FORD FLTM BI 170-01-2016 Coating Thickness Measurement on Polymeric Substrates Using Microtome Sample Preparation and Transmitted Light Optical Measurements.pdf
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1、FORD LABORATORY TEST METHOD BI 170-01 Date Action Revisions Rev. 0 2016 04 20 Released Matthew Corley, Irina Gruenwald, EU Controlled document at www.MATS Copyright 2016, Ford Global Technologies, LLC Page 1 of 4 Coating Thickness Measurement on Polymeric Substrates Using Microtome Sample Preparatio
2、n and Transmitted Light Optical Measurements Application This test method is used to determine the coating layer thickness on polymeric substrates. Individual layers of multilayer systems can be measured and photographed. Apparatus and Materials Required Microtome, capable of producing slices with t
3、hickness of 10 or less Transmitted Light Optical Microscope, with magnification minimum 400x and image capture software Glass slides and cover glass, standard microscope sample preparation Immersion oil Tweezers Scissors or Scalpel Test Panel Properties The location of the layer thickness measuremen
4、t on the part should be selected so that the location is representative of the part or section of the part. If required, additional locations should be identified and measured which show minimum and maximum layer thicknesses. Conditioning and Test Conditions For best results, samples should be teste
5、d at least 72 hours after production or painting. Samples are to be stored a minimum of 24 hours in 23 C and 50% relative humidity before testing. Materials which absorb water, such as polyamide 6, may require slightly different conditioning. Figure 1: Tools for preparing microtome samples FORD LABO
6、RATORY TEST METHOD BI 170-01 Copyright 2016, Ford Global Technologies, LLC Page 2 of 4 Test Procedure 1.) Preparation of Cross Sections The coated sample should be mounted onto the microtome sample holder such that the resulting cross-section slice is as close as possible to 90 to the coating surfac
7、e (See Figures 2 and 3) Slices are cut with the microtome blade. It is generally necessary to cut numerous slices until obtaining an optimal slice. Thinner slices are easier to evaluate with the microscope, but more difficult to cut. Approximately 10 thickness is recommended as starting point, but d
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