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Microstmcture and Tensile Strength of Rapid Manufacturing parts

机译:快速制造部件的Microsture和拉伸强度

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The purpose of this work is to investigate the microstructure and tensile strength of Ti6Al4V pre-alloyed powders produced by a direct metal laser sintering technique. Traditionally, Ti6Al4V products for biomedical applications were produced through hot working or machining of wrought semi-finished products. A change in the production route for manufacturing Ti6Al4V products, from the more traditional methods to an additive manufacturing route, requires an investigation of microstructure and mechanical properties because these are strongly influenced by the production route. The microstructure obtained through rapid solidification during laser sintering shows a very fine α+β lamellar morphology. There is also evidence of martensite which was expected due to high solidification rate of the liquid pool from a temperature above the P-transus during the laser sintering process. Structurally, good mechanical properties which are comparable to the bulk material were obtained.
机译:本作作品的目的是研究通过直接金属激光烧结技术生产的Ti6Al4V预合金粉末的微观结构和拉伸强度。传统上,通过锻造半成品的热工作或加工生产用于生物医学应用的Ti6Al4V产品。制造Ti6Al4V产品的生产途径的变化,从更传统的方法到添加剂制造路线,需要调查微观结构和机械性能,因为这些是受生产路线的强烈影响。通过激光烧结期间通过快速凝固获得的微观结构显示出非常细的α+β层状形态。还存在马氏体的证据,该马氏体是由于在激光烧结过程中P-TransoS高于P-TransoS的温度的高凝固率,预期的预期。在结构上,获得与散装材料相当的良好机械性能。

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