FORD ESF-M3L72-A-2003 EPOXY POWDER ELECTRICAL INSULATION ELECTROSTATIC FLUIDIZED BED APPLICATION TO BE USED WITH FORD WSS-M99P1111-A 《静电流化床用途用电绝缘环氧树脂粉末 与标准FORD WSS-M99P1111-A一起使.pdf
《FORD ESF-M3L72-A-2003 EPOXY POWDER ELECTRICAL INSULATION ELECTROSTATIC FLUIDIZED BED APPLICATION TO BE USED WITH FORD WSS-M99P1111-A 《静电流化床用途用电绝缘环氧树脂粉末 与标准FORD WSS-M99P1111-A一起使.pdf》由会员分享,可在线阅读,更多相关《FORD ESF-M3L72-A-2003 EPOXY POWDER ELECTRICAL INSULATION ELECTROSTATIC FLUIDIZED BED APPLICATION TO BE USED WITH FORD WSS-M99P1111-A 《静电流化床用途用电绝缘环氧树脂粉末 与标准FORD WSS-M99P1111-A一起使.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Revisions 2003 06 13 Revised Para 3.0 inserted; Para 3.5, 3.6, 3.7, 3.8, 3.10, 4 deleted 1992 10 07 NGA1E10248991000 Reactivated and Updated LPR/AVN 1973 06 07 CF6CMF716337 Released (was XF-M3DX31) Printed copies are
2、uncontrolled Page 1 of 5 Copyright 2003, Ford Global Technologies, Inc. EPOXY POWDER, ELECTRICAL INSULATION ESF-M3L72-A ELECTROSTATIC FLUIDIZED BED APPLICATION 1. SCOPE The material defined by this specification is a finely ground epichlorohydrin bisphenol epoxy resin in dry powder form. It is appli
3、ed to the surface of a part at room temperature from a fluidized bed by means of electrostatic action. 2. APPLICATION This specification was released originally for material used as a coating on metal for electrical insulation and corrosion protection, such as on the alternator stator and windshield
4、 wiper motor armature for slot and end insulation. 3. REQUIREMENTS 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.1 TEST BAR To be run on each lot of material 3.1
5、.1 Preparation of Test Bars Six square steel bars (12.7 x 12.7 x 150 mm) having all significant surfaces ground to 0.75 1.25 micrometer) rms shall be thoroughly degreased in at least two successive baths of trichloroethane. They shall then be electrostatically coated at room temperature with 0.30 0.
6、46 mm of resin on the flat surface. The bars shall then be cured for 10 minutes at 210 C in an air circulating oven. This time and temperature may be deviated provided the actual time and temperature data accompany the bars at the time of submission. Test bars which do not meet the above requirement
7、s for thickness and coverage may not be reworked for submission to this specification. 3.1.2 Hardness Knoop 20 - 25 (ASTM D 1474, 100 g load) ENGINEERING MATERIAL SPECIFICATION ESF-M3L72-A Page 2 of 5 Copyright 2003, Ford Global Technologies, Inc. 3.1.3 Particle Size On 60 mesh None Through 60 on 80
8、 mesh, max 1.2% Through 80 on 325 mesh Balance Through 325 mesh, max 37.0% 3.1.4 Differential Scanning Calorimetry The DSC thermogram for this material shall match the standard thermogram curve on file at the appropriate materials office of the affected product engineering office. The thermogram sha
9、ll be generated at 20 C/minute in air at 101 kPa and shall show the Tg and the heat of reaction. 3.2 To be run for initial approval and as specified by Quality Control. Since the above test are required on each lot, these results will also be included as part of this testing and results reported. 3.
10、2.1 Cut Through Temperature, min 300 C (Average of 2 tests) All bars must pass Test Method: See figure 1. Mount the bar by means of clamps on a ring stand. Place a loop of 26 gage bare copper wire over the resin coated area 13 mm from the coated end. Attach a 227 g weight including any clamps or lea
11、ds to the wire and place the test assembly in a forced air circulating type oven. Attach one lead from an 8 Va-c power supply alarm circuit to the cutting wire and one to the bare end of the steel test bar. Include this lead weight as part of the 227 g load. Attach a thermocouple to the steel bar by
12、 placing in the 3.2 mm drilled hole in the bar. Secure with tape. Start the oven and increase the temperature at a rate not to exceed 208 C/h to allow uniform heating of the test bar. When cutting wire penetrates the resin and contacts the steel bar surface the circuit will be closed and the buzzer
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