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Protection enhancing of threaded connections of light-alloy drill pipes against contact corrosion

机译:保护螺纹连接螺纹连接接触腐蚀的螺纹连接

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When using light-alloy drill pipes (LAIDP) with steel tool joints, the development of contact corrosion is observed under certain operating conditions. The value of corrosion mainly depends on the difference in electrochemical potential (ECP) of the contacting metals. One of the effective methods for increasing the corrosion resistance of aluminum alloys is the micro-arc oxidation (MAO) method. This is an electrochemical process in combination with micro-arc-discharges phenomena at the anode-electrolyte border, which allows forming ceramic coatings of aluminum oxides on the surface, including its high-toughness and wear-resistant phase - α-Al_(2)O_(3)(corundum). MAO-technology is a highly efficient and environmentally friendly process. At the forming of such a coating on the threaded part and in the tool joint zone of the pipe, a barrier for contact corrosion between the steel tool joint and the surface of the aluminum pipe is created. In this work, contact corrosion on samples in a pair of 1953T1 aluminum alloy - 40KhN2MA steel in a 5% NaCl solution at 80 °C was investigated. The data obtained showed the effectiveness of using protective MAO-coating to reduce contact corrosion and increase the reliability of the tool joint threaded connection of LAIDP.
机译:使用用钢工具接头使用轻合金钻管(Laidp)时,在某些操作条件下观察到接触腐蚀的发展。腐蚀的值主要取决于接触金属的电化学电位(ECP)的差异。增加铝合金耐腐蚀性的有效方法之一是微电弧氧化(MAO)方法。这是一种电化学方法,与阳极电解质边界处的微电弧放电现象组合,其允许在表面上形成铝氧化物的陶瓷涂层,包括其高韧性和耐磨相 - α-AL_(2) O_(3)(刚玉)。毛科技是一种高效和环保的过程。在螺纹部分和管的工具接头区域上形成这种涂层,产生用于在钢工具接头和铝管的表面之间的接触腐蚀的屏障。在这项工作中,研究了在80℃下在5%NaCl溶液中的一对1953T1铝合金-40khn2ma钢中的样品上的接触腐蚀。所获得的数据显示了使用保护性茂涂层减少接触腐蚀的有效性,并提高刀具的工具接头螺纹连接的可靠性。

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