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Memorizing maximum strain in carbon-fiber-reinforced plastic composites by measuring electrical resistance under pre-tensile stress

机译:通过测量预拉伸应力下的电阻来记忆碳纤维增强塑料复合材料的最大应变

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Electrical resistance change of fiber-reinforced plastics including continuous carbon fibers has been characterized in tensile tests, in order to provide the composite with the ability to memorize maximum strain. The composites were designed to exhibit obvious residual resistance resulting from fiber fracture, by which maximum strain was memorized after loading-unloading cycles. The composite with a lower volume fraction of carbon fibers was found to be suitable for showing larger resistance change in wider strain range. In order to maintain the increased resistance even after unloading, it was proposed to utilize the composites under pre-stressed condition. The cyclic tensile tests revealed that the pre-stressed composites indicated good sensitivity concerning lower detectable strain limit of less than 0.05 percent and remarkable residual resistance which brought about memorizing accuracy within + - 1 percent. The applicability of the memorizing capability was demonstrated in a bending test for a concrete beam including the pre-stressed composite.
机译:为了使复合材料具有记忆最大应变的能力,已经在拉伸试验中表征了包括连续碳纤维的纤维增强塑料的电阻变化。复合材料的设计显示出明显的由纤维断裂引起的残余电阻,通过这种断裂记忆了最大的应变。发现具有较低碳纤维体积分数的复合材料适合在较宽的应变范围内显示较大的电阻变化。为了即使在卸载后仍保持增加的阻力,提出了在预应力条件下使用复合材料。循环拉伸试验表明,预应力复合材料具有良好的灵敏度,可检测到的下限低于0.05%,残余电阻显着,因此记忆精度在+ 1%之内。在包括预应力复合材料的混凝土梁的弯曲试验中证明了记忆能力的适用性。

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