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Monotonic and hysteretic pullout behavior of superelastic SMA fibers with different anchorages

机译:不同锚固度的超弹性SMA纤维的单调和滞后拉伸行为

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The aim of this study is to assess the pullout resistance of superelastic shape memory alloy (SMA) short fibers with different end shapes, which provide different anchoring actions, through monotonic and hysteretic pullout tests. For this study, NiTi superelastic SMA wire with a diameter of 1.0 mm was prepared and cut by a length of 40 mm to make SMA short fibers. Four types of SMA fibers with different end shapes were manufactured namely: 1) straight end shape, 2) crimped end, 3) bended end with L-shape, and 4) spearhead end. The straight end-shaped fiber was one without any anchoring action on the end part. The crimped fiber had grooves on the two sides manufactured by crimping an end part of 5 mm. The end-bended fiber had an L-shaped end with a 30 bending angle. The fiber with a spearhead was manufactured by pressing the end part of 5 mm. The pullout tests of the fibers from the mortar matrix were first monotonically conducted with displacement control, and the hysteretic pullout behavior was obtained by 4 cyclic loadings. The L-shaped fibers increased the pullout resistance significantly compared with the straight and crimped fibers. However, they did not reach the upper plateau stress of the SMA fiber to induce state transformation. Only the fibers with a spearhead end exceeded the stress for the state transformation because they provided sufficient anchoring resistance due to the spearhead. The maximum pullout resistance of the spearhead fiber was 3.74 times that of the L-shaped fiber. Moreover, they showed flag-shaped behavior during the hysteretic tests. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是通过单调和滞后拉拔测试评估具有不同端部形状的超弹性形状记忆合金(SMA)短纤维的拉拔阻力,这些短纤维提供不同的锚固作用。对于本研究,准备了直径为1.0 mm的NiTi超弹性SMA线,并切成40 mm的长度以制成SMA短纤维。制造了四种具有不同末端形状的SMA纤维,即:1)直头形状,2)卷曲端,3)L形弯曲端和4)矛头端。笔直的端部形状的纤维是在端部没有任何锚固作用的一种。卷曲纤维在其两侧具有通过卷曲5mm的端部而制造的凹槽。端部弯曲的纤维具有弯曲角度为30°的L形端部。通过按压5mm的末端部分来制造具有矛头的纤维。首先通过位移控制对砂浆基体中的纤维进行拉拔试验,并通过4次循环载荷获得滞后拉拔行为。与直纤维和卷曲纤维相比,L形纤维显着提高了抗拔出性。但是,它们没有达到SMA纤维的上平台应力来诱导状态转变。只有带有矛头末端的纤维才超过状态转换的应力,因为由于矛头,它们提供了足够的锚固阻力。矛头光纤的最大抗拔强度是L形光纤的3.74倍。此外,他们在磁滞测试中表现出旗状的行为。 (C)2016 Elsevier Ltd.保留所有权利。

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