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Foam glass processing using a polishing glass powder residue

机译:使用抛光玻璃粉残留物的泡沫玻璃加工

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The foaming behavior of a powder residue/waste of a soda-lime window glass polishing facility was investigated at the temperatures between 700 and 950 °C. The results showed that the foaming of the glass powder started at a characteristic temperature between 670 and 680 °C. The maximum volume expansions of the glass powder and the density of the foams varied between 600% and 750% and 0.206 and 0.378 g cm~(-3), respectively. The expansion of the studied glass powder residue resulted from the decomposition of the organic compounds on the surfaces of the glass powder particles, derived from an oil-based coolant used in the polishing. The collapse stress of the foams ranged between ~1 and 4 MPa and the thermal conductivity between 0.048 and 0.079 WK"(-1) m~(-1). Both the collapse stress and thermal conductivity increased with increasing the foam density. The foams showed the characteristics of the compression deformation of the open cell brittle foams, which was attributed to the relatively thick cell edges.
机译:在700至950°C的温度下研究了钠钙玻璃抛光设备的粉末残留物/废物的起泡行为。结果表明,玻璃粉末的发泡是在670至680°C的特征温度下开始的。玻璃粉的最大体积膨胀和泡沫的密度分别在600%和750%之间以及0.206和0.378g cm·(-3)之间变化。所研究的玻璃粉残留物的膨胀是由于玻璃粉颗粒表面有机化合物的分解所致,而有机化合物的分解源自抛光中使用的油基冷却剂。泡沫的破裂应力在约1-4 MPa之间,导热系数在0.048和0.079 WK“(-1)m〜(-1)之间。破裂应力和导热系数均随泡沫密度的增加而增加。图1显示了开孔脆性泡沫的压缩变形的特征,这归因于相对较厚的孔边缘。

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