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Hardfacing Welded ASTM A572-Based, High-Strength, Low-Alloy Steel: Welding, Characterization, and Surface Properties Related to the Wear Resistance

机译:基于ASTM A572的高强度低合金钢表面堆焊:与耐磨性相关的焊接,特征和表面性能

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This work presents the improvement of hardfacing welding for American Society for Testing and Materials (ASTM) A572-based high-strength, low-alloy steel by controlling the heating/cooling conditions of welding process. In the welding process, the buffer and hardfacing layers were welded onto A572-based material by a nickel–chromium electrode and chromium carbide electrode, respectively. The base metal and electrode materials were controlled by the heating/cooling process during the welding to reduce excessive stress, which could result in a crack in the specimens. The welded specimens were examined by visual and penetrant inspections for evaluating the welding quality. The macro–micro structure of the deposited layer was investigated; scanning electron microscope with an energy-dispersive X-ray spectrometer (SEM-EDS) and XRD were used to characterize structural properties, elemental compositions, and crystallite sizes of the welded specimens. The surface properties, such as hardness, impact, and abrasive wear of the welded specimens, were tested for evaluation of the wear resistance of the welded specimens.
机译:这项工作通过控制焊接过程的加热/冷却条件,为基于美国测试和材料协会(ASTM)A572的高强度,低合金钢提出了堆焊的改进方法。在焊接过程中,缓冲层和表面硬化层分别通过镍铬电极和碳化铬电极焊接到A572基材料上。母材和电极材料在焊接过程中通过加热/冷却过程进行控制,以减少过大的应力,这可能会导致试样破裂。通过目视和渗透检查检查焊接的样品,以评估焊接质量。研究了沉积层的宏观结构。具有能量色散X射线光谱仪(SEM-EDS)和XRD的扫描电子显微镜用于表征焊接样品的结构性能,元素组成和微晶尺寸。测试了焊接样品的表面性能,例如硬度,冲击力和磨料磨损,以评估焊接样品的耐磨性。

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