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Experimental and numerical investigations of a thermoplastic composite (carbon/PPS) thermoforming

机译:热塑性复合材料(碳/ PPS)热成型的实验和数值研究

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摘要

For lightweight structural components, continuous fibre-reinforced thermoplastic composites have demonstrated success in aerospace and defence applications. Their mechanical behaviour is a result of the possible sliding and interactions between the fibres, but the complex deformation mechanisms of this sheet are a main problem in the practical thermoforming process. In this context, a large experimental work was developed to analyse the behaviour of a 5-harness satin weave carbon–polyphenylenesulfide (PPS) composite. Firstly, we started this work with a microscope observation of the sheet cross section and a thermo-gravimetric analysis of carbon/PPS to understand the thermal condition in the forming process, the reinforcement (fibre and yarn) geometry and dimensions and the textile reinforcement architectures. Secondly, in high temperature conditions (at 320�C), static uniaxial and biaxial tensile tests were carried out. During these mechanical tests, we used a digital image stereo-correlation technique to get full field displacement measurements and an infrared camera to measure the temperature in the surface of sample.udThe results of the experimental investigation were used with the commercial software ABAQUS to develop a numerical model of stamp thermoforming operation. The stamp thermoforming part was developed using a hemispherical punch and compared with an experimental result. In the deformed part obtained by thermoforming of the carbon/PPS sheet, we analysed the instability phenomena such as wrinkling.
机译:对于轻质结构部件,连续纤维增强热塑性复合材料已在航空航天和国防应用中取得成功。它们的机械性能是纤维之间可能发生滑动和相互作用的结果,但是该片的复杂变形机制是实际热成型过程中的主要问题。在这种情况下,开展了一项大型实验工作,以分析5线缎纹碳-聚苯硫醚(PPS)复合材料的性能。首先,我们通过显微镜观察片材的横截面以及对碳/ PPS进行热重分析来开始这项工作,以了解成型过程中的热工况,增强材料(纤维和纱线)的几何形状和尺寸以及织物增强结构。其次,在高温条件下(320°C),进行了静态单轴和双轴拉伸试验。在这些机械测试过程中,我们使用了数字图像立体相关技术进行了全场位移测量,并使用了红外摄像机测量了样品表面的温度。 ud将实验研究的结果与商用软件ABAQUS一起使用,以开发冲压热成型操作的数值模型。使用半球形冲头开发了印模热成型零件,并将其与实验结果进行了比较。在通过碳/ PPS板的热成型获得的变形部分中,我们分析了不稳定性现象,例如起皱。

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