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DYNAMIC ANALYSIS FOR CRYOGENIC AND HIGH PRESSURE FUELING VALVE OF COMBUSTION LIGHT GAS GUN SYSTEM

机译:轻型燃气枪系统低温高压排气阀的动态分析。

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The paper describes the dynamic behaviors of a unique cryogenic and extra-high pressure pneumatic valve for the high pressure gaseous medium injection of combustion light gas gun (CLGG), which is known as a unique technique to achieve hypervelocity projectile. As a critical component of the CLGG's injecting system, the operation principle and dynamic property of the valve are detailedly investigated by means of theoretical and experimental way. The problem of needing large driving power and slowing response in extra-high pressure pneumatic on-off valve is solved by means of lever pneumatic force balance method. A two-stage valve that used a two-position five-port pilot solenoid plunger valve to control a large flow-rate poppet valve is developed. The definitions and rules of a dynamic processes based on the critical pressure points in the control chamber are put forward. The mathematical models of the valve are obtained based on above definitions and rules. The paper show that the valve's dynamic property obtained from the modeling and simulation is in accordance with the experiment results. The main work of this paper concentrates on investigating the operation principle, mathematical model and dynamic characteristics of the new cryogenic and high pressure fueling valve of CLGG system.
机译:本文介绍了用于燃烧轻气枪(CLGG)的高压气态介质注入的独特低温和超高压气动阀的动态特性,这是获得超高速弹丸的独特技术。作为CLGG注射系统的重要组成部分,通过理论和实验方法详细研究了阀门的工作原理和动态特性。通过杠杆气动平衡法解决了超高压气动开关阀中驱动功率大,响应慢的问题。开发了一种使用二位五通先导电磁柱塞阀来控制大流量提升阀的二级阀。提出了基于控制室临界压力点的动态过程的定义和规则。阀门的数学模型是根据上述定义和规则获得的。结果表明,通过建模和仿真得到的阀门动态特性与实验结果吻合。本文的主要工作集中在研究新型CLGG系统的低温和高压加油阀的工作原理,数学模型和动态特性。

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