ASD-STAN PREN 3475-706-2004 Aerospace series Cables electrical aircraft use Test methods Part 706 Laser markability (Edition P 1)《航空航天系列 航空器用电缆的试验方法 第706部分 可激光标志性 第P1版》.pdf
《ASD-STAN PREN 3475-706-2004 Aerospace series Cables electrical aircraft use Test methods Part 706 Laser markability (Edition P 1)《航空航天系列 航空器用电缆的试验方法 第706部分 可激光标志性 第P1版》.pdf》由会员分享,可在线阅读,更多相关《ASD-STAN PREN 3475-706-2004 Aerospace series Cables electrical aircraft use Test methods Part 706 Laser markability (Edition P 1)《航空航天系列 航空器用电缆的试验方法 第706部分 可激光标志性 第P1版》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、AECMA STANDARD NORME AECMA AECMA NORM Edition approved for publication 30 April 2004 prEN 3475-706 Edition P 1 April 2004 Comments should be sent within six months after the date of publication to AECMA-STAN ICs: Descriptors: ENGLISH VERSION Aerospace series Cables, electrical, aircraft use Test met
2、hods Part 706: Laser markability Srie arospatiale Luft- und Raumfahrt Mthodes dessais Prfverfahren Cbles lectriques usage aronautique Partie 706 : Marquabilit laser UV Elektrische Leitungen fr Luftfahrt-Verwendung Teil 706: UV-Laser-Markierung This “Aerospace Series“ frestandard has been drawn up un
3、der the responsibility of AECMA-STAN (The European Association of Aerospace Industries - Standardization). It is published for the needs of the European Aerospace Industry. It has been technically approved by the experts of the concerned Domain following member comments. Subsequent to the publicatio
4、n of this frestandard, the technical content shall not be changed to an extent that interchangeabilify is affected, physically or functionally, without re-identification of the standard. After examination and review by users and formal agreement of AECMA-STAN, it will be submitted as a draft Europea
5、n Standard (prEN) to CEN (European Committee for Standardization) for formal vote and transformation to full European Standard (EN). The CEN national members have then to implement the EN at national level by giving the EN the status of a national standard and by withdrawing any national standards c
6、onflicting with the EN. Electrical Domain I I Copytight 2004 O by AECMA-STA1 Page 2 prEN 3475-706:2004 Contents Page O In trod uction 3 1 Scope 3 2 Normative references 3 3 Definitions 3 4 Requirements . 5 4.1 General 5 4.2 Sample marking . 6 4.3 Sample measurement 6 4.4 Requirements . 7 Page 3 prEN
7、 3475-706:2004 O Introduction UV laser wire marking is the aerospace industry standard method for marking identification codes on to the surface of electrical wires or cables. UV laser wire marking was developed in 1987 to provide a safe, permanent means of marking thin wall insulations in particula
8、r, as an alternative to hot stamp wire marking, which is considered to be an aggressive process. 1 Scope This standard specifies the test method to establish the ultra violet (UV) laser marking performance of aerospace wire and cable for use in conjunction with UV laser wire marking systems in accor
9、dance with TR4543 “UV laser wire marking systems for aircraft wire and cable identification” and EN 3475-100 “Aerospace series - Cables, electrical, aircraft use - Test methods - Part 100: General”. 2 Normative references This European Standard incorporates by dated or undated reference, provisions
10、from other publications. These normative references are cited at the appropriate places in the text and the publications are listed hereafter. For dated references, subsequent amendments to or revisions of any of these publications apply to this European Standard only when incorporated in it by amen
11、dment or revision. For undated references the latest edition of the publication referred to applies (including amendments). EN 3838, Aerospace series - Requirements and tests on user-applied markings on aircraft electrical cables. I) EN 3475-100, Aerospace series - Cables, electrical, aircraft use -
12、 Test methods - Part 700: General. EN 3475-705, Aerospace series - Cables, electrical, aircraft use - Test methods - Part 705: Contrast measurement. TR 4543, UV laser wire marking systems for aircraft wire and cable identification.2) 3 Definitions For the purpose of this standard the following terms
13、 and definitions apply. 3.1 Laser Laser is an acronym for Light Amplification by the Stimulated Emission of Radiation. Lasers are a source of intense monochromatic light in the ultraviolet, visible or infrared region of the spectrum. The “active” or lasing medium may be a solid, liquid or gas. The l
14、aser beam is generated by energising the active medium using an external power source, which is most commonly electrical or optical. 3.2 Ultraviolet (Abbreviation UV) Electromagnetic radiation in a wavelength range from approximately 200 nm to 400 nm. 1) Published as AECMA Prestandard at the date of
15、 publication of this standard 2) Published as AECMA Technical report at the date of publication of this standard Page 4 prEN 3475-706:2004 3.3 UVLaser A laser that produces a beam of UV radiation. 3.4 Fluence The energy density, measured in J cm-* (Joules per square cm) of a single pulse of the lase
16、r beam, which, for the purposes of this document, is at the surface of the wire insulation or cable jacket. 3.5 Pulse Length The time interval between the laser energy crossing half the maximum energy on the rising and the falling edges of the pulse; referred to as FWHM - full width half maximum. Pu
17、lse lengths are measured in nanoseconds, ns. 1 ns = lO-s. 3.6 Wavelength (A) Wavelength is measured in nanometres, nm. 1 nm = IO- m. A = c/f where c is the velocity of light and f is the frequency. 3.7 Damage For the purpose of this document, damage is defined as an unacceptable reduction in the mec
18、hanical or electrical properties of a wires insulation, .e. specifically a measurable reduction in the performance of the wire which is outside of its defined and acceptable specification. Wire surface defects that are visible only through x 10 magnification or greater, such as bubbles or flakes, sh
19、ould not be considered as damage unless they would affect marking performance (contrast, legibility, or other behaviour according to EN 3838) or other properties of the wire insulation. 3.8 Nd (Neodymium) Neodymium is an elemental metal that forms the active laser material in the most common type of
20、 solid state laser. The neodymium is held in an optically transparent solid “host” material, and is energised by optical input, either from a flash lamp or from the optical output from a diode laser. The host material does not play a direct role, but can slightly influence the laser wavelength. Typi
21、cal host materials are specialised crystal materials, such as Yttrium Aluminium Garnet (YAG) and Yttrium Lithium Fluoride (YLF). These lasers are commonly referred to as Nd:YAG or Nd:YLF respectively. The primary wavelength of Nd solid state lasers is in the infrared (IR) at a wavelength of approxim
22、ately 1064 nm. The IR output of such lasers can be conveniently reduced to lower wavelengths suitable for wire marking by use of harmonic generation (see 3.1 O). 3.9 Excimer A gas laser deriving its name from the term “excited dimer”. The laser is energised by means of a gas discharge. Excimer laser
23、s are available operating at a number of discrete wavelengths throughout the UV, the most common of which are 193 nm, 248 nm, 308 nm and 351 nm. The wavelength is dependant only on the gas mix used; 308 nm is commonly used for UV laser wire marking. 3.10 Harmonic generation The use of non-linear opt
24、ical processes to change the wavelength of a laser by frequency conversion. This enables the output of an infrared laser to be converted to shorter wavelengths. In the case of Nd lasers this results in a frequency doubled output at 532 nm in the green and a frequency tripled output at 355 nm in the
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