断屑槽几何形状对成型切槽过程中断屑行为的影响

IF 4.6 2区 工程技术 Q2 ENGINEERING, MANUFACTURING CIRP Journal of Manufacturing Science and Technology Pub Date : 2024-07-23 DOI:10.1016/j.cirpj.2024.07.005
Berend Denkena, Benjamin Bergmann, Marita Murrenhoff
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引用次数: 0

摘要

断屑槽用于车削,以提高断屑率。在标准切削刀片中,断屑槽在烧结前被压入前刀面。但是,对于成型切槽刀具等专用刀具,则无法采用这种压制方法。相反,在磨削刀具轮廓后,可以采用激光制备工艺来制造各种断屑几何形状。这项研究旨在深入了解激光制备的断屑槽几何参数与切屑形成之间的关系。为此,我们使用不同的断屑槽几何形状进行了车削实验研究。在这些实验的基础上,观察了不同轮廓几何形状和断屑槽的切屑形成情况。研究结果表明,入口角、出口角、宽度、深度和侧脊对断屑行为有显著影响。这些结果可以为开发针对特定应用的断屑槽几何设计提供参考。
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Influence of chip breaker geometries on chip breaking behaviour during profile grooving

Chip breakers are used in turning to improve chip breakage. In standard cutting inserts, they are pressed into the rake face before sintering. However, for specialized tools like profile grooving tools, this pressing is not possible. Instead, a laser preparation process can be applied after grinding the tool profile to create a diverse range of chip breaker geometries. The aim of this investigation is to gain insights into the relationship between the geometric parameters of laser-prepared chip breaker geometries and chip formation. For this reason, experimental turning investigations were conducted with varied chip breaker geometries. Based on these experiments, chip formation was observed for different profile geometries and chip breakers. The findings indicate that the inlet angle, outlet angle, width, depth, and lateral ridges significantly influence chip-breaking behaviour. These results can inform the development of application-specific design for chip breaker geometries.

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来源期刊
CIRP Journal of Manufacturing Science and Technology
CIRP Journal of Manufacturing Science and Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
9.10
自引率
6.20%
发文量
166
审稿时长
63 days
期刊介绍: The CIRP Journal of Manufacturing Science and Technology (CIRP-JMST) publishes fundamental papers on manufacturing processes, production equipment and automation, product design, manufacturing systems and production organisations up to the level of the production networks, including all the related technical, human and economic factors. Preference is given to contributions describing research results whose feasibility has been demonstrated either in a laboratory or in the industrial praxis. Case studies and review papers on specific issues in manufacturing science and technology are equally encouraged.
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