Reference cutting speed given tool life and distance moved by tool corner Formula

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Cutting Speed is defined as the speed at which the work moves with respect to the tool (usually measured in feet per minute). Check FAQs
Vc=((TTref)z)Ktm
Vc - Cutting Speed?T - Tool Life?Tref - Reference Tool Life?z - Taylors Tool Life Exponent in Tool Life?K - Constant For Machining Condition?tm - Machining Time?

Reference cutting speed given tool life and distance moved by tool corner Example

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Here is how the Reference cutting speed given tool life and distance moved by tool corner equation looks like with Values.

Here is how the Reference cutting speed given tool life and distance moved by tool corner equation looks like with Units.

Here is how the Reference cutting speed given tool life and distance moved by tool corner equation looks like.

0.49Edit=((52.08Edit60Edit)0.125Edit)186.0331Edit373Edit
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Reference cutting speed given tool life and distance moved by tool corner Solution

Follow our step by step solution on how to calculate Reference cutting speed given tool life and distance moved by tool corner?

FIRST Step Consider the formula
Vc=((TTref)z)Ktm
Next Step Substitute values of Variables
Vc=((52.08s60s)0.125)186.0331m373s
Next Step Prepare to Evaluate
Vc=((52.0860)0.125)186.0331373
Next Step Evaluate
Vc=0.490000312406169m/s
LAST Step Rounding Answer
Vc=0.49m/s

Reference cutting speed given tool life and distance moved by tool corner Formula Elements

Variables
Cutting Speed
Cutting Speed is defined as the speed at which the work moves with respect to the tool (usually measured in feet per minute).
Symbol: Vc
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Tool Life
Tool Life is the period of time for which the cutting edge, affected by the cutting procedure, retains its cutting capacity between sharpening operations.
Symbol: T
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Reference Tool Life
Reference Tool Life is the tool life of the tool obtained in the reference to machining condition.
Symbol: Tref
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Taylors Tool Life Exponent in Tool Life
Taylors Tool Life Exponent in Tool Life is an experimental exponent that helps in quantifying the rate of tool wear.
Symbol: z
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 1.
Constant For Machining Condition
Constant For Machining Condition can be regarded as the distance moved by the tool corner relative to the workpiece during a particular machining condition.
Symbol: K
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Machining Time
Machining Time is the time when a machine is actually processing something. Generally, machining time is the term used when there is a removal of unwanted material.
Symbol: tm
Measurement: TimeUnit: s
Note: Value should be greater than 0.

Other formulas in Tool Life category

​Go Volume of Metal removed given Cutting Velocity and Tool Life
vol=TLVfd'cut
​Go Feed given Cutting Velocity, Tool Life, and Volume of Metal Removed
f=volTLVd'cut
​Go Depth of Cut given Cutting Velocity, Tool Life, and Volume of Metal Removed
d'cut=volTLfV
​Go Tool temperature
θ=C0UsV0.44A0.22k0.44c0.56

How to Evaluate Reference cutting speed given tool life and distance moved by tool corner?

Reference cutting speed given tool life and distance moved by tool corner evaluator uses Cutting Speed = ((Tool Life/Reference Tool Life)^Taylors Tool Life Exponent in Tool Life)*Constant For Machining Condition/Machining Time to evaluate the Cutting Speed, The Reference cutting speed given tool life and distance moved by tool corner is defined as the speed at which the work moves with respect to the tool for reference tool life. (usually measured in feet per minute). Cutting Speed is denoted by Vc symbol.

How to evaluate Reference cutting speed given tool life and distance moved by tool corner using this online evaluator? To use this online evaluator for Reference cutting speed given tool life and distance moved by tool corner, enter Tool Life (T), Reference Tool Life (Tref), Taylors Tool Life Exponent in Tool Life (z), Constant For Machining Condition (K) & Machining Time (tm) and hit the calculate button.

FAQs on Reference cutting speed given tool life and distance moved by tool corner

What is the formula to find Reference cutting speed given tool life and distance moved by tool corner?
The formula of Reference cutting speed given tool life and distance moved by tool corner is expressed as Cutting Speed = ((Tool Life/Reference Tool Life)^Taylors Tool Life Exponent in Tool Life)*Constant For Machining Condition/Machining Time. Here is an example- 0.49 = ((52.08/60)^0.125)*186.0331/373.
How to calculate Reference cutting speed given tool life and distance moved by tool corner?
With Tool Life (T), Reference Tool Life (Tref), Taylors Tool Life Exponent in Tool Life (z), Constant For Machining Condition (K) & Machining Time (tm) we can find Reference cutting speed given tool life and distance moved by tool corner using the formula - Cutting Speed = ((Tool Life/Reference Tool Life)^Taylors Tool Life Exponent in Tool Life)*Constant For Machining Condition/Machining Time.
Can the Reference cutting speed given tool life and distance moved by tool corner be negative?
No, the Reference cutting speed given tool life and distance moved by tool corner, measured in Speed cannot be negative.
Which unit is used to measure Reference cutting speed given tool life and distance moved by tool corner?
Reference cutting speed given tool life and distance moved by tool corner is usually measured using the Meter per Second[m/s] for Speed. Meter per Minute[m/s], Meter per Hour[m/s], Kilometer per Hour[m/s] are the few other units in which Reference cutting speed given tool life and distance moved by tool corner can be measured.
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