首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >ON BUCKLING COLLAPSE OF A FUSION-WELDED ALUMINUM-STIFFENED PLATE STRCUTURE: EXPERIMENTAL AND NUMERICAL STUDIES
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ON BUCKLING COLLAPSE OF A FUSION-WELDED ALUMINUM-STIFFENED PLATE STRCUTURE: EXPERIMENTAL AND NUMERICAL STUDIES

机译:熔铝加筋板结构屈曲塌陷的实验和数值研究

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The primary objective of the present paper is to experimentally examine buckling collapse characteristics of fusion welded aluminum-stiffened plate structures under axial compression until and after the ultimate limit state is reached. The secondary objective of the paper is to study a nonlinear finite element method modeling technique for computing the ultimate strength behavior of welded aluminum structures. A set of aluminum-stiffened plate structures fabricated by gas metal arc welding (GMAW) is studied. The test structure is equivalent to a full scale deck structure of an 80m long high speed vessel. Plate part of the structures is made of 5383-H116 aluminum alloy while extruded stiffeners are made of 5083-H112 aluminum alloy. Welding induced initial imperfections such as plate initial deflection, column type global initial deflection of stiffeners, sideways initial distortion of stiffeners, welding residual stresses, and softening in the heat-affected zone are measured. The ANSYS nonlinear finite element method is employed for the numerical computations of the test structure's ultimate strength behavior by a comparison with experimental data. Insights and conclusions developed from the present study are documented.
机译:本文的主要目的是通过实验研究在轴向压缩作用下直至达到最终极限状态后的铝箔焊接结构的屈曲塌陷特性。本文的第二个目的是研究一种非线性有限元方法建模技术,用于计算焊接铝结构的极限强度行为。研究了一组通过气体保护金属电弧焊(GMAW)制成的铝加劲板结构。测试结构等效于80m长的高速船的全尺寸甲板结构。结构的板部分由5383-H116铝合金制成,而挤压的加强筋则由5083-H112铝合金制成。测量了焊接引起的初始缺陷,例如板的初始挠度,加劲肋的柱型整体初始挠度,加劲肋的侧向初始变形,焊接残余应力以及热影响区的软化。通过与实验数据的比较,采用ANSYS非线性有限元方法对测试结构的极限强度行为进行数值计算。从本研究中得出的见解和结论均已记录在案。

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