Chen Yinjun, Yeh C Joshua, Qi Yuan, Long Rong, Creton Costantino
Laboratoire Sciences et Ingénierie de la Matière Molle, ESPCI Paris, PSL University, Sorbonne Université, CNRS, F-75005 Paris, France.
Department of Mechanical Engineering, University of Colorado Boulder, Boulder, CO 80309, USA.
Sci Adv. 2020 May 15;6(20):eaaz5093. doi: 10.1126/sciadv.aaz5093. eCollection 2020 May.
Directly quantifying a spatially varying stress in soft materials is currently a great challenge. We propose a method to do that by detecting a change in visible light absorption. We incorporate a spiropyran (SP) force-activated mechanophore cross-linker in multiple-network elastomers. The random nature of the network structure of the polymer causes a progressive activation of the SP force probe with load, detectable by the change in color of the material. We first calibrate precisely the chromatic change in uniaxial tension. We then demonstrate that the nominal stress around a loaded crack can be detected for each pixel and that the measured values match quantitatively finite element simulations. This direct method to quantify stresses in soft materials with an internal force probe is an innovative tool that holds great potential to compare quantitatively stresses in different materials with simple optical observations.
直接量化软材料中空间变化的应力目前是一项巨大挑战。我们提出了一种通过检测可见光吸收变化来实现这一目标的方法。我们在多重网络弹性体中引入了一种螺吡喃(SP)力激活机械响应基团交联剂。聚合物网络结构的随机性导致SP力探针随负载逐渐激活,这可通过材料颜色变化检测到。我们首先精确校准单轴拉伸时的颜色变化。然后我们证明,对于每个像素都可以检测到加载裂纹周围的名义应力,并且测量值与有限元模拟定量匹配。这种使用内力探针量化软材料应力的直接方法是一种创新工具,具有通过简单光学观察对不同材料中的应力进行定量比较的巨大潜力。