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水泥-聚苯乙烯轻质材料的准静态压缩力学行为

Mechanical Performance of EPS-cement-based Lightweight Materials upon Quasi-static Compressive Tests
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摘要 根据Gibson-Ashby模型中的多孔材料力学行为理论,对水泥-聚苯乙烯轻质材料的准静态压缩应力-应变曲线进行了预测,并通过试验对其进行验证,分析了纤维、乳胶粉、压缩比及养护方式对应力-应变曲线的影响.讨论了脆性抗压强度的变化规律,根据Gibson模型的强度理论拟合、分析了抗压强度与密度的关系.结果表明:材料的压缩应力-应变曲线可根据Gibson理论中弹性多孔材料和弹脆性多孔材料的应力-应变曲线进行复合,预测结果与实验结果基本一致;纤维、乳胶粉、压缩比和养护方式对曲线的线弹性、平台、密实化三个阶段均有一定的影响,也影响材料的脆性抗压强度;纯水泥组、加纤维组和高压缩比组脆性抗压强度的拟合相关性较高,而由于乳胶粉和蒸汽养护影响了孔壁的破坏强度,所以该两组的拟合相关性较低. The compressive stress-strain curve of EPS-cementbased lightweight materials was presumed based on the porous materials' Gibson-Ashby theory. The presumptions were compared with experimental results.The influences of fiber,latex,compress ratio and curing condition on the stress-strain curves were analyzed. The diversification of brittle compressive strength was investigated. The relationship between compressive strength and density was also fitted according to Gibson Model.The results figure out that the stress-strain curve can be treated to be formed from those of elastic porous materials and elastic-brittle porous materials,and that the presumptions show good correspondence to the experimental results.Fibers,latex,compress ratio and curing condition will affect the Linear Elastic, Plateau and Densification of the stress-strain curves,as well as the brittle compressive strength.The compressive strength and density of Series C,F and H can be fitted well under Gibson Model.Series L and S cannot be fitted so exactly owing to the differential of the strength of pore wall to the model.
出处 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第10期1536-1541,共6页 Journal of Tongji University:Natural Science
基金 国家自然科学基金(51302189)
关键词 水泥 聚苯乙烯 压缩力学行为 Gibson-Ashby模型 强度拟合 cement expanded polystyrene compressive mechanical performance Gibson-Ashby model fitting of compressive strength
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  • 1Banthia N P. Impact resistance of concrete[D]. Vancouver: University of British Columbia, 1987.
  • 2Kwan W H, Ramli M, Cheah C B. Flexural strength and impact resistance study of fibre reinforced concrete in simulated aggressive environment [ J ]. Construction and Building Materials, 2014, 63(30).. 62.
  • 3Wang Z L, Liu Y S, Shen R F. Stress-strain relationship of high-strength fiber concrete in compression[J]. Construction and Building Materials, 2008, 22(5) 811.
  • 4Antil Y. An experimental study on rubberized concrete[J]. International Journal of Emerging Technology and Advanced Engineering, 2014, 4(2): 309.
  • 5胡泽斌,许金余,彭高丰,曹珊.冲击荷载作用下聚苯乙烯混凝土的吸能特性[J].硅酸盐学报,2010,38(7):1173-1178. 被引量:17
  • 6丁国博,许金余,胡泽斌,席峰,白二雷.冲击荷载作用下早强EPS混凝土的力学性能[J].振动与冲击,2011,30(3):269-273. 被引量:8
  • 7BABU D S, BABU K G, WEE T H. Properties of lightweight expanded polystyrene aggregate concretes containing fly ash [J]. Cement and Concrete Research, 2005, 35(6).. 1218.
  • 8XU Y, JIANG L, XU J, et al. Mechanical properties of expanded polystyrene lightweight aggregate concrete and brick [J]. Construction and Building Materials, 2012, 27(1) .. 32.
  • 9Zhu H B, Li C, Wang P M, et al. Impact resistance of a novel expanded polystyrene cement-based material [J]. Journal of Wuhan University of Technology Material Science Edition, 2014, 29(2) 284.
  • 10朱洪波,李晨,闫美珠,吴梦雪.水泥-聚苯乙烯轻质材料的制备及抗冲击性[J].同济大学学报(自然科学版),2014,42(5):745-750. 被引量:1

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