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IN SITU AND REAL TIME X-RAY COMPUTED TOMOGRAPHY FOR THE MICROMECHANICS BASED CONSTITUTIVE MODELLING OF THE UNBONDED FLEXIBLE RISER

机译:基于微力学的本底和实时X射线计算机断层摄影本构模型的无约束柔性立管

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The failure mechanism of the composite flexible riser, comprising a pipe with melt fused carbon fiber tape or pultruded composite rods, is not well understood. As there is change in the configuration of the composite layers and its manufacturing methods, so the bulk material property also changes significantly. To capture the correct material model for global FE analysis, real time x-ray computed tomography was performed while the flexible pipe was being compressed. For developing a constitutive model for the composites, a time series of 3D volume images were analyzed quantifying the local strains responsible for the debonding of the layers and the crack development. These values were then used to understand the inter-layer adhesion leading to correlation between the FE global modelling and experiments capable of capturing the progressive delamination. The resulting global modelling was used to determine the area under compressive loading. The effect of global sea conditions and cumulative damage was noted. A correlation between the global model and experiments can be used to optimize riser performance. This method hopes to capture the overall behavior of flexible pipe under compressive loading.
机译:包括具有熔融熔融碳纤维带或拉挤复合杆的管的复合挠性立管的失效机理尚未被很好地理解。由于复合层的构造及其制造方法发生了变化,因此散装材料的性能也发生了显着变化。为了捕获正确的材料模型以进行整体有限元分析,在压缩挠性管的同时执行了实时X射线计算机断层扫描。为了建立复合材料的本构模型,需要分析3D体积图像的时间序列,以量化负责层剥离和裂纹发展的局部应变。然后将这些值用于了解层间粘附力,从而导致FE全局建模与能够捕获渐进分层的实验之间具有相关性。所得的整体模型用于确定压缩载荷下的面积。注意到了全球海洋状况和累积破坏的影响。整体模型与实验之间的相关性可用于优化立管性能。该方法希望能够捕获柔性管在压缩载荷下的整体性能。

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