Manufacturer Of 254 SMO Nipple
SMO 254 Nipple is examined in sodium chloride solution while thiosulfate is present. It only exhibits IGSCC susceptibility to sodium chloride, and sulphuric acid and sodium chloride susceptibilities are substantially lower than those of our SMO 254 Hexagon Reducing Nipple.
It is important to note that the sensitization process caused an observable change in the mechanical properties of SMO 254 Hexagon Nipple.
In various solutions, the solubilized and sensitized SMO 254 One End Threaded Nipple’s percentage elongation to fracture is compared. In any event, there was practically any loss in the ductility of the sensitized SMO 254 Both End Threaded Nipple.
Important Functions
The proportion of elongation to fracturing in sodium chloride, where no SCC was seen, reduced from 56.5% in the solubilized to 32.9% in the sensitized of our SMO 254 Concentric Swaged Nipple.
The high ultimate strength resistance of SMO 254 Eccentric Swaged Nipple points to a hardening brought on by the precipitation of new phases at grain boundaries.
Characteristic
It is well known that adding thiosulfate to sodium chloride solutions in our 254 SMO Nipple causes SCC to occur on a variety of metals and encourages pitting corrosion. The pitting potential of sensitized Alloy 254 Hexagon Reducing Nipple was changed toward negative potentials by the addition of thiosulfate to sodium chloride. The polarization curves demonstrated that the solution contained active Alloy 254 Hexagon Nipples.
It is well known that adding thiosulfate to sodium chloride solutions in our SMO 254 Hex Nipple causes SCC to occur on a variety of metals and encourages pitting corrosion. The pitting potential of sensitized Alloy 254 Hexagon Reducing Nipple was changed toward negative potentials by the addition of thiosulfate to sodium chloride.
Applications Industries
Power Production
Petrochemicals
Processing Gas
Chemical Specialties
Pharmaceuticals
pharmaceutical apparatus
Chemical Resources
Maritime Equipment
Exchangers of heat
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