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Tool life and surface integrity in hard milling of hot work tool steels

机译:热作工具钢硬铣削中的刀具寿命和表面完整性

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摘要

Machinability enhancement of hot work tool steels can be achieved intrinsically through tailoring of alloying elements and steel processing route but also externally through the use of adequate tooling. The aim of the present investigation was to identify the limitations in hard milling of AISI H13 (50HRC) with respect to different strategies for microstructure control. Accordingly, tool life tests in face and cavity milling were performed using modern PVD-coated carbide inserts where subsequent investigation of tool wear mechanisms and surface integrity were carried out. A modified tool life model derived from Taylor’s approach was employed for the assessment of tool life. The results indicate that traditional improvement in machinability through additives and inclusion control appears not always adequate and the role of primary carbides distribution needs also to be considered. Surface integrity studies, namely residual stress, indicate the predominance of compressive residual stress in the machined surfaces.
机译:热加工工具钢的可加工性增强可以通过合金元素的定制和钢的加工路线来实现,而在外部也可以通过使用适当的工具来实现。本研究的目的是确定AISI H13(50HRC)硬铣削中有关微结构控制不同策略的局限性。因此,使用现代PVD涂层硬质合金刀片在端面铣削和型腔铣削中进行了刀具寿命测试,随后对刀具的磨损机理和表面完整性进行了研究。从泰勒的方法得出的修改后的刀具寿命模型用于评估刀具寿命。结果表明,通过添加剂和夹杂物控制来改善可加工性的传统方法似乎并不总是足够的,还需要考虑一次碳化物分布的作用。表面完整性研究(即残余应力)表明了加工表面中压缩残余应力的优势。

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