Well, First get the Dia of material in inches = A
Get the thickness of material in inches = B
Now, Multiplier for M.s is 80 & for soft material like copper, brass, alluminium is 6 0.
now put the A X B X MULTIPLIER = TONNAGE
Example,
1 inch dia
5mm thickness
Material is M.S.
SO TONNAGE is : 1 x 0.1968 x 80 = 15.75 is tonnage required...
ENJOY TONNAGE FORMULA.
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Hydraulics are typically measured in pounds per square inch, which is a measurement of pressure, or force exerted with respect to area. To calculate the force used, multiply the pressure measurement by the area measurement in inches. This will give you the force in pounds, then convert that to tons.
To calculate the tonnage of an air handling unit (AHU), you can use the formula: Tonnage = (CFM × ΔT) / 24,000, where CFM is the airflow in cubic feet per minute and ΔT is the temperature difference in degrees Fahrenheit between the supply and return air. The factor of 24,000 is used because one ton of cooling is equivalent to 12,000 BTUs per hour, and the formula converts CFM and temperature difference into a tonnage value. Ensure that the CFM and temperature difference are accurately measured for precise tonnage calculations.
To calculate forging tonnage, you can use the formula: Tonnage = (Area of the part in square inches) × (Material yield strength in pounds per square inch) × (Safety factor). The area can be derived from the dimensions of the part being forged, while the yield strength varies based on the material. Typically, a safety factor of 1.5 to 2 is applied to account for variations in material and process conditions. This calculation helps determine the necessary force required for the forging operation.
Naval tonnage is typically calculated using the volume of a ship's hull, measured in cubic feet or meters, and then converted to tonnage by dividing by a standard density, usually around 35 cubic feet per ton for seawater. The most common methods include Gross Tonnage (GT), which measures the total internal volume, and Net Tonnage (NT), which accounts for usable space after excluding non-revenue generating areas. Tonnage can also be expressed in terms of displacement, which refers to the weight of the water displaced by the ship when floating. The specific formula and method can vary depending on the purpose and regulatory requirements.
how can i find the tonnage of mechanical press machine
tonnage capacity is equal to area x shear strength of material. calculate area by multipying length and thickness of material.
tonnage capacity is equal to area x shear strength of material. calculate area by multipying length and thickness of material.
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To calculate casting machine tonnage, you need to consider the maximum pressure that the machine can exert and the area of the die or mold. The formula is: Tonnage = Pressure (in tons per square inch) × Area (in square inches). Ensure that the pressure is appropriate for the material being cast and that the area corresponds to the surface where the pressure is applied. It's essential to factor in safety margins and the specific requirements of the casting process.
machine capacity=looknath/rupesh *100
To calculate the weight on a leg press machine, you typically add the weight plates on the machine to the weight of the sled or platform. This total weight is the amount you are pressing with your legs.
Hydraulics are typically measured in pounds per square inch, which is a measurement of pressure, or force exerted with respect to area. To calculate the force used, multiply the pressure measurement by the area measurement in inches. This will give you the force in pounds, then convert that to tons.
For steel, the formula is (material thickness) x (inches of cut) x 50,000.
the tonnage capacity is the strain from the tub height and impact speed. The nominal (Stated) tonnage for a press is around 70% of peak.
Press tonnage refers to the maximum force that a mechanical press can exert during operations such as stamping or forming metal. It is typically measured in tons and indicates the capacity of the press to shape or cut materials effectively. Higher tonnage allows for processing thicker or harder materials, while lower tonnage is suitable for lighter applications. Understanding press tonnage is crucial for selecting the appropriate equipment for manufacturing processes.
2.23 tons