This document provides a series of standard testing methods to determine the resistance of flat or curved surfaces against abrasion, scratch or punch under high dynamics as may occur for example by manually operating actuators or due to impacts of materials like shoes, cases, bags and other common objects of everyday’s usage inside an aircraft cabin. The method is also suitable to test the resistance of a surface against all other high dynamic strains.

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      11 pages
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This document specifies requirements and test methods for the qualification of laser beam machines
for metal powder bed additive manufacturing for aerospace applications.

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      19 pages
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    • Draft
      15 pages
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This European Standard specifies the dimensions and tolerances of cold rolled sheets and strips in heat resisting alloys used in aerospace construction.

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      9 pages
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This document specifies the dimensions and tolerances of cold rolled sheets and strips in heat resisting alloys used in aerospace construction.

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      9 pages
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This European Standard specifies the marking rules for aerospace products, semi-finished products, and
ready to use parts, which need surface marking by discoloration using a laser source to identify the part
and/or enhance its traceability.
This type of marking can be used on a wide range of materials (both metallic and non-metallic) and
coatings (paints, varnishes…). It is in line with the part definition.

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    • Standard
      16 pages
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This European Standard specifies the marking rules for aerospace products, semi-finished products, and ready to use parts, which need surface marking by discoloration using a laser source to identify the part and/or enhance its traceability.
This type of marking can be used on a wide range of materials (both metallic and non-metallic) and coatings (paints, varnishes…). It is in line with the part definition.

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      16 pages
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This European Standard specifies the dimensions and tolerances of heat resisting alloys wire used in aerospace construction.

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      6 pages
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This European Standard specifies the dimensions and tolerances of heat resisting alloys wire used in aerospace construction.

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This test method defines the procedure for the determination of the curing-characteristic and glass transition temperature of non-metallic materials (e.g. preimpregnated and neat resin systems, adhesives) for aerospace use by Differential Scanning Calorimetry (DSC).
The results obtained by this method may be useful for:
   derivation of the optimum cure cycle (only together with other test methods e.g. Tg determination)
   assessment of the condition of the resin
   assessment of the ageing beh...
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This test method defines the procedure for the determination of the curing-characteristic and glass transition temperature of non-metallic materials (e.g. preimpregnated and neat resin systems, adhesives) for aerospace use by Differential Scanning Calorimetry (DSC).
The results obtained by this method may be useful for:
-   derivation of the optimum cure cycle (only together with other test methods e.g. Tg determination)
-   assessment of the condition of the resin
-   assessment of the ageing beh...
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This test method defines the procedure for the estimation of the extent of cure of certain non-metallic materials (e.g. preimpregnated and neat resin systems, adhesives) for aerospace use. The extent of cure is estimated by Differential Scanning Calorimetry (DSC) measurements of uncured (reference) and cured materials. Additional evidence on the extent of cure may be gained by combining results from this method with those obtained by other techniques.
This standard does not give any directions ...
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This test method defines the procedure for the estimation of the extent of cure of certain non-metallic materials (e.g. preimpregnated and neat resin systems, adhesives) for aerospace use. The extent of cure is estimated by Differential Scanning Calorimetry (DSC) measurements of uncured (reference) and cured materials. Additional evidence on the extent of cure may be gained by combining results from this method with those obtained by other techniques.
This standard does not give any directions ...
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This European Standard defines the determination of density according to displacement method for metallic materials.

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This European Standard specifies the requirements relating to:
Heat resisting alloy NiCr19Fe19Nb5Mo3 (2.4668)
Solution treated and precipitation treated
Bar and section
De ≤ 200 mm
for aerospace applications.

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      9 pages
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This European Standard specifies the requirements relating to:
Heat resisting alloy NI-PH2601 (NiCr19Fe19Nb5Mo3)
Solution treated and precipitation treated
Bar and section
De  200 mm
for aerospace applications.

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This European Standard specifies the characteristics of screws, 100° countersunk normal head, offset cruciform recess, coarse tolerance normal shank, medium length thread, in alloy steel, cadmium plated.
Classification: 1 100 MPa  / 235 °C.

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This European Standard specifies the requirements relating to:
Heat resisting alloy NiCr19Fe19Nb5Mo3 (2.4668)
Non heat treated
Forging stock
a or D ≤ 300 mm
for aerospace applications.

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    • Standard
      7 pages
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This European Standard specifies the requirements relating to:
Heat resisting alloy NiCr19Fe19Nb5Mo3 (2.4668)
Non heat treated
Forging stock
a or D <= 300 mm
for aerospace applications.

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This Standard specifies requirements for mechanical testing of metallic materials to be used in the fabrication of spacecraft hardware.
This Standard establishes the requirements for most relevant test methods carried out to assess the tensile, fatigue and fracture
properties of metallic materials. It does not give a complete review of all the existing test methods for the evaluation of mechanical
properties of metallic materials.
Furthermore, this Standard specifies requirements for the evalu...
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    • Draft
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This Standard describes a thermal vacuum test to determine the outgassing screening properties of materials proposed for use in the fabrication of spacecraft and associated equipment, for vacuum facilities used for flight hardware tests and for certain launcher hardware.
This Standard covers the following:
• critical design parameters of the test system;
• critical test parameters such as temperature, time, pressure;
• material sample preparation;
• conditioning parameters for samples and collec...
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