Improving the Flame Retardancy and Mechanical Properties of Vinyl Ester Resins through Maleated Epoxidized Corn Oil/Epoxy Resin Additives for Sustainable Thermoset Composites.

IF 4.7 Q1 POLYMER SCIENCE
ACS polymers Au Pub Date : 2024-12-27 eCollection Date: 2025-02-12 DOI:10.1021/acspolymersau.4c00088
Maurelio Cabo, Prabhakar Manoj Narendra, Dong-Woo Lee, Ruiwen Yu, Vinitsa Chanthavong, Jung-Il Song
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Abstract

Thermoset polymers serve a significant role in modern industrial applications, and with a global annual output of over 65 million tons to meet this growing demand for sustainable materials, scientists and engineers need to go beyond what makes a material best for a certain use. Vinyl ester (VE) is a thermosetting polymer derived from polyester and epoxy resin. Its mixing properties distinguish it from its competitors, offering advantages in terms of curing efficiency, wettability, corrosion resistance, and low cost, which are crucial for modern industrial applications. Researchers have continuously explored the modifications of the intrinsic properties of VE using additives to enhance its flame retardancy and mechanical characteristics for more cost-effective and environmentally friendly materials applicable across various industries. In this study, we developed an easy-to-process eco-thermoset blend additive (50% v/v), known as maleated epoxidized corn oil/epoxy resin (MEPECO). Adding an optimal amount of MEPECO (5%) to the VE resin significantly improved its flame retardancy properties, as assessed by pyrolysis-combustion flow calorimetry, contact angle measurements, and thermogravimetric analysis. The mechanical properties, specifically strength, also showed substantial enhancement with the same optimal amount of MEPECO, as determined by flexural testing and spectral analysis. However, during the digestion of the eco-thermoset resin, the modulus and impact energy were notably lower owing to shear-yielding localization, as evidenced by the morphological analysis. This paper presents a novel in situ and straightforward technique for the easy and effective blending of eco-thermoset additives into petroleum-based epoxy resins, thereby facilitating their potential application in the development of sustainable green composite materials.

用马来化环氧玉米油/环氧树脂添加剂改善乙烯基酯树脂的阻燃性和力学性能
热固性聚合物在现代工业应用中发挥着重要作用,全球年产量超过6500万吨,以满足对可持续材料不断增长的需求,科学家和工程师需要超越使材料最适合某种用途。乙烯基酯(VE)是一种热固性聚合物,由聚酯和环氧树脂衍生而来。它的混合性能使其与竞争对手区别开来,在固化效率、润湿性、耐腐蚀性和低成本方面具有优势,这对现代工业应用至关重要。研究人员不断探索使用添加剂来改变VE的固有特性,以增强其阻燃性和机械特性,从而使其成为适用于各个行业的更具成本效益和环保的材料。在这项研究中,我们开发了一种易于加工的生态热固性共混添加剂(50% v/v),称为马来化环氧玉米油/环氧树脂(MEPECO)。通过热解-燃烧流量热法、接触角测量和热重分析评估,在VE树脂中添加最优量的MEPECO(5%)可显著提高其阻燃性能。弯曲测试和光谱分析表明,在MEPECO用量相同的情况下,材料的力学性能,特别是强度也得到了显著提高。然而,在生态热固性树脂的消化过程中,由于剪切屈服局部化,模量和冲击能明显降低,这从形态分析中可以看出。本文提出了一种新的原位、直接的技术,可以简单有效地将生态热固性添加剂掺入石油基环氧树脂中,从而促进其在可持续绿色复合材料开发中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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