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Carbon Steel 90 Degree Elbow - Durable & High Pressure

Лип . 21, 2025

About Hebei Gain Trading Co., Ltd.

Official Website: www.szpipefitting.com

Email: hbgain@aliyun.com

Phone: +86-15128155291

Address: Malleable Iron Zone, Shijiazhuang, Hebei, China

Technical Specifications & Parameters

Carbon Steel Elbow Specifications Comparison

Parameter 90° Elbow 45° Elbow Street Elbow Testing Standard
Material Grade ASTM A105 ASTM A105 ASTM A105 ASTM A370
Tensile Strength 70-95 ksi 70-95 ksi 70-95 ksi ASTM E8
Pressure Rating 3000 LB 3000 LB 3000 LB ASME B16.11
Temperature Range -29°C to 425°C -29°C to 425°C -29°C to 425°C ASTM A105
Corrosion Resistance Medium Medium Medium ASTM G48
Dimensions 1/8" - 4" 1/8" - 4" 1/8" - 4" ASME B16.9

Carbon Steel Elbow Applications

Carbon steel 90 degree elbows find applications across multiple industries due to their strength, durability, and cost-effectiveness:

Oil & Gas Pipelines

Used in upstream, midstream, and downstream operations where high-pressure capabilities of carbon steel elbows are essential for safety

Chemical Processing

ASTM A105 mild steel elbows handle corrosive materials when proper lining or coatings are applied

Power Generation

Critical in steam lines and cooling systems where thermal cycling requires durable carbon steel forged elbows

Water Treatment

Used in filtration and distribution systems where the corrosion resistance of galvanized carbon steel elbows excels

Case studies from Chevron demonstrated that properly installed carbon steel elbows in offshore platforms have maintained integrity beyond their 15-year design life through proper material selection and protective coatings.

Expert FAQ: Carbon Steel Elbows

Q: What material standards govern carbon steel elbows?

A: The primary material specification is ASTM A105 which covers forged carbon steel components. ASTM A234 covers wrought fittings while ASME B16.11 addresses pressure ratings and dimensions for forged steel fittings including carbon steel 90 degree elbows.

Q: Can carbon steel elbows handle corrosive environments?

A: Standard carbon steel elbows offer limited corrosion resistance. For corrosive service, consider stainless steel options or carbon steel with protective coatings like epoxy, galvanization, or PTFE lining. Material selection should follow NACE MR0175 standards for sour service applications.

Q: What wall thickness should I specify for high-pressure applications?

A: Schedule 80 or heavier walls are recommended for systems exceeding 1000 psi. The ASME B31.3 code provides calculation methods to determine required wall thickness based on pressure, temperature, and pipe diameter when specifying carbon steel elbows.

Q: How do I prevent leakage in threaded carbon steel elbow connections?

A: Proper thread engagement (minimum 5 full threads) combined with appropriate thread sealant (PTFE tape or thread compound rated for system pressure) prevents leakage. For critical applications, consider seal welding the final threads after initial assembly.

Q: What quality certifications should I require for carbon steel elbows?

A: Essential certifications include material test reports (MTRs) to ASTM A105, dimensional verification to ASME B16.11, pressure testing certification (hydrostatic or pneumatic), and manufacturer's ISO 9001 certification. PED 2014/68/EU is required for European installations.

Q: Are seamless elbows better than welded versions?

A: Seamless carbon steel elbows provide superior integrity for high-pressure applications as they eliminate weld failure points. However, ASME B16.9 certified welded elbows with full penetration welds and proper heat treatment offer acceptable performance for most industrial applications at lower cost.

Q: How does thermal cycling affect carbon steel elbow performance?

A: Repeated thermal cycling can cause fatigue cracking at stress concentration points. This is mitigated through proper material selection (carbon steel with controlled yield strength), adequate wall thickness, and minimizing constraint in piping layouts. ASME B31.3 provides expansion loop design guidance when installing carbon steel elbows.

Conclusion & Industry Perspectives

The future development of carbon steel elbows focuses on enhanced corrosion resistance through advanced alloying and coating technologies. Research at MIT's Department of Materials Engineering (published in Journal of Materials Processing Technology) demonstrates how nanoscale surface treatments can double the service life of mild steel elbows in corrosive environments.

The American Petroleum Institute's recent bulletin on API 5L specification enhancements highlights forthcoming requirements for improved traceability and material verification in pipeline components including carbon steel 90 degree elbows.

For specialized applications requiring custom solutions, contact our engineering team at Hebei Gain Trading Co., Ltd. We combine extensive materials expertise with state-of-the-art manufacturing capabilities to deliver high-performance carbon steel elbow solutions that meet the most demanding specifications.

References & Industry Publications

  • ASME B16.11: Forged Fittings, Socket-Welding and Threaded
  • ASTM A105/A105M: Standard Specification for Carbon Steel Forgings for Piping Applications
  • NACE MR0175/ISO 15156: Materials for use in H2S-containing environments in oil and gas production
  • "Corrosion Control in Pipeline Systems" - Journal of Pipeline Engineering Vol. 22(3)
  • International Journal of Pressure Vessels and Piping: "Stress analysis of 90-degree elbow under internal pressure" DOI: 10.1016/j.ijpvp.2022.104678
  • European Standards for Industrial Fittings: EN 10253 Series


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we can supply carbon steel (butt welded) pipe fittings, stainless steel pipe fittings, brass pipe fittings, high pressure fittings, G.I.pipe, seamless steel pipe, stainless steel seamless pipe, forged/cast flanges, kinds of valves ,PTFE seal tape and other standard high quality hardware products.
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