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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Microtube Laser Forming for Precision Component Alignment
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Microtube Laser Forming for Precision Component Alignment

机译:微管激光成型,用于精确的零件对准

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摘要

A micro-actuator for precision alignment, using laser forming of a tube, is presented. Such an actuator can be used to align components after assembly. The positioning of an optical fiber with respect to a waveguide chip is used as a test case, where a submicron lateral alignment accuracy is required. A stainless steel tube with an outer diameter of 635 mu m was used as a simple and compact actuator, where the fiber is mounted concentrically in the tube. An experimental setup has been developed to measure the fiber displacement in real time with a resolution better than 0.1 mu m. In addition, this setup allows the axial and radial positioning of the laser spot over the surface of the tube. Several tube samples were (de) formed to move a fiber to a predefined position, using a laser with a wavelength of 1080 nm, a pulse length of 200 ms, and a power between 4W and 10 W. On average of 18 laser pulses were required to reach the targeted position of the fiber with an accuracy of 0.1 mu m. It has been found that increasing the laser power not only results in a larger bending angle but also in a larger uncertainty of this angle. The opposite is true for the radial bending direction, where the uncertainty decreases with increasing laser power.
机译:提出了一种利用管的激光成形来进行精确对准的微致动器。这样的致动器可以用于在组装之后对准部件。相对于波导芯片的光纤定位被用作测试案例,其中要求亚微米横向对准精度。使用外径为635μm的不锈钢管作为简单紧凑的执行器,将光纤同心地安装在管中。已经开发出一种实验装置来实时测量纤维位移,其分辨率优于0.1微米。另外,这种设置允许激光点在管子表面上的轴向和径向定位。使用波长为1080 nm,脉冲长度为200 ms,功率在4W到10 W之间的激光,形成(去除)了几个试管样品,以将光纤移动到预定位置。需要以0.1微米的精度到达光纤的目标位置。已经发现增加激光功率不仅导致较大的弯曲角度,而且导致该角度的较大不确定性。径向弯曲方向则相反,不确定度随着激光功率的增加而减小。

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