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A Comparison in Mechanical Properties of Cermets of Calcium Silicate with Ti-55Ni and Ti-6Al-4V Alloys for Hard Tissues Replacement

机译:Ti-55Ni和Ti-6Al-4V合金用于硬组织置换的硅酸钙金属陶瓷力学性能的比较

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摘要

This study investigated the impact of calcium silicate (CS) content on composition, compressive mechanical properties, and hardness of CS cermets with Ti-55Ni and Ti-6Al-4V alloys sintered at 1200°C. The powder metallurgy route was exploited to prepare the cermets. New phases of materials of Ni16Ti6Si7, CaTiO3, and Ni31Si12 appeared in cermet of Ti-55Ni with CS and in cermet of Ti-6Al-4V with CS, the new phases Ti5Si3, Ti2O, and CaTiO3, which were emerged during sintering at different CS content (wt%). The minimum shrinkage and density were observed in both groups of cermets for the 50 and 100 wt% CS content, respectively. The cermets with 40 wt% of CS had minimum compressive Young's modulus. The minimum of compressive strength and strain percentage at maximum load were revealed in cermets with 50 and 40 wt% of CS with Ti-55Ni and Ti-6Al-4V cermets, respectively. The cermets with 80 and 90 wt% of CS showed more plasticity than the pure CS. It concluded that the composition and mechanical properties of sintered cermets of Ti-55Ni and Ti-6Al-4V with CS significantly depend on the CS content in raw cermet materials. Thus, the different mechanical properties of the cermets can be used as potential materials for different hard tissues replacements.
机译:这项研究研究了在1200°C烧结的Ti-55Ni和Ti-6Al-4V合金中,硅酸钙(CS)含量对CS金属陶瓷的组成,压缩机械性能和硬度的影响。利用粉末冶金路线来制备金属陶瓷。 Ni16Ti6Si7,CaTiO3和Ni31Si12材料的新相出现在带有CS的Ti-55Ni金属陶瓷中和带有CS的Ti-6Al-4V金属陶瓷中,新的Ti5Si3,Ti2O和CaTiO3相出现在不同CS的烧结过程中。含量(wt%)。在两组金属陶瓷中,分别以50%和100%wt%的CS含量观察到最小的收缩率和密度。 CS为40%(重量)的金属陶瓷的最小杨氏模量。在CS和50-wt%的金属陶瓷中,Ti-55Ni和Ti-6Al-4V金属陶瓷分别具有最小的抗压强度和最大应变百分比。具有80和90wt%CS的金属陶瓷比纯CS具有更高的可塑性。结论是:含CS的Ti-55Ni和Ti-6Al-4V烧结金属陶瓷的组成和力学性能很大程度上取决于金属陶瓷原料中CS的含量。因此,金属陶瓷的不同机械性能可以用作用于不同硬组织替换的潜在材料。

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