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用于牙科纤维桩的生物基苯并恶嗪-环氧树脂共聚物的力学性能与固化动力学

Mechanical properties and curing kinetics of bio-based benzoxazine-epoxy copolymer for dental fiber post.

作者信息

Mora Phattarin, Rimdusit Sarawut, Karagiannidis Panagiotis, Srisorrachatr Ukrit, Jubsilp Chanchira

机构信息

Department of Chemical Engineering, Faculty of Engineering, Srinakharinwirot University, Nakhonnayok, 26120, Thailand.

Center of Excellence in Polymeric Materials for Medical Practice Devices, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

Bioresour Bioprocess. 2023 Sep 16;10(1):62. doi: 10.1186/s40643-023-00684-x.

Abstract

Biocopolymers based on vanillin/fufurylamine-biobenzoxazine (V-fa) and epoxide castor oil (ECO), a bioepoxy, were prepared for application as dental fiber-reinforced composite post. The mechanical and thermal properties of the V-fa/ECO biocopolymers were assessed with regard to the influence of ECO content. The addition of the ECO at an amount of 20% by weight into the poly(V-fa) preserved the stiffness, glass transition temperature and thermal stability nearly to the poly(V-fa). Differential scanning calorimetry (DSC) was used to examine the curing kinetics of the V-fa/ECO monomer system with different heating rates. To determine the activation energy (E), the experimental data were subjected to the isoconversional methods, namely Flynn-Wall-Ozawa (FWO) and Friedman (FR). The V-fa/ECO monomer mixture showed average E values of 105 kJ/mol and 94 kJ/mol. The results derived using the curing reaction model and the experimental data were in good agreement, demonstrating the efficacy of the FWO method for determining the curing kinetics parameters. The simulated mechanical response to external applied loads by finite-element analysis of the tooth model restored with glass fiber-reinforced V-fa/ECO biocopolymer post showed a similar stress field to the tooth model restored with a commercial glass fiber post. Therefore, based on the findings in this work, it is evident that the bio-based benzoxazine/epoxy copolymer possesses a great potential to be used for dental fiber post.

摘要

制备了基于香草醛/糠胺-双苯并恶嗪(V-fa)和环氧化蓖麻油(ECO,一种生物环氧树脂)的生物共聚物,用于牙科纤维增强复合桩的应用。针对ECO含量的影响,评估了V-fa/ECO生物共聚物的力学和热性能。向聚(V-fa)中添加20%重量的ECO,其刚度、玻璃化转变温度和热稳定性几乎与聚(V-fa)保持一致。采用差示扫描量热法(DSC)研究了不同升温速率下V-fa/ECO单体体系的固化动力学。为了确定活化能(E),将实验数据采用等转化率方法,即弗林-沃尔-小泽(FWO)法和弗里德曼(FR)法进行处理。V-fa/ECO单体混合物的平均E值分别为105 kJ/mol和94 kJ/mol。使用固化反应模型得到的结果与实验数据吻合良好,证明了FWO法在确定固化动力学参数方面的有效性。通过对用玻璃纤维增强的V-fa/ECO生物共聚物桩修复的牙齿模型进行有限元分析,模拟其对外加载荷的力学响应,结果表明其应力场与用商业玻璃纤维桩修复的牙齿模型相似。因此,基于本研究的结果,显然这种生物基苯并恶嗪/环氧树脂共聚物具有用于牙科纤维桩的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3de/10991436/b51e02311bf8/40643_2023_684_Sch1_HTML.jpg

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