制御された分散条件下で,バイオベースの添加物とデンドリティックな繊維ナノシリカで強化された改造されたセメントペーストの圧縮強度性能
Xiaojiao Zhang1, Jiamin Chen1, Shengnan Sun1
1School of Civil Engineering, Changchun University of Architecture and Civil Engineering ChangChun 130600 China xiaojiaolhpy307@sina.com.
RSC advances
|August 27, 2025
まとめ
スピルリナ藻に浸透した dendritic fibro nano silica (spirulina@DFNS) を使用した軽量コンクリートは,衝撃エネルギー吸収とクラック抵抗性を改善しています. しかし,割れ目の大きさや残留強度にはほとんど影響はなかった.
科学分野:
- 材料科学
- 土木工学
- 持続可能な建設
背景:
- 環境に優しいコンクリートは 持続可能性のために 再利用された有機廃棄物を利用します
- 軽量コンクリートは環境への影響を軽減し 廃棄物管理を改善します
- コンクリートにおけるスピルリナ藻に浸透した dendritic fibro nano silica (スピルリナ@DFNS) に関する研究は限られている.
研究 の 目的:
- スピルリナ@DFNSによる天然積層の完全な代替による軽量コンクリートの衝撃行動を調査する.
- 様々な境界条件下での構造性能を分析する.
- 反応表面分析を用いて,裂け目の発生と抵抗を評価する.
主な方法:
- 軽量なコンクリート板に低速衝突試験が行われました.
- 自然素材は完全にスピルリナ@DFNSに置き換えられた.
- 検査結果の解釈に反応表面分析が用いられました.
主要な成果:
- スピルリナ@DFNSの組み込みにより 衝撃エネルギー吸収が向上しました
- 材料は亀裂の伝播に対する抵抗性が向上した.
- 亀裂の寸法と残留強度を制限する効果は最小限であった.
結論:
- スピルリナ@DFNSは 耐震性繊維強化コンクリートの可能性を示しています
- 亀裂の寸法制御と残留強度の強化に課題が残っています.
- 持続可能な建設に最適化するためにさらなる研究が必要である.
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