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New forming method of manufacturing cylindrical parts with nano/ultrafine grained structures by power spinning based on small plastic strains

机译:基于小塑性应变的动力纺制纳米/超细晶粒结构圆柱件新成形方法

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摘要

A new spinning method to manufacture the cylindrical parts with nano/ultrafine grained structures is proposed, which consists of quenching, power spinning and recrystallization annealing. The microstructural evolution during the different process stages and macroforming quality of the spun parts made of ASTM 1020 steel are investigated. The results show that the microstructures of the ferrites and pearlites in the ASTM 1020 steel are transformed to the lath martensites after quenching. The martensite laths obtained by quenching are refined to 87 nm and a small amount of nanoscale deformation twins with an average thickness of 20 nm is generated after performing a 3-pass stagger spinning with 55% thinning ratio of wall thickness, where the equivalent strain required is only 0.92. The equiaxial ferritic grains with an average size of 160 nm and nano-carbides are generated by subsequent recrystallization annealing at 480°C for 30 min. The spun parts with high dimensional precision and low surface roughness are obtained by the forming method developed in this work, combining quenching with 3-pass stagger spinning and recrystallization annealing.
机译:提出了一种新的制造具有纳米/超细晶粒结构的圆筒形零件的旋转方法,该方法包括淬火,强力旋转和再结晶退火。研究了不同工艺阶段的微观组织演变以及由ASTM 1020钢制成的旋转零件的宏观成形质量。结果表明,淬火后,ASTM 1020钢中的铁素体和珠光体组织转变为板条马氏体。通过淬火得到的马氏体板条被精制到87 nm,并且在进行3道交错交错纺丝且壁厚减薄率为55%之后,产生了平均厚度为20 nm的少量纳米级变形孪晶,其中需要等效应变只有0.92。通过随后在480°C下再结晶退火30分钟,生成平均尺寸为160 nm的等轴铁素体晶粒和纳米碳化物。通过这项工作开发的成形方法,将淬火与三道工序交错纺丝和再结晶退火相结合,可以获得具有高尺寸精度和低表面粗糙度的旋转零件。

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