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Quasi-static and dynamic mechanical behavior of transparent graft-interpenetrating polymer networks (graft-IPNs)

机译:透明移植互穿聚合物网络(移植物IPN)的准静态和动态力学行为

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Mechanical characterization of transparent graft Interpenetrating Polymer Networks or graft-IPNs based on polyurethane and acrylic copolymer are reported under both quasi-static and dynamic loading conditions. This study builds on an earlier work detailing the synthesis of the graft-IPNs M. Optically transparent graft-IPNs were synthesized using elastomeric polyurethane (PU) phase and stiff acrylate-base copolymer (CoP) phase. The ratios of CoP:PU were varied from 90:10 up to 60:40 by weight. Two grades of graft-IPNs were synthesized by using 650 g mol(-1) and 1400 g mol(-1) poly (tetramethylene ether) glycol (PTMG) during synthesis to study the molecular weight effect. Quasi-static tensile and fracture tests as well as dynamic fracture tests were performed. The dynamic fracture tests were carried out at high strain rate using a modified-Hopkinson pressure bar in conjunction with an optical technique called Digital Gradient Sensing (DGS) and ultrahigh-speed photography. Quasi-static tests indicate significant enhancements in crack initiation toughness and change in failure mode (brittle to ductile) when the constituents were varied. Enhancements in crack inititation toughness were also observed under dynamic loading. These results were further compared with those for commercial poly (methyl methacrylate) (PMMA) and polycarbonate (PC) sheet stock. Further improvement in fracture properties were observed under quasi-static loading conditions with increase in molecular weight of PTMG. The relatively high values of fracture toughness obtained for graft-IPNs is attributed to the crosslinks generated between the CoP and PU networks.
机译:基于准静态和动态负载条件,报道了基于聚氨酯和丙烯酸共聚物的透明移植物互穿的聚合物网络或移植物IPN的机械表征。该研究在细节较早的工作中建立了细节移植物IPNS M的合成。使用弹性聚氨酯(PU)相和硬丙烯酸酯基共聚物(COP)相来合成光学透明的移植物IPN。 COP的比率:PU从90:10变化,高达60:40重量。通过在合成期间使用650g mol(-1)和1400g mol(-1)聚(四亚甲基醚)二醇(PTMG)来合成两种曲面的移植物IPN以研究分子量效应。进行准静态拉伸和断裂试验以及动态断裂试验。使用改进的Hopkinson压力棒与称为数字梯度传感(DGS)和超高速摄影的光学技术一起以高应变速率进行动态断裂试验。准静态试验表明当成分变化时,在裂纹启动韧性和失效模式的变化(脆性到延展性)的显着增强。在动态载荷下,还观察到裂纹初始韧性的增强。将这些结果与商业聚(甲基丙烯酸甲酯)(PMMA)和聚碳酸酯(PC)片材储备进行比较。在准静态负载条件下观察到裂缝性能的进一步改善,随着PTMG的分子量增加。用于移植物IPNS获得的相对高的断裂韧性值归因于COP和PU网络之间产生的交联。

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