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Standard Test Method for Explosibility of Dust Clouds
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NORM herausgegeben am 15.12.2019
Bezeichnung normen: ASTM E1226-19
Ausgabedatum normen: 15.12.2019
SKU: NS-980481
Zahl der Seiten: 15
Gewicht ca.: 45 g (0.10 Pfund)
Land: Amerikanische technische Norm
Kategorie: Technische Normen ASTM
Explosion protectionMeasurement of force, weight and pressure
Keywords:
dust explosion, explosion pressure,, ICS Number Code 13.230 (Explosion protection), 17.100 (Measurement of force, weight and pressure)
Significance and Use | ||||||||||
5.1 This test method provides a procedure for performing laboratory tests to evaluate deflagration parameters of dusts. 5.2 The data developed by this test method may be used for the purpose of sizing deflagration vents in conjunction with the nomographs and equations published in NFPA 68, ISO 6184/1, or VDI 3673. 5.3 The values obtained by this testing technique are specific to the sample tested and the method used and are not to be considered intrinsic material constants. 5.4 For dusts with low KSt values, discrepancies have been observed between tests in 20-L and 1-m3 chambers. A strong ignitor may overdrive a 20-L chamber, as discussed in Test Method E1515 and Refs (1-4).8 Conversely, more recent testing has shown that some metal dusts can be prone to underdriving in the 20-L chamber, exhibiting significantly lower KSt values than in a 1-m3 chamber (5). Ref (6) provides supporting calculations showing that a test vessel of at least 1-m3 of volume is necessary to obtain the maximum explosibility index for a burning dust cloud having an abnormally high flame temperature. In these two overdriving and underdriving scenarios described above, it is therefore recommended to perform tests in 1-m3 or larger calibrated test vessels in order to measure dusts explosibility parameters accurately. Note 5: Ref 1.1 Purpose. The purpose of this test
method is to provide standard test methods for characterizing the
“explosibility” of dust clouds in two ways, first by determining if
a dust is “explosible,” meaning a cloud of dust dispersed in air is
capable of propagating a deflagration, which could cause a flash
fire or explosion; or, if explosible, determining the degree of
“explosibility,” meaning the potential explosion hazard of a dust
cloud as characterized by the dust explosibility parameters,
maximum explosion pressure, Pmax;
maximum rate of pressure rise, (dP/dt)max;
and explosibility index, KSt.
1.2 Limitations. Results obtained by the application of the methods of this standard pertain only to certain combustion characteristics of dispersed dust clouds. No inference should be drawn from such results relating to the combustion characteristics of dusts in other forms or conditions (for example, ignition temperature or spark ignition energy of dust clouds, ignition properties of dust layers on hot surfaces, ignition of bulk dust in heated environments, etc.) 1.3 Use. It is intended that results obtained by application of this test be used as elements of a dust hazard analysis (DHA) that takes into account other pertinent risk factors; and in the specification of explosion prevention systems (see, for example NFPA 68, NFPA 69, and NFPA 652) when used in conjunction with approved or recognized design methods by those skilled in the art. Note 1: Historically, the evaluation of the deflagration
parameters of maximum pressure and maximum rate of pressure rise
has been performed using a 1.2-L Hartmann Apparatus. Test Method
E789, which describes this
method, has been withdrawn. The use of data obtained from the test
method in the design of explosion protection systems is not
recommended.
1.4 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.5 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.6 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee. |
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2. Referenced Documents | ||||||||||
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