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Study of structure and residual stresses in cold rotary swaged tungsten heavy alloy

机译:冷旋锻型钨重合金的组织和残余应力研究

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摘要

Cold processing of tungsten heavy alloys is a challenge, however masterable owing to the continuing development in forming technologies. This study deals with a thorough investigation of a WNiCo alloy rotary swaged at room temperature. Due to the low processing temperature, special focus is on residual stress evaluation, which was performed by means of neutron diffraction and scanning electron microscopy and supplemented with numerically predicted stress distributions. (Sub)structure of the swaged-piece was analysed via scanning and transmission electron microscopy and the whole study was completed with tensile tests results. The results showed a substructure featuring dislocation cells and subgrains supporting the observed work hardening. For the swaged-piece, the ultimate tensile strength exceeded 1800 MPa. Analyses of grains misorientations indicated the presence of residual stresses especially on the swaged-piece periphery. This result was confirmed by the other performed analyses, all showing predominantly compression residual stresses within the swaged-piece, locally exceeding -1500 MPa.
机译:钨重合金的冷加工是一个挑战,但是由于成型技术的不断发展,这是可以接受的。本研究对室温下锻压的WNiCo合金进行了彻底的研究。由于加工温度低,因此特别关注残余应力评估,该评估是通过中子衍射和扫描电子显微镜进行的,并补充了数值预测的应力分布。通过扫描和透射电子显微镜分析了型锻件的(亚)结构,并用拉伸试验结果完成了整个研究。结果显示了具有位错细胞和亚晶粒的亚结构,支持观察到的加工硬化。对于型锻件,极限抗拉强度超过1800 MPa。晶粒取向错误的分析表明,残余应力的存在,特别是在型锻件的外围。其他进行的分析证实了这一结果,所有分析均显示出型锻件内部的主要压缩残余应力,局部超过-1500 MPa。

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