首页> 外文会议>ASME annual dynamic systems and control conference >AN INVESTIGATION OF EDDY-CURRENT EFFECTS ON PARAMETER MONITORING FOR DUPLEX LATHE MACHINING OF THIN-WALL COMPONENTS
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AN INVESTIGATION OF EDDY-CURRENT EFFECTS ON PARAMETER MONITORING FOR DUPLEX LATHE MACHINING OF THIN-WALL COMPONENTS

机译:双壁车削薄壁零件加工参数监测中的涡流效应研究

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This paper presents a novel design of an eddy-current sensing system with an array of high-accuracy solid magnetic sensors for duplex lathe machining of thin-wall compressor disks. By controlling the penetration depth of the eddy current, the dual-frequency sensing system based on measured magnetic flux density simultaneously measures the in-feed cutting depth and workpiece thickness in real-time. Specifically, this paper provides the design concept and operational principle of the eddy-current sensing system along with the theory for designing the sensor and analyzing its performance. As eddy current cannot be measured directly, results of a numerical investigation based on finite-element analyses are presented with illustrative examples offering new physical insights into the effects of optimal design parameters on the magnetic and electric field distributions of the induced eddy-current. The effectiveness of a dual-frequency eddy-current sensor has been numerically evaluated and compared against experimental data of a commercial eddy-current sensor operated at 1MHz.
机译:本文提出了一种新颖的涡流传感系统设计,该系统具有用于薄壁压缩机盘的双车床加工的高精度固态磁传感器阵列。通过控制涡流的穿透深度,基于测得的磁通密度的双频传感系统可以同时实时测量进给切削深度和工件厚度。具体来说,本文提供了涡流传感系统的设计概念和工作原理,以及用于设计传感器和分析其性能的理论。由于不能直接测量涡流,因此将提供基于有限元分析的数值研究结果,并附有说明性示例,这些示例为优化设计参数对感应涡流的磁场和电场分布的影响提供了新的物理见解。对双频涡流传感器的有效性进行了数值评估,并与以1MHz工作的商用涡流传感器的实验数据进行了比较。

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