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Microstructure of TiAlN and CrAlN coatings and cutting performance of coated silicon nitride inserts in cast iron turning

机译:TiAlN和CrAlN涂层的显微组织以及铸铁车削中涂层氮化硅刀片的切削性能

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摘要

Ti_(0.5)Al_(0.5)N and Cr_(0 3)Al_(0.7)N coatings were produced by cathodic arc evaporation (CAE) on silicon nitride cutting inserts. The microstructure and phase composition of the coatings were investigated by SEM and XRD, respectively. The hardness of the coatings was evaluated by applying micro-hardness tester. Turning tests were carried out on both uncoated and coated inserts in gray cast iron turning under dry environment. Wear behavior and cutting performance of the uncoated and coated inserts were investigated. The results showed that Ti_(0.5)Al_(0.5)N coating had higher hardness than Cr_(0.3)Al_(0.7)N coating owing to its smaller grain size. Cutting performance of the silicon nitride inserts was improved with the covering of Ti_(0.5)Al_(0.5)N and Cr_(0.3)Al_(0.7)N coatings with at least 2 times of the cutting life. No spalling was occurred after the cutting tests for both Ti_(0.5)Al_(0.5)N and Cro.3Alo.7N coated inserts. Ti_(0.5)Al_(0.5)N coating performed better cutting performance and tool life than Cr_(0.3)Al_(0.7)N coating. The dominant wear mechanism of Ti_(0.5)Al_(0.5)N and Cr_(0.3)Al_(0.7)N coated inserts was abrasion with grooves on the worn faces.
机译:Ti_(0.5)Al_(0.5)N和Cr_(0 3)Al_(0.7)N涂层是通过阴极电弧蒸发(CAE)在氮化硅切削刀片上制成的。分别用SEM和XRD研究了涂层的微观结构和相组成。涂层的硬度通过应用显微硬度计进行评估。在干燥环境下在灰口铸铁车削中对未涂层和涂层刀片进行了车削测试。研究了未涂层和涂层刀片的磨损行为和切削性能。结果表明,Ti_(0.5)Al_(0.5)N涂层由于具有较小的晶粒尺寸而比Cr_(0.3)Al_(0.7)N涂层具有更高的硬度。覆盖Ti_(0.5)Al_(0.5)N和Cr_(0.3)Al_(0.7)N涂层的氮化硅刀片的切削性能得到了改善,切削寿命至少是其两倍。 Ti_(0.5)Al_(0.5)N和Cro.3Alo.7N涂层刀片的切削测试后均未发生剥落现象。 Ti_(0.5)Al_(0.5)N涂层比Cr_(0.3)Al_(0.7)N涂层具有更好的切削性能和刀具寿命。 Ti_(0.5)Al_(0.5)N和Cr_(0.3)Al_(0.7)N涂层刀片的主要磨损机理是在磨损面上有沟槽的磨损。

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