TY - GEN
T1 - A wireless data acquisition and transmission system for smart tool holder based on socket
AU - Xie, Zhengyou
AU - Dang, Wenchao
AU - Lu, Yong
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2017/7/2
Y1 - 2017/7/2
N2 - Cutting condition monitoring plays an important role in modern manufacturing to improve cutting efficiency and machining accuracy, and reduce cost. More and more researchers start integrating the sensors into the tool holder to detect the cutting status information in view of its convenient use and wide applicability. However the sensor signals are difficult to transmit out through traditional wired way as the tool holder is in high-speed rotation in milling process. Therefore, a multi-channel high-precision wireless data acquisition and transmission system was designed and developed. The system hardware was designed based on AD7606 and AR9331, and a STM32 was used as the microcontroller. The data transmission was based on socket, and the software of the system was completed. Finally, a series of tests were carried out to evaluate the performance of the developed system, including collecting DC voltage and sinusoidal signal under the static state, and applying to the smart tool holder to carry on the data acquisition and transmission test under the rotating state. The test results showed that the developed system had high reliability and precision, and could collect the sensor signals from the tool holder and transmit to the host computer timely and accurately.
AB - Cutting condition monitoring plays an important role in modern manufacturing to improve cutting efficiency and machining accuracy, and reduce cost. More and more researchers start integrating the sensors into the tool holder to detect the cutting status information in view of its convenient use and wide applicability. However the sensor signals are difficult to transmit out through traditional wired way as the tool holder is in high-speed rotation in milling process. Therefore, a multi-channel high-precision wireless data acquisition and transmission system was designed and developed. The system hardware was designed based on AD7606 and AR9331, and a STM32 was used as the microcontroller. The data transmission was based on socket, and the software of the system was completed. Finally, a series of tests were carried out to evaluate the performance of the developed system, including collecting DC voltage and sinusoidal signal under the static state, and applying to the smart tool holder to carry on the data acquisition and transmission test under the rotating state. The test results showed that the developed system had high reliability and precision, and could collect the sensor signals from the tool holder and transmit to the host computer timely and accurately.
KW - AR9331
KW - smart tool holder
KW - socket
KW - wireless data acquisition and transmission
UR - https://www.scopus.com/pages/publications/85048742978
U2 - 10.1109/EIIS.2017.8298621
DO - 10.1109/EIIS.2017.8298621
M3 - 会议稿件
AN - SCOPUS:85048742978
T3 - 1st International Conference on Electronics Instrumentation and Information Systems, EIIS 2017
SP - 1
EP - 4
BT - 1st International Conference on Electronics Instrumentation and Information Systems, EIIS 2017
A2 - Li, Jun-Bao
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 1st International Conference on Electronics Instrumentation and Information Systems, EIIS 2017
Y2 - 3 June 2017 through 5 June 2017
ER -