ASTM D153-1984(2008) Standard Test Methods for Specific Gravity of Pigments《颜料比重的标准试验方法》.pdf
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1、Designation: D 153 84 (Reapproved 2008)Standard Test Methods forSpecific Gravity of Pigments1This standard is issued under the fixed designation D 153; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A nu
2、mber in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the Department of Defense.1. Scope1.1 These test methods cover three procedures for determin-
3、ing the specific gravity of pigments, as follows:Test Method AFor Routine Testing of Several SamplesSimultaneously.Test Method BFor Tests Requiring Greater Accuracy thanTest Method A.Test Method CFor Rapid and Accurate Testing of SingleSamples.1.2 The specific gravity value obtained by these procedu
4、resmay be used with the weight of a dry pigment to determine thevolume occupied by the pigment in a coating formulation.1.3 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.1.4 This standard does not purport to address all of th
5、esafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. For specific hazardstatements, see Sections 5, 11, and 15.2. Referenc
6、ed Documents2.1 ASTM Standards:2D 1193 Specification for Reagent Water3. Purity of Reagents3.1 Purity of WaterReference to water shall be understoodto mean reagent water as defined by Type II of SpecificationD 1193.TEST METHOD AFOR ROUTINE TESTING OFSEVERAL SAMPLES SIMULTANEOUSLY4. Apparatus and Mat
7、erials4.1 PycnometerA pycnometer (Note 1) having a 50-mLcapacity.NOTE 1The Weld type with the cap seal on the outside of the neck ofthe bottle is preferred because there is less danger of trapping air justunder the capillary tube than with types having the ground glass seal onthe inside of the neck.
8、4.2 Water Bath, maintained at 25 6 0.5C and equippedwith a stirring device.4.3 Manometer, open- or closed-tube (see Part f of theapparatus for Test Method C), made of glass tubing 6 mm indiameter, fitted with rubber pressure tubing attached to aT-joint leading to the desiccator and the pump. For the
9、open-tube type 860 mm of mercury shall be used. Thedifference in levels of the mercury in the manometer when thesystem is in operation, subtracted from the barometer readingtaken at the same time, shall be considered the absolutepressure of the system in millimetres of mercury.4.4 Desiccator, glass,
10、 constructed with heavy walls towithstand a vacuum of one atmosphere, and with an opening atthe side.4.5 Vacuum PumpsAlaboratory water vacuum-type pump(Note 2), to remove the greater portion of air in the desiccator,and an oil vacuum-type pump, motor-driven, and capable ofreducing the absolute press
11、ure of the system to 3 mm.NOTE 2The water vacuum pump may be omitted if the rate ofevacuation with the oil pump can be controlled so as to avoid a rapidebullition of entrapped air and possible loss of specimen.4.6 Thermometer, having a range from 0 to 60C, andgraduated in 0.1C divisions.4.7 Weighing
12、 Bottle, wide-mouth cylindrical glass (about 30mm in height and 70 mm in diameter), provided with aground-glass stopper.4.8 Immersion LiquidKerosine has been found to be agood wetting vehicle for most pigments, and shall be usedgenerally as the immersion liquid. Refined, white kerosine of1These test
13、 methods are under the jurisdiction of ASTM Committee D01 onPaint and Related Coatings, Materials, and Applications and are the directresponsibility of Subcommittee D01.31 on Pigment Specifications.Current edition approved Feb. 1, 2008. Published February 2008. Originallyapproved in 1923. Last previ
14、ous edition approved in 2003 as D 153 84 (2003).2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright AS
15、TM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.narrow evaporation and boiling range shall be used. With somepigments that are not wetted well with kerosine, other immer-sion liquids such as glycerin, ethylene glycol, tetrahydronaph-thalene, etc.
16、, may be substituted. The liquid must have a lowevaporation rate and narrow boiling range, and the sameprocedure shall be followed as with kerosine. Water is not apreferred liquid because of the possibility of frothing.5. Hazards5.1 Before a desiccator is used for the first time, wrap it ina towel a
17、nd test under an absolute pressure of under 3 mm.Exercise care in handling the desiccator when under vacuum,since a sudden jar may cause it to collapse.6. Standardization of Pycnometer6.1 Fill the pycnometer with freshly boiled water at 23 to24C, gradually bring to 25 6 0.5C, and then dry and weigha
18、s specified in 7.6. Empty the pycnometer, and clean, dry, andreweigh it. Next fill the pycnometer with kerosine at 23 to24C, bring to 25 6 0.5C, dry, and weigh as before. Calculatethe specific gravity, S, of the kerosine at 25/25C as follows:S 5 A/B (1)where:A = weight of kerosine, g, andB = weight
19、of water, g.7. Procedure7.1 DryingDry the pigment, preferably in an electricoven, at 105 6 2C for 2 h.7.2 WeighingTransfer to a clean, dry, weighed pycnom-eter, sufficient sample to form a layer approximately 20 mm (34in.) deep. For black, blue, and lake pigments of low specificgravity, use about1go
20、fsample; for inert crystalline pigments,about 4 g; for opaque white pigments, 7 to 10 g; and for redlead, from 15 to 20 g. Weigh pigments of a hydroscopic naturefrom the weighing bottle.7.3 Number of SpecimensRun all samples at least induplicate.7.4 Addition of KerosineAdd enough kerosine to thepycn
21、ometer to form a clear layer approximately14 in. (6 mm)above the pigment. When necessary, stir the specimen with apolished round-bottom glass rod until completely covered bykerosine, adding more kerosine if necessary. Wash the rod withkerosine, adding the washings to the pycnometer.7.5 Removal of Oc
22、cluded AirPlace the pycnometer in thedesiccator. Close the desiccator and attach to the water pumpuntil the greater part of the air is removed from the system.Complete this procedure within a period of 5 to 10 min. Closethe system with a pinchcock and attach the desiccator to the oilpump for the rem
23、oval of the small amounts of air given off atthe low pressures obtainable with the oil pump. Use themanometer to indicate whether the oil pump is giving theproper vacuum. When the manometer indicates that the abso-lute pressure is 3 mm and constant, cut off the oil pump forshort periods, taking care
24、 that the vacuum does not changematerially due to leakage. At first bubbles of air rise from thepigments very rapidly, then this action gradually decreases andfinally stops. The time required for complete removal of airmay vary from 30 min to 24 h, depending upon the nature ofthe pigment. When no mo
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