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首页> 外文期刊>Refractories and Industrial Ceramics >Preparation of Mullite-TiC-TiN Materials by a Spark Plasma Method with High Compaction Loading and Their Properties
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Preparation of Mullite-TiC-TiN Materials by a Spark Plasma Method with High Compaction Loading and Their Properties

机译:用高压积载荷及其性能的火花等离子体法制备Mullite-TiC型材料

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The phase composition of synthesized TiC and TiN materials and also the properties of mullite-TiC-TiN specimens with a different ratio of TiC and TiN, sintered by a spark plasma method in the range 1200 - 1600 degrees C with a compaction load of 75 MPa are studied. Specimens with a different ratio of TiC and TiN are characterized by intense mullitization in the range from 1200 to 1600 degrees C. an increase in TiC concentration, and correspondingly a reduction in TiN concentration in sintered powder mixtures facilitates formation at 1500 degrees C of a densely sintered crystallized structure consisting of numerous mullite crystals, TiC and partly TiN, formed from melts. In the range 1400 - 1600 degrees C the relative density and linear shrinkage of specimens gradually increases with a reduction in open porosity, but specimen elasticity modulus, Vickers hardness, and ultimate strength in compression increase.
机译:合成的TiC和锡材料的相组成以及具有不同TiC和TiN的不同比例的莫来钛矿 - TiC锡样品的性质,通过1200-1600摄氏度的火花等离子体法烧结,压实负载为75MPa 研究过。 具有不同TiC和TiN的不同比例的标本的特征在于1200至1600℃的强烈的旋转率为1200-1600℃。烧结粉末混合物中的锡浓度的增加,钙浓度的降低有助于在密集的1500℃下形成 烧结结晶结构,由熔体形成的许多莫来石晶体,TiC和部分锡组成。 在1400-1600摄氏度范围内,样品的相对密度和线性收缩随着开放孔隙率的降低而逐渐增加,但样品弹性模量,维氏硬度和压缩增加的最终强度。

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