Lee Jae-Hoon, Lee Sang-Soo, Chang Jun-Dong, Thompson Mark S, Kang Dong-Joong, Park Sungchan, Park Seonghun
System Research and Development, Samsung Heavy Industries, Geoje 656-710, Republic of Korea.
ScientificWorldJournal. 2013 Apr 23;2013:930798. doi: 10.1155/2013/930798. Print 2013.
A new method with a simple algorithm was developed to accurately measure Poisson's ratio of soft materials such as polyvinyl alcohol hydrogel (PVA-H) with a custom experimental apparatus consisting of a tension device, a micro X-Y stage, an optical microscope, and a charge-coupled device camera. In the proposed method, the initial positions of the four vertices of an arbitrarily selected quadrilateral from the sample surface were first measured to generate a 2D 1st-order 4-node quadrilateral element for finite element numerical analysis. Next, minimum and maximum principal strains were calculated from differences between the initial and deformed shapes of the quadrilateral under tension. Finally, Poisson's ratio of PVA-H was determined by the ratio of minimum principal strain to maximum principal strain. This novel method has an advantage in the accurate evaluation of Poisson's ratio despite misalignment between specimens and experimental devices. In this study, Poisson's ratio of PVA-H was 0.44 ± 0.025 (n = 6) for 2.6-47.0% elongations with a tendency to decrease with increasing elongation. The current evaluation method of Poisson's ratio with a simple measurement system can be employed to a real-time automated vision-tracking system which is used to accurately evaluate the material properties of various soft materials.
开发了一种算法简单的新方法,通过由拉伸装置、微型X-Y平台、光学显微镜和电荷耦合器件相机组成的定制实验装置,精确测量聚乙烯醇水凝胶(PVA-H)等软材料的泊松比。在所提出的方法中,首先测量从样品表面任意选择的四边形的四个顶点的初始位置,以生成用于有限元数值分析的二维一阶四节点四边形单元。接下来,根据四边形在拉伸下的初始形状和变形形状之间的差异计算最小和最大主应变。最后,通过最小主应变与最大主应变的比值确定PVA-H的泊松比。这种新方法在准确评估泊松比方面具有优势,尽管试样与实验装置之间存在未对准情况。在本研究中,PVA-H在2.6-47.0%伸长率下的泊松比为0.44±0.025(n = 6),且有随伸长率增加而降低的趋势。利用简单测量系统的当前泊松比评估方法可应用于实时自动视觉跟踪系统,该系统用于准确评估各种软材料的材料性能。