Power available for Machining given Machining time for maximum power Solution

STEP 0: Pre-Calculation Summary
Formula Used
Power Available for Machining = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time for Maximum Power
Pm = (60*VRemoved*ps)/tmaxp
This formula uses 4 Variables
Variables Used
Power Available for Machining - (Measured in Watt) - Power Available for Machining is defined as the amount of power available during the machining process.
Volume of Work Material Removed - (Measured in Cubic Meter) - Volume of work material removed is the volume of work material removed during machining.
Specific Cutting Energy in Machining - (Measured in Joule per Cubic Meter) - Specific Cutting Energy in Machining is the energy consumed to remove a unit volume of material, which is calculated as the ratio of cutting energy E to material removal volume V.
Machining Time for Maximum Power - (Measured in Second) - Machining Time for Maximum Power is the time for processing when the workpiece is machined under maximum power conditions.
STEP 1: Convert Input(s) to Base Unit
Volume of Work Material Removed: 0.8 Cubic Meter --> 0.8 Cubic Meter No Conversion Required
Specific Cutting Energy in Machining: 275 Joule per Cubic Meter --> 275 Joule per Cubic Meter No Conversion Required
Machining Time for Maximum Power: 48.925 Second --> 48.925 Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pm = (60*VRemoved*ps)/tmaxp --> (60*0.8*275)/48.925
Evaluating ... ...
Pm = 269.800715380685
STEP 3: Convert Result to Output's Unit
269.800715380685 Watt -->0.269800715380685 Kilowatt (Check conversion here)
FINAL ANSWER
0.269800715380685 0.269801 Kilowatt <-- Power Available for Machining
(Calculation completed in 00.004 seconds)

Credits

Created by Parul Keshav
National Institute of Technology (NIT), Srinagar
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Verified by Kethavath Srinath
Osmania University (OU), Hyderabad
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2 Power available Calculators

Power available for Machining given Machining time for maximum power
Go Power Available for Machining = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time for Maximum Power
Power available for Machining given Initial weight of workpiece
Go Power Available for Machining = Constant for Tool Type(a)*(Initial Work Piece Weight)^Constant for Tool Type(b)

Power available for Machining given Machining time for maximum power Formula

Power Available for Machining = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time for Maximum Power
Pm = (60*VRemoved*ps)/tmaxp

What are the lathe operations?

A lathe is a tool that rotates the workpiece on its axis to perform various operations such as cutting, sanding, knurling, drilling, or deformation, facing, turning, with tools that are applied to the workpiece to create an object with symmetry about an axis of rotation.

How to Calculate Power available for Machining given Machining time for maximum power?

Power available for Machining given Machining time for maximum power calculator uses Power Available for Machining = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time for Maximum Power to calculate the Power Available for Machining, The Power available for Machining given Machining time for maximum power is defined as the amount of power available during the machining process. Power Available for Machining is denoted by Pm symbol.

How to calculate Power available for Machining given Machining time for maximum power using this online calculator? To use this online calculator for Power available for Machining given Machining time for maximum power, enter Volume of Work Material Removed (VRemoved), Specific Cutting Energy in Machining (ps) & Machining Time for Maximum Power (tmaxp) and hit the calculate button. Here is how the Power available for Machining given Machining time for maximum power calculation can be explained with given input values -> 0.00027 = (60*0.8*275)/48.925.

FAQ

What is Power available for Machining given Machining time for maximum power?
The Power available for Machining given Machining time for maximum power is defined as the amount of power available during the machining process and is represented as Pm = (60*VRemoved*ps)/tmaxp or Power Available for Machining = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time for Maximum Power. Volume of work material removed is the volume of work material removed during machining, Specific Cutting Energy in Machining is the energy consumed to remove a unit volume of material, which is calculated as the ratio of cutting energy E to material removal volume V & Machining Time for Maximum Power is the time for processing when the workpiece is machined under maximum power conditions.
How to calculate Power available for Machining given Machining time for maximum power?
The Power available for Machining given Machining time for maximum power is defined as the amount of power available during the machining process is calculated using Power Available for Machining = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time for Maximum Power. To calculate Power available for Machining given Machining time for maximum power, you need Volume of Work Material Removed (VRemoved), Specific Cutting Energy in Machining (ps) & Machining Time for Maximum Power (tmaxp). With our tool, you need to enter the respective value for Volume of Work Material Removed, Specific Cutting Energy in Machining & Machining Time for Maximum Power and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Power Available for Machining?
In this formula, Power Available for Machining uses Volume of Work Material Removed, Specific Cutting Energy in Machining & Machining Time for Maximum Power. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Power Available for Machining = Constant for Tool Type(a)*(Initial Work Piece Weight)^Constant for Tool Type(b)
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