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Study of Thermophysical Property Formation of Spatially Reinforced Carbon-Carbon Composite Materials

机译:空间增强碳复合材料热物理性能研究

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摘要

Thermophysical properties are studied: thermal conductivity, heat capacity and thermal diffusivity of spatially reinforced carbon-carbon composite materials. A structural model is proposed for thermal conductivity levels at 300 and 2500 K. Results of calculations are confirmed in manufacturing practice and studies of material properties. It is shown that anisotropy of thermal conductivity levels leads to a nonuniform thermal state of refractory carbon composite working surface fragments. It is established that structure formation for the surface of a carbon-carbon refractory wall is connected with composite components structural state inhomogeneity. Approaches are proposed for increasing the working surface life for refractory carbon materials.
机译:研究了热物理性质:空间增强碳 - 碳复合材料的导热性,热容量和热扩散性。 提出了300和2500k的导热水平的结构模型。在制造实践和材料性质的研究中证实了计算结果。 结果表明,导热率水平的各向异性导致难熔碳复合工作表面片段的不均匀热状态。 建立碳 - 碳耐火壁表面的结构形成与复合部件结构状态不均匀。 提出了用于增加难治性碳材料的工作表面寿命的方法。

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