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Preparation of environment-friendly ultrafine fly ash based superhydrophobic demoulding coating

机译:环保超细粉煤灰超疏水脱模涂层的制备

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The superhydrophobic surface can be used to separate tastable concrete materials and moulds instead of waste oil which has the risk of contamination. In this study, a low cost superhydrophobic demoulding coating was prepared using waste materials. Solid waste ultrafine fly ash (UFA) as micron particles. Nano-sized CaCO3 nucleated on the surface of UFA with Ca(OH)(2)/calcium carbide slag(CCS) slurry under constant CO2 bubbling condition. Fluorosilanes were used to provide low surface energy. Powder coating was used as the base coating to provide intermediate bonding. Through SEM and AFM analysis, it was found that after carbonization, nano-sized CaCO3 particles were distributed on the surface of UFA particles and form large protrusion, and the surface roughness was significantly increased. The contact angle of the coating water was greater than 150 degrees under the optimal condition. Compared with the original UFA, the amount of fluomsilane was reduced from 2% to 0.1%, which reduced the cost. The composite interface between the liquid droplets and the coating surface was formed to intercept air bubbles. The hydrophobic model of the coating met the Cassie theory. The coating can replace the release agent to achieve easy release effect.
机译:超疏水表面可用于将可具可燃的混凝土材料和模具代替具有污染风险的废油。在该研究中,使用废料制备低成本的超疏水脱模涂层。固体废物超细粉煤灰(UFA)作为微米颗粒。在恒定CO 2鼓泡条件下用Ca(OH)(2)/碳化物渣(CCS)浆料,纳米尺寸的CaCO 3在UFA的表面上成核。氟硅烷用于提供低表面能。使用粉末涂料作为基础涂层以提供中间粘合。通过SEM和AFM分析,发现在碳化之后,将纳米大小的CaCO 3颗粒分布在UFA颗粒的表面上并形成大突出,并且表面粗糙度显着增加。在最佳条件下,涂布水的接触角大于150度。与原始UFA相比,氟胺的量减少了2%至0.1%,降低了成本。形成液滴和涂层表面之间的复合界面以拦截气泡。涂料的疏水模型达到了卡西理论。涂层可以取代脱模剂以实现易释放效果。

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