Smithgall D H, Watkins L S, Frazee R E
Appl Opt. 1977 Sep 1;16(9):2395-402. doi: 10.1364/AO.16.002395.
The forward scattering of light by an optical fiber produces an interference fringe pattern, and the fringe period is inversely proportional to the fiber diameter. An electrooptic system has been developed to produce and detect this scattering pattern to provide an instrument which will measure fiber diameter during the drawing operation. The system measures the fiber diameter at a 1-kHz rate with a precision of 0.25 microm and an accuracy of +/-0.25 microm over a range of 50-150-microm diams. The instrument allows the fiber to move laterally in a 1-cm diam window maintaining the above accuracy. The system can be calibrated optically and does not need a standard fiber for this procedure. The instrument has been used for months without the need for recalibration. In addition to the digital diameter output, the system employs a microprocessor to compute mean and standard deviation values for various sample lengths and provides suitable signals for feedback control of fiber diameter.
光纤对光的前向散射会产生干涉条纹图案,且条纹周期与光纤直径成反比。已开发出一种电光系统来产生并检测这种散射图案,以提供一种能在拉丝操作过程中测量光纤直径的仪器。该系统以1千赫兹的速率测量光纤直径,在50至150微米的直径范围内,精度为0.25微米,准确度为±0.25微米。该仪器允许光纤在直径为1厘米的窗口内横向移动,并保持上述精度。该系统可通过光学方式校准,在此过程中无需标准光纤。该仪器已使用数月,无需重新校准。除了数字直径输出外,该系统还采用微处理器计算各种样本长度的均值和标准差,并提供合适的信号用于光纤直径的反馈控制。