首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference vol.7: Operations, Applications, and Components; 20050717-21; Denver,CO(US) >EFFECT OF SAMALL VARIATION IN THE COMPOSITION OF PLATES AND WELD FILLER WIRES ON THE GENERAL CORROSION RATE OF Ni-Cr-Mo ALLOYS
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EFFECT OF SAMALL VARIATION IN THE COMPOSITION OF PLATES AND WELD FILLER WIRES ON THE GENERAL CORROSION RATE OF Ni-Cr-Mo ALLOYS

机译:板和焊缝组成的小变化对Ni-Cr-Mo合金一般腐蚀速率的影响

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The ASTM standard B 575 provides the requirements for the chemical composition of Nickel-Chromium-Molybdenum (Ni-Cr-Mo) alloys such as Alloy 22 (N06022) and Alloy 686 (N06686). The compositions of each element are given in a range. For example, the content of Mo is specified from 12.5 to 14.5 weight percent for Alloy 22 and from 15.0 to 17.0 weight percent for Alloy 686. It was important to determine how the corrosion rate of welded plates of Alloy 22 using Alloy 686 weld filler metal would change if heats of these alloys were prepared using several variations in the composition of the elements even though still in the range specified in B 575. All the material used in this report were especially prepared at Allegheny Ludlum Co. Seven heats of plate were welded with seven heats of wire. Immersion corrosion tests were conducted in a boiling solution of sulfuric acid plus ferric sulfate (ASTM G 28 A) using both as-welded (ASW) coupons and solution heat-treated (SHT) coupons. Results show that the corrosion rate was not affected by the chemistry of the materials within the range of the standards.
机译:ASTM B 575标准对镍铬钼(Ni-Cr-Mo)合金(例如合金22(N06022)和合金686(N06686))的化学成分提出了要求。各元素的组成在一定范围内。例如,合金22中的Mo含量规定为12.5至14.5重量%,合金686中的Mo含量规定为15.0至17.0重量%。使用合金686焊接填充金属确定合金22焊接板的腐蚀速率是很重要的如果即使在B 575中指定的范围内,使用多种元素成分来制备这些合金的热量,其热度也会发生变化。本报告中使用的所有材料都是由Allegheny Ludlum Co.公司特别制备的。焊接了7块板七次电热。使用焊接的(ASW)试件和溶液热处理(SHT)试件,在硫酸加硫酸铁(ASTM G 28 A)的沸腾溶液中进行浸入腐蚀试验。结果表明,在标准范围内,腐蚀速率不受材料化学性质的影响。

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