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The effect of alloying on the resistance of carbon steel for oilfield applications to CO2 corrosion

机译:合金化对油田应用碳钢抵抗CO2腐蚀的影响

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A systematic study has been conducted to investigate the influence of a wide range of alloying elements and different processing conditions on the resistance of low-carbon steels to CO2 corrosion. Strong carbide-forming microalloying elements such as Ti, Nb and V, along with Cr additions, and different levels of Mn, Si, Cu, Mo and Ni, have been explored, along with treatments simulating different processing conditions, for example, controlled rolling, and quenching and tempering. Corrosion testing, including flow loop tests, has been carried out, along with evaluation of mechanical properties, weldability and hot ductility. The programme has developed steels with improved CO2 corrosion resistance and hence identified a potential route for producing more economical carbon steels for oilfield applications. The work has been carried out as part of the UK- Brazil Corrosion Network.
机译:已经进行了系统的研究,以研究各种合金元素和不同的加工条件对低碳钢耐CO2腐蚀的影响。已经探索了形成强碳化物的微合金元素,例如Ti,Nb和V,以及Cr,以及不同含量的Mn,Si,Cu,Mo和Ni,以及模拟不同加工条件的处理方法,例如控制轧制。 ,并进行调质。已经进行了包括流动回路测试在内的腐蚀测试,并评估了机械性能,可焊性和热延展性。该计划开发了具有改善的抗CO2腐蚀性的钢,因此确定了生产更经济的碳钢用于油田应用的潜在途径。该工作已作为英国-巴西腐蚀网络的一部分进行。

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