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Study of Experiments on Cutting DifficuIt-to-Machine Materials with Ultrafine-Grained Waved-Edge Milling Insert

机译:超细堆积边缘铣削刀片切割难以造成难以磨削的实验的研究

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摘要

For the cutting of the difficult-to-machine materials, such as stainless steel and dead-hard steel, is always puzzling and restricting manufacturing, it is necessary to deeply study and search after new machining methods in respect of both theory and practice. This paper chose waved-edge milling inserts and flat-groove milling inserts of different materials to make cutting force contrast experiments on stainless steel ZG0Cr13Ni5Mo, chose ultrafine-grain inserts, YT14 inserts (local product) and CY250 inserts(foreign product) to make cutting life contrast experiments on dead-hard steel ZG35CrMo, then researched in theory the disrepair appearance, the BSE image and the granularity. The research results show that the integrated cutting capability of ultrafine grain waved-edge milling insert is excellent for difficult-to-machine materials.
机译:为了切割难以加入的材料,如不锈钢和死钢,总是令人费解和限制的制造,有必要在理论和实践方面进行新的加工方法后深入研究和搜索。本文选择了不同材料的波纹边缘铣削刀片和扁平槽铣削刀片,以使不锈钢ZG0CR13NI5MO的切割力对比实验,选择超细晶粒插入物,YT14插入(本地产品)和CY250插入(异物)进行切割死硬钢ZG35CRMO的生命对比实验,然后在理论上研究了失修外观,BSE图像和粒度。研究结果表明,超细谷物波浪边缘铣削刀片的综合切割能力优异,适用于难以对机械材料。

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