『Calculation formula for aluminum busbar current carrying capacity』Related information(clamp on meter|electromagnetic meter|venturi meterrotameter|orifice meter|ultrasonic flow meter|mass flow meter|coriolis mass flow meter|coriolis flow meter|magnetic flow meter|magmeter flow meter|magflow flow meter|mag meter flow meter|electromagnetic flow meter|vortex flow meter|turbine flow meter|thermal mass flow meter|thermal flow meter|rotameter flow meter)

1. Collection of copper aluminum busbar current carrying capacity calculation method
Estimation method is a simple method for calculating the current carrying capacity of copper aluminum busbar. The current carrying capacity of a single copper busbar can be obtained by multiplying the width and thickness coefficients. The double busbar current carrying capacity is increased by an empirical coefficient of 1.5 times on the basis of a single busbar. For copper and aluminum bars, their current carrying capacity can also be calculated in square meters, with copper bars typically ranging from 5-8 A/square meter and aluminum bars ranging from 3-5 A/square meter. At 40 ℃, the calculation method for the current carrying capacity of a copper busbar is to multiply the busbar width by a specific thickness coefficient, which varies depending on the busbar width. For example, a copper busbar with a thickness of 12 millimeters has a coefficient of 20, a copper busbar with a thickness of 10 millimeters has a coefficient of 18, and so on. For double-layer, three-layer, and four layer copper bars, the current carrying capacity is approximately 1.58 times, 2 times, and 2.45 times that of single-layer copper bars, respectively. It should be noted that the current carrying capacity of copper bars will decrease by about 15% at 40 ℃ compared to 25 ℃. The calculation method for the current carrying capacity of aluminum bars is similar to that of copper bars, but the current carrying capacity of aluminum bars is usually smaller than that of copper bars. The calculation formula for aluminum busbar current carrying capacity is the product of busbar width multiplied by busbar thickness plus 8.5. For example, a 15mm wide and 3mm thick alu


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