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Modelling of workpiece surface layer state after grinding process
ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING
Vol. II 2002 No. 2
Modelling of workpiece surface layer
*
state after grinding process
M. URBANIAK
Department of Production Engineering, Technical University of Łódź, Stefanowskiego 1–15, 90-537 Łódź
In the paper, a neural model allowing us to forecast chosen surface layer features of the ground
workpiece is described. The model was used for analysing the influence of wheel characteristics and
dressing conditions on surface roughness of workpiece and residual stresses. The relationships published
in literature were also taken into account. An example of the model application was shown as well.
Keywords: surface roughness, residual stresses, modelling
1. Introduction
The problem of the influence of grinding wheel cutting surface state on grinding
process result is one of main topics of research works carried out in the field of abra-
sive machining. As the problem is complex, its description by modelling seems to be
a good solution. There are two areas the problem: evaluation of workpiece surface
layer state and surface roughness [1]. The first one describes the influence of heat and
plastic deformation during grinding. In Tönshoff’s publication [1], review of 13 mod-
elling solutions describing the influence of mechanical and heat factors on the material
being ground were shown. As a result, he observed such changes of microstructure as
change of hardness, phase changes and structural changes, which cause also changes
of volume. As a result of model action, the forecast of stress level in workpiece sur-
face layer was made. Residual stress may lead to workpiece material damage and de-
formations. Most of heat models are based on the the Carslaw–Jae
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