Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling Solution

STEP 0: Pre-Calculation Summary
Formula Used
Diameter of a Cutting Tool = 2*Work Engagement/(sin((Time Proportion of Cutting Edge Engagement-0.25)*2*pi)+1)
Dcut = 2*ae/(sin((Q-0.25)*2*pi)+1)
This formula uses 1 Constants, 1 Functions, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Functions Used
sin - Sine is a trigonometric function that describes the ratio of the length of the opposite side of a right triangle to the length of the hypotenuse., sin(Angle)
Variables Used
Diameter of a Cutting Tool - (Measured in Meter) - Diameter of a Cutting Tool in Milling is the outer diameter of the cutting part of the tool.
Work Engagement - (Measured in Meter) - Work Engagement is the instantaneous contact geometry between the cutter and the in-process workpiece during machining.
Time Proportion of Cutting Edge Engagement - Time Proportion of Cutting Edge Engagement is the fractional portion of machining time during which the Cutting Edge of the tool is engaged with the workpiece.
STEP 1: Convert Input(s) to Base Unit
Work Engagement: 52 Millimeter --> 0.052 Meter (Check conversion ​here)
Time Proportion of Cutting Edge Engagement: 0.4 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Dcut = 2*ae/(sin((Q-0.25)*2*pi)+1) --> 2*0.052/(sin((0.4-0.25)*2*pi)+1)
Evaluating ... ...
Dcut = 0.0574897860680044
STEP 3: Convert Result to Output's Unit
0.0574897860680044 Meter -->57.4897860680044 Millimeter (Check conversion ​here)
FINAL ANSWER
57.4897860680044 57.48979 Millimeter <-- Diameter of a Cutting Tool
(Calculation completed in 00.004 seconds)

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Slab and Slide Milling Calculators

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​ LaTeX ​ Go Max Chip Thickness in Slab Milling = Feed Speed in Milling*sin(Tool Engagement Angle in Milling)/(Number of Teeth on Cutting Tool*Rotational Frequency in Milling)
Tool Engagement Angle in Slab Milling using Depth of Cut
​ LaTeX ​ Go Tool Engagement Angle in Milling = acos(1-(2*Depth of Cut in Milling/Diameter of a Cutting Tool))
Feed Speed of Workpiece in Slab Milling
​ LaTeX ​ Go Feed Speed in Milling = Feed Rate in Milling*Reciprocating Strokes Frequency
Feed in Slab Milling given Feed Speed
​ LaTeX ​ Go Feed Rate in Milling = Feed Speed in Milling/Reciprocating Strokes Frequency

Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling Formula

​LaTeX ​Go
Diameter of a Cutting Tool = 2*Work Engagement/(sin((Time Proportion of Cutting Edge Engagement-0.25)*2*pi)+1)
Dcut = 2*ae/(sin((Q-0.25)*2*pi)+1)

Ideal Capacity of a Machine Tool

The desired characteristics of a Machine Toole are:
1. Powerful and high Strength
2. Rigid and Stable
3. Tools allows much higher Cutting Velocity, if required and permissible
4. Low wear

How to Calculate Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling?

Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling calculator uses Diameter of a Cutting Tool = 2*Work Engagement/(sin((Time Proportion of Cutting Edge Engagement-0.25)*2*pi)+1) to calculate the Diameter of a Cutting Tool, Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling is a method to determine the Diameter of the Cutting Tool to be used in a Slab and Side Milling Operation when there is a limit on the Fraction of Cutting Edge Engagement Time. Diameter of a Cutting Tool is denoted by Dcut symbol.

How to calculate Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling using this online calculator? To use this online calculator for Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling, enter Work Engagement (ae) & Time Proportion of Cutting Edge Engagement (Q) and hit the calculate button. Here is how the Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling calculation can be explained with given input values -> 57489.79 = 2*0.052/(sin((0.4-0.25)*2*pi)+1).

FAQ

What is Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling?
Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling is a method to determine the Diameter of the Cutting Tool to be used in a Slab and Side Milling Operation when there is a limit on the Fraction of Cutting Edge Engagement Time and is represented as Dcut = 2*ae/(sin((Q-0.25)*2*pi)+1) or Diameter of a Cutting Tool = 2*Work Engagement/(sin((Time Proportion of Cutting Edge Engagement-0.25)*2*pi)+1). Work Engagement is the instantaneous contact geometry between the cutter and the in-process workpiece during machining & Time Proportion of Cutting Edge Engagement is the fractional portion of machining time during which the Cutting Edge of the tool is engaged with the workpiece.
How to calculate Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling?
Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling is a method to determine the Diameter of the Cutting Tool to be used in a Slab and Side Milling Operation when there is a limit on the Fraction of Cutting Edge Engagement Time is calculated using Diameter of a Cutting Tool = 2*Work Engagement/(sin((Time Proportion of Cutting Edge Engagement-0.25)*2*pi)+1). To calculate Diameter of Tool given Proportion of Edge Engagement for Slab and Side Milling, you need Work Engagement (ae) & Time Proportion of Cutting Edge Engagement (Q). With our tool, you need to enter the respective value for Work Engagement & Time Proportion of Cutting Edge Engagement 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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