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Lightweight Aggregate Bloating Mechanism of Clay/Incinerated Ash/Additive System
Yong-Joon Kwon, Yoo-Taek Kim, Ki-Gang Lee, Young-Jin Kim, Seung-Gu Kang, Jung-Hwan Kim, Myoung-Sik Park
J. Korean Ceram. Soc.. 2001;38(9):811

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Lightweight aggregate made from sewage sludge and incinerated ash
Waste Management. 2006;26(12):1453-1461   Crossref logo
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Bloating Mechanism of Lightweight Aggregate with the Size
Journal of the Korean Ceramic Society. 2016;53(2):241-245   Crossref logo
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Composition design of the optimum bloating activation condition for artificial lightweight aggregate using coal ash
Journal of the Korean Ceramic Society. 2020;57(2):220-230   Crossref logo
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Bloating Mechanism for Artificial Light Weight Aggregate of Surface Modification with Coal ash
Journal of the Korean Ceramic Society. 2015;52(2):159-164   Crossref logo
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Lightweight aggregates from incinerated sludge ash
Waste Management & Research. 1989;7(4):363-376   Crossref logo
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On the Testing Strength Curve of Clay and Fly Ash Lightweight Aggregate Concrete by Rebound Method
Advanced Materials Research. 2010;177:545-548   Crossref logo
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Optimum Bloating-Activation Zone of Artificial Lightweight Aggregate by Dynamic Parameters
Materials. 2019;12(2):267   Crossref logo
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Durability of Structural Lightweight Concrete with Sintered Fly Ash Aggregate
Materials. 2020;13(20):4565   Crossref logo
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Development of Lightweight Aggregate Concrete Containing Pulverized Fly Ash and Bottom Ash
Key Engineering Materials. 2008;400-402:379-384   Crossref logo
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Strength and Microstructural Study of Lightweight Aggregate Concrete (LWAC) Using Lightweight Expended Clay Aggregates (LECA)
Materials Science Forum. 2020;1010:678-683   Crossref logo
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