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The effects of stitched density on low-velocity impact damage of cross-woven carbon fiber reinforced silicon carbide composites

机译:缝合密度对交织碳纤维增强碳化硅复合材料低速冲击损伤的影响

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摘要

Two dimensional carbon fiber reinforced silicon carbide composites (2D C/SiCs) subjected to low-velocity impact (LVI) damage were investigated, in order to evaluate the efficiency of stitching as a reinforcing mechanism able to improve the delamination resistance of 2D C/SiCs. The damage microstructures of the specimens at different stitched density (SD) were observed by infrared thermography and industrial computed tomography scanners. While the damage depth of specimens with the SD of 10 mmeedle was greater than that of specimens with SD of 5 or 15 mmeedle, the residual tensile strength of the specimens with the SD of 10 mmeedle was the highest. With the decreasing of SD, the real damage radius of 2D C/SiCs measured by thermography increased whereas the residual tensile strength did not appear the same phenomenon. The 2D C/SiCs with the SD of 5, 10, and 15 mmeedle had good damage resistance after the LVI, with the tensile strength still retaining 72.43%, 95.20%, and 91.49%, respectively. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:研究了受到低速冲击(LVI)破坏的二维碳纤维增强碳化硅复合材料(2D C / SiCs),以评估缝合效率,以此作为能够提高2D C / SiCs抗分层性的增强机制。通过红外热像仪和工业计算机断层扫描仪观察了在不同缝合密度(SD)下标本的损伤微观结构。 SD为10mm /针的试样的损伤深度大于SD为5或15mm /针的试样的损伤深度,但SD为10mm /针的试样的残余拉伸强度最高。随着SD的减小,通过热像仪测量的2D C / SiCs的实际损伤半径增加,而残余拉伸强度没有出现相同的现象。 LVI后具有5、10和15毫米/针的SD的2D C / SiC具有良好的抗损伤性,拉伸强度仍分别保持72.43%,95.20%和91.49%。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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