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Characterization of industrial aluminum trihydrate-filled poly(methyl methacrylate) composite powder

机译:产业铝三水合物填充聚(甲基丙烯酸甲酯)复合粉末的特征

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Aluminum trihydrate-filled poly(methyl methacrylate) (PMMA/ATH) is composite waste powder generated during the production of PMMA/ATH solid-surface composite sheets. It is estimated that 85,500 tons of this waste is being produced every year on a global scale. Since the information about it is scarce, this paper examines the physical characteristics of PMMA/ATH powder and the influence of milling upon its surface characteristics in order to determine its recycling and adhesion potentials. Non-milled powder particles show more irregular shape with more porous structure in comparison to milled powder. Milling causes the breaking of ATH particles in the PMMA matrix which leads to average particle size reduction and increased surface free energy. IGC results show higher values for than results derived by contact angle measurement. Nevertheless, the difference in values between non-milled and milled samples is even more obvious in IGC measurements than in contact angle measurements. The DSC curve of PMMA/ATH powder shows a typical thermal decomposition of aluminum hydroxides up to about 320 degrees C when an exothermic reaction is observed up to 445 degrees C, which is attributed to the burning of PMMA.
机译:铝三水合物填充聚(甲基丙烯酸甲酯)(PMMA / ATH)是在生产PMMA / ATH固体表面复合板期间产生的复合废物粉末。据估计,每年都会在全球范围内生产85,500吨。由于关于它的信息是稀缺的,本文研究了PMMA / ATH粉末的物理特性以及研磨对其表面特性的影响,以确定其循环和粘附电位。非研磨的粉末颗粒与研磨粉末相比,具有更多孔的结构具有更不规则的形状。铣削导致PMMA矩阵中的Ath颗粒破碎,导致平均粒度减小和增加的表面自由能。 IGC结果显示比接触角测量结果的结果更高。然而,在IGC测量中,非研磨和研磨样品之间的值差异比在接触角测量中更明显。当观察到445℃的放热反应时,PMMA / ATH粉末的DSC曲线显示出高达约320℃的丙酮铝的典型热分解,其归因于PMMA的燃烧。

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