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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal shock resistance of ultra-high temperature ceramics under active cooling condition including the effects of external constraints
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Thermal shock resistance of ultra-high temperature ceramics under active cooling condition including the effects of external constraints

机译:高温陶瓷在主动冷却条件下的热抗冲击性,包括外部约束的影响

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摘要

A model has been established according to practical applications that ultra-high temperature ceramics are used as parts of the thermal protection system. Taking HfB2 as an example, the effects of convective heat transfer coefficient, thermal shock initial temperature and external constraints on the thermal shock resistance of ultra-high temperature ceramics under active cooling condition have been studied through numerical simulation. This model has also considered about sensitivities of thermo-physical properties to temperature changes. The results indicate that with the increase of thermal shock initial temperature and convective heat transfer coefficient, there are dangerous regions where the critical rupture temperature difference is the lowest. Some measures can be taken to pass the dangerous region safely in practical engineering applications. Besides, external constraints can improve the thermal shock resistance of ultra-high temperature ceramics under active cooling condition, which is very significant in practical applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:根据实际应用建立了一种模型,即超高温陶瓷用作热保护系统的部件。以HFB2为例,通过数值模拟研究了对流传热系数,热冲击初始温度和外部约束对超高温陶瓷的热抗冲击性的影响。该模型还考虑了热物理性质对温度变化的敏感性。结果表明,随着热冲击初始温度和对流传热系数的增加,存在危险区域,其中临界破裂温度差是最低的。可以采取一些措施在实际工程应用中安全地通过危险区域。此外,外部约束可以在主动冷却条件下提高超高温陶瓷的热抗震性,这在实际应用中非常显着。 (c)2016 Elsevier Ltd.保留所有权利。

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