A Novel Foam Coating Approach to Produce Abrasive Structures on Textiles

IF 1.1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES Autex Research Journal Pub Date : 2021-09-26 DOI:10.2478/aut-2021-0031
E. Kenttä, Vinay Kumar, Petter Andersson, Ulla Forsström
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引用次数: 2

Abstract

Abstract Abrasive materials are classified as paper, nonwoven, or plastic-based multilayer structures, which are used for different kinds of surface finishing. Currently, the production of abrasive structures on textiles is carried out by spraying a slurry of binder and abrasive particles, e.g., Al2O3 or SiC, with subsequent drying and curing of the binder. The drawback of this production method is the poor runnability of the spraying process. Even small variations in the process parameters may lead to an uneven coating. Therefore, a novel coating approach was developed to produce abrasive structures with foam coating on textile substrates. The foam coating method, which is commonly used in the textile industry, has the potential to produce an even coating layer. The runnability and reliability of the foam coating process are good even with high solids. From a workplace safety perspective, another advantage of foam coating is that there are no airborne particles during the coating process. A polyamide woven cloth was foam coated with an aqueous slurry containing abrasive grains (SiC), a water-based UV-curable acrylate binder, and cellulose nanocrystals (CNCs) to adjust the slurry rheology. Stable abrasive-binder foams were generated from the slurries even at high solids of 50% using an anionic foaming agent. The cloth was foam coated and dried, and the resin was cured with a LED-UV lamp on a pilot scale. It was observed that without the addition of CNC the foam did not stay on the surface of the cloth after coating. CNC acts as a rheology modifier and co-binder, which prevent the foam from penetrating deeper into the pores of the cloth. CNC also acted as a dispersing agent: the slurry was effectively stabilized by the CNC to prevent sedimentation of the abrasive grains. An organic solvent-free composition was introduced by combining CNC with a water-based UV-resin.
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一种在纺织品上产生磨料结构的新型泡沫涂层方法
磨料材料分为纸、非织造布或塑料基多层结构,用于不同种类的表面加工。目前,纺织品上的磨料结构的生产是通过喷洒粘合剂和磨料颗粒(例如Al2O3或SiC)的浆液,然后对粘合剂进行干燥和固化来进行的。这种生产方法的缺点是喷涂过程的可操作性差。即使工艺参数的微小变化也可能导致涂层不均匀。因此,开发了一种新型涂层方法,在纺织基材上使用泡沫涂层制备磨料结构。在纺织工业中常用的泡沫涂布方法具有产生均匀涂布层的潜力。即使在高固含量的情况下,泡沫涂层工艺的可操作性和可靠性也很好。从工作场所安全的角度来看,泡沫涂层的另一个优点是在涂层过程中没有空气中的颗粒。用含磨料颗粒(SiC)、水基紫外光固化丙烯酸酯粘合剂和纤维素纳米晶体(cnc)的水浆料泡沫涂覆聚酰胺编织布,以调节浆料的流变性。使用阴离子发泡剂,即使在高固含量为50%的情况下,也能从浆料中产生稳定的磨料粘结剂泡沫。布被泡沫涂层并干燥,树脂在LED-UV灯的中试规模下固化。观察到,没有添加CNC泡沫涂层后不会停留在布的表面。CNC作为流变改进剂和结合剂,可以防止泡沫深入渗透到织物的毛孔中。CNC还起到分散剂的作用:CNC有效地稳定了浆料,防止了磨粒的沉淀。通过将CNC与水性uv树脂相结合,引入了一种有机无溶剂组合物。
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来源期刊
Autex Research Journal
Autex Research Journal MATERIALS SCIENCE, TEXTILES-
CiteScore
2.80
自引率
9.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: Only few journals deal with textile research at an international and global level complying with the highest standards. Autex Research Journal has the aim to play a leading role in distributing scientific and technological research results on textiles publishing original and innovative papers after peer reviewing, guaranteeing quality and excellence. Everybody dedicated to textiles and textile related materials is invited to submit papers and to contribute to a positive and appealing image of this Journal.
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