DIN ISO 18901-2012 Imaging materials - Processed silver-gelatin-type black-and-white films - Specifications for stability (ISO 18901 2010)《成像材料 加工银胶质类黑白底片 稳定性规范 (ISO 18901-2010)》.pdf
《DIN ISO 18901-2012 Imaging materials - Processed silver-gelatin-type black-and-white films - Specifications for stability (ISO 18901 2010)《成像材料 加工银胶质类黑白底片 稳定性规范 (ISO 18901-2010)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 18901-2012 Imaging materials - Processed silver-gelatin-type black-and-white films - Specifications for stability (ISO 18901 2010)《成像材料 加工银胶质类黑白底片 稳定性规范 (ISO 18901-2010)》.pdf(25页珍藏版)》请在麦多课文档分享上搜索。
1、July 2012 Translation by DIN-Sprachendienst.English price group 13No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 3
2、7.040.20!$(=“1900526www.din.deDDIN ISO 18901Imaging materials Processed silver-gelatin-type black-and-white films Specifications for stability (ISO 18901:2010)English translation of DIN ISO 18901:2012-07Bild-Aufzeichnungsmaterialien Verarbeitete Schwarzwei-Filme vom Silber-Gelatine-Typ Festlegungen
3、fr die Haltbarkeit (ISO 18901:2010)Englische bersetzung von DIN ISO 18901:2012-07Matriaux pour limage Films noir et blanc de type glatino-argentique traits Spcifications relatives la stabilit (ISO 18901:2010)Traduction anglaise de DIN ISO 18901:2012-07SupersedesDIN ISO 18901:2007-06www.beuth.deDocum
4、ent comprises 25 pagesIn case of doubt, the German-language original shall be considered authoritative.06.12 DIN ISO 18901:2012-07 2 A comma is used as the decimal marker. Contents Page National foreword .3 National Annex NA (informative) Bibliography 3 Introduction .4 1 Scope 5 2 Normative referenc
5、es 5 3 Terms and definitions .6 4 Film base requirements 7 5 Processed film requirements .7 5.1 Storage conditions 7 5.2 Safety film .7 5.3 Amount of free acid .7 5.4 Tensile properties and loss in tensile properties .7 6 Requirements for the emulsion and backing layers of processed film .8 6.1 Laye
6、r adhesion .8 6.2 Emulsion flow 8 6.3 Blocking 8 6.4 Thiosulfate concentration .8 6.5 Residual silver compounds 9 7 Image-stability requirements 9 7.1 General 9 7.2 Radiographic films 9 7.3 Microfilms 10 7.4 Other films . 10 8 Test methods. 10 8.1 Identification of film base 10 8.2 Accelerated-agein
7、g conditions . 10 8.3 Determination of the amount of free acid 11 8.4 Tensile property test for processed film 12 8.5 Tape-stripping adhesion test 12 8.6 Humidity-cycling adhesion test . 13 8.7 Emulsion-flow test 14 8.8 Blocking test . 14 8.9 Residual silver compound test 15 8.10 Image-stability tes
8、t . 15 Annex A (informative) Washing and the effect of residual thiosulfate on the developed silver image . 17 Annex B (informative) Effect of residual silver compounds on the developed silver image . 18 Annex C (informative) Accelerated image-stability test for radiographic films . 19 Annex D (info
9、rmative) Accelerated image-stability test for microfilms 21 Annex E (informative) Accelerated image-stability test for aerial films . 23 Bibliography . 25 DIN ISO 18901:2012-07 3 National foreword This standard has been prepared by Technical Committee ISO/TC 42 “Photography”, Working Group WG 5 “Phy
10、sical properties and image permanence of photographic materials” (Secretariat: ANSI, USA). The responsible German body involved in its preparation was the Normenausschuss Veranstaltungstechnik, Bild und Film (Entertainment Technology, Photography and Cinematography Standards Committee), Working Comm
11、ittee NA 149-00-01 AA Fotografische Medien. ISO 18901:2010 is one of a series of International Standards dealing with the physical properties and stability of imaging materials. To facilitate identification of these International Standards, they are assigned a number within the block from 18900 to 1
12、8999. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. DIN and/or DKE shall not be held responsible for identifying any or all such patent rights. The DIN Standards corresponding to the International Standards referred to in this d
13、ocument are as follows: ISO 5-2 DIN 4512-8 ISO 5-3 DIN 4512-9 ISO 527-3 DIN EN ISO 527-3 ISO 18902 DIN ISO 18902 ISO 18906 DIN ISO 18906 Amendments This standard differs from DIN ISO 18901:2007-06 as follows: a) Annex A “Numbering system for related International Standards” has been deleted; b) the
14、standard has been editorially revised. Previous editions DIN ISO 18901: 2007-01 DIN ISO 10602: 2000-10 DIN 19070-2: 1978-08 DIN 19070-1: 1978-08, 1985-09 National Annex NA (informative) Bibliography DIN 4512-8, Photographic sensitometry Determination of optical density Geometric conditions for trans
15、mission density DIN 4512-9, Photographic sensitometry Determination of optical density Spectral conditions DIN EN ISO 527-3, Plastics Determination of tensile properties Part 3: Test conditions for films and sheets DIN ISO 18902, Imaging materials Processed imaging materials Albums, framing and stor
16、age materials DIN ISO 18906, Imaging materials Photographic films Specifications for safety film Introduction Since 1930, great advances have been made in the use of photographic films for the preservation of records. The preservation of film records by governments, banks, insurance companies, indus
17、try and other enterprises has been stimulated by a recognition of the economies in storage space, organization, accessibility and ease of reproduction that result from the use of film records. During the early development period of the art of copying documents, 35 mm nitrate motion picture film was
18、sometimes used. This material is highly flammable and is not a safety film as specified in ISO 18906. Nitrate film is not acceptable for any record film. The manufacture of nitrate film declined after World War II and was discontinued in most countries in the 1950s. From about 1908 to 1956, the only
19、 safety-type film bases in commercial use were cellulose acetate, cellulose acetate propionate and cellulose acetate butyrate. The useful life of these cellulose-ester-type bases is somewhat conjectural because of limited practical experience. However, the results of laboratory incubation tests indi
20、cate a useful life of at least 50 to 100 years when cellulose-ester-base films are stored under recommended conditions (see References 1, 2, 3 and 4). A second type of polymer safety film base was introduced commercially in 1956. This is a polyester-class material whose chemical name is polyethylene
21、 terephthalate. NOTE Another type of polyester base, known as polyethylene naphthalate, has been used for APS (Advanced Photo System) type films since 1996. Polyester base has several advantages over cellulose-ester base, including greater strength, stiffness, tear resistance and dimensional stabili
22、ty, which are important in many photographic applications (see References 5 and 6). Accelerated ageing tests supplemented by 35 years of practical experience indicate a potential useful life of 500 years. This International Standard provides image-stability predictions for three classes of black-and
23、-white films in terms of LE (life expectancy) ratings. These three classes are radiographic films, microfilms and all other films. Two or three LE ratings are given for each of these film classes depending on their residual thiosulfate concentrations. Studies on the stability of silver-gelatin-type
24、films have investigated the effect of residual hypo on the image permanence of radiographic films, microfilms and aerial films (see References 7, 8 and 9). This work suggested modifications to the residual hypo limits and a more quantitative image-stability test was included in the first edition of
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