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Transverse shear stiffness of corrugated core steel sandwich panels with dual weld lines

机译:双焊缝波纹钢芯夹芯板的横向剪切刚度

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Advances in the field of laser welding have recently enabled the commercial production of all-steel sandwich panels with a continuous and robust connection between the core and the face plates, even for plate thicknesses over 10 mm. This allows for the application of the high-performance steel sandwich panel in several fields, such as civil structures. In this paper, an analytical model is presented to determine the transverse shear stiffness of corrugated core steel sandwich panels with dual weld lines. The derivation is based on the direct stiffness method (DSM). At the welded connection between the core and the faces, a rotational spring is included in the structural model, as the idealised rigid connection is unable to properly capture the mechanical interaction between the constituent plates. Both bending and shear deformation in the cross-sectional constituent members is taken into account. The model is shown to have high precision in terms of predicting the transverse shear stiffness when compared with numerical analyses. Furthermore, high precision is also shown when it comes to predicting normal stresses in the constituent members of the panel with respect to shear action. In a case study included in this paper, the impact of having two weld lines compared with a single weld was studied, together with the effect of the distance between the welds. The results show a large impact with respect to shear stiffness and stresses in the constituent plates. This paper focuses on laser-welded corrugated core steel sandwich panels, but the presented model can also be used for analyses of general continuous core shapes and other isotropic materials.
机译:激光焊接领域的进步最近使得商业化生产全钢夹心板成为可能,即使在板厚超过10 mm的情况下,芯板和面板之间仍具有连续而牢固的连接。这使得高性能钢夹芯板可以在民用建筑等多个领域中得到应用。在本文中,提出了一种分析模型来确定具有双焊接线的瓦楞芯钢夹芯板的横向剪切刚度。该推导基于直接刚度法(DSM)。在型芯和端面之间的焊接连接处,结构模型中包括旋转弹簧,因为理想的刚性连接无法正确地捕获组成板之间的机械相互作用。横截面组成构件中的弯曲变形和剪切变形都被考虑在内。与数值分析相比,该模型在预测横向剪切刚度方面具有很高的精度。此外,当预测面板的组成构件中相对于剪切作用的法向应力时,也显示出很高的精度。在本文包括的一个案例研究中,研究了两条焊缝与一条焊缝相比的影响,以及焊缝之间距离的影响。结果表明,对组成板中的剪切刚度和应力有很大的影响。本文着重于激光焊接波纹芯钢夹芯板,但该模型也可用于分析一般连续芯形状和其他各向同性材料。

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