TY - JOUR
T1 - A Study to Enhancc the Accuracy of Linear Motion Ball Guide System-Theoretical Elucidation of the Influence of Misalignment to Waving Amplitude
AU - Takahashi, Tohru
AU - Noguchi, Shoji
N1 - Publisher Copyright:
© 2021 Japan Society for Precision Engineering. All rights reserved.
PY - 2021
Y1 - 2021
N2 - In the previous reports, it was clarified that waving amplitudes in linear motion ball guide (LMBG) systems can be suppressed by optimization of the crowning shape on end of carriage's raceways. Moreover, the evaluation algorithm of waving amplitude considered table deformation and the design method of table parameters based on a desired waving amplitude were developed. Mounting surface errors for LMBG significantly affect the motion accuracy of LMBG, however, this phenomenon has not been clarified yet. In this study, therefore, this issue is clarified analytically. At first, the analytical model of LMBG system is constructed; the model can set on the initial five-way errors for carriage and rail of LMBG: Horizontal direction, vertical direction, roll angle, pitch angle and yaw angle. Then, load distribution theory analyses with various misalignment arc carried out. The analyes results show that the only horizontal error significantly affects the waving amplitude; other four-way errors affect little. These results also suggest that the proposed analysis can evaluate necessary mounting surface accuracy to achieve a desired waving amplitude. Furthermore, it is clarified that the LMBG's rating life is affected by the additional load due to misalignment.
AB - In the previous reports, it was clarified that waving amplitudes in linear motion ball guide (LMBG) systems can be suppressed by optimization of the crowning shape on end of carriage's raceways. Moreover, the evaluation algorithm of waving amplitude considered table deformation and the design method of table parameters based on a desired waving amplitude were developed. Mounting surface errors for LMBG significantly affect the motion accuracy of LMBG, however, this phenomenon has not been clarified yet. In this study, therefore, this issue is clarified analytically. At first, the analytical model of LMBG system is constructed; the model can set on the initial five-way errors for carriage and rail of LMBG: Horizontal direction, vertical direction, roll angle, pitch angle and yaw angle. Then, load distribution theory analyses with various misalignment arc carried out. The analyes results show that the only horizontal error significantly affects the waving amplitude; other four-way errors affect little. These results also suggest that the proposed analysis can evaluate necessary mounting surface accuracy to achieve a desired waving amplitude. Furthermore, it is clarified that the LMBG's rating life is affected by the additional load due to misalignment.
KW - Accuracy
KW - Crowning
KW - High precision
KW - Linear motion ball guide
KW - Load distribution
KW - Misalignment
KW - Mounting surface accuracy
KW - Rating life
KW - Waving
UR - http://www.scopus.com/inward/record.url?scp=85106380262&partnerID=8YFLogxK
U2 - 10.2493/JJSPE.87.433
DO - 10.2493/JJSPE.87.433
M3 - Article
AN - SCOPUS:85106380262
SN - 0912-0289
VL - 87
SP - 433
EP - 439
JO - Seimitsu Kogaku Kaishi/Journal of the Japan Society for Precision Engineering
JF - Seimitsu Kogaku Kaishi/Journal of the Japan Society for Precision Engineering
IS - 5
ER -