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The study of optimum shape to evaluation for thermal shock behavior of graphite

机译:评价石墨热冲击性能的最佳形状研究

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摘要

The purpose of the present study is to evaluate thermal shock properties of the ATJ graphite using laser irradiation techniques. Cracks of thermal shock specimens are initiated by maximum tensile stress field. Thermal shock resistance of the ATJ graphite is correlated with thermal parameter and mechanical property. To simulate the thermal stress conditions of rocket nozzle throat for the evaluation of the thermal shock resistance of ATJ graphite, the laser irradiation was applied at the central area of disk specimen. Thermal shock resistance was related to the geometry, the maximum stress, and the thermal and mechanical property. Also the analyses of transient temperature and thermal stress were performed by the finite element method with nonlinear code ABAQUS. Analyses were specially performed for several kinds of shape to determine the minimum power density which could be cracked the specimen. The shape of the thermal shock specimen which was cracked under the lower power density was obtained and the result will be proved to the test.
机译:本研究的目的是使用激光辐照技术评估ATJ石墨的热冲击性能。热冲击试样的裂纹是由最大拉应力场引起的。 ATJ石墨的抗热震性与热参数和机械性能相关。为了模拟火箭喷嘴喉部的热应力条件以评估ATJ石墨的抗热震性,在圆盘试样的中心区域进行了激光辐照。抗热震性与几何形状,最大应力以及热和机械性能有关。还通过非线性代码ABAQUS的有限元方法对瞬态温度和热应力进行了分析。专门针对几种形状进行了分析,以确定可能使试样破裂的最小功率密度。获得了在较低功率密度下破裂的热冲击试样的形状,并将其结果用于测试。

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