FORD FLTM AI 103-01-2000 IODOMETRIC DETERMINATION OF HYDROPEROXIDES IN CLEARCOAT ENAMELS《透明瓷漆中的氢过氧化物含量的碘滴定法测定》.pdf
《FORD FLTM AI 103-01-2000 IODOMETRIC DETERMINATION OF HYDROPEROXIDES IN CLEARCOAT ENAMELS《透明瓷漆中的氢过氧化物含量的碘滴定法测定》.pdf》由会员分享,可在线阅读,更多相关《FORD FLTM AI 103-01-2000 IODOMETRIC DETERMINATION OF HYDROPEROXIDES IN CLEARCOAT ENAMELS《透明瓷漆中的氢过氧化物含量的碘滴定法测定》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 FORD LABORATORY TEST METHOD AI 103-01 Date Action Revisions 2000 08 07 Editorial no technical change A. Cockman 2000 03 09 Editorial no technical change A. Cockman 1993 12 31 Printed copies are uncontrolled Page 1 of 6 Copyright 2000, Ford Global Technologies, Inc. IODOMETRIC DETERMINATION OF HYDRO
2、PEROXIDES IN CLEARCOAT ENAMELS Application This test method determines the amount of hydroperoxides in automotive clearcoat enamels. Hydroperoxide is produced during weathering of clearcoats and can be monitored as a func tion of exposure time in a weatherometer. This information provides a way to e
3、valuate the durability of coatings based on chemical changes and should be used only as a comparison tool for modifications within a coating family (acrylic melamine coatings, f or example). Required Test Equipment Silicone oil bath and heat source Ice bath Condenser - with 24/40 ground glass joints
4、 Erlenmeyer flask - 125 Ml, with 24/40 ground glass joint Freezer mill Solvent repurification apparatus Kontes catalog # 5476 00 - 0500 Titroprocessor System - with the following elements* Brinkmann 670 Titroprocessor or equivalent Titration stand and titration vessel Dosimat and exchange unit Polar
5、izer Double platinum electrode Necessary cables and accessories * or similar equi valent Computer Software Required Titroprocessor method for “Hydroperoxide Determination“* Titroprocessor method for “Thiosulfate Standardization“* *Source Ford Central Laboratory Services FORD LABORATORY TEST METHOD A
6、I 103-01 Page 2 of 6 Copyright 2000, Ford Global Technologies, Inc. Materials and Solutions Required Methylene Chloride Potassium Iodide, Iodate-free Sodium Thiosulfate Pentahydrate Sodium Carbonate Potassium Dichromate Glacial Acetic Acid Calcium Hydride 2-Propanol, Hydroperoxide-free Acetic acid/2
7、-propanol solution - 1:9 by volume Sodium Thiosulfate - 0.00500 M Conditioning and Test Conditions All test values indicated herein are based on material conditioned in a controlled atmosphere of 23 +/ - 2 C and 50 +/ - 5 % relative humidity for not less than 24 h prior to testing and tested under t
8、he same conditions unles s otherwise specified. Preparation of Panels 1. To allow for 10 data points of hydroperoxide content versus hours of weathering, spray up five 125 x 175 mm glass panels for each type of enamel using FLTM BI 103 - 02. Panels must have 1.0 - 1.4 g of clear coat solids. 2. Cure
9、 the panels at the time and temperature recommended by the relevant engineering document. 3. Wrap the panels in foil, seal them in plastic bags, and age for 72 h at 23 +/ - 2 C. 4. Perform a hydroperoxide determination on a sample of unweathered coating to provide a “time zero“ baseline. 5. Place th
10、e panels in a weatherometer according to SAE J1960 and remove for hydroperoxide determinations at the time intervals suggested by the ongoing determinations. If the values are changing rapidly with weathering, per form hydroperoxide determinations frequently. If the values appear to be stable, remov
11、e panels for testing less often. See Note 1. Procedure 1. Turn on the magnetic stirrer/hot plate to warm the silicone oil bath to 110 +/ - 5 C. 2. Turn on water to the co ndenser at a fast flow rate to provide adequate cooling for the refluxing solvent. FORD LABORATORY TEST METHOD AI 103-01 Page 3 o
12、f 6 Copyright 2000, Ford Global Technologies, Inc. 3. Turn on the titroprocessor, stir plate, and dosimat, in that order, to warm the electronics. 4. Using a clean razor blade, scrape approximately half of the clearcoat soli ds from a 125 x 175 mm glass panel. Return the glass panel to the weatherom
13、eter so that the remainder of the clearcoat solids can be analyzed at a later date. 5. Transfer the scraped, flake - like material to a cryogrinding tube, insert an impactor, and seal up the tube. 6. Insert the cryogrinding tube in a freezer mill and pour liquid nitrogen into the mill up to the fill
14、 line. Cryogrind the polymer for 5 minutes. 7. Remove the cryogrinding tube from the freezer mill. Warm the tube to 23 +/ - 2 C before open ing it to prevent the condensation of moisture on the cryogrind powder. 8. Open the cyrogrind tube and examine the contents. A dust - like powder is desired. If
15、 pieces, flakes or chunks are visible, further grinding is required. See Note 2. 9. Transfer the powder from the cyrogrind tube to a brown glass jar labeled with sample identification. Using an analytical balance, weigh 0.5 g of the cyrogrind powder to 0.0001 g on tared wax weighing paper. Place the
16、 weighed powder in a 125 mL Erlenmeye r flask with a 24/40 ground glass joint. 10. Add 10 mL of methylene chloride, stopper the flask, and swirl to wet the powder. Allow the mixture to stand for 10 minutes to swell the powder. 11. Place a magnetic stir bar and a few pieces of dry ice in the Erlenmey
17、er flask. Add 0.3 g of potassium iodide followed by 25 mL of acetic acid/isopropyl alcohol solution. Swirl the flask to ensure mixing, attach the flask to the water condenser and immerse the flask in the pre - heated oil bath. Carefully place a stopper in the top of the condenser to prevent the entr
18、y of oxygen and loss of solvent. 12. Reflux gently for at least 15 minutes. If hydroperoxide is present, a yellow color will develop during reflux. S ee Note 3. 13 . After completion of the reflux, remove the flask and condenser from the oil bath. Remove the stopper from the top of the condenser and
19、 place a piece of dry ice on the top of the condens er. 14. Place the flask and condenser in an ice bath and cool the flask to 23 +/ - 2 C. 15. From the titroprocessor, access the method called “Hydroperoxide Determination“. Go to page 8 of the method. Edit line 3 and enter sample identification. Ed
20、it line 9 and enter for SO the sample weight of the cyrogrind powder (from Step 9). 16. Transfer the cooled reaction mixture to the titration vessel, using small portions of additional acetic acid/isopropyl alcohol solution to rins e all yellow particles into the titration vessel. A small stir bar (
21、one that will not hit the electrode) must be in place in the titration vessel. 17. Clamp the titration vessel in place and make sure the mixture is stirring smoothly. From page 8, hit the START button on the titroprocessor. 18. Titrate with 0.00500 M Na 2 S 2 O 3 beyond the disappearance of the yell
22、ow color. Also observe the display of the real - time titration curve. The mV readings will reverse direction after the endpoint has been passed. Hit t he BREAK key on the titroprocessor to terminate the run. The titroprocessor will calculate the hydroperoxide content (R1) in “mol of hydroperoxide/g
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