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101.
Steel microfiber reinforcement was previously found to be successful in mitigating alkali silica reaction in concrete, an expansive phenomenon. The use of steel microfibers to mitigate rebar corrosion, another expansive reaction, was investigated. Mortar specimens with and without steel microfiber reinforcement were exposed to a corrosive environment. All specimens were prepared with water/cement ratios of both 0.40 and 0.55, cured for 28 days, and then submerged in aerated 3.5% NaCl solution. The corrosion behavior of the specimens was monitored via electrochemical measurements. Three types of electrochemical tests were performed: corrosion potential measurements, potentiodynamic polarization, and electrochemical impedance spectroscopy. Chloride concentration measurements and microscopic analysis were performed as well. The polarization curves, Tafel, and polarization resistance measurements indicate that the steel rebar in the microfiber-reinforced mortars are more resistant to corrosion than the rebar in the control mortars, despite higher chloride concentrations. Furthermore, the steel microfiber-reinforced cement based materials have a lower electrolytic resistance. This is not indicative of a higher corrosion rate, which would be the case if it had been observed in standard mortar specimens. 相似文献
102.
论述了金属的电化学腐蚀和外加电流阴极保护原理。说明对以海水为介质的冷却、冷凝设备,采用外加电流阴极保护是防止设备腐蚀的有效方法。举例说明了应用效果。 相似文献
103.
104.
研究了以苯乙烯为核,丙烯酸酯类为壳的核壳乳液,采用丙烯酸为功能性单体,成膜后羧基为极性基团分布在涂膜表面达到亲水目的。讨论了功能单体丙烯酸(AA)在乳胶粒表面的分布情况及其加量对涂膜亲水性的影响,通过电导滴定发现当AA的加入量为3%时,水相中游离的丙烯酸含量为5.57%,聚合物表面的羧基含量为36.11%,涂膜的亲水性达到最佳,水接触角为51.1°。本文还讨论了核壳法和核壳翻转法对乳胶粒表面羧基分布及涂膜亲水性能的影响,两者的电导滴定曲线形状一致,由两个当量点可以计算出水相中游离的丙烯酸含量为1.47%,而乳胶粒表面羧基分布的含量为43.59%,可见,用核壳翻转法合成的乳液,乳胶粒表面羧基分布含量比普通聚合方法合成的乳胶粒表面羧基分布含量高,涂膜亲水性进一步提高,水接触角降低为44.5°。 相似文献
105.
采用种子乳液聚合方法制备了阴、阳离子型氟改性硅丙乳液,用红外光谱对聚合物进行了表征,考察了聚合温度、氟改性单体和种子乳液的用量、乳化剂用量和pH值等因素对转化率和聚合物膜与水之间接触角的影响。结果表明,该聚合物中含有聚硅氧烷链段和CF2基团;聚合温度对转化率的影响较显著;在阳离子乳化体系中,当聚硅氧烷种子乳液、含氟丙烯酸酯单体和乳化剂的用量分别为10%、10%和1.1%时,转化率可以达到90%左右,接触角达到104°以上;随着体系pH值的逐渐增大,阳离子型氟改性硅丙乳液的Zeta电位明显降低,但阴离子型乳液的Zeta电位变化较小。 相似文献
106.
107.
酸化水解-活性污泥-生物接触氧化工艺处理有机污水 总被引:2,自引:0,他引:2
介绍了采用酸化水解——活性污泥——生物接触氧化工艺处理含有山梨醇、甘露醇、蔗糖、醋酸乙烯、甲基纤维素的有机污水。该工艺具有出水水质稳定,操作简单、管理方便,能耗低等优点,是处理该类有机污水的有效方法。 相似文献
108.
Joon‐Seop Kim Min‐Chul Hong Yeon Hwa Nah Yeonhee Lee Seunghee Han Hyun Eui Lim 《应用聚合物科学杂志》2002,83(11):2500-2504
The wetting properties of polystyrene‐based ionomers treated with plasma source ion implantation (PSII) were investigated by the measurement of water contact angles. When sulfonated ionomers were aged for a few days, the hydrophobic recovery for the ionomers became much slower than that for the nonionic polymers. However, when the samples were aged over 20 days, the water contact angle of the ionomers converged with that of the nonionic polymer. Thus, it was concluded that the ionic interaction between the ionic groups and the presence of ionic groups together resulted in the slow hydrophobic recovery and that the aging effect was significant for the ionomers. For the methacrylate ionomer of low ion content, on the other hand, it was found that the PSII treatment produced only a small change in hydrophobic recovery behavior. Thus, it was suggested that the low ionic content coupled with the small size of the ionic unit might cause changes only of a very insignificant degree in hydrophobic recovery behavior. © 2002 Wiley Periodicals, Inc. J Appl Polym Sci 83: 2500–2504, 2002 相似文献
109.
In the field of biomaterials and biomedical devices, surface activation has been focused on creating functional groups capable of preferential adsorption of biologically active species (proteins, enzymes, cells, drugs, etc.). In this way an interface can be created between the synthetic material and the biological medium, with the aim of increasing the compatibility of the implant with the human organism. In our experiments a dielectric barrier discharge (DBD), in helium at atmospheric pressure, was used as the source of energy capable of creating active centers that render the functionalized surface favorable to immobilization of biological molecules. Retention of immunoglobulin (IgG) and heparin biomolecules on polyamide‐6 (PA‐6) surfaces after treatment by the DBD was analyzed by atomic force microscopy, adhesion evaluation, and measurement of the contact angle titration in order to assess this incorporation on the treated surfaces. The marked adsorption of the biomolecules on the active sites created by DBD on the exposed surfaces also was related to a complex set of processes, such as enhanced roughness, increased surface wettability, and modified distribution of cationic and anionic groups on the treated surfaces. All these factors could promote interfacial interactions between the specific groups of the biomolecules existing in the biological medium and the type of cationic and/or anionic groups present on the surface. The efficiency of the DBD treatment showed that the DBD technique is useful for preactivation of the polymer surface for immobilization of other biologically active species (such as drugs and enzymes). © 2003 Wiley Periodicals, Inc. J Appl Polym Sci 90: 1985–1990, 2003 相似文献
110.