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Preparation of Titanium Alloy Rods by Powder Compact Extrusion

机译:粉末紧凑型挤压制备钛合金棒材

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Titanium alloys have a number of features which make them attractive for use in aerospace, marine and chemical engineering, biological engineering, etc., due to their advantage of low density, high strength, and excellent corrosion resistance and biocompatibility. In this paper, Ti-6A1-4V (Ti-64) rods were prepared by vacuum sintering titanium alloy powder compacts at 1300°C for 2h and then hot extruding the as-sintered Ti-64 alloy billets at 1150°C in air. The microstructure and property changes, after vacuum sintering and hot extrusion, were investigated. The results showed clear evidence of porosity and a coarse lamellar microstructure in as-sintered Ti-64 alloy billets. Tensile testing of as-sintered material gave yield strength, ultimate tensile strength and ductility values of 850MPa, 985MPa and 2%, respectively. After extrusion at 1150°C, no obvious pores could be seen in the microstructure of as-extruded Ti-64 alloy rods and the lamellar microstructure was significantly refined, and the mechanical properties were significantly improved. The yield strength, ultimate tensile strength and the ductility reached 1130MPa, 1245MPa and 4.5%, respectively. Compared with the mechanical properties of Ti-64 alloy rod prepared by extruding a hot pressed Ti-64 alloy billet in air, the ductility of the Ti-64 alloy rod studied here is lower. The fracture characteristics of as-sintered and as-extruded Ti-64 alloy rods have also been investigated.
机译:钛合金具有许多特性,使得它们在航空航天,船舶,化工,生物工程等,使用有吸引力,由于其密度低,强度高,和优良的耐蚀性和生物相容性的优势。在本文中,通过在1300℃下真空烧结钛合金粉末块制备Ti-6a1-4V(Ti-64)棒,然后在空气中在1150℃下热挤出烧结的Ti-64合金坯料。研究了真空烧结和热挤出后的微观结构和性能变化。结果表明,在烧结的Ti-64合金坯料中清晰的孔隙率和粗薄的层状微观结构。烧结材料的拉伸试验得到屈服强度,最终拉伸强度和850MPa,985MPa和2%的延展性值。在1150℃下挤出后,在挤出的Ti-64合金棒的微观结构中没有看到明显的孔隙,并且显着改善了层状微观结构,并且机械性能显着提高。屈服强度,最终拉伸强度和延展性分别达到1130MPa,1245MPa和4.5%。与通过在空气中挤出热压Ti-64合金坯料挤出制备的Ti-64合金杆的机械性能相比,研究其研究的Ti-64合金棒的延展性较低。还研究了烧结和挤出的Ti-64合金棒的断裂特性。

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