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This could be because of the fact that in higher traverse speed, faster movement of tool leads to poor mixing of the material.
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The geometric change is effected by the relative movement of the tool and the work piece or the shape of the tool itself.
It shall be noted here that the movement of the tool will also be a contributor to the kinetic energy so the tool displacement was accordingly subtracted before equivalent temperature conversion.
The resulting compensatory axial movements of the tool shaft, stabilize the tool tip position relative to the target position for micro-forceps.
In this method combination of a universal tool-electrode, such as flat electrode, cylindrical electrode, etc., and numerically controlled movement of the tool is used.
The method is based on application of universal tool electrode such as flat electrode, cylindrical segments electrode, etc. and numerical controlled envelope movement of the tool.
Furthermore, there is considerable volume of material displaced by the movement of cutting tool.
Taking into account the lateral and transverse movement of the tool and work piece.
Sometimes, there are step changes or other variations due to movement of the tool or the surrounding sediment/water.
Sensor feedback from the FSRs was used to control the movement of the tool during these operations.
It can be concluded from the relative movement that the movement of the tool or abrasive particle is active, whereas that of the work piece is passive.
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