...
首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Elevated Temperature Creep and Fracture Properties of the 62Cu-35Au-3Ni Braze Alloy
【24h】

Elevated Temperature Creep and Fracture Properties of the 62Cu-35Au-3Ni Braze Alloy

机译:62Cu-35Au-3Ni钎焊合金的高温蠕变和断裂性能

获取原文
获取原文并翻译 | 示例
           

摘要

The Cu-Au-Ni braze alloys are used for metal/ceramic brazes in electronic assemblies because of their good wetting characteristics and low vapor pressure. We have studied the tensile creep properties of annealed 62Cu-35Au-3Ni alloy over the temperature range 250 deg C to 750 deg C. Two power-law equations have been developed for the minimum creep rate as a function of true stress and temperature. At the highest temperatures studied (650 deg C and 750 deg C), the minimum creep rate is well described with a stress exponent of 3.0, which can be rationalized in the context of Class I solid solution strengthening. The inverted shape of the creep curves observed at these temperatures is also consistent with Class I alloy behavior. At lower temperatures, power-law creep is well described with a stress exponent of 7.5, and normal three-stage creep curves are observed. Intergranular creep damage, along with minimum values of strain to fracture, is most apparent at 450 deg C and 550 deg C. The lower stress exponent in the Class I alloy regime helps to increase the strain to fracture at higher temperatures (650 deg C and 750 deg C). The minimum creep rate behavior of the 62Cu-35Au-3Ni alloy is also compared with those of the 74.2Cu-25.8Au alloy and pure Cu. This comparison indicates that the 62Cu-35Au-3Ni has considerably higher creep strength than pure Cu. This fact suggests that the 62Cu-35Au-3Ni braze alloy can be used in low mismatch metal-to-ceramic braze joints such as Mo to metallized alumina ceramic with few problems. However, careful joint design may be essential for the use of this alloy in high thermal mismatch metal-to-ceramic braze joints.
机译:Cu-Au-Ni钎焊合金由于其良好的润湿特性和低蒸气压而用于电子组件中的金属/陶瓷钎焊。我们已经研究了退火的62Cu-35Au-3Ni合金在250摄氏度至750摄氏度温度范围内的拉伸蠕变性能。已针对最小蠕变速率(是真实应力和温度的函数)开发了两个幂律方程。在研究的最高温度(650℃和750℃)下,最小蠕变速率很好地描述,应力指数为3.0,可以在I类固溶体强化的背景下合理化。在这些温度下观察到的蠕变曲线的倒转形状也与I类合金的行为一致。在较低温度下,幂律蠕变被很好地描述,应力指数为7.5,并且观察到正常的三阶段蠕变曲线。晶间蠕变损伤以及断裂应变的最小值在450℃和550℃时最明显。I级合金状态下较低的应力指数有助于在较高温度(650℃和650℃)下增加断裂应变。 750摄氏度)。还将62Cu-35Au-3Ni合金的最小蠕变速率行为与74.2Cu-25.8Au合金和纯Cu的最小蠕变速率行为进行了比较。该比较表明62Cu-35Au-3Ni比纯Cu具有更高的蠕变强度。这一事实表明,62Cu-35Au-3Ni钎焊合金可用于低失配的金属-陶瓷钎焊接头,例如Mo与金属化氧化铝陶瓷的接合,几乎没有问题。但是,仔细设计接头设计对于在高热失配金属-陶瓷钎焊接头中使用该合金可能至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号