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Polishing experiments on surface quality of building stone tiles

机译:建筑石材瓷砖表面质量的抛光实验

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Polishing experiments were carried out on eight different carbonate stones with a machine designed for simulating industrial scale tile polishing process. Polishing was performed at 0.8,1.3,1.8 and 2.3 m/min belt speeds under fixed rotational speed and pressure of a polishing head. During the tests, calibrated stone tiles were sequentially polished with 60, 80, 120, 220, 320, 400 and 600 grit SiC abrasive stones at each belt speed. After polishing of each abrasive size, the quality of surfaces was assessed by measuring the surface roughness and gloss. As abrasive grit size gradually reduced to 320 grit, the roughness on the stone surfaces decreased greatly while gloss readings did not change significantly. But after 320 grit, gloss values increased greatly while change in roughness values was not significant. Reducing the belt speed resulted with a significant decrease in roughness for each grit size of abrasive, but after polishing with abrasive size larger than 320 grit, the influence of belt speed on the reduction in roughness values became less. Among the carbonate stones, micritic limestone tiles, which were homogenous in mineral composition with strong and hard structure, resulted with good surface finish. But clay minerals existing in other limestone and heterogeneous porous structure of travertines had an adverse effect on surface quality of tiles. Results from polishing tests suggest that belt speed value of 1.3 m/min provide optimum polishing quality conditions since optimum consistency in roughness and gloss of tile surfaces was reached at this belt speed. This findings were very valuable information for operating factories in which polishing is carried out. The gloss reading on stone surfaces was found to increase exponentially with decrease in surface roughness. Good correlation was found between surface roughness and gloss quality of micritic limestones and marbles compared to travertines. 【Keywords】Polishing;Natural stone;Belt speed;Roughness;Glossiness
机译:使用设计用于模拟工业规模瓷砖抛光过程的机器,对八种不同的碳酸盐石材进行了抛光实验。在固定的旋转速度和抛光头压力下,以0.8、1.3、1.8和2.3 m / min的皮带速度进行抛光。在测试过程中,在每个皮带速度下,依次用60、80、120、220、320、400和600粒度的SiC磨石对校准的石材进行抛光。抛光每种磨料尺寸后,通过测量表面粗糙度和光泽度来评估表​​面质量。随着磨料粒度逐渐减小到320粒度,石材表面的粗糙度大大降低,而光泽度读数没有明显变化。但是在320目后,光泽度值大大增加,而粗糙度值的变化并不明显。降低砂带速度会导致每种粒度的磨料的粗糙度大大降低,但是在使用大于320砂的磨料进行抛光后,砂带速度对降低粗糙度值的影响会减小。在碳酸盐石中,矿物组成均匀,结构坚硬的微晶石灰石砖具有良好的表面光洁度。但是存在于其他石灰岩中的粘土矿物和石灰华的异质多孔结构对瓷砖的表面质量有不利影响。抛光测试的结果表明,皮带速度值为1.3 m / min可提供最佳抛光质量条件,因为在此皮带速度下瓷砖表面的粗糙度和光泽度达到了最佳一致性。该发现对于在其中进行抛光的操作工厂是非常有价值的信息。发现石材表面上的光泽度随着表面粗糙度的降低而呈指数增长。发现与石灰华相比,微粉石灰石和大理石的表面粗糙度与光泽质量之间具有良好的相关性。 【关键词】抛光;天然石材;带速;粗糙度;光泽度

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