Tool wear and surface topography shaping after TPl multi-axis milling of Ni-based superalloy of the torus milling cutter using the strategy of adaptive change of the active cutting edge segment

IF 5.3 1区 工程技术 Q1 ENGINEERING, MECHANICAL Wear Pub Date : 2024-11-26 DOI:10.1016/j.wear.2024.205637
Michał Gdula , Jerzy Józwik , Agnieszka Skoczylas
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Abstract

This paper details an investigation of the process of multi-axis high-speed milling of the surface of Ni-based superalloy Inconel 718 parts used the torus milling cutter. Presents the issues and development of the own models of the multi-axis milling in a kinematic variant of the TPl (Tool Pulling) type in terms of tool wear. Because the cutting speed in finishing high-speed milling is the parameter with the greatest influence on tool life and surface roughness, the dependence of the variation of the cutting speed at the torus part of the cutter was first determined as a function of the distance from the tip point along the axial direction and the geometrical parameters of the torus. A model for multi-axis milling of the TPl type was developed and described in a simplified manner, which forms the basis of an own ACACES strategy for segmenting the cutting edge of a torus milling cutter. The adaptation of a given segment to the active cutting edge during machining was based on tool wear and kinematic roughness criteria. Simulations and experiments of multi-axis milling were carried out, and the necessary analyses were performed. In this paper, in addition to testing an in-house strategy for multi-axis milling used the torus milling cutter, the problem of defining the cutting speed in relation to the nominal diameter and effective diameter of the tool is investigated for the first time. In addition, wear measurement was carried out using an in-house methodology, taking full advantage of the capabilities of the multi-axis machining centre, which significantly reduced measurement time and positively influenced the effectiveness of tool life assessment. Using the own ACACES strategy of the multi-axis surface milling of parts made of Ni-based superalloys, an almost fourfold increase in torus cutter life was achieved compared to the conventional strategy, while maintaining the required machined surface roughness parameters.
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采用主动切削刃段自适应变化策略对环面铣刀镍基高温合金TPl多轴铣削后的刀具磨损和表面形貌成形进行了研究
研究了用环面铣刀对镍基高温合金Inconel 718零件表面进行多轴高速铣削加工的工艺。从刀具磨损的角度,介绍了多轴铣削在TPl(刀具拉拔)类型的运动变型中的问题和自己的模型的发展。由于精加工高速铣削中的切削速度是对刀具寿命和表面粗糙度影响最大的参数,因此首先确定了刀具环面部分切削速度变化的依赖关系,该关系是刀具尖点沿轴向距离和环面几何参数的函数。建立了一种简化的TPl型多轴铣削模型,并对其进行了描述,为环面铣刀切割刃口的ACACES策略奠定了基础。在加工过程中,基于刀具磨损和运动粗糙度准则对给定工件的主动切削刃进行自适应。对多轴铣削进行了仿真和实验,并进行了必要的分析。在本文中,除了测试使用环面铣刀进行多轴铣削的内部策略外,还首次研究了刀具公称直径和有效直径与切削速度的关系。此外,使用内部方法进行磨损测量,充分利用多轴加工中心的功能,这大大减少了测量时间,并积极影响了刀具寿命评估的有效性。采用自己的ACACES策略对镍基高温合金零件进行多轴面铣削,在保持所需加工表面粗糙度参数的情况下,环面刀具寿命比常规策略提高了近四倍。
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来源期刊
Wear
Wear 工程技术-材料科学:综合
CiteScore
8.80
自引率
8.00%
发文量
280
审稿时长
47 days
期刊介绍: Wear journal is dedicated to the advancement of basic and applied knowledge concerning the nature of wear of materials. Broadly, topics of interest range from development of fundamental understanding of the mechanisms of wear to innovative solutions to practical engineering problems. Authors of experimental studies are expected to comment on the repeatability of the data, and whenever possible, conduct multiple measurements under similar testing conditions. Further, Wear embraces the highest standards of professional ethics, and the detection of matching content, either in written or graphical form, from other publications by the current authors or by others, may result in rejection.
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