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Microstructure and Mechanical Performance of Cu-Sn-Ti-Based Active Braze Alloy Containing In Situ Formed Nano-Sized TiC Particles

机译:原位形成纳米TiC粒子的Cu-Sn-Ti基活性钎焊合金的组织和力学性能

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摘要

A Cu-Sn-Ti-based active brazing filler alloy was in situ reinforced with nanosized TiC particles by adding different amounts of a cellulose nitride-based binder. The TiC particles emanate from a reaction of the Ti within the filler alloy with the carbon from the binder that does not decompose completely during heating. The correlation between the microstructure and mechanical performance was studied. In addition, the effect of different binder amounts on the shear strength and cutting performance of brazed diamond grains was studied in shear tests and single grain cutting tests. The results clearly show that the mechanical performance of the brazed diamond grains can be improved by the formation of TiC particles. This is attributed to particle strengthening of the filler alloy matrix as well as to the decreasing grain size and more homogeneous distribution of the (Cu,Sn)(3)Ti-5 phase with increasing amount of binder.
机译:通过添加不同量的氮化纤维素基粘合剂,用纳米尺寸的TiC颗粒原位增强Cu-Sn-Ti基活性钎料。 TiC颗粒是由填充合金中的Ti与来自粘合剂的碳反应生成的,该碳在加热过程中不会完全分解。研究了组织与力学性能之间的关系。此外,在剪切试验和单晶切割试验中研究了不同粘结剂用量对钎焊金刚石晶粒的剪切强度和切削性能的影响。结果清楚地表明,通过形成TiC颗粒可以改善钎焊金刚石晶粒的机械性能。这归因于填料合金基体的颗粒增强,以及随着粘合剂量的增加,(Cu,Sn)(3)Ti-5相的晶粒尺寸减小和分布更加均匀。

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