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首页> 外文期刊>Journal of Materials Processing Technology >Microstructural and mechanical evaluation of submerged arc welded HSLA 4135 steel by modeled and manufactured granular Cr-Mo bonded active basic flux
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Microstructural and mechanical evaluation of submerged arc welded HSLA 4135 steel by modeled and manufactured granular Cr-Mo bonded active basic flux

机译:通过建模和制造的粒状CR-MO键合活性碱性通量模拟弧形焊接HSLA 4135钢的微观结构和机械评价

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摘要

Bead-on-plate submerged arc welding was performed on the AISI 4135 heat-treatable low-alloy (HTLA) steel using S2 welding wire and granular Cr-Mo basic flux. The Cr-Mo active flux was produced by the bonded-unfused method. The alloying elements were introduced into the weld metal by active flux. Two methods were introduced for calculating the recovery rate (eta) of the alloying elements. Moreover, by defining the slag factor (alpha) of the process and. of the alloying elements, the amount of a specific element transferred from flux into WM was calculated by the proposed equation. Likewise, microstructure evolutions, inclusions characteristics, longitudinal tensile, indentation, and CVN impact tests were performed and thoroughly investigated; fracture mechanisms of all WMs were also identified.
机译:采用S2焊丝和粒状Cr-Mo碱性焊剂对AISI 4135可热处理低合金(HTLA)钢进行了堆焊。Cr-Mo活性助焊剂采用粘结无熔剂法生产。通过活性焊剂将合金元素引入焊缝金属中。介绍了两种计算合金元素回收率(eta)的方法。此外,通过定义工艺和工艺的熔渣系数(α)。在合金元素中,特定元素从熔剂转移到WM的量由提出的方程式计算。同样,进行了微观结构演变、夹杂物特征、纵向拉伸、压痕和CVN冲击试验,并对其进行了彻底研究;还确定了所有WMs的断裂机制。

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