Lead sheathed copper tape is otherwise called lead sheathed copper transmitter. These are generally utilized as a part of different electrical applications. We likewise guarantee that these copper profiles are made accessible in strict dimensional resilience with essential surface treatment like electro-plated tin plating and different choices as requested. We Chhajed Steel & Alloys Pvt Ltd. best Manufacturers, Exporters & Stockist of Lead Sheathed Copper Tape in England.
Physical Properties of Lead-Sheathed Copper:
The most important physical properties of lead-sheathed copper used for the earth electrodes:
Lead-sheathed copper tape alludes to a specific sort of electrical conduit utilized in different modern applications. This item is basically a copper tape with a protective layer of lead sheathing, which gives a few advantages. The copper core guarantees phenomenal electrical conductivity, making it ideal for sending electrical signals and power proficiently. Copper is chosen for its high conductivity and erosion resistance.
The lead sheath encompassing the copper tape offers extraordinary security against environmental factors like moisture, chemicals, and abrasion. Lead is profoundly impervious to consumption, making it appropriate for use in brutal circumstances. Moreover, the lead sheath gives mechanical strength, guaranteeing the tape stays in one piece and is utilitarian much under pressure.
Lead-sheathed copper tape tracks down broad use in underground and submerged electrical establishments, where security against moisture is vital. It is regularly utilized in power transmission and dispersion frameworks, particularly in conditions where customary links may be vulnerable to harm. This item is leaned toward in enterprises like broadcast communications, energy, and transportation.
- Thickness of lead sheath | mm | 2.0 |
- Electrical resistivity of copper at 20°C | Wmm2/m | 0.0176 |
- Copper melting point | °C | 1083 |
- Lead melting point | °C | 327 |
- Current density at which the conductor temperature rises from 40°C to 150°C in a time of 1 s if all heat is retained in conductor |
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