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首页> 外文期刊>Procedia Manufacturing >Influence of geometric imperfections and internal damage patterns of thin-walled laminates on failure in Compression-After-Impact testing
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Influence of geometric imperfections and internal damage patterns of thin-walled laminates on failure in Compression-After-Impact testing

机译:几何缺陷和内部损伤模式对薄壁层压材料对压缩后冲击试验失效的影响

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Geometric imperfections are induced in composite structures due to manufacturing and assembly processes as well as due to accidental impacts. These geometric imperfections have an influence on the strength of thin-walled composite structures when impact damage is present. Therefore, the influence of the geometric imperfection magnitude on the failure mechanisms of thin-walled laminates with initial internal damage patterns under Compression-After-Impact testing is investigated by creating a finite element model based on different experimental validations. These experiments are a set of tensile tests, low energy impact tests with a pendulum system to induce the internal damage patterns, ultrasonic scanning of the damaged samples to characterize the delaminated areas and, finally, a set of Compression-After-Impact tests combined with digital imaging correlation data using an ARAMIS 3D measuring system (Gom mbH, Braunschweig, Germany). Compression-After-Impact tests are carried out with a frame modified for thin-walled laminates enabling a more reliable measurement of thin laminates. All these data collected during the experiments and damage inspections are used to build up and validate the simulations with the Finite Element code Abaqus (Dassault Systèmes SA, Paris, France). Finally, potential interactions between global and local failure mechanisms in Compression-After-Impact testing are analyzed with different imperfection magnitudes and interface damage idealizations based on these models. The results show an increase of the failure strength with the initial imperfection magnitude.
机译:由于制造和装配过程以及由于意外的影响,在复合结构中诱导几何缺陷。当存在冲击损伤时,这些几何缺陷对薄壁复合结构的强度有影响。因此,通过基于不同实验验证的有限元模型,研究了在压缩后测试下,研究了几何缺陷幅度对薄壁层压板故障机制的影响。这些实验是一系列拉伸试验,具有摆动系统的低能量冲击试验,以诱导内部损坏图案,超声波扫描损坏的样品来表征分层区域,最后,一组压缩后冲击试验结合了数字成像相关数据使用Aramis 3D测量系统(GOM MBH,Braunschweig,德国)。压缩后冲击试验用用于薄壁层压板的框架进行,使得更可靠地测量薄层层。在实验和损坏检查期间收集的所有这些数据用于建立并验证有限元代码ABAQUS(DassaultSystèmesSA,巴黎,法国)的模拟。最后,通过不同的缺陷幅度和基于这些模型的界面损坏理想,分析了全局和局部故障机制之间的潜在相互作用。结果显示出初始缺陷幅度的故障强度的增加。

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