Breitzke, AndréAndréBreitzkeHintze, WolfgangWolfgangHintze2023-10-262023-10-262024-01Precision Engineering 85: 72-88 (2024-01)https://hdl.handle.net/11420/43877This paper presents a method for workshop-suited identification of thermo-elastic errors of three-axis machine tools (MTs) using on-machine measurement. For this purpose, a new design for a three dimensional artifact is presented. Using the artifact, it is possible to identify all relevant geometric errors of three-axis portal milling machines in table design. The method presented is therefore suitable for the one-time identification of geometric errors caused by manufacturing inaccuracies, assembly-related deviations and wear, and for the identification of thermally induced geometry errors over a long-term period. Since the artifact is scalable in size, it can be easily adapted to different machine sizes. The presented method thus represents a universal and inexpensive possibility to measure geometric and especially thermo-elastic errors. Within the scope of this paper, an error model was established for the investigated machine type and an artifact design was derived on the basis of this model. The suitability of the artifact for identifying thermo-elastic errors has also been investigated experimentally. For this purpose, an artifact made of thermo-invariant material (Invar) was produced. This artifact was measured cyclically on a MT with three linear axes, which was exposed to a controlled thermal load in a temperature chamber. The positions of the geometric features were collected using a 3D touch trigger probe. In addition, the ambient temperatures were recorded. The results of this measurement are discussed in this paper.en0141-6359Precision engineering20247288Elsevierhttps://creativecommons.org/licenses/by-nc-nd/4.0/IdentificationMachine toolOn-machine measurementThermo-elastic errorsManufacturingWorkshop-suited identification of thermo-elastic errors of three-axis machine tools using on-machine measurementJournal Article10.15480/882.884710.1016/j.precisioneng.2023.09.00910.15480/882.8847Journal Article