Gräser, Philipp; Linß, Sebastian; Harfensteller, Felix; Torres, Mario; Zentner, Lena; Theska, René:
High-precision and large-stroke XY micropositioning stage based on serially arranged compliant mechanisms with flexure hinges
In: Precision engineering : journal of the American Society for Precision Engineering, Band 72 (2021), S. 469 - 479
2021Artikel/Aufsatz in ZeitschriftClosed Access
Technische Universität Ilmenau (1992-) » Fakultät für Maschinenbau (1992-) » Ohne Institutszuordnung (1992-) » Heisenbergprofessur Nachgiebige Systeme (2017-2023) ↑Technische Universität Ilmenau (1992-) » Fakultät für Maschinenbau (1992-) » Institut für Maschinen- und Gerätekonstruktion (2008-) » Fachgebiet Produkt- und Systementwicklung (2021-)Technische Universität Ilmenau (1992-) » Fakultät für Maschinenbau (1992-) » Institut für Maschinen- und Gerätekonstruktion (2008-) » Fachgebiet Feinwerktechnik/Precision Engineering (2002-)
Titel in Englisch:
High-precision and large-stroke XY micropositioning stage based on serially arranged compliant mechanisms with flexure hinges
Autor*in:
Gräser, PhilippTU
GND
1210877953
SCOPUS
56712919300
Sonstiges
der Hochschule zugeordnet
korrespondierende*r Autor*in
;
Linß, SebastianTU
Sonstiges
der Hochschule zugeordnet
;
Harfensteller, FelixTU
GND
1258875500
ORCID
0000-0001-6357-9281ORCID iD
SCOPUS
57200442434
Sonstiges
der Hochschule zugeordnet
;
Torres, MarioTU
ORCID
0000-0003-1713-6273ORCID iD
SCOPUS
57204111487
SCOPUS
57205194801
SCOPUS
57991695100
Sonstiges
der Hochschule zugeordnet
;
Zentner, LenaTU
GND
12463334X
ORCID
0000-0003-4219-9006ORCID iD
SCOPUS
12797217700
Sonstiges
der Hochschule zugeordnet
;
Theska, RenéTU
GND
130244899
ORCID
0000-0003-0589-8270ORCID iD
SCOPUS
35079610000
Sonstiges
der Hochschule zugeordnet
Erscheinungsjahr:
2021
Open-Access-Publikationsweg:
Closed Access
Scopus ID
PPN:
Sprache des Textes:
Englisch
Schlagwort, Thema:
Compliant mechanism ; Flexure hinge ; Mechanism synthesis ; Power function notch contour ; Serial arrangement ; XY micropositioning stage
Datenträgertyp:
Online-Ressource
Ressourcentyp:
Text
Lizenztyp:
Alle Rechte vorbehalten
Peer Reviewed:
Ja
Teil der Statistik:
Ja

Abstract in Englisch:

Compliant mechanisms are state of the art in micropositioning stages due to their many beneficial features. However, their design usually compromises between motion range, motion accuracy and design space, while mechanisms with distributed compliance are mostly applied. The further use of flexure hinges with common notch shapes strongly limits the stroke in existing high-precision motion systems. Therefore, this paper presents a high-precision compliant XY micropositioning stage with flexure hinges capable of realizing a motion range of ± 10 mm along both axes. The stage is based on a novel plane-guidance mechanism, which is optimized to realize a precise rectilinear motion of the coupler link while keeping the rotation angles of all hinges below 5°. The XY motion is then achieved by coupling two of these mechanisms in a serial arrangement. Next, the synthesis of the monolithic XY stage is realized by replacing all revolute joints of the rigid-body model with flexure hinges using optimized power function notch shapes. Emphasis is also placed on the embodiment design of the stage and the actuator integration to minimize possible error sources. Finally, the quasi-static behavior of the compliant stage is characterized by a simulation with a 3D FEM model and by an experimental investigation of a prototype. According to the results, the developed compliant XY micropositioning stage achieves a maximum positioning deviation of less than 10 μm in both axes and a yaw error of less than 100 μrad over a working range of 20 mm × 20 mm with a comparably compact design of the compliant mechanism of 224 mm × 254 mm.