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Destructive materials thermal characteristics determination with application for spacecraft structures testing

机译:破坏性材料热特性的确定及其在航天器结构测试中的应用

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摘要

In many practical situations it is impossible to measure directly thermal and thermo-kinetic properties of analyzed composite materials. The only way that can often be used to overcome these difficulties is indirect measurements. This type of measurements is usually formulated as the solution of inverse heat transfer problems. Such problems are ill-posed in mathematical sense and their main feature shows itself in the solution instabilities. That is why special regularizing methods are needed to solve them. The general method of iterative regularization is concerned with application to the estimation of materials properties. The objective of this paper is to estimate thermal and thermokinetic properties of advanced materials using the approach based on inverse methods. An experimental-computational system is presented for investigating the thermal and kinetics properties of composite materials by methods of inverse heat transfer problems and which is developed at the Thermal Laboratory of Department Space Systems Engineering, of Moscow Aviation Institute (MAI). The system is aimed at investigating the materials in conditions of unsteady contact and/or radiation heating over a wide range of temperature changes and heating rates in a vacuum, air and inert gas medium.
机译:在许多实际情况下,无法直接测量所分析复合材料的热和热动力学性质。通常可以用来克服这些困难的唯一方法是间接测量。通常将这种类型的测量公式化为反向传热问题的解决方案。这些问题在数学上是不适的,其主要特征在解的不稳定性中表现出来。这就是为什么需要特殊的正则化方法来解决它们的原因。迭代正则化的一般方法涉及在材料属性估计中的应用。本文的目的是使用基于逆方法的方法来评估先进材料的热和热动力学性质。提出了一种实验计算系统,用于通过逆传热问题的方法研究复合材料的热和动力学特性,该系统是由莫斯科航空学院(MAI)的空间系统工程系热实验室开发的。该系统旨在研究在真空,空气和惰性气体介质中,在温度变化和加热速率范围很广的情况下,在不稳定接触和/或辐射加热条件下的材料。

著录项

  • 来源
    《Acta astronautica》 |2013年第apraamay期|113-119|共7页
  • 作者单位

    Dept. of Space System Engineering, Moscow Aviation Institute, Moscow, Russia;

    Dept. of Space System Engineering, Moscow Aviation Institute, Moscow, Russia;

    Dept. of Space System Engineering, Moscow Aviation Institute, Moscow, Russia;

    Dept. of Space System Engineering, Moscow Aviation Institute, Moscow, Russia;

    Dept. of Space System Engineering, Moscow Aviation Institute, Moscow, Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    destructive materials; thermal properties; inverse problem;

    机译:破坏性材料;热性能;反问题;

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