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TB/T 3396.5-2015 PDF English


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TB/T 3396.5-2015: PDF in English (TBT 3396.5-2015)

TB/T 3396.5-2015 TB RAILWAY INDUSTRY STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 45.080 S 12 Test Methods for Fastening Systems of High-Speed Railway – Part 5: Determination of Electrical Resistance ISSUED ON: JULY 15, 2015 IMPLEMENTED ON: FEBRUARY 01, 2016 Issued by: National Railway Administration of the People’s Republic of China Table of Contents Foreword ... 3 1 Scope ... 4 2 Normative Reference ... 4 3 Sign ... 4 4 Principle ... 4 5 Test Equipment ... 5 6 Test Pieces ... 5 7 Test Procedure ... 5 8 Calculation... 7 9 Test Report ... 8 Foreword TB/T 3396 Test Methods for Fastening Systems of High-Speed Railway consists of the following 7 parts: --- Part 1: Determination of Longitudinal Rail Restraint; --- Part 2: Determination for Clamping Force; --- Part 3: Determination of Static Stiffness for Fastening Assembly; --- Part 4: Test of Fatigue Performance of Fastening Assembly; --- Part 5: Determination of Electrical Resistance; --- Part 6: Effect of Severe Environmental Conditions; --- Part 7: Vertical Load Test for Cast-in Fastening Components. This Part is Part 5 of TB/T 3396. This Part was drafted as per the rules specified in GB/T 1.1-2009. This Part shall be under the jurisdiction of Institute of Standards and Metrology, China Academy of Railway Sciences. Drafting organizations of this Part: Railway Engineering Research Institute, China Academy of Railway Sciences. Chief drafting staffs of this Part: Zhao Rukang, Xiao Junheng, Fang Hangwei, Xu Shaohui, and Li Zirui. Test Methods for Fastening Systems of High-Speed Railway – Part 5: Determination of Electrical Resistance 1 Scope This Part specifies the indoor test method for the insulation electric resistance of fastener assembly. This Part applies to fastening systems for high-speed railway. 2 Normative Reference The following documents are essential to the application of this Document. For the dated documents, only the versions with the dates indicated are applicable to this Document; for the undated documents, only the latest version (including all the amendments) is applicable to this Document. GB/T 6908 Analysis of water used in boil and cooling system - Determination of electrical conductivity 3 Sign The following signs are applicable to this Document. Kγ: correction factor for conductivity of test water; Rγ: the measured electric resistance, in Ω; R33: the value of electric resistance when the conductivity of water is corrected into 33mS/m, in Ω; γ: conductivity of the used water at 25°C, in mS/m. 4 Principle Measure the value of electric resistance between two short rails fixed on the sleeper with fasteners under the water spraying condition of the specified water spraying rate. The conductivity of water is corrected by the coefficient Kγ. 5 Test Equipment 5.1 Rail Two short rails with a length of about 0.5 m have the same cross-section as the rails used for assembling the tested fasteners. There should be no floating rust on the surface of the rail. 5.2 Water The test water was potable water of known conductivity (range 20 mS/m ~ 80 mS/m). 5.3 Spraying device As shown in Figure 1, a shelf that can move parallel to the rail is equipped with four nozzles with a diameter of 3.6 mm and a spray taper of 100°~125°. It shall also be equipped with equipment capable of controlling and measuring the nozzle flow. 5.4 Power supply The alternating current with voltage of 30V±3V, and frequency of 50Hz±15Hz. 5.5 Testing instrument The testing instrument shall be able to measure the voltage and current between the two rails with a measurement accuracy of 1%; and can calculate the electric resistance of 1 × 102 Ω ~ 1 × 106 Ω. The test equipment shall be able to print out and calculate the recorded resistance-time curve. 6 Test Pieces 6.1 Sleeper Sleepers with built-in parts for fasteners or reserved holes. 6.2 Fastener The complete set of fasteners including all parts. 7 Test Procedure Test the conductivity and temperature of the test water according to the provisions of GB/T 6908 for testing and calculation; and correct the conductivity of the test water to the value γ at ......
 
Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.