Virtual-point-based geometric error compensation model for additive manufacturing machines
Purpose The lack of geometric and dimensional accuracy of parts produced by additive manufacturing (AM) is directly related to the machine, material and process used. This paper aims to propose a method for the analysis and compensation of machine-related geometric errors applicable to any AM machin...
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Published in | Rapid prototyping journal Vol. 29; no. 4; pp. 837 - 849 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Bradford
Emerald Publishing Limited
04.04.2023
Emerald Group Publishing Limited |
Subjects | |
Online Access | Get full text |
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Abstract | Purpose
The lack of geometric and dimensional accuracy of parts produced by additive manufacturing (AM) is directly related to the machine, material and process used. This paper aims to propose a method for the analysis and compensation of machine-related geometric errors applicable to any AM machine, regardless of the manufacturing process and technology used.
Design/methodology/approach
For this purpose, an error calculation model inspired by those used in computerized numerical control machines and coordinate measuring machines was developed. The error functions of the model were determined from the position deviations of a set of virtual points that are not sensitive to material and process errors. These points were obtained from the measurement of an ad hoc designed and manufactured master artefact. To validate the model, off-line compensation was applied to both the original designed artefact and an example part.
Findings
The geometric deviations in both cases were significantly smaller than those found before applying the geometric compensation. Dimensional enhancements were also achieved on the example part by using a correction parameter available in the three-dimensional printing software, whose value was adjusted from the measurement of the geometrically compensated master artefact.
Research limitations/implications
The errors that persist in the part derive from both material and process. Compensation for these type of errors requires a detailed analysis of the influencing parameters, which will be the subject of future research.
Originality/value
The use of the virtual-point-based error model increases the quality of additively manufactured parts and can be used in any AM system. |
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AbstractList | Purpose
The lack of geometric and dimensional accuracy of parts produced by additive manufacturing (AM) is directly related to the machine, material and process used. This paper aims to propose a method for the analysis and compensation of machine-related geometric errors applicable to any AM machine, regardless of the manufacturing process and technology used.
Design/methodology/approach
For this purpose, an error calculation model inspired by those used in computerized numerical control machines and coordinate measuring machines was developed. The error functions of the model were determined from the position deviations of a set of virtual points that are not sensitive to material and process errors. These points were obtained from the measurement of an ad hoc designed and manufactured master artefact. To validate the model, off-line compensation was applied to both the original designed artefact and an example part.
Findings
The geometric deviations in both cases were significantly smaller than those found before applying the geometric compensation. Dimensional enhancements were also achieved on the example part by using a correction parameter available in the three-dimensional printing software, whose value was adjusted from the measurement of the geometrically compensated master artefact.
Research limitations/implications
The errors that persist in the part derive from both material and process. Compensation for these type of errors requires a detailed analysis of the influencing parameters, which will be the subject of future research.
Originality/value
The use of the virtual-point-based error model increases the quality of additively manufactured parts and can be used in any AM system. PurposeThe lack of geometric and dimensional accuracy of parts produced by additive manufacturing (AM) is directly related to the machine, material and process used. This paper aims to propose a method for the analysis and compensation of machine-related geometric errors applicable to any AM machine, regardless of the manufacturing process and technology used.Design/methodology/approachFor this purpose, an error calculation model inspired by those used in computerized numerical control machines and coordinate measuring machines was developed. The error functions of the model were determined from the position deviations of a set of virtual points that are not sensitive to material and process errors. These points were obtained from the measurement of an ad hoc designed and manufactured master artefact. To validate the model, off-line compensation was applied to both the original designed artefact and an example part.FindingsThe geometric deviations in both cases were significantly smaller than those found before applying the geometric compensation. Dimensional enhancements were also achieved on the example part by using a correction parameter available in the three-dimensional printing software, whose value was adjusted from the measurement of the geometrically compensated master artefact.Research limitations/implicationsThe errors that persist in the part derive from both material and process. Compensation for these type of errors requires a detailed analysis of the influencing parameters, which will be the subject of future research.Originality/valueThe use of the virtual-point-based error model increases the quality of additively manufactured parts and can be used in any AM system. |
Author | Meana, Víctor Peña, Fernando Zapico, Pablo Valiño, Gonzalo Rico, José Carlos Mateos, Sabino |
Author_xml | – sequence: 1 givenname: Pablo surname: Zapico fullname: Zapico, Pablo email: zapicopablo@uniovi.es – sequence: 2 givenname: Fernando surname: Peña fullname: Peña, Fernando email: penafernando@uniovi.es – sequence: 3 givenname: Gonzalo surname: Valiño fullname: Valiño, Gonzalo email: gvr@uniovi.es – sequence: 4 givenname: José Carlos surname: Rico fullname: Rico, José Carlos email: jcarlosr@uniovi.es – sequence: 5 givenname: Víctor surname: Meana fullname: Meana, Víctor email: meanavictor@uniovi.es – sequence: 6 givenname: Sabino surname: Mateos fullname: Mateos, Sabino email: sabino@uniovi.es |
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Keywords | Virtual point Geometric error compensation Machine error model Additive manufacturing |
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The lack of geometric and dimensional accuracy of parts produced by additive manufacturing (AM) is directly related to the machine, material and... PurposeThe lack of geometric and dimensional accuracy of parts produced by additive manufacturing (AM) is directly related to the machine, material and process... |
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SubjectTerms | Accuracy Additive manufacturing CAD Computer aided design Coordinate measuring machines Deviation Error analysis Error compensation Error functions Geometric accuracy Kinematics Manufacturing Mathematical models Measurement techniques Moisture absorption Numerical controls Parameters Rapid prototyping Three dimensional printing |
Title | Virtual-point-based geometric error compensation model for additive manufacturing machines |
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