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Self-sensing of Damage in Carbon Fiber Polymer-Matrix Composite Cylinder by Electrical Resistance Measurement

机译:碳纤维聚合物基复合材料圆柱体的电阻自感测量

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Self-sensing of damage, as attained by electrical resistance measurement, was found to be effective in a carbon fiber polymer-matrix composite cylinder made by filament winding. Resistance was measured in the axial, radial, oblique, and circumferential directions by using circumferential or axial electrical contacts on the outer and/or inner surfaces of the cylinder. Minor damage upon drop impact at 10 J or below caused the radial resistance to decrease irreversibly, whereas major damage upon drop impact above approx = 10 J caused the radial, oblique, and axial resistances to increase irreversibly. The circumferential resistance ratio (ratio of the circumferential resistance of a damaged area to that away from the damaged area) was most sensitive, increasing monotonically with impact energy >1.4J.
机译:通过电阻测量获得的损伤的自感被发现在通过细丝缠绕制成的碳纤维聚合物-基质复合圆筒中是有效的。通过在圆柱体的外表面和/或内表面上使用圆周或轴向电触点,在轴向,径向,倾斜和圆周方向上测量电阻。跌落冲击在10 J或更低时的轻微损坏导致径向阻力不可逆地降低,而跌落冲击在大约= 10 J以上时的重大损坏导致径向,倾斜和轴向阻力不可逆地增加。圆周电阻比(损坏区域的圆周电阻与远离损坏区域的圆周电阻之比)最敏感,当冲击能量> 1.4J时单调增加。

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