TY - JOUR
T1 - A Solution to the Accuracy of Multi-Pin Positioning Based on Optimization
AU - Guo, Huan
AU - Zhang, Zhijing
AU - Liu, Heng
AU - Xiao, Muzheng
AU - Jin, Xin
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2021
Y1 - 2021
N2 - To ensure the precise relative position between two adjacent parts, multiple pins (10, or even more) are usually set on the parts for positioning. In this case, whether the two adjacent parts can be assembled, and the consequent positioning error is unknown, which might cause a failure in the reasonable selection of parts in the assembly stage, and the reasonable design of relevant parameters (such as the diameters of pins and pinholes, and positional tolerances) in the design stage. In this study, considering the positional tolerance of the pinhole as well as the diameter tolerance of the pin and pinhole, the mathematical model of the accuracy of multi-pin positioning was established, and determined by optimization, obtaining the positioning error. The related assembly experiments were conducted. The measurement results were all in the range of mathematical calculation with the measured data, indicating that the proposed method is effective, and it can provide a direct basis for the part selection in the assembly stage, and the tolerance design in the design stage.
AB - To ensure the precise relative position between two adjacent parts, multiple pins (10, or even more) are usually set on the parts for positioning. In this case, whether the two adjacent parts can be assembled, and the consequent positioning error is unknown, which might cause a failure in the reasonable selection of parts in the assembly stage, and the reasonable design of relevant parameters (such as the diameters of pins and pinholes, and positional tolerances) in the design stage. In this study, considering the positional tolerance of the pinhole as well as the diameter tolerance of the pin and pinhole, the mathematical model of the accuracy of multi-pin positioning was established, and determined by optimization, obtaining the positioning error. The related assembly experiments were conducted. The measurement results were all in the range of mathematical calculation with the measured data, indicating that the proposed method is effective, and it can provide a direct basis for the part selection in the assembly stage, and the tolerance design in the design stage.
KW - Coordinate measuring machine
KW - multi-pin positioning
KW - optimization
KW - positioning error
KW - tolerance
UR - http://www.scopus.com/inward/record.url?scp=85099088849&partnerID=8YFLogxK
U2 - 10.1109/ACCESS.2020.3047657
DO - 10.1109/ACCESS.2020.3047657
M3 - Article
AN - SCOPUS:85099088849
SN - 2169-3536
VL - 9
SP - 2443
EP - 2453
JO - IEEE Access
JF - IEEE Access
M1 - 9309214
ER -