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FOREIGN OBJECT DAMAGE BEHAVIOR OF A SiC FIBROUS CERAMIC COMPOSITE

机译:SiC纤维陶瓷复合材料的异物损伤行为

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The response of a SiC fibrous ceramic composite to foreign object damage was determined at ambient temperature and velocities ranging from 40 to 150 m/s. Target specimens were impacted, at a normal incidence angle and in a partially supported configuration, using 1.59 mm-diameter hardened steel ball projectiles. Qualitative analysis of the damage morphologies of targets and projectiles were made via scanning electron microscopy (SEM). In addition, the extent of impact damage was characterized by determining the post-impact strength of each target specimen as a function of impact velocity. Relative to the as-received strength, the fibrous composite showed limited strength degradation due to impact with the maximum reduction of 17 % occurring at 150 m/s. A quasi-static analysis of the impact force prediction was also made based on the principle of energy conservation and the results were verified via experimental data.
机译:在环境温度和速度范围为40至150 m / s的情况下,确定了SiC纤维陶瓷复合材料对异物损坏的响应。使用1.59毫米直径的硬化钢球弹头,以法线入射角和部分支撑的配置冲击目标样本。通过扫描电子显微镜(SEM)对靶和弹丸的损伤形态进行定性分析。另外,通过确定每个目标试样的冲击后强度作为冲击速度的函数来表征冲击破坏的程度。相对于所接收的强度,纤维复合材料由于冲击而显示出有限的强度降低,在150 m / s时最大降低了17%。基于节能原理对冲击力的预测进行了准静态分析,并通过实验数据对结果进行了验证。

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