首页> 外文期刊>European Journal of Lipid Science and Technology >Synthesis and curing performance of a novel bio-based epoxy monomer from soybean oil
【24h】

Synthesis and curing performance of a novel bio-based epoxy monomer from soybean oil

机译:大豆油新型生物基环氧单体的合成及固化性能

获取原文
获取原文并翻译 | 示例
           

摘要

A novel bio-based epoxy monomer (EP) was obtained from the reaction of modify soybean oil and epichlorohydrin (ECH). And EP blended with bisphenol-A epoxy oligomer (DGEBA) to form the epoxy networks using triethylene tetramine as curing agent. The weight fraction of EP affects the performance of epoxy networks have been studied. The structures of the monomers and networks were studied by Fourier transformation infrared spectrometer (FTIR), and were consistent with the theoretical structures. Thermo-gravimetric analysis (TG) and differential scanning calorimetry analysis (DSC) were used to determine the thermal properties of the epoxy networks, indicating that glass transition temperature (T-g) and thermal stability decreased with increasing EP content. Mechanical properties analysis showed that the elongation at break and impact strength of the epoxy networks increased with the increasing EP content, while the tensile strength decreased. Dynamic non-isothermal curing test and scanning electron microscope (SEM) analysis revealed that there was no obvious phase separation and formed homogeneous crosslinking network structure. The properties of the epoxy networks were hard and brittle in low EP content, and presented strong flexible or soft flexible in high EP content. Practical applications: Soybean oil is one of the most interesting environmental resources for the synthesis of monomers, because of the aliphatic chain and functional groups contribute as a primary element to the backbone of polymer. It has received much attention as a renewable resource to replace petroleum resource for preparing chemicals and polymers, due to its environmental advantages, renewable and economic. The bio-based epoxy resin can be used to modify the commercial bisphenol-A epoxy resin to overcome the weaknesses of brittleness of the cured networks. As a novel epoxy monomer, it can be used in many fields which the traditional epoxy resins were used, such as paint, coatings, adhesives, electronic materials, and structural materials. Also, it can be used as a modifier to modify other industrial epoxy resins, due to the flexible aliphatic chain structure and low viscosity property. The bio-based may degrade after discarding and come into environmental cycle. Soybean oil has received much attention as a renewable resource to replace petroleum resource for preparing chemicals and polymers, due to its environmental advantages, renewable and economic. In this paper, a novel polyols is derived from soybean oil and used for the preparation of aliphatic epoxy monomer. And then the bio-based epoxy monomer is used to modify the commercial bisphenol-A epoxy oligomer to overcome the weaknesses of brittleness of the cured networks. The epoxy monomer and epoxy networks prepared from soybean oil are environmentally friendly materials. It may degrade after discarding and come into environmental cycle.
机译:从改性大豆油和表氯醇的反应中获得了一种新的生物基环氧单体(EP)(ECH)。和双酚-A环氧树脂(DGEBA)混合的EP,形成使用三甲基四氨氨酸作为固化剂形成环氧网络。研究了EP的重量分数影响了环氧网络的性能。通过傅里叶变换红外光谱仪(FTIR)研究了单体和网络的结构,并且与理论结构一致。使用热重分析(Tg)和差示扫描量热法分析(DSC)来确定环氧网络的热性质,表明玻璃化转变温度(T-G)和热稳定性随着EP含量的增加而降低。机械性能分析表明,环氧网络的断裂和冲击强度的伸长率随着EP含量的增加而增加,而拉伸强度降低。动态非等温固化试验和扫描电子显微镜(SEM)分析显示,没有明显的相分离和形成均匀的交联网络结构。环氧网络的性质在低EP含量中辛苦且脆弱,并在高EP内容中呈现强烈的柔性或软灵活性。实际应用:大豆油是合成单体的最有趣的环境资源之一,因为脂族链和官能团有助于聚合物骨干的主要元素。由于其环境优势,可再生和经济,它因其作为制备化学品和聚合物而替换石油资源的可再生资源受到巨大的关注。生物基环氧树脂可用于改变商业双酚-A环氧树脂,以克服固化网络的脆性的弱点。作为一种新型环氧单体,它可以在许多领域中使用,这些领域使用传统的环氧树脂,例如涂料,涂料,粘合剂,电子材料和结构材料。而且,由于柔性脂族链结构和低粘度性,它可以用作改性其他工业环氧树脂的改性剂。在丢弃后,生物基可能降低并进入环境周期。大豆石油由于其环境优势,可再生和经济而取代了更换石油资源,以取代石油资源的可再生资源。在本文中,新型多元醇衍生自大豆油,用于制备脂族环氧单体。然后使用生物基环氧单体来改变商业双酚-A环氧树脂寡聚体以克服固化网络的脆性的弱点。由大豆油制备的环氧单体和环氧网络是环保的材料。丢弃后可能会降低并进入环境周期。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号