添加亚齐膨润土以提高聚氨酯基涂料的耐热性能

Ilyas Yusuf, M. Yunus, Teuku Rihayat
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引用次数: 0

摘要

聚氨酯是一种高分子化合物,其主要链成分是氨基(- nhcoo -)。聚氨酯可以与其他聚合物或其他填料混合,以增强和改善单一聚合物的性能。金属涂层材料需要具有耐热性能的金属材料,热条件和腐蚀可以破坏结构。本研究的重点和新颖之处在于利用天然膨润土来填充聚氨酯基涂料,以改善其性能。研究了用CTAB和AgNO3表面活性剂改性的北亚齐尼萨姆膨润土填料与聚氨酯混合的效果。使用的样品配方是聚氨酯和聚氨酯与北亚齐膨润土变化的1.5,2.5和3.5%。通过添加膨润土进行表征,产生具有良好热稳定性的聚合物。膨润土填料在聚氨酯聚合物中的添加会影响材料的力学性能。聚氨酯/膨润土复合样品具有较好的耐热性,其中在纯聚氨酯中,纯聚氨酯样品的初始减重为50-150℃,纯聚氨酯的分解为385℃。对于98.5:1.5% w/w的聚氨酯/膨润土纳米复合材料,初始减重150 ~ 300℃,416℃分解。对于97.5:2.5 w/w的聚氨酯/膨润土,初始减重为150 ~ 250℃,430℃分解。聚氨酯/膨润土96.5:3.5 w/w的初始减重也在200-300℃,458℃分解。
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Addition of aceh bentonite in an effort to improve the heat resistance properties of polyurethane-based paint coatings
Polyurethane is a polymer compound whose main chain constituent is urethane group (-NHCOO-). Polyurethanes can be mixed with other polymers or other fillers in an effort to enhance and improve the properties of the single polymer. Metal coating materials are needed for metal materials that have properties resistant to heat thermal condition and corrosion that can damage the structure,. The priority and novelty of this research is to utilize the natural bentonite which is very potential in the local area to fill polyurethane-based coating paint in order to improve its properties. This research looked at the effect of mixing Polyurethane with Bentonite filler obtained from Nisam, North Aceh which has been modified with CTAB and AgNO3 surfactants. The sample formulation used is polyurethane and polyurethane with North Aceh Bentonite variations of 1.5, 2.5, and 3.5%. Characterization with the addition of Bentonite produces polymers that have good thermal stability capabilities. The addition of Bentonite filler into polyurethane polymer can affect the mechanical properties of the material. The Polyurethane/Bentonite composite sample has better thermal resistance, where in pure Polyurethane, the initial weight reduction of the pure Polyurethane sample is 50-150 ℃, the decomposition of pure Polyurethane is at 385 ℃. For Polyurethane/Bentonite 98.5:1.5% w/w nanocomposite, the initial weight reduction is 150-300 ℃, decomposition at 416 ℃. For Polyurethane/Bentonite 97.5:2.5 w/w, the initial weight reduction is 150-250 ℃ and decomposition at 430 ℃. Polyurethane/Bentonite 96.5:3.5 w/w initial weight reduction is also at 200-300 ℃ and decomposition at 458 ℃.
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