STACIR/STACIR-AW Invar-Reinforced Conductor

STACIR conductor combines super thermal-resistant aluminium-alloy outer wires with an Invar-based reinforcing core, commonly supplied with an aluminium-clad surface in the available construction. The core’s relatively low thermal expansion is the central feature used to control high-temperature elongation and sag. It is not a gap-type conductor.

Key Advantages

  • Low-expansion core: Invar-based reinforcement limits core thermal elongation.
  • Thermal-resistant outer layer: Alloy strands provide the principal current path at elevated temperature.
  • Clearance-focused design: Sag-tension modelling uses the exact core and conductor construction.

Product Overview

STACIR’s technical logic begins with its Invar-based core. Compared with conventional reinforcing steel, Invar has a lower coefficient of thermal expansion, so the core can reduce the growth in conductor length as temperature rises after load transfer. The aluminium cladding changes the core surface but does not replace the Invar mechanical function.

Low expansion does not mean zero sag. Final clearance depends on core area, conductor tension, knee-point behaviour, creep, installation temperature, spans and mechanical history. STACIR/TW, if offered, also changes the outer-wire geometry and should be treated as a separate compact-conductor design.

Key Features

  • Super thermal-resistant aluminium-alloy wires form the main conductive section.
  • An Invar-based reinforcing core provides a lower-expansion mechanical path than conventional steel.
  • Aluminium cladding on the core creates a specific surface and corrosion interface that must be identified.
  • Sag performance is project-specific and must be supported by approved stress-strain, creep and sag-tension data.

Product Applications

  • Transmission-line uprating where high-temperature clearance is the principal constraint
  • Reconductoring projects requiring evaluation of a low-expansion reinforcing core
  • Existing corridors where thermal capacity and sag control must be assessed together

Technical Specifications

STACIR — Super Thermal Resistant Aluminum Alloy Conductor, Aluminum Clad Invar Reinforced

STACIR — Super Thermal Resistant Aluminum Alloy Conductor, Aluminum Clad Invar Reinforced

Conductor SizeStrandingCross-Sectional AreaDiameter of Complete ConductorWeightRated StrengthDC Resistance @ 20°CCurrent Capacity
No. of WiresWire diameterSTALInvarTotalSTALSteelTotal
STALInvarSTALInvar@ 85°C@ 150°C@ 210°C
(mm²)(No.)(No.)(mm)(mm)(mm²)(mm²)(mm²)(mm)(Kg/Km)(Kg/Km)(Kg/Km)(KN)(Ω/Km)(Ampere)(Ampere)(Ampere)
2003072.602.60159.2837.17196.4418.20439.31265.01704.3265.380.1746403690850
2403072.902.90198.1646.24244.3920.30546.54329.69876.2379.920.1403460794980
3003073.203.20241.2756.30297.5722.40665.47401.431066.9094.820.11535189011114
3003073.203.20241.2756.30297.5722.40665.47401.431066.9094.820.11535189011114
3802674.003.10326.7352.83379.5625.30902.22376.731278.95104.260.086661210761335
3802674.003.10326.7352.83379.5625.30902.22376.731278.95104.260.086661210761335
4802674.503.50413.5167.35480.8628.501141.87480.231622.10132.420.068470412531559
4802674.503.50413.5167.35480.8628.501141.87480.231622.10132.420.068470412531559
5204573.702.47483.8533.54517.3929.611337.00239.171576.17113.100.059774813361665
5204573.702.47483.8533.54517.3929.611337.00239.171576.17113.100.059774813361665
5905473.503.50519.5467.35586.8931.501437.04480.231917.27150.840.054979014191771
6005473.533.53528.4968.51596.9931.771461.78488.501950.28152.200.054079714341791
63054193.632.18558.8570.92629.7732.681545.78507.402053.17163.930.051182414861857
6905473.803.80612.4279.39691.8134.201693.95566.082260.03176.380.046686915761972
71054193.852.31628.6579.63708.2734.651738.82569.722308.54182.370.045488316022006
7304574.402.90684.2446.24730.4835.101890.75329.692220.44155.820.042391416632084
7705474.004.00678.5987.96766.5536.001876.95627.242504.19193.400.042192216822108
80054194.092.45709.4789.57799.0436.791962.37640.862603.23205.510.040394617292169
90054194.342.61798.85101.65900.5039.092209.60727.302936.90230.400.0357101418682348
STACIR/TW — Shaped Wire

STACIR/TW — Shaped Wire

Conductor SizeCross-Sectional AreaStrandingDiameter of Complete ConductorWeightRated StrengthDC Resistance @ 20°CCurrent Capacity
STALInvarTotalNo. of STAL WiresNo. of STAL LayersNo. of Invar WiresDia. of Invar WiresSTALInvarTotal
@ 85°C@ 150°C@ 210°C
(mm²)(mm²)(mm²)(mm²)(No.)(No.)(No.)(mm)(mm)(Kg/Km)(Kg/Km)(Kg/Km)(KN)(Ω/Km)(Ampere)(Ampere)(Ampere)
320322.2652.49374.7520273.0922.88888.49374.311262.80100.950.087659610391287
340336.8554.90391.7520273.1623.38928.73391.461320.19105.550.083861210691324
390389.2550.81440.0620273.0424.721073.18362.291435.47109.470.073166211631442
405402.8352.15454.9820273.0825.141110.62371.891482.51112.860.070667611891475
480479.6947.20526.8935372.9326.981329.03336.551665.58123.000.060073312981613
490489.5763.55553.1324273.4027.701349.78453.181802.96136.190.058175913471676
525523.6726.85550.5330372.2127.501450.88191.471642.35107.390.055676313541685
590586.7641.28628.0333372.7429.401625.66294.311919.97131.160.049482014641825
625625.0779.63704.69383192.3131.321731.79569.722301.51177.430.045886215491935
640636.9744.03681.0035372.8330.601764.78313.972078.75141.600.045586015421925
680676.2485.95762.20393192.4032.581873.58614.972488.55191.750.042390316302037
690688.9647.52736.4836372.9431.801908.82338.852247.67151.770.042189916202024
725725.0991.78816.87393192.4833.722008.91656.662665.57205.210.039594017032131
730726.4191.78818.19393192.4833.752012.56656.662669.22205.410.039494117052134
740737.4051.14788.5436373.0532.922043.02364.682407.70162.720.039393616922117
780776.9298.56875.49393192.5734.902152.52705.182857.70218.330.036897917802231
790789.1354.55843.6936373.1534.052186.36388.982575.34173.950.036797317672213
820821.87108.79930.65393192.7036.002277.05778.333055.38235.560.0348101218472316
840839.8058.07897.8836373.2535.142326.74414.072740.81185.140.0345100818372304
880876.90111.22988.11423192.7337.102429.50795.723225.22246.400.0326105019232414
890891.0861.70952.7842373.3536.182468.81439.952908.76195.420.0325104319072394
900901.9373.54975.47423192.2236.702498.85526.193025.04213.210.0320105419312425
980976.36123.771100.13423192.8839.122705.08885.563590.64274.280.0293111520562587
990987.8668.901056.7642373.5438.102736.95491.273228.22217.120.0293110520352560

Request the Complete Data Sheet

If you need a specific product catalogue or related standard file, please contact us.

From Production to Delivery

From raw material preparation to final shipmen, every stage is caretuly controled to ensure consistent conductor quality, reliable pertormance,and sae delivery. Our roduction,
inspection, packaging, and logistics processes are managed in accordance with applicable standards and project requirements.

Overhead conductor being wound onto a cable drum during production

Production

The approved aluminium-clad Invar core and super thermal-resistant aluminium-alloy wires are produced separately, then concentrically stranded to the specified construction.

Cable and conductor quality inspection and testing

Inspection

Inspection verifies Invar-core designation, cladding condition, STAL wire dimensions, strand arrangement, finished diameter and catalogue parameters.

Packaged cable drums stored in the factory warehouse

Packaging

Packaging controls winding tension and bend radius to protect the specialized core, outer alloy layers and finished conductor geometry.

Wooden cable drums secured inside a shipping container

Shipping

Shipment documentation links each drum to its STACIR construction, core type, approved sag-tension data and hardware schedule.

Frequently Asked Questions

How does an Invar core reduce STACIR thermal sag?

Invar expands less with temperature than conventional reinforcing steel. After the core carries the relevant mechanical load, its lower thermal elongation helps limit the conductor’s temperature-related length increase.

No. The Invar substrate provides the low-expansion mechanical behaviour. Aluminium cladding forms the outer surface of the core wire and affects its electrical and corrosion interface.

No. The model must use the exact conductor, core, stress-strain and creep data, installation condition, spans, tensions and temperature range. A generic HTLS curve is not adequate.

STACIR relies on a low-expansion Invar-based core in a concentric construction. GTACSR relies on a designed grease-filled gap and a specialised load-transfer and installation process.

Dead-ends and joints must match the specialised core and compression sequence; suspension clamps, dampers and spacers must also be checked for diameter, temperature, mechanical load and vibration duty.

Use approved conductor and component-wire data, thermal ageing or qualification evidence required by the specification, compatible hardware ratings and a line study covering current, weather and clearances.

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