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Scratch resistance of cellulosic, synthetic, polyurethane, waterborne, and acid-hardening varnishes used on woods

机译:木材上使用的纤维素,合成,聚氨酯,水性和酸硬化清漆的耐刮擦性

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This study was conducted to determine the scratch resistance of cellulosic (C), synthetic (Sn), polyurethane (Pu), waterborne (Wb), and acid-hardening (Ah) varnishes used on wood materials. Test samples were prepared from Scotch pine, oriental beech, European oak, black poplar, basswood, and black walnut woods that met ASTM D 358 requirements and were coated according to ASTM D 3023 standards with C, Sn, Pu, Wb, and Ah varnishes. The scratch resistance of the samples after the varnishing process was determined based on TS 4757. The greatest scratch resistance was obtained for walnut based on the wood species, whereas the least scratch resistance was obtained for poplar. As for varnish type, the greatest scratch resistance was obtained for synthetic varnish, whereas cellulosoic varnish had the least scratch resistance. In addition, the greatest scratch resistance was obtained for three layers based on the layer thickness, whereas the least scratch resistance was calculated for one layer. Based on the wood species, varnish type, and layer type, the greatest scratch resistance was found for oak+Pu+three layers, and the least scratch resistance was calculated for basswood+Wb+one layer. Furthermore, differences were observed according to varnish type and layer thickness; varnish types were efficient for scratch resistance to the first degree and layer thickness to the second degree. The results showed that a varnish application with three layers of polyurethane provides a durability advantage.
机译:进行这项研究的目的是确定木质材料上使用的纤维素(C),合成纤维(Sn),聚氨酯(Pu),水性(Wb)和酸硬化(Ah)清漆的耐刮擦性。测试样品由符合ASTM D 358要求的苏格兰松木,东方山毛榉,欧洲橡木,黑杨木,black木和黑胡桃木制成,并根据ASTM D 3023标准涂有C,Sn,Pu,Wb和Ah清漆。 。根据TS 4757确定清漆过程后样品的耐刮擦性。基于木材种类,核桃的耐刮擦性最大,而杨木的耐刮擦性最小。至于清漆类型,合成清漆具有最大的耐刮擦性,而纤维素清漆具有最小的耐刮擦性。另外,基于层厚度,三层获得最大的耐刮擦性,而一层计算出最小的耐刮擦性。根据木材种类,清漆类型和层类型,橡木+ Pu +三层发现最大的耐刮擦性,bass木+ Wb +一层得到最小的耐刮擦性。此外,根据清漆类型和层厚观察到差异。清漆类型对于第一级的耐刮擦性和第二级的层厚度是有效的。结果表明,具有三层聚氨酯的清漆应用具有耐久性优势。

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