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Effect of Thermal cycles and Dimensions of the Geometry on Residual stress of the Alumina-Kovar Joint

机译:热循环和尺寸的几何形状对氧化铝 - KOVAR关节的残余应力

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Finite element method is employed to determine the effect of variation of residual stress with dimension and the stress generated under its working condition along the Kovar. 3 different dimensions of Alumina-Kovar joint with height to diameter ratio of 3/10, using TiCuSil as a filler material. Transient Structural Analysis is carried out for three different dimensions (diameterx height) (i) 60mmx 20mm (Geometry 1) (ii) 90mm x 20mm (Geometry 2) (iii) 120mm x 20mm (Geometry 3). A comparative study has been carried out between the residual stresses developed in the brazed joint that have undergone 5 thermal cycles subsequent to brazing and that between the brazed joint. The heating and cooling rates from the brazed temperature is 10°C/ up to room temperature. The brazing temperature and holding time considered for the analysis are 900°C and 10 minutes. Representative Volume Element (RVE) model is used for simulation. Sparse Matrix Direct Solver method is used to evaluate the results, using Augmented Lagrange method formulation in the contact region. All the simulations are performed in ANSYS Workbench 15.0, using solver target Mechanical APDL. From, the above simulations it is observed high concentration of residual stress is observed along the filler region i.e. in between Alumina and Kovar, as a result of difference in coefficient of thermal expansion between Alumina and Kovar. The residual stress decreases with increasing dimensions of the geometry and upon application of thermal cycles, subsequent to brazing.
机译:采用有限元方法来确定残余应力变化与沿着Kovar在其工作状态下产生的应力的影响。 3使用TiCusil作为填充材料的3/10的直径比的3个氧化铝 - Kovar接头的不同尺寸。瞬态结构分析用于三个不同的尺寸(直径x高度)(i)60mmx 20mm(几何1)(ii)90mm×20mm(几何2)(iii)120mm×20mm(几何形状3)。在钎焊接头中产生的残余应力之间进行了比较研究,该钎焊接头在钎焊之后经过5个热循环,并且在钎焊接头之间。钎焊温度的加热和冷却速率为10°C /达到室温。考虑分析的钎焊温度和保持时间为900°C和10分钟。代表卷元素(RVE)模型用于模拟。稀疏矩阵直接求解器方法用于评估结果,在接触区域中使用增强拉格朗日方法配方。所有模拟都在ANSYS工作台15.0中执行,使用求解器目标机械APDL。从,上述模拟是观察到沿填料区域的高浓度的残余应力,即在氧化铝和Kovar之间观察到氧化铝和KOVAR之间的差异差异。随着几何形状的尺寸和在钎焊之后施加热循环时,残余应力随着几何形状的尺寸而减小。

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