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Mechanical Properties of a Newly Additive Manufactured Implant Material Based on Ti-42Nb

机译:基于Ti-42Nb的新型人工合成种植体材料的力学性能

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摘要

The application of Ti-6Al-4V alloy or commercially pure titanium for additive manufacturing enables the fabrication of complex structural implants and patient-specific implant geometries. However, the difference in Young’s modulus of α + β-phase Ti alloys compared to the human bone promotes stress-shielding effects in the implant–bone interphase. The aim of the present study is the mechanical characterization of a new pre-alloyed β-phase Ti-42Nb alloy for application in additive manufacturing. The present investigation focuses on the mechanical properties of SLM-printed Ti-42Nb alloy in tensile and compression tests. In addition, the raw Ti-42Nb powder, the microstructure of the specimens prior to and after compression tests, as well as the fracture occurring in tensile tests are characterized by means of the SEM/EDX analysis. The Ti-42Nb raw powder exhibits a dendrite-like Ti-structure, which is melted layer-by-layer into a microstructure with a very homogeneous distribution of Nb and Ti during the SLM process. Tensile tests display Young’s modulus of 60.51 ± 3.92 GPa and an ultimate tensile strength of 683.17 ± 16.67 MPa, whereas, under a compressive load, a compressive strength of 1330.74 ± 53.45 MPa is observed. The combination of high mechanical strength and low elastic modulus makes Ti-42Nb an interesting material for orthopedic and dental implants. The spherical shape of the pre-alloyed material additionally allows for application in metal 3D printing, enabling the fabrication of patient-specific structural implants.
机译:Ti-6Al-4V合金或商业纯钛在增材制造中的应用可以制造复杂的结构植入物和特定于患者的植入物几何形状。但是,与人体骨骼相比,α+β相Ti合金的杨氏模量不同会促进植入物-骨间相的应力屏蔽作用。本研究的目的是用于增材制造的新型预合金β相Ti-42Nb合金的力学性能。本研究着重于SLM印刷的Ti-42Nb合金在拉伸和压缩测试中的机械性能。另外,通过SEM / EDX分析来表征原始的Ti-42Nb粉末,压缩试验之前和之后的样品的微观结构以及拉伸试验中发生的断裂。 Ti-42Nb原始粉末具有类似树突状的Ti结构,在SLM工艺过程中将其逐层熔化成Nb和Ti分布非常均匀的微观结构。拉伸试验显示杨氏模量为60.51±3.92 GPa,极限抗拉强度为683.17±16.67 MPa,而在压缩载荷下,观察到的压缩强度为1330.74±53.45 MPa。高机械强度和低弹性模量的结合使Ti-42Nb成为骨科和牙科植入物的有趣材料。预合金材料的球形还可以应用于金属3D打印,从而可以制造针对患者的结构植入物。

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