ASTM-D2624 2007
$40.63
D2624-07 Standard Test Methods for Electrical Conductivity of Aviation and Distillate Fuels
Published By | Publication Date | Number of Pages |
ASTM | 2007 | 10 |
1.1 These test methods cover the determination of the electrical conductivity of aviation and distillate fuels with and without a static dissipator additive. The test methods normally give a measurement of the conductivity when the fuel is uncharged, that is, electrically at rest (known as the rest conductivity).
1.2 Two test methods are available for field tests of fuel conductivity. These are: ( 1 ) portable meters for the direct measurement in tanks or the field or laboratory measurement of fuel samples, and ( 2 ) in-line meters for the continuous measurement of fuel conductivities in a fuel distribution system. In using portable meters, care must be taken in allowing the relaxation of residual electrical charges before measurement and in preventing fuel contamination.
1.3 &solely-SI-units;
This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. For specific precautionary statements, see 7.1, 7.1.1, and 11.2.1.
PDF Catalog
PDF Pages | PDF Title |
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1 | Scope Referenced Documents Terminology Summary of Test Methods |
2 | Significance and Use Apparatus Reagents and Materials Sampling Cleaning Procedures Calibration Procedure |
3 | Report Precision and Bias TABLE 1 |
4 | Apparatus Installation FIG. 1 TABLE 2 |
5 | Calibration Procedure Measurement Report Precision and Bias Apparatus Installation Calibration Procedure Measurement Report Precision and Bias Keywords |
6 | A1. CALIBRATION OF THE MAIHAK METER (ANALOG TYPE) A1.1 A1.2 A1.3 Checking the Calibration A1.4 Verifying Performance of the Meter A2. CALIBRATION OF THE EMCEE CONDUCTIVITY METER MODEL 1152 (DIGITAL TYPE) A2.1 A2.2 A2.3 A2.4 A2.5 |
7 | A3. CALIBRATION OF THE STATICON CONDUCTIVITY MONITOR MODEL 1150 (IN-LINE) A3.1 A3.2 A4. CALIBRATION OF THE MAIHAK MLA 900 CONDUCTIVITY METER A4.1 A4.2 A4.3 A4.4 A4.5 A5. CALIBRATION OF THE EMCEE CONDUCTIVITY METER MODEL 1153 (DIGITAL TYPE) A5.1 Zero Check A5.2 Over-Range Check |
8 | A6. D-2 INCORPORATED MODEL JF-1A (IN-LINE) A6.1 A6.2 Power Sensor A6.3 Set Sensor Zero A6.4 Set Sensor Scale X1. DISCUSSION OF PRECISION STATEMENTS—TESTS CONDUCTED AT A COMMON SITE VERSUS DIFFERENT LOCATIONS (RR:D02-1235) X1.1 Purpose of Test Program |
9 | X1.5 Statistical Analyses X1.6 Conclusions X2. TEMPERATURE–CONDUCTIVITY RELATIONSHIPS X2.1 Introduction X2.2 Fundamental Relationships X2.3 Practical Considerations X2.4 Typical Temperature-Conductivity Coefficients TABLE X1.1 |
10 | X2.5 TABLE X2.1 |