Digital quantitative continuous injection pump

A liquid injection pump and digital technology, which is applied in the fields of cleaning instruments, liquid injection and sample injection, can solve the problems of non-constant flow rate pump, slow peristaltic pump flow rate, and low liquid injection precision, so as to achieve a wide range of applications and prevent cavitation. , The effect of high injection precision

Active Publication Date: 2016-09-21
SICHUAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the digital syringe pump has high injection accuracy, it can only complete short-term continuous injection. If it is necessary to inject liquid for a long time, it must be injected multiple times. for injection only
Although the peristaltic pump can complete long-term continuous injection, the flow rate of the peristaltic pump is slow and the efficiency is low, so it is not a constant flow pump

Method used

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  • Digital quantitative continuous injection pump
  • Digital quantitative continuous injection pump
  • Digital quantitative continuous injection pump

Examples

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Embodiment Construction

[0035] The present invention will be further described in detail below in conjunction with the accompanying drawings.

[0036] Such as figure 1 As shown, the digital quantitative continuous injection pump includes a power source 36, a transmission system 37, an actuator 38, and a control system 39. The power source 36 outputs rotational motion, and the transmission system 37 changes the speed of the rotational motion output by the power source, and then It is converted into a linear motion, and then drives the actuator 38 to suck the liquid in the container 28 into the device, and then discharge it from the liquid outlet. The control system 39 is used to control the entire device, and realize stepless speed change by controlling the pulse frequency. Realize by controlling the number of pulses Quantitative liquid injection, improve the accuracy of liquid injection by introducing flow feedback, and realize overload protection by introducing pressure switch.

[0037] Further, th...

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PUM

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Abstract

The digital quantitative continuous injection pump includes a power source, a transmission system, an actuator, and a control system. The power source outputs rotary motion, and the transmission system changes the speed of the rotary motion output by the power source, and then converts it into linear motion, and then drives the actuator The liquid in the container is sucked into the device, and then discharged from the liquid outlet. The control system is used to control the entire device, realize stepless speed change by controlling the pulse frequency, realize quantitative liquid injection by controlling the number of pulses, and improve the liquid injection accuracy by introducing flow feedback , Overload protection is achieved by introducing a pressure switch. By adjusting the speed of the stepping motor to control the flow speed of the fluid, the working pressure of the system is above the air separation pressure and saturated vapor pressure of the liquid, preventing cavitation, and greatly improving the stability of the system and the use of the device. life.

Description

Technical field: [0001] The invention relates to a technique for realizing continuous and quantitative liquid injection by using mechanical-electronic-hydraulic control means, and belongs to the field of liquid injection, sample feeding and cleaning instruments. Background technique: [0002] In the fields of chemical industry, mining, metallurgy, papermaking, food, medical equipment, petroleum, water treatment, pharmaceuticals, etc., it is often necessary to use solution transfer instruments such as liquid injection, sample injection, and cleaning. During the working process of such instruments, cavitation often occurs. [0003] The cavitation phenomenon can be explained as: inside the flowing liquid, if the pressure of the fluid varies widely, the bubbles will be precipitated in the low-pressure area of ​​the fluid, and then compressed in the high-pressure area. When the compression reaches a certain level, the bubbles will burst and produce up to 150MPA -200MPA instantan...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F04B13/00
Inventor 汪永超王杰段忆翔
Owner SICHUAN UNIV
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