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1.
徐丽  游长江  谢青 《广州化学》2008,33(1):54-58
综述了当前环氧树脂增韧增强改性的研究现状,详细介绍了弹性体增韧环氧树脂、无机纳米粒子改性环氧树脂、粘土改性环氧树脂、纳米SiO2改性环氧树脂以及弹性体/无机纳米粒子协同增韧增强环氧树脂的机理和实验方法。并对其实验结果进行了分析比较。  相似文献   

2.
螺环原酸酯改性环氧树脂的研究   总被引:1,自引:0,他引:1  
合成了一个新的螺环原酸酯单体,即带有螺环原酸酯结构单元的环氧树脂(E 54).用该单体对环氧树脂进行改性,可以减少残留在树脂基体中的环氧基团,这说明该单体与环氧树脂之间发生了共聚固化反应.基体的Tg和热稳定性随预聚物加入量的增加而降低,但改性环氧树脂的粘接强度则随预聚物的加入量的增加而增加.对上述试验观察到的现象进行了讨论,并测试了改性环氧树脂基体的力学性能.  相似文献   

3.
环氧树脂具有优异的粘接性能和力学性能因而被广泛应用,但其耐热性差、脆性大等缺陷限制了其在高性能领域中的应用。聚氨酯具有高弹性、耐磨、抗撕裂等特点,且与环氧树脂相容性好。因此,利用聚氨酯改性环氧树脂能显著提高其力学性能,实现环氧树脂在众多领域的应用。本文综述了不同类型的聚氨酯改性环氧树脂的进展,指出了不同类型的聚氨酯改性环氧树脂的机理、改性效果及影响因素,并对其发展前景进行展望。  相似文献   

4.
火焰原子吸收分光光度法测定改性粘土催化剂中的铜   总被引:1,自引:1,他引:0  
以无机天然粘土或用金属离子交换处理粘土制备的改性粘土作为固体酸催化剂 ,因其具有选择性好、廉价、易再生及无环境污染等特点 ,正成为目前绿色化学研究的热点 ,特别是经离子交换制备的改性粘土应用于芳烃的选择性硝化反应的研究 ,已取得较大的进展。该改性固体酸催化剂中改性元素的含量常影响催化剂的性能 ,但对改性粘土催化剂中改性元素的含量的测定却未见报道。微量铜的测定常采用紫外可见分光光度法 [1] 和原子吸收分光光度法 [2 ]。本文对经铜元素改性的粘土催化剂进行处理 ,采用了火焰原子吸收分光光度法 ,直接测定了铜元素的含量[3…  相似文献   

5.
本文采用十六烷基三甲基溴化铵(HDTMA)对成都粘土进行改性,将改性粘土用于垃圾渗滤液处理,对处理过程的吸附热力学和动力学进行研究。研究表明,分别在303.15K、313.15K和333.15K下,粘土吸附渗滤液中氨氮和有机物的平衡时间为50min左右,改性后的粘土吸附效果比原土提高了大约2~3倍;改性粘土对氨氮的吸附既符合Langmuir等温吸附,也符合Freundlich等温模型,对有机物的吸附更符合Freundlich等温模型;此反应过程均属自发的放热过程,其吸附动力学数据符合准二级动力学方程和粒子内扩散方程。  相似文献   

6.
有机硅改性环氧树脂的新进展   总被引:2,自引:0,他引:2  
热固性环氧树脂材料具有良好的物理、化学等诸多优异性能,对于金属和非金属材料的表面都具有优异的粘接强度,可用于浇注、浸渍、层压、粘接剂、涂料等,用途十分广泛。由于环氧树脂材料存在脆性大,抗冲击性差、耐热性差等缺点,科研工作者对环氧树脂进行了大量的改性研究并取得了丰硕的成果。有机硅化合物改性环氧树脂在提高其热氧稳定性、韧性以及耐烧蚀性能等方面具有独特的优势,近年来,研究人员利用功能性有机硅化合物或聚合物在环氧树脂进行改性方面,开展了反应共聚改性、作为交联剂固化改性、与环氧树脂共混/交联改性、增容改性、互穿聚合物网络(IPN)、引入阻燃剂结构改性以及微纳米复合改性等方面的研究,取得了很多新的成果。本文旨在总结上述各种有机硅改性环氧树脂研究的新进展,并预测了有机硅改性环氧树脂材料的潜在应用和发展方向。  相似文献   

7.
用XRD、DSC 等手段研究了有机蒙脱土在环氧树脂中的插层与剥离行为,证明环氧树脂容易插层到粘土片层间,形成稳定的插层混合物,加入胺固化剂固化后,粘土被剥离而得到剥离型纳米复合材料,剥离程度与所采用的固化温度关系不大,主要取决于固化程度,全部剥离的时间与环氧树脂凝胶的时间接近.  相似文献   

8.
摘要:以累托土为基质,采用不同的方式引入La,制备了三种含La的SO4^2-改性锆交联粘土固体酸催化剂.采用XRD,DTA,TG等分析手段对催化剂进行表征,考察了La不同的引入方式对其热稳定性和催化活性的影响.实验结果表明,先用La交换累托土.再与Zr交联剂进行交联.制得的交联粘土的热稳定性显著提高.其DTA谱图上的羟基脱除吸热峰峰温较改性前提高了63℃.500℃焙烧后催化剂仍能保持较规整的层结构.该催化剂用于乙酸和正丁醇的酯化反应能使乙酸转化率达到97.65%.反复再生使用四次后,乙酸转化率仅下降3.83%.  相似文献   

9.
采用不同分散方法(机械搅拌、高速均质搅拌和球磨分散)制备环氧树脂粘土纳米复合材料,研究了分散方法对不同有机粘土解离结构和纳米复合材料力学性能的影响,并在此基础上探讨了粘土的解离机理.结果表明,普通机械搅拌只能使小粒径粘土或大粒径粘土团聚体的外部片层解离;施加一定的外力(如高速均质搅拌)促进粘土团聚体分散,有利于粘土片层的解离;利用剪切摩擦作用较强的球磨法分散粘土,不同处理剂改性粘土的内外片层都可以充分解离,而有机改性剂中酸性质子的催化作用对粘土片层解离的影响不大,只要粒径足够小,片层解离的驱动力(基体弹性力、反应性等)能够克服其所受阻力(片层引力、层外基体粘性阻力、层内粘性引力等),粘土内外各片层将会同时向外迁移而解离.纳米复合材料的力学性能大大改善,冲击强度和弯曲强度分别提高近50%和8%;  相似文献   

10.
环氧树脂水基化化学改性的研究   总被引:13,自引:0,他引:13  
用对氨基苯甲酸改性环氧树脂 ,使其成为具有亲水性的树脂。测定了改性树脂的溶解性 ,发现改性后树脂在有机溶剂中的溶解性能变差 ,但在碱性溶剂中溶解性增强。对改性树脂进行了红外光谱表征 ,并根据环氧基特征峰的吸收对环氧基转化率进行了定量分析。测定了改性产物的DSC曲线 ,发现随着反应物中对氨基苯甲酸比例的提高 ,改性产物的玻璃化转变温度升高。涂膜的性能测试表明 ,对氨基苯甲酸改性环氧树脂水基涂料的机械力学性能和耐化学试剂性能比溶剂型纯环氧树脂要优越。  相似文献   

11.
Tremolite,a kind of inorganic filler,was modified with a silane coupling agentγ-methacryloxypropyl trimethoxy silane (MPS) in ethanol/ammonia solution.The graft of MPS on tremolite was confirmed by X-ray photoelectron spectroscopy (XPS),IR and thermogramitric analysis (TGA) measurements.In addition,contact angle analysis showed that particle surface property was changed from hydrophilicity to hydrophobicity after the modification.Modified tremolite and pure tremolite were blended respectively with PA1010...  相似文献   

12.
Cellulose nanowhiskers (CNWs) were chemically modified with dodecenyl succinic anhydride to obtain hydrophobic CNWs called DCNWs. Surface modification was confirmed by infrared spectroscopy, transmission electron microscopy, and X-ray diffraction. The surface substitution degree determined by X-ray photoelectron spectroscopy was 0.30. Nanocomposites were prepared by incorporating different amounts of DCNWs pre-dispersed in a small amount of acetone into an epoxy matrix. Scanning electron microscope demonstrated that DCNWs dispersed well in the epoxy matrix. A strong interaction was proved between the DCNWs and epoxy matrix, as results of which the nanocomposites exhibited an obvious increase in T g by about 30 °C, simultaneous increases in tensile strength, Young’s modulus, and strain at break; and an improvement in the hydrothermal properties. Compared with the neat epoxy, the nanocomposite containing 3.5 wt% of DCNWs exhibited an increase in tensile strength by 82 %, Young’s modulus by 21 %, and a strain at break by 198 %.  相似文献   

13.
The aim of the present study was to investigate and compare the mechanical properties of untreated and chemically modified Borassus fiber–reinforced epoxy composites. Composites were prepared by the hand lay-up process by reinforcing Borassus fibers with epoxy matrix. To improve the fiber-matrix adhesion properties, alkali (NaOH) and alkali combined with silane (3-aminopropyltriethoxysilane) treatment of the fiber surface was carried out. Examinations through Fourier transform-infrared spectroscopy and scanning electron microscopy (SEM) were conducted to investigate the structural and physical properties of the Borassus fibers. Tensile properties such as modulus and strength of the composites made with chemically modified and untreated Borassus fibers were studied using a universal testing machine. Based on the experimental results, it was found that the tensile properties of the Borassus-reinforced epoxy composites were significantly improved as compared with the neat epoxy. It was also found that the fiber treated with a combination of alkali and silane exhibited superior mechanical properties to alkali-treated and untreated fiber composites. The nature of the fiber/matrix interface was examined through SEM of cryo-fractured samples. Chemical resistance of composites was also found to be improved with chemically modified fiber composites.  相似文献   

14.
This research works with the optimal design of marble dust-filled polymer composites using a multi-criteria decision-making (MCDM) technique. Polylactic acid (PLA) and recycled polyethylene terephthalate (rPET)-based composites containing 0, 5, 10, and 20 wt% of marble dust were developed and evaluated for various physicomechanical and wear properties. The results showed that the incorporation of marble dust improved the modulus and hardness of both PLA and rPET. Moreover, a marginal improvement in flexural strength was noted while the tensile and impact strength of the matrices were deteriorating due to marble dust addition. The outcomes of wear analysis demonstrated an improvement in wear resistance up until 10 wt% filler reinforcement, after which the incidence of dust particles peeling off from the matrix was observed, thereby reducing its efficiency. The best tensile modulus of 3.23 GPa, flexural modulus of 4.39 GPa, and hardness of 83.95 Shore D were obtained for 20 wt% marble dust-filled PLA composites. The lowest density of 1.24 g/cc and the highest tensile strength of 57.94 MPa were recorded for neat PLA, while the highest impact strength of 30.94 kJ/m2 was recorded for neat rPET. The lowest wear of 0.01 g was obtained for the rPET containing 5 wt% marble dust content. The experimental results revealed that for the examined criteria, the order of composite preference is not the same. Therefore, the optimal composite was identified by adopting a preference selection index-based MCDM technique. The findings demonstrated that the 10 wt% marble dust-filled PLA composite appears to be the best solution with favorable physical, mechanical, and wear properties.  相似文献   

15.
Hyperbranched polymer with amino end groups (HBPA) and core-shell particle (CSP, which is fabricated through grafting HBPA onto the surface of silica nanoparticle) were incorporated into an epoxy matrix to fabricate a high performance composite. The effects of CSPs contents on the mechanical properties of composites were studied, discussing the results from tensile, flexural, and impact tests. The composites revealed noticeable improvements in tensile strength, elongation, flexural strength and impact strength in comparison to the neat epoxy or epoxy/HBPA system. The glass transition temperature (Tg) was also improved by the addition of CSP. Field emission scanning electron micrograph (FESEM) indicated that HBPA could favorable improve the compatibility between CSP and epoxy matrix. And the toughening mechanisms were the synergic effect of shearing deformation, phase separation, crack propagation, crack deflection, and crack pinning.  相似文献   

16.
含磷有机硅杂化环氧树脂固化体系性能研究   总被引:3,自引:0,他引:3  
通过磷酸与γ-环氧丙氧基三甲氧基硅烷反应得到含磷有机硅氧烷,并加入到环氧树脂/4,4'-二氨基二苯基甲烷体系中混合,通过溶胶-凝胶的方法制备了含磷有机硅杂化环氧树脂固化物.对固化体系进行了玻璃化转变温度、热失重、阻燃、拉伸强度、冲击强度测试分析.结果表明,该固化体系的阻燃性得到提高,极限氧指数在25.8~29.3,玻璃化转变温度得到提高,在161~179℃;虽然初始分解温度比纯环氧树脂固化物低,但800℃残炭率可以达到26.5%,提高了36%;拉伸强度得到提高,在71~94 MPa,冲击强度可以达到14.36 kJ/m2,提高了14%.该固化体系具有较好的阻燃性能和热性能,同时具有较好的力学性能.  相似文献   

17.
Multiwalled carbon nanotubes (MWNTs) were functionalized in a two-step acid-epoxy functionalization process, in which suitable surface condition and reactivity compatible with the DGEBA epoxy resin was introduced. The use of (4-dimethylamino)-pyridine as an initiator for DGEBA homopolymerization produced covalent bonds between the functionalized MWNTs and the epoxy matrix through chain transfer reactions involving the secondary hydroxyls. This process yielded uniform MWNTs-stiff epoxy composites with significant enhancement in flexural strength without sacrificing the elastic modulus when compared to the neat resin.  相似文献   

18.
李晓锋  于中振 《高分子科学》2017,35(11):1381-1390
To enhance the mechanical properties of three-dimensional graphene aerogels with aramid fibers,graphene/organic fiber aerogels are prepared by chemical reduction of graphene oxide in the presence of organic fibers of poly(p-phenylene terephthalamide)(PPTA) and followed by freeze-drying. Thermal annealing of the composite aerogels at 1300 ° C is adopted not only to restore the conductivity of the reduced graphene oxide component but also to convert the insulating PPTA organic fibers to conductive carbon fibers by the carbonization. The resultant graphene/carbon fiber aerogels(GCFAs) exhibit high electrical conductivities and enhanced compressive properties, which are highly efficient in improving both mechanical and electrical performances of epoxy composites. Compared to those of neat epoxy, the compressive modulus, compressive strength and energy absorption of the electrically conductive GCFA/epoxy composite are significantly increased by 60%, 59% and 131%, respectively.  相似文献   

19.
CaCO3/PEEK复合体系的力学行为和热行为研究   总被引:7,自引:0,他引:7  
以聚醚醚酮和碳酸钙复合体系为研究对象,考察了偶联剂和填料添加量对复合材料力学行为和热行为的影响.发现磺化聚醚醚酮作为偶联剂能有效地改善材料的力学性能,提高基体树脂的玻璃化转变温度,降低基体树脂的熔点,有助于改善聚醚醚酮的加工条件  相似文献   

20.
The mechanical properties of carbon fiber composites depend on the interfacial strength between fiber and epoxy matrix. Different poly (amido amine) (PAMAM) dendrimers were grafted onto carbon fiber to improve the interfacial strength of the resulting composites. Functional groups on the carbon fiber surface were examined by X-ray photoelectron spectroscopy. The surface morphology of the resulting materials was characterized by scanning electron microscopy and atomic force microscope. The characterization results revealed that PAMAM dendrimers were chemically grafted onto the surface of carbon fiber. More importantly, the mechanical properties of the resulting composites were enhanced owing to the presence of sufficient functional groups on the carbon fiber surface. In addition, after PAMAM containing chair conformations were grafted, the interlaminar shear strength had the highest increase of 53.13%, higher than that of the fiber grafted with PAMAM containing terminated linear amine. This work provides an alternative approach to enhance the mechanical properties of fiber composites by controlling the interface between fiber and epoxy matrix.  相似文献   

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