FORD FLTM BI 117-01-2001 THICKNESS MEASUREMENT OF PAINT FILMS (Replaces FLTM BI 017-01 FLTM EU-BI 017-01)《漆膜的厚度测量 替代FLTM BI 017-01 FLTM EU-BI 017-01》.pdf
《FORD FLTM BI 117-01-2001 THICKNESS MEASUREMENT OF PAINT FILMS (Replaces FLTM BI 017-01 FLTM EU-BI 017-01)《漆膜的厚度测量 替代FLTM BI 017-01 FLTM EU-BI 017-01》.pdf》由会员分享,可在线阅读,更多相关《FORD FLTM BI 117-01-2001 THICKNESS MEASUREMENT OF PAINT FILMS (Replaces FLTM BI 017-01 FLTM EU-BI 017-01)《漆膜的厚度测量 替代FLTM BI 017-01 FLTM EU-BI 017-01》.pdf(3页珍藏版)》请在麦多课文档分享上搜索。
1、 FORD LABORATORY TEST METHOD BI 117-01 Date Action Revisions 2001 03 19 Revised Editorial no technical change A. Cockman 1989 04 24 Printed copies are uncontrolled Page 1 of 3 Copyright 2001, Ford Global Technologies, Inc. THICKNESS MEASUREMENT OF PAINT FILMS Application This procedure details recom
2、mended practices and equipment for measurement of thickness of paint films on metallic substrates. Apparatus Required Permascope or Leptoscope, or equivalent Note: If other measuring principles are applied these must be indicated in the test report and if required coordinated with Product Engineerin
3、g. Measurement Principle Two (2) types of instruments can be used depending on whether the substrate is magnetic iron or steel, or non-magnetic metals. The instrument consists of a gauge head connected to an indicating unit. A magnetic flux is produced when the probe tips are placed in contact with
4、a paint film over a ferritic substrate. The paint film acts as an air gap in the magnetic circuit. The magnetic impedance of the gauge head varies as a function of the air gap length, i.e. the thickness of the paint film, and thickness is read directly on the scale of the recording instrument. When
5、the substrate is a non-magnetic metallic, an Eddy current system is utilized. A high frequency magnetic field is created in the probes measuring system and Eddy currents are generated when the probe is placed onto the non-magnetic substrate. Magnitude of the Eddy current depends on distance between
6、metal and probe, shape and electrical conductivity of specimen. The gauge must be standardized against base materials of the same composition, geometry, heat treatment and surface treatment (such as phosphating or galvanizing) for maximum accuracy. Note: The following factors may have an influence o
7、n the results: 1. Surface roughness and waviness of the surface. FORD LABORATORY TEST METHOD BI 117-01 Page 2 of 3 Copyright 2001, Ford Global Technologies, Inc. 2. Magnetic conditions of the substrate material. 3. Thickness of the substrate material. 4. Hardness of the coating and pressure applied
8、to gauge head during test. (A constant pressure probe should be used where feasible.) 5. Curvature of the surface (measurement should be taken parallel to the curvature axis). 6. Distance from the measuring point to an edge of the material under test. Edge effects should be avoided. 7. Deviation of
9、the magnetic probe axis from a perpendicular to the area to be measured. (The probe should be normal to the measured surface.) 8. Area of test piece, minimum 30 mm x 30 mm. 9. Some standards from instrument manufacturers are only of nominal film thickness. (see Note on Page 3) Calibration Thickness
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