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Preparation of Mullite-TiC-TiN Materials by a Plasma Spark Method and Their Properties

机译:等离子体火花法及其性能制备莫来石锡材料

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摘要

The phase composition of synthesized TiC and TiN, microstructure, relative density, open porosity, linear shrinkage, elasticity modulus, Vickers hardness, ultimate strength in compression, and linear dependence of elasticity modulus and ultimate strength in compression of mullite-TiC-TiN-specimens with a different ratio of TiC and TiN sintered by a plasma-arc method in the range 1200 - 1600A degrees C with a compaction load of 30 MPa, are studied. Synthesized powders have intense crystallization of TiC and TiN. Sintered specimens with a different ratio of TiC and TiN demonstrate intense mullitization in the range 1200 - 1600A degrees C. Specimens with a TiC/TiN ratio of 50/50, 70/30, and 90/10 mol.% demonstrate a gradual increase in TiC from 1200 - 1400A degrees C compared with a more intense increase in TiC from 1400 to 1600A degrees C. An increase in TiC concentration and a reduction in TiN content in powder mixtures sintered at 1500A degrees C facilitates formation of a uniform density sintered microstructure with presence of small pores. Specimens in the ratios TiC/TiN of 50/50 and 70/30 mol.% point to a more intense increase in relative density and linear shrinkage; a reduction in open porosity and an increase in elasticity modulus, Vickers hardness, and ultimate strength in compression. This leads to an increase in specimen crack formation resistance in the presence of microcracks with a relatively rectilinear propagation trajectory (composition M50TiC50TiN), and absence of microcracks (composition M70TiC30TiN) around an indenter impression, with the greatest linear dependence of elasticity modulus and ultimate strength in compression in the range 1200 - 1600A degrees C.
机译:合成的TiC和锡,微观结构,相对密度,开孔,线性收缩,弹性模量,维氏硬度,压缩的最终强度,弹性模量的线性依赖性和极限强度在莫来钛矿 - TiC-tiN样本的直线依赖性研究了在1200-1600A℃的等离子体弧法中烧结的不同比率和锡烧结,在1200-1600A℃的压实负荷为30MPa的范围内。合成粉末具有Tic和TiN的强烈结晶。具有不同TiC和TiN的不同比例的烧结样品在1200-1600A℃的范围内呈现强烈的穆斯汀,标本为TiC / TiN比为50/50,70 / 30和90/10mol。%表现出逐渐增加从1200 - 1400A的Tic比较的TIC与1400至1600A的TIC更强烈的增加。在1500A℃烧结的粉末混合物中的TIC浓度的增加和锡含量的降低促进形成均匀的密度烧结微观结构小毛孔的存在。比率TiC /锡的标本50/50和70/30摩尔。%指向相对密度和线性收缩的更强烈增加;开放孔隙率的降低和弹性模量的增加,维氏硬度和压缩的最终强度。这导致在具有相对直线繁殖轨迹(组合物M50TIC50Tin)的微裂纹存在下的样品裂纹形成抗性的增加,并且在压痕压印周围没有微裂纹(组合物M70TIC30Tin),具有最大的弹性模量和极限强度的线性依赖性在1200-1600A度C的压缩范围内

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