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Seamless Cold Drawn Steel Pipe

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Seamless Cold Drawn Steel Pipe

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Brand Name : New Era

Model Number : DIN/EN/JIS/ASTM

Certification : ISO9001

Place of Origin : China

MOQ : 1 tons

Price : Negotiation

Payment Terms : T/T

Supply Ability : 3000 tons/month

Delivery Time : 45 days

Packaging Details : Bundles Package, Wooden Box Package

Product Name : Seamless cold drawn steel pipe

Delivery Condition : Heat treatment

OD Size : 6-114mm

WT Size : 1-20mm

Steel Material : 10, 20, 35, 45, 10Mn2, 15Cr5Mo, 12Cr8, 20Cr, 40Cr

Process : cold drawn

Section shape : Round

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Seamless Cold Drawn Steel Pipe

A seamless cold drawn steel pipe is a type of high-precision seamless steel tube manufactured through the cold drawing process. This process involves pulling (drawing) a seamless steel shell (hot-rolled or extruded) through a die and over a mandrel at room temperature to reduce its diameter and wall thickness to precise dimensions.

This method produces pipes with superior surface finish, tighter dimensional tolerances, enhanced mechanical properties, and a more uniform microstructure compared to hot-finished pipes. They are widely used in applications requiring high precision, strength, and reliability.

Key Characteristics & Advantages:

  • Excellent Surface Finish: Smooth, clean surface with minimal scale or imperfections.

  • High Dimensional Accuracy: Very tight tolerances on Outside Diameter (OD) and Wall Thickness (WT).

  • Enhanced Mechanical Properties: The cold working process significantly increases yield and tensile strength.

  • Improved Machinability: The uniform and often annealed structure makes them ideal for subsequent machining operations.

  • Wide Range of Applications: Used in precision machinery, hydraulic and pneumatic cylinders, automotive components, bearing sleeves, and critical structural parts


1. Common Materials / Grades

Seamless cold drawn pipes are typically made from carbon steel and alloy steel. The most common standard specifications include:

  • ASTM A519: Standard Specification for Seamless Carbon and Alloy Steel Mechanical Tubing. This is the most prevalent standard for cold drawn mechanical tubing.

  • ASTM A106: Standard Specification for Seamless Carbon Steel Pipe for High-Temperature Service (can be cold drawn for finishing).

  • DIN 2391: German standard for Seamless Precision Steel Tubes - Part 1: Cold Drawn Tubes.

  • JIS G3445: Japanese Industrial Standard for Carbon Steel Tubes for Machine Structural Purposes.

  • Common Grades:

  • Carbon Steels: 1020, 1025, 1026, 1045, C45 (1.0503), ST52 (1.0570)

  • Alloy Steels: 4140, 4130, 4340, 8620, 42CrMo4 (1.7225), 34CrMo4 (1.7220)

  • Bearing Steel: 100Cr6 (1.3505, AISI 52100)

2. Chemical Composition

The chemical composition varies significantly by grade. Here are typical examples:

Grade / Standard Carbon (C) Manganese (Mn) Phosphorus (P) max Sulfur (S) max Silicon (Si) Other Elements
ASTM A519 1020 0.18-0.23% 0.30-0.60% 0.040% 0.050% 0.10-0.30% -
ASTM A519 1045 0.43-0.50% 0.60-0.90% 0.040% 0.050% 0.10-0.30% -
ASTM A519 4130 0.28-0.33% 0.40-0.60% 0.035% 0.040% 0.15-0.35% Chromium (Cr): 0.80-1.10%, Molybdenum (Mo): 0.15-0.25%
DIN 2391 St52 ≤ 0.22% 1.00-1.60% 0.045% 0.045% - -
42CrMo4 (1.7225) 0.38-0.45% 0.60-0.90% 0.025% 0.035% 0.15


3. Mechanical Properties

The cold drawing process work-hardens the steel, significantly improving its strength. The final properties can be further adjusted by heat treatment (e.g., annealing, normalizing, quenching, and tempering).

Grade / Standard Yield Strength (min) Tensile Strength Elongation (min) Hardness
ASTM A519 1020 415 MPa (60 ksi) 483 MPa (70 ksi) 10% ~ 85 HRB
ASTM A519 1045 515 MPa (75 ksi) 585 MPa (85 ksi) 8% ~ 95 HRB
ASTM A519 4130 435 MPa (63 ksi) 560 MPa (81 ksi) 15% ~ 90 HRB
DIN 2391 St52 510 MPa 630 - 780 MPa 10% -
42CrMo4 (Annealed) ~ 650 MPa ~ 900 MPa ~ 14% ~ 270 HB

Important Note on Properties:

Seamless Cold Drawn Steel PipeSeamless Cold Drawn Steel Pipe

Tags: seamless steel pipe, cold drawn steel pipe

  • "As-Drawn" vs. "Heat Treated": The values above are typical for the "as-drawn" condition. Heat treatment can drastically alter these properties. For example, a quenched and tempered 4140 tube can achieve a yield strength exceeding 965 MPa (140 ksi).

  • Anisotropy: Cold drawing creates directional properties. Mechanical properties are generally higher in the longitudinal direction (along the length of the tube) compared to the transverse direction.

  • Specification Governs: The required mechanical properties are always defined by the purchasing specification (e.g., ASTM A519, DIN 2391-1) and the specific grade ordered.


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