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1)  Resin core materials
树脂核材料
2)  resin material
树脂材料
3)  resin matrix materials
树脂基材料
1.
According to the analysis of the thermal chemical ablative mechanism of resin matrix materials under pyrolytic reaction at elevated temperature, the ablation phase transformation properties and the thermal deformation behavior of the materials were investigated by Eshelby equivalent inclusion method.
通过对树脂基材料高温热解反应过程中热化学烧蚀机理的分析 ,利用细观力学的 Eshelby等效夹杂方法研究了材料高温烧蚀相变特性和热变形行为。
4)  Resin matrix composite
树脂基复合材料
1.
The article described mechanism of physical and chemical modification technology of resin matrix composite and its progress.
概述了树脂基复合材料物理及化学改性技术的作用机理,以及近年来改性技术的最新进展情况,对几种典型改性树脂基复合材料做了简要的介绍。
2.
The theory and application of the resin matrix composite in infrared stealthy technique,radar stealthy technique,and multiple spectrum stealthy technique are presented.
阐述了树脂基复合材料在红外隐身,雷达隐身、多谱隐身技术中的隐身原理及应用情况,分析了树脂基复合材料在隐身技术中的地位和广阔应用前景。
3.
The basic conception of the photopolymerization reaction, the constitution of the photopolymerization resin matrix and the kinds of the reinforced materials in the photopolymerization resin matrix composites were introduced.
介绍光固化反应的基本概念、光固化树脂基体的组成及光固化树脂基复合材料用增强材料的种类。
5)  resin based composite
树脂基复合材料
1.
The requirements for the interfacial combining of the resin based composite under forced condition have been analyzed.
分析了树脂基复合材料受力状况下对界面结合的要求 ,着重介绍了微量冲击和临界纤维断裂长度分析两种检测树脂基复合材料界面剪切强度的方法及其研究成果。
2.
Several resin based composites were prepared by filling of graphite, carbon black and coke in phenolic resin, NBR modified phenolic resin and polytetrafluroethylene (PTFE) as the bonding agents.
采用酚醛树脂、丁腈橡胶改性酚醛树脂和聚四氟乙烯 (PTFE)作为粘结相 ,通过填充一定配比的石墨、焦炭及碳黑制备了 3种树脂基复合材料电刷试样 ,并在 MM- 2 0 0型摩擦磨损试验机上对比考察了复合材料试样与铜对摩时的摩擦磨损性能 。
3.
The types of resin based absorbing composites were presented,such as carbon/thermoplastic resin based composite,fiber reinforced resin composites,resin based nanocomposite.
本文介绍了目前应用在吸波中的几种新型的树脂基吸波复合材料,如碳/热塑性树脂基复合材料、纤维增强树脂基复合材料、树脂基纳米复合材料。
6)  optical resins materials
光学树脂材料
补充资料:树脂
分子式:
CAS号:

性质:相对分子量不确定但通常较高,常温下呈固态、中固态、假固态,有时也可以是液态的有机物质。具有软化或熔融温度范围,在外力作用下有流动倾向,破裂时常呈贝壳状。广义上是指用作塑料基材的聚合物或预聚物。一般不溶于水,能溶于有机溶剂。按来源可分为天然树脂和合成树脂;按其加工行为不同的特点又有热塑性树脂和热固性树脂之分。

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