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首页> 外文期刊>Journal of Materials Engineering and Performance >Thermal Shock Properties of a 2D-C/SiC Composite Prepared by Chemical Vapor Infiltration
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Thermal Shock Properties of a 2D-C/SiC Composite Prepared by Chemical Vapor Infiltration

机译:化学气相渗透法制备2D-C / SiC复合材料的热冲击性能

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摘要

The thermal shock properties of a two-dimensional carbon fiber-reinforced silicon carbide composite with a multilayered self-healing coating (2D-C/SiC) were investigated in air. The composite was prepared by low-pressure chemical vapor infiltration. 2D-C/SiC specimens were thermally shocked for different cycles between 900 and 300℃. The thermal shock resistance was characterized by residual tensile properties and mass variation. The change of the surface morphology and microstructural evolution of the composite were examined by a scanning electron microscope. In addition, the phase evolution on the surfaces was identified using an X-ray diffractometer. It is found that the composite retains its tensile strength within 20 thermal shock cycles. However, the modulus of 2D-C/SiC decreases gradually with increasing thermal shock cycles. Extensive pullout of fibers on the fractured surface and peeling off of the coating suggest that the damage caused by the thermal shock involves weakening of the bonding strength of coating/composite and fiber/matrix. In addition, the carbon fibers in the near-surface zone were oxidized through the matrix cracks, and the fiber/matrix interfaces delaminated when the composite was subjected to a larger number of thermal shock cycles.
机译:在空气中研究了具有多层自愈涂层(2D-C / SiC)的二维碳纤维增强碳化硅复合材料的热冲击性能。通过低压化学气相渗透制备复合材料。 2D-C / SiC样品在900到300℃之间进行了不同的热冲击。抗热震性的特征在于残余拉伸性能和质量变化。用扫描电子显微镜观察复合材料的表面形态变化和微观结构演变。另外,使用X射线衍射仪鉴定了表面上的相演变。发现该复合材料在20个热冲击循环内保持其拉伸强度。但是,2D-C / SiC的模量随着热冲击周期的增加而逐渐降低。纤维在断裂表面上的大量拉出和涂层的剥落表明,由热冲击引起的损坏会削弱涂层/复合材料和纤维/基体的粘结强度。另外,当复合材料经受大量的热冲击循环时,近表面区域的碳纤维被基体裂纹氧化,并且纤维/基体界面分层。

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