4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable

Product Details
Customization: Available
Application: Construction, Underground, Industrial, Power Station
Voltage: Low and Medium Voltage Cable
Manufacturer/Factory & Trading Company

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  • 4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
  • 4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
  • 4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
  • 4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
  • 4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
  • 4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
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  • Overview
  • Product Description
  • Product Parameters
  • Our Advantages
Overview

Basic Info.

Model NO.
ZR-YJV22 4*6+1*4
Insulation Material
XLPE
Sheath Material
PVC
Material Shape
Round Wire
Wire Core Material
Red Copper Wire
Certification
ISO, CE, RoHS, VDE, UL and Others
Model
ZRYJV22
Brand
Xingshen
Transport Package
Wooden Cable Drum
Specification
2.5-630MM²
Trademark
Xingshen
Origin
China
HS Code
8544601200
Production Capacity
50000000meter

Product Description

Product Description

 

  1. General Overview
    This power cable is a high - performance cable specially designed for power transmission. It combines a copper conductor, a polyvinyl chloride insulation layer, a polyethylene sheath and an armoured structure, and is applicable to various power transmission scenarios and can operate reliably in complex environments.
  2. Copper Conductor
 
  • Material Characteristics: Copper, as a conductor, has excellent electrical conductivity. Its high conductivity can effectively reduce the loss during power transmission and ensure efficient power transmission. Meanwhile, copper has good flexibility, facilitating the manufacturing and laying of the cable and enabling it to adapt to different bending radius requirements.
  • Application Advantages: In the power system, a high - quality copper conductor helps to reduce the line resistance, decrease the heat generation and increase the current - carrying capacity of the cable. This means that a larger current can be transmitted without sacrificing safety to meet the requirements of different - scale power loads.
 
  1. Polyvinyl Chloride Insulation
 
  • Insulation Performance: Polyvinyl chloride (PVC) is a widely - used insulating material. It has good electrical insulation properties, which can effectively prevent current leakage and ensure that electric energy is transmitted along the conductor. Its high insulation resistance enables it to withstand a certain voltage without breakdown, providing a basic guarantee for the safe operation of the cable.
  • Other Characteristics: The PVC insulation layer also has a certain degree of chemical corrosion resistance and can resist the erosion of chemical substances that may be encountered in different environments, such as acid and alkali substances commonly found in industrial environments. In addition, it has a certain degree of wear resistance, which can reduce the damage to the insulation layer caused by mechanical actions such as friction during cable laying and use.
 
  1. Polyethylene Sheath
 
  • Protective Function: The polyethylene (PE) sheath provides additional protection for the cable. It has excellent moisture - proof performance and can effectively prevent water from entering the cable interior, because water may damage the insulation performance of the insulation layer and cause cable failure. At the same time, the PE sheath provides physical protection for the insulation layer and conductor inside the cable, preventing mechanical damage from the outside, for example, being scratched by hard objects such as stones during underground laying.
  • Environmental Adaptability: The polyethylene sheath also has good weather resistance and can be used for a long time under different climatic conditions. Environmental factors such as high temperature, low temperature or ultraviolet radiation will not easily cause it to age or be damaged, thus prolonging the service life of the cable.
 
  1. Armoured Structure
 
  • Protective Function: The armoured layer is an important part of this cable, which can significantly enhance the mechanical strength of the cable. When the cable may be subjected to external forces such as compression, tension or impact, such as when in contact with other objects in underground pipes or when laid near construction areas, the armoured layer can protect the conductor and insulation structure inside the cable from damage and ensure the continuity of power transmission.
  • Material and Design: The armouring materials usually adopt high - strength metal materials such as steel tapes or steel wires. Its design structure is reasonable, can evenly bear external forces, and is closely combined with other parts of the cable without affecting the flexibility and layability of the cable.
 
  1. Application Scenarios
 
  • Industrial Field: It is suitable for power supply of power equipment in factories, such as motors, production lines, etc. In the industrial environment, there are various complex factors such as chemical substances, mechanical vibration and electromagnetic interference. The protection performance and stable power transmission ability of this cable can meet the requirements of industrial production.
  • Building Field: It can be used in the power distribution system in buildings, including power supply lines for lighting, sockets, etc. During the construction and use of buildings, the cable may be subjected to certain external forces. The armoured structure can ensure the safety of the cable. At the same time, its good insulation and sheath performance are also suitable for use in the building environment.
  • Outdoor Power Transmission: For outdoor power transmission and distribution lines, especially when laid underground or need to cross complex terrains, the moisture - proof, mechanical - damage - proof and armoured protection capabilities of this cable make it an ideal choice. It can work stably under different climatic and geological conditions and ensure that power is transmitted from substations to various power - consuming areas.
  • Other Fields: It can also be applied in mines, ports and other places with high requirements for cable protection performance to provide reliable power supply for various electrical equipment.
    Product Parameters
    Conductor
  •  
  • Material: Copper
  • Nominal cross - sectional area: [specific value] square millimeters (mm²). There are various common specifications, such as 10 mm², 16 mm², 25 mm², etc. Different cross - sectional areas can meet different current - carrying requirements.
  • Conductor structure: It can be divided into single - core and multi - core. Multi - core includes 2 - core, 3 - core, 4 - core, 5 - core, etc. Multi - core cables can supply power to multiple electrical equipment or circuits simultaneously, while single - core cables are generally used for transmitting large currents.
  • DC resistance: It should comply with the values specified in relevant standards. For example, the DC resistance per kilometer of copper conductors with different cross - sectional areas at 20 °C has corresponding standard values, which are related to the power transmission efficiency and heating conditions of the cable.
  •  
  • Insulation layer
  •  
  • Material: Polyvinyl chloride (PVC)
  • Thickness: It is determined according to the voltage level and nominal cross - sectional area of the cable, usually within [specific thickness range] millimeters (mm) to ensure sufficient insulation performance and prevent current leakage and short - circuit.
  • Insulation resistance: Under the specified test conditions (such as specific temperature, humidity, etc.), the insulation resistance value should meet the standard requirements, usually a relatively high value to ensure good electrical insulation.
  • Dielectric strength: It can withstand a certain voltage without breakdown. The specific value is determined according to the voltage level and standard of the cable, such as [specific voltage value] kilovolts per millimeter (kV/mm).
  •  
  • Sheath
  •  
  • Material: Polyethylene (PE)
  • Thickness: [specific thickness range] millimeters (mm), which should be sufficient to protect the internal structure of the cable from the influence of the external environment, including mechanical damage, water penetration, chemical corrosion, etc.
  • Appearance quality: The surface should be smooth, without cracks, bubbles and other defects, and the color should be uniform to ensure the overall quality and appearance of the cable.
  •  
  • Armoured layer
  •  
  • Material type: Commonly, there are steel - tape - armoured and steel - wire - armoured. Steel - tape - armoured is generally used in environments with relatively small pressure and tension, while steel - wire - armoured is more suitable for situations requiring high mechanical strength, such as underground or underwater laying and withstanding large external forces.
  • Armoured coverage rate: [specific percentage], indicating the proportion of the armoured material covering the circumference of the cable. Different coverage rates affect the protection ability and flexibility of the cable.
  • Specification of steel tape or wire: For example, the thickness and width of the steel tape, the diameter of the steel wire, etc. have corresponding standards and design requirements to meet different protection requirements.
  •  
  • Overall diameter of the cable
    It is determined by factors such as the number of cores, cross - sectional area, thickness of the insulation layer, thickness of the sheath and armouring condition of the cable. It is usually in millimeters (mm). The diameter size affects the laying space and installation method of the cable.
  • Rated voltage
    [specific voltage value] kilovolts (kV), indicating the voltage level at which the cable can operate safely for a long time. It is divided into different representation methods such as phase voltage and line voltage, and it is an important parameter in cable design and use.
  • Current - carrying capacity
    Under the specified environmental conditions (such as ambient temperature, laying method, etc.), the maximum current value that the cable can continuously and safely carry, with the unit of ampere (A). The current - carrying capacity is different under different cross - sectional areas and different laying conditions (such as laying in the air, buried laying, laying in pipes, etc.).
  • Cable length
    Usually in meters (m), it is customized according to user requirements. There are common standard lengths (such as 100 m, 200 m, etc.), and special lengths of cables can also be produced according to the requirements of specific projects.
  • Weight
    The weight of the cable per meter, with the unit of kilogram per meter (kg/m), which has certain reference value for cable transportation, installation and the design of support structure.
  • Operating ambient temperature
    The ambient temperature range for the normal operation of the cable, for example, from - 20 °C to + 60 °C, etc. Exceeding this range may affect the performance and life of the cable. Different materials and cable structures have different temperature adaptability.
  • Flame - retardant performance
    According to the application scenario of the cable, there may be different flame - retardant grades, such as ordinary flame - retardant, high - flame - retardant, etc. It is measured by relevant flame - retardant test standards. For example, under the specified fire source conditions, the self - extinguishing time, burning length and other indicators of the cable meet the requirements of the corresponding grade to ensure safety in emergency situations such as fire.
  • Bending radius
    During the cable laying and installation process, the minimum radius at which the cable can be bent, usually expressed as a multiple of the cable diameter, such as 6 times, 10 times the cable diameter, etc. If the bending radius is too small, it may damage the internal structure of the cable and affect the cable performance.


     
    Our Advantages
     
    Before production, conduct a circular inspection of the equipment to ensure that the probability of problems occurring at the production end is 0%.
    4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
    4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
    Professional production equipment and strict requirements for product quality are our lifelines.
    Conduct self-inspection during production, spot check by batch, and conduct ex-factory inspection after leaving the factory. Conduct product production supeBVRision in strict accordance with steps that far exceed the ISO 9001 quality control standard.
    4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
    4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable
    Ultra-large-scale inventory is also one of our advantages.

     

    Not only do we have cables and wires. We are a group company. Under the company, there is a power design institute, a power installation company, a production plant for power distribution boxes and cabinets, a production plant for cable trays and cable accessories, and a production plant for cable conduits. We can provide integrated seBVRices from design and research to products and then to construction. If you have any power-related issues, we welcome you to discuss with us. We will do our best to provide a solution. And these seBVRices are permanently free of charge!!!
    4*6mm² +1*4mm² Armoured Copper Cable, Polyvinyl Chloride - Insulated, Polyethylene - Sheathed Power Cable

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