Traverse Speed for Cylindrical and Internal Grinder given MRR Solution

STEP 0: Pre-Calculation Summary
Formula Used
Traverse Speed = pi*Feed Rate*Work Surface Diameter/Metal removal rate
Vtrav = pi*f*dw/Zw
This formula uses 1 Constants, 4 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Traverse Speed - (Measured in Meter per Second) - Traverse Speed is the rate at which the gantry and spindle move in between cuts.
Feed Rate - (Measured in Meter Per Revolution) - Feed Rate is defined as the tool's distance travelled during one spindle revolution.
Work Surface Diameter - (Measured in Meter) - Work Surface Diameter is the diameter of a cylindrical Job or Workpiece before the Machining operation has been done on it.
Metal removal rate - (Measured in Cubic Meter per Second) - Metal removal rate (MRR) is the amount of material removed per time unit (usually per minute) when performing machining operations such as using a lathe or milling machine.
STEP 1: Convert Input(s) to Base Unit
Feed Rate: 0.7 Millimeter Per Revolution --> 0.0007 Meter Per Revolution (Check conversion here)
Work Surface Diameter: 25 Millimeter --> 0.025 Meter (Check conversion here)
Metal removal rate: 0.16 Cubic Meter per Second --> 0.16 Cubic Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vtrav = pi*f*dw/Zw --> pi*0.0007*0.025/0.16
Evaluating ... ...
Vtrav = 0.000343611696486384
STEP 3: Convert Result to Output's Unit
0.000343611696486384 Meter per Second --> No Conversion Required
FINAL ANSWER
0.000343611696486384 0.000344 Meter per Second <-- Traverse Speed
(Calculation completed in 00.004 seconds)

Credits

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Indian Institute of Information Technology, Design and Manufacturing (IIITDM), Jabalpur
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13 Grain Calculators

Number of active Grains per unit area given Constant for grinding wheel
Go Number of active grains per Area on wheel surface = 6/(Constant for particular grinding wheel*Grain aspect ratio*sqrt(Diameter of Grinding Tool Wheel))
Grain-aspect Ratio given Constant for grinding wheel
Go Grain aspect ratio = 6/(Number of active grains per Area on wheel surface*Constant for particular grinding wheel*sqrt(Diameter of Grinding Tool Wheel))
Infeed given constant for grinding wheel
Go Feed = ((Maximum Undeformed Chip Thickness^2)*Surface Speed of Wheel/(Constant for particular grinding wheel*Surface Speed of Workpiece))^2
Number of active Grains per unit area on wheel surface
Go Number of active grains per Area on wheel surface = Number of Chip Produced per Unit Time/(Surface Speed of Wheel*Width of Grinding Path)
Material Removal Rate in Cylindrical and Internal Grinder
Go Material Removal Rate in Drilling = pi*Feed Rate*Work Surface Diameter*Traverse Speed
Material Removal Rate in Plunge-Grinder
Go Material Removal Rate in Drilling = pi*Feed Rate*Work Surface Diameter*Feed Speed
Traverse Speed for Cylindrical and Internal Grinder given MRR
Go Traverse Speed = pi*Feed Rate*Work Surface Diameter/Metal removal rate
Infeed given Metal removal rate during Grinding
Go Infeed = Metal removal rate/(Width of Grinding Path*Surface Speed of Workpiece)
Width of Grinding path given Metal removal rate
Go Width of Grinding Path = Metal removal rate/(Feed*Surface Speed of Workpiece)
Metal removal rate during Grinding
Go Metal removal rate = Feed*Width of Grinding Path*Surface Speed of Workpiece
Material Removal Rate in Horizontal and Vertical Spindle Surface-Grinder
Go Material Removal Rate in Drilling = Feed Rate*Depth of Cut*Traverse Speed
Traverse Speed in Horizontal and Vertical Spindle Surface-Grinder given MRR
Go Traverse Speed = Feed Rate*Depth of Cut/Metal removal rate
Grain-aspect Ratio
Go Grain aspect ratio = Maximum width of chip/Maximum Undeformed Chip Thickness

Traverse Speed for Cylindrical and Internal Grinder given MRR Formula

Traverse Speed = pi*Feed Rate*Work Surface Diameter/Metal removal rate
Vtrav = pi*f*dw/Zw

Conical Grinding

Conical Grinding is performed in the same manner as plain cylindrical grinding. Once the grinding machine is setup, the table is swiveled until the correct taper per inch is obtained. In this Grinding Operation, the axis of the grinding wheel is at center height with the axis of the work.

How to Calculate Traverse Speed for Cylindrical and Internal Grinder given MRR?

Traverse Speed for Cylindrical and Internal Grinder given MRR calculator uses Traverse Speed = pi*Feed Rate*Work Surface Diameter/Metal removal rate to calculate the Traverse Speed, Traverse Speed for Cylindrical and Internal Grinder given MRR, is a method to determine the fastest possible movement of the machine’s motion control when the amount of required MRR is fixed. Traverse Speed is denoted by Vtrav symbol.

How to calculate Traverse Speed for Cylindrical and Internal Grinder given MRR using this online calculator? To use this online calculator for Traverse Speed for Cylindrical and Internal Grinder given MRR, enter Feed Rate (f), Work Surface Diameter (dw) & Metal removal rate (Zw) and hit the calculate button. Here is how the Traverse Speed for Cylindrical and Internal Grinder given MRR calculation can be explained with given input values -> 0.000344 = pi*0.0007*0.025/0.16.

FAQ

What is Traverse Speed for Cylindrical and Internal Grinder given MRR?
Traverse Speed for Cylindrical and Internal Grinder given MRR, is a method to determine the fastest possible movement of the machine’s motion control when the amount of required MRR is fixed and is represented as Vtrav = pi*f*dw/Zw or Traverse Speed = pi*Feed Rate*Work Surface Diameter/Metal removal rate. Feed Rate is defined as the tool's distance travelled during one spindle revolution, Work Surface Diameter is the diameter of a cylindrical Job or Workpiece before the Machining operation has been done on it & Metal removal rate (MRR) is the amount of material removed per time unit (usually per minute) when performing machining operations such as using a lathe or milling machine.
How to calculate Traverse Speed for Cylindrical and Internal Grinder given MRR?
Traverse Speed for Cylindrical and Internal Grinder given MRR, is a method to determine the fastest possible movement of the machine’s motion control when the amount of required MRR is fixed is calculated using Traverse Speed = pi*Feed Rate*Work Surface Diameter/Metal removal rate. To calculate Traverse Speed for Cylindrical and Internal Grinder given MRR, you need Feed Rate (f), Work Surface Diameter (dw) & Metal removal rate (Zw). With our tool, you need to enter the respective value for Feed Rate, Work Surface Diameter & Metal removal rate and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Traverse Speed?
In this formula, Traverse Speed uses Feed Rate, Work Surface Diameter & Metal removal rate. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Traverse Speed = Feed Rate*Depth of Cut/Metal removal rate
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