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Max temp in chip in secondary deformation zone is defined as the maximum amount of heat up to which chip can reach. Check FAQs
θmax=θm+θs+θ0
θmax - Max Temp in Chip in Secondary Deformation Zone?θm - Temperature Rise in Secondary Deformation?θs - Temperature Rise in Primary Deformation?θ0 - Initial Workpiece Temperature?

Maximum temperature in secondary deformation zone Example

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Here is how the Maximum temperature in secondary deformation zone equation looks like with Values.

Here is how the Maximum temperature in secondary deformation zone equation looks like with Units.

Here is how the Maximum temperature in secondary deformation zone equation looks like.

669Edit=372Edit+275Edit+22Edit
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Maximum temperature in secondary deformation zone Solution

Follow our step by step solution on how to calculate Maximum temperature in secondary deformation zone?

FIRST Step Consider the formula
θmax=θm+θs+θ0
Next Step Substitute values of Variables
θmax=372°C+275°C+22°C
Next Step Convert Units
θmax=372K+275K+22°C
Next Step Prepare to Evaluate
θmax=372+275+22
Next Step Evaluate
θmax=942.15K
LAST Step Convert to Output's Unit
θmax=669°C

Maximum temperature in secondary deformation zone Formula Elements

Variables
Max Temp in Chip in Secondary Deformation Zone
Max temp in chip in secondary deformation zone is defined as the maximum amount of heat up to which chip can reach.
Symbol: θmax
Measurement: TemperatureUnit: °C
Note: Value should be greater than 0.
Temperature Rise in Secondary Deformation
Temperature Rise in Secondary Deformation is defined as the amount of rising in the temperature when the material passes through the secondary deformation zone.
Symbol: θm
Measurement: Temperature DifferenceUnit: °C
Note: Value should be greater than 0.
Temperature Rise in Primary Deformation
Temperature Rise in Primary Deformation is defined as the amount of rising in temperature when the material passes through the primary deformation zone.
Symbol: θs
Measurement: Temperature DifferenceUnit: °C
Note: Value should be greater than 0.
Initial Workpiece Temperature
Initial workpiece temperature is defined as the temperature of the workpiece before the metal cutting process.
Symbol: θ0
Measurement: TemperatureUnit: °C
Note: Value can be positive or negative.

Other Formulas to find Max Temp in Chip in Secondary Deformation Zone

​Go Maximum Temperature rise in Chip in Secondary deformation zone
θmax=θf1.13Rl0

Other formulas in Temperature Rise category

​Go Average Temperature Rise of Material under Primary Deformation Zone
θavg=(1-Γ)PsρwpCVcutacdcut
​Go Density of Material using Average Temperature Rise of material under Primary Shear Zone
ρwp=(1-Γ)PsθavgCVcutacdcut
​Go Specific Heat given Average Temperature Rise of Material under Primary Shear Zone
C=(1-Γ)PsρwpθavgVcutacdcut
​Go Cutting Speed given Average Temperature Rise of Material under Primary Shear Zone
Vcut=(1-Γ)PsρwpCθavgacdcut

How to Evaluate Maximum temperature in secondary deformation zone?

Maximum temperature in secondary deformation zone evaluator uses Max Temp in Chip in Secondary Deformation Zone = Temperature Rise in Secondary Deformation+Temperature Rise in Primary Deformation+Initial Workpiece Temperature to evaluate the Max Temp in Chip in Secondary Deformation Zone, The maximum temperature in secondary deformation zone formula is defined as the maximum amount of temperature rise of the chip in the secondary deformation zone. Max Temp in Chip in Secondary Deformation Zone is denoted by θmax symbol.

How to evaluate Maximum temperature in secondary deformation zone using this online evaluator? To use this online evaluator for Maximum temperature in secondary deformation zone, enter Temperature Rise in Secondary Deformation m), Temperature Rise in Primary Deformation s) & Initial Workpiece Temperature 0) and hit the calculate button.

FAQs on Maximum temperature in secondary deformation zone

What is the formula to find Maximum temperature in secondary deformation zone?
The formula of Maximum temperature in secondary deformation zone is expressed as Max Temp in Chip in Secondary Deformation Zone = Temperature Rise in Secondary Deformation+Temperature Rise in Primary Deformation+Initial Workpiece Temperature. Here is an example- 395.85 = 372+275+295.15.
How to calculate Maximum temperature in secondary deformation zone?
With Temperature Rise in Secondary Deformation m), Temperature Rise in Primary Deformation s) & Initial Workpiece Temperature 0) we can find Maximum temperature in secondary deformation zone using the formula - Max Temp in Chip in Secondary Deformation Zone = Temperature Rise in Secondary Deformation+Temperature Rise in Primary Deformation+Initial Workpiece Temperature.
What are the other ways to Calculate Max Temp in Chip in Secondary Deformation Zone?
Here are the different ways to Calculate Max Temp in Chip in Secondary Deformation Zone-
  • Max Temp in Chip in Secondary Deformation Zone=Average Temp Rise of Chip in Secondary Shear Zone*1.13*sqrt(Thermal Number/Length of Heat Source Per Chip Thickness)OpenImg
Can the Maximum temperature in secondary deformation zone be negative?
No, the Maximum temperature in secondary deformation zone, measured in Temperature cannot be negative.
Which unit is used to measure Maximum temperature in secondary deformation zone?
Maximum temperature in secondary deformation zone is usually measured using the Celsius[°C] for Temperature. Kelvin[°C], Fahrenheit[°C], Rankine[°C] are the few other units in which Maximum temperature in secondary deformation zone can be measured.
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