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首页> 外文期刊>Applied Mechanics and Materials >Antibacterial Properties, Shore Hardness and Chemical Resistance of Epoxy Coatings Containing Finely Ground Secondary Raw Materials for Hygienic Plants
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Antibacterial Properties, Shore Hardness and Chemical Resistance of Epoxy Coatings Containing Finely Ground Secondary Raw Materials for Hygienic Plants

机译:包含用于卫生植物的精细研磨二次原料的环氧涂料的抗菌性能,肖氏硬度和耐化学性

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摘要

Currently fillers for antibacterial layers in hygienic operations are mainly primary raw materials, whose properties are verified and well-known due to their long-term use. However, the use of proper secondary raw materials appears to be a good option from an environmental and economic point of view. This work assesses the possible adverse effects of specially treated secondary raw materials in relation to antibacterial properties, chemical resistance and Shore hardness of the antibacterial coating on an epoxy base (AC-E) providing no physiological damage. This coating reliably eliminates the widest possible range of bacteria and yeasts, has sustained effectiveness, consistent functionality over time, provides permanent protection and is suitable for use in healthcare facilities and food processing plants. Two kinds of transparent waste glass (NaSX, VLG) and two types of waste foundry sand (FSC, FSB) were tested, and all fillers were treated so that particle size was below 0.063 mm, including the reference filler (Dorsilit sand). On the basis of antibacterial resistance tests, Shore hardness and chemical resistance, it was assessed that the tested fillers may be effectively used for antibacterial coatings while maintaining the properties of the reference coating. Within the rapid testing of chemical resistance, the surface microstructure of the antibacterial coating was also examined after long-term exposure to aggressive organic and inorganic liquid media. When adding 30% and 35% of the selected waste fillers, the hardness and chemical resistance of the cured coating did not change. The treated waste fillers tested had no negative impact on the antibacterial properties of the coating and were judged to be appropriate fillers in place of Dorsilit silica sand or glass flakes.
机译:当前,用于卫生操作中的抗菌层的填料主要是主要原材料,由于其长期使用,其性能已得到验证并广为人知。但是,从环境和经济的角度来看,使用合适的辅助原料似乎是一个不错的选择。这项工作评估了经过特殊处理的二次原料对抗菌性,耐化学性和环氧基(AC-E)上抗菌涂层的邵氏硬度(不造成生理损害)的不利影响。这种涂层可靠地消除了细菌和酵母的最大范围,具有持久的功效,随着时间的流逝具有一致的功能,提供永久保护,适合用于医疗机构和食品加工厂。测试了两种透明的废玻璃(NaSX,VLG)和两种类型的废铸砂(FSC,FSB),并对所有填料进行了处理,以使粒径小于0.063 mm,包括参比填料(Dorsilit砂)。基于抗菌性测试,肖氏硬度和耐化学性,评估出所测试的填料可以有效地用于抗菌涂层,同时保持参考涂层的性能。在耐化学性的快速测试中,在长期暴露于侵蚀性有机和无机液体介质后,还检查了抗菌涂层的表面微观结构。当添加30%和35%的选定废填料时,固化涂层的硬度和耐化学性没有变化。经测试的处理过的废填料对涂层的抗菌性能没有负面影响,并被认为是代替Dorsilit硅砂或玻璃薄片的合适填料。

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