FORD FLTM BL 104-01-2001 ALUMINUM CYLINDER HEAD HEAT-TRANSFER CORROSION TEST (Replaces FLTM BL 004-01)《铝气缸盖传热腐蚀试验 替代FLTM BL 004-01》.pdf
《FORD FLTM BL 104-01-2001 ALUMINUM CYLINDER HEAD HEAT-TRANSFER CORROSION TEST (Replaces FLTM BL 004-01)《铝气缸盖传热腐蚀试验 替代FLTM BL 004-01》.pdf》由会员分享,可在线阅读,更多相关《FORD FLTM BL 104-01-2001 ALUMINUM CYLINDER HEAD HEAT-TRANSFER CORROSION TEST (Replaces FLTM BL 004-01)《铝气缸盖传热腐蚀试验 替代FLTM BL 004-01》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、FORD LABORATORY TEST METHOD BL 104-01 2001 0822 ALUMINUM CYLINDER HEAD HEAT-TRANSFER CORROSION TEST Revised Editorial - no technical change A. Cockman Application It is essential that engine coolants prevent internal heat-transfer corrosion of aluminum cylinder heads during engine operation. Any cor
2、rosion products formed will likely deposit on the nterior radiator surfaces, reducing the heat transfer efficiency of the radiator, or actually cause tube blockage. Over-heating and boil- over of the cooling system may then occur. This short-term screening test is used to evaluate the effectiveness
3、of inhibited engine coolants in preventing high temperature heat-transfer corrosion of aluminum cylinder heads. Apparatus Required Temperatu re Controller Athena, Model 2000B-16 F/C or equivalent, with temperature control range up to 150 OC. Use type ” J ” thermocouple . Band Heaters Hotwatt, 950 wa
4、tt standard construction band heaters or equivalent, 50 mm ID, 125 mm length, 120 volts AC, standard tightening clamp, type ”L” terminal. Ultrasonic Cleaner Bransonic Model 12, 1 quart, 50 watts, or equivalent. Vacuum Oven Thelco Model IO, to 150 OC, or equivalent. Vacuum Pump Ace-Nelson Model 91 1,
5、 or equivalent. Heat-Transfer Corrosion Cell 1. Glass -ring cell, pyrex, 53 cm long (see Figure 1). 2. O-rings, Viton. (Teflon is not suitable due to high creep rate at test temperature.) I Date I Action I Revisions I CopyrightO2001, Ford Global Technologies, Inc FORD LABORATORY TEST METHOD BL 104-0
6、1 3. Heat-transfer bar, steel (see Figure 2). 4. Top and bottom assembly plates, 316 stainless steel (see Figure 3). 5. Pressure gauge, O - 150 kPa 6. Threaded rods, 72 cm length, typically 114 - 20 UNC. 7. Heat-transfer test sample, casting alloy of interest (see Figure 2). Analyt ical Balan ce 160
7、 g minimum capacity with a precision of +/- 0.1 mg; Mettler Model No. H33AR. Curtis Matheson Catalog No. 368-522 or equivalent. Glass Capillary Pipet 150 mL Curtis Matheson Catalog No. 081 -91 9 or equivalent. Low Power Microscope Bausch and Lomb Model Z-3OLZ; Curtis Matheson Catalog No. 369-959 or
8、equivalent. Apparatus Required Soft Bristle Brush Thin Cotton Gloves Carborundum Paper Various grits (60-600). Distilled or Deionized Water 1 O ppm maximum dissolved solids per ASTM DI 888. Sodium Chloride (NaC1) Reagent Grade. Acetone Reagent Grade. Caution: Low flash point. Chromium Trioxide (Cr03
9、) Reagent Grade. Caution: Corrosive. Refer to Note (1) Chromic Acid Cleaning Solution Refer to Para 2 of this FLTM under cleaning of Aluminum Test Specimens. Caution: Corrosive. Refer to Note (1). Page 2 of 8 Copynght02001, Ford Global Technologies, Inc FORD LABORATORY TEST METHOD BL 104-01 Conditio
10、ning and Test Conditions All test values indicated herein are based on material conditioned in a controlled atmosphere of 23 +/- 2 OC and 50 +/- 5 % relative humidity for not less than 24 h prior to testing and tested under the same conditions unless otherwise specified. Procedure Preparation of Coo
11、lant Mixtures Prepare 1 liter of 25 % solution, sufficient for duplicate tests. Mix 250 mL of the coolant concentrate in 750 mL of distilled or deionized water. To this 1 liter mixture add 165 mg of sodium chloride (NaCI), either as the salt or as an aliquot from a previously prepared standard sodiu
12、m chloride solution. This will give 100 ppm of chloride ions in the final mixture. Analyze for inhibitor concentration and specific gravity. Preparation of Aluminum Test Specimen The following steps are necessary in the preparation of the aluminum test specimen for maximum accuracy and reproducibili
13、ty. The test samples may be reused. 1. Flat polish test samples with carborundum paper to remove any gross surface defects of previous corrosion damage. The final surface polish is with 600 grit paper. 2. Wash test sample with warm tap water, then rinse with distilled or deionized water, and finally
14、 with acetone. Make sure thermocouple holes are free of metal chips and polishing debris. Flush holes well with acetone, and remove excess liquid. A glass capillary pipet is suitable for this purpose. 3. Dry test specimen in a vacuum oven for several hours at 65 - 90 OC. Since most castings have som
15、e porosity this procedure is necessary to ensure removal of any residual liquid. From this point, test specimen should not be handled with bare hands in order to avoid weighing errors. Thin cotton gloves, Kodak or equivalent, are suitable for handling. 4. Cool specimen to 23 +/- 2 OC, weigh on an an
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