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A Comparison of Low Cost Structure-borne Sound Measurement and Acceleration Measurement for Detection of Workpiece Vibrations in 5-axis Simultaneous Machining

机译:低成本结构声测量与加速度测量在5轴同时加工中检测工件振动的比较

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In the field of machining technology the vibration of the system machine, tool and workpiece during processing is the limiting factor of productivity. Therefore the process monitoring of vibration today plays an important role for the real time monitoring of machining processes, as well as for the optimization of simulation models.For monitoring workpiece vibrations, different kinds of strategies are in use. As the piezoelectric acceleration sensors were already field-tested at the department of machining technology (ISF), the use of Contact Emission-Sensors, which are customarily used for stringed instrument tuning, could pose an effective alternative strategy. Proving the possibility of using those sensors, could simplify the future choice of the process monitoring strategy for different machining operations and has cost saving potentials, due to an abbreviated measurement chain. Within this work the workpiece vibration during a 5-axis milling process were detected simultaneously by two monitoring strategies. In these experiments, the detection of vibration by a piezoelectric acceleration sensor was chosen as the reference strategy. The second technique deployed was the measurement of the contact-emission with a common contact microphone.On a milling machine for five-axis simultaneous machining, aluminium shafts were fixed in a three-jaw chuck one-sided and processed with an end mill. The geometry of the milling pockets was varied in the different processing sessions, as well as the feed parameters, in order to obtain both stable and unstable processing. The vibration measurements resulting from the two monitoring strategies were compared in form of time signal and frequency spectrum as well as in the combined form of a 3-dimensional waterfall diagram.Monitoring structure borne noise is an easy, cost-efficient alternative to measures with an acceleration sensor. Delivering reliable results concerning the vibration frequencies, which are multiples of the spindle rotation frequency, this method could be applied for process monitoring. The experiments have shown that the location of the Contact Emission-Sensors has major impact on the quality of results. To implement the Contact Emission-Sensors for this kind of measurements, the sensor must be positioned close to the place of vibration origin taking into account both damping characteristics of all components involved and the way of workpiece clamping.
机译:在加工技术领域中,加工过程中系统机器,工具和工件的振动是生产率的限制因素。因此,今天的振动过程监控对于实时监控加工过程以及优化仿真模型起着重要作用。为了监视工件振动,正在使用各种策略。由于压电加速度传感器已经在加工技术(ISF)部门进行了现场测试,因此通常用于弦乐器调音的接触式发射传感器的使用可能构成一种有效的替代策略。证明了使用这些传感器的可能性,由于简化了测量链,因此可以简化将来针对不同机加工操作的过程监控策略的选择,并具有节省成本的潜力。在这项工作中,通过两种监控策略同时检测了五轴铣削过程中的工件振动。在这些实验中,选择通过压电加速度传感器检测振动作为参考策略。部署的第二种技术是使用普通的接触式传声器测量接触发射。在用于五轴同时加工的铣床上,将铝轴单侧固定在三爪卡盘中,然后用立铣刀进行处理。为了获得稳定和不稳定的加工,在不同的加工过程中,铣削腔的几何形状以及进料参数都不同。比较了两种监测策略产生的振动测量结果,以时间信号和频谱的形式,以及以3维瀑布图的组合形式进行了比较。加速度传感器。提供有关振动频率(主轴旋转频率的倍数)的可靠结果,此方法可用于过程监控。实验表明,接触式发射传感器的位置对结果质量有重大影响。为了实现这种接触式发射传感器的测量,必须将传感器放置在靠近振动源的位置,同时要考虑到所有相关部件的阻尼特性以及工件夹紧的方式。

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