During pure orthogonal turning of a metal rod by a tool of the following geometry it was noted that the magnitudes of the tangential component and the axial component of the cutting force are 600 N...


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During pure orthogonal turning of a metal rod by a tool of the following<br>geometry it was noted that the magnitudes of the tangential component<br>and the axial component of the cutting force are 600 N and 200 N<br>respectively.<br>Inclination angle = 0°<br>Orthogonal rake = 0°<br>Principal cutting edge angle = 90°<br>Chip reduction coefficient = 1-732<br>Using Merchant's circle diagram, determine the magnitudes of the<br>shear force and the frictional force for the above condition.<br>%3D<br>ICHE<br>12<br>CS Scanned with CamScanner<br>

Extracted text: During pure orthogonal turning of a metal rod by a tool of the following geometry it was noted that the magnitudes of the tangential component and the axial component of the cutting force are 600 N and 200 N respectively. Inclination angle = 0° Orthogonal rake = 0° Principal cutting edge angle = 90° Chip reduction coefficient = 1-732 Using Merchant's circle diagram, determine the magnitudes of the shear force and the frictional force for the above condition. %3D ICHE 12 CS Scanned with CamScanner

Jun 11, 2022
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