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Comparative Study on the Impact Wedge-Peel Performance of Epoxy-Based Structural Adhesives Modified with Different Toughening Agents

机译:用不同增韧剂改性环氧树脂基结构粘合剂的抗培养性剥离性能的比较研究

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摘要

Epoxy adhesives are widely used in various industries because of their high heat and chemical resistance, high cohesion, and minimal shrinkage. Recently, epoxy adhesives have been applied in the automotive industry as structural adhesives for lightweight vehicles. However, the brittleness of the epoxy is an obstacle for this application, since the automotive industry requires epoxy-based structural adhesives to have a high level of high-speed impact resistance. Hence, we used phenol-terminated polyurethane (PTPU) as a toughening agent for epoxy adhesives and compared the results with those that were obtained with carboxyl-terminated butadiene acrylonitrile copolymer (CTBN). The high-energy impact resistance of the epoxy adhesives was measured by the impact wedge-peel (IWP) test, and the shear strength was measured by the single lap joint test. As a result, the 20 wt % PTPU-modified epoxy adhesive showed remarkably higher total absorbed energy (25.8 J) during the IWP test and shear strength (32.3 MPa) as compared with the control epoxy adhesive (4.1 J and 20.6 MPa, respectively). In particular, the total absorbed energy of the PTPU-modified epoxy adhesive was much larger than that of the CTBN-modified epoxy adhesive (5.8 J). When more than 10 wt % PTPU was added, the modified epoxy adhesives showed stable crack growth and effectively transferred external stress to the substrate. These results were explained by changes in the glass transition temperature, crosslinking density, and morphology due to the toughening agents.
机译:环氧粘合剂由于其高热和耐化学性,高凝聚力和最小收缩而广泛应用于各种行业。最近,环氧粘合剂已在汽车工业中应用作为轻型车辆的结构粘合剂。然而,环氧树脂的脆性是这种应用的障碍,因为汽车行业需要基于环氧树脂的结构粘合剂具有高水平的高速抗冲击性。因此,我们使用酚封端的聚氨酯(PTPU)作为环氧粘合剂的增韧剂,并将结果与​​用羧基封端的丁二烯丙烯腈共聚物(CTBN)进行比较。通过冲击楔 - 剥离(IWP)试验测量环氧粘合剂的高能抗冲击性,通过单圈关节试验测量剪切强度。结果,与对照环氧粘合剂(4.1J和20.6MPa分别)相比,20wt%PTPu改性的环氧粘合剂在IWP测试和剪切强度(32.3MPa)期间显示出显着更高的总吸收能量(25.8J)(32.3MPa) 。特别地,PTPU改性的环氧粘合剂的总吸收能量远大于CTBN改性环氧粘合剂(5.8J)。当添加超过10wt%的PTPU时,改性的环氧粘合剂显示出稳定的裂纹生长,并有效地将外部应力转移到基材上。通过增韧剂由于玻璃化转变温度,交联密度和形态的变化来解释这些结果。

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