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Effects of initial density during laser machining assisted CVI process and its influence on strength of C/SiC composites

机译:激光加工辅助CVI过程中初始密度的影响及其对C / SiC复合材料强度的影响

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摘要

Novel laser-assisted chemical vapor infiltration (LA-CVI) technique has been used to improve the density and strength of carbon fiber reinforced SiC composites (C/SiC). Initial density of C/SiC before laser machining played an important role in determining the final density and strength of composites. Results show that final density and bending strength of lower initial density composites were better than that of higher initial density samples after LA-CVI process, while the porosity exhibited opposite behavior. Micro-CT and COMSEL simulation results verify that after LA-CVI process, dense band width of C/SiC with initial density of 1.5 g/cm(3) was twice as that of C/SiC with initial density of 1.8 g/cm(3). This led to crack propagation bypassing the micro-hole. In conclusion, low initial density when laser machining was carried out resulted in better properties of final composites.
机译:新型激光辅助化学蒸汽渗透(LA-CVI)技术已用于提高碳纤维增强SiC复合材料(C / SiC)的密度和强度。 激光加工前C / SiC的初始密度在确定复合材料的最终密度和强度方面发挥了重要作用。 结果表明,下初始密度复合材料的最终密度和弯曲强度优于La-CVI过程后更高初始密度样品的密度和弯曲强度,而孔隙率表现出相反的行为。 Micro-CT和COMSEL仿真结果验证,在La-CVI过程之后,C / SiC的初始密度为1.5g / cm(3)的密集带宽为C / SiC的两倍,初始密度为1.8g / cm( 3)。 这导致裂缝传播绕过微孔。 总之,进行激光加工的初始密度低导致最终复合材料的更好性。

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