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Alumoweld ACS aluminum clad steel wire following IEC 61232 international standard

ACS Alumoweld Aluminium Clad Steel Wire IEC 61232 Standard

ACS Alumoweld IEC 61232 | 20SA 27SA 30SA 40SA | Aluminum Clad Steel | OPGW & Earth Wire

Standard: IEC 61232 (Aluminium-Clad Steel Wire)

Related Standards: ASTM B416 / DIN 48201 / AS 1222.2

Conductivity Classes: 20SA (20.3% IACS) / 27SA (27% IACS) / 30SA (30% IACS) / 40SA (40% IACS)

20SA Sub-types: Type A (diameter-dependent tensile 1070–1340 N/mm²) / Type B (uniform 1320 N/mm²)

Wire Diameter Range: 1.24–5.50 mm (20SA); 2.50–5.00 mm (27SA/30SA/40SA)

Max. Operating Temperature: 150°C

Diameter Tolerance: ±1.5% (Ø ≥ 2.67 mm) / ±0.04 mm (Ø < 2.67 mm)

Product Overview

ACS — Alumoweld Aluminum Clad Steel Wire (IEC 61232) is manufactured to IEC 61232 — Aluminium-Clad Steel Wire — the international standard for aluminium-clad steel (ACS) wire that defines four distinct conductivity classes: 20SA, 27SA, 30SA, and 40SA. Each class specifies a different aluminium cladding thickness, resulting in a progressively increasing conductivity from 20.3% IACS (20SA — thinnest cladding, highest steel fraction, maximum tensile strength) to 40% IACS (40SA — thickest cladding, highest conductivity, closest to CCS performance). This multi-class framework makes IEC 61232 the most versatile of the three ACS standards — engineers can select the exact conductivity/strength balance required for each specific application from a single internationally recognised standard.

The IEC 61232 standard also defines two mechanical strength sub-types for the 20SA class: Type A (highest tensile strength, diameter-dependent minimum values from 1070 to 1340 N/mm²) and Type B (slightly lower but uniform tensile strength, 1320 N/mm² for all diameters) — providing additional flexibility for applications where a consistent mechanical strength regardless of wire diameter is preferred. All four classes share the same continuous metallurgically bonded aluminium-on-steel construction and are suitable for overhead earth wire, OPGW core, ACSR/AW core, messenger wire, and long-span ground wire applications across IEC-specification markets worldwide.

1

Four IEC Conductivity Classes — 20SA to 40SA

IEC 61232 uniquely defines four conductivity classes: 20SA (20.3% IACS), 27SA (27% IACS), 30SA (30% IACS), and 40SA (40% IACS) — enabling precise selection of the conductivity/strength/weight trade-off for each project application from a single internationally accepted standard.

2

IEC 61232 — Global International Standard

Accepted by utilities across Europe, Asia, Africa, the Middle East, and Latin America for overhead earth wire, OPGW core, and messenger wire procurement. IEC 61232 provides a single reference standard for ACS wire in IEC-specification markets without the need to specify ASTM B416 or DIN 48201 separately.

3

Metallurgical Bond — No Delamination

Aluminium cladding is co-drawn with the steel core during manufacture — a true metallurgical bond that cannot separate under any bending, tension, vibration fatigue, or fault current thermal cycling condition encountered in service. Consistent cross-section properties from surface to core throughout service life.

4

Type A & Type B — Tensile Flexibility for 20SA

20SA class is available as Type A (diameter-dependent tensile strength, 1070–1340 N/mm², higher strength for smaller diameters) or Type B (uniform 1320 N/mm² for all diameters). Type B simplifies structural calculation when a single tensile value must apply across all wire diameters in a stranded conductor assembly.

5

High Temperature Stability

IEC 61232 ACS maintains mechanical properties up to 150°C continuous operation — significantly higher than galvanised steel wire and compatible with HTLS conductor systems and upgraded thermal rating line designs where operating temperatures exceed conventional 75–80°C limits.

6

Permanent Corrosion Resistance

The aluminium outer layer self-passivates to form a stable Al₂O₃ protective surface — maintaining corrosion protection for 40+ years in coastal, tropical, industrial pollution, and salt-fog environments without zinc depletion or periodic re-treatment. Specified wherever galvanised steel wire has a documented premature corrosion failure history.

Technical Specifications

IEC 61232 — Four Conductivity Classes Compared

IEC ClassConductivity (% IACS)Max. Resistivity (nΩ·m, 20°C)Al Cladding (% radius)Density (g/cm³)Elastic Modulus (GPa)Lin. Exp. Coeff. (×10⁻⁶ /K)Min. Tensile (N/mm²)Primary Use
20SA Type A20.3%84.8010–14% (dia. dep.)6.5916213.01070–1340 (dia. dep.)Overhead earth wire, OPGW core, long-span ground wire — maximum tensile strength
20SA Type B20.3%84.8010–14% (dia. dep.)6.5315512.61320 (uniform)OPGW core, ACSR/AW core where uniform tensile across all wire diameters is required
27SA27%63.8615%5.9114013.41080Overhead earth wire — balanced conductivity/strength for moderate spans
30SA30%57.47~19%5.6113213.8880Overhead earth wire, messenger wire — higher conductivity for better earth fault current capacity
40SA40%43.1025%4.6410915.5680Overhead neutral, grounding conductor — maximum conductivity, approaching CCS performance
The 40SA class (40% IACS, 25% Al by radius) is equivalent to the standard ASTM B416 / DIN 48201 ACS wire. The 20SA class (20.3% IACS) has a thinner aluminium layer and maximum tensile strength — this is the standard class for long-span overhead earth wire and OPGW core. The 27SA and 30SA classes provide intermediate conductivity/strength options unique to IEC 61232 that are not separately defined in ASTM B416 or DIN 48201. For projects requiring a specific class, always specify the IEC class code (20SA/27SA/30SA/40SA) in addition to the wire diameter.

Basic Parameters (Common to All Classes)

StandardIEC 61232 — Aluminium-Clad Steel Wire
Related StandardsASTM B416 (North American equivalent); DIN 48201 (German equivalent); AS 1222.2 (Australian)
Conductor StructureHigh-tensile steel core with continuous metallurgically bonded aluminium outer layer
Conductivity Classes20SA (20.3% IACS) / 27SA (27% IACS) / 30SA (30% IACS) / 40SA (40% IACS)
20SA Sub-typesType A (diameter-dependent tensile, 1070–1340 N/mm²) / Type B (uniform 1320 N/mm²)
Wire Diameter Range1.24 mm to 5.50 mm (20SA); 2.50 mm to 5.00 mm (27SA/30SA/40SA)
Diameter Tolerance±1.5% for Ø ≥ 2.67 mm; ±0.04 mm for Ø < 2.67 mm
Max. Operating TemperatureUp to 150°C (continuous)
SurfaceBare aluminium outer surface — no additional coating required
PackagingWooden or steel drum; single wire coil; custom lengths available

20SA Mechanical Properties — Type A (Diameter-Dependent Tensile Strength)

Nominal Diameter Range (mm)Min. Tensile Strength (N/mm²)Min. Stress at 1% Extension (N/mm²)Min. Elongation (%)Torsion Test (min. twists)
1.24 – 3.25134012001.5%20
3.26 – 3.45131011801.5%20
3.46 – 3.65127011401.5%20
3.66 – 3.95125011001.5%20
3.96 – 4.10121011001.5%20
4.11 – 4.40118010701.5%20
4.41 – 4.60114010301.5%20
4.61 – 4.75110010001.5%20
4.76 – 5.50107010001.5%20
20SA Type B: uniform minimum tensile strength of 1320 N/mm² and minimum stress at 1% extension of 1100 N/mm² for all wire diameters 1.24–5.50 mm. 27SA minimum tensile: 1080 N/mm². 30SA minimum tensile: 880 N/mm². 40SA minimum tensile: 680 N/mm². All classes: diameter tolerance ±1.5% (Ø ≥ 2.67 mm) or ±0.04 mm (Ø < 2.67 mm).

Key Features & Technical Advantages

IEC 61232 Class Selection Guide

IEC ClassAl LayerConductivityTensile StrengthWeightChoose When...
20SA Type AThinnest20.3% IACS (lowest)Highest (1070–1340 N/mm²)HeaviestMaximum tensile is the primary requirement: very long spans, heavy ice/wind, OPGW core
20SA Type BThinnest20.3% IACSHigh (1320 N/mm² uniform)Slightly lighterUniform tensile simplifies structural calculation for stranded OPGW/ACSR/AW assemblies
27SAMedium-thin27% IACSHigh (1080 N/mm²)MediumBetter earth fault current capacity than 20SA needed, with good tensile for moderate-long spans
30SAMedium30% IACSMedium (880 N/mm²)LighterEarth wire fault current duty is the main design driver; span lengths are moderate
40SAThickest40% IACS (highest)Lower (680 N/mm²)LightestMaximum conductivity needed (approaching CCS 40% IACS performance) at minimum weight
1

Only IEC Standard with Four Conductivity Classes

ASTM B416 and DIN 48201 define only one conductivity grade (equivalent to IEC 40SA). IEC 61232 adds 20SA, 27SA, and 30SA — providing intermediate options that enable precise matching of conductivity and tensile strength to specific overhead earth wire, OPGW, and ACSR/AW core requirements without over-specifying.

2

Optimised for OPGW Core Design

OPGW core selection is a precise balance: 20SA maximises tensile strength for long-span installation loads; 27SA or 30SA may be preferred where the optical fibre count and tube diameter require a larger composite cross-section to achieve the target overall conductor resistance. IEC 61232 gives OPGW designers the class resolution to hit both targets simultaneously.

3

Consistent Physical Properties per Class

IEC 61232 specifies density, elastic modulus, linear expansion coefficient, and temperature coefficient of resistance for each class — enabling accurate sag-tension calculations, ampacity ratings, and thermal expansion modelling for all four ACS grades using a single standard reference document.

4

Lower Coefficient of Thermal Expansion for 20SA/27SA

20SA and 27SA have lower coefficients of linear expansion (12.6–13.4 × 10⁻⁶ /K) than 30SA and 40SA (13.8–15.5 × 10⁻⁶ /K) — the higher steel fraction reduces thermal sag. For HTLS and high operating temperature applications, 20SA/27SA maintains lower sag at elevated temperatures than higher-Al-content grades.

5

Single Global Standard for All ACS Grades

IEC 61232 eliminates the need to specify ASTM B416 for 40SA grade and a separate product for 20SA/27SA/30SA. One standard, one test protocol, one data sheet — simplifying procurement documentation for international projects that span multiple engineering standards environments.

6

Corrosion Resistance for 40+ Year Service Life

All four IEC 61232 classes share the same aluminium cladding corrosion mechanism — self-passivating Al₂O₃ surface layer providing permanent protection in coastal, salt-fog, tropical, and industrial pollution environments without depletion, maintenance, or replacement over the full 40-year design life of modern overhead line infrastructure.

Certifications & Standards

IEC 6123220SA (20.3% IACS)27SA (27% IACS)30SA (30% IACS)40SA (40% IACS)Type A & Type B150°C Rated

Typical Applications by IEC Class

🛡️

Overhead Earth Wire — 20SA

Long-span shield wire on EHV transmission lines — 20SA maximum tensile strength for spans exceeding 500 m and heavy ice/wind loading zones.

🔆

OPGW Core — 20SA Type A/B

Core wires in Optical Ground Wire — 20SA provides installation tensile strength while Type A/B selection matches the OPGW structural calculation method.

ACSR/AW Core — 20SA/27SA

Replaces galvanised steel core in IEC ACSR/AW — 20SA for long-span, heavy-loading lines; 27SA where slightly higher conductivity from the core is beneficial.

🌊

Coastal Earth Wire — 27SA/30SA

Overhead earth wire in marine, coastal, and high-humidity IEC-market regions where galvanised wire fails at 15–20 years — 27SA/30SA balances corrosion resistance with adequate earth fault conductivity.

🔗

Messenger Wire — 30SA/40SA

Support strand for ADSS fibre and aerial cables — 30SA/40SA provides adequate tensile strength for moderate spans with better conductivity for bonding current duties.

🌍

IEC-Market Global Projects

Europe, Africa, Middle East, Asia, and Latin America projects where IEC 61232 is the governing ACS specification — single standard covers all four conductivity grades in one procurement document.

🏭

Industrial Overhead Earth Wire — 40SA

Overhead earth wire at industrial facilities and chemical zones where higher conductivity (40SA) improves earth fault current capacity at sites with high prospective fault levels.

🌾

Rural Long-Span Lines — 20SA

Overhead earth wire on rural HV lines with long spans across flat or hilly terrain — 20SA provides the tensile strength to match the aluminium phase conductors' sag profile over the same tower configuration.

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