表面粗糙度
机械加工
研磨
材料科学
陶瓷
表面光洁度
冶金
刀具
淬火钢
锡
响应面法
Box-Behnken设计
刀具磨损
机械工程
复合材料
工程类
计算机科学
机器学习
作者
Dilek Murat,Cihat Ensarioğlu,Necmi Gürsakal,Ali Oral,Mustafa Çakır
出处
期刊:MP MATERIALPRUEFUNG - MP MATERIALS TESTING
[De Gruyter]
日期:2017-08-28
卷期号:59 (9): 795-802
被引量:13
摘要
Abstract Literally, hard machining describes machining of parts having hardness over 45 HRC. Besides its advantages like high metal removal rate, easiness of adapting to complex part geometries, possibility of dry cutting; this operation, which can substitute grinding in most cases, has some disadvantages. One of them is the significant increase of surface roughness due to tool wear even when the tool life limit is not exceeded. In this study, considering hard turning praxes, higher depths of cut (0.5 to 1.0 mm) were examined when dry turning AISI D2 cold work tool steel, through-hardened to 62 HRC. TiN coated mixed ceramic inserts (Al 2 O 3 + TiCN) were employed in the operations. Relationship between surface roughness and cutting parameters (cutting speed, feed and depth of cut) was modeled and analyzed using a Box-Behnken response surface methodology (RSM) design. A linear model best described this relationship. Despite the higher depths of cuts, the surface roughness values achieved were comparable to those in grinding operations. Finally, the optimal values of cutting parameters for minimum surface roughness were predicted.
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