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Analysis of residual stress development during thermal processing of Al-Si alloys

机译:铝硅合金热处理过程中残余应力发展的分析

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Residuals stresses can be present in almost every industrial component. Manufacturing processes such as casting, welding, and heat treatment are the most common causes of residual stresses. Thermal residual stresses could be developed in a component during heat treatment process as a result of non-uniform heating or cooling operations. In this study, experiments were carried oui to develop insights into and understanding of the residual stresses that can arise during thermal treatments of Al-Si components. Due to the complexity of residual stresses analysis in real components, a common mixed-section casting was employed. In order to fulfill the requirements ol performing different thermal treatments, a special cooling apparatus was designed and built. A number of the casting components of an Al-Si alloy were annealed for stress relief, and then removed from the furnace and cooled with different water flow rates. Then, the amount oi accumulated residual stresses in the components was measured relaxation of stress using cutting. Thermal analysis and residual stress measurement for different thermal treatment regimes showed that by choosing a specific holding temperature before direct cooling, the value of residual stress increases linearly with flow rate of cooling. On the other hand, for a constant value of cooling watei flow, △T_(max) and residual stress level decreases when the value of base temperature of furnace decreases. Moreover, the cutting method can be a suitable method for measuring thermal residual stresses in Al-Si components and thermal analysis is a powerful technique to predict residua! stresses.
机译:几乎每个工业组件中都可能存在残余应力。铸造,焊接和热处理等制造过程是残余应力的最常见原因。由于加热或冷却操作不均匀,在热处理过程中可能会在组件中产生热残余应力。在这项研究中,还进行了一些实验,以开发出对Al-Si组件热处理过程中可能产生的残余应力的见解。由于实际零件中残余应力分析的复杂性,因此采用了普通的混合截面铸件。为了满足进行不同热处理的要求,设计并制造了一种特殊的冷却设备。为了缓解应力,将许多Al-Si合金的铸件退火,然后从炉中取出,并以不同的水流量对其进行冷却。然后,通过切削测量部件中累积的残余应力的量。对不同热处理方式的热分析和残余应力测量表明,通过在直接冷却之前选择特定的保持温度,残余应力的值随冷却流量的增加而线性增加。另一方面,对于恒定的冷却水流量,当炉的基础温度降低时,△T_(max)和残余应力降低。此外,切削方法可能是测量Al-Si组件中热残余应力的合适方法,而热分析是预测残余物的有力技术。压力。

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