首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Processing and characterization of in-situ ultrafine TiB2-Cu composites from Ti-B-Cu system
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Processing and characterization of in-situ ultrafine TiB2-Cu composites from Ti-B-Cu system

机译:Ti-B-Cu系统原位超细Tib2-Cu复合材料的处理与表征

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摘要

Ultrafine TiB2 particle (20 vol%) reinforced copper matrix composites were fabricated in-situ from Ti-B-Cu system through exothermic dispersion synthesis (XD). The reaction mechanism and mechanical properties of the composites were studied. It was found that when the reaction system was heated to 1373 K, Cu reacted with Ti to form the transient phase Cu4Ti, which continued to react with B to form ultrafine TiB2 particles as reinforcement agents. The apparent activation energy for these two reactions were calculated and found to be 453.7 KJ/mol and 1139.3 KJ/mol, respectively. Ultrafine TiB2 particles with the size of mostly 100 nm-500 nm were seen to distribute uniformly throughout the copper matrix. The ultimate tensile strength was measured and found to be 318 MPa, representing a 45% increase over pure copper. Moreover, the elongation to failure of the new composites was determined to be 4.4% at room temperature. The tensile fracture surface consists of many fine dimples, suggesting that the failure is of ductile nature. (C)2017 Published by Elsevier B.V.
机译:通过放热分散合成(XD)原位制造超细Tib2颗粒(20体积%)增强铜基质复合材料。研究了复合材料的反应机理和机械性能。发现当反应体系被加热至1373k时,Cu与Ti反应以形成瞬时相位Cu4Ti,这继续与B形成超细Tib2颗粒作为增强剂。计算这两种反应的表观活化能量分别为453.7 kJ / mol,1139.3kJ / mol。尺寸大多为100nm-500nm的超细Tib2颗粒被观察到在整个铜基质中均匀地分布。测量最终拉伸强度并发现318MPa,表示纯铜的45%增加。此外,在室温下测定新复合材料的失效的伸长率为4.4%。拉伸骨折表面由许多细凹坑组成,表明失败是延性性质。 (c)2017年由Elsevier B.V发布。

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