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Large strain extrusion machining of magnesium alloys for biomedical applications

机译:生物医学应用镁合金的大应变挤压加工

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Recently, magnesium alloys are attracting more and more attention as degradable materials for manufacturing temporary biomedical devices, although their rapid degradation in physiological environment limits their clinical applications to a great extent. Different Severe Plastic Deformation (SPD) processes have been recently applied to magnesium alloys in order to improve the surface integrity, which is directly correlated to their corrosion resistance. The current study investigates the possibility of exploiting Large Strain Extrusion Machining (LSEM) as a processing route to increase corrosion resistance of magnesium alloys for biomedical applications. Different cooling conditions and cutting speeds were adopted during LSEM and their effects on the surface integrity and corrosion resistance on both the machined workpiece and obtained chips were studied. For the first time, liquid nitrogen was used as cooling medium in LSEM and its effect was properly investigated. Results showed that LSEM, regardless of the adopted cutting parameters, is an effective method to obtain a workpiece with improved functional performances. Similar results pertain to the chips, but a careful choice of process parameters is even more mandatory than in the case of the workpiece.
机译:近来,镁合金作为用于制造临时生物医学装置的可降解材料越来越受到关注,尽管它们在生理环境中的快速降解在很大程度上限制了其临床应用。为了改善表面完整性,最近将不同的严重塑性变形(SPD)工艺应用于镁合金,这与它们的耐腐蚀性直接相关。目前的研究调查了利用大应变挤压加工(LSEM)作为增加镁合金在生物医学应用中的耐蚀性的加工途径的可能性。在LSEM中采用了不同的冷却条件和切削速度,研究了它们对加工的工件和所得切屑的表面完整性和耐腐蚀性的影响。 LSEM首次将液氮用作冷却介质,并对其效果进行了适当的研究。结果表明,不管采用何种切削参数,LSEM都是一种获得具有改进功能性能的工件的有效方法。对于切屑也有类似的结果,但是与工件相比,对工艺参数的仔细选择甚至更为必要。

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