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Tension stiffening effect and bonding characteristics of chemically prestressed concrete under tension

机译:化学预应力混凝土在拉伸状态下的拉伸刚度效应和粘结特性

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摘要

The tension stiffening effect of chemically prestressed concrete (CPC) under uniaxial tension was experimentally investigated and compared with those of reinforced concrete (RC). A special specimen profile was designed to avoid the effect from end parts. The tension stiffening of both RC and CPC were compared with the current tension stiffening model. The crack pattern was observed after loading. The results show that the CPC has superior tension stiffening than RC and the conventional model for RC substantially underestimates the tension stiffening of CPC. In addition, the number of cracks in CPC is less than in RC at the same load. Further investigation on bonding characteristics of CPC under tension was subsequently conducted. Effects of cross section's size and amount of expansive additive were also investigated. The strain distribution of rebar was measured from strain gages attached with 20 mm interval. Local bond, slip and average bond stress were then calculated. The results show that bond of CPC near loading end is higher than that of RC, although the average bond is almost same. The results of this study can partly explain some of unique tensile properties of CPC which can be related to its cracking resistance.
机译:实验研究了化学预应力混凝土(CPC)在单轴拉伸下的拉伸刚度效果,并将其与钢筋混凝土(RC)进行了比较。设计了特殊的试样轮廓,以免受到末端部件的影响。将RC和CPC的拉伸刚度与当前的拉伸刚度模型进行了比较。加载后观察到裂纹图案。结果表明,CPC比RC具有更好的拉伸刚度,而传统的RC模型大大低估了CPC的拉伸刚度。此外,在相同载荷下,CPC中的裂纹数量少于RC中的裂纹数量。随后对CPC在张力下的粘结特性进行了进一步研究。还研究了横截面尺寸和膨胀添加剂用量的影响。从间隔20 mm的应变计测量钢筋的应变分布。然后计算局部粘结,滑移和平均粘结应力。结果表明,尽管平均粘结力几乎相同,但靠近载荷端的CPC的粘结力要高于RC的粘结力。这项研究的结果可以部分解释CPC的一些独特拉伸性能,这可能与其抗裂性有关。

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