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首页> 外文期刊>Defence science journal >Peak Strain in Regressing Finocyl Port Propellant Grainsunder Pressure Loading
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Peak Strain in Regressing Finocyl Port Propellant Grainsunder Pressure Loading

机译:压力作用下退缩的Finocyl推进剂颗粒的峰值应变

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摘要

Finite element analysis (FEM) has been conducted for case-bonded finocyl port propellantcross section under pressure loading conditions during burning. Peak strain is found todecrease in course of burning, hence, analysis of any intermediate configuration in courseof burning is not required for assessing margin of safety in finocyl port propellant grains.The Power Law proposed1 has also been used to predict peak strain. Variation in strainsobtained by FEM and using the Power Law is found to be matching closely with findingsreported in CPIA (Chemical Propulsion Information Agency) publications. Extension indomain of power law to regressing pressurised finocyl port propellant grain eliminates dependenceon time-consuming computer- intensive FEM computations without compromising the accuracyof results.
机译:在燃烧过程中,在压力加载条件下,对结合了壳体的finocyl端口推进剂横截面进行了有限元分析(FEM)。发现峰值应变在燃烧过程中会降低,因此,不需要任何燃烧过程中的中间构型分析来评估Finocyl Port推进剂颗粒的安全裕度。拟议的幂定律1也已用于预测峰值应变。发现通过有限元法和使用幂律法获得的菌株的变化与CPIA(化学推进信息局)出版物中报告的发现非常接近。将幂律的域范围扩展到加压的finocyl端口推进剂颗粒回归,消除了对费时的计算机密集型FEM计算的依赖,而不会影响结果的准确性。

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