论文标题
部分可观测时空混沌系统的无模型预测
A laser projection system for polymer transverse strain measurements in tensile testing
论文作者
论文摘要
提出了一种在拉伸测试中用于光学横向应变测量值的自我建造的激光投影系统。基于激光二极管模块,CCD(电荷耦合设备)阵列检测器以及标准的光力组件的设置被认为是测试聚合物样品的低成本系统。光学设置为移动设置,可以轻松地安装在拉伸测试机上。通过十微米分辨率和通过拉伸测试机获得的十微分分辨率和应力 - 应变曲线检测到聚合物直径的圆形变化。本文介绍了使用开源编程语言R r的信号处理,并在两个垂直平面中评估聚合物样品的横向变形。光学系统获得的结果可用于准确描述聚合物在复杂负载条件下的基于能量的机械性能的模型。
A self-built laser projection system for optical transverse strain measurements in tensile testing is presented. The setup based on laser diode modules, CCD (Charge-Coupled Device) array detectors, and standard optomechanical components is proposed to be a low-cost system for testing polymer samples. The optical setup is mobile and can easily be mounted on a tensile test machine. Circular cross-sectional changes in polymer diameter were detected with ten-micrometre resolution and stress-strain curves obtained by a tensile test machine. The article describes signal processing using the open-source programming language R, and the transverse deformation of the polymer sample is evaluated in two perpendicular planes. The results obtained by the optical system may be used to accurately describe the models of energy-based mechanical properties of polymers for complex load conditions.