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Influence of heat treatments on microstructure and mechanical properties of Cu-15Ni-8Sn prepared by spray forming

机译:热处理对喷射成形Cu-15Ni-8Sn组织和力学性能的影响

摘要

An alloy of composition (wt-%) Cu-15Ni-8Sn produced by the Osprey process has been examined after a range of thermomechanical treatments with the aim of achieving high strength combined with reasonable ductility. Extensive cold working and an anneal in a two phase region for recrystallisation, followed by spinodal decomposition, leads to a high strength with reasonable tensile elongation because of the small grain size. Yield stresses in excess of 1100 MPa are obtained by contributions of grain size hardening, spinodal hardening by the internal strain amplitudes created during decomposition, and progressive ordering at tin rich sites. Alternatively, very short high temperature anneals or medium short low temperature anneals for recovery or partial recrystallisation of the cold worked state lead to materials with very high yield stresses, between 1250 and 1450 MPa, maintaining similar values of tensile elongation.
机译:经过一系列热机械处理,以达到高强度和合理延展性的目的,对由Osprey工艺生产的成分为(wt%)Cu-15Ni-8Sn的合金进行了检查。广泛的冷加工和在两相区域进行退火以进行再结晶,然后进行旋节线分解,由于晶粒尺寸小,因此可以得到较高的强度和合理的拉伸伸长率。超过1100 MPa的屈服应力是通过晶粒尺寸硬化,分解过程中产生的内部应变幅度产生的旋节线硬化以及富锡位置处的有序排列而获得的。可替代地,用于冷加工状态的恢复或部分再结晶的非常短的高温退火或中等短的低温退火导致材料具有非常高的屈服应力,在1250和1450 MPa之间,并保持相似的拉伸伸长率值。

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