Diameter of workpiece terms of Machining time for maximum power Solution

STEP 0: Pre-Calculation Summary
Formula Used
Diameter of Workpiece = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Depth of Cut)
dw = (tmaxp*Pm)/(ps*pi*L*dcut)
This formula uses 1 Constants, 6 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Diameter of Workpiece - (Measured in Meter) - Diameter of Workpiece is defined as the diameter of the workpiece which is undergoing grinding.
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.
Power Available For Machining - (Measured in Watt) - Power Available for Machining is defined as the amount of power available during the machining process.
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.
Length of Workpiece - (Measured in Meter) - Length of Workpiece is the measurement or extent of Workpiece from end to end in the direction of Cut.
Depth of Cut - (Measured in Meter) - Depth of Cut is the tertiary cutting motion that provides a necessary depth of material that is required to remove by machining. It is usually given in the third perpendicular direction.
STEP 1: Convert Input(s) to Base Unit
Machining Time For Maximum Power: 48.925 Second --> 48.925 Second No Conversion Required
Power Available For Machining: 11.2 Kilowatt --> 11200 Watt (Check conversion ​here)
Specific Cutting Energy in Machining: 3000.487 Megajoule per Cubic Meter --> 3000487000 Joule per Cubic Meter (Check conversion ​here)
Length of Workpiece: 255.1415 Millimeter --> 0.2551415 Meter (Check conversion ​here)
Depth of Cut: 2.99 Millimeter --> 0.00299 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
dw = (tmaxp*Pm)/(ps*pi*L*dcut) --> (48.925*11200)/(3000487000*pi*0.2551415*0.00299)
Evaluating ... ...
dw = 0.0761999948622814
STEP 3: Convert Result to Output's Unit
0.0761999948622814 Meter -->76.1999948622814 Millimeter (Check conversion ​here)
FINAL ANSWER
76.1999948622814 76.19999 Millimeter <-- Diameter of Workpiece
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Parul Keshav
National Institute of Technology (NIT), Srinagar
Parul Keshav has created this Calculator and 300+ more calculators!
Verifier Image
Verified by Kethavath Srinath
Osmania University (OU), Hyderabad
Kethavath Srinath has verified this Calculator and 1200+ more calculators!

19 Machining Time Calculators

Constant for machine type b given Machining time for maximum power
​ Go Constant For Tool Type(b) = 1-(ln(Density of Work Piece*Constant For Tool Type(a)*Machining Time For Maximum Power)-ln(Proportion of Initial Volume*Specific Cutting Energy in Machining))/ln(Initial Work Piece Weight)
Machining Time for optimum speed for Maximum Power given Machining Cost
​ Go Machining Time For Minimum Cost = Machining Time For Maximum Power*((((Machining and Operating Cost of Each Product/(Machining and Operating Rate*Machining Time For Maximum Power))-1)*(1-Taylor's Tool Life Exponent)/Taylor's Tool Life Exponent)^Taylor's Tool Life Exponent)
Tool Changing Time for 1 Tool given Machining Cost for Maximum Power
​ Go Time to Change One Tool = ((Tool Life*((Machining and Operating Cost of Each Product/Machining Time For Maximum Power)-Machining and Operating Rate)/Time Proportion of Cutting Edge Engagement)-Cost of A Tool)/Machining and Operating Rate
Time Proportion of Cutting Edge Engagement for Maximum Power delivery given Machining Cost
​ Go Time Proportion of Cutting Edge Engagement = Tool Life*((Machining and Operating Cost of Each Product/Machining Time For Maximum Power)-Machining and Operating Rate)/(Machining and Operating Rate*Time to Change One Tool+Cost of A Tool)
Tool Life for Maximum Power delivery given Machining Cost for Maximum Power
​ Go Tool Life = Time Proportion of Cutting Edge Engagement*(Machining and Operating Rate*Time to Change One Tool+Cost of A Tool)/((Machining and Operating Cost of Each Product/Machining Time For Maximum Power)-Machining and Operating Rate)
Machining Time for Maximum Power given Machining Cost
​ Go Machining Time For Maximum Power = Machining and Operating Cost of Each Product/(Machining and Operating Rate+(Time Proportion of Cutting Edge Engagement*(Machining and Operating Rate*Time to Change One Tool+Cost of A Tool)/Tool Life))
Machining time for maximum power given Initial weight of workpiece
​ Go Machining Time For Maximum Power = (Proportion of Initial Volume*Specific Cutting Energy in Machining*Initial Work Piece Weight^(1-Constant For Tool Type(b)))/(Density of Work Piece*Constant For Tool Type(a))
Constant for machine type given Machining time for maximum power
​ Go Constant For Tool Type(a) = (Proportion of Initial Volume*Specific Cutting Energy in Machining*Initial Work Piece Weight^(1-Constant For Tool Type(b)))/(Density of Work Piece*Machining Time For Maximum Power)
Diameter of workpiece terms of Machining time for maximum power
​ Go Diameter of Workpiece = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Depth of Cut)
Depth of cut given Machining time for maximum power
​ Go Depth of Cut = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Diameter of Workpiece)
Diameter of Workpiece given Surface Generation rate
​ Go Diameter of Workpiece For Surface Generation = (Machining Time For Minimum Cost*Surface Generation Rate)/(pi*Length of Workpiece)
Length of Workpiece given Surface Generation rate
​ Go Length of Workpiece For Surface Generation = (Machining Time For Minimum Cost*Surface Generation Rate)/(pi*Diameter of Workpiece)
Power available for Machining given Machining time for maximum power
​ Go Power Available For Machining For Maximum Power = (60*Volume of Work Material Removed*Specific Cutting Energy in Machining)/Machining Time For Maximum Power
Volume of material to be removed given Machining time for maximum power
​ Go Volume of Work Material Removed = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining)
Specific cutting energy given Machining time for maximum power
​ Go Specific Cutting Energy in Machining = (Machining Time For Maximum Power*Power Available For Machining)/(Volume of Work Material Removed)
Machining time for maximum power in Turning
​ Go Machining Time For Maximum Power = (Volume of Work Material Removed*Specific Cutting Energy in Machining)/Power Available For Machining
Surface Generation Rate
​ Go Surface Generation Rate For Machining Time = (Surface Area of Workpiece)/Machining Time For Minimum Cost
Machining Time for Minimum Cost given Surface Generation rate
​ Go Machining Surface Time For Minimum Cost = (Surface Area of Workpiece)/Surface Generation Rate
Machining time under Max power for free machining
​ Go Machining Time For Free Machining = 49.9*Initial Work Piece Weight^0.47

Diameter of workpiece terms of Machining time for maximum power Formula

Diameter of Workpiece = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Depth of Cut)
dw = (tmaxp*Pm)/(ps*pi*L*dcut)

What is turning used to make?

Turning is used to produce rotational, typically axisymmetric, parts that have many features, such as holes, grooves, threads, tapers, various diameter steps, and even contoured surfaces.

How to Calculate Diameter of workpiece terms of Machining time for maximum power?

Diameter of workpiece terms of Machining time for maximum power calculator uses Diameter of Workpiece = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Depth of Cut) to calculate the Diameter of Workpiece, The Diameter of workpiece terms of Machining time for maximum power is defined as the diameter of the workpiece which is undergoing turning operation. Diameter of Workpiece is denoted by dw symbol.

How to calculate Diameter of workpiece terms of Machining time for maximum power using this online calculator? To use this online calculator for Diameter of workpiece terms of Machining time for maximum power, enter Machining Time For Maximum Power (tmaxp), Power Available For Machining (Pm), Specific Cutting Energy in Machining (ps), Length of Workpiece (L) & Depth of Cut (dcut) and hit the calculate button. Here is how the Diameter of workpiece terms of Machining time for maximum power calculation can be explained with given input values -> 76542.44 = (48.925*11200)/(3000487000*pi*0.2551415*0.00299).

FAQ

What is Diameter of workpiece terms of Machining time for maximum power?
The Diameter of workpiece terms of Machining time for maximum power is defined as the diameter of the workpiece which is undergoing turning operation and is represented as dw = (tmaxp*Pm)/(ps*pi*L*dcut) or Diameter of Workpiece = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Depth of Cut). Machining Time For Maximum Power is the time for processing when the workpiece is machined under maximum power conditions, Power Available for Machining is defined as the amount of power available during the machining process, 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, Length of Workpiece is the measurement or extent of Workpiece from end to end in the direction of Cut & Depth of Cut is the tertiary cutting motion that provides a necessary depth of material that is required to remove by machining. It is usually given in the third perpendicular direction.
How to calculate Diameter of workpiece terms of Machining time for maximum power?
The Diameter of workpiece terms of Machining time for maximum power is defined as the diameter of the workpiece which is undergoing turning operation is calculated using Diameter of Workpiece = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Depth of Cut). To calculate Diameter of workpiece terms of Machining time for maximum power, you need Machining Time For Maximum Power (tmaxp), Power Available For Machining (Pm), Specific Cutting Energy in Machining (ps), Length of Workpiece (L) & Depth of Cut (dcut). With our tool, you need to enter the respective value for Machining Time For Maximum Power, Power Available For Machining, Specific Cutting Energy in Machining, Length of Workpiece & Depth of Cut and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!