Feed for Sintered-Carbide Tools using Crater Depth Solution

STEP 0: Pre-Calculation Summary
Formula Used
Feed Rate = (Tool Wear Crater Depth-0.06)/0.3
f = (KT-0.06)/0.3
This formula uses 2 Variables
Variables Used
Feed Rate - (Measured in Meter Per Revolution) - Feed Rate is defined as the tool's distance travelled during one spindle revolution.
Tool Wear Crater Depth - (Measured in Meter) - Tool Wear Crater Depth is the wear that happens on Tool Surface in which contact with chips erodes the rake face.
STEP 1: Convert Input(s) to Base Unit
Tool Wear Crater Depth: 60.21 Millimeter --> 0.06021 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
f = (KT-0.06)/0.3 --> (0.06021-0.06)/0.3
Evaluating ... ...
f = 0.000700000000000006
STEP 3: Convert Result to Output's Unit
0.000700000000000006 Meter Per Revolution -->0.700000000000006 Millimeter Per Revolution (Check conversion here)
FINAL ANSWER
0.700000000000006 0.7 Millimeter Per Revolution <-- Feed Rate
(Calculation completed in 00.004 seconds)

Credits

Created by Kumar Siddhant
Indian Institute of Information Technology, Design and Manufacturing (IIITDM), Jabalpur
Kumar Siddhant has created this Calculator and 400+ more calculators!
Verified by Parul Keshav
National Institute of Technology (NIT), Srinagar
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5 Tool Life and Tool Wear Calculators

Tool temperature
Go Tool Temperature = (Constant for Tool Temperature*Specific Cutting Energy per unit Cutting Force*Cutting Velocity^0.44*Area of Cut^0.22)/(Thermal Conductivity^0.44*Specific Heat Capacity of work^0.56)
Taylor's Exponent if ratios of Cutting Velocities, Tool Lives are given in two machining conditions
Go Taylor's Tool Life Exponent = (-1)*ln(Ratio of Cutting Velocities)/ln(Ratio of Tool Lives)
Machinability Index
Go Machinability Index of a Material = Cutting Velocity*100/Cutting Speed of Free-Cutting Steel
Feed for Sintered-Carbide Tools using Crater Depth
Go Feed Rate = (Tool Wear Crater Depth-0.06)/0.3
Crater Depth for Sintered-Carbide Tools
Go Tool Wear Crater Depth = 0.06+0.3*Feed Rate

Feed for Sintered-Carbide Tools using Crater Depth Formula

Feed Rate = (Tool Wear Crater Depth-0.06)/0.3
f = (KT-0.06)/0.3

Criteria for Sintered-Carbide Tools

The following criteria are preferred as stated by the ISO for Sintered-Carbide Tools:
1. Average Wear-Land Width = 0.3 mm
2. Maximum Wear-Land Width = 0.6 mm (if Flank is regularly worn)

How to Calculate Feed for Sintered-Carbide Tools using Crater Depth?

Feed for Sintered-Carbide Tools using Crater Depth calculator uses Feed Rate = (Tool Wear Crater Depth-0.06)/0.3 to calculate the Feed Rate, The Feed for Sintered-Carbide Tools using Crater Depth is a method to determine the maximum Feed that can be given to the Workpiece when the tolerance for Cratering of the tool is known. Feed Rate is denoted by f symbol.

How to calculate Feed for Sintered-Carbide Tools using Crater Depth using this online calculator? To use this online calculator for Feed for Sintered-Carbide Tools using Crater Depth, enter Tool Wear Crater Depth (KT) and hit the calculate button. Here is how the Feed for Sintered-Carbide Tools using Crater Depth calculation can be explained with given input values -> 700 = (0.06021-0.06)/0.3.

FAQ

What is Feed for Sintered-Carbide Tools using Crater Depth?
The Feed for Sintered-Carbide Tools using Crater Depth is a method to determine the maximum Feed that can be given to the Workpiece when the tolerance for Cratering of the tool is known and is represented as f = (KT-0.06)/0.3 or Feed Rate = (Tool Wear Crater Depth-0.06)/0.3. Tool Wear Crater Depth is the wear that happens on Tool Surface in which contact with chips erodes the rake face.
How to calculate Feed for Sintered-Carbide Tools using Crater Depth?
The Feed for Sintered-Carbide Tools using Crater Depth is a method to determine the maximum Feed that can be given to the Workpiece when the tolerance for Cratering of the tool is known is calculated using Feed Rate = (Tool Wear Crater Depth-0.06)/0.3. To calculate Feed for Sintered-Carbide Tools using Crater Depth, you need Tool Wear Crater Depth (KT). With our tool, you need to enter the respective value for Tool Wear Crater Depth 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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