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Influence of laser surface texturing on surface microstructure and mechanical properties of adhesive joined steel sheets

机译:激光表面纹理化对粘合钢板的表面组织和力学性能的影响

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This work discusses the resultant microstructure of laser surface treated galvanised steel and the mechanical properties of adhesively bonded surfaces therein. The surface microstructure obtained at laser intensities between 170 and 1700 MW cm~(-2) exhibit zinc melting and cavity formation. The wavy surface morphology of the treated surface exhibits an average roughness R_a between 1.0 and 1.5 mu m, and a mean roughness depth R_z of 8.6 mu m. Atomic force microscopic analyses revealed that the R_z inside the laser shot cavities increased from 68 to 243 nm when the incident laser intensity was increased from 170 to 1700 MW cm~(-2). X-ray fluorescence analyses were used to measure Zn coating thicknesses as a function of process parameters. Both X-ray fluorescence and X-ray diffraction analyses demonstrated that the protective coating remains at the material surface, and the steel structure beneath was not affected by the laser treatment. Tensile tests under peel strength conditions demonstrated that the laser treated adhesively joined samples had resistance strength up to 88 MPa, compared to a maximum of only 23 MPa for the untreated surfaces. The maximum deformation for rupture was also greatly increased from 0.07 percent, for the original surface, to 0.90 percent for the laser treated surfaces.
机译:这项工作讨论了激光表面处理的镀锌钢的最终微观结构以及其中的粘合表面的机械性能。在170至1700 MW cm〜(-2)的激光强度下获得的表面微观结构表现出锌的熔化和空洞的形成。处理过的表面的波状表面形态表现出在1.0至1.5μm之间的平均粗糙度R_a,以及在8.6μm之间的平均粗糙度R_z。原子力显微镜分析表明,当入射激光强度从170 MW cm〜(-2)增加时,激光发射腔内的R_z从68 nm增加到243 nm。使用X射线荧光分析来测量Zn涂层厚度与工艺参数的关系。 X射线荧光和X射线衍射分析均表明,保护涂层保留在材料表面,并且下方的钢结构不受激光处理的影响。在剥离强度条件下的拉伸试验表明,经激光处理的粘合连接样品具有高达88 MPa的电阻强度,而未经处理的表面的最大值仅为23 MPa。断裂的最大变形也从原始表面的0.07%大大提高到了激光处理表面的0.90%。

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