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水性多彩涂料彩粒渗色性能研究 被引量:5
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作者 朱若君 陈明凤 +1 位作者 陈燕 孙慧 《涂料工业》 CAS CSCD 北大核心 2015年第4期13-17,共5页
利用人工合成锂皂石层状结构中的可交换阳离子与含大量羟基的羟乙基纤维素(HEC)之间的凝胶化反应制备水性多彩涂料。考察了乳液类型和掺量、羟乙基纤维素(HEC)用量、高浓度保护胶用量、助剂和水性色浆种类等对彩粒渗色性能的影响,优化... 利用人工合成锂皂石层状结构中的可交换阳离子与含大量羟基的羟乙基纤维素(HEC)之间的凝胶化反应制备水性多彩涂料。考察了乳液类型和掺量、羟乙基纤维素(HEC)用量、高浓度保护胶用量、助剂和水性色浆种类等对彩粒渗色性能的影响,优化了水性多彩涂料的制备工艺,制备出的水性多彩涂料抗渗色性能优异、彩粒强度高、体系稳定性好。 展开更多
关键词 多彩涂料 锂皂石 HEC 渗色性 稳定
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质感型水包水多彩涂料的彩粒稳定性研究 被引量:7
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作者 彭红 毛伟杰 《涂料工业》 CAS CSCD 北大核心 2019年第9期14-20,25,共8页
选用亲水性异氰酸酯作为固化剂,硅酸镁锂作为保护胶,以分散体型羟基丙烯酸树脂和聚丙烯酸弹性乳液复配得到分散相,利用硅酸镁锂层间可交换的阳离子与羟乙基纤维素中的羟基之间的"凝胶化"反应,同时辅以羟基丙烯酸树脂与亲水性... 选用亲水性异氰酸酯作为固化剂,硅酸镁锂作为保护胶,以分散体型羟基丙烯酸树脂和聚丙烯酸弹性乳液复配得到分散相,利用硅酸镁锂层间可交换的阳离子与羟乙基纤维素中的羟基之间的"凝胶化"反应,同时辅以羟基丙烯酸树脂与亲水性固化剂的交联作用来制备综合性能优异的质感型水包水多彩涂料。实验结果表明:当乳液复配比在1∶4且掺量为30%,固化剂的—NCO与羟基树脂的—OH物质的量之比为1∶2,高浓度保护胶溶液掺量为4%时,所制备的彩粒具有强度适中、色彩饱满度高、抗渗色能力较强,施工喷涂顺畅、无流挂,体系贮存稳定等特点,解决了水包水多彩涂料在生产和施工过程中常常出现的彩粒渗色、彩粒易破碎、喷涂均匀性欠佳等问题。 展开更多
关键词 水包水多彩涂料 彩粒 成粒效果 渗色性 稳定
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分散介质对水包水多彩涂料稳定性的影响研究 被引量:4
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作者 彭红 毛伟杰 《新型建筑材料》 北大核心 2020年第1期134-137,149,共5页
研究了分散介质中保护胶溶液浓度、分散相与分散介质的质量比以及分散介质的放置时间等因素对水包水多彩涂料的彩粒成粒效果、渗色情况及施工性能的影响。试验结果表明:当分散介质中保护胶溶液浓度为6%、分散相与分散介质的质量比为1.0... 研究了分散介质中保护胶溶液浓度、分散相与分散介质的质量比以及分散介质的放置时间等因素对水包水多彩涂料的彩粒成粒效果、渗色情况及施工性能的影响。试验结果表明:当分散介质中保护胶溶液浓度为6%、分散相与分散介质的质量比为1.0∶(0.7~1.3)时,制备的分散介质综合性能优异;同时,分散介质的放置时间对涂料的贮存稳定性影响不大,但需要注意的是,如果分散介质放置时间较长,使用前需重新分散均匀。 展开更多
关键词 水包水多彩涂料 分散介质 稳定 成粒效果 渗色性
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Synthesis and Characterization of a Hydroxyethyl Derivative of Chitosan and Evaluation of Its Biosafety 被引量:5
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作者 SHAO Kai HAN Baoqin +3 位作者 GAO Jinning SONG Fulai YANG Yan LIU Wanshun 《Journal of Ocean University of China》 SCIE CAS 2015年第4期703-709,共7页
Hydroxyethyl chitosan (HE-chitosan) is a water-soluble derivative of chitosan with many apparent biological properties. For example, it is non-toxic and rapidly biodegradable. Moreover, HE-chitosan has advantages in... Hydroxyethyl chitosan (HE-chitosan) is a water-soluble derivative of chitosan with many apparent biological properties. For example, it is non-toxic and rapidly biodegradable. Moreover, HE-chitosan has advantages in water-solubility, moisture retention and gelling property due to its hydroxyethyl group. However, the biocompatibility and biodegradability of this multifimctional de- rivative have rarely been documented although they are critical for its application in biomedical and clinical treatments. The purpose of this work was to evaluate the biosafety of HE-chitosan, and draw important clues for its diverse applications. HE-chitosan was synthesized and characterized its chemical structure with FTIR. Its molecular weight (Mw) was determined by gel permeation chro- matography (GPC), and its deacetylation degree (DD) was investigated through potentiometric analysis. The cytotoxicity of HE-chitosan on mouse fibroblast cell L929 was tested. The biocompatibility and biodegradability of HE-chitosan in rat and rabbit were evaluated. The FTIR results indicated that the hydroxyethyl groups were linked to C6 of chitosan. The GPC analysis confirmed that its Mw was about 90.01 kDa. It was also demonstrated that HE-chitosan had excellent biocompatibility and biodegradability in vivo and had no cytotoxicity on L929. These findings indicated that HE-chitosan can potentially be applied as a biomaterial in tissue engineering, drug delivery, and other biomedical fields. 展开更多
关键词 hydroxyethyl chitosan biomaterial CYTOTOXICITY BIOCOMPATIBILITY BIODEGRADABILITY
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