Feed given Constant for Cylindrical Turning Solution

STEP 0: Pre-Calculation Summary
Formula Used
Feed = pi*Diameter of Workpiece*Length of Cut/Constant For Machining Condition
fin = pi*dworkpiece*Lcut/K
This formula uses 1 Constants, 4 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Feed - (Measured in Meter) - The Feed is the distance the cutting tool advances along the length of the work for every revolution of the spindle.
Diameter of Workpiece - (Measured in Meter) - The Diameter of Workpiece is defined as the diameter of the workpiece which is undergoing grinding.
Length of Cut - (Measured in Meter) - Length of cut (LOC) is a measurement of the functional cutting depth in the axial direction for a machining process.
Constant For Machining Condition - (Measured in Meter) - Constant For Machining Condition can be regarded as the distance moved by the tool corner relative to the workpiece during a particular machining condition. It is usually measured in "Metre".
STEP 1: Convert Input(s) to Base Unit
Diameter of Workpiece: 76.2 Millimeter --> 0.0762 Meter (Check conversion here)
Length of Cut: 9 Millimeter --> 0.009 Meter (Check conversion here)
Constant For Machining Condition: 1200.01 Millimeter --> 1.20001 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
fin = pi*dworkpiece*Lcut/K --> pi*0.0762*0.009/1.20001
Evaluating ... ...
fin = 0.00179540523981623
STEP 3: Convert Result to Output's Unit
0.00179540523981623 Meter -->1.79540523981623 Millimeter (Check conversion here)
FINAL ANSWER
1.79540523981623 1.795405 Millimeter <-- Feed
(Calculation completed in 00.004 seconds)

Credits

Created by Kumar Siddhant
Indian Institute of Information Technology, Design and Manufacturing (IIITDM), Jabalpur
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16 Turning Operation Calculators

Batch size given Non-productive time in turning
Go Batch Size = (Basic Setup Time+Number of Tools Used*Setup Time per Tool)/((Non-Productive Time-Loading and Unloading Time-(Tool Positioning Time per Operation*Number of Operations)))
Tool positioning time per operation given Non-productive time in turning
Go Tool Positioning Time per Operation = (Non-Productive Time-((Basic Setup Time+Number of Tools Used*Setup Time per Tool)/Batch Size)-Loading and Unloading Time)/Number of Operations
Loading and unloading time given Non-productive time in turning
Go Loading and Unloading Time = Non-Productive Time-((Basic Setup Time+Number of Tools Used*Setup Time per Tool)/Batch Size)-(Tool Positioning Time per Operation*Number of Operations)
Set-up Time per tool terms of Non-productive time in turning
Go Setup Time per Tool = ((Non-Productive Time-Loading and Unloading Time-(Tool Positioning Time per Operation*Number of Operations))*Batch Size-Basic Setup Time)/Number of Tools Used
Number of operations given Non-productive time in turning
Go Number of Operations = (Non-Productive Time-((Basic Setup Time+Number of Tools Used*Setup Time per Tool)/Batch Size)-Loading and Unloading Time)/Tool Positioning Time per Operation
Basic setup time given Non-productive time in turning
Go Basic Setup Time = (Non-Productive Time-Loading and Unloading Time-(Tool Positioning Time per Operation*Number of Operations))*Batch Size-(Number of Tools Used*Setup Time per Tool)
Number of tools given Non-productive time in turning
Go Number of Tools Used = ((Non-Productive Time-Loading and Unloading Time-(Tool Positioning Time per Operation*Number of Operations))*Batch Size-Basic Setup Time)/Setup Time per Tool
Non-productive time in turning
Go Non-Productive Time = ((Basic Setup Time+Number of Tools Used*Setup Time per Tool)/Batch Size)+Loading and Unloading Time+(Tool Positioning Time per Operation*Number of Operations)
Diameter of workpiece given Constant for Cylindrical Turning
Go Diameter of Workpiece = Constant For Machining Condition*Feed/(pi*Length of Cut)
Turning Length given Constant for Cylindrical Turning
Go Length of Cut = Constant For Machining Condition*Feed/(pi*Diameter of Workpiece)
Feed given Constant for Cylindrical Turning
Go Feed = pi*Diameter of Workpiece*Length of Cut/Constant For Machining Condition
Constant for given Cylindrical Turning
Go Constant For Machining Condition = pi*Diameter of Workpiece*Length of Cut/Feed
Feed Rate for Turning Operation given Machining Time
Go Feed Rate = Length of Cut/(Machining Time*Angular Velocity of Job or Workpiece)
Machining Time for Turning Operation
Go Machining Time = Length of Cut/(Feed Rate*Angular Velocity of Job or Workpiece)
Diameter of turned parts given Length-to-diameter Ratio
Go Diameter of Workpiece = (1.67/Length to Diameter Ratio)^(1/0.68)
Length-to-diameter Ratio given diameter of turned parts
Go Length to Diameter Ratio = 1.67/(Diameter of Workpiece^0.68)

Feed given Constant for Cylindrical Turning Formula

Feed = pi*Diameter of Workpiece*Length of Cut/Constant For Machining Condition
fin = pi*dworkpiece*Lcut/K

Significance of Constant for Machining Operation

Constant for Machining Operation is the measure of accurate length the cutting tool works on a workpiece. Its value for different MAchining Operation such as Drilling, Milling is different even for similar jobs. It helps in determining the actual time for the tool engagement resulting in precise calculation of Tool Life.

How to Calculate Feed given Constant for Cylindrical Turning?

Feed given Constant for Cylindrical Turning calculator uses Feed = pi*Diameter of Workpiece*Length of Cut/Constant For Machining Condition to calculate the Feed, The Feed given Constant for Cylindrical Turning is a method to determine the maximum Feed that can be given to workpiece when Constant for Cylindrical Turning is bounded. Feed is denoted by fin symbol.

How to calculate Feed given Constant for Cylindrical Turning using this online calculator? To use this online calculator for Feed given Constant for Cylindrical Turning, enter Diameter of Workpiece (dworkpiece), Length of Cut (Lcut) & Constant For Machining Condition (K) and hit the calculate button. Here is how the Feed given Constant for Cylindrical Turning calculation can be explained with given input values -> 1795.405 = pi*0.0762*0.009/1.20001.

FAQ

What is Feed given Constant for Cylindrical Turning?
The Feed given Constant for Cylindrical Turning is a method to determine the maximum Feed that can be given to workpiece when Constant for Cylindrical Turning is bounded and is represented as fin = pi*dworkpiece*Lcut/K or Feed = pi*Diameter of Workpiece*Length of Cut/Constant For Machining Condition. The Diameter of Workpiece is defined as the diameter of the workpiece which is undergoing grinding, Length of cut (LOC) is a measurement of the functional cutting depth in the axial direction for a machining process & Constant For Machining Condition can be regarded as the distance moved by the tool corner relative to the workpiece during a particular machining condition. It is usually measured in "Metre".
How to calculate Feed given Constant for Cylindrical Turning?
The Feed given Constant for Cylindrical Turning is a method to determine the maximum Feed that can be given to workpiece when Constant for Cylindrical Turning is bounded is calculated using Feed = pi*Diameter of Workpiece*Length of Cut/Constant For Machining Condition. To calculate Feed given Constant for Cylindrical Turning, you need Diameter of Workpiece (dworkpiece), Length of Cut (Lcut) & Constant For Machining Condition (K). With our tool, you need to enter the respective value for Diameter of Workpiece, Length of Cut & Constant For Machining Condition and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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