Sotomayor-Del-Moral Jonathan A, Pascual-Francisco Juan B, Susarrey-Huerta Orlando, Resendiz-Calderon Cesar D, Gallardo-Hernández Ezequiel A, Farfan-Cabrera Leonardo I
Departamento de Mecatrónica, Universidad Politécnica de Pachuca, Carretera Pachuca-Cd. Sahagún Km. 20, Ex-Hacienda de Santa Barbara, Zempoala 43830, HGO, Mexico.
SEPI-Escuela Superior de Ingeniería Mecánica y Eléctrica, Instituto Politécnico Nacional, Unidad Zacatenco, Col. Lindavista, Ciudad de México 07738, CDMX, Mexico.
Polymers (Basel). 2022 Apr 29;14(9):1837. doi: 10.3390/polym14091837.
New data of creep and viscoelastic Poisson's ratio, ν(t), of five engineering elastomers (Ethylene Propylene-Diene Monomer, Flouroelastomer (Viton), nitrile butadiene rubber, silicone rubber and neoprene/chloroprene rubber) at different stress (200, 400 and 600 kPa) and temperature (25, 50 and 80 °C) are presented. The ν(t) was characterized through an experimental methodological approach based on creep testing (30 min) and strain (axial and transverse) measurements by digital image correlation. Initially, creep behavior in axial and transverse directions was characterized for each elastomer and condition, and then each creep curve was fitted to a four-element creep model to obtain the corresponding functions. The obtained functions were used to estimate ν(t) for prolonged times (300 h) through a convolution equation. Overall, the characterization was achieved for the five elastomers results exhibiting ν(t) increasing with temperature and time from about 0.3 (for short-term loading) to reach and stabilize at about 0.48 (for long-term loading).
本文给出了五种工程弹性体(乙丙三元橡胶、氟橡胶(氟橡胶)、丁腈橡胶、硅橡胶和氯丁橡胶)在不同应力(200、400和600 kPa)和温度(25、50和80°C)下的蠕变和粘弹性泊松比ν(t)的新数据。通过基于蠕变测试(30分钟)和数字图像相关应变(轴向和横向)测量的实验方法对ν(t)进行了表征。首先,对每种弹性体和条件下的轴向和横向蠕变行为进行了表征,然后将每条蠕变曲线拟合到四元件蠕变模型以获得相应的函数。通过卷积方程,利用所获得的函数来估计较长时间(300小时)的ν(t)。总体而言,对这五种弹性体进行了表征,结果表明ν(t)随温度和时间从约0.3(短期加载)增加到约0.48(长期加载)并达到稳定。