Depth of cut given Machining time for maximum power Formula

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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. Check FAQs
dcut=tpPmpsπLdw
dcut - Depth of Cut?tp - Machining Time For Maximum Power?Pm - Power Available For Machining?ps - Specific Cutting Energy in Machining?L - Length of Workpiece?dw - Diameter of Workpiece?π - Archimedes' constant?

Depth of cut given Machining time for maximum power Example

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With units
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Here is how the Depth of cut given Machining time for maximum power equation looks like with Values.

Here is how the Depth of cut given Machining time for maximum power equation looks like with Units.

Here is how the Depth of cut given Machining time for maximum power equation looks like.

2.99Edit=48.925Edit11.2Edit3000.487Edit3.1416255.1415Edit76.2Edit
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Depth of cut given Machining time for maximum power Solution

Follow our step by step solution on how to calculate Depth of cut given Machining time for maximum power?

FIRST Step Consider the formula
dcut=tpPmpsπLdw
Next Step Substitute values of Variables
dcut=48.925s11.2kW3000.487MJ/m³π255.1415mm76.2mm
Next Step Substitute values of Constants
dcut=48.925s11.2kW3000.487MJ/m³3.1416255.1415mm76.2mm
Next Step Convert Units
dcut=48.925s11200W3E+9J/m³3.14160.2551m0.0762m
Next Step Prepare to Evaluate
dcut=48.925112003E+93.14160.25510.0762
Next Step Evaluate
dcut=0.00298999979840185m
Next Step Convert to Output's Unit
dcut=2.98999979840185mm
LAST Step Rounding Answer
dcut=2.99mm

Depth of cut given Machining time for maximum power Formula Elements

Variables
Constants
Depth 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.
Symbol: dcut
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Machining Time For Maximum Power
Machining Time For Maximum Power is the time for processing when the workpiece is machined under maximum power conditions.
Symbol: tp
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Power Available For Machining
Power Available for Machining is defined as the amount of power available during the machining process.
Symbol: Pm
Measurement: PowerUnit: kW
Note: Value should be greater than 0.
Specific Cutting Energy in 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.
Symbol: ps
Measurement: Energy DensityUnit: MJ/m³
Note: Value should be greater than 0.
Length of Workpiece
Length of Workpiece is the measurement or extent of workpiece from end to end in the direction of cut.
Symbol: L
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Diameter of Workpiece
Diameter of Workpiece is defined as the diameter of the workpiece which is undergoing grinding.
Symbol: dw
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Archimedes' constant
Archimedes' constant is a mathematical constant that represents the ratio of the circumference of a circle to its diameter.
Symbol: π
Value: 3.14159265358979323846264338327950288

Other formulas in Machining Time category

​Go Time Proportion of Cutting Edge Engagement for Maximum Power delivery given Machining Cost
Q=T(Cmtp)-MMtc+Ct
​Go Machining Time for Maximum Power given Machining Cost
tp=CmM+(QMtc+CtT)
​Go Machining Time for optimum speed for Maximum Power given Machining Cost
tmc=tp(((CmMtp)-1)1-nn)n
​Go Machining Time for Minimum Cost given Surface Generation rate
tmin=AmRsg

How to Evaluate Depth of cut given Machining time for maximum power?

Depth of cut given Machining time for maximum power evaluator uses Depth of Cut = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Diameter of Workpiece) to evaluate the Depth of Cut, The Depth of cut given Machining time for maximum power is the total amount of metal removed per pass of the cutting tool. It is also called Back Engagement. Depth of Cut is denoted by dcut symbol.

How to evaluate Depth of cut given Machining time for maximum power using this online evaluator? To use this online evaluator for Depth of cut given Machining time for maximum power, enter Machining Time For Maximum Power (tp), Power Available For Machining (Pm), Specific Cutting Energy in Machining (ps), Length of Workpiece (L) & Diameter of Workpiece (dw) and hit the calculate button.

FAQs on Depth of cut given Machining time for maximum power

What is the formula to find Depth of cut given Machining time for maximum power?
The formula of Depth of cut given Machining time for maximum power is expressed as Depth of Cut = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Diameter of Workpiece). Here is an example- 3003.437 = (48.925*11200)/(3000487000*pi*0.2551415*0.0762).
How to calculate Depth of cut given Machining time for maximum power?
With Machining Time For Maximum Power (tp), Power Available For Machining (Pm), Specific Cutting Energy in Machining (ps), Length of Workpiece (L) & Diameter of Workpiece (dw) we can find Depth of cut given Machining time for maximum power using the formula - Depth of Cut = (Machining Time For Maximum Power*Power Available For Machining)/(Specific Cutting Energy in Machining*pi*Length of Workpiece*Diameter of Workpiece). This formula also uses Archimedes' constant .
Can the Depth of cut given Machining time for maximum power be negative?
No, the Depth of cut given Machining time for maximum power, measured in Length cannot be negative.
Which unit is used to measure Depth of cut given Machining time for maximum power?
Depth of cut given Machining time for maximum power is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Depth of cut given Machining time for maximum power can be measured.
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