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3D cutting tool-wear monitoring in the process

机译:3D刀具磨损监控

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摘要

The tool-wear of cutting tools has a very strong impact on the product quality as well as efficiency of the machining processes. Therefore, it in-the process characterization is crucial. This paper presents an innovative and reliable direct measuring procedure for measuring spatial cutting tool-wear with usage of laser profile sensor. The technique provides possibility for determination of 3D wear profiles, as advantage to currently used 2D techniques. The influence of the orientation of measurement head on the accuracy and the amount of captured reliable data was examined and the optimal setup of the measuring system was defined. Further, a special clamping system was designed to mount the measurement device on the machine tool turret. To test the measurement system, tool-life experiment was performed. Additionally, a new tool-life criterion was developed, including spatial characteristics of the tool-wear. The results showed that novel tool-wear and tool-life diagnostic represent objective and robust estimator of the machining process. Additionally, such automation of tool-wear diagnostics on machine tool provides higher productivity and quality of the machining process.
机译:切削刀具的刀具磨损对产品质量以及加工过程的效率有很大的影响。因此,过程中的表征至关重要。本文介绍了一种创新且可靠的直接测量程序,该方法通过使用激光轮廓传感器来测量空间切削刀具的磨损。作为当前使用的2D技术的优势,该技术为确定3D磨损曲线提供了可能性。检查了测量头的方向对精度和捕获的可靠数据量的影响,并确定了测量系统的最佳设置。此外,还设计了一种特殊的夹紧系统以将测量设备安装在机床转塔上。为了测试测量系统,进行了工具寿命实验。此外,还制定了新的工具寿命标准,包括工具磨损的空间特征。结果表明,新颖的刀具磨损和刀具寿命诊断代表了加工过程的客观而可靠的估计。另外,机床上的刀具磨损诊断的这种自动化提供了更高的生产率和加工过程的质量。

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