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Affecting Structure Characteristics of Rotary Swaged Tungsten Heavy Alloy Via Variable Deformation Temperature

机译:变形温度对旋转型锻钨重合金结构特性的影响

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摘要

This study focuses on numerical prediction and experimental investigation of deformation behaviour of a tungsten heavy alloy prepared via powder metallurgy and subsequent cold (20 °C) and warm (900 °C) rotary swaging. Special emphasis was placed on the prediction of the effects of the applied induction heating. As shown by the results, the predicted material behaviour was in good correlation with the real experiment. The differences in the plastic flow during cold and warm swaging imparted differences in structural development and the occurrence of residual stress. Both the swaged pieces exhibited the presence of residual stress in the peripheries of W agglomerates. However, the NiCO matrix of the warm-swaged piece also exhibited the presence of residual stress, and it also featured regions with increased W content. Testing of mechanical properties revealed the ultimate tensile strength of the swaged pieces to be approximately twice as high as of the sintered piece (860 MPa compared to 1650 MPa and 1828 MPa after warm and cold swaging, respectively).
机译:这项研究的重点是通过粉末冶金以及随后的冷(20°C)和热(900°C)旋锻工艺制备的钨重合金的变形行为的数值预测和实验研究。特别强调了感应加热的影响的预测。结果表明,预测的材料行为与实际实验具有良好的相关性。冷锻和热锻期间塑性流动的差异赋予了结构发展差异和残余应力的出现。两个型锻件在W团聚体的外围均表现出残余应力。但是,热锻件的NiCO基体也显示出残余应力的存在,并且其特征还在于W含量增加的区域。力学性能测试表明,型锻件的极限抗拉强度约为烧结件的两倍(860 MPa,而冷锻后分别为1650 MPa和1828 MPa)。

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