SiC-CVD纤维增强钛基复合材料的连接研究。

T. Onzawa, A. Suzumura, J. H. Kim, K. Takagami
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引用次数: 0

摘要

本研究通过对接接头的拉伸试验,研究了SiC-CVD纤维增强钛基复合材料(FRM)与FRM的连接,对接接头采用倍频器,重叠长度为20mm。采用市售纯铜和Ti-37.5Zr-15Ni-10Cu非晶态钎料,比较了钎料的固相扩散焊和扩散钎焊的焊接性能。在接头力学性能方面,即使在1143k、5min、连接压力为12mpa(略高于同一材料的固态扩散连接压力)的条件下,接头也能在拉伸强度为1400 MPa的母材上断裂,接头效率约为96%。随着连接压力的增大,纤维的损伤降低了接头的强度。采用5 μm厚的市产纯铜在1153 K温度下进行扩散钎焊,在2 MPa的连接压力下,焊接时间为3 min,接头效率较低。采用钛基钎料进行扩散钎焊时,接头的强度与母材的强度相等。对接接头具有加倍接头,重叠长度分别为10和15 mm,在基材拉应力作用下失效,抗剪强度约为125 MPa。复合材料的层间抗剪强度较低,是导致效果较差的主要原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joining of Titanium-Matrix Composites Reinforced with SiC-CVD Fiber.
In this study, we have been investigated on joining of titanium-matrix composites reinforced with SiC-CVD fiber (FRM) to FRM by tensile tests of the joints using butt joint, with a doubler and overlap length of 20 mm. The joinability was compared with solid state diffusion bonding and diffusion brazing using commercially pure copper and Ti-37.5Zr-15Ni-10Cu amorphous filler.As for mechanical properties of the joint, even the joint made at 1143 K for 5 min under the joining pressure of 12 MPa, which is slightly higher than that required in solid state diffusion bonding of the same material, was fractured in the base metal with tensile strength of 1400 MPa, resulting a joint efficiency of about 96%. The fiber damage decreases the strength of the joint as the joinging pressure increases. The diffusion brazability using commercially pure copper of 5 μm thickness at 1153 K was obtained good joint efficiency for 3 min under the joining pressure of 2 MPa, lower than that of diffusion bonding. In the diffusion brazability using Ti-base filler metal, the strength of the joint was equal to the strength of the base metal.Butt joint, with a doubler and overlap length of 10 and 15 mm, failed in shear at a tensile stress in the base material, resulting in a shear strength of about 125 MPa. The poor results were attributed to composites material of lower interlaminar shear strength.
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