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A high-precision error correction method for multiple low-pressure gradient proportional solenoid valves

A technology of proportional solenoid valve and low-pressure gradient, which is applied in the direction of valve operation/release device, valve details, valve device, etc., can solve problems such as difficulty, manpower and material resources, and inability to guarantee, and achieve accurate valve opening and closing time, control The valve opening and closing time, the effect of the same opening and closing time

Active Publication Date: 2020-04-07
成都珂睿科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The working principle and mechanical structure of the proportional solenoid valve determine that its behavior of power-on opening and power-off closing is very complicated, especially the electrical characteristics of the electromagnetic coil and the magnetic properties of the armature are the key factors affecting the opening and closing of the proportional solenoid valve. Due to the constraints of production technology and material science, the cost of producing high-precision proportional solenoid valves with consistent characteristics is extremely high and difficult. At the same time, a high yield rate cannot be guaranteed. In order to obtain high-consistency proportional solenoid valves, manpower and material resources have to be spent Pick and match, time-consuming and labor-intensive
[0005] Therefore, aiming at the problem that the existing proportional solenoid valve control technology has insufficient precision in liquid mixing ratio control in precision fluid instruments such as high performance liquid chromatography, the present invention discloses a high-precision error control technology for multi-component low-pressure gradient proportional solenoid valves. Correction method

Method used

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  • A high-precision error correction method for multiple low-pressure gradient proportional solenoid valves
  • A high-precision error correction method for multiple low-pressure gradient proportional solenoid valves
  • A high-precision error correction method for multiple low-pressure gradient proportional solenoid valves

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Embodiment 1

[0029] A high-precision error correction method for multiple low-voltage gradient proportional solenoid valves in this embodiment pre-sets the valve opening voltage, holding voltage, and high voltage holding time parameters of each proportional solenoid valve; the valve opening voltage and holding voltage use Independent DC voltage; the valve opening voltage is set to 1-4 times the rated voltage of the proportional solenoid valve, the holding voltage is set to 1 / 5-1 / 2 of the rated voltage of the proportional solenoid valve, and the high voltage holding The time is set to 1.1-2.5 times of the opening time of the proportional solenoid valve.

[0030] Use the supporting control system and power amplifier system to control each proportional solenoid valve, and preset and save the valve opening voltage, holding voltage, high voltage holding time, advance valve opening time, and delay opening time for controlling the proportional solenoid valve in the control system. Valve time para...

Embodiment 2

[0036] This embodiment is further optimized on the basis of Embodiment 1. During the liquid inlet process, the opening and closing time of the proportional solenoid valve is controlled so that the proportional solenoid valve is in the open state at any time, thereby eliminating air pumping.

[0037] When mixing various proportions of liquid phases, the opening or closing time of the proportional solenoid valves on each liquid phase flow path is also different according to the required proportion of the liquid phase to be mixed. After the proportional solenoid valve of the flow path is completely closed, the proportional solenoid valve of the other flow path should be fully open immediately. However, in actual situations, because the opening and closing of the proportional solenoid valve takes a certain amount of time to complete, it may appear that after the proportional solenoid valve of one flow path is completely closed, the proportional solenoid valve of the other flow path...

Embodiment 3

[0040] This embodiment is further optimized on the basis of Embodiment 1 or 2. During the liquid inlet process, when the adjacent proportional solenoid valves are closed and opened successively, if the valve opening speed of the proportional solenoid valve is greater than the closing speed, then wait The opened proportional solenoid valve is set with a delay valve opening time, otherwise the valve opening time is set in advance.

[0041] Such as Figure 5 As shown, if the valve opening speed of the proportional solenoid valve is greater than the closing speed, there is T AC = T BO +T m +T d , where T BO is the opening time of the proportional solenoid valve to be opened, T AC is the closing time of the proportional solenoid valve to be closed, T m It is the time when two adjacent proportional solenoid valves have liquid flowing out, T d To delay the valve opening time.

[0042] If the valve opening speed of the proportional solenoid valve is less than the closing speed...

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Abstract

The invention discloses a high-precision error correction method for multi-component low-pressure gradient proportional solenoid valves. The method includes that sustaining time parameters of a valveopening voltage, a sustaining voltage and a high voltage of each proportional solenoid valve is preset; the valve opening voltage and the sustaining voltage use independent direct current voltages; the valve opening voltage is set to be 1-4 times of a nominal voltage; the sustaining voltage is set to be 1 / 5-1 / 2 of the nominal voltage; the sustaining time of the sustaining voltage is set to 1.1-2.5times of the opening time of the proportional solenoid valves; the opening and closing time of each proportional solenoid valve are synchronous through the adjustment of the valve opening voltage, the sustaining time of the high voltage, and the opening and closing time of the proportional solenoid valve controlled by the sustaining voltage; and a right moment of opening and closing the proportional solenoid valves is controlled by advancing or delaying the valve opening time; The method has the beneficial effects that the control is accurate, the opening and closing time of each valve are synchronous, the control precision of the liquid phase mixing is effectively ensured, and the influence of air pumping and non-linear flow rate on the liquid phase proportional control precision is avoided.

Description

technical field [0001] The invention belongs to the technical field of proportional solenoid valve control, and in particular relates to a high-precision error correction method for multi-component low-pressure gradient proportional solenoid valves. Background technique [0002] Fluid proportional mixing control is widely used in high-performance liquid chromatography, automatic diluter, automatic drug delivery device and other precision fluid instruments and equipment. Proportional mixing can be used to produce solutions with different pH and concentration on-line, or to achieve pH, concentration, and ratio gradients that vary with time. In high performance liquid chromatography (HPLC), a low-pressure gradient chromatography system is generally used, and the multi-component low-pressure gradient chromatography system passes through Control the opening and closing of several proportional solenoid valves to mix the liquid components in specified proportions before the liquid ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16K31/06
CPCF16K31/0675
Inventor 孙亮陈昱王宇孙莉
Owner 成都珂睿科技有限公司
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