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Extrusion of the Magnesium-Nickel Alloys

机译:镁 - 镍合金的挤出

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Gravity cast billets in AZ91 alloy and two experimental alloys containing Nickel (AZ91+Ni), were directly extruded. Chemical composition of the Nickel containing alloys was designed such that it corresponded to a potential recycling quality of the AZ91 alloy. Extrusion trials were performed at 370°C, applying extrusion speed of 2.6 mmin~(-1) and reduction ratios 4:1 and 6:1. Effective strain distribution in the extruded rod as a function of the distance from the rod center was in the range 1.6 to 7, depending on the applied reduction ratio. These values were determined by FEM-analyze. Extrusion of the experimental alloys was not challenged by rather large, cubic shaped Nickel-based particles present in the micro structure of the experimental alloys. The extrusion process of these led to extruded rods with smooth surface without extruded failures of type hot cracks. No effect of Nickel on mechanical properties of AZ91 alloy was noticed either. Tensile test showed that mechanical properties, Yield strength, Tensile strength and Elongation, were mainly driven by strain hardening and volume fraction of the brittle, precipitated β-phase.
机译:直接挤出AZ91合金中的重力铸坯和含有镍(AZ91 + Ni)的两种实验合金,挤出。设计了含镍的合金的化学组​​成,使得其对应于AZ91合金的潜在再循环质量。挤出试验在370℃下进行,施加2.6mmin〜(-1)和减少比例4:1和6:1的挤出速度。根据施加的还原率,挤出杆作为距离杆中心的距离的函数的有效应变分布在1.6至7的范围内。这些值由FEM分析确定。实验合金的挤出不受实验合金的微结构中存在的相当大的立方形镍基颗粒的挑战。这些LED的挤出过程导致挤出杆,具有光滑的表面,无需挤出的热裂缝的挤出故障。注意到镍对AZ91合金的机械性能的影响。拉伸试验表明,机械性能,屈服强度,拉伸强度和伸长率主要是通过脆性的菌株硬化和体积分数驱动,沉淀的β相。

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