Thrust force for given cutting force, shear angle and force along shear force Solution

STEP 0: Pre-Calculation Summary
Formula Used
Thrust Perpendicular to Workpiece = (Cutting Force on Job*cos(Shear Angle for Machining)-Shear Force on Workpiece)/(sin(Shear Angle for Machining))
Fa = (Fc*cos(ϕs)-Fs)/(sin(ϕs))
This formula uses 2 Functions, 4 Variables
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)
cos - Cosine of an angle is the ratio of the side adjacent to the angle to the hypotenuse of the triangle., cos(Angle)
Variables Used
Thrust Perpendicular to Workpiece - (Measured in Newton) - Thrust perpendicular to workpiece can be referred resultant of forces represented as a single vector normal to workpiece.
Cutting Force on Job - (Measured in Newton) - Cutting force on job is the force in the direction of cutting, the same direction as the cutting speed.
Shear Angle for Machining - (Measured in Radian) - Shear angle for machining is the inclination of the shear plane with the horizontal axis at machining point.
Shear Force on Workpiece - (Measured in Newton) - Shear force on workpiece is the force which causes shear deformation to occur in the shear plane.
STEP 1: Convert Input(s) to Base Unit
Cutting Force on Job: 50 Newton --> 50 Newton No Conversion Required
Shear Angle for Machining: 35 Degree --> 0.610865238197901 Radian (Check conversion ​here)
Shear Force on Workpiece: 26.7285 Newton --> 26.7285 Newton No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Fa = (Fc*cos(ϕs)-Fs)/(sin(ϕs)) --> (50*cos(0.610865238197901)-26.7285)/(sin(0.610865238197901))
Evaluating ... ...
Fa = 24.807682660357
STEP 3: Convert Result to Output's Unit
24.807682660357 Newton --> No Conversion Required
FINAL ANSWER
24.807682660357 24.80768 Newton <-- Thrust Perpendicular to Workpiece
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Maiarutselvan V
PSG College of Technology (PSGCT), Coimbatore
Maiarutselvan V has created this Calculator and 300+ more calculators!
Verifier Image
Verified by Anshika Arya
National Institute Of Technology (NIT), Hamirpur
Anshika Arya has verified this Calculator and 2500+ more calculators!

Thrust Force Calculators

Thrust force for given cutting force, shear angle and force along shear force
​ LaTeX ​ Go Thrust Perpendicular to Workpiece = (Cutting Force on Job*cos(Shear Angle for Machining)-Shear Force on Workpiece)/(sin(Shear Angle for Machining))
Thrust force for given cutting force, shear angle and force normal to shear force
​ LaTeX ​ Go Thrust Perpendicular to Workpiece = (Normal Force on Job-Cutting Force on Job*sin(Shear Angle for Machining))/(cos(Shear Angle for Machining))
Thrust Force given Cutting Force and Normal Rake Angle
​ LaTeX ​ Go Thrust Force on Job = (Cutting Force on Job*cos(Normal Rake Angle)-Normal Force on Job)/sin(Normal Rake Angle)
Thrust force for given frictional force along tool rake face, cutting force and normal rake angle
​ LaTeX ​ Go Thrust Force on Job = (Force of Friction-Cutting Force on Job*sin(Normal Rake Angle))/cos(Normal Rake Angle)

Thrust force for given cutting force, shear angle and force along shear force Formula

​LaTeX ​Go
Thrust Perpendicular to Workpiece = (Cutting Force on Job*cos(Shear Angle for Machining)-Shear Force on Workpiece)/(sin(Shear Angle for Machining))
Fa = (Fc*cos(ϕs)-Fs)/(sin(ϕs))

What is Force Relationship in Orthogonal Cutting?

Merchant's Circle Diagram is constructed to ease the analysis of cutting forces acting during orthogonal (Two Dimensional) cutting of workpiece. Merchant’s Theory is also used to consider properties and parameters of cutting tools to decrease wear and optimize efficiency and quality.

What is the thrust force in this relation?

Forces Fs and Fn act on the chip, Fs along the shear plane, and Fn normal to the shear plane. It acts normal to the direction of cutting. From Merchant theory, the horizontal component is the cutting force Fc and the vertical component is the thrust force Ft.

How to Calculate Thrust force for given cutting force, shear angle and force along shear force?

Thrust force for given cutting force, shear angle and force along shear force calculator uses Thrust Perpendicular to Workpiece = (Cutting Force on Job*cos(Shear Angle for Machining)-Shear Force on Workpiece)/(sin(Shear Angle for Machining)) to calculate the Thrust Perpendicular to Workpiece, Thrust force for given cutting force, shear angle and force along shear force acts in the direction perpendicular to the generated surface and thrust force is measured by a dynamometer. Thrust Perpendicular to Workpiece is denoted by Fa symbol.

How to calculate Thrust force for given cutting force, shear angle and force along shear force using this online calculator? To use this online calculator for Thrust force for given cutting force, shear angle and force along shear force, enter Cutting Force on Job (Fc), Shear Angle for Machining s) & Shear Force on Workpiece (Fs) and hit the calculate button. Here is how the Thrust force for given cutting force, shear angle and force along shear force calculation can be explained with given input values -> 24.80768 = (50*cos(0.610865238197901)-26.7285)/(sin(0.610865238197901)).

FAQ

What is Thrust force for given cutting force, shear angle and force along shear force?
Thrust force for given cutting force, shear angle and force along shear force acts in the direction perpendicular to the generated surface and thrust force is measured by a dynamometer and is represented as Fa = (Fc*cos(ϕs)-Fs)/(sin(ϕs)) or Thrust Perpendicular to Workpiece = (Cutting Force on Job*cos(Shear Angle for Machining)-Shear Force on Workpiece)/(sin(Shear Angle for Machining)). Cutting force on job is the force in the direction of cutting, the same direction as the cutting speed, Shear angle for machining is the inclination of the shear plane with the horizontal axis at machining point & Shear force on workpiece is the force which causes shear deformation to occur in the shear plane.
How to calculate Thrust force for given cutting force, shear angle and force along shear force?
Thrust force for given cutting force, shear angle and force along shear force acts in the direction perpendicular to the generated surface and thrust force is measured by a dynamometer is calculated using Thrust Perpendicular to Workpiece = (Cutting Force on Job*cos(Shear Angle for Machining)-Shear Force on Workpiece)/(sin(Shear Angle for Machining)). To calculate Thrust force for given cutting force, shear angle and force along shear force, you need Cutting Force on Job (Fc), Shear Angle for Machining s) & Shear Force on Workpiece (Fs). With our tool, you need to enter the respective value for Cutting Force on Job, Shear Angle for Machining & Shear Force on Workpiece 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 Thrust Perpendicular to Workpiece?
In this formula, Thrust Perpendicular to Workpiece uses Cutting Force on Job, Shear Angle for Machining & Shear Force on Workpiece. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Thrust Perpendicular to Workpiece = (Normal Force on Job-Cutting Force on Job*sin(Shear Angle for Machining))/(cos(Shear Angle for Machining))
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!