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Effect of cobalt additions on the age hardening of Cu-4.5Ti alloy

机译:钴添加对Cu-4.5Ti合金时效硬化的影响

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摘要

The effects of 0.9 and 1.8 wt% cobalt additions on the age hardening behaviour of Cu-4.5Ti alloy have been investigated. It has been observed that though Co addition results in the refinement of grain size and the Cu-Ti-Co alloys exhibit age hardening (giving rise to peak hardness on aging at 400degreesC for 16 hours), the peak hardness as well as the corresponding yield and tensile strengths were found to decrease with increasing cobalt content. The electrical conductivities of 0.9 and 1.8 wt% Co alloys were found to be 6% and 10% International Annealed Copper Standard (IACS) and 7% and 14% IACS in solution treated and peak aged conditions, respectively. Like in the binary Cu-Ti alloys, precipitation of ordered, metastable and coherent Cu4Ti(beta(1)) precipitate was found to be responsible for maximum strengthening in these alloys. In addition, coarse intermetallic phases of Ti and Co, viz. Ti2Co and TiCo particles have been observed in all the conditions studied. The inferior mechanical properties of Cu-Ti-Co alloys compared with those of the binary Cu-Ti alloys are attributed to the depletion of Ti from matrix, which is consumed to form Ti2Co and TiCo phases. (C) 2002 Kluwer Academic Publishers. [References: 18]
机译:研究了添加0.9和1.8 wt%的钴对Cu-4.5Ti合金时效硬化行为的影响。已经观察到,尽管Co的添加导致晶粒尺寸的细化并且Cu-Ti-Co合金表现出时效硬化(在400℃下老化16小时时产生峰值硬度),但是峰值硬度以及相应的产率发现抗张强度随钴含量的增加而降低。在固溶处理和峰值时效条件下,发现0.9和1.8 wt%Co合金的电导率分别为6%和10%国际退火铜标准(IACS)以及7%和14%IACS。像在二元Cu-Ti合金中一样,发现有序,亚稳和相干的Cu4Ti(beta(1))沉淀物是这些合金中最大强度的原因。另外,Ti和Co的粗金属间相即。在所有研究条件下均观察到Ti2Co和TiCo颗粒。与二元Cu-Ti合金相比,Cu-Ti-Co合金的较差的机械性能归因于Ti从基体中的消耗,Ti被消耗形成Ti2Co和TiCo相。 (C)2002 Kluwer学术出版社。 [参考:18]

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