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COMPUTER AIDED DESIGN OF WIRES EXTRUSION FROM BIOCOMPATIBLE Mg-Ca MAGNESIUM ALLOY

机译:生物相容性Mg-Ca镁合金压出线的计算机辅助设计

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摘要

Mathematical model of small-diameter wires extrusion from biocompatible MgCa08 (Mg - 0.8% Ca) magnesium alloy was developed in the current paper in order to determine window of allowable technological parameters. Compression and tensile tests were carried out within temperature range 250-400°C and with different strain rates to determine the fracture conditions for the studied alloy. Finite element (FE) analysis was used to predict the billet temperature evolution and material damage during processing. The extrusion model takes into account two independent fracture mechanisms: a) surface cracking due to exceeding of the incipient melting temperature and b) utilization of material formability. FE simulations with different initial billet temperatures and pressing speeds were performed in order to determine the extrusion limit diagram (ELD) for MgCa08 magnesium alloy. The developed ELD was used to select the parameters for the direct extrusion of wires with diameter of 1 mm. Then, the extrusion of twelve wires was conducted at 400°C with pressing speed 0.25 mm/s. It was reported that the obtained wires were free from defects, which confirmed the good agreement between numerical and experimental results.
机译:为了确定允许的技术参数窗口,在当前的论文中开发了从生物相容性MgCa08(Mg-0.8%Ca)镁合金挤压小直径线材的数学模型。在250-400°C的温度范围内以不同的应变速率进行压缩和拉伸测试,以确定所研究合金的断裂条件。有限元(FE)分析用于预测加工过程中坯料的温度变化和材料损坏。挤压模型考虑了两个独立的断裂机理:a)由于超过初始熔融温度而导致的表面开裂和b)利用材料的可成形性。为了确定MgCa08镁合金的挤出极限图(ELD),在不同的初始坯料温度和压制速度下进行了有限元模拟。开发的ELD用于选择直径1 mm的线材直接挤出的参数。然后,在400℃以0.25mm / s的挤压速度进行十二根线材的挤出。据报道,所获得的导线没有缺陷,这证实了数值和实验结果之间的良好一致性。

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