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作 者:孙振平[1] 蒋正武[1] 王建东[1] 张冠伦[1] 何伟卿 谢小江
机构地区:[1]同济大学先进土木工程材料教育部重点实验室,上海200092 [2]上虞联合化剂厂,浙江上虞312352
出 处:《建筑材料学报》2008年第5期585-590,共6页Journal of Building Materials
基 金:上海市青年科技启明星计划资助项目(04qmx1428);上海市科委重点资助项目(0721100-4)
摘 要:讨论了聚羧酸系减水剂(PC)的性能特点和应用趋势.试验研究了PC与其他品种减水剂(包括木质素磺酸盐减水剂(LS)、萘系高效减水剂(NSF)、密胺系高效减水剂(MSF)、羰基焦醛高效减水剂(SAF)和氨基磺酸盐系高效减水剂(ASF))之间的复配性能.结果表明:仅从溶液的互溶性来看,实际工程中PC不能与MSF或SAF复配,但可与LS,NSF,ASF复配;PC与LS或SAF复合掺加能获得良好的塑化效果和坍落度保持性;PC与NSF,PC与MSF以及PC与ASF复合掺加都会削弱塑化效果,且PC与NSF复合掺加时对塑化效果和坍落度保持性的负面作用最大.The performance and application trends of polycarboxylate based plasticizer(PC) is discussed. The combined use of PC with the other type of plasticizers, i.e. Lignosulphate based plasticizer(LS), naphthalene sulphate based superplasticizer(NSF), melamine sulphate based superplastieizer(MSF), aminophenol sulphate based superplasticizer(ASF) and sulfonated acetoneformaldehyde based superplasticizer(SAF), was experimentally investigated. The results indicate that, based on the solubility of PC and other type of plasticizers, PC can be compounded with LS, NSF or ASF, but it can not be used in combination with MSF or SAF; regarding the efficiency of combined use of different type of plasticizers, PC can be added together with LS or SAF; It does harms to the plasticizing ability and slump retention ability of concrete if PC is added together with NSF, MSF or ASF.
关 键 词:聚羧酸系减水剂(PC) 木质素磺酸盐减水剂(LS) 萘系高效减水剂(NSF) 羰基焦醛高效减水剂(SAF) 氨基磺酸盐系高效减水剂(ASF) 相溶性 复配
分 类 号:TU528.0[建筑科学—建筑技术科学]
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