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使用经处理的低等级再生粗骨料和高炉矿渣砂的混凝土性能

Properties of Concrete Using Treated Low-Class Recycled Coarse Aggregate and Blast Furnace Slag Sand.

作者信息

Miyazaki Yuji, Watanabe Takeshi, Yamada Yuji, Hashimoto Chikanori

机构信息

Civil Foundation division, Miyazaki Kiso Construction Co. Ltd., Tokushima 779-0222, Japan.

Concrete Engineering Laboratory, Department of Civil and Environmental Engineering, Tokushima University, Tokushima 770-8506, Japan.

出版信息

Materials (Basel). 2020 Feb 13;13(4):843. doi: 10.3390/ma13040843.

Abstract

Since high quality natural aggregates are becoming scarce, it is important that industrial recycled products and by-products are used as aggregates for concrete. In Japan, the use of recycled aggregate (RG) is encouraged. Since, strength and durability of recycled aggregate concrete is lower than that of normal aggregate concrete, the use of recycled aggregate has not been significant. In order to improve physical properties of concrete using recycled coarse aggregate, blast furnace slag sand has been proposed. Recently, blast furnace slag sand is expected to improve durability, freezing, and thawing damage of concrete in Japan. Properties of fresh and hardened concrete bleeding, compressive strength, and resistance to freezing and thawing which are caused by the rapid freezing and thawing test using liquid nitrogen is a high loader than the JIS A 1148 A method that were investigated. As a result, concrete using treated low-class recycled coarse aggregate and 50% or 30% replacement of crushed sand with blast furnace slag sand showed the best results, in terms of bleeding, resistance to freezing and thawing.

摘要

由于优质天然集料日益稀缺,使用工业回收产品和副产品作为混凝土集料至关重要。在日本,鼓励使用再生集料(RG)。然而,再生集料混凝土的强度和耐久性低于普通集料混凝土,因此再生集料的使用并不广泛。为了改善使用再生粗集料的混凝土的物理性能,人们提出使用高炉矿渣砂。最近,在日本,高炉矿渣砂有望提高混凝土的耐久性、抗冻融性。通过使用液氮进行快速冻融试验,研究了新拌混凝土和硬化混凝土的泌水、抗压强度以及抗冻融性能,其结果高于日本工业标准A 1148 A方法。结果表明,就泌水和抗冻融性而言,使用经过处理的低等级再生粗集料且用高炉矿渣砂替代50%或30%碎砂的混凝土表现出最佳效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d6f/7078881/cbf5a9832acc/materials-13-00843-g001.jpg

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