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The relation between the rating and dimension of rotating machines involves several factors. While there is not a single universally agreed number of factors due to the complexity and variations across different types of machines, some key factors commonly considered include:
1. Power Rating: The total power output the machine is designed to handle.
2. Speed: The rotational speed of the machine, which affects its size and design.
3. Voltage Level: Higher voltage machines typically require more insulation and thus might impact the dimensions.
4. Efficiency: Higher efficiency machines might use better-designed components that could affect size.
5. Cooling Method: The method used for cooling (air, liquid, etc.) can significantly impact the machine’s size and design.
6. Torque: The torque rating of the machine can influence its physical dimensions, especially the shaft and structural components.
7. Material: The materials used in construction (for electromagnetic cores, windings, frames, etc.) can affect size, particularly through their magnetic and thermal properties.
8. Design Standards and Safety Margins: Compliance with international standards and built-in safety margins can affect the overall size and design of the machine.
9. Type of Load: The nature of the load (constant, variable, impact, etc.) affects the design considerations for dimension and rating.
10. Ambient Conditions: The environmental conditions where the machine is to operate (temperature, altitude, humidity) can also impact the cooling requirements and, consequently,
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Explanation: There are 8 factors present in the relation between rating and dimension of
rotating machines. They are symbols, main dimensions, total loadings, specific loadings,
output equation, factors affecting size of rotating machine, choice of specific magnetic
loading, choice of specific electric loading.