Design of Blank Thickness on-Line Monitoring System of Continuous Flat Press in Wood-Based Panel Industry

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Abstract:

On the base of appraising synthetically of measuring and testing technique and the monitoring system of thickness, the article analyzed the demand of thickness deviation. It also determined the control core of single chip, and studied on the on-line monitoring system of the wood-based Panel thickness, which is measured by laser sensor and differential transformer sensor and based on the technique of wireless sensors in order to develop monitoring precision and automation standard of blank thickness in wood-based panel industry.

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3767-3772

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October 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Wang Wei. Research of On-Line Monitoring System of Wood-based panel Thickness[D]. Ha'erbin: Northeast forestry university, 2001: 5-20.

Google Scholar

[2] Yu Youwen, Chang Jian, Chen Jihong. Sensor principle and engineering application(the second edition)[M] . Xi'an: The press of Xi'an university of electronic science and technology, (2001).

Google Scholar

[3] Huang Xianwu. Sensor principle and application[M] . Beijing: UEST Press, (2002).

Google Scholar

[4] Gao Xiaorong. Sensor technology [M]. Chengdu: The press of the southwest university of traffic, (1999).

Google Scholar

[5] Wu Fujia, Zhao Changrui, Yin Xiaoxia. The research on the system of ultrasonic measuring thickness [J]. Modern Manufacturing Engineering. 2009(11): 40-41.

Google Scholar

[6] Wang Gang, Li Dongsheng, Wang Wei. The development of the automatic detection technologyof wood-based panel thickness[J]. Forestry Machinery and Woodworking Equipment. 1999. 27(4): 4-6.

Google Scholar

[7] Cheng Mingshan. Application Analysis of Thickness-gague in Rolling Copper Belt [J]. Nonferrous Metals Processing. 2009. 38(4): 16-17.

Google Scholar

[8] Wu Jiufeng. The principle and application of laser Thickness Gauge [J]. Wisco Technology, 1996: 49-51.

Google Scholar

[9] Li Qiaoming. New Methods of Nonlinear Compensation of Variable-gap Capacitance Sensor [J]. Sensor World, 2001, 9: 25-28.

Google Scholar

[10] Yang Kang, Guo Haifeng, Xu Yankai. Solving the Axial Edge Effect in Designing Capacitance Sensor [J] . Chinese Journal of Scientific Instrument, 2002, 23(3): 115-116.

Google Scholar

[11] Yu Shengneng, Sun Shiping. Design of new capacitance measuring circuit for capacitance sensor [J] . China Measurement Technology, 2005, 31(5): 42-43.

Google Scholar

[12] Zhang Binbin, Cong Peitian. Design of Transform Circuit for Vibration Capacitance Sensor [J] . Instrument Technique and Sensor, 2002(12): 30-31.

Google Scholar

[13] Shan Chengxiang. The Theory, Design and principle for Sensor [M] . Beijing: The defense industry press, 1999: 169-171.

Google Scholar

[14] E jiaqiang, Li Juan, Deng Yuanwang. A validity test method of measurement data about liquefied petroleum gas flux in copper refining process [J] . Journal of Central South University(Science and Technology), 2010, 41(4): 1411-1417.

Google Scholar

[15] Kouji Mochizuki. An Interface for High-Accuracy Signal Processing of Differential-Capacitance Transducers[J]. IEEE Transactions on instrumentation and measurement, 1998, 8: 1244—1247.

DOI: 10.1109/19.746591

Google Scholar

[16] Wang Huaxiang, Zhang Shuying. Sensor principle and application(the third edition)[M]. Tianjin: Tian university press, 2002: 77-86.

Google Scholar

[17] Chang Jiansheng. Detection and Transformation Technology [M]. Beijing: UEST Press, 1980. 8.

Google Scholar

[18] He Limin. MCS-51 series: MCU application system design[M]. Beijing: The press of beijing aviation college, 1994: 314-321.

Google Scholar

[19] Fei Yetai. Error theory and data processing [M]. Beijing: China Machine Press, 2001. 3: 82-88.

Google Scholar