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STUDY OF THE STIFFNESS FOR PREDICTING THE ACCURACY OF MACHINE TOOLS

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DECEMBER 2010   -  Volume: 85 -  Pages: 730-737

DOI:

https://doi.org/10.6036/3832

Authors:

NAIARA ORTEGA RODRIGUEZ -
FRANCISCO JAVIER CAMPA GOMEZ
-
ASIER FERNANDEZ VALDIVIELSO
- UNAI ALONSO PINILLO - DAVID OLVERA TREJO - FEDERICO IVAN COMPEÁN REVUELTA

Disciplines:

  • Industrial technology (INGENIERIA DE PROCESOS )
  • Materials technology (AGLOMERANTES )

Downloads:   258

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Received Date :   28 May 2010

Reviewing Date :   7 September 2010

Accepted Date :   12 September 2010


Key words:
torneado, rectificado, precisión, rigidez, MEF, parámetros concentrados, turning, grinding, precision, stiffness, FEM, lumped parameters
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

ABSTRACT
Machining processes are frequently faced with the challenge of achieving more and more precision and surface qualities. These requirements are usually attained taking into account some process variables, including the cutting parameters and the use or not of refrigerant, leaving aside the mechanical aspects associated with the influence of machine tool itself. There are many sources of error linked with machine-workpiece interaction, but, in general, we can summarize them into two types of error: quasi-static and dynamic. This paper shows the influence of quasi-static error caused by low machine rigidity on the accuracy applied on two very different processes: turning and grinding. For the study of the static stiffness of these two machines, two different methods are proposed, both of them equally valid. The first one is based on separated parameters and the second one on finite elements.
KEY WORDS: turning, grinding, precision, stiffness, FEM, lumped parameters

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