首页> 外文会议>ASME international manufacturing science and engineering conference 2011 >STUDYING EFFECTS OF ARC DISCHARGE SURFACE TEXTURING ON STRESS DISTRIBUTION IN ADHESIVELY BONDED JOINTS BY USING FINITE ELEMENT MODELING
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STUDYING EFFECTS OF ARC DISCHARGE SURFACE TEXTURING ON STRESS DISTRIBUTION IN ADHESIVELY BONDED JOINTS BY USING FINITE ELEMENT MODELING

机译:有限元模拟研究电弧放电表面纹理对胶接节点应力分布的影响

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This study investigates the potentiality of using atmospheric-pressure Direct Current (DC) plasma arc discharge as a surface treatment method of aluminum alloys in adhesively bonded joints in order to enhance adhesion. The surface morphology exposed to the arc for the current of 40 A (low intensity) and the plasma torch scanning speeds between 20 and 120 mm/s, exhibits a micro-scale surface roughness appropriate for adhesive bonding. The arc textured surfaces are characterized by using an optical profilometer. Additionally, the effect of modified surface on the stress distribution throughout the single-lap adhesively bonded joint in tension is explored by 2D FEM. The geometrical model for FE analysis of adhesively bonded structure is generated by including the surface texture coordinates obtained from the optical profilometer.
机译:这项研究调查了使用大气压直流(DC)等离子弧放电作为铝合金在胶合接头中进行表面处理的方法的潜力,以增强粘合力。在电流为40 A(低强度)和等离子炬扫描速度为20至120 mm / s的情况下,暴露于电弧的表面形态显示出适合于粘合剂粘结的微观表面粗糙度。弧形表面的特征是使用光学轮廓仪。此外,二维有限元分析探讨了改性表面对整个单圈胶粘接头在拉伸过程中应力分布的影响。通过包括从光学轮廓仪获得的表面纹理坐标,可以生成用于粘合结构的有限元分析的几何模型。

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