...
首页> 外文期刊>Russian physics journal >An Investigation of Porous Structure of TiNi-Based SHS-Materials Produced at Different Initial Synthesis Temperatures
【24h】

An Investigation of Porous Structure of TiNi-Based SHS-Materials Produced at Different Initial Synthesis Temperatures

机译:不同初始合成温度产生的TINI基SHS材料多孔结构研究

获取原文
获取原文并翻译 | 示例
           

摘要

An investigation of structural characteristics and behavior of TiNi-based pore-permeable materials manufactured by the methods of selfpropagating high-temperature synthesis (SHS) at the initial synthesis temperatures T = 400 and 600 degrees C is performed. It is shown that depending on the temperature regime, the resulting structure and properties of the material can differ. It is found out that the SHS-material produced at the initial synthesis temperature T = 400 degrees C possesses the largest number of micropores in the pore wall surface structure due to a high phase inhomogeneity of the alloy. The regime of structure optimization of the resulting materials is described and the main stages of formation of the pore wall microporous surfaces are revealed. It is demonstrated that after optimization of the surface structure of a TiNi-based fine-pore alloy by its chemical etching, the fraction of micropores measuring in size less than 50 nm increased from 59 to 68%, while the number of pores larger than 1 mu m increased twofold from 11 to 22%. In addition, peculiar features of interaction between certain cell cultures with the surface of the SHS-material manufactured at different initial synthesis temperatures are revealed. It is found out that the dynamics of the cell material integration depends on the pore wall surface morphology and dimensions of macropores.
机译:进行了通过在初始合成温度T = 400和600℃下进行自我摇动高温合成(SHS)的方法制造的基于TINI基孔隙可渗透材料的结构特征和行为的研究。结果表明,根据温度调节,所得到的结构和材料的性质可以不同。发现在初始合成温度T = 400摄氏度下产生的SHS材料具有由于合金的高相均可性而在孔隙壁表面结构中具有最大数量的微孔。描述了所得材料的结构优化的制度,并揭示了孔壁微孔表面的形成的主要阶段。结果证明,在通过化学蚀刻优化基于TINI基微孔合金的表面结构之后,尺寸小于50nm的微孔的分数从59增加到68%,而毛孔数量大于1穆米从11〜22%增加两倍。此外,揭示了在不同初始合成温度下制造的SHS材料表面之间的某些细胞培养物之间的相互作用的特征。发现细胞材料集成的动态取决于大孔的孔隙壁表面形态和尺寸。

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