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Microstructural Mechanical Corrosion and Cytotoxicity Characterization of Porous Ti-Si Alloys with Pore-Forming Agent

机译:孔隙成矿剂多孔Ti-Si合金的微观结构机械腐蚀和细胞毒性表征

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摘要

Titanium and its alloys belong to the group of materials used in implantology due to their biocompatibility, outstanding corrosion resistance and good mechanical properties. However, the value of Young’s modulus is too high in comparison with the human bone, which could result in the failure of implants. This problem can be overcome by creating pores in the materials, which, moreover, improves the osseointegration. Therefore, TiSi2 and TiSi2 with 20 wt.% of the pore-forming agent (PA) were prepared by reactive sintering and compared with pure titanium and titanium with the addition of various PA content in this study. For manufacturing implants (especially augmentation or spinal replacements), titanium with PA seemed to be more suitable than TiSi2 + 20 wt.% PA. In addition, titanium with 30 or 40 wt.% PA contained pores with a size allowing bone tissue ingrowth. Furthermore, Ti + 30 wt.% PA was more suitable material in terms of corrosion resistance; however, its Young’s modulus was higher than that of the human bone while Ti + 40 wt.% PA had a Young’s modulus close to the human bone.
机译:钛及其合金属于植入术中使用的材料组,由于它们的生物相容性,突出的耐腐蚀性和良好的机械性能。然而,与人骨相比,杨氏模量的值太高,这可能导致植入物的失败。通过在材料中创造孔可以克服这个问题,此外,这改善了骨整合。因此,通过反应性烧结制备具有20重量%的TISI2和TISI2。通过反应性烧结制备孔形成剂(PA),并在本研究中添加各种PA含量的纯钛和钛进行比较。对于制造植入物(特别是增强或脊柱替代),具有PA的钛似乎比TISI2 + 20重量%更合适。%PA。此外,钛具有30或40重量%。%PA含有尺寸的毛孔,允许骨组织成长。此外,在耐腐蚀性方面,Ti + 30重量%是更合适的材料;然而,它的杨氏模量高于人体骨骼的模量,而Ti + 40重量%。%PA有靠近人骨的杨氏模量。

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