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Prediction of composite layer thickness for Type Ⅲ hydrogen pressure vessel at the dome part

机译:圆顶部件Ⅲ型氢气压力容器复合层厚度的预测

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A Type III hydrogen pressure vessel composed of an aluminum liner and composite layers was analyzed, and the rapidly varying thickness of composite layers at the dome part was precisely estimated. As each helical winding angle leads to a different coverage area on a liner and hoop winding controls the composite thickness at the junction of the cylinder and dome parts, the thickness between the cylinder and dome parts varies considerably. The filament overhead induces errors in the dome thickness prediction and affects finite element modeling. Here, the effect of geometric changes in composite layers on the filament overhead was estimated, and the composite thickness of a Type III hydrogen pressure vessel at the dome part was analytically predicted. The effect of precise thickness prediction at the junction and dome parts was verified using a finite element analysis.
机译:分析了由铝衬里和复合层组成的III型氢气压力容器,并且精确地估计了圆顶部分的复合层的快速变化的厚度。 由于每个螺旋绕组角导致衬里上的不同覆盖区域和箍绕组控制圆筒和圆顶部件的连接处的复合厚度,圆筒和圆顶部件之间的厚度很大。 灯丝开销在圆顶厚度预测中引起误差,并影响有限元建模。 这里,估计了复合层对灯丝开销上的几何变化的影响,分析了圆顶部分的III型氢气压力容器的复合厚度。 使用有限元分析验证了在结和圆顶零件处的精确厚度预测的影响。

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