ASTM D4340-1996(2007) Standard Test Method for Corrosion of Cast Aluminum Alloys in Engine Coolants Under Heat-Rejecting Conditions《在排热条件下发动机冷却剂对铸造铝合金腐蚀性的标准试验方法》.pdf
《ASTM D4340-1996(2007) Standard Test Method for Corrosion of Cast Aluminum Alloys in Engine Coolants Under Heat-Rejecting Conditions《在排热条件下发动机冷却剂对铸造铝合金腐蚀性的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4340-1996(2007) Standard Test Method for Corrosion of Cast Aluminum Alloys in Engine Coolants Under Heat-Rejecting Conditions《在排热条件下发动机冷却剂对铸造铝合金腐蚀性的标准试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 4340 96 (Reapproved 2007)Standard Test Method forCorrosion of Cast Aluminum Alloys in Engine CoolantsUnder Heat-Rejecting Conditions1This standard is issued under the fixed designation D 4340; the number immediately following the designation indicates the year oforiginal adoption or,
2、in the 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 This test method covers a laboratory screening proce-dure for evaluating the eff
3、ectiveness of engine coolants incombating corrosion of aluminum casting alloys under heat-transfer conditions that may be present in aluminum cylinderhead engines.1.2 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the
4、user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. Specific precau-tionary statements are given in Sections 11 and 12.2. Referenced Documents2.1 ASTM Standards:2D 1176 Practice for Sampling and Preparin
5、g Aqueous So-lutions of Engine Coolants or Antirusts for Testing Pur-poses3. Summary of Test Method3.1 In this test method, a heat flux is established through acast aluminum alloy typical of that used for engine cylinderheads while exposed to an engine coolant under a pressure of193 kPa (28 psi). Th
6、e temperature of the aluminum specimenis maintained at 135C (275F) and the test is continued for 1week (168 h). The effectiveness of the coolant for preventingcorrosion of the aluminum under heat-transfer conditions(hereafter referred to as heat-transfer corrosion) is evaluated onthe basis of the we
7、ight change of the test specimen.4. Significance and Use4.1 It is essential that engine coolants prevent heat-transfercorrosion of aluminum cylinder heads during engine operation.Any corrosion products formed may deposit on interior radia-tor surfaces, reducing heat-transfer efficiency of the radiat
8、or.Overheating and boil-over of the cooling system may thenoccur.4.2 This test method provides a means for selectivelyscreening unused engine coolants and will readily distinguishthose coolants that are unsuitable for use with aluminumcylinder head engines. However, satisfactory performance of acool
9、ant in this test method does not ensure adequate long-termservice performance. Additional, more comprehensive evalua-tions with simulated service, dynamometer, and vehicle testsshould be used to establish the long-term effectiveness of thecoolant.5. Apparatus5.1 Heat-Transfer Corrosion CellThe assem
10、bled corro-sion cell is shown schematically in Fig. 1. It is assembled fromcomponents, some of which require glass blowing or machin-ing. The glass O-ring cell shall be constructed from two glassO-ring joints3joined to an additional middle section of glasstubing4of the same diameter to make a total
11、length of 53 cm(21 in.). Heat-resistant O-rings5shall be used. Internal pressureshall be monitored using a suitable pressure gage,6and apressure-relief valve7shall be installed to protect againstbursting.5.1.1 The top assembly plate (shown in Fig. 2) shall beconstructed of stainless steel, and the h
12、eat-transfer bar andbottom assembly plate (also illustrated in Fig. 2) shall prefer-ably be constructed of stainless steel. Mild steel may be usedfor the heat-transfer bar and bottom assembly plate.1This test method is under the jurisdiction of ASTM Committee D15 on EngineCoolants and is the direct
13、responsibility of Subcommittee D15.06 on GlasswarePerformance Tests.Current edition approved April 1, 2007. Published May 2007. Last previousedition approved in 2001 as D 4340 96(2001).2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceast
14、m.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Corning 6780, No. 40 Pyrex Brand O-ring joints have been found satisfactory.Equivalent O-ring joints with a low coefficient of expansion may be used.4Pyrex Brand Glass, a trad
15、emark of Corning Glass Works, with a standard wallthickness of 2.0 mm has been found satisfactory. Equivalent high-strength glass witha low coefficient of expansion may be used.5Viton, a trademark of E.I. duPont de Nemours and Co., Inc. has been foundsatisfactory. Silicone O-rings may also be satisf
16、actory. Polytetrafluoroethylene is notsuitable due to a high creep rate at the test temperature.6Ametek, U.S. Gauge Division, Model E-82 has been found satisfactory. Anequivalent pressure gage may be used.7Nupro, Catalog No. SS-4CPA2-3 has been found satisfactory. An equivalentpressure relief valve
17、may be used.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.2 Temperature Controller,8with high-temperature alarmoption and temperature control range up to at least 150C(302F). Use Type J thermocouple. A heavy-duty electricalpower
18、relay or SCR solid-state contactor is connected to thetemperature controller to carry the current load to the bandheaters.5.3 Electrical Relay,930-amp rating. The relay is changedafter about every 50 000 cycles to prevent contact welding.8Athena, Model 2500T-B-16 F/C used with an electrical power re
19、lay or Model2500S-B-16 F/C used with an SCR solid-state contractor has been found satisfac-tory. An equivalent temperature controller may be used.9Dayton 5X850A, SPST-NO-DM, 120 V, 30 amp has been found satisfactory.An equivalent mechanical, solid-state, or mercury-wetted relay may be used.FIG. 1 He
20、at-Transfer Corrosion Test AssemblyMetric Equivalentsin.141258 114 22116 2916 412 514mm 6.35 12.7 15.88 31.75 50.8 52.39 65.09 114.3 133.35FIG. 2 Heat-Transfer Corrosion Test ComponentsD 4340 96 (2007)25.4 Band Heaters,10at least 950 W, 120-V ac, 5.1-cm(2-in.) inside diameter, 12.7-cm (5-in.) length
21、.5.5 Ultrasonic Cleaner,11about 50 W, for cleaning alumi-num test samples.5.6 Vacuum Oven,12with temperature range up to about150C (302F) for thoroughly drying cast aluminum samples.5.7 Vacuum Pump,13for use with vacuum oven.5.8 Thermal Cutoff,14for over-temperature protection, lo-cated 1.3 cm (12 i
22、n.) from the heat-transfer bar.5.9 Compressed Air, for pressurizing test cell.5.10 Clear Plastic Safety Shield, for protection againstbursting.6. Sampling6.1 The engine coolant concentrate shall be sampled inaccordance with Test Method D 1176.7. Metal Test Specimen7.1 Cast Aluminum, conforming to UN
23、S A0319015is used.Specimen size is 6.5 cm (2.6 in.) in diameter, 1.3 cm (0.5 in.)thick. Fig. 2 illustrates location of the thermocouple holes.8. Test Solution8.1 Dissolve 165 mg of reagent grade sodium chloride in750 mL of distilled or deionized water, and then add 250 mLof the test coolant. This is
24、 sufficient solution for two tests.9. Test Conditions9.1 The aluminum heat-transfer specimen temperature ismaintained at 135 6 1C (275 6 2F) throughout the test bymeans of a thermocouple connected to the temperature con-troller. The thermocouple is inserted into one of the thermo-couple holes in the
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