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Effect of Boundary Condition on Impact Response and Damage Meso-mechanism for Scarf Bonded Repair of Load-bearing Composite Structures

机译:边界条件对承载组合结构围巾粘结修复的冲击响应和损伤细观机制的影响

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摘要

Composite scarf repair is applied in airplane load-bearing structures.But the repairs would have different boundary supports in real situation,such as simply support,clamped support and flexible support.With different boundary supports,the bonded scarf repair of composite structures could have diverse damage mechanisms and responses.This work intends to study the impact performance of different boundaries.For this purpose,experimental tests were carried out on the specimens with two sides support and four sides support.The impact load and deflection was monitored during the tests.After impact being finished,the meso-mechanism was studied by means of micro-cracks of the side section for two sides support condition and cross section for the four sides support condition.It was possible to conclude that the four sides boundary possess higher impact resistance maximum loads,lower displacements and lower extent load dropping.In terms of damage modes,as the impact energy relative low 12 J and 16 J,the central position of scarf bonding zone for two sides support appears adhesive cohesive failure and adhesive-composite interface failure.When the energy increases to 20 J,the dominated damage of two sides support moves down to the feathered tip.For four sides support,the critical energy level is 25 J,under which the scarf adhesive begins to be damaged.
机译:飞机承重结构中采用了复合式围巾修补方法,但是在实际情况下,修补会具有不同的边界支撑,例如简单支撑,夹紧式支撑和柔性支撑。结合不同的边界支撑,复合结构的粘结式围巾修补可能具有多种多样的边界支撑。这项工作旨在研究不同边界的冲击性能。为此,在具有两个侧面支撑和四个侧面支撑的样本上进行了实验测试,在测试过程中监控了冲击载荷和挠度。冲击完成后,通过两侧支撑条件下的侧面截面和四边支撑条件下的截面的微观裂纹研究了细观机理。可以得出结论,四边形边界具有更高的抗冲击强度载荷,较小的位移和较小的载荷下降。就损伤模式而言,由于冲击能量相对较低,为12 J和16 J时,两侧支架的丝巾粘结区的中心位置出现粘合内聚破坏和粘合剂-复合材料界面破坏。当能量增加到20 J时,两侧支架的主要损伤向下移动到羽状尖端。支撑,临界能级为25 J,在此之下,围巾胶开始受损。

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  • 来源
    《国际设备工程与管理(英文版)》 |2018年第1期|7-17|共11页
  • 作者单位

    School of Aeronautics,Northwestern Polytechnical University,Xi'an 710072,China;

    School of Aeronautics,Northwestern Polytechnical University,Xi'an 710072,China;

    School of Aeronautics,Northwestern Polytechnical University,Xi'an 710072,China;

    School of Aeronautics,Northwestern Polytechnical University,Xi'an 710072,China;

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  • 入库时间 2022-08-18 03:12:59
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