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Mechanical properties, aging behavior and microstructure evolution of Mg-Nd-Zn-Zr based magnesium matrix composite reinforced with alumina fibers

机译:用氧化铝纤维加固Mg-Nd-Zn-Zr基镁基质复合材料的机械性能,老化行为和微观结构演化

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Metal matrix composites reinforced with discontinuous reinforcement (short fiber, whisker or particle) are attractive for applications requiring higher stiffness and strength than traditional alloys. Unlike continuously reinforced composites, where the properties are mainly influenced by fibers, the properties of the discontinuously reinforced composites seem to be influenced more by matrix properties. Most of the discontinuously reinforced composites are based on age-hardenable light alloys, so that aging treatments can be applied to develop the optimum properties of the composites. The aging behavior of discontinuously reinforced composites has been a subject of great interest both from scientific and technological view points. Recently developed NZ30K (Mg-3wt.%Nd-0.5wt.%Zn-0.5wt.%Zr) alloys exhibit higher specific strength at both room and elevated temperatures, better strength and creep resistance than the existing commercial magnesium alloys. Accordingly, this alloy can be considered as a candidate material for potential automobile applications, such as engine blocks and pistons, which experience high service temperature. Its use could save considerable mass weight in powertrain systems. However, low elastic modulus and wear resistance of magnesium alloys limit their widespread applications. Metal matrix composites have been proposed as the feasible and economical solution. The aim of this study is to investigate the effect of alumina fibers on the aging hardening kinetics and age-hardening efficiency of squeeze cast NZ30K/Saffil/15p magnesium matrix composite. The aging behavior has been examined using Vickers, combined with microstructure observation developed during heat treatment by optical microscopy, scanning electron microscopy (SEM) and transmission electron microscopy (TEM).
机译:用不连续增强(短纤维,晶须或粒子)加强的金属基质复合材料对于需要比传统合金更高的刚度和强度的应用是具有吸引力的。与连续增强复合材料不同,在该性质主要受纤维的影响,不连续增强复合材料的性质似乎通过基质特性影响更多。大多数不连续增强复合材料基于年龄淬耐光合金,从而可以应用老化处理来发展复合材料的最佳性能。不连续增强复合材料的老化行为是来自科技观点的极大兴趣的主题。最近开发的NZ30K(Mg-3wt%Nd-0.5wt。%Zn-0.5wt。%Zr)合金在两个房间和高温下具有更高的比强度,比现有的商业镁合金更好的强度和抗蠕变性。因此,该合金可以被认为是用于潜在汽车应用的候选材料,例如发动机块和活塞,其经历高服务温度。它的使用可以节省动力总成系统的相当大量的体重。然而,镁合金的低弹性模量和耐磨性限制了它们广泛的应用。已经提出了金属基质复合材料作为可行性和经济的解决方案。本研究的目的是探讨氧化铝纤维对挤压铸造NZ30K / Saffil / 15P镁基质基质复合材料的衰老硬化动力学和年龄 - 硬化效率的影响。已经使用VICKERS检查了老化行为,结合光学显微镜,扫描电子显微镜(SEM)和透射电子显微镜(TEM)在热处理过程中产生的微观结构观察。

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