High Temperature Low Sag Conductor HTLS

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High Temperature Low Sag Conductors (HTLS) are designed for high temperature environments and the need for efficient power transmission. VERI Cables produces these conductors to operate at higher temperatures than conventional conductors while maintaining a low sag, which significantly improves the performance and efficiency of transmission lines.

D'Haaptleit vun HTLS sinn wéi follegt: TACSR, GTASCR, ZTACIR, ACSS, ACCC an ACCR, which are mainly composed of a mechanically strong steel core, an electrically conductive layer, and an anti-corrosion coating. To inquire about HTLS conductors, weg Kontakt eis.

Types Introduction of High Temperature Low Sag Conductor

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Kär: galvanized steel wire to support the mechanical strength of the conductor.
Outer layer: aluminum wire, high temperature resistant aluminum alloy.
Operatioun Temperatur: up to 250°C.
Sagging performance: low sag at high temperature, suitable for high load operation.
Applicable Scenario: Upgrade of old lines that need to improve current-carrying capacity.

Models:
ACSS-TW (Trapezoidal Wire)
ACSS/TW-Drake
ACSS/HS285 (High Strength Conductor)

Aluminum Conductor Composite Core ACCC/TW Features
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Kär: carbon fiber composite material.
Outer layer: heat-resistant aluminum alloy.
Operatioun Temperatur: up to 210°C.
Sagging performance: 20%-30% lower than traditional conductors.
Applicable Scenarios: Long-distance power transmission, transformation projects with high demand for load enhancement.

Common Model:
ACCC-Linnet
ACCC-Drake

Gap-Type TACS (GZTACSR) Dirigent

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(GZTACSR) Gap-Type Steel-Core Aluminum Stranded Wire

Kär: high strength steel wire with gap filler between it and the aluminum layer.
Outer layer: heat resistant aluminum alloy.
Operatioun Temperatur: up to 210°C.
Sagging performance: Excellent mechanical properties during high temperature operation.
Applicable Scenario: Long distance transmission lines across rivers and mountains.

Common Model:
GZTACSR-400
GZTACSR-500/45

ZTACIR (Thermal Resistant Aluminum Conductor Invar Reinforced) Dirigent

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ZTACIR (Thermal Resistant Aluminum Conductor Invar Reinforced)

Kär: Invar steel (mat 36% nickel for low coefficient of thermal expansion).
Outer layer: Heat-resistant aluminum alloy.
Operatioun Temperatur: up to 210°C.
Droop performance: High temperature resistance, suitable for extreme environments.
Applicable scenarios: High voltage transmission lines in extremely cold or hot environments.

Common Model:
ZTACIR-450
ZTACIR-600

TACSR(Thermal Resistant Aluminum Conductor Steel Reinforced)

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TACSR(Thermal Resistant Aluminum Conductor Steel Reinforced)

Kär: steel core.
Outer layer: heat-resistant aluminum alloy, capable of withstanding temperatures above 150°C.
Operatioun Temperatur: up to 200°C.
Applicable Scenario: Suitable for upgrading transmission line applications.

Common Models:
TACSR/AT
TACSR-250/40
TACSR-450/75

ACFR(Aluminum Conductor Fiber Reinforced)

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ACFR Conductor (Aluminum Conductor Fiber Reinforced)

Kär: carbon fiber or glass fiber reinforced material.
Outer layer: heat-resistant aluminum alloy.
Aarbechtstemperatur: up to 230°C.
Applicable scenarios: Very long distance power transmission or power transmission lines that require high strength and high temperature resistance.

Common Models:
ACFR-Drake
ACFR-Tern

Environmental & Technical Advantages of HTLS Conductors

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Environmental Advantages of HTLS Conductors

Reduced Carbon Emissions
HTLS conductors effectively reduce energy loss during transmission through high conductivity and low-sag design, especially suitable for long-distance transmission lines.
The increased transmission efficiency indirectly reduces the load demand of power plants and reduces greenhouse gas emissions.

Reduced Resource Waste
The high temperature and corrosion resistance of HTLS conductors significantly extends the service life of the line, reducing the waste of resources and secondary pollution of the environment caused by frequent replacement.

Reduced Land Use
HTLS conductor allows higher current to be carried in the line, avoiding the need to expand new transmission lines, thus reducing the occupation of land resources.

Use of Non-Hazardous Materials
Some HTLS conductors such as ACCC (Aluminum Composite Core Conductor) are made of carbon fiber composite materials, which are not only lightweight but also do not cause harmful pollution to the environment.

Reducing the Effects of Electromagnetic Radiation
Due to the more uniform electromagnetic field distribution of the conductor design, HTLS conductors produce lower electromagnetic radiation than conventional conductors during high load transmission, which has less impact on the surrounding environment and biology.

HTLS conductor production

Technical Advantages of HTLS Conductors

Outstanding resistance to high temperatures
HTLS conductors can operate properly at temperatures up to 150°C to 250°C, whereas conventional conductors typically have a temperature limit of 90°C to 120°C. This high-temperature resistance allows HTLS conductors to remain stable under high loads or extreme climatic conditions.

Low Sag Design
The high temperature and low-sag characteristics are the core technical advantage of HTLS conductors, which are particularly suitable for transmission lines across complex terrain such as rivers, canyons and mountains.

High Transmission Capacity
HTLS conductors have 1.5 zu 2 times the conductivity of conventional conductors, which can significantly increase the transmission capacity of the line without changing the existing transmission tower structure.

Lower Life Cycle Costs
While HTLS conductors may have a slightly higher initial cost, their high efficiency, laangt Liewen, and low maintenance requirements significantly reduce whole life transmission costs.

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