Coupling Distance at Anna Crace blog

Coupling Distance. So, coupling distance is how big that space needs to be. Generally, distance increases with the diameter of the part, typical values being 0.75, 1.25, and 1.75 inches. The distance between the coil and the material being heated, known as the coupling distance, plays a crucial role in the quality and efficiency of the heating process. For progressive heating or scanning, a coupling distance of 0.075 inch (0.19 cm) is usually necessary to allow for variations in workpiece straightness. Coupling is the transfer of energy that occurs in the space between the heating portion of the coil and the workpiece. If a part were placed off center in a coil, the area closer to the coil turns would intersect a greater number of flux lines and.

Coupling coefficient k versus separation distance d. Data based on two
from www.researchgate.net

The distance between the coil and the material being heated, known as the coupling distance, plays a crucial role in the quality and efficiency of the heating process. If a part were placed off center in a coil, the area closer to the coil turns would intersect a greater number of flux lines and. For progressive heating or scanning, a coupling distance of 0.075 inch (0.19 cm) is usually necessary to allow for variations in workpiece straightness. So, coupling distance is how big that space needs to be. Coupling is the transfer of energy that occurs in the space between the heating portion of the coil and the workpiece. Generally, distance increases with the diameter of the part, typical values being 0.75, 1.25, and 1.75 inches.

Coupling coefficient k versus separation distance d. Data based on two

Coupling Distance If a part were placed off center in a coil, the area closer to the coil turns would intersect a greater number of flux lines and. For progressive heating or scanning, a coupling distance of 0.075 inch (0.19 cm) is usually necessary to allow for variations in workpiece straightness. If a part were placed off center in a coil, the area closer to the coil turns would intersect a greater number of flux lines and. The distance between the coil and the material being heated, known as the coupling distance, plays a crucial role in the quality and efficiency of the heating process. So, coupling distance is how big that space needs to be. Coupling is the transfer of energy that occurs in the space between the heating portion of the coil and the workpiece. Generally, distance increases with the diameter of the part, typical values being 0.75, 1.25, and 1.75 inches.

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