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Improving Impact Toughness for Welding Joints of Steel by Adding TiO2 Nanoparticales

机译:通过添加TiO2纳米粒子改善钢焊接接头的冲击韧性

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The using of nanotechnology in the welding process has great importance in developing the mechanical properties of welding joints for metals. This paper investigated the effect of addition TiO2 NPs to welding joints to improving the Impact toughness property of the welding joints. The cold spray coating method of the nanoparticles are used to adding the TiO2 NPs to the welding joints during the welding process. Three weight fraction are used for TiO2 NPs (0.75%, 1.5%, and 2%). The testing samples were prepared for Impact test, and microstructure by SEM. The results show the increasing in Impact toughness of welded joints with an increase of TiO2 NPs concentrations. The average Impact toughness for the welded sample without TiO2 NPs. was (162.4 J), while the average Impact toughness for the welded sample with (1.5)% TiO2 NPs. was (231.2 J) with improving rate of (42.36%). The Microstructure images by SEM show the adding of TiO2 NPs decreases the grain size and homogenous region in welded joints cross-section compared with a sample without adding TiO2 NPs. The EDS analysis show that increase Ti contain and decrease (Mn and Si) contain with increase TiO2 NPs.
机译:在焊接过程中使用纳米技术在开发金属焊接接头的力学性能方面具有重要意义。本文研究了加法TiO2 NP与焊接接头的效果,以改善焊接接头的冲击韧性特性。纳米颗粒的冷喷涂方法用于在焊接过程中将TiO 2 NP添加到焊接接头中。三个重量级分用于TiO2 NPS(0.75%,1.5%和2%)。通过SEM制备测试样品进行冲击试验和微观结构。结果表明,焊接接头的冲击韧性随着TiO2 NPS浓度的增加而增加。没有TiO2 NPS的焊接样品的平均冲击韧性。是(162.4 j),而用(1.5)%TiO2 NPS的焊接样品的平均冲击韧性。是(231.2 j)提高率(42.36%)。通过SEM的微观结构图像表明,与样品相比,TiO2 NP的添加减少了焊接接头横截面中的晶粒尺寸和均匀区域,而无需添加TiO2 NPS。 EDS分析表明,增加Ti含有和减少(Mn和Si)含有增加的TiO2 NPS。

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