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1.
环境升温过程对常温固化环氧树脂热力学性能的影响   总被引:2,自引:0,他引:2  
目的提高常温固化环氧树脂体系的高温使用性能。方法采用常温固化剂T31、中温固化剂IPDA以及高温固化剂DDM作为混合固化剂,对E-44型和AG-80型混合环氧树脂体系进行常温固化反应,并分析环境升温过程对固化物热力学性能的影响。通过DMA分析、热变形测量、固化度测试,分别评价室温固化环氧树脂在环境升温过程前后的玻璃化转变温度、热变形量及体系内部的固化反应程度变化,并通过吸水率测试和弯曲强度测试对玻璃纤维布增强常温固化环氧树脂基复合材料的耐湿热性能以及高温条件下的力学性能进行分析。结果环氧树脂常温固化物的tg为85.21℃,经1.5℃/min的平均升温速率加热至90℃之后,该环境升温过程使固化物的固化度增大至92%以上,tg增长为132.06℃的同时热变形温度增大。其复合材料耐湿热性能提高,且100℃时弯曲强度的保持率为65%,对于加热至120℃的环境升温过程,固化物的固化度接近96%,tg增长为144.45℃的同时热变形温度进一步提高,其复合材料耐湿热性能改善程度更加明显,且130℃时弯曲强度保持率仍接近60%。结论常温、中温、高温混合固化剂的合理复配有助于环氧树脂体系在环境升温变化的诱导条件下发生梯度式固化反应,使体系内部的交联固化程度迅速升至较高水平,可以有效提高其玻璃化转变温度,显著改善常温固化环氧树脂体系在高温条件下的热力学性能。  相似文献   
2.
从原料的危害,有机物的挥发量,人员的个人防护等方面对脲醛树脂胶粘剂的职业安全问题进行了探讨,并指出了其安全环保的发展方向。  相似文献   
3.
In this article, the technical feasibility of the use of activated carbon, synthetic resins, and various low-cost natural adsorbents for the removal of phenol and its derivatives from contaminated water has been reviewed. Instead of using commercial activated carbon and synthetic resins, researchers have worked on inexpensive materials such as coal fly ash, sludge, biomass, zeolites, and other adsorbents, which have high adsorption capacity and are locally available. The comparison of their removal performance with that of activated carbon and synthetic resins is presented in this study. From our survey of about 100 papers, low-cost adsorbents have demonstrated outstanding removal capabilities for phenol and its derivatives compared to activated carbons. Adsorbents that stand out for high adsorption capacities are coal-reject, residual coal treated with H3PO4, dried activated sludge, red mud, and cetyltrimethylammonium bromide-modified montmorillonite. Of these synthetic resins, HiSiv 1000 and IRA-420 display high adsorption capacity of phenol and XAD-4 has good adsorption capability for 2-nitrophenol. These polymeric adsorbents are suitable for industrial effluents containing phenol and its derivatives as mentioned previously. It should be noted that the adsorption capacities of the adsorbents presented here vary significantly depending on the characteristics of the individual adsorbent, the extent of chemical modifications, and the concentrations of solutes.  相似文献   
4.
聚环氧琥珀酸萃取锰泥残渣中铬的研究   总被引:1,自引:0,他引:1  
聚环氧琥珀酸(PESA)是一种具有无磷及非氮结构、环境友好型水溶性聚合物,且具有螯合多价金属阳离子的性能和可生物降解性的特征,选取其作为锰泥残渣中铬的螯合萃取剂,研究了不同pH、螯合萃取剂剂量、搅拌时间下PESA对铬的萃取率。结果表明:(1)最佳萃取条件为pH=4、PESA剂量30mg/g、搅拌时间60min;在最佳萃取条件下,铬的萃取率可达95%。(2)从结构上看,PESA是由醚基和羧基基团组成的高分子聚合物,羧基基团是与金属离子作用的主要官能团,它对Ca2+、Mg2+、Zn2+、Cr(Ⅲ)、Cr(Ⅵ)和Pb2+等有较强的螯合能力;从溶液的配位角度看,PESA与金属有较强的结合能力。因此,PESA对锰泥残渣中的铬有萃取作用。  相似文献   
5.
Biocomposites were made by a novel high volume processing technique named biocomposite sheet molding compound panel (BCSMCP) manufacturing process. This process design was inspired by the commercial glass fiber–polyester resin composite fabrication method called sheet molding compounding (SMC). This process yields continuous production of biocomposites on a large scale, and thus can be easily adopted in industries. A unique fiber dispersion method, which enabled uniform distribution of natural fibers, was used in this process. Consistency of the process was tested by evaluating the repeatability of the resultant materials mechanical properties. The low cost biocomposites produced as a result of the processing will be used for various panel applications such as housing and transportation. The molded samples were tested for various mechanical and thermal properties, in accordance with ASTM procedures. The biocomposites were made with various natural fibers including, big blue stem grass, jute, and industrial hemp. By combining different natural fibers in varying mass fractions, hybrid biocomposites were made using this process. Grass fiber reinforced polyester biocomposites processed by the SMC line showed very promising results.  相似文献   
6.
带希夫碱和酰肼基团的壳聚糖螯合树脂的合成及其吸附性能   总被引:21,自引:1,他引:21  
刘芳  董世华 《环境化学》1996,15(3):207-213
本文利用壳聚糖C2位上活泼氨基与水杨醛进行大分子反应,再以环硫氯丙烷作交联剂,合成了带有邻羟基希夫碱基团的交联型壳聚糖螯合树脂;利用带有游离氨基的交联壳聚糖与丙烯腈进行大分子反应,合成了带有氰基的功能聚合物,再由CT-CN与水合肼进一步反应,制得了带有酰肼基轩物壳聚糖螯合树脂。  相似文献   
7.
SCOPE: The detection and investigation of metal ions bound in strong complexes in natural waters is a difficult task, due to low concentration of the metal ions themselves, and also of the strong ligands, which, moreover, are often not of a well-defined composition. Here, a method is proposed for the investigation of the speciation of metal ions in natural waters. OBJECTIVE AND METHOD: It is based on the sorption of metal ions on strongly sorbing ion exchange resins, i.e. complexing resins. For this reason the method is called Resin Titration. It has been shown in previous investigations that the concentration of metal ion totally sorbed by a particular resin, and its reaction coefficient in the solution phase in the presence of the resin, can be determined from the sorption data using a simple relationship. Here, a data treatment (the Ruzic linearization method) is proposed for also determining the concentration of the ligands responsible for the complex in equilibrium with the resin. RESULTS: The method was applied to data obtained by Resin Titration of a freshwater and a seawater. Copper(II) and aluminium(III) were considered, using Chelex 100 as a titrant, due to its strong sorbing properties towards these metal ions. The results were: the total metal concentration in equilibrium with the resin, the side reaction coefficients, and the concentration of ligands. In all these cases the ligands forming very strong complexes were found to be at concentration lower than that of the metals. CONCLUSION: The Ruzic linearization method allows the determination of the concentration of the ligands forming very strong complexes in equilibrium with Chelex 100. The reaction coefficient was better determined by the calculation method previously proposed for RT. The ligands responsible for the strong complexes were found to be at low concentration, often lower than that of the metal ions considered. The metal in the original sample is partly bound to these ligands, since the complexes are very strong. Only a part of the metal is linked to weaker ligands, or free.  相似文献   
8.
废弃印制线路板中的环氧树脂回收处置技术   总被引:2,自引:0,他引:2  
对废印制线路板中的环氧树脂的成分及性质进行了分析,并对几种环氧树脂回收的处置方法进行了介绍和比较,提出了环氧树脂回收处置技术选择的建议。  相似文献   
9.
根据材料性能的要求,选择环氧树脂为粘合剂,低分子聚酰胺为固化剂,石粉,石英砂,玻璃纤维3种物质为填料,根据优化的配方制成一种高分子复合材料,该材料的硬度约为240HB左右,冲击强度约为30kg·cm/cm^2,均接近于某些金属材料的指标,易成型,并且成本较低,可以用来代替纺织厂有梭织机的某些受撞击比较严重的金属部件,具有广泛的应用价值。  相似文献   
10.
目的研究紫外光固化有机硅改性环氧树脂的固化行为和性能。方法通过介电分析(DEA)研究光引发剂、热引发剂及有机硅含量对紫外光固化脂环族环氧树脂反应过程的影响,利用热重(TG)、差示扫描热(DSC)和显微硬度仪对有机硅树脂改性环氧树脂性能进行分析。结果发现光引发剂与热引发剂对固化效率可起到协同互补的作用,增加光引发剂和热引发剂的浓度,可缩短引发时间,加快固化速率,提高固化效率。与纯环氧树脂相比,有机硅改性环氧树脂的固化效率和初始分解温度都有所下降,但高温阶段降解速率明显降低,500℃的残炭率也得到提高。当加入质量分数为10%的有机硅时,固化物表现出较好的耐热性能,树脂维氏硬度可达31.75HV。结论紫外光可以很好地固化有机硅改性环氧树脂。  相似文献   
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