DIN 51391-2-1994 Testing of lubricants determination of the content of additive elements analysis by wavelengthdispersive X-ray spectrometry (XRS)《润滑剂检验 添加元素含量的测定 用波长弥散X射线光谱测定法》.pdf
《DIN 51391-2-1994 Testing of lubricants determination of the content of additive elements analysis by wavelengthdispersive X-ray spectrometry (XRS)《润滑剂检验 添加元素含量的测定 用波长弥散X射线光谱测定法》.pdf》由会员分享,可在线阅读,更多相关《DIN 51391-2-1994 Testing of lubricants determination of the content of additive elements analysis by wavelengthdispersive X-ray spectrometry (XRS)《润滑剂检验 添加元素含量的测定 用波长弥散X射线光谱测定法》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 621.892.2 : 665.765 : 620.1 : 543.426 DEUTSCHE NORM March 1994 Determination of additive elements content of I u bricants by wavelength-dispersive X-ray fluorescence spectrometry (XRS) DIN - 51 391. Part 2 Prfung von Schmierstoffen; Bestimmung des Gehaltes an Additivelementen; wellenlngendispers
2、ive Rntgenfluoreszenz-Analyse (RFA) Manganese octoate) 1 Mn-Ka Supersedes September 1978 edition. 0,2103 In keeping with current practice in standards published by the International Organization for Standardization (ISO), a comma has been used throughout as the decimal markel: 1 Scope and field of a
3、pplication This standard specifies a method, based on X-ray fluo- rescence spectrometry, by which the content of barium (Ba), zinc (Zn) or copper (Cu) present in mineral oils, synthetic oils and additives is determined. As the above elements are an oil-soluble part of the additives con- tained in lu
4、bricants, this method may also be employed to estimate the amount of these additives. lated. The metal content of the sample can be deter- mined, as a percentage by mass, from a calibration graph prepared on the basis of the solutions of the metal in question. The method is generally applicable to s
5、amples of any composition and irrespective of the type of metal com- pounds involved and of any other elements they con- tain. 2 Unit The unit in which the content is expressed is percent- age by mass. 3 Principle Ten parts by mass of the sample to be analysed and one part by mass of a reference sub
6、stance are mixed and exposed, in a test vessel, to the primary radiation of an X-ray tube. Table 1 lists the reference substances used for the determination of the individual metals and the types of radiation and the wavelengths used. The count rates of the X-ray fluorescence radiation thus excited
7、in the metal and reference substance are measured and the ratio of these count rates is calcu- 4 Apparatus In addition to standard laboratory apparatus, the follow- ing shall be used. (a) Wavelength-dispersive X-ray spectrometer (ci. DIN 51 418), capable of measuring the count rates of the types of
8、X-ray fluorescence radiation listed in table 1. To determine the barium, calcium, zinc and copper contents, the X-ray spectrometer shall have the characteristics listed in table 2. (b) Balance, with 0,l mg scale divisions. (c) Stirrer, capable of being heated. (d) 50 ml conical flasks (e.g. DIN 1238
9、0 - EE50 flasks). (e) Beakers (e.g. DIN 12331 beakers). Wavelength, in nm Type I Radiation Barium 1 Ba-LP, I 0,2567 Calcium Ca-Ka 0,3360 Zinc Zn-Ka 0,1436 i Copper Cu-Ka 0,1542 I Radiation I wa,mgth7 Cobalt octoate Co-Ka 0,1789 Cobalt octoate Co-Ka 01789 ) An oil-soluble titanium compound (Ti-Ka; 0,
10、2749 nm) may be used as an alternative reference substance. ) Copper octoate may be used as an alternative reference substance for zinc if a check has been made to ensure that the sample does not itself contain copper. The use of cobalt octoate enables zinc and copper to be determined without a prel
11、iminary test when they are both present. In the determination of zinc, the sulfur content will still be found to have a slight effect. Continued on pages 2 to 5. Beuth Verlag GmbH, Berlin, has the exclusive right of sale for German Standards (DIN-Normen). DIN 51 391 Part 2 Engl. Price group 6 03.96
12、Sales No. 0106 Page 2 DIN 51 391 Part 2 Analyser crystal Detector X-ray path Table 2: Characteristics of X-ray spectrometer Lithium fluoride Lithium fluoride Lithium fluoride (2d = 0,4028 nm) (2d = 0,4028 nm) Continuous flow proportional Continuous flow proportional Scintillation counter with counte
13、r with pulse height counter with pulse height analyser analyser Helium Helium Helium (2d = 0,4028 nm) pulse height analyser ComDonent I Barium I Calcium I Zincicopper X-ray tube Anode Voltage Current Rhodium, chromium ), scandium, molybdenum 50 kV 20 mA Rhodium, chromium, scandium, molybdenum 50 kV
14、10 mA Rhodium, chromium, scandium, molybdenum 50 kV 20 mA Collimator I Narrow I Narrow I Narrow 5 Reagents The following reagents shall be used. (a) Liquid paraffin (paraffinum perliquidum), as specified in DAB lo4). (b) Analytical grade xylene. (c) Barium, calcium, zinc and copper octoates5) or oth
15、er oil-soluble compounds of these metals with a known metal content for plotting the calibration graphs. (d) Manganese, tin, cobalt and copper octoates5) or other oil-soluble compounds of these metals for use as reference substances. Use only stable com- pounds; naphthenates have proved satisfactory
16、. If the reference substances still contain solids orig- inating from their preparation such as the corre- sponding oxides, purify them by dissolution in ligroin, filtration and evaporation of the solvent. (e) Stock solutions of barium, calcium, zinc or cop- per, to be prepared by dissolving suffici
17、ent barium, calcium, zinc or copper octoate in liquid paraffin to give 1 g of Ba, Ca or Zn, or 0,l g of Cu, in 100 g of each solution. (f) Reference solutions of manganese, tin, cobalt or copper, to be prepared by dissolving a sufficient amount of the octoate concerned in xylene to give 0,6 g of Mn,
18、 or 11,7 g of Sn, or 1 g of Co, or 1 g of Cu in 100 g of solution in each case. As an alterna- tive to xylene, liquid paraffin or a mixture of xylene or liquid paraffin may be used provided the stability has been checked. In clauses 7 and 8, these solu- tions are referred to as manganese, tin, cobal
19、t and copper solutions. . 6 Sampling See DIN 51 750 Parts 1 and 2. Dilute the appropriate stock solution with liquid paraffin, while stirring and heating to obtain barium, calcium or zinc reference solutions containing about 0,05, 0,10, 0,25, 0,510, 0,75 and 1,00 % by mass of Ba, Ca or Zn and a copp
20、er reference solution containing about 0,005, 0,01,0,02 and 0,05 % by mass of copper. Before using the reference solutions, ensure that they are at ambient temperature (18 to 28C). Z2 Test solutions 7.21 Add one part by mass of manganese solution to ten parts by mass (e.g. 20 g) of each barium refer
21、ence solution, and prepare a homogeneous solution by stir- ring and heating at not more than 80C. 7.2.2 Add one part by mass of tin solution to ten parts by mass of each calcium reference solution, and pre- pare a homogeneous solution by stirring and heating at not more than 80 “C. 7.2.3 Add one par
22、t by mass of cobalt solution (or alternatively one part by mass of copper solution) to ten parts by mass of each zinc reference solution and prepare a homogeneous solution by stirring and heat- ing at not more than 80 “C. Z2.4 Add one part by mass of cobalt solution to ten parts by mass of each copp
23、er reference solution, and prepare a homogeneous solution by stirring and heat- ing at not more than 80C. Z3 Measurement of count rates Prepare the test solutions as in subclause 7.2 and allow them to come to ambient temperature. Transfer them to test vessels and expose them successively to the pri-
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