开发了一种低泡、高效、防锈和环保的水基金属清洗剂,研究了不同表面活性剂在不同温度和不同油污含量的清洗液中的消泡状况,探讨了无水偏硅酸钠含量对清洗剂的洗净率的影响以及以聚三元羧酸酯H5768和羧酸胺为防锈剂对钢材和铝材的缓蚀作用,确定了清洗剂的最佳配方为:无水偏硅酸钠0.5%~2.0%,H57682%~4%,羧酸胺防锈剂2%~5%,PAA 1%~3%,DPNS 5%~8%,TXO 4%~6%,水余量。该清洗剂在40°C以上无泡,能有效抑制清洗中由于油污皂化引起的泡沫,工作液中清洗剂的用量为5%,清洗时间5 min,工件的洗净率可达99%以上。该清洗剂对钢材和铝材均有很好的防锈性能,符合JB/T 4323.1–1999标准的要求,并在国内几家大型金属零件制造公司获得应用。
A water-based metal cleaner characterized by low-foam, high-efficiency, anti-rust, and environmental friendliness was developed. The defoaming condition of the cleaner using different surfactants at various temperatures and being contaminated by different dosages of oil dirt was studied. The effect of dosage of anhydrous sodium metasilicate on the cleaning rate and the effect of polytricarboxylic acid ester H5768 and carboxylic acid amine as anti-rust agent on the corrosion inhibition for steel and aluminum materials were discussed. The optimized formulation of the cleaner were determined as follows:anhydrous sodium metasilicate 0.5%-2.0%, H5768 2%-4%, carboxylic acid amine antirust agent 2%-5%, PAA 1%-3%, DPNS 5%-8%, TXO 4%-6%, and water balance. The cleaner has no foam over 40 °C, which can effectively inhibit the foam formation caused by saponification of oil during cleaning. The cleaning efficiency of workpiece cleaned in the working solution with 5%cleaner for 5 min reaches 99%. The cleaner has excellent rust resistance for steel and aluminum materials, which fulfills the requirement of JB/T 4323.1–1999 standard and has been applied in some large-scale metal part manufacturers in China.
参考文献
[1] | 方华,朱再旭.机械行业金属零部件加工的化学清洗[J].清洗世界,2014(12):34-38. |
[2] | 有机溶剂清洗作业安全风险浅析[J].安全,2013(01):33-34. |
[3] | 武华萍,孙永强,康保安.非离子表面活性剂的结构与性能的关系[J].日用化学品科学,2012(06):17-21. |
[4] | Journal of Chemical Education Group .From Foam Rubber to Volcanoes:The Physical Chemistry of Foam Formation[J].Journal of Chemical Education,2004(11):1581-1584. |
[5] | Lunkenheimer, K;Malysa, K;Winsel, K;Geggel, K;Siegel, S .Novel Method and Parameters for Testing and Characterization of Foam Stability[J].Langmuir: The ACS Journal of Surfaces and Colloids,2010(6):3883-3888. |
[6] | 于海飞.浅析无磷洗涤助剂的发展[J].中国洗涤用品工业,2014(02):47-49. |
[7] | 侯万果,王子君,田前进.金属防锈剂的防锈性能及试验验证[J].轴承,2014(09):37-39,40. |
[8] | 刘仁新.金属碱性清洗液极限pH值的探讨[J].材料保护,2012(01):64-65. |
[9] | 吴忠.超声波清洗对铝件的空化腐蚀影响[J].电子机械工程,2014(03):46-48. |
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