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首页> 外文期刊>Pigment & Resin Technology >Impact of impregnation with Imersol Aqua on the surface adhesion strength of synthetic, acrylic, polyurethane, and water-based varnishes
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Impact of impregnation with Imersol Aqua on the surface adhesion strength of synthetic, acrylic, polyurethane, and water-based varnishes

机译:用Imersol Aqua浸渍对合成,丙烯酸,聚氨酯和水基清漆的表面粘合强度的影响

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摘要

Purpose - The purpose of this paper is to determine the effect of Imersol Aqua impregnation of Scotch pine, Oriental spruce, and Uludag fir on the surface adhesion strength of various types of varnishes. The finding obtained would benefit the manufacturers of building materials and furniture, where the surface adhesion strength of water-based varnishes is a concern. Design/methodology/approach - For this purpose, test samples were prepared from Scotch pine, Oriental spruce, and Uludag fir woods that met the requirements of ASTM D 358. The samples were impregnated with Imersol Aqua using short-, medium-, and long-term immersion techniques according to ASTM D 1413 and the manufacturer's instructions. After impregnation, surfaces were coated with synthetic, acrylic, polyurethane, and water-based varnishes in accordance with ASTM D 3023 standards. After the varnishing process, the adhesion strength of the samples was determined in accordance with ASTM D 4541. Findings - It was also found that among the wood samples, the adhesion strength was highest in Scotch pine and lowest in Uludag fir. The synthetic varnish produced the highest adhesion strength, whereas polyurethane and acrylic varnishes had the lowest adhesion strength. The adhesion strength was highest after medium-term immersion and lowest after long-term dipping. The highest adhesion strength (4.299 MPa) was produced by a combination of Scotch pine, medium-duration immersion, and the use of a wood-based varnish. The lowest adhesion strength (2.090 MPa) resulted from the combination of Uludag fir, long-term immersion, and a water-based varnish. Research limitations/implications - Impregnating woods using materials with appropriate water repellent, biotic, and abiotic effects before the application of varnishes and paints is important for long-term protection against photochemical degradation, dimensional changes, biological factors, and fire. Practical implications - The effect of a varnish on surface adhesion strength can determine the usefulness of the varnish. Originality/value - Improving surface adhesion of some varnishes via medium-term impregnation with Imersol Aqua impregnation should be used on Scotch pine, Oriental spruce, and Uludag fir woods which could be used in the manufacturing of building materials and furniture, where the surface adhesion strength of water-based varnishes is a concern. Show less
机译:目的-本文的目的是确定Imersol Aqua浸渍樟子松,东方云杉和Uludag冷杉对各种清漆表面附着强度的影响。获得的发现将有利于建筑材料和家具的制造商,因为水基清漆的表面粘合强度值得关注。设计/方法/方法-为此,从符合ASTM D 358要求的樟子松,东方云杉和Uludag冷杉木材中制备测试样品。使用短,中和长时将Imersol Aqua浸渍到样品中ASTM D 1413和制造商说明的长期浸入技术。浸渍后,按照ASTM D 3023标准在表面上涂上合成,丙烯酸,聚氨酯和水基清漆。在清漆过程之后,根据ASTM D 4541确定样品的粘合强度。结果-还发现在木材样品中,苏格兰松的粘合强度最高,而乌鲁达冷杉的粘合强度最低。合成清漆的粘合强度最高,而聚氨酯和丙烯酸清漆的粘合强度最低。中期浸泡后的粘合强度最高,长期浸泡后的粘合强度最低。苏格兰松木,中度浸泡和使用木质清漆的结合产生了最高的粘合强度(4.299 MPa)。 Uludag冷杉,长期浸泡和水基清漆的结合产生了最低的粘合强度(2.090 MPa)。研究的局限性/意义-在应用清漆和油漆之前,使用具有适当的防水,生物和非生物作用的材料浸渍木材对于长期防止光化学降解,尺寸变化,生物因素和火灾起着重要的作用。实际意义-清漆对表面粘合强度的影响可以决定清漆的有用性。原创性/价值-通过中期浸渍Imersol Aqua浸渍来改善某些清漆的表面附着力,应在樟子松,东方云杉和Uludag冷杉木材上使用,这些木材可用于建筑材料和家具的制造,其中表面附着力水性清漆的强度值得关注。显示较少

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