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Effects of Different Forming Methods on the Properties of Solidified Body by Non-firing Process Through the Mechanochemical Treatment

机译:机械化学处理不同成形方法对非烧制凝固体性能的影响

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A "non-firing ceramic process" for producing high-strength ceramic solids without calcination is developed. In this process, a ceramic powder, activated by mechanochemical processing, is dispersed in an alkaline solvent to dissolve any metallic ions in the powder and to form precipitates between grains via reprecipitation. The ash powder of the incinerated paper sludge (PS ash, waste generated during paper recycling) is subjected to mechanochemical processing using a planetary ball mill, and non-fired compacts are prepared by wet forming or dry press forming; the effects of different forming methods on the compact properties are investigated. The compacts obtained by the wet forming had a low mechanical strength because the impurities in the PS ash reacted with KOH, resulting in gas emission during solidification and thus in the fracture of already solidified matter through the expansion of gas volume. However, dry press forming yielded good-quality compacts with few defects such as pores and cracks because only the minimum amount of the powders surface necessary for solidification was dissolved and reprecipitated, limiting the excessive dissolution of powder by the KOH solution.
机译:开发了一种不烧制生产高强度陶瓷固体的“非烧制陶瓷工艺”。在该方法中,将通过机械化学处理活化的陶瓷粉末分散在碱性溶剂中,以溶解粉末中的任何金属离子,并通过再沉淀在晶粒之间形成沉淀。使用行星式球磨机对焚化后的纸张污泥的灰粉(PS灰,纸张回收过程中产生的废物)进行机械化学处理,并通过湿式成型或干式压制成型来制备非焙烧压块;研究了不同成型方法对致密性的影响。通过湿成型获得的压块具有较低的机械强度,这是因为PS灰中的杂质与KOH反应,导致在固化过程中放出气体,并且因此通过气体体积的膨胀使已经固化的物质破裂。然而,干压成型产生具有很少缺陷(例如孔和裂纹)的高质量压坯,这是因为仅固化和沉淀了固化所需的最小量的粉末表面,从而限制了KOH溶液过度溶解粉末。

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