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Design and fabrication of meso-scale flexural testing apparatus for evaluating aligned CNT composite flexures

机译:设计和制造用于评估对准的CNT复合材料弯曲的中尺度弯曲试验装置

摘要

The objective of this research is to explore the possibility of using aligned Carbon Nanotube (CNT) based composites in flexures by measuring the kinematics of a composite flexure. The first phase of the research, described in this thesis, is to design, fabricate and assemble a testing apparatus optimized for evaluating aligned CNT based composites. Using existing literature on composites and present limitations on their growth, functional requirements are set down for the testing apparatus. Several designs are qualitatively evaluated, leading to a near optimal design form. This chosen design is modeled as a spring-mass system, and the exact geometry needed to satisfy the functional requirements is determined. The design of the full apparatus is expanded to contain the necessary probes and actuators. The testing apparatus is fabricated using CNC machining, and assembled in a controlled environment to reduce thermal and mechanical error during operation. The system is calibrated and its resolution is found to be 0.021 N over a range of 28.5 N applied force and 1.5 pm over a range of 816 pm applied displacement. Several non-linearities are noted and corrected mathematically.
机译:这项研究的目的是通过测量复合挠性的运动学来探索在挠曲中使用基于碳纳米管(CNT)的复合材料的可能性。本文所描述的研究的第一阶段是设计,制造和组装一种测试设备,该设备经优化可用于评估基于CNT的复合材料。利用有关复合材料的现有文献并限制其生长,为测试设备设定了功能要求。对几种设计进行定性评估,从而得出接近最佳的设计形式。该选择的设计被建模为弹簧质量系统,并确定满足功能要求所需的确切几何形状。整个设备的设计扩展到包含必要的探针和执行器。测试设备使用CNC加工制造,并在受控的环境中组装以减少操作过程中的热误差和机械误差。对该系统进行了校准,发现其分辨率在28.5 N施加力范围内为0.021 N,在816 pm施加位移范围内为1.5 pm。记录了一些非线性,并进行了数学校正。

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