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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructure and Tribological Behavior of In Situ TiC-Ni(Si,Ti) Composites Elaborated from Ni and Ti3SiC2 Powders
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Microstructure and Tribological Behavior of In Situ TiC-Ni(Si,Ti) Composites Elaborated from Ni and Ti3SiC2 Powders

机译:Ni和Ti3sic2粉末阐述的原位TiC-Ni(Si,Ti)复合材料的微观结构和摩擦学行为

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Herein, we study the effect of Ti3SiC2 on the microstructures and tribological properties of an in situ TiC reinforced Ni(Si, Ti) composites elaborated from Ni and Ti3SiC2 MAX phase powders against steel (100Cr6). Pressureless sintering at 1080 degrees C for 4 h of Ni and Ti3SiC2 powders was used to elaborate these composites with 10, 20 and 30 wt.% of Ti3SiC2. The microstructures of the composites were investigated by scanning electron microscopy (SEM), x-rays diffraction and Raman spectroscopy. Standard ball-on-disk friction wear tests under different applied loads were conducted on the composites surfaces at room temperature. For the three elaborated composites, Ti3SiC2 was totally decomposed and transformed to TiC phase, while the released Si and Ti atoms from Ti3SiC2 diffused into Ni matrix forming Ni(Si, Ti) solid solution. As compared with reference (Ni) sinter, the addition of 20 wt.% Ti3SiC2 in the Ni matrix improved the hardness by ~ 250%. The addition of Ti3SiC2 particles also had a beneficial effect on the tribological performance of these composites against steel. The worn surfaces of the elaborated composites under all applied loads are characterized by the presence of a lubricious Fe3O4-alpha Fe2O3 tribofilms. The effect of chemical compositions and different applied loads on the wear mechanisms of the three elaborated composites is discussed.
机译:在此,我们研究了Ti3SIC2对由Ni和Ti3SiC2最大相粉对钢(100Cr6)阐述的钻石型钢筋混合物的微观结构和摩擦学性质的影响(Si,Ti)复合材料(100cr6)。 Ni和Ti3SIC2粉末的1080℃下的无压烧结用于培养这些复合材料,其中10,20和30重量%。%的Ti3SIC2。通过扫描电子显微镜(SEM),X射线衍射和拉曼光谱研究了复合材料的微观结构。在室温下在复合材料表面上进行不同施加的载荷下的标准球盘摩擦磨损试验。对于三种精细的复合材料,Ti3SIC2完全分解并转化为TIC相,而来自Ti3SIC2的释放的Si和Ti原子扩散成Ni基质形成Ni(Si,Ti)固溶体。与参考(Ni)烧结相比,加入20重量%的Ni基质中的%Ti3 SiC 2通过〜250%提高了硬度。添加Ti3SIC2颗粒也对这些复合材料对钢的摩擦学性能有益效果。在所有施加的载荷下,精细复合材料的磨损表面的特征在于润滑脂Fe3O4-αFe2O3呋喃酚。讨论了化学组成和不同施加的载荷对三种精雕的复合材料的磨损机构的影响。

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