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Influence of Microgroove Structure on Cutting Performance and Chip Morphology during the Turning of Superalloy Inconel 718

机译:微型血管结构对超合金inconel转动后切割性能和芯片形态的影响718

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摘要

This study designed a new microgroove cutting tool to machine Inconel 718 and focused on the effect of microgroove structure on the cutting performance and chip morphology during the turning. A comparative analysis of the cutting force, cutting temperature, tool life, tool wear, and chip morphology of the microgroove cutting tool and the original cutting tool was conducted. The main cutting force and temperature of the microgroove cutting tool were reduced by 12% and 12.17%, respectively, compared with the original cutting tool. The microgroove cutting tool exhibited a significant improvement compared with the original cutting tool, which extended the tool life by up to 23.08%. Further, the microgroove cutting tool distorted the curl radius of the chips extensively. The experimental results showed that the microgroove structure can not only improve the tool life, but also improve the chip breaking effect.
机译:本研究设计了一种新的MicroGroove切割工具,可以将Microplove inconel 718加工718,并集中在转动过程中微血管结构对切割性能和芯片形态的影响。进行了微血管切割工具和原始切削工具的切割力,切削温度,工具寿命,工具磨损和芯片形态的比较分析。与原始切削工具相比,微型脱模切削工具的主要切割力和温度分别减少了12%和12.17%。与原始切削刀具相比,微刨花切割工具表现出显着的改进,该工具将工具寿命延伸至23.08%。此外,微型器切割工具广泛地扭曲了芯片的卷曲半径。实验结果表明,微血管结构不仅可以改善刀具寿命,还可以提高芯片破碎效果。

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