使用多功能单体和增强功能填料的高性能涂料配方,用于保护金属基材

Sachin S. Joshi, Vikas J. Patil, V. Gite
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引用次数: 0

摘要

目的腐蚀的影响非常严重,因此减缓腐蚀至关重要。保护涂层在防止金属腐蚀方面发挥着重要作用,涂层应用是最方便、最经济、最快捷的解决方案。本研究的目的是开发保护涂层,以有效缓解金属部件的腐蚀。设计/方法/途径使用多种单体和糊状功能填料和增强填料以及扩展剂制备了一种高性能防腐蚀涂层,以保护金属部件在侵蚀性环境条件下免受腐蚀。利用核磁共振和傅立叶变换红外光谱技术研究了用多种单体合成的共聚物的结构。利用气相色谱技术估算了不同比例的各种单体的转化率。使用各种功能性填料和增强填料制备了具有优异防腐性能的功能性浆料。研究限制/启示由于克服了双组分系统的缺点,因此在金属基材上的应用几乎没有任何限制或影响。所开发的涂料系统非常易于使用传统工具(即刷子、喷涂和辊筒技术)进行施工。配方具有快干特性。社会影响研究成果具有防腐性能,可提高基材的使用寿命。它专为金属底材设计,能在最具侵蚀性的条件下保护金属底材免受腐蚀。因此,它有助于减少因腐蚀造成的损失,提高金属结构和人体的安全性。原创性/价值与传统的保护涂层系统不同,上述涂层具有颠覆性的特点,如单组分系统、在环境温度下快速干燥以及高性能特性。据观察,该涂料配方在工业中对有效缓解腐蚀和减少腐蚀造成的损失具有重要意义。
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High performance coating formulation using multifunctional monomers and reinforcing functional fillers for protecting metal substrate
Purpose Effects of corrosion are very dire and mitigation of corrosion holds prime importance. Protective coatings play major role in preventing corrosion of metals and coating application is the most convenient, economical and quick solution. The purpose of the study is development of protective coatings to effectively mitigate corrosion of metal components. Design/methodology/approach A high-performance anticorrosion coating was prepared using multiple monomers and paste of functional and reinforcing fillers with extenders to protect metal components from corrosion in aggressive environmental conditions. The structures of copolymers synthesized with multiple monomers were studied by the NMR and FT-IR spectroscopic techniques. The percentage conversion of different proportions of various monomers was estimated using gas chromatography technique. The functional paste to impart superior anticorrosion properties was prepared using various functional and reinforcing fillers. The final coatings were prepared by mixing these resins with functional paste in various proportions. Findings The prepared anticorrosion coating was tested for high-performance mechanical and chemical properties and it was witnessed that the said coating offered desired performance properties needed for protecting metal components from corrosion. Research limitations/implications As such it is overcoming drawbacks of two pack systems and thus has almost no limitations or implications for application on metal substrate. Practical implications Being formulated as a single pack, it is free from drawbacks otherwise involved in two pack system of conventional paints. The coating system developed is very easy to apply using conventional tools, namely, brush, spray and roller techniques. The formulation is made in such a way that it has fast-drying properties. Makes painting or coating operations cost effective and confirm the performance. Social implications The findings of the research have anticorrosion nature that can enhance the life span of the substrates. It is specially designed for metal substrate and can protect metal substrate from corrosion in most aggressive conditions. Thus, it helps to reduce losses due corrosion and increase safety of metal structures and human being as well. As it is based on conventional material but with new formulation and technology, it has commercial possibilities to explore. Originality/value Unlike conventional protective coating systems, the said coating offered disruptive features like single pack systems and fast drying at ambient temperature along with high-performance properties. The coating formulation was observed to have a great importance in industry for effective corrosion mitigation and to reduce losses due to corrosion.
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