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Mechanical Properties of Self-Compacting Rubberized Concrete with Different Rubber Types under Triaxial Compression
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作者 Chunli Meng Weishu Fu +2 位作者 Jianzeng Shen Yisheng Su Chunying Ye 《Journal of Renewable Materials》 SCIE EI 2023年第2期581-598,共18页
Different rubber aggregates lead to changes in the effect of stress conditions on the mechanical behavior of concrete,and studies on the triaxial properties of self-compacting rubber concrete(SCRC)are rare.In this stu... Different rubber aggregates lead to changes in the effect of stress conditions on the mechanical behavior of concrete,and studies on the triaxial properties of self-compacting rubber concrete(SCRC)are rare.In this study,35 cylindrical specimens taking lateral stress and rubber type as variables were prepared to study the fresh properties and mechanical behaviors of SCRC under triaxial compression,where the rubber contains two types,i.e.,380μm rubber powder and 1–4 mm rubber particles,and four contents,i.e.,10%,20%and 30%.The test results demonstrated that SCRC exhibited a typical oblique shear failure mode under triaxial compression and had a more moderate descending branch compared with self-compacting concrete(SCC).The presence of lateral stress can significantly improve the compression properties,including initial elastic modulus,peak stress and peak strain,with an improvement range of 3%–73%for peak stress.While rubber aggregates mainly targeted the deformation abilities and toughness for improvement,and the peak strain improvement ranges were 0.1–3.1 times and 0.1–1.0 times for SCRC containing rubber powder and SCRC containing rubber particles,respectively,relative to SCC.At a high lateral stress of at least 12 MPa,the loss of strength due to the addition of rubber can be controlled within 10%,in which case the content of rubber powder and rubber particles was recommended to be at most 20%and 30%,respectively.Based on the Mohr-Coulomb theory,the failure criteria of SCRC with different rubber types were established.For analysis and design purposes,an empirical model was proposed to predict the stressstrain behavior under triaxial compression,considering the influence of different rubber content and lateral stress.The results obtained in this study can provide a valuable reference for the design and application of self-compacting rubberized concrete in practical projects,especially those involving three-way compression states and requiring high-quality deformation and energy dissipation. 展开更多
关键词 self-compacting rubberized concrete rubber types triaxial mechanical properties failure criterion constitutive model
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Mechanical Properties and Microcosmic Properties of Self-Compacting Concrete Modified by Compound Admixtures 被引量:1
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作者 Song Yang Bing Qi +3 位作者 Zubin Ai Zhensheng Cao Shiqin He Lijun Li 《Journal of Renewable Materials》 SCIE EI 2022年第4期897-908,共12页
It has become a research hotspot to explore raw material substitutes of concrete.It is important to research the mechanical properties of self-compacting concrete(SCC)with slag powder(SP)and rubber particle(RP)replaci... It has become a research hotspot to explore raw material substitutes of concrete.It is important to research the mechanical properties of self-compacting concrete(SCC)with slag powder(SP)and rubber particle(RP)replacing cement and coarse aggregate,respectively.12 kinds of composite modified self-compacting concrete(CMSCC)specimens were prepared by using 10%,20%and 30%SP and 30%,40%,50%and 60%RP.The rheological properties,mechanical properties and microstructure of the CMSCC were investigated.Results indicate that the workability,compressive strength,splitting tensile strength and flexural strength of CMSCC prepared by 20%SP and less than 40%RP are improved.In order to maximize the utilization of waste materials,20%SP and 40%RP can be used as the optimal ratio of the combined modifier.The microstructure shows that the addition of proper amount of SP is conducive to the formation of increasingly more uniform C-S-H gel.C-SH gel can fill the internal pores of the sample and enhance the adhesion between the aggregate,thus improving the mechanical properties of CMSCC.RP has a rougher surface and lower density and stiffness,which inhibits the workability and mechanical properties of CMSCC.The above research results have important theoretical and practical significance for the selection of raw materials of self-compacting concrete and the rational use of industrial wastes. 展开更多
关键词 self-compacting concrete slag powder rubber particle mechanical properties MICROSTRUCTURE
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橡胶自密实混凝土和易性及力学性能研究 被引量:8
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作者 阎磊 《新型建筑材料》 北大核心 2020年第5期22-25,41,共5页
利用3种不同粒径的橡胶颗粒替换混凝土中的骨料,分析了橡胶自密实混凝土(SCRC)的新拌及硬化性能。对新拌混凝土进行坍落度、T500和J环试验,对硬化混凝土的7 d、28 d抗压强度、抗拉强度、密度和28 d应力-应变进行研究。得出橡胶自密实混... 利用3种不同粒径的橡胶颗粒替换混凝土中的骨料,分析了橡胶自密实混凝土(SCRC)的新拌及硬化性能。对新拌混凝土进行坍落度、T500和J环试验,对硬化混凝土的7 d、28 d抗压强度、抗拉强度、密度和28 d应力-应变进行研究。得出橡胶自密实混凝土中的最佳橡胶颗粒取代率和最佳粒径,以优化SCRC的新拌和硬化后性能。结果表明,随着橡胶取代率的增加,混凝土的坍落度和J环流动度减小,T500延长;橡胶颗粒为5 mm的混凝土抗压强度和劈裂抗拉强度最高;由应力-应变曲线可以看出,橡胶粒径的增加会导致更大的峰值应变。 展开更多
关键词 橡胶自密实混凝土(scrc) 橡胶颗粒 骨料粒径 性能研究
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