Borisov Evgenii, Polozov Igor, Starikov Kirill, Popovich Anatoly, Sufiiarov Vadim
Institute of Machinery, Materials, and Transport, Peter the Great St. Petersburg Polytechnic University (SPbPU), Polytechnicheskaya 29, 195251 St. Petersburg, Russia.
Materials (Basel). 2021 Oct 16;14(20):6140. doi: 10.3390/ma14206140.
Multimaterial additive manufacturing is an attractive way of producing parts with improved functional properties by combining materials with different properties within a single part. Pure Ti provides a high ductility and an improved corrosion resistance, while the Ti64 alloy has a higher strength. The combination of these alloys within a single part using additive manufacturing can be used to produce advanced multimaterial components. This work explores the multimaterial Laser Powder Bed Fusion (L-PBF) of Ti/Ti64 graded material. The microstructure and mechanical properties of Ti/Ti64-graded samples fabricated by L-PBF with different geometries of the graded zones, as well as different effects of heat treatment and hot isostatic pressing on the microstructure of the bimetallic Ti/Ti64 samples, were investigated. The transition zone microstructure has a distinct character and does not undergo significant changes during heat treatment and hot isostatic pressing. The tensile tests of Ti/Ti64 samples showed that when the Ti64 zones were located along the sample, the ratio of cross-sections has a greater influence on the mechanical properties than their shape and location. The presented results of the investigation of the graded Ti/Ti64 samples allow tailoring properties for the possible applications of multimaterial parts.
多材料增材制造是一种通过在单个零件中组合具有不同性能的材料来生产具有改进功能特性零件的有吸引力的方法。纯钛具有高延展性和更好的耐腐蚀性,而Ti64合金具有更高的强度。使用增材制造在单个零件中组合这些合金可用于生产先进的多材料部件。这项工作探索了Ti/Ti64梯度材料的多材料激光粉末床熔融(L-PBF)。研究了通过L-PBF制造的具有不同梯度区域几何形状的Ti/Ti64梯度样品的微观结构和力学性能,以及热处理和热等静压对双金属Ti/Ti64样品微观结构的不同影响。过渡区微观结构具有明显特征,在热处理和热等静压过程中不会发生显著变化。Ti/Ti64样品的拉伸试验表明,当Ti64区域沿样品分布时,横截面比例对力学性能的影响大于其形状和位置。所展示的梯度Ti/Ti64样品的研究结果有助于为多材料零件的可能应用定制性能。