Analysis of the Effects of ZrO2 Nanoparticles on the Penetration in GMAW Process

Farzad Pahnaneh, M. Aghakhani, Farid Naeemi
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Abstract

In this study, ZrO2 Nano-particles to improve the geometry and increased penetration welding has been used on the St37 sheet, in GMAW process. In the GMAW process of selecting appropriate values for the input parameters necessary in order to achieve weld is high with appropriate geometry and penetration. Since the stress-bearing capacity of the weld geometry, weld quality and also has an important role in determining the mechanical properties of the weld. In this study, the effects of voltage, wire feed speed, distance nozzle to the work piece, welding speed and coating thickness of ZrO2 Nano particles is intended as input parameters. The first, for coating Nano particles with specific dimensions on the surface of parts to be coated welding operation. After welding the weld penetration depth was evaluated. increasing the depth of penetration of the active coating on the surface (Nano zirconium oxide), which place the mechanisms leading to increased focus and arc current density at the top of the arc. Marangoni has also changed from negative to positive flow direction, the depth of penetration is increased. The results showed that fixed taking into account the input parameters and increase the coverage of ZrO2 Nano-particles on the surface to thickness 0.75 mm, weld penetration depth compared to non-Nano scale zirconium oxide coating has been increased. in addition to the effect of ZrO2 nanoparticles as a coating surface-active and increase the depth of penetration, such particles can cause tiny inclusions inside the structure weld, nucleation centers has been caused for the formation of acicular ferrite.
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ZrO2纳米颗粒对GMAW过程渗透性能的影响分析
在本研究中,在GMAW工艺中,将ZrO2纳米颗粒用于St37板材上,以改善几何形状并增加焊深。在GMAW过程中选择适当的输入参数值是必要的,以达到焊缝高且具有适当的几何形状和焊透性。由于焊缝几何形状的承载能力、焊缝质量对焊缝的力学性能也有重要的决定作用。在本研究中,将电压、送丝速度、喷嘴到工件的距离、焊接速度和ZrO2纳米颗粒涂层厚度作为输入参数。首先,将具有特定尺寸的纳米颗粒涂覆在待涂焊件表面进行操作。焊接后对焊深进行了评价。增加表面活性涂层(纳米氧化锆)的渗透深度,从而在电弧顶部放置导致焦点和电弧电流密度增加的机制。马兰戈尼的流动方向也由负向正转变,穿透深度增加。结果表明,考虑输入参数的固定,增加ZrO2纳米颗粒在表面的覆盖厚度至0.75 mm,焊缝熔透深度较非纳米级氧化锆涂层有所提高。ZrO2纳米颗粒除了起到镀层表面活性和增加渗透深度的作用外,此类颗粒还能在焊缝内部造成微小的夹杂物组织,造成成核中心形成针状铁素体。
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