China ACSR IEC 61089 Supplier, Factory

Execution standard:  IEC 61089

Material: ACSR adopts Galvanized steel wire, A1 aluminum.

Product Description

AAC Standard: IEC 61089

This technical specification covers the requirements for Aluminum Conductor Steel Reinforced (ACSR), categorized under Type: A1/S1A. It is widely utilized for overhead power transmission and distribution lines due to its balanced strength-to-weight ratio.

⚙️
High Tensile Strength
Excellent Conductivity
🛡️
Corrosion Resistant
🌍
IEC 61089 Compliant
Aluminum Conductor Steel Reinforced (ACSR) Specifications
Code Name Aluminium Wire (Dia. & Stranding) Galvanized Steel Wire (Dia. & Stranding) Sectional Area (mm²) Conductor Diameter (mm) Nominal Breaking Load (kN) Linear Mass (kg/km) Max Resistance at 20℃ (Ω/km)
mm No. mm No. Aluminium Steel Total
161.8461.84116.02.718.65.526.0864.61.7934
252.362.3124.94.229.16.919.13100.91.1478
402.9162.91139.96.746.68.7414.4161.50.7174
633.6663.66163.110.573.61121.63254.40.4555
1004.6164.611100.116.7116.813.834.33403.80.2869
1252.97182.971124.76.9131.614.929.17397.90.2304
1252.47261.927124.620.3144.815.745.69503.90.2310
1603.36183.361159.68.9168.516.836.18509.30.1800
1602.80262.187160.126.1186.217.757.69644.90.1805
2003.76183.761199.911.1211.018.842.22636.70.1440
2003.13262.437200.132.5232.519.870.13806.20.1444
2503.80222.117249.524.5274.021.668.72880.60.1154
2503.50262.727250.140.7290.822.287.671007.70.1155
3152.99451.997316.021.8337.723.979.031039.60.0917
3153.93263.057315.451.1366.524.9106.831269.70.0917
4003.36452.247399.027.6426.626.998.361320.10.0722
4003.07543.077399.751.8451.527.6123.041510.30.0723
4503.57452.387450.431.1481.628.5107.471485.20.0642
4503.26543.267450.758.4509.229.3138.421699.10.0643
5003.76452.517499.734.6534.330.1119.411650.20.0578
5003.43543.437499.064.7563.630.9153.801887.90.0578
5603.98452.657559.838.6598.531.8133.741848.20.0516
5603.63542.1819558.970.9629.832.7172.592103.40.0516
6304.22452.817629.443.4672.833.8150.452079.20.0459
6303.85542.3119628.679.6708.334.7191.772366.30.0459
7104.48452.997709.349.2758.535.9169.562343.20.0407
7104.09542.4519709.589.6799.036.8216.122666.80.0407
8003.76722.517799.534.6834.137.6167.412480.20.0361
8003.48843.487799.066.6865.538.3205.332732.70.0362
8004.34542.6119798.8101.7900.539.1243.523004.90.0362
9003.99722.667900.338.9939.239.9188.332790.20.0321
9003.69843.697898.374.9973.240.6226.503074.20.0322
10004.21722.8071002.343.11045.442.1209.263100.30.0289
11204.45721.78191119.847.31167.144.5234.533464.90.0258
11204.12842.47191119.991.01210.945.3283.173811.50.0258
12504.35842.61191248.4101.71350.047.9316.044253.90.0232
12504.70721.88191249.252.71301.947261.753867.10.0231
Note: The outermost layer is twisted to the right (Z).
Frequently Asked Questions (FAQ)
What standard does this ACSR conductor follow?
These conductors are manufactured in strict accordance with the IEC 61089 international standard for round wire concentric lay overhead electrical stranded conductors.
What materials are used in the construction of A1/S1A conductors?
The conductor consists of a solid or stranded galvanized steel core for mechanical strength (S1A) surrounded by strands of aluminum (A1) for high electrical conductivity.
What is the significance of the "Z" twist mentioned?
The "Z" twist refers to a right-hand lay direction for the outermost layer of the wires, which is a standard configuration for ensuring structural integrity during installation.
How does temperature affect the resistance values?
The maximum DC resistance provided in the technical table is calculated at 20°C. Resistance will typically increase as the operating temperature of the conductor rises.
Why is ACSR preferred for overhead power lines?
ACSR is preferred because the steel core provides high tensile strength to withstand environmental loads (like wind and ice) while the aluminum layers provide the necessary current-carrying capacity at a lower weight than copper.
Can these conductors be used for both transmission and distribution?
Yes, with a wide range of code names from 16 to 1250, these conductors are suitable for various applications, from local distribution lines to high-voltage long-distance transmission.

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