BS 7506-2-1996 Methods for measurement in electrostatics - Test methods《静电测量方法 试验方法》.pdf
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1、| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | BRITISH STANDARD BS 7506 : Part 2 : 1996 I
2、ncorporating Amendment No. 1 ICS 29.020 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW Methods for Measurements in electrostatics Part 2. Test methodsBS 7506 : Part 2 : 1996 Issue 2, December 1997 This British Standard, having been prepared under the direction of the Sector B
3、oard for Materials and Chemicals, was published under the authority of the Standards Board and comes into effect on 15 March 1996 BSI 1997 The following BSI references relate to the work on this standard: Committee reference PRI/25 Draft for comment 94/304285 DC ISBN 0 580 24636 1 Amendments issued
4、since publication Amd. No. Date Text affected 9720 December 1997 Indicated by a sideline in the margin Committees responsible for this British Standard The preparation of this British Standard was entrusted to Technical Committee PRI/25, Electrical properties of rubber and plastics, upon which the f
5、ollowing bodies were represented: British Plastics Federation British Resilient Flooring Manufacturers Association British Rubber Manufacturers Association ERA Technology Ltd. Electrical and Electronic Insulation Association (BEAMA Ltd.) European Electrostatic Discharge Association Federation of Res
6、in Formulators and Applicators (FeKFA) Federation of the Electronics Industry Health and Safety Executive RAPRA Technology Ltd.Issue 1, December 1997 BS 7506 : Part 2 : 1996 BSI 1997 a Summary of pages The following table identifies the current issue of each page. Issue 1 indicates that a page has b
7、een introduced for the first time by amendment. Subsequent issue numbers indicate an updated page. Vertical sidelining on replacement pages indicates the most recent changes (amendment, addition, deletion). Page Issue Page Issue Front cover Inside front cover a b i ii 1 2 3 4 5 6 7 8 9 10 11 12 13 1
8、4 15 2 2 1 blank 2 2 2 2 original original original original original 2 2 original original original original original 2 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 Inside back cover Back cover original 2 original original original original original original 2 2 original original origin
9、al original original original original original original original 2b blankIssue 2, December 1997 BS 7506 : Part 2 : 1996 BSI 1997 i Contents Page Foreword ii 1 Scope 1 2 Informative references 1 3 Measurement of electric field 1 4 Measurement of potential 4 5 Measurement of charge 5 6 Measurement of
10、 charge density 8 7 Measurement of charge decay 9 8 Measurement of resistance and resistivity 12 9 Measurement of chargeability 15 10 Measurement of shielding performance of materials 20 11 Measurement of d.c. breakdown voltage 23 Annexes A (informative) Methods for the calibration of electrostatic
11、instruments 27 B (informative) Bibliography 33 List of references Inside back coverii BSI 1997 BS 7506 : Part 2 : 1996 Issue 2, December 1997 | | | Foreword This Part of BS 7506 was prepared by Technical Committee PRI/25. BS 7506 Methods for measurement in electrostatics comprises two Parts: Part 1:
12、 Guide to basic electrostatics Part 2: Test methods The test methods described are those considered most appropriate for electrostatic measurements. Several methods described in this Part are simplified versions of existing British Standards, since for the purposes of electrostatics the range of val
13、ues of significance may be restricted. The methods described give adequate accuracy and precision in these ranges. In many cases more precise or accurate procedures are available, and for these more specialized standards should be consulted. Part 1 of this standard provides information and guidance
14、on methods for making reliable measurements. Annex A describes procedures for calibration of the instruments used in the test methods specified. Although calibration is not always deemed to be necessarily prescribed, it is considered advisable to provide guidance. Annex B provides useful references
15、for additional information. Compliance with a British Standard does not of itself confer immunity from legal obligations. BSI 1997 1 Issue 2, December 1997 BS 7506 : Part 2 : 1996 Shield Sensor C R Figure 1. Induction probe fieldmeter 1 Scope This Part of BS 7506 comprises standard methods of measur
16、ement, providing reliable means of determining the values of those properties of materials relevant to electrostatic phenomena. The range of values of a property which is significant to electrostatic effects is limited, and it is only useful to measure such a property within this range (for example
17、resistance values between 10 6 V and 10 10 V). For this reason, simpler procedures are acceptable, and fewer problems of interpretation arise. For precise measurements of properties outside these ranges reference should be made to more specialized standard methods and to relevant scientific literatu
18、re. 2 Informative references This Part of BS 7506 refers to other publications that provide information or guidance. Editions of these publications current at the time of issue of this standard are listed on the inside back cover, but reference should be made to the latest editions. | | 3 Measuremen
19、t of electric field 3.1 Principle 3.1.1 General Electric fields are measured from the charge induced on a conducting surface. Fieldmeters (used for measuring the field) are of two main types: induction probe and field mill instruments. 3.1.2 Induction probe instruments Induction probe instruments ar
20、e simple and of relatively low cost. They consist, as shown in figure 1, of a sensing surface with a defined capacitance to earth connected to a very high input impedance amplifier. The signal V (volts) observed at the preamplifier input when a sensing surface of effective area A (m 2 ) with an inpu
21、t capacitance C (F), is exposed to an electric field E (Vm 21 )i s given by: V = e 0 EA/C where e 0 is the electric constant (8.853 10 212 Fm 21 ). The effective sensing area will depend on the screening arrangements, and should be calibrated in situ. Zero drift can arise from variation of the bias
22、currents and offset voltages at the preamplifier input. Induction probe instruments have a finite input time constant arising from the input capacitance and inevitable input leakage resistance. Consequently, induction probe instruments are used for relatively short term measurements (tens of seconds
23、) and require to be adjusted to zero reading in a zero electric field environment.2 BSI 1997 BS 7506 : Part 2 : 1996 Issue 2, December 1997 Figure 2. Field mills with rotating and oscillating shutters | 3.1.3 Field mill instruments Field mill fieldmeters overcome the limitations of induction probes
24、by using a rotating chopper, which is normally earthed, to modulate the coupling of the electric field to the sensing surface. The general arrangement is shown in figure 2. So long as the timescale of modulation is suitably shorter than the product of the input capacitance, C, and the effective inpu
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