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Influence of microstructure and hardness on machinability of heat-treated titanium alloy Ti-6Al-4V in end milling with polycrystalline diamond tools

机译:显微组织和硬度对热处理钛合金Ti-6Al-4V在多晶金刚石工具立铣刀中的切削性能的影响

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The main objective of this paper is to develop the relationship between microstructure and machinability of titanium alloy Ti-6Al-4V which is given heat treatment beyond beta transus temperature, with the help of milling experiments using polycrystalline diamond (PCD) tools. Two of the specimens were solution treated at 1050 A degrees C/1 h. After the treatment, one of the specimen was cooled in water while the other specimen was air-cooled, followed by aging treatment at 550 A degrees C/4 h. The third specimen was used in as-received condition (casted). Cutting speed, feed rate, and depth of cut were varied, and their effects have been analyzed on cutting forces, vibration amplitude, temperature, and tool wear for all the three specimens. The results have shown improved and better machinability for the specimen which was cooled in air after the solution treatment with PCD tools. This behavior of the alloy is mainly attributed to formation of homogeneous lamellar alpha + beta Ti-6Al-4V microstructure. Although, the air-cooled specimen has higher hardness than the as-received specimen. But, the former alloy's fine homogeneous and lamellar alpha + beta Ti-6Al-4V microstructure as compared to the microstructure of the latter specimen (irregular alpha + beta Ti-6Al-4V structure) and absence of alpha' secondary precipitate (found in water-cooled specimen) has helped in giving improved performance. Thus, from this study, it can be concluded that machinability of titanium alloy Ti-6Al-4V can be further improved with controlled heat treatment process using PCD tools.
机译:本文的主要目的是借助使用多晶金刚石(PCD)工具进行的铣削实验,研究在超过贝塔转变温度的条件下进行热处理的钛合金Ti-6Al-4V的组织与可切削性之间的关系。将两个样本在1050 A C / 1 h下固溶处理。处理后,将一个样品在水中冷却,将另一个样品空冷,然后在550 A摄氏度/ 4小时的条件下进行时效处理。第三个样品按原样使用(铸造)。切削速度,进给速度和切削深度是变化的,并且分析了它们对所有三个样品的切削力,振动幅度,温度和工具磨损的影响。结果表明,用PCD工具固溶处理后在空气中冷却的样品具有更好的可加工性。合金的这种行为主要归因于均匀的层状α+βTi-6Al-4V微观结构的形成。但是,风冷试样的硬度比所接受的试样高。但是,前者合金的细微均质和层状α+βTi-6Al-4V组织与后者试样的组织(不规则α+βTi-6Al-4V结构)相比,并且没有α'二次沉淀(存在于水中)冷却样品)有助于提高性能。因此,从这项研究中可以得出结论,采用PCD工具通过控制热处理工艺可以进一步改善钛合金Ti-6Al-4V的切削性能。

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