The Influence of Strontium Oxide on the Physio-Mechanical Properties of Biomedical-Grade Titanium in Ti-SrO Composites

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Soodad A. Muhammed, Aseel Mohammed Al-Khafaji, Haydar H. J. Jamal Al-Deen
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Abstract

Dental implants can be made of various materials, and amongst them, titanium and titanium alloy were the materials of choice for dental implants for many years because of their biocompatibility. The two alloys have a high level of biocompatibility, a lower modulus of elasticity, and better corrosion resistance than other alloys. Thus, they are frequently utilized in biomedical applications and mostly replace stiff fabrics. The latest advances in a new strontium oxide–cp titanium composite alloy are the main topic of this research. With regard to biomedical applications, additions of strontium oxide were synthesized at three distinct weight percentages (2%, 4%, and 6% by wt%). Powder metallurgy was used to create the alloys, which were then sintered by heating the samples. The effects of adding strontium oxide were analyzed by utilizing measurements of the Brinell hardness, X-ray diffraction, porosity, diametral tensile strength, roughness, and wettability of the finished surfaces. The results show that adding more strontium oxide (gradually increasing the ratio from 2% SrO to a 6% addition) raised the roughness and porosity. However, the microhardness and diametral tensile strength were enhanced with an increase in the volume fraction of strontium oxide particles. In conclusion, the alloy that contained 6 wt% strontium oxide microparticles had reasonably high mechanical properties and might be regarded as suitable for use in dental and medical applications due to its high wettability or, in other words, its low contact angle. The Brinell testing results for the diametral tensile strength, microhardness, and porosity of the generated strontium oxide–cp titanium composite alloy demonstrate its high potential for usage as a biomaterial, particularly in dental applications.
氧化锶对Ti-SrO复合材料中生物医用级钛物理力学性能的影响
牙种植体可以由多种材料制成,其中钛和钛合金由于其生物相容性,多年来一直是牙种植体的首选材料。这两种合金具有高水平的生物相容性,较低的弹性模量,以及比其他合金更好的耐腐蚀性。因此,它们经常用于生物医学应用,并且大多取代硬织物。一种新型氧化锶- cp钛复合合金的最新进展是本研究的主要课题。在生物医学应用方面,以三种不同的重量百分比(2%、4%和6% wt%)合成了氧化锶添加剂。使用粉末冶金技术制造合金,然后通过加热样品进行烧结。通过测量成品表面的布氏硬度、x射线衍射、孔隙率、直径抗拉强度、粗糙度和润湿性,分析了添加氧化锶的影响。结果表明,添加更多的氧化锶(从SrO的2%逐渐增加到6%)可以提高粗糙度和孔隙率。而随着氧化锶颗粒体积分数的增加,合金的显微硬度和直径抗拉强度均有所提高。总之,含有6 wt%氧化锶微粒的合金具有相当高的机械性能,由于其高润湿性,或换句话说,其低接触角,可能被认为适合用于牙科和医疗应用。生成的氧化锶- cp钛复合合金的直径抗拉强度、显微硬度和孔隙度的布氏试验结果表明,它作为生物材料,特别是在牙科应用方面具有很高的应用潜力。
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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