| Carbon Steel, Grade B | ASTM A53 Type E or Type F, Grade B | Low in untreated atmospheres, moisture, and chemicals; normally requires paint, lining, or another protective system. | Generally good. Preheating and post-weld procedures depend on wall thickness, carbon equivalent, and service requirements. | Suitable for many moderate-temperature services when the design code permits it. Low-temperature service requires an appropriate impact-tested grade. | Water, air, steam, structural supports, fire-protection systems, and general industrial piping. | Low | A practical choice when the fluid is non-corrosive or when a reliable coating or internal lining can be maintained. |
| Galvanized Carbon Steel | Carbon-steel pipe manufactured to a suitable pipe specification and zinc-coated after manufacture | Better atmospheric corrosion protection than bare carbon steel; coating damage, cut ends, acidic liquids, and stagnant water can accelerate corrosion. | The steel is weldable, but welding can damage the zinc coating and generate zinc oxide fumes. Proper ventilation and coating repair are required. | Best for mild-to-moderate temperatures. Zinc-coated systems are generally not selected for high-temperature service. | Outdoor water lines, agricultural systems, handrails, and general utility piping. | Low to medium | Choose it when economical atmospheric protection is needed and the process fluid is compatible with zinc. |
| Stainless Steel 304L | ASTM A312 TP304L or ASTM A358 TP304L for applicable large-diameter welded pipe | Good general resistance to atmospheric corrosion, many organic chemicals, and oxidizing environments. It is vulnerable to chloride-induced pitting and crevice corrosion. | Very good. The low-carbon “L” grade reduces the risk of sensitization after welding. | Suitable across a broad temperature range when correctly designed. Welding procedure and thermal exposure should be controlled. | Food and beverage equipment, architectural piping, chemical processing, water systems, and general process lines. | Medium | A strong general-purpose stainless option where chloride levels are limited and a clean surface is required. |
| Stainless Steel 316L | ASTM A312 TP316L or ASTM A358 TP316L for applicable large-diameter welded pipe | Very good resistance to general corrosion and better resistance to chlorides than 304L because of its molybdenum content; it is not immune to severe chloride environments. | Very good. Low carbon helps reduce weld-related sensitization. | Suitable for many low- and elevated-temperature services within the applicable design code and welding procedure limits. | Marine atmospheres, pharmaceutical equipment, chemical processing, coastal installations, and hygienic piping. | Medium to high | Prefer it over 304L when chloride exposure, coastal atmosphere, or chemical contamination is a significant concern. |
| Duplex Stainless Steel 2205 | ASTM A928 or another applicable welded duplex-pipe specification; UNS S32205/S31803 | Excellent resistance to chloride pitting, crevice corrosion, and stress-corrosion cracking compared with common 300-series stainless grades. | Good, but more procedure-sensitive than 304L or 316L. Heat input, interpass temperature, filler metal, and phase balance must be controlled. | Strong mechanical performance at moderate and elevated temperatures; prolonged exposure to unsuitable temperature ranges can reduce toughness or corrosion performance. | Offshore systems, desalination, seawater service, chemical processing, and high-chloride process lines. | High | Use when chloride resistance and high strength may justify higher material and fabrication costs. |
| Low-Temperature Carbon Steel | ASTM A333 Grade 6, where the applicable product form and project specification permit welded pipe | Similar to other uncoated carbon steels: limited resistance to moisture and corrosive chemicals without protection. | Good when welding consumables, preheating, and impact requirements are properly specified. | Designed for low-temperature service with specified impact-test requirements; it is not selected primarily for corrosion resistance. | Refrigeration systems, cold-service piping, cryogenic support systems, and low-temperature process lines. | Low to medium | Choose it when toughness at low temperature is more important than inherent corrosion resistance. |