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Through-thickness stress sensing of a carbon fiber polymer-matrix composite by electrical resistance measurement

机译:通过电阻测量感测碳纤维聚合物基复合材料的全厚度应力

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Through-thickness stress self-sensing in a quasi-isotropic carbon fiber epoxy-matrix composite by in-plane electrical resistance measurement is effective. The resistance decreases reversibly upon through-thickness compression conducted up to 67 MPa, due to an increase in the proximity between adjacent laminae. The sensing can be attained by measuring the surface resistance in the direction of the surface fibers or by measuring the volume resistance in essentially any in-plane direction. The sensing is ineffective if the transverse surface resistance is the quantity measured, due to the dominance of the surface fibers in governing the surface resistance. In the case of the longitudinal surface resistance, the decrease in resistance upon compression has a slight irreversible component, due to an irreversible increase in the proximity between adjacent laminae and the consequent increase in the degree of current penetration. This effect is smaller for the longitudinal or transverse volume resistance. The variability of the resistance from area to area in the same laminate is larger for the surface resistance than the volume resistance, due to its higher sensitivity to current spreading. The sensitivity of stress sensing, as described by the fractional change in resistance per unit through-thickness compressive stress, is -10(-5) MPa-1. The magnitude of the effectiveness is lower for the resistance away from the stressed region than that at the stressed region.
机译:通过面内电阻测量,在准各向同性碳纤维环氧树脂基复合材料中,贯穿厚度的应力自感应是有效的。在进行高达67 MPa的贯穿厚度压缩后,由于相邻薄片之间的距离增加,电阻可逆地降低。可以通过在表面纤维方向上测量表面电阻或通过在基本上任何平面内方向上测量体积电阻来实现检测。如果横向表面电阻是所测量的量,则由于表面纤维在控制表面电阻方面的优势而导致检测无效。在纵向表面电阻的情况下,由于相邻薄片之间的不可逆性增加以及由此导致的电流渗透程度的增加,压缩时电阻的降低具有轻微的不可逆成分。对于纵向或横向体积阻力,该效应较小。由于其对电流扩展的较高敏感性,在同一层压制品中,表面电阻的电阻变化比体积电阻的电阻变化大。应力感测的灵敏度为-10(-5)MPa-1,如通过每单位厚度压缩应力的电阻变化的百分比所描述。远离受应力区域的电阻的有效性幅度低于受应力区域的电阻。

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