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Change of mechanical properties during short-term natural weathering of MSWI bottom ash

机译:MSWI底灰在短期自然风化过程中的机械性能变化

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The present work describes the change of mechanical properties during the natural weathering of freshly quenched processed bottom ash. An unconfined uniaxial compression to failure test of the unbound material was used to determine compressive strength and modulus of elasticity. Three main stages of mechanical behavior were determined. In the first stage, during a period lower than 30 days, mechanical properties suddenly increase,with a compressive strength and elastic modulus 7 times greater than the initial parameters. During the second stage, compressive strength and modulus of elasticity lightly increase until approximately 90 days of curing time. Starting from this period both mechanical properties remain steady and independent of the curing time. The neoformed phases, the elevated water content, and the improvement of particle contact after compaction act as a binder layer among particles, increasing the mechanical parameters during the short-term natural weathering process. Because of this, the freshly compacted bottom ash progresses from behaving as an unbound material into a bound pavement material. These mechanical properties obtained from freshly quenched bottom ash are 6-7 times greater than those obtained from previously weathered bottom ash. The bottom ash expansion and leaching of metals were also evaluated.
机译:本工作描述了新鲜淬火处理的底灰自然风化过程中机械性能的变化。使用未约束材料的无限制单轴压缩至破坏测试来确定抗压强度和弹性模量。确定了机械行为的三个主要阶段。在第一阶段,在不到30天的时间内,机械性能突然增加,其抗压强度和弹性模量比初始参数大7倍。在第二阶段中,抗压强度和弹性模量略有增加,直到大约90天的固化时间。从这一时期开始,两个机械性能都保持稳定,并且与固化时间无关。新形成的相,升高的水含量以及压实后的颗粒接触的改善在颗粒之间充当粘合剂层,从而在短期自然风化过程中增加了机械参数。因此,新压实的底灰从作为未粘结材料的行为发展为粘结路面材料。从新鲜淬火的底灰获得的这些机械性能比从先前风化的底灰获得的机械性能高6-7倍。还评估了底灰的膨胀和金属的浸出。

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