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Influence of Material Microstructures in Micromilling of Ti6Al4V Alloy

机译:材料组织对Ti6Al4V合金微铣削的影响

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摘要

In the most recent decades the introduction of unconventional machining processes allowed the development of micromachining techniques. In this work, the influence of material microstructures on the micromilling process was investigated. Ti6Al4V alloy was selected as workpiece material since it is a very common material for micro applications and because its duplex microstructure can be easily changed by proper thermal treatments. Four different microstructures (namely bimodal, fully equiaxed, fully lamellar and mill annealed) were obtained through recrystallization annealing treatments carried out at different times and temperatures. The mechanical properties of the samples were assessed by microhardness measurements. Nano-indentations were also performed on single grains to understand how the different hardness of phases and structures present in the Ti6Al4V alloy can affect the micromilling process. Microchannels using two flute flat end mills with a diameter equal to 200 µm were realized on the treated samples. Two different feed-per-tooth values were used during the tests. Cutting force, channel shape and burr dimension were investigated. Morphological and energy dispersive spectroscopy (EDS) analyses were performed on tools by means of a scanning electron microscope (SEM): in this way the phenomena mainly influencing the tool status were also identified. Lower cutting forces and reduced tool wear were observed when working fully lamellar microstructures compared to the other ones.
机译:在最近的几十年中,非常规加工工艺的引入促进了微加工技术的发展。在这项工作中,研究了材料微结构对微铣削过程的影响。选择Ti6Al4V合金作为工件材料是因为它是微应用中非常常见的材料,并且由于可以通过适当的热处理轻松改变其双相组织。通过在不同时间和温度下进行的重结晶退火处理,获得了四个不同的微结构(即双峰,完全等轴,完全层状和轧制退火)。通过显微硬度测量来评估样品的机械性能。还对单个晶粒进行了纳米压痕,以了解Ti6Al4V合金中存在的不同相和组织硬度如何影响微铣削过程。在处理后的样品上实现了使用两个直径等于200 µm的带槽扁平立铣刀的微通道。在测试过程中使用了两个不同的每齿进给值。研究了切削力,通道形状和毛刺尺寸。通过扫描电子显微镜(SEM)对工具进行了形态学和能量色散光谱(EDS)分析:通过这种方法,还可以识别出主要影响工具状态的现象。当加工完全层状的微结构时,与其他结构相比,切削力较低,刀具磨损减少。

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