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1.
Equilibrium swelling and rheological tests were adopted to systematically investigate the effects of softener type and dosage on the crosslink densities. The results turned out that the chemical crosslink density could be distinguished from the physical crosslink density by comparing the results of equilibrium swelling and rheological tests. The liquid butadiene (LB) as a softener leads to the greatest reduction in crosslink density, followed by polyethylene wax (PW) and paraffinic oil (PO). The tensile strength decreases with increasing PO content while shows peak values with increase of LB and PW contents. The dependencies of chemical crosslink density on the aging time under 150°C are quite different for the three softeners, which can be expected from the double crosslinking networks consisting of small softener and large main crosslinking networks. Further investigation has been performed to correlate the tensile strength with chemical crosslink density of ethylene propylene diene monomer elastomer vulcanizates. Three different linear relationships can be obtained for the softeners independent of the aging time. It can now be expected from this study that the role of some new softeners in rubber compounds is not only confined to plasticization but also forms crosslinking networks in the peroxide-cured rubbers.  相似文献   
2.
Hydrogels based on chitosan are very versatile materials which can be used for tissue engineering as well as in controlled drug delivery systems. One of the methods for obtaining a chitosan-based hydrogel is crosslinking by applying different components. The objective of the present study was to obtain a series of new crosslinked chitosan-based films by means of solvent casting method. Squaric acid—3,4-dihydroxy-3-cyclobutene-1,2-dione—was used as a safe crosslinking agent. The effect of the squaric acid on the structural, mechanical, thermal, and swelling properties of the formed films was determined. It was established that the addition of the squaric acid significantly improved Young’s modulus, tensile strength, and thermal stability of the obtained materials. Moreover, it should be stressed that the samples consisting of chitosan and squaric acid were characterized by a higher swelling than pure chitosan. The detailed characterization proved that squaric acid could be used as a new effective crosslinking agent.  相似文献   
3.
Blends of EPDM and chlorobutyl (CIIR) rubbers are used in nuclear plants where they have to withstand the combined effect of radiation and hydrocarbon aging. To improve their mechanical properties as well as hydrocarbon and gamma radiation resistance, the blends are reinforced with 0.5, 1, 1.5, and 2 phr of MWCNT. The increase in mechanical properties was highest for 1.5 phr MWCNT with 69% increase in tensile strength. The improvement in properties was correlated to MWCNT dispersion and filler–polymer interactions, which were confirmed by TEM and FTIR analysis. Hydrocarbon transport coefficients decreased on addition of MWCNT. The nanocomposites were exposed to 0.5, 1, and 2 MGy cumulative doses of gamma radiation. Depending on the radiation dose, crosslinking and/or chain scission occurred causes changes in physical properties. MWCNT reinforcement reduced the magnitude of changes in mechanical and transport properties after γ-irradiation. ESR and FTIR spectra provided qualitative information on free radical formation and chemical changes due to γ-rays exposure. To further enhance the properties, hybrid nanocomposites with 1.5 phr MWCNT and varying nanoclay contents (0.5, 1, 1.5, 2, and 5 phr) were prepared. Due to synergism between MWCNT and nanoclay, the hybrid composites had superior properties with hybrid containing 5 phr nanoclay giving 98% increase in tensile strength.  相似文献   
4.
Hydrogels, nanogels and nanocomposites show increasing potential for application in drug delivery systems due to their good chemical and physical properties. Therefore, we were encouraged to combine them to produce a new compound with unique properties for a long‐term drug release system. In this regard, the design and application of a nanocomposite hydrogel containing entrapped nanogel for drug delivery are demonstrated. To this aim, we first prepared an iron oxide nanocomposite nanogel based on poly(N‐isopropylacrylamide)‐co‐((2‐dimethylaminoethyl) methacrylate) (PNIPAM‐co‐PDMA) grafted onto sodium alginate (NaAlg) as a biocompatible polymer and iron oxide nanoparticles (ION) as nanometric base (PND/ION‐NG). This was then added into a solution of PDMA grafted onto NaAlg. Through dropwise addition of mixed aqueous solution of iron salts into the prepared polymeric solution, a novel hydrogel nanocomposite with excellent pH, thermal and magnetic responsivity was fabricated. The synthesized samples were fully characterized using Fourier transform infrared spectroscopy, thermogravimetric analysis, scanning electron microscopy with energy‐dispersive X‐ray analysis, vibrating sample magnetometry and atomic force microscopy. A mechanism for the formation of PNIPAM‐co‐PDMA/NaAlg‐ION nanogel–PDMA/NaAlg‐ION hydrogel and PND/ION nanogel is suggested. Swelling capacity was measured at various temperatures (25 to 45 °C), pH values (from 2 to 11) and magnetic field and under load (0.3 psi) and the dependence of swelling properties of the nanogel–hydrogel nanocomposite on these factors was well demonstrated. The release rate of doxorubicin hydrochloride (DOX) as an anticancer drug was studied at different pH values and temperatures in the presence and absence of a magnetic field. The results showed that these factors have a high impact on drug release from this nanocomposite. The result showed that DOX release could be sustained for up to 12.5 days from these nanocomposite hydrogels, significantly longer than that achievable using the constituent hydrogel or nanogel alone (<1 day). The results indicated that the nanogel–hydrogel nanocomposite can serve as a novel nanocarrier for anticancer drug delivery. © 2019 Society of Chemical Industry  相似文献   
5.
压裂是油层改造、新井投产、老井稳产、单井产能提高的重要手段,然而压裂增产的同时,也会不可避免地给油层带来较为严重的伤害,导致压裂无效或减产,不能达到预期的增产效果,为此试验应用了压裂后污染处理技术。该技术由HY-25、HY-26、HY-27三种成分组成,可有效缩短排液周期,改善破胶液返排效果,对支撑剂质量不产生明显影响。现场实施后效果非常好,产液量增加,含水率大幅度下降。低渗透油田压裂后污染处理技术针对性强,综合性强,采用多段塞配合的新工艺,施工工艺简单,成功率高,低伤害,低成本,施工安全,处理效果显著。  相似文献   
6.
MD膜驱剂的粘土稳定性研究Ⅰ.静态试验   总被引:1,自引:0,他引:1  
粘土的膨胀和分散是引起地层伤害的两个重要因素。通过测定Zeta电位、XRD、悬浮液透光率、FT-IR考察了MD膜驱剂(MDFFA)对粘土稳定性的作用。结果表明,MDFFA的浓度低于0.3 mmol/g(以蒙脱土质量计)时,蒙脱土悬浮液Zeta电位的提高是由于膜驱剂分子的吸附改变了蒙脱土的层电荷;高于此浓度时,Zeta电位进一步提高是由于双电层的压缩。随着MDFFA浓度的增大,蒙脱土的完全膨胀层向部分膨胀层转化,并且经水冲洗、浸泡后,其XRD谱峰位置变化不大。较高浓度的MDFFA,能有效地抑制蒙脱土的分散,且不会形成对地层有害的絮凝体。MDFFA使蒙脱土层间水的含量明显降低。  相似文献   
7.
由丙烯酸(AA)、α-甲基丙烯酸(MAA)和丙烯酰胺(AM)合成了具有很好DH敏感性和一定温度敏感性的智能水凝胶,考察了合成温度、丙烯酰胺、交联剂和引发剂用量对制备的水凝胶溶胀性能的影响。结果表明,在60℃下,单体从和MAA用量分别为100mmol和75mmol时,单体AM、交联剂和引发剂用量分别为反应物总质量的32.8%、0.2%和0.4%时,制备的水凝胶溶胀性能最好。考察了介质的离子浓度、pH值和温度对水凝胶溶胀比的影响,结果表明,离子浓度越大,水凝胶的溶胀比越小;水凝胶具有一定的DH可逆性。  相似文献   
8.
9.
膨胀岩工程特性试验研究   总被引:5,自引:0,他引:5  
为研究南水北调中线工程膨胀岩的工程特性,选取新乡潞王坟段的代表性岩层——强风化黏土岩和泥灰岩的原状样及扰动样,进行了物理性质试验、击实试验、力学性质试验以及膨胀特性试验。试验成果表明:对扰动样的标准击实基本上很难达到天然状态下的干密度状态,土体的结构性在击实过程中不能得到较好的恢复;初始含水率越小,吸湿能力越大,其强度降低程度越大,饱和强度参数越小;含水率低的试样,其破坏强度大,但破坏应变小;相同的压实度下,含水率越低试样的软化现象越明显;相同压实度的土样,含水率越大,其初始切线模量越小;压实度在90%~98%,压实度越大,膨胀力与膨胀率越大;随着压实度超过98%,膨胀率与压实度关系曲线存在一峰值转折点,而且此峰值点出现在压实度为98%~100%。压力与膨胀率关系曲线分两直线段:一陡降段和一平缓段,各曲线之间近似平行,曲线截距为无荷膨胀率数值。该成果为南水北调中线工程膨胀岩渠坡段的设计施工提供了科学依据。  相似文献   
10.
Micrometer‐sized, monodisperse, magnetic composite particles were prepared by heating micrometer‐sized, monodisperse, hollow polystyrene/polydivinylbenzene composite polymer particles at 200°C for 4 h (particles had been dipped in pentacarbonyliron) and then washed in 12 N HCl and water. The hollow polymer particles were produced by seeded polymerization by the dynamic swelling method that was proposed by authors. The magnetic composite particles contained Fe3O4, the content of which was 49% based on total weight, and were attracted easily in water by a 1650 G magnet. © 2003 Wiley Periodicals, Inc. J Appl Polym Sci 88: 428–433, 2003  相似文献   
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