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Metal Machining
Taylor's Tool Life Exponent in Production Cost Formulas
Taylor’s Tool Life Exponent is an experimental exponent that helps in quantifying the rate of Tool Wear. And is denoted by n.
Formulas to find Taylor's Tool Life Exponent in Production Cost
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x
Taylor's Exponent for Minimum Machining Cost per component
Go
f
x
Taylor's Exponent for Minimum Machining Cost given Tool Life
Go
Production Cost formulas that make use of Taylor's Tool Life Exponent
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x
Minimum Production Cost per Component
Go
f
x
Machining and Operating Rate given Minimum Production Cost
Go
f
x
Non-Productive Time per component given Minimum Production Cost
Go
f
x
Constant for Machining Operation given Minimum Production Cost
Go
f
x
Reference Tool Life given Minimum Production Cost
Go
f
x
Reference Cutting Velocity given Minimum Production Cost
Go
f
x
Tool Life for minimum cost given Minimum Production Cost
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f
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Machining Time per component for Minimum Machining Cost
Go
f
x
Tool Life of One Tool for Minimum Machining Cost given Tool Changing Cost per Tool
Go
f
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Tool Changing Time for 1 Tool given Tool Life for Minimum Machining Cost
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f
x
Tool Life of One Tool for Minimum Machining Cost
Go
f
x
Tool Changing Cost per Tool given Tool Life for Minimum Machining Cost
Go
List of variables in Production Cost formulas
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x
Machining Time for Minimum Cost
Go
f
x
Machining and Operating Rate
Go
f
x
Machining and Operating Cost of Each Product
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f
x
Time to Change One Tool
Go
f
x
Cost of a Tool
Go
f
x
Time Proportion
Go
f
x
Tool Life
Go
FAQ
What is the Taylor's Tool Life Exponent?
Taylor’s Tool Life Exponent is an experimental exponent that helps in quantifying the rate of Tool Wear.
Can the Taylor's Tool Life Exponent be negative?
{YesorNo}, the Taylor's Tool Life Exponent, measured in {OutputVariableMeasurementName} {CanorCannot} be negative.
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