英语翻译SummaryThis study showed that yttria stabilized zirconia can be brazed to 444 stainless steel by in-situ alloying of pure Ni-Ti foils at temperatures around 1000°C.The best brazes were produced when brazing for 60 minutes at 1010°C and
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英语翻译SummaryThis study showed that yttria stabilized zirconia can be brazed to 444 stainless steel by in-situ alloying of pure Ni-Ti foils at temperatures around 1000°C.The best brazes were produced when brazing for 60 minutes at 1010°C and
英语翻译
Summary
This study showed that yttria stabilized zirconia can be brazed to 444 stainless steel by in-situ alloying of pure Ni-Ti foils at temperatures around 1000°C.The best brazes were produced when brazing for 60 minutes at 1010°C and 30 minutes at 1030°C.Four different regions were identified across the braze metal which were influenced by the interactions of the Ni/Ti alloy with the metal and ceramic substrates.Significant interactions occurred between the Ni/Ti braze metal and the stainless steel.Cr and Fe were found to diffuse into the braze metal,but did not reach a narrow braze metal band near the YSZ.There was little interaction between the braze metal and the YSZ,but a strong bonding was produced at this interface.It is speculated that the bonding occurred due to the localized reduction of ZrO2 and oxidation of Ti that formed a solid solution.
英语翻译SummaryThis study showed that yttria stabilized zirconia can be brazed to 444 stainless steel by in-situ alloying of pure Ni-Ti foils at temperatures around 1000°C.The best brazes were produced when brazing for 60 minutes at 1010°C and
总结
该研究显示,氧化锆可并不稳定,yttria,通过原位合金化奥氏体不锈钢312纯Ni-Ti箔在1000摄氏度的温度.最好的brazes时产生了60分钟时钎焊1010°C和30分钟1030°C.四个不同的区域被确认在漏气的金属之间的相互作用是影响的镍钛铝合金金属、陶瓷基片.之间的相互作用发生重大金属镍钛漏气和不锈钢.被发现铬、铁扩散到漏气的金属,但是没有达到一个狭窄的金属乐队靠近YSZ漏气.很少有互动和YSZ漏气的金属,但是强烈这个界面粘结诞生.它是推测键是由于局部降低氧化锆钛,形成了一个坚实的解决方案
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