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Influence of interface properties on fracture behaviour of concrete

机译:界面性能对混凝土断裂性能的影响

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摘要

Hardened concrete is a three-phase composite consisting of cement paste, aggregate and interface between cement paste and aggregate. The interface in concrete plays a key role on the overall performance of concrete. The interface properties such as deformation, strength, fracture energy, stress intensity and its influence on stiffness and ductility of concrete have been investigated. The effect of composition of cement, surface characteristics of aggregate and type of loading have been studied. The load-deflection response is linear showing that the linear elastic fracture mechanics (LEFM) is applicable to characterize interface. The crack deformation increases with large rough aggregate surfaces. The strength of interface increases with the richness of concrete mix. The interface fracture energy increases as the roughness of the aggregate surface increases. The interface energy under mode II loading increases with the orientation of aggregate surface with the direction of loading. The chemical reaction between smooth aggregate surface and the cement paste seems to improve the interface energy. The ductility of concrete decreases as the surface area of the strong interface increases. The fracture toughness (stress intensity factor) of the interface seems to be very low, compared with hardened cement paste, mortar and concrete.
机译:硬化混凝土是一种三相复合材料,由水泥浆,骨料和水泥浆与骨料之间的界面组成。混凝土中的界面对混凝土的整体性能起关键作用。研究了界面特性,例如变形,强度,断裂能,应力强度及其对混凝土刚度和延性的影响。研究了水泥组成,骨料表面特性和荷载类型的影响。载荷-挠度响应是线性的,表明线性弹性断裂力学(LEFM)适用于表征界面。裂纹变形随着大的粗糙集料表面而增加。界面的强度随着混凝土混合物的丰富而增加。界面断裂能随骨料表面粗糙度的增加而增加。模式II载荷下的界面能随骨料表面取向和载荷方向的增加而增加。光滑的骨料表面和水泥浆之间的化学反应似乎改善了界面能。随着韧性界面表面积的增加,混凝土的延展性降低。与硬化的水泥浆,砂浆和混凝土相比,界面的断裂韧性(应力强度因子)似乎很低。

著录项

  • 作者

    Rao Appa G; Prasad Raghu BK;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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