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An insight into microstructure and machining performance of deep cryogenically treated cemented carbide inserts

机译:深冷冻处理泥泥碳化物刀片的微观结构和加工性能的洞察

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摘要

Cryogenic treatment is one of the potential techniques to enhance cutting tool performance. The present work investigates the microstructure and machining performance of cemented carbide (WC-Co) inserts through deep cryogenic treatment. For this, ISO P30 WC-Co inserts were exposed to deep cryogenic treatment (-196 degrees C), accompanied by tempering at 200 degrees C. The cryogenic treatment cycle helps to develop eta (eta) phase carbides by redistributing cobalt (Co) phase on the surface of cryogenically treated WC-Co inserts. Microhardness of specimens indicated a slight increase in the hardness of cryogenically treated inserts than its untreated counterpart. A comparative performance evaluation between cryogenically treated tungsten carbide insert and the untreated insert was studied by turning of AISI 316 austenitic stainless steel through tool flank wear, crater wear, and chip morphology. Machining operation was carried out by considering three different cutting speeds (i.e. at 100, 150, and 200 m/min.) with constant feed rate and depth of cut of 0.2 mm/rev and 1 mm, respectively. After cryogenic treatment, significant improvement in the average flank wear and crater wear of WC-Co insert was observed. The enhancement of tool wear in the cryogenically treated insert is explained in detail by analyzing their microstructures.
机译:低温处理是增强切削工具性能的潜在技术之一。本作通过深冷冻处理来研究碳化物(WC-CO)插入物的微观结构和加工性能。为此,ISO P30 WC-CO插入件暴露于深度低温处理(-196℃),伴随着200摄氏度的回火。低温治疗循环有助于通过再分配钴(CO)相,开发ETA(ETA)碳化物在低温处理的WC-CO插入表面上。标本的显微硬度表明低温处理的插入件的硬度略微增加,而不是其未处理的对应物。通过工具侧面磨损,火山口磨损和芯片形态转动AISI 316奥氏体不锈钢,研究了低温处理的碳化钨插入物和未处理插入物之间的比较性能评价。通过考虑三种不同的切割速度(即,在100,150和200米/分钟)来进行加工操作,分别具有恒定的进料速率和0.2mm / Rev和1mm的切割深度。低温处理后,观察到WC-CO插入件的平均侧面磨损和喷气口磨损的显着改善。通过分析它们的微观结构,详细解释了低温处理插入件中的工具磨损的增强。

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