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Experimental investigation of textile structure reinforced composite leaf spring for their cyclic flexural and creep behaviour

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This work dealt with the investigation of cyclic flexural strength and time dependent creep behavior of E-glass/epoxy-based different textile structure reinforced (chopped fibers, unidirectional (UD), bidirectional plain woven (2D), and 3D woven solid structures (orthogonal and Interlock) composite leaf spring. All textile structures were developed using a rigid rapier mutibeam weaving machine. Four different 3D woven orthogonal structures with varying binder percentage (3, 7, 10, and 13%) were developed to optimize weaving construction parameters for leaf spring application. The 3D orthogonal reinforced composite leaf spring exhibited improved cyclic flexural and creep performance and 3S1B stuffer-binder combination was found with the highest initial flexural strength, lowest drop in cyclic flexural strength and improved creep resistance. UD based composite leaf spring exhibited comparable properties to 3S1B based composite leaf spring. Composite leaf springs were further analyzed for their surface damage (tensile side) due to cyclic flexural loading. Structural variation (binder percentage) of 3D structure reinforced leaf spring has a significant influence on their failure (surface damage) morphology. 3D woven composite leaf spring with minimum binder tow percentage was found to be a potential material for automotive leaf spring from cyclic flexural strength, creep resistance, stiffness retention and failure morphology point of view.
机译:这项工作涉及研究循环弯曲强度和基于E-纤维的不同纺织结构的蠕变性蠕变行为(切碎的纤维,单向(UD),双向平板编织(2D)和3D编织固体结构(正交和互锁)复合叶弹簧。所有纺织结构都是使用刚性剑杆型织机的织机开发的。开发了四种不同的3D编织正交结构,具有不同粘合剂百分比(3,7,10和13%),以优化叶片的编织施工参数春季应用。3D正交增强复合叶弹簧显示出改善的循环弯曲和蠕变性能,并发现循环弯曲强度最高,循环弯曲强度最低的最低降低和改善蠕变性抗骨粘合剂组合。UD基复合叶弹簧表现出可比较基于3S1B的复合板簧的特性。进一步分析了复合叶片弹簧由于循环弯曲负载,它们的表面损坏(拉伸侧)。 3D结构增强板簧的结构变异(粘合剂百分比)对其失效(表面损伤)形态有显着影响。 3D编织复合叶春季具有最小粘合剂丝束百分比,是来自循环弯曲强度,蠕变性,僵硬保留和失效形貌的潜在材料。

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