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首页> 外文期刊>Journal of Materials Engineering and Performance >An Innovative Joint Structure for Brazing Cf/SiC Composite to Titanium Alloy
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An Innovative Joint Structure for Brazing Cf/SiC Composite to Titanium Alloy

机译:将Cf / SiC复合材料钎焊到钛合金上的创新接头结构

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In view of aerospace applications, an innovative structure for joining a Ti alloy to carbon fiber reinforced silicon carbide has been developed. This is based on the perforation of the CMC material, and this procedure results in six-fold increase of the shear strength of the joint compared to the unprocessed CMC. The joint is manufactured using the active brazing technique and TiCuAg as filler metal. Sound joints without defects are produced and excellent wetting of both the composite ceramic and the metal is observed. The mechanical shear tests show that failure occurs always within the ceramic material and not at the joint. At the CMC/filler, Ti from the filler metal interacts with the SiC matrix to form carbides and silicides. In the middle of the filler region depletion of Ti and formation of Ag and Cu rich regions are observed. At the filler/Ti alloy interface, a layered structure of the filler and Ti alloy metallic elements is formed. For the perforation to have a significant effect on the improvement of the shear strength of the joint appropriate geometry is required.
机译:考虑到航空航天应用,已经开发出一种用于将Ti合金连接到碳纤维增强的碳化硅上的创新结构。这是基于CMC材料的穿孔,与未处理的CMC相比,此过程可使接头的剪切强度提高了六倍。该接头使用主动钎焊技术和TiCuAg作为填充金属制造。产生了无缺陷的牢固接头,并且观察到复合陶瓷和金属的优异润湿性。机械剪切试验表明,失效总是发生在陶瓷材料内,而不是在接合处。在CMC /填料处,来自填料金属的Ti与SiC基体相互作用形成碳化物和硅化物。在填充剂区域的中间,观察到Ti的耗尽以及富含Ag和Cu的区域的形成。在填料/ Ti合金界面处,形成填料和Ti合金金属元素的层状结构。为了使穿孔对改善接头的剪切强度具有显著作用,需要适当的几何形状。

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