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首页> 外文期刊>Polymer Engineering and Science >Effect of Resin Compositions on Microwave Processing and Thermophysical Properties of Benzoxazine-Epoxy-Phenolic Ternary Systems Filled With Silicon Carbide (SiC) Whisker
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Effect of Resin Compositions on Microwave Processing and Thermophysical Properties of Benzoxazine-Epoxy-Phenolic Ternary Systems Filled With Silicon Carbide (SiC) Whisker

机译:树脂成分对充填碳化硅晶须的苯并恶嗪-环氧-酚醛三元体系的微波加工和热物理性能的影响

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摘要

Microwave processing of silicon carbide (SiC) whisker filled ternary systems based on benzoxazine, epoxy, and phenolic resins has been investigated using an industrial microwave apparatus at a fixed frequency of 2.45 GHz. The low viscosity molding compound and void-free cured specimens can easily be obtained from the resin mixtures. Increasing of epoxy mass fraction in the ternary systems provided a better microwave coupling, therefore, a faster curing time and higher conversion under microwave irradiation. However, the greater amount of epoxy resin in the mixture was observed to retard the traditional thermal cure process as seen in the shifting of the exothermic curing peaks to higher temperature. The higher dielectric constant of epoxy resin comparing with the benzoxazine resin can be attributed to the observed phenomenon. Additionally, benzoxazine fraction was found to render a reduction in linear thermal expansion coefficient of the ternary systems. The development of ternary systems yields the polymer systems with high flexibility in resincuring agent mixing ratios with relatively high T^sub g^ in the broader range of mixing ratios i.e., BEP451-BEP811. Synergism in glass transition temperature of the ternary systems is also observed with the maximum T^sub g^ up to 160° C in BEP721. [PUBLICATION ABSTRACT]
机译:已经使用工业微波设备以2.45 GHz的固定频率研究了基于苯并恶嗪,环氧树脂和酚醛树脂的碳化硅(SiC)晶须填充三元体系的微波处理。低粘度的模塑料和无空隙的固化样品可以很容易地从树脂混合物中获得。三元体系中环氧质量分数的增加提供了更好的微波耦合,因此,更快的固化时间和更高的微波辐射转化率。然而,从放热固化峰向更高温度的移动中可以看出,混合物中环氧树脂的用量增加,从而阻碍了传统的热固化过程。与苯并恶嗪树脂相比,环氧树脂的较高介电常数可归因于观察到的现象。另外,发现苯并恶嗪级分降低了三元系统的线性热膨胀系数。三元体系的发展产生了在较宽的混合比范围内,即BEP451-BEP811,树脂固化剂混合比具有较高挠性的聚合物体系,具有相对较高的T g -sub g。还观察到三元体系的玻璃化转变温度具有协同作用,在BEP721中最高T≤g g最高可达160°C。 [出版物摘要]

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    《Polymer Engineering and Science》 |2009年第5期|p.1022-1029|共8页
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    Chanchira Jubsilp,1 Tsutomu Takeichi,2 Salirti Hiziroglu,3 Sarawut Rimdusit41 Department of Chemical Engineering, Faculty of Engineering, Srinakharinwirot University,Nakhonnayok 26120, Thailand2 School of Materials Science, Toyohashi University of Technology, Toyohashi 441-8580, Japan3 Department of Natural Resource Ecology and Management, Oklahoma State University, Stillwater,Oklahoma 740784 Polymer Engineering Laboratory, Department of Chemical Engineering, Faculty of Engineering,Chulalongkom University, Bangkok 10330, ThailandCorrespondence to: Sarawut Rimdusit, e-mail: sarawut.r@chula.ac.thContract grant sponsor: Hitachi Scholarship Foundation, Thailand Research Fund.DOI 10.1002/pen.21358Published online in Wiley InterScience (www.interscience.wiley.com).© 2009 Society of Plastics Engineers,;

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