DIN 8960-1998 Refrigerants - Requirements and symbols《制冷剂 要求和符号》.pdf
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1、DEUTSCHE NORM November 1998 Requirements and coding system for refrigerants DIN 8960 - ICs 71.1 00.45 Descriptors: Refrigerants, requirements, coding system Supersedes DIN 8960, July 1977 edition, and DIN 8962, October 1987 edition. Kltemittel - Anforderungen und Kurzzeichen In keeping with current
2、practice in standards published by the International Organization for Standardization (ISO), a comma has been used throughout as the decimal marker. Foreword This standard has been prepared by Technical Committee Kltemittel of the Normenausschu Kltetechnik (Refrigeration Standards Committee). Amendm
3、ents This standard differs from the July 1977 edition and from DIN 8962, October 1987 edition, as follows: a) DIN 8960 and DIN 8962 have been combined into one standard and the number of refrigerants cov- ered has been expanded. b) The nomenclature has been updated to conform to European and Interna
4、tional Standards. c) Codes have been assigned to all the refrigerants. Previo us edit ions DIN 8960: 1961 -04, 1972-08, 1977-07; DIN 8962: 1968-08, 1987-1 O. 1 Scope In addition to specifying requirements relating to refrigerants for use in refrigeration compressors, this standard sets out a system
5、of codes for standard refrigerants which can be used in place of their chemical names, formulae or trade names. Although the use of a code is an unambiguous way of designating refrig- erants, it does not preclude the use of chemical names or formulae. 2 Normative references This standard incorporate
6、s, by dated or undated reference, provisions from other publications. These normative references are cited at the appropriate places in the text, and the titles of the publications are listed below. For dated references, subsequent amendments to or revisions of any of these publications apply to thi
7、s standard only when incorporated in it by amendment or revision. For undated references, the latest edition of the publication referred to applies. Continued on pages 2 to 11. Translation by DI N-Sprachendienst. In case of doubt, the German-language original should be consulted as the authoritative
8、 text No pari of this translation may be reproduced without the prior permission of Ref. No. DIN 8960 : 1998-1 . . V Deutsches Institut fur Normung e VI Berlin Luth Verlag GmbH, D-10772 Berlin, hac the exclusive right of sale for German Standards (DIN-Normen) English price group 08 Sales No 0108 o2
9、O0 COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.- EnglishLicensed by Information Handling ServicesPage 2 DIN 8960 : 1998-1 1 DIN EN 378-1 Refrigerating systems and heat pumps - Safety and environmental requirements - Part 1: Basic requirements DIN EN 5001 4 Electrical equipment for areas subject
10、 to an explosion hazard - General IS0 81 7 : 1974 Organic refrigerants - Number designation 3 Concepts 3.1 Refrigerant A fluid used for heat transfer within a refrigerating system, which absorbs heat at a low temperature and pressure and transfers it at a higher temperature and pressure, this usuall
11、y involving a phase change (cf. DIN EN 378-1). 3.2 Chemical compound A substance formed by the combination of two or more chemical elements in different proportions by mass. 3.3 Hydrocarbon A chemical compound containing only carbon and hydrogen. 3.4 Halogenated hydrocarbon A hydrocarbon where one o
12、r more hydrogen atoms have been replaced by halogen (e.g. fluorine or chlorine) atoms. 3.4.1 Fully halogenated hydrocarbon A hydrocarbon in which all the hydrogen atoms have been replaced by halogen atoms (e.g. a chlorofluorocarbon 3.4.2 Partially halogenated hydrocarbon A hydrocarbon in which only
13、some of the hydrogen atoms have been replaced by halogen atoms (e.g. a partially fluorinated hydrocarbon (HFC) or a partially fluorinated chlorofluorocarbon (HCFC). (CFC). 3.5 Isomer One of a group of compounds having the same chemical composition but different molecular structures or a different ar
14、rangement of atoms. NOTE: Only isomers in the form of positional or chain isomers are of relevance in refrigeration. Their chemical and physical properties may vary considerably and they are distinguished from one another by adding a lower case letter to their codes. l Chain isomerism is exemplified
15、 by n-butane and so-butane, which have the following formulae. HHH I II I II HHH H -C- C - C - H I -C - H I H HH H I I I I I I H H-C-H H I H H-C-C-C- H R-600 R-600a Positional isomers differ in the position of the substituents on their carbon skeleton. Examples of such isomers are 1,1,1,2-tetrafIuor
16、oethane (R-134a) and 1,1,2,2-tetrafIuoroethane (R-134). FF Il H-C-C-H II FF FF II F-C-C-H II FH R-134 R-l34a COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.- EnglishLicensed by Information Handling ServicesPage 3 DIN 8960 : 1998-1 1 Type of contaminant and distillation characteristics) Organic mat
17、ter 1,3-ButadieneG) n-H exane Benzene? Sulfur Distillation characteristic from 5 % (V/V) to 97 % (V/V) Gaseous phase contaminants: Air and other non-condensable gases (in filled containers) Liquid phase contaminant: Water Chloride ion 3.6 Refrigerant mixture A blend of two or more refrigerants. Maxi
18、mum values Recommended Unit Halogenated Hydrocarbon NH, test method 5, refrigerants refrigerants content Gas 0,5? 0,s chromatography Gas chromatography Gas chromatography Gas chromatography Total sulfur analy- mg/kg - 1 - sis based on spectral lines Evaporation - % (mim) mg/kg - 5 - - mg/kg - 50 - 1
19、 - mg/kg K 0,s 0,s 0,s Gas 1,5 1,5 503) chromatography % (VIV) Phosphorus for NH, (sorptive) - - Precipitation with silver nitrate mg/kg 254) 254) 4004) pentoxide method - No turbidity 3.6.1 Azeotrope A blend of two or more chemical compounds or refrigerants for which the composition in the liquid a
20、nd the gaseous phases are identical. The composition of such blends is a function of pressure and temperature. Azeotropes cannot be separated by distillation. An unusual feature of azeotropes is that their boiling point may be either lower or higher than the boiling points of the components, and the
21、refore the vapour pressure of the blend may be higher or lower than that of its components at the same temperature. 2 3.6.2 Nonazeotropic mixture A blend of two or more chemical compounds or refrigerants, the composition of the gaseous phase of which differs from that of the liquid phase for any mix
22、ing ratio, with the vapour containing a higher concentration of the lower-boiling, or more readily volatile, component(s). 3.7 L-grading The categorization of refrigerants in terms of flammability and toxicity (cf. DIN EN 378-1). 4 Requirements Table 1 specifies the limits to which refrigerants (or
23、in the case of blends, their components) covered by this standard have to conform, while table 3 specifies the compositions of azeotropes and the tolerances for nonazeotropic mixtures, a suitable test method to check compliance with the valves in table 3 being gas chromatography. The values specifie
24、d for hydrocarbon refrigerants are based on toxicity. Test methods are subject to agreement. Table 1 : Requirements for refrigerants (contaminant contents) (continued) COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.- EnglishLicensed by Information Handling ServicesPage 4 DIN 8960 : 1998-1 1 Unit T
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