In SH3096, with the same steel type, operating temperature, and corrosive medium, why is the corrosion rate different in naphtha and gas oil?
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As the title suggests, in SH3096, with the same type of steel, the same operating temperature, and the same concentration of corrosive agents, why is there such a large difference in the corrosion rate between naphtha and gas oil? The corrosion rate in gas oil is 10 times that in naphtha.Our main products include:
Hastelloy alloys: Hastelloy 276, Hastelloy B (1.2.3), Hastelloy G30, Hastelloy C22, Hastelloy C2000, Hastelloy X, Hastelloy C, Hastelloy N, etc.
Superalloys: GH4169, GH3030, GH3039, GH4145, GH2132, GH3128, GH3044, GH3536, GH4033, GH8367, GH4133, GH5605, GH1140, GH2036, GH4090, GH4648, GH2747, GH1131, GH5188, etc.
Corrosion-resistant alloys: NS312, NS334, NS333, NS321, NS322, NS336, NS313, NS143, NS142, NS111, NS112, NS335, etc.
Nickel-based alloys: IN1718, IN600, 1N625, 1N601, 1N617, Alloy 20, IN690, X-750, 1.4529, AL-6XN, IN926, IN925, Inconel 800H, NO8020, NO8028, NO2080, NO10276, NO600, NO6601, NO6625, NO6690, NO7718, NO8825, NO7750, NO10665, NO10675, etc.
Precision alloys: 4J36, 4J29, 1J79, 1J85, 1J22, 1J50, 1J30, 4J33, 4J32, etc.
Nickel-copper alloys: Monel 400, Monel K500, Monel 405, NO4400, NO5500, etc.
Special materials: 17-4PH, 1-7PH, 15-5PH, 254Smo, 253-MA, XM-19, XM-18, S21800, etc.
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