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Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study

Yıl 2017, Cilt: 1 Sayı: 4, 141 - 150, 15.12.2017
https://doi.org/10.26701/ems.354822

Öz

In this study,
Random and Harmonic vibration test specifications for Automotive Lighting
systems are compared according to their damage content. Harmonic and Random
vibration specifications which have different durations and Acceleration Power
Spectrum Densities (PSD G) are plotted and compared according to damage
accumulated on one degree of freedom (SDOF) system. Outcome of this study is
the evaluation of fatigue strength of common or similar parts used on lighting
systems which are dedicated to different customers, different car segments; and
evaluation of the severity of new customer vibration durability test specifications
and evaluation of special design precautions for new design projects. Shorter
duration PSD G’s and Harmonic tests which have equivalent Fatigue Damage
Spectrums (FDS) can be created and instant design modifications can be tested
and evaluated. In addition, in this study, random test time reduction formula
was validated with physical tests.

Kaynakça

  • Lalanne, C., 2002. “Mechanical Vibration & Shock, Specification Development Volume V” p. 135–137.;p.140
  • Plaskitt, Halfpenny “The Fatigue Damage Spectrum: Explained”, 28th ICAF Symposium- Helsinki, 3-5 June
  • Wei-Lun Chang, Ken-Yuan Lin, Chin-Duo Hsueh and Jung-Ming Chang;Vibration Test Specification Design and Reliability Analysis; SAE International; 2011-01-0491; Published 04/12/2011.
Yıl 2017, Cilt: 1 Sayı: 4, 141 - 150, 15.12.2017
https://doi.org/10.26701/ems.354822

Öz

Kaynakça

  • Lalanne, C., 2002. “Mechanical Vibration & Shock, Specification Development Volume V” p. 135–137.;p.140
  • Plaskitt, Halfpenny “The Fatigue Damage Spectrum: Explained”, 28th ICAF Symposium- Helsinki, 3-5 June
  • Wei-Lun Chang, Ken-Yuan Lin, Chin-Duo Hsueh and Jung-Ming Chang;Vibration Test Specification Design and Reliability Analysis; SAE International; 2011-01-0491; Published 04/12/2011.
Toplam 3 adet kaynakça vardır.

Ayrıntılar

Konular Makine Mühendisliği
Bölüm Research Article
Yazarlar

Barış Ediz

Taner Çal Bu kişi benim

Erhan Ay Bu kişi benim

Sevda Telli Çetin

Yayımlanma Tarihi 15 Aralık 2017
Kabul Tarihi 24 Kasım 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 1 Sayı: 4

Kaynak Göster

APA Ediz, B., Çal, T., Ay, E., Telli Çetin, S. (2017). Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study. European Mechanical Science, 1(4), 141-150. https://doi.org/10.26701/ems.354822
AMA Ediz B, Çal T, Ay E, Telli Çetin S. Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study. EMS. Aralık 2017;1(4):141-150. doi:10.26701/ems.354822
Chicago Ediz, Barış, Taner Çal, Erhan Ay, ve Sevda Telli Çetin. “Comparison of Vibration Durability Tests With Respect to Fatigue Damage & Validation Study”. European Mechanical Science 1, sy. 4 (Aralık 2017): 141-50. https://doi.org/10.26701/ems.354822.
EndNote Ediz B, Çal T, Ay E, Telli Çetin S (01 Aralık 2017) Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study. European Mechanical Science 1 4 141–150.
IEEE B. Ediz, T. Çal, E. Ay, ve S. Telli Çetin, “Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study”, EMS, c. 1, sy. 4, ss. 141–150, 2017, doi: 10.26701/ems.354822.
ISNAD Ediz, Barış vd. “Comparison of Vibration Durability Tests With Respect to Fatigue Damage & Validation Study”. European Mechanical Science 1/4 (Aralık 2017), 141-150. https://doi.org/10.26701/ems.354822.
JAMA Ediz B, Çal T, Ay E, Telli Çetin S. Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study. EMS. 2017;1:141–150.
MLA Ediz, Barış vd. “Comparison of Vibration Durability Tests With Respect to Fatigue Damage & Validation Study”. European Mechanical Science, c. 1, sy. 4, 2017, ss. 141-50, doi:10.26701/ems.354822.
Vancouver Ediz B, Çal T, Ay E, Telli Çetin S. Comparison of Vibration Durability Tests with respect to Fatigue Damage & Validation Study. EMS. 2017;1(4):141-50.

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