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A new experimental investigation into the effects of reinforcing mortar beams with superelastic SMA fibers on controlling and closing cracks

机译:用超弹性SMA纤维加固砂浆梁对控制和封闭裂缝影响的新实验研究

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摘要

This study assessed the performance of short fibers made of superelastic shape memory alloy (SE SMA) to close cracks in mortar beams. Four types of fibers were considered. Five types of cement mortar beams were manufactured. Four of these specimen types included superelastic SMA fibers such that each one was made with only one type of SMA fiber as well as steel bar, and the other specimen type was made with only a steel bar. The self crack-closing capacity of the beams was investigated by comparing deflections upon loading and unloading through studying the post-cracking behavior. Results showed that the mortar beams resist flexural force until a crack is generated. Thereafter, the flexural load is sustained by the SE SMA fibers. Spearhead (SH) fiber provides the best self-centering behavior. A good crack recovery capacity cannot be achieved because there is a lake of flag-shaped behavior as the stress induced in the fiber does not hit the upper plateau stress due to fiber slip. The beam with only a steel bar showed a better recovery ratio than other types. For flexural crack control, a perfect bond between the SE SMA short fibers and the mortar matrix is needed to generate self-centering capacity.
机译:这项研究评估了由超弹性形状记忆合金(SE SMA)制成的短纤维封闭砂浆梁裂缝的性能。考虑了四种类型的纤维。制造了五种类型的水泥砂浆梁。这些样本类型中有四种包括超弹性SMA纤维,因此每种样本都仅由一种类型的SMA纤维和钢筋制成,而另一种样本仅由钢筋制成。通过研究开裂后的行为,通过比较加载和卸载时的挠度来研究梁的自闭合能力。结果表明,砂浆梁抵抗弯曲力,直到产生裂纹为止。此后,SE SMA纤维承受弯曲载荷。矛头(SH)纤维具有最佳的自定心性能。不能获得良好的裂纹恢复能力,因为存在一个旗状的色带,因为在纤维中引起的应力不会由于纤维打滑而达到上平台应力。仅带有钢筋的梁显示出比其他类型更好的回收率。为了控制弯曲裂纹,SE SMA短纤维和砂浆基质之间需要完美结合,以产生自定心能力。

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