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硅酸盐通报 ›› 2017, Vol. 36 ›› Issue (5): 1750-1754.

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多孔生态混凝土性能试验研究

全洪珠;沈杨;周广兴;逄增铭;杨亚楠   

  1. 青岛农业大学建筑工程学院,青岛,266109;青岛理工大学土木工程学院,青岛,266033
  • 出版日期:2017-05-15 发布日期:2021-01-18
  • 基金资助:
    青岛市建设事业科技发展专项(JK2014-20)%青岛农业大学2014年大学生科技创新项目(201510435025)

Experimental Study on Performance of Eco-porous Concrete

QUAN Hong-zhu;SHEN Yang;ZHOU Guang-xing;PANG Zeng-ming;YANG Ya-nan   

  • Online:2017-05-15 Published:2021-01-18

摘要: 多孔生态混凝土物理力学性能受配合比因素影响,为找出对应影响规律,本文制备不同水胶比、不同目标孔隙率的多孔生态混凝土,测试其物理力学性能.利用制备的多孔混凝土,设计试种试验,从6组草种中筛选出适宜多孔生态混凝土建植使用的草种.结果证明,多孔生态混凝土早期强度低,目标孔隙率越高,密实程度越低的多孔生态混凝土,成型后抗压强度越低,且其强度受水胶比影响更小.水胶比越高,制备的多孔生态混凝土实测孔隙率越高.试验所用草种中除狗牙根、紫羊茅与细弱剪股颖三种草种不适应多孔生态混凝土生长环境,其他草种均表现出良好适应性,其中,高羊茅最适宜作为多孔生态混凝土建植草种.

关键词: 多孔生态混凝土;抗压强度;孔隙率;草种

Abstract: To find out the influence rule of mixing proportions on performance of eco-porous concrete, eco-porous concrete with different water-binder ratio and design porosity were produced and tested, and the mechanical properties were tested.Planting test was implemented to find the suitable one from 6 tested species.In conclusion, eco-porous concrete has lower strength in early age and higher target porosity.Compressive strength decreases with the design porosity.Strength and water-binder ratio prove to have weaker relationship for low density eco-concrete.Tested porosity increases with water-binder ration.All tested grass species grew normally in eco-porous concrete except Bermuda, Red Fescue and Agrostis tenuis, and Tall Fescue is best fit for eco-porous concrete.

Key words: eco-porous concrete;compressive strength;porosity;grass species

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