在高热环境下的米灰--纤维混凝土的机械性能和微观结构
Heng Wang1, Jianyong Pang1, Yihua Xu1
1School of Civil Engineering and Architecture, Anhui University of Science and Technology, Huainan 232001, China.
Polymers
|June 10, 2023
概括
这项研究优化了大米灰--纤维混凝土 (RRFC) 适用于湿热环境. 最好的混合物增强机械性能和耐用性,为沿海地区提供可持续的建筑材料.
科学领域:
- 材料科学 材料科学 材料科学
- 土木工程 土木工程是指土木工程.
- 可持续建筑 可持续建筑
背景情况:
- 传统的混凝土在湿热和沿海环境中面临着挑战.
- 开发环保的具体替代方案对于可持续的基础设施至关重要.
- 米灰,颗粒和PVA纤维为增强混凝土性能提供了潜力.
研究的目的:
- 在湿热条件下研究大米灰-纤维混凝土 (RRFC) 的机械性能.
- 通过使用直角测试来确定RRFC的最佳混合设计.
- 评估经过干湿周期的RRFC的耐用性和微观结构.
主要方法:
- 正角实验设计,以确定最佳的RRFC组成.
- 分析循环负荷后的质量损失,相对动态弹性模量和压力强度.
- 微结构分析以了解材料的内部结构和降解机制.
主要成果:
- 最佳的RRFC混合物:1-3毫米的颗粒,1.2公斤·m-3的PVA纤维,15%的米灰.
- 通过形成C-S-H凝,米灰改善了颗粒分布和混凝土的紧性.
- 颗粒和PVA纤维增强了机械性能和耐疲劳性.
- 压力强度在第七个干湿周期达到顶峰,化物溶液的减少更大.
结论:
- 优化的RRFC在湿热环境中表现出卓越的机械性能和耐用性.
- 这种材料适用于沿海地区的基础设施,促进节能和减少排放.
- 该研究为苛刻的环境条件提供了一个可行的,可持续的具体替代方案.
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