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Synthesis and tribological characterization of in-situ spark plasma sintered titanium silicon carbide and titanium silicon carbide - titanium-carbon.

机译:原位放电等离子体烧结碳化硅钛和碳化钛钛碳的合成及摩擦学表征。

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摘要

Scope and Method of Study: The Mn+1AXn phases (where M is a transition metal, A is an A group (mostly IIIA and IVA) element, and, X is C and/or N and n=1 to 3) are polycrystalline nanolaminates of ternary carbides and nitrides, and exhibit unique combinational properties of metallic materials and ceramics because of their layered crystal structure. Ti 3SiC2 is one of the representative members of the MAX phase family. In this research work spark plasma sintering of Ti3SiC 2 and TiC reinforced Ti3SiC2 composites highlighting the effect of sintering parameters on constituting phases, microstructures and wear behavior is reported.;Findings and Conclusions: In-situ synthesis of dense near-single phase Ti3SiC2 ceramics from 3Ti/SiC/C/0.15Al starting powder using spark plasma sintering (SPS) at 1250 °C (uniaxial pressure of 50 MPa and soaking time of 15 min) is reported in this research work. Systematic investigation of effect of sintering temperature, in the range of 1050--1450 °C, on the phase development and wear behavior is presented. Also, the effect of starting powder composition on phase development after SPS sintering at 1150 °C is investigated using three distinct compositions (3Ti/SiC/C, 2Ti/SiC/TiC, and Ti/Si/2TiC). The reaction mechanisms leading to formation of Ti3SiC2 and the possibility of formation of Ti3(Si1-xAlx)C 2 solid solution during SPS sintering are critically analyzed.;SPS has been successfully employed for in-situ processing of Ti3SiC2-TiC composites with TiC content varying from 0 to 30 vol.% using TiC/Si/Ti/Al powder mixture at 1250 °C for 15 min and with 50 MPa of pressure. Experimental phase content of TiC on the sintered composites are calculated from X-ray diffraction results and compared to the theoretical TiC vol.% present on starting powder. From the results, the phase composition of the composites could be easily tailored by mastering initial compositions. The effect of TiC content on relative density, microhardness, and phase distribution of the consolidated composites is discussed. The triboligical response of Ti3SiC2-TiC composites against Si3 N4 ball have been evaluated at room temperature using pin-on-disk rotating tribometer.
机译:研究范围和方法:Mn + 1AXn相(其中M为过渡金属,A为A基团(主要是IIIA和IVA)元素,X为C和/或N且n = 1至3)是多晶的三元碳化物和氮化物的纳米叠层,并由于其层状晶体结构而展现出金属材料和陶瓷的独特组合性能。 Ti 3SiC2是MAX相家族的代表成员之一。在这项研究工作中,Ti3SiC 2和TiC增强Ti3SiC2复合材料的火花等离子体烧结突出了烧结参数对组成相,微结构和磨损行为的影响。;研究结果和结论:由密实单相Ti3SiC2陶瓷原位合成在这项研究工作中,报道了在1250°C(单轴压力为50 MPa,均热时间为15分钟)下使用火花等离子体烧结(SPS)的3Ti / SiC / C / 0.15Al起始粉末。系统研究了1050--1450°C范围内的烧结温度对相发展和磨损行为的影响。同样,使用三种不同的成分(3Ti / SiC / C,2Ti / SiC / TiC和Ti / Si / 2TiC)研究了起始粉末成分对1150°C SPS烧结后相发展的影响。严格分析了在SPS烧结过程中形成Ti3SiC2的反应机理以及形成Ti3(Si1-xAlx)C 2固溶体的可能性。SPS已成功地用于TiC含量高的Ti3SiC2-TiC复合材料的原位加工使用TiC / Si / Ti / Al粉末混合物在1250°C下在15 MPa和50 MPa的压力下从0到30体积%变化。从X射线衍射结果计算出烧结复合材料上TiC的实验相含量,并将其与原料粉末上的理论TiC体积%进行比较。从结果可以很容易地通过掌握初始组成来调整复合材料的相组成。讨论了TiC含量对固结复合材料的相对密度,显微硬度和相分布的影响。 Ti3SiC2-TiC复合材料对Si3 N4球的摩擦响应已在室温下使用销盘式旋转摩擦计进行了评估。

著录项

  • 作者

    Ghosh, Nidul Chandra.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Materials Science.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2012
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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