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Visual feedback of the extension force was provided whereas the tangential force components were recorded.
As particle size increases, the compressive and tangential force applied to it increases.
The main cutting force, i.e. the tangential force and surface roughness were the response variables investigated.
The feed is the most significant factor that influences the surface roughness and the tangential force.
The recorded tangential force shows stabilized partial slip regime after about 10,000 cycles.
The influences of preload and exciting voltage on tangential force in moving direction are analyzed.
The outer pillar was observed to slip at a lower tangential force than the central pillar.
However, the errors in the predicted tangential force and moment are relatively small.
It allows for determining the spatial distribution of microsliding and tangential force along the contact interface.
And then, the aerodynamic forces (tangential force, normal force et al).
Predicted optimum values for tangential force and feed force are 39.93 N and 22.56 N respectively.
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