The Design of the Measuring and Controlling System of the High Power Pump Performance Test-Bed Based on Virtual Instrument Technique

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Abstract:

To satisfy the performance test of the high power hydraulic pump, a test-bed is developed in this paper. The parameters, the sign of the control and the data of the state are concluded. The test-bed employs the virtual instrument technique and PXI bus structure as well as M series data acquisition apparatus, it can measure the important performance parameters, such as pressure, flow, torque, speed and temperature; then we deal with and analysis these data. During the testing procedure it can realize automatic control, such as regulating the flow, pressure and so on. During the measuring and controlling, we can also monitor the state of the test-bed and give an alarm, such as over temperature or pressure.

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Periodical:

Advanced Materials Research (Volumes 139-141)

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1967-1972

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Online since:

October 2010

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© 2010 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.F. Wu: The Design of the Hydraulic and Observation System of the Pump-motor Test-bed Based on Power Recovery (MS., Central South University, China 2006), pp.1-4. (In Chinese).

Google Scholar

[2] B. Liu: Research on Testing System for Variable Displacement Pump Based on Virtual Instrument (MS., Zhejiang University of Technology, China 2006), pp.1-5. (In Chinese).

Google Scholar

[3] Z.S. Zhang, F. Rui: Fluid Power Transmission and Control, Vol. 5 (2008) No. 1, pp.41-43. (In Chinese).

Google Scholar

[4] C. Yang: Virtual Instrument-Based Test System for Performance of Hydraulic Pump and Motor (MS., Yanshan University, China 2006), pp.4-9. (In Chinese).

Google Scholar

[5] H.L. Sun, L. H Qiu and Z.L. Wang: Process Automation Instrumentation, Vol. 26 (2004) No. 3, pp.25-27. (In Chinese).

Google Scholar

[6] H.M. Luo: Fluid Power Transmission and Control, Vol. 4 (2007) No. 5, pp.7-9. (In Chinese).

Google Scholar

[7] G.T. Li, R.X. Li and J.F. Kang: Transactions of the Chinese Society of Agricultural Machinery, Vol. 36 (2005) No. 12, pp.134-137+121. (In Chinese).

Google Scholar

[8] L. Huang, B. Jin, H.K. Shen: Chinese Hydraulics & Pneumatics, Vol. 17 (2005) No. 4, p.1618. (In Chinese).

Google Scholar

[9] Lei Zhenshan, Tang Xiaojiao, Gong Qinghua: Machine Tool & Hydraulics, Vol. 25 (2005) No. 3, pp.174-176. (In Chinese).

Google Scholar

[10] Y. L Chen, Z.S. Li, B.Q. Huang, Y.L. Fu: Fluid Power Transmission and Control, Vol. 5 (2008) No. 2, pp.37-39. (In Chinese) * Author to whom correspondence should be addressed: E-mail: smchen@fzu. edu. cn.

Google Scholar