标题: | 层状矽酸盐补强聚丙烯晴-丁二烯橡胶与聚丁二烯橡胶奈米复合材料之性质研究 Mechanical and Morphological Effects of Layered silicates on Nitrile-Butadiene and Butadiene Rubber Nanocomposites |
作者: | 黄为国 Wei-Gwo Hwang 韦光华 Dr. Kung-Hwa Wei 材料科学与工程学系 |
关键字: | 弹性体柰米复材;机械强度;层状矽酸盐;Elastomer nanocomposites;Mechanical strength;Layered silicates |
公开日期: | 2005 |
摘要: | 本论文主旨为探讨利用不同组成之有机或无机层状矽酸盐黏土强化橡胶材料所形成之奈米橡胶复材的性能改变结果,研究显示经由适当之制程设计、材料选配与利用可产生化学或物理反应之界面活性剂、共溶剂等寡分子体之导入效果,可获得极佳之机械性能改良,热性能与阻断性能(barrier property)提升等。 本文第二章,探讨利用乳化相掺混程序,并结合高剪力掺合及球磨分散方式可将无机层状矽酸盐黏土均匀混入NBR橡胶乳胶中,经由X光绕射检测及TEM观察结果显示,当层状矽酸盐黏土含量低于7.5 wt %时,可形成分散良好之部分剥层与插层结构之奈米橡胶复材,其机械性能如拉力与抗撕裂强度均比NBR原材料性能提升相当多,分别提升逾200%与60%,此外其热分解温度也相对提升。 在第三章中,探讨以溶液掺合作业方式制备有机改质之层状矽酸盐补强NBR橡胶所形成之奈米橡胶复材,经由X光绕射检测及TEM观察结果显示,此一复材之结构为大部分插层与局部剥层之分散相,只需添加少于10份矽酸盐黏土,即可制备具相当高强度与热性质之奈米橡胶复材,其抗水渗透等性能也有显着提升。 在第四章中,探讨经由二阶段熔融掺合作业方式制备有机改质之层状矽酸盐补强BR橡胶所形成之奈米橡胶复材,经由X光绕射检测及TEM观察结果显示,其结构为大部分插层之分散相,审慎选用有机黏土与共容剂,在含量少于10份之有机矽酸盐黏土与约3份之共容剂可获得最佳之机械与物理性能提升,且抗水渗透等性能也有相对提升。 本论文的研究结果可得到以下结论,经由适当之制程设计、材料选配,可以有许多不同途径用以产制具有大部分插层与局部剥层型态学之奈米橡胶复材,这主要是基于经有机改质或特殊表面处理的橡胶高分子与矽酸盐补强材料之间所产生很强的分子间作用引力,与改善界面相容性之效果所致。 In this thesis, a variety of methods are used to prepare the elastomer nanocomposites comprised of inorganic or organo-modified layered silicates and rubber matrices. Excellent mechanical , thermal and barrier properties can be obtained for each nanocomposite by performing proper process design, material selection, physical and/or chemical reactions by the addition of compatibilizers or surfactants, etc. In chapter 2, elastomer nanocomposites consisting of nitrile butadiene rubber (NBR) latex and layered silicates are prepared by a modified latex shear blending process aided with ball milling. The mode of dispersion of layered silicates in NBR is partially exfoliated and intercalated when the concentration of layered silicates is below 7.5 wt %, as evidenced by transmission electron microscopy and X-ray diffraction results. The tensile and tear properties are much higher than that of neat NBR. Specifically, the tensile and tear mechanical properties of the NBR / layered silicates can increase by 200% and 60%, respectively. The decomposition temperature of the nanocomposites increases slightly. Different methods to form the nanocomposites of intercalated and exfoliated organosilicates in acrylonitrile butadiene rubber (NBR) are carried out by a solution blending process in chapter 3. The dispersion and intergallery spacings of organosilicates in these nanocomposites are examined by transmission electron microscopy and X-ray diffraction. Dramatic enhancements in the mechanical and thermal properties of NBR are found by incorporating less than ten parts of organosilicates. The fluid impermeability is also improved significantly. Nanocomposites of intercalated and exfoliated organosilicates in butadiene rubber (BR) have also been prepared by using a two-stage melt blending process in chapter 4. X-ray diffraction and transmission electron microscopy are used to examine, respectively, the intergallery spacing of the organosilicates and their dispersion in the BR. Dramatic enhancements in the mechanical and thermal properties of BR occur when it incorporates less than 10 parts of organosilicates and the loading ratio of the organosilicate to dicarboxylic acid-terminated butadiene oligomer is about 3. In addition, the relative water vapor permeability of the BR nanocomposites containing 10 parts of organosilicate—both in the presence and absence of the compatibilizer—reduce largely compared to that of the neat BR. It can be concluded that the successfully prepared NBR(BR)/organosilicate nanocomposites having intercalated and partially exfoliated structures can be obtained by different blending methods in proper process design and material selection. As a result of significantly improved compatibility and the strong molecular chains interactions between layered silicates and rubber matrices, the mechanical, thermal, and many other properties of these nanocomposites containing a low weight percent of layered silicates can be increased substantially. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009018812 http://hdl.handle.net/11536/82014 |
显示于类别: | Thesis |
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