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Chip temperature and its effects on chip morphology, cutting forces, and surface roughness in high-speed face milling of hardened steel

机译:淬火钢高速端面铣削中的切屑温度及其对切屑形态,切削力和表面粗糙度的影响

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摘要

Experimental investigation and finite element simulation of face milling AISI H13 steel with CBN tool were conducted in order to acquire thorough understanding of the chip temperature and its effects on chip morphology, cutting forces, and surface roughness. Cutting speeds adopted in the tests and simulations were in the range of 800 to 1,600 m/min. Axial depth of cut and material removal rate were set to be invariable for each cutting speed. The cutting parameter zones where relatively high chip temperature (zone "H"), long helix chip (zone "L"), lower resultant cutting force (zone "R"), and lower surface roughness (zone "S") arose were distinguished. The analysis results showed that the higher chip temperature in zone "H" led to higher ductility of the chip, resulting in the formation of long helix chip instead of short washer-shaped chip. The thermal softening effects induced by higher chip temperature in zone "H" led to lower cutting force and more stable cutting process which was beneficial for the better surface finish. Relatively high chip temperature, relatively low resultant cutting force, and relatively low surface roughness arose at the same time in cutting parameter zone "R".
机译:为了全面了解切屑温度及其对切屑形态,切削力和表面粗糙度的影响,进行了使用CBN工具对AISI H13平面铣削AISI H13钢进行实验研究和有限元模拟。测试和模拟中采用的切割速度在800到1600 m / min的范围内。轴向切削深度和材料去除率设置为每个切削速度不变。区分出出现较高切屑温度(区域“ H”),长螺旋切屑(区域“ L”),较低的总切削力(区域“ R”)和较低的表面粗糙度(区域“ S”)的切削参数区域。分析结果表明,“ H”区的切屑温度较高,导致切屑的延展​​性更高,从而形成了长螺旋形切屑而不是短垫圈形切屑。区域“ H”中较高的切屑温度引起的热软化作用导致较低的切削力和更稳定的切削过程,这有利于获得更好的表面光洁度。同时在切削参数区“ R”中出现了相对较高的切屑温度,相对较低的切削力和相对较低的表面粗糙度。

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