首页> 外文会议>Virtual Annual Meeting Exhibition of The Minerals, Metals Materials Society;Magnesium Technology Symposium >Microstructure and Fracture Toughness of an Extruded Mg-Dy-Nd-Zn-Zr Alloy Influenced by Heat Treatment
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Microstructure and Fracture Toughness of an Extruded Mg-Dy-Nd-Zn-Zr Alloy Influenced by Heat Treatment

机译:热处理影响的挤出Mg-DY-ND-Zn-Zr合金的微观结构和断裂韧性

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The influence of microstructural changes induced by heat treatment on fracture toughness is investigated for a resorbable Mg-Dy based alloy. The initial hot-extruded condition is a fine-grained Resoloy? (Mg-Dy-Nd-Zn-Zr) alloy consisting of lamellar LPSO structures within the matrix. Solution heat treatment causes grain growth and the formation of blocky LPSO phases. The amount of the lamellar LPSO structures reduces. Quasi-static C-ring tests with and without Ringer solution were used to evaluate force-displacement curves and their fracture energy. The coarser-grained alloys tend to twin under plastic deformation, which is influencing the crack propagation. Blocky LPSO phases clearly hinder crack growth. The fine-grained extruded condition shows the highest force and displacement values to induce the crack, the solution heat-treated microstructure consisting of a good balance of grain size, matrix, and blocky LPSO phases and twins show highest fracture energy. Even if there might be an absorption of hydrogen, the ductility under stress corrosion is high.
机译:采用可再吸收的Mg-Dy基合金研究了热处理热处理对骨折韧性的微观结构变化的影响。最初的热挤出条件是一种细粒状的腐败性吗? (Mg-DY-ND-ZN-ZR)由基质内的层状LPSO结构组成。溶液热处理引起晶粒生长和嵌段的LPSO阶段的形成。层状LPSO结构的量减少。使用和不具有振铃溶液的准静态C形环试验评估力 - 位移曲线及其裂缝能量。较粗糙的合金倾向于在塑性变形下进行双重,这会影响裂纹繁殖。块状LPSO阶段显然阻碍了裂缝增长。细粒挤出条件显示出诱导裂纹的最高力和位移值,该溶液热处理的微观结构包括晶粒尺寸,基质和块状LPSO阶段和孪晶的良好平衡,显示出最高的骨折能量。即使可能存在氢气,延展性在应力腐蚀下也很高。

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