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Ultrasonic monitoring of ply crack and delamination formation in composite tube under torsion load

机译:超声作用下复合管中板层裂纹和分层形成的超声监测

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As a simple model of a rotor spar, a circular graphite-epoxy composite laminate cylinder was subjected to cyclic torsional load. The test section of the cylindrical specimen varied from four to six plies of ±45° fibers, due to intentional ply overlaps and gaps. A layer of 13-μm Teflon film was inserted between plies at three locations to serve as delamination initiators. A commercial X-Y scanner was mounted to the load frame to enable ultrasonic inspection without removing the specimen. A focused immersion probe was mounted in a captive water column with a rugged Nitrile membrane tip, which was coupled to the cylinder using a mist of soapy water. The transducer was aligned normal to the cylinder surface using the X-axis. Scanning was performed along the length of the specimen with the Y-axis and the specimen was incrementally rotated by the torsion head of the load frame. After 350k cycles of torsion, several linear 45° diagonal indications appeared as 5–40% attenuation of the back wall echo, with no apparent echoes from the interior of the composite, suggesting through-ply cracks in the innermost ply. Crack indications grew and new cracks appeared as torsion cycling continued. Internal reflections from delaminations associated with the growing ply cracks appeared after 500k cycles. Three areas of extensive multi-layer delaminations appeared after 1150k cycles. Failure of the specimen occurred at 1600k cycles. The observed progressive damage was not associated with the Teflon inclusions. Concurrent thermographic measurements provided lower-resolution confirmation of the damage observed.
机译:作为转子翼梁的简单模型,圆形石墨-环氧树脂复合叠层圆柱体承受了周期性的扭转载荷。由于故意的层间重叠和缝隙,圆柱形试样的测试部分从4层到6层±45°纤维不等。在三个位置的层之间插入一层13μm的Teflon膜层,用作分层引发剂。将商用X-Y扫描仪安装到负载框架上,以进行超声波检查而无需取出样品。将聚焦的浸入式探头安装在带有坚固的腈膜尖端的俘虏水柱中,该尖端使用肥皂水雾连接到圆柱体上。使用X轴将换能器垂直于圆柱面对齐。沿着带有Y轴的样本的长度进行扫描,并且样本通过负载框架的扭转头逐渐旋转。在经过350k次扭转之后,出现了一些线性45°对角线迹象,表明后壁回波衰减了5-40%,复合材料内部没有明显回波,表明最内层的层间裂缝。随着扭转循环的继续,裂纹迹象增加并且出现了新的裂纹。 500k周期后,出现了与层裂不断增长相关的分层内部反射。 1150k循环后出现了三个区域的广泛的多层分层。标本的失效发生在1600k个周期。观察到的进行性损伤与铁氟龙夹杂物无关。同时进行的热像仪测量可对观察到的损坏提供较低分辨率的确认。

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