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XLPE Insulated Aluminum Alloy Core Power Cable

Aluminum Alloy Power Cable-YJHLV

Aluminum alloy power cable adopts 8000 series aluminum alloy conductor and combines it with advanced production technology to form a new type of power cable. It makes up for the shortcomings of traditional pure aluminum cables, and the bending performance, creep resistance and corrosion resistance have been significantly improved. The AA-8030 series aluminum alloy conductor improves the conductivity and high temperature resistance, and effectively solves the creep problem. The conductivity of aluminum alloy is about 61.8% of copper, the current carrying capacity is 79% of copper, and the weight is only one-third of copper, which reduces installation costs and reduces equipment wear.

The main types of aluminum alloy power cables are: YJLHV, YJLHV22, YJLHY, YJLHS, YJLHVS2, YJLHVS3, YJHLV8, TC90, AC90, ACWU90.

The aluminum alloy conductor independently developed by our company is creep-resistant, highly flexible, has stable connection, strong ductility, and low rebound. Compared with pure aluminum conductors, it not only has excellent economic performance but also has excellent mechanical properties, safety performance, connection performance and other characteristics.

Widely Use:


This product can be used as

wind power cable:

Features: high temperature resistance and corrosion resistance.

Solar power cable:

Features: excellent conductivity and UV resistance.

Building cable:

Features: lightweight design.

Industrial equipment cable:

Features: high wear resistance and creep resistance.

Power transmission cable:

Features: good conductivity and low power loss.

Infrastructure cable:

Features: strong pressure resistance and anti-interference ability.

Communication cable:

Features: excellent electromagnetic compatibility.

Advantage:

Good economy: Under the premise of achieving the same electrical performance, the direct purchase cost of aluminum alloy cable is 40% lower than that of copper cable; general buildings can save more than 30% of installation and construction costs, and large-span buildings can save more than 40%.


Small laying space: Aluminum alloy cables are processed by wire twisting process or compact twisting and special annealing process to "squeeze" the gaps in the aluminum alloy conductors and reduce the cable laying space.


High creep resistance: Aluminum alloy cables use special alloy formulas and heat treatment processes to greatly reduce the "creep" tendency of metals under heat and pressure, making the electrical connection of alloy conductors as stable as that of copper conductors.

Technical Data

Product NameTypeUo/U 0.6/1kVUo/U 8.7/10kVUo/U 26/35kV
YJHLVNominal Cross Section10-63mm²25-630mm²50-630mm²
Number of Cores1, 2, 3, 4, 3+1, 5, 3+2, 4+11, 31, 3
YJHLV22Nominal Cross Section10-630mm²25-630mm²50-630mm²
Number of Cores2, 3, 4, 3+1, 5, 3+2, 4+133
YJHLV8Nominal Cross Section10-630mm²25-630mm²50-630mm²
Number of Cores2, 3, 4, 3+1, 5, 3+2, 4+11, 31, 3
YJHLV82Nominal Cross Section10-630mm²25-630mm²50-630mm²
Number of Cores2, 3, 4, 3+1, 5, 3+2, 4+11, 31, 3

Expand all

Only some product parameters are displayed. For more product information, please contact us.

The above parameters are for reference only.

Cable Structure

Aluminum Alloy Power Cable-YJHLV


Aluminum Alloy Core Power Cable Cable Structure

Features

Features

Conductor: AA-8030 aluminum alloy conductors

Insulation: Cross-linked polyethylene(XLPE) insulation

Armor:Interlock aluminum tape armor

Temperature Range: Temperature of 90 C in wet and dry locations

Environmental: Free of harmful heavy metals in compliance with RoHS

Voltage Rating: 600Volt


Experimental Performance

1. AC rated voltage (U0/U) kV: 3.6/6, 6/6, 6/10, 8.7/10, 8.7/15, 12/20, 18/30, 21/35, 26/35.

2. Maximum operating temperature does not exceed 90℃;

3. Short circuit (maximum duration does not exceed 5s)

4. Maximum temperature of cable conductor does not exceed 250℃.

5. Minimum ambient temperature: -40℃.

6. Cable installation and laying temperature shall not be lower than 0℃.


Cable bending radius:

Single core:18D±5%

Three cores without armor: 13D±5%


Production

Projects

COMMON QUESTIONS

SHENXING Cable Service FAQs

Want to learn more? Check out our electrical cable most frequently asked questions.

What is XLPE insulated aluminum alloy core power cable?

XLPE insulated aluminum alloy core power cable is a cable designed for power transmission, using aluminum alloy as conductor and cross-linked polyethylene (XLPE) as insulation material. It has excellent conductivity, high temperature resistance and corrosion resistance, and is suitable for various power applications.

What are the main advantages of this cable?

The main advantages of XLPE insulated aluminum alloy core power cable include:

Lightweight: The weight of aluminum alloy conductor is only one-third of copper, which reduces transportation and installation costs.

High conductivity: Effective power transmission and reduced energy loss.

High temperature resistance and corrosion resistance: Adapt to harsh environments and extend service life.

Creep resistance: Maintain shape under high load conditions to ensure safety.

What application scenarios are this cable suitable for?

XLPE insulated aluminum alloy core power cable is widely used in:

Wind power and solar power generation systems

Power wiring in high-rise buildings and commercial complexes

Heavy machinery power connection in factories and manufacturing industries

Power transmission in urban and rural power grids

Power supply for infrastructure such as subways, railways and tunnels

What is the temperature resistance range of this cable?

The temperature range of XLPE insulated aluminum alloy core power cable is usually:

Long-term use temperature: up to 90°C

Short-term overload temperature: up to 130°C

How to choose the appropriate cable specifications?

The following factors should be considered when choosing the appropriate XLPE insulated aluminum alloy core power cable specifications:

Current load: Select the appropriate conductor cross-section according to the current demand of the equipment or system.

Installation environment: Consider factors such as temperature, humidity, and whether there is chemical corrosion.

Cable length: Long-distance transmission requires a larger cross-section cable to reduce energy loss.

Standard requirements: Ensure compliance with local electrical specifications and standards.

More Frequently Asked Questions.

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