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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microstructure, texture evolution, mechanical properties and corrosion behavior of ECAP processed ZK60 magnesium alloy for biodegradable applications
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Microstructure, texture evolution, mechanical properties and corrosion behavior of ECAP processed ZK60 magnesium alloy for biodegradable applications

机译:ECAP处理的ZK60镁合金可生物降解应用的组织,组织演变,力学性能和腐蚀行为

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摘要

Ultra-fine grained ZK60 Mg alloy was obtained by multi-pass equal-channel angular pressing at different temperatures of 250 °C, 200 °C and 150 °C. Microstructural observations showed a significant grain refinement after ECAP, leading to an equiaxed and ultrafine grain (UFG) structure with average size of 600 nm. The original extrusion fiber texture with planes oriented parallel to extrusion direction was gradually undermined during ECAP process and eventually it was substituted by a newly stronger texture component with considerably higher intensity, coinciding with ECAP shear plane. A combination of texture modification and grain refinement in UFG samples led to a marked reduction in mechanical asymmetric behavior compared to the as-received alloy, as well as adequate mechanical properties with about 100% improvement in elongation to failure while keeping relatively high tensile strength. Open circuit potential, potentiodynamic and weight loss measurements in a phosphate buffer solution electrolyte revealed an improved corrosion resistance of UFG alloy compared to the extruded one, stemming from a shift of corrosion regime from localized pitting in the as-received sample to a more uniform corrosion mode with reduced localized attack in ECAP processed alloy. Compression tests on immersed samples showed that the rate of loss of mechanical integrity in the UFG sample was lower than that in the as-received sample.
机译:通过在250°C,200°C和150°C的不同温度下进行多道次等通道角挤压获得了超细晶粒ZK60 Mg合金。显微组织观察表明,ECAP后晶粒明显细化,导致平均尺寸为600 nm的等轴超细晶粒(UFG)结构。平面平行于挤出方向的挤出纤维原始纹理在ECAP过程中逐渐被破坏,最终被强度更高,强度更高的新的纹理成分所替代,与ECAP剪切平面一致。与原样合金相比,UFG样品中的纹理改性和晶粒细化相结合,导致机械不对称行为显着降低,以及足够的机械性能,断裂伸长率提高了约100%,同时保持了相对较高的拉伸强度。在磷酸盐缓冲溶液电解液中的开路电势,电位动力学和失重测量结果表明,与挤压型相比,UFG合金具有更高的耐腐蚀性,这是由于腐蚀方式从接收到的样品中的局部点蚀转变为更均匀的腐蚀减少了ECAP处理合金的局部腐蚀。对浸没样品的压缩测试表明,UFG样品的机械完整性损失率低于原样。

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