首页> 外文期刊>Journal of Materials Science >Pressure-pulsed chemical vapour infiltration of pyrolytic carbon into porous carbon or two-dimensional-carbon/SiC particulate preforms from C6H6-H-2-N-2
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Pressure-pulsed chemical vapour infiltration of pyrolytic carbon into porous carbon or two-dimensional-carbon/SiC particulate preforms from C6H6-H-2-N-2

机译:热解碳的压力脉冲化学气相渗透到C6H6-H-2-N-2的多孔碳或二维碳/ SiC颗粒预成型坯中

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摘要

Pyrolytic carbon was infiltrated into porous carbon or two-dimensionally woven carbon fibre (2D-C)/SiC particulate preforms using pressure-pulsed chemical vapour infiltration from C6H6(3-16%)-H-2-N-2 at 1273-1373 K. Residual porosity of porous carbon decreased from 29 to 10% after 1 x 10(4) pulses at 1323 K, and that of 2D-C/SiC particulate preform decreased from 30 to 7.5% after 4 x 10(4) pulses at 1273 K. Flexural strength of 2D-C/SiC preform reached about 150 MPa. [References: 18]
机译:使用压力脉冲化学蒸气从1273-1373年从C6H6(3-16%)-H-2-N-2渗透入热解碳,使其渗入多孔碳或二维编织碳纤维(2D-C)/ SiC颗粒预成型坯中K.在133 K下经过1 x 10(4)脉冲后,多孔碳的残留孔隙率从29%降低到10%,2D-C / SiC颗粒预成型坯在4 x 10(4)脉冲后从23%降低到7.5% 1273K。2D-C/ SiC预制棒的抗弯强度达到约150 MPa。 [参考:18]

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