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Numerical Simulation for Thermal Shock Resistance of Thermal Protection Materials Considering Different Operating Environments

机译:考虑不同操作环境的热保护材料热抗冲击性的数值模拟

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摘要

Based on the sensitivities of material properties to temperature and the complexity of service environment of thermal protection system on the spacecraft, ultrahigh-temperature ceramics (UHTCs), which are used as thermal protection materials, cannot simply consider thermal shock resistance (TSR) of the material its own but need to take the external constraint conditions and the thermal environment into full account. With the thermal shock numerical simulation on hafnium diboride (HfB2), a detailed study of the effects of the different external constraints and thermal environments on the TSR of UHTCs had been made. The influences of different initial temperatures, constraint strengths, and temperature change rates on the TSR of UHTCs are discussed. This study can provide a more intuitively visual understanding of the evolution of the TSR of UHTCs during actual operation conditions.
机译:基于材料特性对温度的敏感性以及航天器的热保护系统的维护系统的复杂性,用作热保护材料的超高温度陶瓷(UHTC)不能简单地考虑热抗冲击性(TSR)物质自身,但需要将外部约束条件和热环境纳入完整的帐户。通过在铪呋喃(HFB2)上的热冲击数值模拟,已经进行了对UHTCS TSR的不同外部限制和热环境的详细研究。讨论了不同初始温度,约束强度和温度变化率对UHTCS的TSR的影响。本研究可以在实际操作条件下提供对UHTCS TSR的演变的更直观地了解。

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