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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Development of environmentally friendly epoxy and composite adhesives and applications in single and mixed-modulus joints
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Development of environmentally friendly epoxy and composite adhesives and applications in single and mixed-modulus joints

机译:开发环保环氧树脂和复合材料粘合剂及其在单一和混合模量接头中的应用

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摘要

Epoxy adhesives are common and useful materials in several fields, especially in making joints for the aerospace industry. Lately, there is a growing demand for this kind of adhesives to become more environmentally friendly. In this work, an environmentally friendly epoxy adhesive is developed using commercially available materials, exhibiting a 12% increase in green carbon content and 22% increase in shear strength. The commercial eco-friendly epoxy system is then reinforced with dry olive pit powder in order to produce an eco-friendly composite adhesive, giving a 20% shear modulus increase, for the 2.5% filler content, compared to the pure matrix. The behavior of these two materials is investigated, when these are used as adhesives in lap joints, and their main shear properties are determined. In order to manufacture adhesively bonded joints using a thick layer of liquid resin without any pre-curing step, therefore achieving improved properties, two casting-like designs of the overlap area are made and tested, one in a single-modulus configuration and a second one in a mixed-modulus mode. When an eco-friendly epoxy adhesive is applied on each edge of the mixed modulus mode instead of a fossil-based epoxy adhesive, a 30% increase in shear strength is observed. Finally, the Property Predictive Model, a modification and extension of the Modulus Predictive Model, is proposed, allowing the accurate prediction of several properties of virtually any series of particulate composite materials. When the model is applied to the aforementioned composites, it proves to be capable of accurately predicting their main shear properties.
机译:环氧粘合剂在许多领域都是常见且有用的材料,尤其是在航空航天工业的接头制造中。最近,人们对这种粘合剂的需求越来越大,以使其更环保。在这项工作中,使用商用材料开发了一种环境友好型环氧粘合剂,其绿碳含量增加了12%,剪切强度增加了22%。然后使用干橄榄坑粉对商用环保环氧树脂系统进行增强,以生产环保复合粘合剂,与纯基体相比,填料含量为2.5%时,剪切模量增加20%。研究了这两种材料用作搭接接头粘合剂时的性能,并确定了它们的主要剪切性能。为了在不进行任何预固化步骤的情况下使用一层厚的液体树脂制造粘合接头,从而提高性能,对重叠区域进行了两种类似铸件的设计并进行了测试,一种是单模量配置,另一种是混合模量模式。当在混合模量模式的每个边缘使用环保型环氧粘合剂而不是化石基环氧粘合剂时,观察到剪切强度增加30%。最后,对模量预测模型进行了改进和扩展,提出了性能预测模型,可以准确预测几乎任何系列颗粒复合材料的几种性能。将该模型应用于上述复合材料,可以准确预测其主要剪切性能。

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