BS M 58-1986 Specification for anodic coating of titanium and titanium alloys by the sulphuric acid process《采用硫酸处理工艺的钛和钛合金阳极涂层规范》.pdf
《BS M 58-1986 Specification for anodic coating of titanium and titanium alloys by the sulphuric acid process《采用硫酸处理工艺的钛和钛合金阳极涂层规范》.pdf》由会员分享,可在线阅读,更多相关《BS M 58-1986 Specification for anodic coating of titanium and titanium alloys by the sulphuric acid process《采用硫酸处理工艺的钛和钛合金阳极涂层规范》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、BSI M*58 86 I 1b24bb9 O099488 3 W ,e I B rit ish Standards I nst i t u t io n British Standard IS0 8080-1985 M 58: 1986 UDC 629.7 : 621.357.9 : 669.2951 0 British Standards Institution. No part of this publication may be photocopied or otherwise reproduced without the prior permission in writing of
2、BSI British Standard Aerospace Series: Specification for Anodic coating of titanium and titanium alloys by the sulphuric acid process IS0 title: Aerospace-Anodic treatment of titanium and titanium alloys-Sulfuric acid process Srie arospatiale. Traitement anodique du titane et des alliages de titane.
3、 Traitement lacide sulfurique- Spcifications Luft- und Raumfahrt-Reihe. Anodischer Uberzug fr Titan und Titanlegierungen; Schwefelsureverfahren a- National foreword This British Standard, prepared under the direction of the Aerospace Standards Committee is identical with IS0 8080-1 985 Aerospace- An
4、odic treatment of titanium and titanium alloys - Sulfuric acid process, published by the international Organization for Standardization (ISO). The United Kingdom has taken part in the preparation of the international standard through Sub-committee 1 1 of ISO/TC 20. Terminology and conventions. The t
5、ext of the international standard has been approved as suitable for publication as a British Standard without deviation. Some terminology and certain conventions are not identical with those used in British Standards; attention is drawn especially to the following. The comma has been used as a decim
6、al marker. In British Standards it is current practice to use a full point on the baseline as the decimal marker. In British Standards it is current practice to use the spelling sulphuric instead of sulfuric. Wherever the words International Standard appear, referring to this standard, they should b
7、e read as British Standard . Compliance with a British Standard does not of itself confer immunity from legal obligations. British Standard M 58: 1986 ES1 M*58 8b W Lb24669 0097489 5 1 Scope and field of application This International Standard specifies the requirements for pro- ducing and testing a
8、n unsealed anodic coating on titanium and titanium alloys. The anodic coating is produced by the sulfuric. acid proceso. The coating is used with solid film lubricants for protection of titanium fasteners against galling, for limited protection of less noble metals against galvanic corrosion when in
9、 contact with titanium or for other approved uses. 2 Technical requirements 2.1 Process details 2.1,l The anodizing solution shall consist of technical grade sulfuric acia in water with a nominal composition in the range from 200 to 400 g/l of H2S04. The solution shall be maintained at a composition
10、 within f10 % of the nominal composition chosen, The chloride content, measured as NaCI, shall not exceed 0,2 g/l. Provided agreement is obtained from the pur- chaser, the chemical composition of the solution may be changed if the coating obtained meets all other requirements of this International S
11、tandard. 2.1.2 The dissolved metal content of the solution, calculated as titanium, shall not exceed 20 g:I. 2.1.3 The solution shall be used at a temperature of 21 L 2 OC. The temperature control equipment shall be capable of maintaining the solution temperature within f 2 OC of the control set poi
12、nt. 2.1.4 The solution shall De contained either in a cor:asion resistant steel tank or a steel tank lined with a suitable acid resistant material. Except in cases where tanks are lead-lined, lined tanks require auxiliary cathode plates made from a material which will not contaminate the solution. 2
13、.1.5 A variable direct current (d.c.1 power source and associated controls and instrumentation for reading applied voltage and current are required. 2.1.6 All fixtures, such as wire, hooks, clamps and racks used to suspend the parts, shall be made from titanium or titanium alloy. 2.1.7 The picklirig
14、 solution shall contain a mixture of nitri and hydrofluoric acids at the following concentrations: 280 to 560 g/l of HNO, 69 % (m/m)l 15 to 25 g/l of HF 70 ?/o (rnlmil 2.2 Preparation for anodizing 2.2.1 Parts shall be thoroughly alkaline cleaned to ensure that all surfaces are free from contaminant
15、s such as grease, oil and mill niarkings. 2.2.2 Chlorinated solvents and methyl alcohol shall not be used for dsgreasing. 2.2.3 Parts shall be firmly attached to the racking devico. Contact areas shall be kept as small as possible and, when practicable, shall be on a surface not required to be coate
16、d. When parts are to be coated on all surfaces, contacts shall be located on areas indicated on the drawing. 2.2.4 Parts shall be oriented so as to minimize gas entrapment during processing. e 2.2.5 After alkaline cleaning, parts shall be etched for 5 to 20 s after the commencement of gassing in the
17、 nitric- hydrofluoric acid pickling solution and then rinsed thoroughly in cold running water. Heavily scaled parts which do not pro- vide a clean, bright surface after the treatment outlined above may require fine alumina grit-blasting or pretreatment in ar, oxidizing alkaline solution prior to etc
18、hing. 2.3 Anodizing procedure 2.3.1 The parts shall then be immersed in the anodizing soh- tion. The parts shall be made the anode and the tank, or aux- iliary plates, the cathode. Current shall be applied, with the voltage being raised to a value within the range from 15 to 20 V for a period of 15
19、min or until the desired coloration has been achieved. The initial current density shall be approximately 0,2 A/dm2, with reductior: to an approximate vallie of 0,05 A!dm2 over the greater part of the anodizing cvcle. 2.3.2 During processing of intricate parts, the solution should be agitated in ord
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