论文标题
复合物3D打印颗粒形状的光弹性应力响应
Photoelastic Stress Response of Complex 3D-Printed Particle Shapes
论文作者
论文摘要
虽然3维粒子内的压力可视化将大大提高我们对复杂颗粒行为的理解,但传统的光弹性方法缺乏可用的技术来产生合适的复杂颗粒。最近,3D打印创造了新的可能性,以增强物理代表性颗粒中的压力分析范围。在这里,我们调查和评估3D打印具有具有光弹性特性的复杂外部形状的单个粒子提供的机会。我们报告了X射线计算机断层扫描和3D打印的结果,并结合传统的光弹性分析,以可视化从简单的2D盘到复杂的3D印刷咖啡豆的颗粒的应变,包括内部空隙。我们发现打印层的相对取向和负载力会影响盘的光学响应,但其机械性能没有显着差异。此外,我们对3D打印的复合物颗粒内的应力进行半定量测量。本文概述了3维颗粒的压力可视化的潜在局限性和未来感兴趣的领域。
While stress visualization within 3-dimensional particles would greatly advance our understanding of the behaviors of complex particles, traditional photoelastic methods suffer from a lack of available technology for producing suitable complex particles. Recently, 3D-printing has created new possibilities for enhancing the scope of stress analysis within physically representative granules. Here, we investigate and evaluate opportunities offered by 3D-printing a single particle with a complex external shape with photoelastic properties. We report the results of X-ray computed tomography and 3D-printing, combined with traditional photoelastic analysis, to visualize strain for particles ranging from simple 2D discs to complex 3D printed coffee beans, including with internal voids. We find that the relative orientation of the print layers and the loading force affects the optical response of the discs, but without a significant difference in their mechanical properties. Furthermore, we present semi-quantitative measurements of stresses within 3D-printed complex particles. The paper outlines the potential limitations and areas of future interest for stress visualization of 3-dimensional particles.