Ultrasonic evaluation of thermally shocked Cr/sub 3/C/sub 2//Al/sub 2/O/sub 3/

Shih-Jeh Wu, C. Jeng, Jow-Lay Huang
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Abstract

Chromium carbide (Cr/sub 3/C/sub 2/) has been proved to be a potential material for toughening alumina in biomedical and industrial applications because of its high Young's modulus and erosion resistance. On the other hand, TiC/Al/sub 2/O/sub 3/ composite has been used a magnetic head slider due to its good wear resistance and mechanical strength. In this study we prepare samples of Cr/sub 3/C/sub 2//Al/sub 2/O/sub 3/ composite by injection moulding method. To use this ceramic material as structural components when the temperature varies rapidly, it is necessary to be able to estimate damage or thermal shock cracking. Ultrasonic attenuation measurements are made for assessment of thermal shock damage. Results show that the attenuation increases as the shock temperature raises. Corresponding SEM pictures show although the size of micro-crack doesn't change the depth of the micro-cracks increases. It is demonstrated that ultrasonic attenuation proves to be a reliable tool for evaluating micro-fractures in solids.
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热冲击Cr/sub - 3/C/sub - 2/ Al/sub - 2/O/sub - 3/的超声评价
碳化铬(Cr/sub - 3/C/sub - 2/)具有较高的杨氏模量和耐腐蚀性能,是一种有潜力的增韧氧化铝材料。另一方面,TiC/Al/sub 2/O/sub 3/复合材料由于其良好的耐磨性和机械强度而被用于磁头滑块。本文采用注射成型法制备了Cr/sub - 3/C/sub - 2/ Al/sub - 2/O/sub - 3/复合材料样品。当温度快速变化时,使用这种陶瓷材料作为结构部件,有必要能够估计损伤或热冲击开裂。超声衰减测量用于评估热冲击损伤。结果表明,随着冲击温度的升高,衰减量增大。相应的SEM图显示,微裂纹的尺寸没有改变,但微裂纹的深度有所增加。结果表明,超声衰减是评价固体微裂缝的可靠工具。
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