3</sub>B<sub>4</sub>C<sub>1</sub>D<sub>2</sub> 、 A<sub>1</sub>B<sub>3</sub>C<sub>1</sub>D<sub>3</sub> 、 A<sub>1</sub>B<sub>3</sub>C<sub>4</sub>D<sub>3</sub> ;CF的摻入增加RAC 的孔隙率,但由于NMK的存在,孔隙率只呈現(xiàn)少量增加。此外CF的分隔及阻裂效應細化RAC的孔隙結構;CF通過橋接,起到承載作用的同時,使得裂縫擴展路徑更為復雜,不易產(chǎn)生貫穿裂縫。并且NMK的填充及火山灰效應可增強纖維-砂漿界面過渡區(qū)的粘結強度,進一步發(fā)揮CF的增強作用,由此提高RAC的強度及延性。-龍源期刊網(wǎng)" />

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碳纖維對納米偏高嶺土再生混凝土力學性能及微觀結構試驗研究

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中圖分類號:TB9;TU528 文獻標志碼:A 文章編號:1674-5124(2025)06-0017-08

Experimental study on mechanical properties and microstructure of carbon fiber reinforced nano metakaolin recycled concrete

YAN Jie LUO Yan YU Xutao WANG Lijun WENG Weisu (College of Civil Engineering,Hebei UniversityofArchitecture, Zhangjiakou 0750oo, China)

Abstract: In order to study the efect of carbon fiber(CF)on the mechanical properties of nano metakaolin recycled concrete(NRAC), orthogonal tests were conducted using the content of nano metakaolin(NMK), CF content, the replacement rate of recycled coarse aggregate(RA) and the length of CF as influencing factors to studythe efects of CF on the compressive strength, tensile strength and tension-compression ratio of NRAC. The pore structure and micro-morphology of recycled concrete(RAC) were analyzed by mercury intrusion method and scanning electron microscope method, in order to find out the improvement mechanism of CF on NRAC.The results show that the replacement rate of RA and the content of NMK have significant effects on the compressive strength,and the content of CF has remarkable efects on the tensile strength and tensioncompression ratio. Considering the compressive strength,tensile strength and tension-compression ratio of recycled concrete, the optimal ratios are A3B4C1D2 A1B3C1D3 , A1B3C4D3 ,respectively. The incorporation of CF increases the porosity of RAC,but the porosity increases only slightlydue to the presence of NMK.In addition, the separation and crack resistance effect of CF refine the pore structure of RAC.CF plays a bearing role through the bridge function, which makes the crack propagation path more complicated and is not easy to produce transverse cracks.Moreover,the filing effect and volcanic ash effect of NMK enhance the bond strength of the transition Zone of fiber-mortar interface,further play the strengthening role of CF,and thus improving the strength and ductility of RAC.

Keywords: carbon fiber; nano metakaolin recycled concrete; compressive strength; tensile strength; tensioncompression ratio; microstructure

0 引言

隨著中國城市經(jīng)濟快速增長,在拆除重建過程中產(chǎn)生的廢棄混凝土的再利用問題日益突顯,由此再生混凝土(recycledconcrete,RAC)領域近年來成為研究熱點。(剩余10029字)

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