首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >A study of the residual stress reduction method through the mechanical loading cycle in metal-to-ceramic brazed joints
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A study of the residual stress reduction method through the mechanical loading cycle in metal-to-ceramic brazed joints

机译:通过金属-陶瓷钎焊接头的机械载荷循环降低残余应力的方法研究

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摘要

The transient thermal and residual stresses in the metal-to-ceramic brazed joints were analysed by using the finite element method (FEM). The thermal and residual stresses which were induced mainly by the difference in the thermal expansioncoefficients between the brazed materials were successively calculated. The high tensile residual stress occurred in the brazed joint interface, which has the potential to cause internal cracks in the brazed joints. In order to reduce the tensile residual stress in the brazed joint, the mechanical loading cycle was adopted during the brazing thermal cycle. The calculation results revealed that the tensile residual stress in the brazed ceramics can be reduced by the mechanical loading cycle and that themagnitude of the applied load and the temperature at which the mechanical loading cycle started greatly influence the reduction amount of the tensile residual stress.For a comparison of the simulation results, the residual stress in the brazed joints was measured by using the X-ray diffraction method. The results calculated by the FEM analysis showed a similar tendency to the results measured by the X-ray difractionmethod. In the case of brazed joints with 0.1 mm thick filler metal, the residual stress in the ceramic part after the mechanical loading cycle showed a lower tensile stress compared to that of brazed joints without the mechanical loading cycle. Thelarger the applied load, the smaller was the tensile residual stress occurring in the metal-to-ceramic brazed joint.
机译:使用有限元方法(FEM)分析了金属-陶瓷钎焊接头中的瞬态热应力和残余应力。依次计算了主要由钎焊材料之间热膨胀系数差异引起的热应力和残余应力。高强度残余残余应力发生在钎焊接头界面中,这有可能导致钎焊接头内部产生裂纹。为了减少钎焊接头中的拉伸残余应力,在钎焊热循环过程中采用了机械加载循环。计算结果表明,钎焊陶瓷中的拉伸残余应力可以通过机械加载循环来减小,并且施加载荷的大小和机械加载循环开始的温度对拉伸残余应力的减小量有很大影响。与仿真结果进行比较,使用X射线衍射法测量了钎焊接头中的残余应力。通过FEM分析计算出的结果显示出与X射线衍射方法测得的结果相似的趋势。对于采用0.1 mm厚填充金属的钎焊接头,与没有机械加载循环的钎焊接头相比,机械加载循环后陶瓷零件中的残余应力显示出较低的拉应力。施加的载荷越大,在金属-陶瓷钎焊接头中产生的拉伸残余应力越小。

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