Impact of thermal and humidity conditions on structural epoxy adhesives during medium-term exposure

IF 3.2 3区 材料科学 Q2 ENGINEERING, CHEMICAL
Marcin Kujawa , Piotr Paczos , Łukasz Smakosz , Adam Piasecki , Faizullah Jan , Karol Winkelmann , Viloletta Konopińska-Zmysłowska , Victor A. Eremeyev
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Abstract

An experimental program was undertaken to evaluate the performance characteristics, strengths and limitations of two commercially available two-component structural epoxy resin adhesives under varying thermal and humidity conditions, focusing on their performance in scenarios relevant to engineering applications. The following adhesives were selected for investigation, 3M Scotch DP490 and DP125 Gray. In practice, DP490, a high-rigidity epoxy, is primarily used for bonding small, unpainted metal parts, as well as metal to glass, ceramics, and stone. DP125 Gray, on the other hand, is a more flexible system, typically used for bonding metal to glass, glass to plastic, and painted or powder-coated metals. The selected adhesives were subjected to elevated temperatures (40 °C, 60 °C, 80 °C), hygrothermal conditioning (24h 4h 40 °C/90%RH; 8h -20 °C; 8h 70 °C/90%RH; 4h 20 °C/60%RH) and freeze-thaw cycles (24h 16h -20 °C; 8h 20 °C/45%RH). A medium-term exposure period was adopted to more accurately simulate real-world service conditions (7, 14, 28 days). The experimental characterization of these adhesives was conducted using scanning electron microscopy (chemical composition, fracture surface analysis), standard tensile tests (Young’s modulus, tensile strength), and Shore hardness tests. SEM analysis showed that both adhesives’ chemical compositions remained unchanged after environmental exposure, moreover DP125 Gray was found to contain harmful fluorine. DP490 lost elasticity at high temperatures but gained tensile strength at lower temperatures, while DP125 Gray showed improved elasticity, strength, and Shore hardness with higher temperatures. Unfortunately, both adhesives degraded at high humidity. The research described in this paper is part of a broader research program related to the application of bonding in the manufacturing of complex thin-walled profiles.
热和湿度条件对结构环氧胶粘剂中期暴露的影响
为了评估两种市售双组分结构环氧树脂胶粘剂在不同温度和湿度条件下的性能特征、强度和局限性,开展了一项实验计划,重点研究了它们在工程应用场景中的性能。选择3M Scotch DP490和DP125 Gray胶粘剂进行研究。实际上,DP490是一种高刚性环氧树脂,主要用于粘合小的、未涂漆的金属部件,以及金属与玻璃、陶瓷和石材的粘合。另一方面,DP125 Gray是一种更灵活的系统,通常用于金属与玻璃,玻璃与塑料以及涂漆或粉末涂层金属的粘合。选择的胶粘剂进行高温(40℃,60℃,80℃),湿热调理(24h→4h 40℃/90%RH;8h -20℃;8h 70℃/90%RH;4h 20℃/60%RH)和冻融循环(24h→16h -20℃;8h 20℃/45%RH)。为了更准确地模拟真实世界的使用条件,采用了中期暴露期(7,14,28天)。通过扫描电子显微镜(化学成分、断口分析)、标准拉伸测试(杨氏模量、拉伸强度)和邵氏硬度测试对这些粘合剂进行了实验表征。扫描电镜分析表明,两种胶粘剂的化学成分在环境暴露后没有变化,而且DP125 Gray中含有有害的氟。DP490在高温下失去弹性,但在低温下获得抗拉强度,而DP125 Gray在高温下表现出改善的弹性、强度和肖氏硬度。不幸的是,这两种粘合剂在高湿度下都会降解。本文中描述的研究是与粘合在复杂薄壁型材制造中的应用有关的更广泛的研究计划的一部分。
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来源期刊
International Journal of Adhesion and Adhesives
International Journal of Adhesion and Adhesives 工程技术-材料科学:综合
CiteScore
6.90
自引率
8.80%
发文量
200
审稿时长
8.3 months
期刊介绍: The International Journal of Adhesion and Adhesives draws together the many aspects of the science and technology of adhesive materials, from fundamental research and development work to industrial applications. Subject areas covered include: interfacial interactions, surface chemistry, methods of testing, accumulation of test data on physical and mechanical properties, environmental effects, new adhesive materials, sealants, design of bonded joints, and manufacturing technology.
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