Effects of surface roughness on the microstructure and mechanical properties of dissimilar sapphire/Invar36 alloy joints made by ultrashort pulsed laser micro-welding

Meng Yang, Qing Jiang, Xiang Zhang, Ming Wu, Tao Zhang, Rui Pan, Peng Li, Sumei Wang, Jin Yang
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Abstract

The ultrashort pulsed (USP) laser microwelding of sapphire/lnvar36 alloy controlled by the surface roughness of metal was investigated for the first time. The surface roughness (Sa) of Invar alloys gradually decreased from 0.944 to 0.029 μm from the prime surface to grounded and polished surface. However, the joint shear strength first increased and then decreased with the lowered Sa, the maximum shear strength reached 107.87 MPa at the Sa ∼ 0.131 μm. Compared to other surfaces with low Sa, the relatively high surface roughness enhanced the interfacial thermal deposition both spatially and temporally which in turn promoted the diffusion of interface elements and the formation of jagged mechanical interlocking structures. Therefore, the appropriate rough metal surface was beneficial for the enhancement of sapphire/metal dissimilar joints. This report is of great significance in simplifying the surface preparation process in the USP laser microwelding of transparent hard and brittle materials with metals, therefore promoting this technique from lab to industry.
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表面粗糙度对通过超短脉冲激光微焊接制造的蓝宝石/英瓦尔36合金异种接头的微观结构和机械性能的影响
首次研究了由金属表面粗糙度控制的蓝宝石/英瓦尔 36 合金的超短脉冲 (USP) 激光微焊接。英瓦尔合金的表面粗糙度 (Sa) 从原始表面到研磨抛光表面从 0.944 μm 逐渐降低到 0.029 μm。然而,随着 Sa 的降低,接头剪切强度先升高后降低,当 Sa ∼ 0.131 μm 时,最大剪切强度达到 107.87 MPa。与其他低 Sa 表面相比,相对较高的表面粗糙度在空间和时间上都增强了界面热沉积,进而促进了界面元素的扩散和锯齿状机械互锁结构的形成。因此,适当粗糙的金属表面有利于增强蓝宝石/金属异种接合。本报告对于简化美国药典激光微焊接透明硬脆材料与金属的表面制备过程具有重要意义,从而将这项技术从实验室推广到工业领域。
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