FORD FLTM BI 163-01-2004 RHEOLOGICAL TESTING FOR DETERMINING THE REACTIVITY PROFILE OF HEM FLANGE ADHESIVES《测定折边凸缘胶粘剂的反应性曲线的流变性试验》.pdf
《FORD FLTM BI 163-01-2004 RHEOLOGICAL TESTING FOR DETERMINING THE REACTIVITY PROFILE OF HEM FLANGE ADHESIVES《测定折边凸缘胶粘剂的反应性曲线的流变性试验》.pdf》由会员分享,可在线阅读,更多相关《FORD FLTM BI 163-01-2004 RHEOLOGICAL TESTING FOR DETERMINING THE REACTIVITY PROFILE OF HEM FLANGE ADHESIVES《测定折边凸缘胶粘剂的反应性曲线的流变性试验》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、 FORD LABORATORY TEST METHODBI 163-01Date Action Revisions 2004 03 25 Activated M. Brutto Printed copies are uncontrolled Copyright 2004, Ford Global Technologies, LLC Page 1 of 8 RHEOLOGICAL TESTING FOR DETERMINING THE REACTIVITY PROFILE OF HEM FLANGE ADHESIVES Application This method is used to ev
2、aluate the shear modulus of adhesives and sealers as a function of time and extent of cure. Such properties help to optimize the processing of these materials throughout the manufacturing process. Apparatus Required Rheometer A controlled-stress or controlled-strain rheometer, equipped with 20 mm pa
3、rallel plate fixtures, induction heating coil, and liquid nitrogen cooling. The rheometer should be capable of achieving the induction heating profiles shown in Figures 5 and 6, and it should also meet the following specifications: Torque Range = 0.1 x 10-6Nm to 100 mNm Frequency Range = 0.1 mHz to
4、100 Hz Angular Velocity Range = 10-2to 100 rad/s Angular Displacement Resolution = 0.62 x 10-6rads For example, TA Instruments AR1000 Rheometer equipped with 20 mm disposable parallel plate fixtures. (Figure 1) Materials Required Adhesive Hem flange adhesives (Ford specifications WSS-M2G373-B/C and
5、WSS-M2G300-A2) will be tested according to this test method. 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. Materials will be tested
6、at 23 C. Procedure 1. Prior to testing, calibrate the instrument following the procedure provided by the manufacturer. Also calibrate the parallel plates for inertia offset and gap separation. 2. Load material into rheometer and set the gap at 0.75 mm. Trim excess material from parallel plates. Note
7、 that for two-component adhesives, the material must be loaded into the rheometer as quickly as possible. These adhesives should be mixed by the most reproducible method, either manually or by using a mixing nozzle. FORD LABORATORY TEST METHODBI 163-01Printed copies are uncontrolled Copyright 2004,
8、Ford Global Technologies, LLC Page 2 of 8 3. Test the material under the following conditions: a. Oscillatory Mode b. Single Frequency = 1 Hz 4. Three different tests should be run under the conditions of Step 3. For one-component adhesives, only Tests Two and Three (parts b and c) should be run. Fo
9、r two-component adhesives, all three tests should be run. These three tests are shown schematically in Figures 2 through 4, respectively. a. Test One: Room Temperature Testing (5 Hours) 1. Time Sweep = 5 Hours at 23 C a. Sample Interval = 10 Minutes (30 Data Points) b. Controlled Variable = % Strain
10、 = 0.5% 2. E-Coat Oven Simulation (See Step 5) b. Test Two: Induction Cure Testing (2 Hours) Low Induction Cure Profile 1. Low Induction Cure Simulation (See Step 6 and Figure 5) 2. Time Sweep = 2 Hours at 23 C a. Sample Interval = 5 Minutes (24 Data Points) b. Controlled Variable = % Strain = 0.1%
11、3. E-Coat Oven Simulation (See Step 5) c. Test Three: Induction Cure Testing (2 Hours) High Induction Cure Profile 1. High Induction Cure Simulation (See Step 6 and Figure 6) 2. Time Sweep = 2 Hours at 23 C a. Sample Interval = 5 Minutes (24 Data Points) b. Controlled Variable = % Strain = 0.1% 3. E
12、-Coat Oven Simulation (See Step 5) 5. E-Coat Oven Simulation Procedure a. Temperature Ramp Up = 23 C to 170 C 1. Rate = 20 C per Minute 2. 10 Data Points 3. Controlled Variable = % Strain = 0.5% (Test 1) = 0.1% (Tests 2 and 3) b. Time Sweep = 20 Minutes at 170 C (Hold) 1. 10 Data Points 2. Controlle
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