首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Tool wear and spring back analysis in orthogonal machining unidirectional CFRP with respect to tool geometry and fibre orientation
【24h】

Tool wear and spring back analysis in orthogonal machining unidirectional CFRP with respect to tool geometry and fibre orientation

机译:刀具几何和纤维方向上正交加工单向CFRP的工具磨损和弹簧回分析

获取原文
获取原文并翻译 | 示例
           

摘要

Machining abrasive carbon fibre reinforced polymers (CFRP) is characterised by extensive mechanical wear. In consequence, the cutting edge micro-geometry and thus the tool/material contact situation are continuously changing, which affects process forces and machining quality. As a conclusion, a fundamental understanding of the tool wear behaviour and its influencing factors is crucial in order to improve performance and lifetime of cutting tools. This paper focuses on a fundamental tool wear analysis of uncoated tungsten carbide cutting inserts with different combinations of fibre cutting angles and tool geometries. For this purpose, orthogonal machining experiments with unidirectional CFRP material are conducted, where the wear progression of the micro-geometry is investigated by means of five wear parameters l(alpha), l(gamma), gamma*, alpha*, and b(c). For detecting the actual contact zone of the cutting edge and to measure the elastic spring back of the material, the flank face is marked via short pulsed laser processing. Furthermore, the process forces and the wear rate are measured. It is shown that the material loss due to wear clearly varies along the tool's contact region and is highly dependent on the clearance angle and the fibre cutting angle phi, while the influence of the tested rake angles is mostly negligible. Especially in machining phi=30 degrees and phi=60 degrees, a strong elastic spring back is identified, which is more intense for smaller clearance angles. For all tested configurations, the material's elastic spring back increases in intensity as wear progresses which, in combination with the decreasing clearance angle, is the main reason for high thrust forces.
机译:加工研磨性碳纤维增强聚合物(CFRP)的特点是广泛的机械磨损。因此,切削刃的微观几何结构以及刀具/材料的接触情况不断变化,从而影响加工力和加工质量。总之,对刀具磨损行为及其影响因素的基本了解对于提高刀具的性能和寿命至关重要。本文着重于对不同纤维切削角度和刀具几何形状组合的无涂层碳化钨刀片的刀具磨损进行基本分析。为此,进行了单向碳纤维增强塑料材料的正交加工试验,通过五个磨损参数l(α)、l(γ)、γ*、α*和b(c)研究了微观几何结构的磨损过程。为了检测切削刃的实际接触区域并测量材料的弹性回弹,通过短脉冲激光加工标记侧面。此外,还测量了过程力和磨损率。结果表明,磨损导致的材料损失沿刀具接触区域明显变化,高度依赖于间隙角和纤维切削角φ,而测试前角的影响几乎可以忽略。尤其是在加工φ=30度和φ=60度时,发现了强烈的弹性回弹,对于较小的间隙角,这种回弹更强烈。对于所有测试配置,随着磨损的进行,材料的弹性回弹强度增加,这与间隙角减小相结合,是产生高推力的主要原因。

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