Page 119 - 《精细化工》2023年第8期
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第 8 期 罗帅帅,等: 不同晶型 CaCO 3 表面改性及 CaCO 3 /PDMS 超疏水涂层的制备 ·1733·
PDMS 共混后,通过溶液共混喷涂制备 CaCO 3 / sodium stearate and its mechanism[J]. Non-Metallic Mines (非金属
矿), 2018, 41(2): 1-3.
PDMS 超疏水涂层,其中方解石型 CaCO 3 /PDMS 超
[16] WANG M W (王明威). Study on the preparation of PMMA/calcium
疏水涂层接触角可达 151.4°,文石型/PDMS 超疏水 sulfate whisker composite by in-situ polymerization[D]. Guiyang:
涂层接触角可达 153.2°。自清洁能力测试表明,当 Guizhou University (贵州大学), 2020.
[17] HU X H (胡兴航), ZHOU D L (周大利), LIU C (刘灿), et al.
涂层表面出现污染物时,其具备的自清洁能力可使 Preparation of barite/titanium dioxide composite pigment by
涂层表面保持整洁性。该涂层证明了基于两种不同 hydrophobic polymerization[J]. Multipurpose Utilization of Mineral
Resources (矿产综合利用), 2021, (6): 66-72.
晶型的 CaCO 3 制备的超疏水涂层具有优异的拒水性 [18] LU G (路广), YANG L S (杨留栓), WANG X (汪潇), et al. Surface
和低附着力。同时,该涂层在经过 500 mL 水滴冲击 modification of calcium sulfate whisker and its effects on the
properties of PA66 composites[J]. Plastics Science and Technology
下,接触角仍达 140°以上,说明涂层具有工作时效 (塑料科技), 2016, 44(4): 47-51.
的持久性和稳定性,并为实际应用的可行性奠定了 [19] LIANG Y, SUN S, DING H, et al. Preparation and characterization
基础。 of organic modified calcium carbonate by sodium stearate (or sodium
oleate) using wet method [J]. Surface Review and Letters, 2020,
27(10): 1950224.
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Agglomeration in water medium of calcium carbonate modified by (下转第 1741 页)