ASTM D4942-1989(2006) Standard Test Methods for Water Pickup of Lithographic Printing Inks and Vehicles in a Laboratory Mixer《试验搅拌器中石印印刷油墨和载色剂的水粘附性的试验方法》.pdf
《ASTM D4942-1989(2006) Standard Test Methods for Water Pickup of Lithographic Printing Inks and Vehicles in a Laboratory Mixer《试验搅拌器中石印印刷油墨和载色剂的水粘附性的试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4942-1989(2006) Standard Test Methods for Water Pickup of Lithographic Printing Inks and Vehicles in a Laboratory Mixer《试验搅拌器中石印印刷油墨和载色剂的水粘附性的试验方法》.pdf(3页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 4942 89 (Reapproved 2006)Standard Test Methods forWater Pickup of Lithographic Printing Inks and Vehicles in aLaboratory Mixer1This standard is issued under the fixed designation D 4942; the number immediately following the designation indicates the year oforiginal adoption or, in the
2、 case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover two procedures for determin-ing the amount of water picked up
3、 by lithographic printing inksin a laboratory mixer.1.2 Test Method A covers single-point water pickup; TestMethod B covers the rate of water pickup. Both test methodsare applicable to any printing ink and vehicle intended for thelithographic printing process.1.3 The values stated in SI units are to
4、 be regarded asstandard. No other units of measurement are included in thisstandard.1.4 This standard does not purport to address all of thesafety 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
5、 determine the applica-bility of regulatory limitations prior to use.2. Summary of Test Methods2.1 These test methods utilize a laboratory mixer for beatingwater or other agreed upon fluid into the test ink.2.2 For single-point water pickup (Test Method A), 50 mLof water is normally added to 50 g of
6、 ink and mixed in for 5min. The water picked up is determined from volumetricmeasurements of free water.2.3 For rate of water pickup (Test Method B), water is addedto 50 g of ink in increments of 20 mL and mixed in for 1 minor more over a cumulative time period totaling 10 min. Thewater taken up by
7、the ink after each mixing interval isdetermined gravimetrically.3. Significance and Use3.1 The lithographic printing process requires that somedampening solution be emulsified into the ink. These testmethods provide a rapid means for determining water pickupunder laboratory conditions. Test results
8、may be useful forspecification acceptance between the supplier and the cus-tomer.3.2 In order that results be comparable, the tests must be runat the same temperature and with the same type and quantity ofliquid added prior to mixing.3.3 The emulsions obtained in these test methods are oflarger part
9、icle size than those typically produced in printingnips. Because of these and other variables in the printingprocess, water pickup results do not by themselves predictlithographic printing performance.4. Apparatus4.1 Laboratory Mixer,2such as a Duke Ink-Water Emulsi-fication Tester2equipped with a s
10、tainless steel specimen bowl83 mm wide and 88 mm high, mixer blades that rotate at 90r/min, and a timing device.4.2 Balance, accurate to 0.1 g, 600-g capacity.4.3 Palette knives, two.4.4 Thermometer, quick response.4.5 pH Meter (optional).4.6 Conductivity Meter (optional).4.7 Graduated Cylinder, 50
11、or 100-mL.5. Reagents and Materials5.1 WaterDeionized or distilled water, preferably havinga pH of 5.0 to 7.0 (100 to 200 mL per sample); alternatively,fountain solution or other aqueous medium as agreed uponbetween the supplier and the customer may be used.5.2 Cleanup MaterialsNaptha and rags or ti
12、ssues.6. Test Specimen6.1 A minimum of 100 g is sufficient for two determina-tions. Before removing ink from the can, stir or otherwiseensure that the ink specimen is representative. Close the canand replace sealing tape immediately after each ink removal.7. Conditioning7.1 Condition the instrument,
13、 water, and ink samples in aconstant temperature room or bath, preferably at 23 6 1C.7.2 Prior to use, check the alignment of the mixer blades.With the power switch of the mixer in the off position, set theclean bowl into the turntable and engage the locking pin firmly1These test methods are under t
14、he jurisdiction of ASTM Committee D01 onPaint and Related Coatings, Materials, and Applications and are the directresponsibility of Subcommittee D01.56 on Printing Inks.Current edition approved Nov. 1, 2006. Published November 2006. Originallyapproved in 1989. Last previous edition approved in 2001
15、as D 4942 - 89 (2001).2Available from Duke Custom Systems, 8371 Highway 49, Pleasant View, TN37146.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.into the slot in the side of the turntable. Tilt the mixer headback and insert the bla
16、des, marked left and right, into theirrespective holders. Lower the mixer head. If the blades hit theside or bottom of the bowl, return the instrument to themanufacturer for realignment.8. Test Method ASingle Point Water Pickup (byVolumetry)8.1 Program the counter of the mixer for 5 min mixing time(
17、450 revolutions).8.2 OptionalIf the first run of the day, pour test water intoa beaker. Measure pH, conductivity, and temperature at thebeginning of testing.8.3 Weigh or tare the clean dry mixing bowl. Add 50 6 0.1g of the ink to the center of the bowl.8.4 Pour 50 mL of water (from 8.2) into a gradu
18、atedcylinder. If the ink is expected to pick up more than 100 %water, use 100 mL of water. Adjust the volume to 60.5 mL.Add the entire contents to the bowl.8.5 With the mixer head tilted back insert the clean blades,marked left and right, into their respective holders. Lock thebowl on the turntable.
19、 Lower the mixer head. Press the counterreset button, making sure that 450 is displayed on the face ofthe counter.8.6 Turn the mixer on. Examine contents of the bowl asmixing progresses. If 50 mL of water had been added and allof it disappears into the ink, stop, discard the ink in the bowl,clean up
20、, and start over from 8.3, adding 100 mL of water in8.4. The latter quantity must also be used for all other inks inthe series under study.NOTE 1With some inks, water pickup is affected by the amount ofwater added prior to mixing. When 50 mL is insufficient, do not simplyadd another 50 mL during the
21、 run, as test results may differ significantlyfrom those obtained by adding 100 mL at the outset.8.7 When the mixer stops, turn the power switch off. Tilt thehead out of the ink, detach the mixing blades, and add to thebowl.8.8 Remove the bowl from the turntable and, holding theblades at the side of
22、 the bowl, decant the free water into agraduated cylinder. Run the blades very slowly through the inkin the bowl. Decant additional free water into the cylinder.NOTE 2Do not knock the bowl to force free water from the surface.Always handle the bowl gently to avoid breaking the emulsion.8.9 Record th
23、e returned water level to 0.5 mL.8.10 OptionalMeasure the temperature, pH, and conduc-tivity of the returned water. Note the appearance of the waterand the consistency of the ink and the appearance of thereturned water.8.11 Discard ink left in the bowl. Clean the bowl and themixer blades with tissue
24、 wetted with naphtha. Discard thereturned water and rinse the cylinder clean.8.12 Repeat 8.3 through 8.10 with a second specimen of thesame ink.9. Test Method BRate of Water Pickup (byGravimetry)9.1 Program the counter for the first interval of the mixingcycle.NOTE 3A commonly used cycle is 1-min in
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