Physical Characterization of Fibre Optic Cable using Simple Laboratory Stress Tests

Farai Malvern Simba, Hambayi Hlahla, Nyashadzashe Ngaza
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Abstract

Most learning institutions in Zimbabwe use fibre optic cable for internet connectivity and the heavy human and vehicular traffic at these places may pose a threat to maintenance of the cable particularly on semi-rigid ground. Physical stress in form of pressure exerted on the cable by the said traffic need to be investigated and compared in relation to tensile strength of the cable. The cables are made of polymers which provide a good operating temperature, chemical resistance, bio compatibility and prevention to mechanical and chemical damage. Simple Physics lab tests offer an opportunity to investigate the stress and strain parameters of the cable. The study sought to determine the Young modulus of the fibre optic cable at Great Zimbabwe University using two methods namely : the centre span deflection method and the strain gauge method. The first method was based on adding standard weights to cable tied on horizontally on two ends and observing deflections from the equilibrium position, the second method involved adding standard weights to a vertically suspended fibre optic and observing extensions from original length. Results of the two methods were processed in linear equations which estimated a Young modulus constant for the cable which is a stress parameter that indicated the strength of the cable. The values for Young modulus for center span deflection method using three specimens of different lengths were 8.67 × 1010 N/m2, 2.34 × 1011 N/m2 and 1.78 × 1011 N/m2 with 0.003% error. For the strain gauge method readings obtained from two specimens of different lengths were 6.48 × 106 N/m2, 9.47 × 106 N/m2 with 0.3% error. Method 1 however gave values that are close to the literature figures and can be relied on to provide stress indicator values.
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光纤电缆的物理特性使用简单的实验室应力测试
津巴布韦的大多数学习机构使用光纤电缆进行互联网连接,这些地方的大量人员和车辆交通可能对电缆的维护构成威胁,特别是在半刚性地面上。需要研究由上述交通施加在电缆上的压力形式的物理应力,并将其与电缆的抗拉强度进行比较。电缆由聚合物制成,具有良好的工作温度、耐化学性、生物相容性和防止机械和化学损伤。简单的物理实验室测试为研究电缆的应力和应变参数提供了机会。本研究试图用两种方法确定大津巴布韦大学光缆的杨氏模量,即:中心跨度挠度法和应变计法。第一种方法是在两端水平绑着的电缆上增加标准重量,观察从平衡位置开始的挠度;第二种方法是在垂直悬挂的光纤上增加标准重量,观察从原始长度开始的延伸。这两种方法的结果被处理成线性方程,该方程估计了索的杨氏模量常数,这是一个表示索强度的应力参数。3个不同长度试件的中心跨挠曲法杨氏模量分别为8.67 × 1010 N/m2、2.34 × 1011 N/m2和1.78 × 1011 N/m2,误差为0.003%。应变片法测得两种不同长度试样的读数分别为6.48 × 106 N/m2、9.47 × 106 N/m2,误差为0.3%。然而,方法1给出的数值与文献数据接近,可用于提供应力指标值。
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