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Development of titanium-based brazing filler metals with low-melting-point

机译:低熔点钛基钎料的开发

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摘要

Titanium and titanium alloy are excellent in specific intensity and corrosion resistance, and it is also good on the biocompatibility. And, the brazing is a bonding method of which productivity and reliability are high, when the complicated and precise structure is produced. Especially, the titanium base brazing filler metal is excellent in joint strength and corrosion resistance. In the other hand, when the brazing is carried out using the low-melting-point brazing filler metal, the bonding is completed without hurting characteristics of the base metal in the brazing, and the joint may become the uniform composition. In the laboratory of authors, by adding elements such as Co, Ag, Ni, Cr to the base alloy of Ti-Zr-Cu, the low-melting-point brazing filler metal has been developed. As the method, the low-melting-point brazing filler metal constituent was found by using low - melting- point eutectic search procedure in order to reduce the experiment point. As a representative brazing filler metal, in the ternary compound system, 37.5Ti-37.5Zr-25Cu alloy (melting point : 825 deg C) and in the quaternary compound system, 30Ti-43Zr-25Cu-2Cr alloy (melting point : 825 deg C) was developed. However, It was clarified that 820 deg C was limitative for the melting point, and that in present state, the melting point depression under this temperature is difficult. Conclusively, it was proven that there was the possibility as a practical brazing filler metal on author's developing brazing filler metal, as a result of considering brazing joint structure, wettability and strength characteristic after the brazing.
机译:钛和钛合金的比强度和耐腐蚀性优异,并且生物相容性也良好。并且,当制造复杂且精确的结构时,钎焊是生产率和可靠性高的结合方法。尤其是,钛基钎料的接头强度和耐腐蚀性优异。另一方面,当使用低熔点钎料进行钎焊时,在不损害钎料中的母材的特性的情况下完成了接合,并且接头可能成为均匀的组成。在作者的实验室中,通过向Ti-Zr-Cu的基体合金中添加Co,Ag,Ni,Cr等元素,开发出了低熔点钎料。作为该方法,通过使用低熔点共晶搜索程序来发现低熔点钎料金属成分,以减少实验点。作为代表性的钎料,在三元复合体系中为37.5Ti-37.5Zr-25Cu合金(熔点:825℃),在四元复合体系中为30Ti-43Zr-25Cu-2Cr合金(熔点:825℃) C)被开发出来。但是,明确了熔点为820℃是限制性的,在目前的状态下,难以在该温度下降低熔点。结论是,考虑到钎焊后的接头结构,润湿性和强度特性,已证明在作者正在开发的钎料上有可能用作实用的钎料。

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