ASD-STAN PREN 3987-2007 Aerospace series Test methods for metallic materials Constant amplitude force-controlled high cycle fatigue testing (Edition P 1)《航空航天系列 金属材料的试验方法 等幅力控制的高周疲.pdf
《ASD-STAN PREN 3987-2007 Aerospace series Test methods for metallic materials Constant amplitude force-controlled high cycle fatigue testing (Edition P 1)《航空航天系列 金属材料的试验方法 等幅力控制的高周疲.pdf》由会员分享,可在线阅读,更多相关《ASD-STAN PREN 3987-2007 Aerospace series Test methods for metallic materials Constant amplitude force-controlled high cycle fatigue testing (Edition P 1)《航空航天系列 金属材料的试验方法 等幅力控制的高周疲.pdf(20页珍藏版)》请在麦多课文档分享上搜索。
1、ASD STANDARD NORME ASD ASD NORM prEN 3987 Edition P 1 July 2007 PUBLISHED BY THE AEROSPACE AND DEFENCE INDUSTRIES ASSOCIATION OF EUROPE - STANDARDIZATIONAvenue de Tervuren, 270 - B-1150 Brussels - Tel. + 32 2 775 8126 - Fax. + 32 2 763 3565 - www.asd-stan.orgICS: Descriptors: ENGLISH VERSION Aerospa
2、ce series Test methods for metallic materials Constant amplitude force-controlled high cycle fatigue testing Srie arospatiale Mthodes dessais applicables aux matriaux mtalliques Essais de fatigue mgacyclique en contrainte impose Luft- und Raumfahrt Prfverfahren fr metallische Werkstoffe Schwerlastwe
3、chselermdung (HCF) im kraftgesteuerten Versuch This “Aerospace Series“ Prestandard has been drawn up under the responsibility of ASD-STAN (The AeroSpace and Defence Industries Association of Europe - Standardization). It is published for the needs of the European Aerospace Industry. It has been tech
4、nically approved by the experts of the concerned Domain following member comments. Subsequent to the publication of this Prestandard, the technical content shall not be changed to an extent that interchangeability is affected, physically or functionally, without re-identification of the standard. Af
5、ter examination and review by users and formal agreement of ASD-STAN, it will be submitted as a draft European 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
6、national level by giving the EN the status of a national standard and by withdrawing any national standards conflicting with the EN. Edition approved for publication 31 July 2007 Comments should be sent within six months after the date of publication to ASD-STAN Metallic Material Domain Copyright 20
7、07 by ASD-STAN prEN 3987:20072 Contents Page Foreword2 1 Scope 3 2 Normative references 3 3 Principle3 4 Terms and definitions .3 5 Symbols and abbreviations 4 6 Test equipment 5 7 Test piece .9 8 Test method. 13 9 Post-test checks . 14 10 Test report . 15 Annex A (informative) Use of thermocouples
8、. 16 Annex B (informative) Test piece preparation. 17 Annex C (informative) Guidelines on test piece handling and degreasing 19 Annex D (informative) Guidelines on producing an S-N curve . 20 Foreword This standard was reviewed by the Domain Technical Coordinator of ASD-STANs Metallic Material Domai
9、n. After inquiries and votes carried out in accordance with the rules of ASD-STAN defined in ASD-STANs General Process Manual, this standard has received approval for Publication. prEN 3987:20073 1 Scope This standard applies to constant amplitude force-controlled high cycle fatigue (HCF) testing of
10、 metallic materials governed by EN Aerospace standards. It defines the mechanical properties that may need to be determined, the equipment, test pieces, methodology of test and presentation of results. It applies to uniaxially loaded tests carried out on plain or notched test pieces at ambient and e
11、levated temperatures. It is not intended to cover the testing of more complex test pieces, full scale components or structures, although the methodology could well be adopted to provide for such tests. The purpose of this document is to ensure the compatibility and reproducibility of test results. I
12、t does not cover the evaluation or interpretation of results. 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document
13、(including any amendments) applies. EN ISO 3785, Metallic materials Designation of test specimen axes in relation to product texture. EN 10002-2, Metallic materials Tensile testing Part 2: Verification of the force measuring system of the tensile testing machine. ASTM E 1012, Verification of test fr
14、ame and specimen alignment under tensile and compressive axial force application. 1)3 Principle The uniaxially loaded force-controlled high cycle fatigue test consists of maintaining a test piece at a uniform temperature and subjecting it to a constant force-amplitude waveform. The magnitude of the
15、applied cyclic force affects the development of microscopic plastic strain within the test section, thus determining the fatigue life. A series of such tests allows the relationship between the applied force and the number of cycles to failure to be established. The fatigue lives generated are typic
16、ally in the range 104- 108cycles to failure and the test regime is said to be that of high cycle fatigue (HCF). 4 Terms and definitions For the purposes of this document, the following terms and definitions apply. 4.1 force-control used to describe tests in which the force acting on a known test sec
17、tion is controlled 4.2 test section defined as the region of the test piece between the blending fillets into the gripping section, and may be a continuous radius or a parallel sided section 1) Published by: American Society for Testing and Materials (ASTM), 1916 Race Street- Philadelphia PA 19103 U
18、SA. prEN 3987:20074 4.3 cycle defined as the smallest section of the force-time function which is repeated periodically. This is shown for a sinusoidal waveform in Figure 1, together with appropriate nomenclature which further defines the force cycle. 4.4 failure defined as complete separation of th
19、e test piece within the test section 5 Symbols and abbreviations See Table 1. Table 1 Definitions and symbols relating to force-controlled fatigue testing Symbol Units Term Definition F kN Force The force applied to the test section. Tensive forces are considered to be positive and compressive force
20、s negative. Fmax.kN Maximum force The highest algebraic value of force applied. Fmin.kN Minimum force The lowest algebraic value of force applied. F kN Force range The algebraic difference between the maximum and minimum forces. (Fmax. Fmin.) Fa kN Force amplitude Half the algebraic difference betwe
21、en the maximum and minimum forces. (Fmax. Fmin.)/2 Fm kN Mean force Half the algebraic sum of the maximum and minimum forces. (Fmax.+ Fmin.)/2 R Force Ratio The algebraic ratio of the minimum force to the maximum force. See Figure 2 for examples of different force ratios. (F min./F max.) MPa Stress
22、The force applied divided by the nominal cross-sectional area. The nominal cross-sectional area is that calculated from measurements taken at ambient temperature, and no account is taken for the change in section as a result of elevated temperatures. The above nomenclature for force also applies to
23、stress, with F replaced by . N Number of force cycles The number of cycles applied. f Hz Frequency of cycles The number of cycles applied per second. NfEndurance or fatigue life The number of cycles to failure. KtTheoretical stress concentration factor The ratio of the notch tip stress to net sectio
24、n stress, calculated in accordance with defined elastic theory, to the nominal section stress. NOTE Different methods used in determining Ktmay lead to variations in reported values. NMPa Fatigue strength at N cycles The value of the stress amplitude at a stated stress ratio under which the test pie
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