Materials Updated 2026-07-29 Engineering Guide

Steel Material Properties Guide

Reference guide to common structural and pressure-vessel steels including A36, A53, A106, A516, and stainless 304/316 — properties, applications, and selection.

Overview

Steel is the workhorse of industrial construction. Selecting the correct grade means matching mechanical properties, weldability, temperature limits, corrosion resistance, and cost to the application. This guide summarizes the most common carbon and stainless steel grades encountered in piping, structural, and pressure-vessel work.

ASTM specifications

Steel grade specifications are published by ASTM International. Each specification defines chemistry, mechanical property minimums, permissible product forms, and test requirements. Never specify only a grade name — always include the ASTM standard (e.g., "ASTM A106 Grade B").

Common Carbon Steels

ASTM A36 — Structural

A36 is the default hot-rolled structural steel — used for beams, plates, angles, and gussets. It welds well and machines readily, but is not suitable for pressure-containing service.

  • Yield strength: 250 MPa (36 ksi) minimum
  • Tensile strength: 400 – 550 MPa (58 – 80 ksi)
  • Elongation: 20% in 200 mm
  • Carbon: ≤ 0.26%

ASTM A53 — Pipe (Structural / Low-Pressure)

Welded or seamless steel pipe used for water, gas, and structural pipe. Grade B is the most common.

  • Yield: 240 MPa (35 ksi) min
  • Tensile: 415 MPa (60 ksi) min
  • Made in ERW (electric-resistance welded) or seamless

ASTM A106 — Seamless Pipe for High-Temperature Service

The standard pipe for steam, hydrocarbon, and high-temperature process services. Grade B is the workhorse.

  • Yield: 240 MPa (35 ksi) min (Grade B)
  • Tensile: 415 MPa (60 ksi) min
  • Max service temperature: ~427°C (800°F) before creep dominates

ASTM A516 — Pressure Vessel Plate

Fine-grain carbon steel for pressure vessels, particularly at moderate and low temperatures.

  • Grade 70 yield: 260 MPa (38 ksi) min
  • Grade 70 tensile: 485 – 620 MPa (70 – 90 ksi)
  • Good low-temp toughness when normalized

Property Comparison Table

GradeYield (MPa)Tensile (MPa)Typical UseMax Temp
A36250400 – 550Structural400°C
A53 Gr B240415Pipe, low-P400°C
A106 Gr B240415Pipe, HP steam427°C
A516 Gr 70260485 – 620Pressure vessels400°C
API 5L X52360460Pipelines200°C
A387 Gr 11 (Cr-Mo)310515Refinery HT540°C

Density and Weight

W (kg/m) = ρ × A

Steel density is 7850 kg/m³ (0.283 lb/in³) for almost all carbon and low-alloy grades. For quick estimation of pipe weight:

Wpipe = 0.02466 × t × (OD − t)

With W in kg/m, and t and OD in mm.

Try the Steel Weight Calculator

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Stainless Steels

Type 304 / 304L

The most widely used austenitic stainless — 18% Cr, 8% Ni. Excellent general-purpose corrosion resistance in food, chemical, water, and mild atmospheric service.

  • Yield: 205 MPa (30 ksi) min
  • Tensile: 515 MPa (75 ksi) min
  • 304L has ≤ 0.03% C — avoids sensitization when welded
  • Density: 8000 kg/m³

Type 316 / 316L

304 with 2-3% molybdenum added — dramatically improves resistance to chlorides and pitting. Standard for marine, pharmaceutical, and many chemical duties.

  • Yield: 205 MPa (30 ksi) min
  • Tensile: 515 MPa (75 ksi) min
  • Density: 8000 kg/m³
  • Pitting resistance equivalent (PREN) ≈ 25

Duplex 2205

Dual austenite-ferrite microstructure. Combines high strength (twice that of 304) with excellent chloride resistance.

  • Yield: 450 MPa (65 ksi)
  • Tensile: 620 MPa (90 ksi)
  • PREN ≈ 35

Chloride stress cracking

Standard 304/316 austenitic stainless can crack under tensile stress in hot chloride environments (e.g., cooling water, seawater vapor spaces) above ~60°C. Duplex 2205 or higher-Mo alloys should be considered for such services.

Design Allowable Stress

For pressure design, use the ASME BPVC allowable stress table. Allowables are lower than yield to include safety factors for creep, cyclic fatigue, and material variability.

GradeAllowable at 40°C (MPa)Allowable at 400°C (MPa)
A106 Gr B13890
A516 Gr 7013896
A312 TP30413892
A312 TP316138106

Worked Example: Pipe Weight

Question: Calculate the weight of 100 m of NPS 6 (168.3 mm OD) Schedule 40 A106 Gr B pipe.

  • Wall thickness Sch 40 = 7.11 mm
  • Weight per meter: 0.02466 × 7.11 × (168.3 − 7.11) = 0.02466 × 7.11 × 161.19 = 28.26 kg/m
  • 100 m × 28.26 = 2,826 kg

Try the Metal Weight Calculator

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Selection Guide

ApplicationRecommended Grade
Structural framingA36, A992
Low-P water linesA53 Gr B
Steam / hot oilA106 Gr B
Vessels ≥ 350°CA516 Gr 70
Cryogenic (< −45°C)A333 Gr 6, 304L
Salt water316L, Duplex 2205
High-Cr acid serviceAlloy 20, Hastelloy

Match the whole pipe class

When specifying pipe, remember that fittings, flanges, and bolting must match. A106 pipe typically pairs with A105 flanges/fittings and A193 B7 bolts / A194 2H nuts. Substituting one component may compromise the whole system.

Summary

Choose steel by matching service temperature, pressure, corrosion, and welding requirements to the ASTM specification. Carbon steels (A36, A53, A106, A516) cover most industrial needs; austenitic stainless (304/316) handles corrosion and hygiene; duplex or high-alloy grades address chlorides and severe service. Always specify by ASTM designation and grade, and verify allowable stresses at the design temperature before finalizing wall thickness.

Related Guides & Tools

Disclaimer: This guide is for educational purposes only. Always consult qualified engineering professionals and applicable codes/standards (ASME, API, ASTM) for engineering design. See full disclaimer.