Dynamic Characteristics of Air Cycle Machine Rotor System

المؤلفون المشاركون

Han, Dongjiang
Hao, Long
Yang, Jinfu

المصدر

Shock and Vibration

العدد

المجلد 2018، العدد 2018 (31 ديسمبر/كانون الأول 2018)، ص ص. 1-16، 16ص.

الناشر

Hindawi Publishing Corporation

تاريخ النشر

2018-09-26

دولة النشر

مصر

عدد الصفحات

16

التخصصات الرئيسية

هندسة مدنية

الملخص EN

Parameters optimization in the critical speed region has the important influence on operational stability of an air cycle machine.

Effects of bearing stiffness and unbalanced exciting force on critical speed and response characteristics are investigated by the modal method and harmonic response analysis.

Resonance separation phenomenon in the critical speed region is analyzed in detail.

When difference exists in the phase of unbalanced exciting force, resonance separation appears in the conical whirling speed region.

The characteristics after resonance separation are closely related to the phase difference value and amplitude of unbalanced exciting force.

The paper provides theoretical and experimental foundations for resonance separation analysis and also provides data support for dynamic balance and dynamic design of the rotor system.

نمط استشهاد جمعية علماء النفس الأمريكية (APA)

Han, Dongjiang& Hao, Long& Yang, Jinfu. 2018. Dynamic Characteristics of Air Cycle Machine Rotor System. Shock and Vibration،Vol. 2018, no. 2018, pp.1-16.
https://search.emarefa.net/detail/BIM-1215025

نمط استشهاد الجمعية الأمريكية للغات الحديثة (MLA)

Han, Dongjiang…[et al.]. Dynamic Characteristics of Air Cycle Machine Rotor System. Shock and Vibration No. 2018 (2018), pp.1-16.
https://search.emarefa.net/detail/BIM-1215025

نمط استشهاد الجمعية الطبية الأمريكية (AMA)

Han, Dongjiang& Hao, Long& Yang, Jinfu. Dynamic Characteristics of Air Cycle Machine Rotor System. Shock and Vibration. 2018. Vol. 2018, no. 2018, pp.1-16.
https://search.emarefa.net/detail/BIM-1215025

نوع البيانات

مقالات

لغة النص

الإنجليزية

الملاحظات

Includes bibliographical references

رقم السجل

BIM-1215025