Effect of Ag addition on Cp-Ti dental implant

Wehad A. Al-Rawy, E. Al-Hassani
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引用次数: 1

Abstract

To supplant a missing tooth, plenty of materials, for example, cobalt-chromium (Co–Cr) and treated steel, had been aimed to make an implant. The advancement of materials science and modification improved the materials for implant application. These days, Ti turns into the most prominent implanted material because of its favorable circumstances. Probity, Ti is broadly and effectively utilized as an implant material fundamentally because of different elements. Ti is naturally dormant, ready to bond with osteoblasts and has magnificent biocompatibility. In this research, all the samples are prepared using the powder technique and the preparation process included adding silver element to the commercially pure titanium at different weight percent of (10, 20 and 30) to explore the influence of introducing the silver element into the commercially pure titanium on the microstructure, mechanical properties of the produced specimens. There are two sets of silver-titanium alloys sintering on different temperatures first set on 900 °C and the other on 700 °C. Microstructures analysis stated that at silver content of (10-20 wt%) single phase of (α-Ti alloy), as the silver content increased to (30% Wt), in addition to (α-phase), (Ti2Ag) intermetallic compound developed in the alloy microstructure, and the hardness test result best hardness of titanium-silver alloys is with silver content of (30% Wt) at sintering temperature of 900 °C.To supplant a missing tooth, plenty of materials, for example, cobalt-chromium (Co–Cr) and treated steel, had been aimed to make an implant. The advancement of materials science and modification improved the materials for implant application. These days, Ti turns into the most prominent implanted material because of its favorable circumstances. Probity, Ti is broadly and effectively utilized as an implant material fundamentally because of different elements. Ti is naturally dormant, ready to bond with osteoblasts and has magnificent biocompatibility. In this research, all the samples are prepared using the powder technique and the preparation process included adding silver element to the commercially pure titanium at different weight percent of (10, 20 and 30) to explore the influence of introducing the silver element into the commercially pure titanium on the microstructure, mechanical properties of the produced specimens. There are two sets of silver-titanium alloys sintering on different temperatures f...
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Ag对Cp-Ti种植体的影响
为了替换缺失的牙齿,很多材料,例如钴铬合金(Co-Cr)和处理过的钢,都被用来制作植入物。材料科学和改性技术的进步使植入材料的应用得到了进一步的改善。如今,钛因其有利的环境成为最突出的植入材料。坦白地说,钛作为一种植入材料被广泛而有效地利用的根本原因是其不同的元素。钛是自然休眠的,随时准备与成骨细胞结合,具有出色的生物相容性。在本研究中,所有样品均采用粉末法制备,制备过程包括在不同重量百分比(10,20和30)的市售纯钛中加入银元素,以探索在市售纯钛中加入银元素对所制备样品的微观结构和力学性能的影响。有两组不同温度下烧结的银钛合金,一组在900℃,另一组在700℃。显微组织分析表明,当(α-钛合金)的银含量为(10-20 wt%)单相时,随着银含量增加到(30% wt),合金显微组织中除了(α-相)外,还出现了(Ti2Ag)金属间化合物,硬度测试结果表明,在烧结温度为900℃时,钛银合金的硬度最佳,银含量为(30% wt)。为了替换缺失的牙齿,很多材料,例如钴铬合金(Co-Cr)和处理过的钢,都被用来制作植入物。材料科学和改性技术的进步使植入材料的应用得到了进一步的改善。如今,钛因其有利的环境成为最突出的植入材料。坦白地说,钛作为一种植入材料被广泛而有效地利用的根本原因是其不同的元素。钛是自然休眠的,随时准备与成骨细胞结合,具有出色的生物相容性。在本研究中,所有样品均采用粉末法制备,制备过程包括在不同重量百分比(10,20和30)的市售纯钛中加入银元素,以探索在市售纯钛中加入银元素对所制备样品的微观结构和力学性能的影响。有两套银钛合金在不同温度下烧结。
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