【24h】

Micro-Milling of Hardened AISI D2 Tool Steel

机译:硬化AISI D2工具钢的微铣削

获取原文

摘要

The paper presents an experimental investigation into the slotting of hardened AISI D2 (~62HRC) tool steel using 0.5mm diameter coated (TiAlN) tungsten carbide (WC) end mills. SEM analysis of tool morphology and coating integrity was undertaken on all tools prior to testing. Tool wear details are given based on resulting cutter diameter and slot width reduction. In addition, cutting forces are also presented together with details of workpiece burr formation. A full factorial experimental design was used with variation of cutting speed, feed rate and depth of cut, with results evaluated using analysis of variance (ANOVA) techniques. Parameter levels were chosen based on microscale milling best practice and results from preliminary testing. Main effects plots and percentage contribution ratios (PCR) are included for the main factors. Cutting speed was shown to have the greatest effect on tool wear (33% PCR). When operating at 50m/min cutting speed with a feed rate of 8μm/rev and a depth of cut of 55μm, cutter diameter showed a reduction of up to 82μm for a 520mm cut length. SEM micrographs of tool wear highlighted chipping/fracture as the primary wear mode with adhered workpiece material causing further attritious wear when machining was continued up to 2.6m cut length. All tests produced burrs on the top edges of the slots which varied in size/width to a lesser or greater degree. Under the most severe operating conditions, burr width varied from approximately 50μm to more than 220μm over the 520mm cut length. Cutting forces in general were less than 12N up to test cessation.
机译:本文介绍了使用0.5mm直径涂层(TiAlN)碳化物(WC)终铣刀的硬化AISI D2(〜62HRC)工具钢的硬化AISI D2(〜62HRC)工具钢的试验研究。在测试之前,在所有工具上进行了刀具形态和涂层完整性的SEM分析。基于导致的刀具直径和槽宽减小,给出工具磨损细节。此外,还与工件毛刺形成的细节一起呈现切割力。使用完整的阶乘实验设计与切割速度,进料速率和切割深度的变化一起使用,结果使用差异分析(ANOVA)技术进行了评估。基于微观铣削最佳实践和初步测试的结果选择参数级别。主要效果图和百分比贡献比(PCR)包括主要因素。切割速度显示对工具磨损的最大影响(33%PCR)。当以50m / min的切削速度以8μm/ rev的进料和55μm的切割深度操作时,刀具直径达到520mm切割长度,刀具直径达到高达82μm。 SEM刀具磨损的显微照片突出显示碎裂/骨折作为初级磨损模式,粘附工件材料,在加工时造成进一步的耐用磨损,延续高达2.6米的切割长度。所有测试在槽的顶部边缘上产生毛刺,其尺寸/宽度变化到较小程度或更大程度。在最严重的操作条件下,毛刺宽度在520mm切割长度范围内从大约50μm到大于220μm。削减力量小于12N,以测试停止。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号