FORD FLTM EU-AJ 051-01-2000 METHOD OF CARBON TYPE ANALYSIS OF LUBRICATING OILS BY INFRARED SPECTROSCOPY《红外光谱分析法对润滑油进行碳型分析》.pdf
《FORD FLTM EU-AJ 051-01-2000 METHOD OF CARBON TYPE ANALYSIS OF LUBRICATING OILS BY INFRARED SPECTROSCOPY《红外光谱分析法对润滑油进行碳型分析》.pdf》由会员分享,可在线阅读,更多相关《FORD FLTM EU-AJ 051-01-2000 METHOD OF CARBON TYPE ANALYSIS OF LUBRICATING OILS BY INFRARED SPECTROSCOPY《红外光谱分析法对润滑油进行碳型分析》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 FORD LABORATORY TEST METHOD EU AJ 051-01 Date Action Revisions 2000 08 07 Editorial no technical change A. Cockman 2000 03 10 Editorial no technical change A. Cockman 1993 10 18 Printed copies are uncontrolled Page 1 of 6 Copyright 2000, Ford Global Technologies, Inc. METHOD OF CARBON TYPE ANALYSIS
2、 OF LUBRICATING OILS BY INFRARED SPECTROSCOPY Scope This method is primarily applicable to additive - free lubricating oil base - stocks. A carbon - type analysis is obtained in terms of % C, % C N and % Cp, being the percentages of the total number of carbon atoms in aromatic, napthenic, and paraff
3、inic structures respectively. This method is limited to the ranges: C A 3 % - 25 % Cp 43 % - 72 % This method may also be utilized with additive containing oils providing it is recognized that the figures obtained will be modified by the type and quantity of additive present. Apparatus Required 1. D
4、ouble beam recording infrared spectrometer or equivalent capable of recording over the wavenumber range 4000 - 600 cm - 1. 2. A sa mple cell fitted with sodium chloride or potassium bromide windows. This can be a cell of either fixed or variable path length. In either case, the path - length should
5、lie in the range 0.09 to 0.12 mm and be known accurately to within 0.002 mm. 3. Syringe . 4. Lens Tissue. Materials Required 1. Two calibration oils having the following approximate values of C A and Cp Oil 1 C A = 5.9 % Cp = 67.0 % Oil 2 C A = 21.5 % Cp = 44.0 % FORD LABORATORY TEST METHOD EU AJ 05
6、1-01 Page 2 of 6 Copyright 2000, Ford Global Technologies, Inc. Actual values will be declared on the calibration oils as suppli ed. Source: Materials Laboratory 13/100 Ford - Werke A.G. NU/FIL Ford Motor Company Limited Central Laboratory Laindon, Basildon, Essex 5 K8ln - Niehl 2. Chloroform (A.R.)
7、 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 and tested under the same conditions unless otherwise specified. Procedure A. Cell
8、Calibration The cell pa th length is determined by the interference fringe method. 1. Place the empty cell in the spectrometer and select the wavenumber region to be scanned such that the maximum number of interference fringes can be counted. 2. Mark the middle of two troughs o n the spectrum and co
9、unt the number of interference fringes between these two points. Note the wavenumbers coincident with these points. The cell path length is calculated as follows: Cell Path Length (mm) = N x 10 2 (L 1 - L 2 ) Where N - Number of i nterference fringes between L 1 and L 2 . L 1 and L 2 = Wavenumbers b
10、etween which fringes are counted. Note: Cell Cleaning 1. After use the cell should be cleaned immediately. 2. Flush cell with approximately 20 mL chloroform 3. Evaporate chloroform with a st ream of warm dry air, to avoid condensation of water on cell windows. 4. If warm air is not available, the ce
11、ll may be mounted in the instrument beam so that the cell can be warmed by the infra - red radiation. FORD LABORATORY TEST METHOD EU AJ 051-01 Page 3 of 6 Copyright 2000, Ford Global Technologies, Inc. B. Calibration Fill the cell with No. 1 calib ration fluid. Ensure that no bubbles are trapped bet
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