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Properties of WZ21 (wt) alloy processed by a powder metallurgy route

机译:粉末冶金法加工WZ21(%wt)合金的性能

摘要

© 2015 Elsevier Ltd. Microstructure, mechanical properties and corrosion behaviour of WZ21 (%wt) alloy prepared by a powder metallurgy route from rapidly solidified powders have been studied. Results were compared to those of the same alloy prepared through a conventional route of casting and extrusion. The microstructure of the extruded ingot consisted of α-Mg grains and Mg3Zn3Y2 (W-phase) and LPSO-phase particles located at grain boundaries. Moreover, stacking faults were also observed within α-Mg grains. The alloy processed by the powder metallurgy route exhibited a more homogeneous and finer microstructure, with a grain size of 2μm. In this case W-phase and Mg24Y5 phase were identified, but not the LPSO-phase. The microstructural refinement induced by the use of rapidly solidified powders strengthened the alloy at room temperature and promoted superplasticity at higher strain rates. Corrosion behaviour in PBS medium evidenced certain physical barrier effect of the almost continuous arrangements of second phases aligned along the extrusion direction in conventionally processed WZ21 alloy, with a stable tendency around 7mm/year. On the other hand, powder metallurgy processing promoted significant pitting corrosion, inducing accelerated corrosion rate during prolonged immersion times.
机译:©2015 Elsevier Ltd.研究了通过粉末冶金方法从快速凝固的粉末制备的WZ21(%wt)合金的组织,力学性能和腐蚀行为。将结果与通过常规铸造和挤压工艺制备的相同合金的结果进行比较。挤压锭的显微组织由位于晶界处的α-Mg晶粒和Mg3Zn3Y2(W相)和LPSO相颗粒组成。此外,在α-Mg晶粒内也观察到堆垛层错。通过粉末冶金法加工的合金表现出更均匀且更精细的显微组织,晶粒尺寸为2μm。在这种情况下,确定了W相和Mg24Y5相,但未确定LPSO相。使用快速凝固的粉末引起的微观组织细化在室温下强化了合金,并在较高的应变速率下促进了超塑性。在PBS介质中的腐蚀行为证明,在常规加工的WZ21合金中,沿挤压方向排列的第二相的几乎连续排列几乎具有一定的物理屏障作用,且稳定趋势约为7mm / year。另一方面,粉末冶金工艺可促进明显的点蚀,并在延长的浸入时间内提高腐蚀速率。

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