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二环戊二烯和甲基二环戊二烯在不饱和聚酯树脂合成中的应用。

Use of Dicyclopentadiene and Methyl Dicyclopentadiene for the Synthesis of Unsaturated Polyester Resins.

作者信息

Perrot Alexandre, Hyršl Jan, Bandžuch Jan, Waňousová Simona, Hájek Jiří, Jenčík Jan, Herink Tomáš

机构信息

SYNPO a.s., S. K. Neumanna 1316, 532 07 Pardubice, Czech Republic.

ORLEN Unipetrol RPA s.r.o., Záluží 1, 436 70 Litvínov, Czech Republic.

出版信息

Polymers (Basel). 2021 Sep 16;13(18):3135. doi: 10.3390/polym13183135.

Abstract

Dicyclopentadiene (DCPD) modified unsaturated polyester resins (UPRs) are mostly used for hulls, decks, and bathroom facilities. Main advantages of these polymers over orthophthalic or isophthalic polyesters are their relatively low shrinking, reduced styrene emission, lower cost, and fast curing in thin layers. On the other hand, once cured, these materials are more brittle and have lower glass transition temperatures and lower chemical resistance due to their different chemical constitutions. DCPD UPRs with standard grades are usually produced with high-quality DCPD (over a 85% purity) using the so-called "water process", a synthesis consisting of two reaction steps. An adduct of maleic anhydride with DCPD is firstly formed with water, and then, it reacts with the other esterification monomers such as acids and glycols. DCPD raw materials used in this study were prepared by a unique distillation process developed by ORLEN Unipetrol and University of Chemistry and Technology, Prague. This technology allows producing a wide spectrum of DCPD quality by adjusting the content of another norbornene dimer: methyl dicyclopentadiene (MeDCPD). The influence of MeDCPD on unsaturated polyester properties was examined throughout this study. It has been discovered that in low concentrations, MeDCPD had a slight influence on flexural mechanical properties whereas its concentrations up to 65% led to a softer and brittle material. Nevertheless, by adjusting the unsaturation degree, it has been shown that MeDCPD may be successfully implanted in UPR formulation.

摘要

二环戊二烯(DCPD)改性不饱和聚酯树脂(UPR)主要用于船体、甲板和浴室设施。与邻苯二甲酸或间苯二甲酸聚酯相比,这些聚合物的主要优点是收缩率相对较低、苯乙烯排放量减少、成本较低且薄层固化速度快。另一方面,一旦固化,由于其不同的化学组成,这些材料更脆,玻璃化转变温度更低,耐化学性也更低。标准等级的DCPD UPR通常使用所谓的“水法”,由两个反应步骤组成的合成方法,用高质量的DCPD(纯度超过85%)生产。马来酸酐与DCPD的加合物首先与水形成,然后与其他酯化单体如酸和二醇反应。本研究中使用的DCPD原料是由ORLEN Unipetrol和布拉格化学与技术大学开发的独特蒸馏工艺制备的。该技术通过调整另一种降冰片烯二聚体:甲基二环戊二烯(MeDCPD)的含量,可以生产出多种质量的DCPD。在整个研究过程中,研究了MeDCPD对不饱和聚酯性能的影响。已经发现,在低浓度下,MeDCPD对弯曲机械性能有轻微影响,而其浓度高达65%会导致材料更柔软且易碎。然而,通过调整不饱和度,已表明MeDCPD可以成功地植入UPR配方中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e32e/8472950/c184e40e783b/polymers-13-03135-g001.jpg

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