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Optimising Mechanical Properties of Hot Forged Nickel Superalloy 625 Components

机译:优化热锻镍高温合金625部件的机械性能

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Hot forging and subsequent heat treatment were resulting in substandard mechanical properties of nickel superalloy, Alloy 625, components. The low strength was found to be due to inadequate deformation during forging, excessive grain growth and precipitation of carbides during subsequent heat treatment. Experimentation in a drop forging company and heat treatment facility led to the establishment of optimal parameters to minimise grain size and mitigate the adverse effects of carbide precipitation, leading to successful fulfilment of mechanical property specifications. This was achieved by reducing the number of operations, maximising the extent of deformation by changing the slug dimensions and its orientation in the die, and minimising the time of exposure to elevated temperatures in both the forging and subsequent heat treatment processes to avoid grain growth.
机译:热锻和随后的热处理导致镍超合金,合金625,组分的不合标准的机械性能。 发现低强度是由于在随后的热处理期间锻造,过度晶粒生长和碳化物沉淀的变形不足。 跌落锻造公司和热处理设施的实验导致建立最佳参数,以最大限度地减少晶粒尺寸,减轻碳化物降水的不利影响,导致成功实现机械性能规格。 这是通过减少操作次数来实现的,通过改变凹部和其取向来最大化变形程度,并最小化锻造和随后的热处理过程中的升高温度,以避免晶粒生长。

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