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Effects of TiN addition on the properties of hot pressed TiN-Ti/Al2O3 composites

机译:锡添加对热压锡/ Al2O3复合材料性能的影响

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TiN-Ti/Al2O3 composites of varying TiN content (0-20 vol%) were prepared by vacuum hot-pressing sintering at different temperatures (1400 degrees C and 1500 degrees C) to investigate how TiN affected the mechanical properties and electrical conductivity of the composites. Sintered samples with added TiN exhibited better performance than those without it. The sample with 20 vol% TiN sintered 1500 degrees C had an optimal relative density of 99.49, Vickers hardness of 14.94 GPa, flexural strength of 321.55 MPa, and electrical resistivity of 1474.7 mu Omega cm. However, this increased temperature did not improve the best sample resistivity of 930.3 mu Omega cm, which was obtained at 1400 degrees C. Form SEM images and XRD patterns, the positive effect of TiN on composite mechanical properties may be ascribed to its good performance of high hardness and strength, a decrease of the brittle intermetallic phase, the form of AlTi3N, and the impact of the fine-grained strength of the TiN phase.
机译:通过在不同温度(1400℃和1500℃)的真空热压烧结制备不同锡含量(0-20体积%)的锡 - Ti / Al2O3复合材料,以研究如何影响锡对机械性能和电导率的影响 复合材料。 添加锡的烧结样品比没有它的那些表现出更好的性能。 具有20 Vol%锡烧结的样品1500摄氏度的最佳相对密度为99.49,VICKERS硬度为14.94GPa,弯曲强度为321.55MPa,电阻率为1474.7μmomgacm。 然而,这种增加的温度没有提高930.3μmωcm的最佳样品电阻率,其在1400℃下获得。形成SEM图像和XRD图案,锡对复合机械性能的正效应可以归因于其良好的性能 高硬度和强度,脆性金属间相的降低,Alti3N的形式,以及锡相的细粒强度的影响。

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