By Juan José Aguilar Martin, José Antonio Yagüe Fabra
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Extra resources for Advances in Manufacturing Systems: Mesic V
October 2001. American Gear Manufacturers Association, 1500 King Street, Suite 201. Alexandria, Virginia, 22314. Key Engineering Materials Vol. 51 Development of a Behaviour Curve for Quality Evaluation with Optoelectronic Profilometers Eduardo Cuesta1,a*, Daniel Gonzalez-Madruga2,b, Braulio J. Alvarez1,c and Marta García-Dieguez1,d 1 Dept. of Manufacturing Engineering, Campus de Gijon, Gijon, University of Oviedo, Spain 2 Dept.
They generate errors that influence the manufacturing cost, productivity, and machining accuracy. The monitoring and control system developed for machining centres presented in this paper consists of 3D touch probes, a device for registering a contact between the cutting tool and workpiece, devices for measuring the geometric accuracy of the machine tool and for calibrating the touch probe in the spindle, parameterised CNC programmes, computer and software for data processing and database management.
Using the touch probe and the calliper, the position of the tip of the probe is measured and the systematic errors in each measuring direction of TTP1 are defined. On machining centres the recommended shape of the calliper is that of a cylindrical peg. The best solution is, if the construction of the machine tool permits, when the position of the calliper is permanent; it is fixed to the body of the machine tool. The machine tool calibrator (MTC) is composed of datum surfaces through which it can be attached to the table of the machining centre, and a set of standard (reference) surfaces used for measurements with TTP1.