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Laser-drilled PVC template for electrodeposition of multi-core orthogonal fluxgate sensing element

机译:用于多芯正交磁通门感应元件电沉积的激光钻孔PVC模板

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The sensing performance of the multi-core orthogonal fluxgate sensor has been found to be significantly enhanced as compared to single-core orthogonal fluxgate sensor, with the magnitude of the enhancement proportional to the number of core wires in sensing element. One of the methods of making the multi-core sensing element could be a template deposition approach, in which laser drilling of hole arrays in PVC templates and then electrodeposition of the soft magnetic pillars in the holes are involved. As such, the optimization of the Nd:YAG laser parameters on the quality of the holes on the PVC templates has been carried out in this study. The effect of laser processing parameters, including: (1) laser fluence; (2) laser irradiation time; (3) number of pulses; (4) laser focal point, was investigated in relation to the hole quality and tapering effect. In particular, the laser fluence was the major factor in determining hole diameter and depth. The laser irradiation time affects the heat affected zone the most severely, and the number of pulses used ensures a hole that is relatively clear of debris. In order to obtain holes of the best quality finish, high laser fluence and optimum values of laser irradiation time and number of pulses should be used. By setting the focal point above the surface of the PVC, the tapering effect was found to be minimum.
机译:已经发现,与单芯正交磁通门传感器相比,多芯正交磁通门传感器的感测性能得到了显着提高,增强的幅度与传感元件中芯线的数量成比例。制造多芯传感元件的方法之一可以是模板沉积方法,其中先在PVC模板中对孔阵列进行激光钻孔,然后在孔中进行电磁柱的电沉积。因此,在这项研究中已经对Nd:YAG激光参数对PVC模板上的孔质量进行了优化。激光加工效果的参数包括:(1)激光能量密度; (2)激光照射时间; (3)脉冲数; (4)研究了激光焦点与孔质量和锥形效果的关系。特别地,激光能量密度是确定孔直径和深度的主要因素。激光照射时间对受热区域的影响最大,所使用的脉冲数可确保孔内没有碎屑。为了获得质量最好的孔,应使用高激光通量以及最佳的激光照射时间和脉冲数。通过将焦点设置在PVC表面上方,可以发现锥形效果最小。

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