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硅酸钾-苯丙涂料稳定性和漆膜抗开裂性研究 被引量:6

Study on Stability and Cracking Resistance of Potassium Silicate-Styrene/Acrylate Latex Paint
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摘要 针对硅酸钾-苯丙乳液涂料存在乳液不稳定和漆膜易开裂的缺陷,本文主要研究了硅酸钾和苯丙乳液配比、颜料体积浓度(PVC)、分散剂、涂料黏度对乳液及其成膜性能的影响。结果表明:硅酸钾-苯丙乳液外墙涂料最佳工艺为硅酸钾用量30%、苯丙乳液10%、PVC 55%~60%(钛白粉用量为16%、重钙用量14%、滑石粉用量为8%),此时漆膜抗开裂性最佳;使用静电稳定型分散剂,涂料稳定性较好。涂料性能符合JG∕T 26-2002《外墙无机建筑涂料》的指标要求。 In view of the instability of potassium silicate-styrene/acrylic latex and thecoatings based on it was easy to crack , the influence of the amount of potassium silicate andstyrene- acrylic latex, pigment volume concentration (PVC),dispersants and viscosity ofcoatings on the latex and film-forming properties of coatings was investigated to find that whenoptimized formulation of potassium silicate-styrene/acrylic latex coatings was as follows :potassium silicate 30%, styrene- acrylic latex 10% and PVC 55%-60% (titanium dioxide16% , ground calcium carbonate 14%,talc 8% ) , the cracking resistance of the coatings was thebest. And good stability could be provided by using charge repulsion type dispersant. Theperformance of the coatings met the requirements of JG/T 26-2002 standard “InorganicArchitectural Coatings for exterior walls”.
作者 刘青青 张文静 张月微 徐建中 霍莉 Liu Qingqing;Zhang W enjing;Zhang Yuewei;Xu Jianzhong;Huo Li(College of Chemistry and Environmental Science,Hebei University,Baoding,Hebei 071002,China;Engineering Technology Research Center for Flame Retardant Materials and Processing Technology of Hebei Prorince,Baoding,Hebei 071002,China)
出处 《涂料工业》 CAS CSCD 北大核心 2021年第5期73-76,82,共5页 Paint & Coatings Industry
基金 保定市科技计划项目(1911Q002) 河北省高等学校科学技术研究重点项目(ZD2019022) 河北省重点研发计划项目(19211205D)。
关键词 无机涂料 硅酸钾 苯丙乳液 稳定性 抗开裂 inorganic coatings potassium silicate styrene-acrylic latex stability crack resistance
作者简介 通信联系人:霍莉。
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  • 1李柯,陆文雄,党俐,乔燕,王律,张月星.有机硅改性丙烯酸乳液防护涂层的合成及其对混凝土性能的影响研究[J].新型建筑材料,2007,34(4):12-14. 被引量:10
  • 2赵明敏.耐沾污外墙乳胶漆的开发[J].涂料工业,2007,37(7):67-69. 被引量:6
  • 3NUN E, OLES M, SCHLEICH B. Lotus - effect - surfaces[ J]. Macromolecular Symposia, 2002,187:677 - 682.
  • 4CAMEROW C. Inorganic and hybrid coatings[ M]. 2nd ed: Cambridge, UK : Royal Society of Chemistry, 2004.
  • 5PARASHAR G, BAJPAYEE M, KAMANI P K. Water - borne non - toxic high - performance inorganic silicate coatings [ J ]. Surface Coatings International Part B: Coatings Transactions, 2003,86 (3) : 209 -216.
  • 6VEINOT D E, LANGILLE K B, NGUYEN D T, et al. Efflorescence of soluble silicate coatings[ J ]. Journal of Non - Crystalline Solids, 1991, 127:221 - 226.
  • 7SCHNEIDER R H, SCHUTT J B. Two -pot silicate coatings compositions: US, 3615781 [ P]. 1971 - 10 -26.
  • 8SHOUP R D. Colloid and interface science[ M ]. New York: Academic Press, 1976.
  • 9EINARSRUD M A, NILSEN E. Strengthening of water glass and colloidal sol based silica gels by aging in TEOS[ J ]. Journal of Non - Crystalline Solids, 1998,226 : 122 - 128.
  • 10WILLSON R J, BEEZER A E, MITCHELL J C, et al. Determination of thermodynamic and kinetic parameters from isothermal heat conduction microcalorimetry: applications to long - term - reaction studies[J]. Journal of Physical Chemistry, 1995,99:7108 -7113.

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