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Simena1943
1 。导言 吸水环氧树脂系统是一项具有挑战性的问题,由于不可逆转的变化,水运作的聚合物性能。据信,并有足够的实验证据的入口处水诱导: (一)膨胀的制度和建立残余应力及其附近的接口[ 1 ] , (二)破裂之间的粘接系统和一个由于基板[ 2 ] , (三)光圈环氧乙烷其余群体[ 3 ] , ( d )项修改地方应力状态和建立microcrazes通过环境应力开裂[ 4 ] 。 没有通用的模式,以涵盖所有类型的水分子扩散[ 1 ] 。几个机制水入口已经提出: (一)由菲克扩散的法律通过自由体积的聚合物[ 5 ] , ( b )个案二扩散机制的渗透肿胀是有限的聚合物蠕变[ 6 ] , (三)肿胀诱导有利聚合物溶剂参数, ( d )项渗透现象由于微孔的存在,渠道和其他缺陷聚合物[ 7 ] 。 这也是常见的文献,水扩散系数在不同的环氧树脂系统大约10月8日至10月10日平方厘米的S - 1 [ 1,2,8 ] ,也可用于橡胶改性成分[ 8 ] 。相似的价值得到了其他玻璃状聚合物系统[ 2 ] 。扩散系数措施最初率吸水率和原则,应该依赖于化学性质的聚合物系统和交联度的交联系统,如环氧树脂的。但是,因为这将显示在这个文件,类似的扩散系数被发现即使不能完全治愈系统。 在努力为设计抗水环氧系统,有必要知道哪些材料参数的真正参与和控制的过程中水分的吸收。在本文中,我们研究了水分的吸收性能的一个新的总部设在环氧树脂配方中使用的硬化剂的反应导数的疏水性聚合物,如聚硅氧烷。这将是表明,当共同的双酚A二缩水甘油醚( DGEBA )树脂固化,在场的聚( 3 - aminopropylmethylsiloxane ) (参与机构调动系统) ,平衡性能大大增强。此外,由于特殊的特点和形态的环氧系统[ 9 ] ,不同的行为,发现postcuring温度。
肥胖如何用营养来防治病因肥胖症是因身体摄入的热量超过消耗的热量引起。遗传和环境因素也对体重有影响,但它们究竟如何相互作用决定人的体重尚不清楚。有一种解释是体重的
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纳米材料技术作为一门高新科学技术,纳米技术具有极大的价值和作用。下面我给大家分享一些纳米材料与技术3000字论文, 希望能对大家有所帮助!纳米材料与技术3000
第一步是C=O断开成-C-O-,苯环上羟基邻位的H与苯环断开,C连苯环,O连H。 第二步是C-OH断开,苯酚上羟基对位的H与苯环断开,-OH与H结合成水,C连苯
环氧树脂有多种类别,以双酚A型为例:双酚A型环氧树脂的固化原理在环氧树脂的结构中有羟基(〉CH—OH)、醚基(—O—)和极为活泼的环氧基存在,羟基和醚基有高度的