环氧树脂体系:固化剂的作用和作用

IF 5.5 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Tariq Aziz, Fazal Haq, Arshad Farid, Li Cheng, Lai Fatt Chuah, Awais Bokhari, Muhammad Mubashir, Doris Ying Ying Tang, Pau Loke Show
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引用次数: 0

摘要

固化剂是水性环氧树脂体系的关键成分。遗憾的是,由于其乳化产量低,其用途和应用受到了限制。环氧树脂常用于电气设备、铸件、包装、粘合剂、防腐蚀和浸涂。在有固化剂存在的情况下,环氧树脂会变得坚硬且可灌注。生态友好性和机械功能性已成为硫化特性。固化剂可用于表面改性、热力学特性、治疗程序的功能方法以及商业和工业等多个领域的最新进展。与商用固化剂相比,固化剂具有更优越的结构和机械性能,这表明它具有用作建筑和工业涂料的潜力。由于存在亚胺基团和氢化菲环结构,固化产品具有良好的热稳定性。在预测期内,预计全球固化剂市场将继续稳步扩大。市场增长的主要动力来自其在未来应用领域的不断扩大,如粘合剂、复合材料、建筑、电气、电子和风能等。本综述重点关注固化技术的最新进展,强调其热性能和机械性能。综述还对固化剂在工业领域应用的关键方面和瓶颈或研究缺口进行了深入探讨。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The epoxy resin system: function and role of curing agents

The epoxy resin system: function and role of curing agents

The epoxy resin system: function and role of curing agents

Curing agents are critical components of aqueous epoxy resin systems. Unfortunately, its uses and applications are restricted because of its low emulsifying yields. Epoxy resins are frequently used in electrical devices, castings, packaging, adhesive, corrosion resistance, and dip coating. In the presence of curing agents, epoxy resins become rigid and infusible. Eco-friendliness and mechanical functionality have emerged as vulcanization properties. Curing agents are used for surface modification, thermodynamic properties, functional approaches to therapeutic procedures, and recent advances in a variety of fields such as commercial and industrial levels. The curing agent has superior construction and mechanical properties when compared to the commercial one, which suggests that it has the potential for use as the architectural and industrial coatings. The thermal stability of cured products is good due to the presence of the imide group and the hydrogenated phenanthrene ring structure. Over the course of the projection period, it is anticipated that the global market for curing agents will continue to expand at a steady rate. The growth of the market is mainly driven by its expanding range in future applications such as adhesives, composites, construction, electrical, electronics, and wind energy. This review focused on the most recent advancements in curing techniques, emphasizing their thermal and mechanical properties. The review also presents a critical discussion of key aspects and bottleneck or research gap of the application of curing agents in the industrial areas.

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来源期刊
Carbon Letters
Carbon Letters CHEMISTRY, MULTIDISCIPLINARY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
7.30
自引率
20.00%
发文量
118
期刊介绍: Carbon Letters aims to be a comprehensive journal with complete coverage of carbon materials and carbon-rich molecules. These materials range from, but are not limited to, diamond and graphite through chars, semicokes, mesophase substances, carbon fibers, carbon nanotubes, graphenes, carbon blacks, activated carbons, pyrolytic carbons, glass-like carbons, etc. Papers on the secondary production of new carbon and composite materials from the above mentioned various carbons are within the scope of the journal. Papers on organic substances, including coals, will be considered only if the research has close relation to the resulting carbon materials. Carbon Letters also seeks to keep abreast of new developments in their specialist fields and to unite in finding alternative energy solutions to current issues such as the greenhouse effect and the depletion of the ozone layer. The renewable energy basics, energy storage and conversion, solar energy, wind energy, water energy, nuclear energy, biomass energy, hydrogen production technology, and other clean energy technologies are also within the scope of the journal. Carbon Letters invites original reports of fundamental research in all branches of the theory and practice of carbon science and technology.
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