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TEM Characterization and Properties of Cu-1 wt.% TiB2 Nanocomposite Prepared by Rapid Solidification and Subsequent Heat Treatment

机译:快速凝固及后续热处理制备的Cu-1 wt%TiB2纳米复合材料的TEM表征和性能

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Copper matrix composite reinforced by 1wt.% TiB2 particles was prepared using in situ reaction of Cu-1.4wt.% Ti and Cu-0.7wt.% B by rapid solidification and subsequent heat treatment for 1-20 hrs at 900oC. High-resolution transmission electron microscopy (HRTEM) characterization showed that primary TiB2 particles were formed in liquid copper. Heat treatment of as-solidified samples led to the formation of secondary TiB2 particles via spinodal decomposition of titanium-rich zone inside the grains. Mechanical properties (after 50% reduction in area) as well as electrical conductivity of composite were evaluated after heat treatment and were compared with those of pure copper. The results indicated that, due to the formation of secondary TiB2 particles in the matrix, electrical conductivity increased along with hardness up to 10 hrs of heat treatment and reached 65% IACS and 155 HV, respectively. Moreover, the maximum ultimate (i.e. 580 MPa) and yield (i.e. 555 MPa) strengths of composite were achieved at this time.
机译:使用Cu-1.4wt。%Ti和Cu-0.7wt。%B通过快速凝固并随后在900°C下热处理1-20小时的原位反应,制备了用1wt。%TiB2颗粒增强的铜基复合材料。高分辨率透射电子显微镜(HRTEM)表征表明,原始TiB2颗粒在液态铜中形成。凝固后样品的热处理通过晶粒内富钛区的旋节线分解导致形成二次TiB2颗粒。热处理后评估复合材料的机械性能(面积减少50%之后)以及电导率,并将其与纯铜进行比较。结果表明,由于在基体中形成了次级TiB2颗粒,电导率随热处理10个小时的硬度而增加,分别达到65%IACS和155 HV。而且,此时达到了复合材料的最大极限强度(即580MPa)和屈服强度(即555MPa)。

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