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Room-temperature multi-directional forging of AZ80Mg alloy to induce ultrafine grained structure and specific mechanical properties

机译:AZ80mg合金的室温多向锻造,诱导超细颗粒结构和特定机械性能

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A commercial hot-extruded AZ80Mg alloy was multi-directionally forged at room temperature. In the multi-directional forging method, the samples were forged with changing forging direction 90 degrees pass-by-pass. Although AZ80Mg alloy was one of brittle materials, severe plastic deformation by multi-directional forging was successively carried out even at room temperature by employing a small pass true strain of Δε = 0.1. The coarse initial grains of about 20 μm were gradually subdivided to ultrafine ones by multiple mechanical twinning pass-by-pass of multi-directional forging. Ultrafine grained structure with an average grain size of 0.3 urn was uniformly evolved at the cumulative strain of ΣΔε= 2.0. The multi-directionally forged Mg alloy up to ΣΔε = 2.0 exhibited marvelous mechanical properties of 530 MPa in yield stress and 650 MPa in ultimate tensile strength with 9% plastic strain to fracture. The relatively large ductility even after large plastic deformation by multi-directional forging could be reasonably understood by grain orientation randomization due to multiple twinning and suppression of sharp basal texture evolution.
机译:商业热挤出的AZ80mg合金在室温下是多向锻造的。在多向锻造方法中,样品锻造成90度通过逐方的锻造方向改变。尽管AZ80mg合金是脆性材料之一,但通过采用Δε= 0.1的小通量真菌,即使在室温下也通过多向锻造的严重塑性变形。通过多向锻造的多次机械孪晶通过逐方逐渐逐渐细分为超细初始颗粒的粗初始颗粒。在ΣΔε= 2.0的累积应变下均匀地进化平均晶粒尺寸的超细粒度结构。高达ΣΔε= 2.0的多向锻造的Mg合金在屈服应力和650MPa中表现出530MPa的奇妙机械性能,其极致拉伸强度具有9%的塑性菌株。通过多向锻造的多向锻造的大塑性变形之后,可以通过晶粒取向随机化由于尖锐的基础纹理进化而合理地理解多向锻造的大塑性变形的延展性相对较大的延展性。

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