing chamber further communicates with a second liquid outlet pipe, a one-way valve B is arranged on the second liquid outlet pipe, and the opening pressure of the one-way valveB is large than that of the second one-way valve. According to the step-by-step pressurizing device for the liquid, the pressure of the liquid can be improved with low energy consumption, energy consumption is reduced, and pressurized liquid of different pressure grades can be provided according to actual needs; and in addition, the step-by-step pressurizing device for the liquid is high in safetyand reliability.

Description

technical field [0001] The invention relates to the field of liquid pressurization devices, in particular to a step-by-step liquid pressurization device. Background technique [0002] Pressurized liquids are widely used in various fields such as industry, agriculture, and daily life, especially the high-efficiency atomization technology using pressurized liquid carrying gas, which is not only widely used in medical, household, industrial and other fields, but also in Air pollution control, agricultural water-saving irrigation, regional ecological restoration, urban landscape design and other fields have broad application prospects. [0003] Existing liquid pressurization devices include various liquid booster pumps. The energy consumption of these liquid booster pumps is relatively high during the pressurization process. Especially when the required liquid pressure is high, the energy consumption is higher, which affects its performance in the atmosphere. Effective applicat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F04B9/127F04B17/02F04B53/10
CPCF04B9/127F04B17/02F04B53/10
Inventor 梁荷
Owner 梁荷