Comparing surface roughness and tool wear when milling convex surface of hardened steel using different milling strategies

IF 2.7 4区 工程技术 Q2 ENGINEERING, MANUFACTURING Machining Science and Technology Pub Date : 2022-05-04 DOI:10.1080/10910344.2022.2129984
A. L. Pissolatti, A. Magri, A. Antonialli, A. Diniz
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Abstract

Abstract Regarding milling of dies and molds, there are several geometric requirements, and it is absolutely not trivial to machine complex either concave or convex surfaces. Since the contact between tool and workpiece changes all the time, making the components of the milling forces also to change, it is fundamental to find the correct milling strategies which cause the smallest variation of cutting forces (amplitude and sense) in order to obtain the best possible workpiece surface quality. In this work, four different machining strategies for finish milling of D6 tool steel were studied. They were compared in terms of surface roughness, cutting force, and tool wear at the end of tool life. Results show that lower surface roughness was obtained using descending down milling and ascending up milling because the sense of the cutting force components, specially the one that is normal to the machined surface on the most critic region of the workpiece, pulled the workpiece against the tool and the tool against the workpiece. On the other hand, descending up milling and ascending down milling did not present good results because the sense of the force components was responsible for excessive tool bending moving the tool and workpiece apart.
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不同铣削策略铣削淬硬钢凸面时表面粗糙度和刀具磨损的比较
摘要关于模具的铣削,有几个几何要求,加工复杂的凹面或凸面绝对不是一件小事。由于刀具和工件之间的接触一直在变化,使得铣削力的分量也在变化,因此找到导致切削力(幅度和方向)变化最小的正确铣削策略,以获得尽可能好的工件表面质量是至关重要的。本文研究了D6工具钢精铣的四种不同加工策略。它们在表面粗糙度、切削力和刀具寿命结束时的刀具磨损方面进行了比较。结果表明,由于切削力分量的感觉,特别是在工件最关键区域上垂直于加工表面的切削力分量,将工件拉向刀具,将刀具拉向工件,因此使用下降-下降铣削和上升-上升铣削可以获得较低的表面粗糙度。另一方面,下降-向上铣削和上升-向下铣削没有呈现出良好的结果,因为分力的感觉是导致工具过度弯曲的原因,从而使工具和工件分开。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Machining Science and Technology
Machining Science and Technology 工程技术-材料科学:综合
CiteScore
5.70
自引率
3.70%
发文量
18
审稿时长
6 months
期刊介绍: Machining Science and Technology publishes original scientific and technical papers and review articles on topics related to traditional and nontraditional machining processes performed on all materials—metals and advanced alloys, polymers, ceramics, composites, and biomaterials. Topics covered include: -machining performance of all materials, including lightweight materials- coated and special cutting tools: design and machining performance evaluation- predictive models for machining performance and optimization, including machining dynamics- measurement and analysis of machined surfaces- sustainable machining: dry, near-dry, or Minimum Quantity Lubrication (MQL) and cryogenic machining processes precision and micro/nano machining- design and implementation of in-process sensors for monitoring and control of machining performance- surface integrity in machining processes, including detection and characterization of machining damage- new and advanced abrasive machining processes: design and performance analysis- cutting fluids and special coolants/lubricants- nontraditional and hybrid machining processes, including EDM, ECM, laser and plasma-assisted machining, waterjet and abrasive waterjet machining
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