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Novel application of ultrasonic cavitation for fabrication of TiN/Al composites

机译:超声空化在TiN / Al复合材料制备中的新应用

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摘要

A developed approach for a convenient fabrication of titanium nitride (TiN) particulate reinforced commercially pure aluminum (CP Al) composites via ultrasonic cavitation was proposed. The process involved the addition of large size TiN particles (average particle size of 264 mm) into Al melt at 1033 K. In the meantime, ultrasonic vibration was applied into the melt to comminute the large size TiN particles and disperse the produced fine TiN particles simultaneously. Microstructural characterization indicated that the produced TiN particles were much smaller than the starting TiN particles (average particle size of 15 versus 264 mm) and distributed uniformly in the matrix. The fine TiN particles were stable during the process and had a clean interface with the Al matrix. The ultimate tensile strength increased by up to 45% after the formation of fine TiN particles in the commercially pure Al matrix, whilst the hardness increased by a factor of 3. Dry sliding friction test showed that the coefficient of friction of the composites was more stable and lower than the CP Al matrix. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种通过超声空化方便地制造氮化钛(TiN)颗粒增强的商业纯铝(CP Al)复合材料的方法。该过程涉及在1033 K的Al熔体中添加大尺寸的TiN颗粒(平均粒径为264 mm)。同时,对熔体施加超声振动以粉碎大尺寸的TiN颗粒并分散生成的细TiN颗粒同时。微观结构表征表明,所产生的TiN颗粒比起始TiN颗粒小得多(平均粒径为15对264 mm),并且均匀地分布在基体中。 TiN细颗粒在加工过程中稳定并且与Al基体的界面干净。在商用纯铝基体中形成细小的TiN颗粒后,极限抗拉强度提高了45%,而硬度提高了3倍。干滑动摩擦试验表明复合材料的摩擦系数更稳定并低于CP Al矩阵。 (C)2015 Elsevier B.V.保留所有权利。

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