首页> 外文会议>International Conference on Environmental Degradation of Engineering Materials >Surface Modification of Pure Titanium by TiB Precipitation
【24h】

Surface Modification of Pure Titanium by TiB Precipitation

机译:钛沉淀的纯钛表面改性

获取原文

摘要

Titanium and its alloys are common in medical implant applications because of their desirable properties, such as relatively low Young's modulus, good fatigue strength, corrosion resistance, biocompatibility as well as formability and machinability. However, these materials cannot meet all of the clinical requirements. Current research focuses on improving not only the mechanical performance but mostly the biocompatibility of Ti-based systems through variations in alloy composition and surface treatment. One of the methods that allows the change of biological properties of Ti surface is the modification of its chemical composition. In this work plasma surface modification approach was used to improve mechanical properties by synthesis of composite layer structure on a pure titanium surface. The study aims at development of TiB precipitation dispersed uniformly at α-Ti matrix by plasma melting of Ti-2 wt% and Ti-10 wt% B alloy powders composition. Grain size of precursor powders obtained by mechanical alloying method and its homogenization can control the porosity and boron agglomeration tendency of the synthesized layers. Plasma procedure was taken under argon and helium inert atmosphere and surface was obtained by single passage of plasma pillar upon the prepared surface. The Vickers microhardness of obtained surface reached nearly 850HV, which was much higher compared with initial sample of the pure titanium substrate of 160HV. The surface corrosion resistance in 0.9% NaCl solution was nearly the same as for pure titanium, showing stable behaviour of created oxide layer, with no negative effect of dual phase microstructure. In vitro biocompatibility test in static condition was performed. All samples showed good cell growth. Our studies suggests that chemical composition of modified titanium surface by TiB precipitation by plasma alloying process has no negative effect on cytocompatibility.
机译:由于其理想的性能,例如杨氏模量相对较低,耐疲劳强度,耐腐蚀,生物相容性以及可成形性和可加工性,钛及其合金在医疗植入物应用中是常见的。但是,这些材料不能满足所有临床要求。目前的研究侧重于改善机械性能,而是通过合金组成和表面处理的变化来改善基于Ti的系统的生物相容性。允许Ti表面生物学性能变化的方法之一是其化学成分的改性。在该工作中,使用纯钛表面上的复合层结构来改善机械性能等离子体表面改性方法。该研究旨在通过Ti-2wt%和Ti-10wt%B合金粉末组合物的等离子体熔化在α-Ti基质均匀地分散的Tib沉淀。通过机械合金化方法获得的前体粉末的晶粒尺寸及其均化可以控制合成层的孔隙率和硼聚集趋势。在氩气下采用血浆程序,并通过单次浆柱在制备的表面上单独通过等离子体柱获得表面。所得表面的维氏微硬度达到近850HV,与160HV的纯钛基材的初始样品相比要高得多。 0.9%NaCl溶液中的表面耐腐蚀性与纯钛几乎相同,显示出产生的氧化物层的稳定行为,没有双相微观结构的负面影响。进行静态条件的体外生物相容性试验。所有样品均显示出良好的细胞生长。我们的研究表明,通过等离子体合金化方法通过TIB沉淀的改性钛表面的化学成分对细胞相容性没有负面影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号