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首页> 外文期刊>Materials transactions >Effect of Homogenization and Extrusion on Microstructure and Mechanical Properties of Cladding Billet by Cladding Casting
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Effect of Homogenization and Extrusion on Microstructure and Mechanical Properties of Cladding Billet by Cladding Casting

机译:均质化和挤出对熔铸铸造砌坯微观结构和力学性能的影响

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摘要

An AA4032/AA6069 cladding billet, fabricated by cladding casting process, was homogenized at 520 degrees C for 12h and then indirectly extruded into cladding pipe. The evolution in interfacial region was investigated in detail by the methods of optical microscope (OM), field emission electron scanning microscope (FESM), Vickers hardness, tensile and shear test. The interface region maintained original layered structure during the homogenization and extrusion process. During the process of homogenization, the eutectic silicon phases in AA4032 and Mg2Si in AA6069 became rounded markedly but still distributed dendritically. The homogenization improved the Vickers hardness and tensile strength of the interface region due to the precipitation strengthening and solution strengthening benefiting by element diffusion, and rarely affected the interfacial shear strength. The eutectic silicon and Mg2Si were spherized further and transformed into dispersive particles after extrusion process. Compared with that before deformation, the hardness of interface region got an obvious increase. The process of cladding casting and indirect extrusion is an idea method to fabricate cladding pipe.
机译:通过包层铸造方法制造的AA4032 / AA6069包层坯在520℃下均化12h,然后间接挤出成包层。通过光学显微镜(OM),场发射电子扫描显微镜(FESM),维氏硬度,拉伸和剪切试验的方法详细研究了界面区域的进化。界面区域在均匀化和挤出过程中保持原始分层结构。在均匀化过程中,AA6069中AA4032和MG2SI中的共晶硅相变得明显但仍然分布树枝状。由于元素扩散的沉淀强化和溶液强化,均质化改善了界面区域的维氏硬度和拉伸强度,并且很少影响界面剪切强度。将共晶硅和Mg2SI进一步形成并在挤出过程后转化为分散颗粒。与变形之前相比,界面区域的硬度明显增加。包层铸造和间接挤出的过程是制造包层管的思想方法。

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