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Generation and simulation of meshing for involute helical gears
Joint Authors
Abd Allah, Muhammad Qasim
Ismail, Mansur Ali
Source
Issue
Vol. 15, Issue 2 (30 Jun. 2009), pp.3743-3755, 13 p.
Publisher
University of Baghdad College of Engineering
Publication Date
2009-06-30
Country of Publication
Iraq
No. of Pages
13
Main Subjects
Abstract AR
طريقة جديدة لتوليد و محاكاة التعشيق للتروس الحلزونية ذات الجانبية العدلة قد تم عرضها التقريبات المقترحة للتوليد استندت على تطبيق أداتي قطع تخيليتين واحدة للترس الصغير و الأخرى للترس الكبير محاكاة التعشيق المقترحة للتروس الحلزونية المنتظمة و غير المنتظمة تعطي (أ) الانتقال في موقع التماس (مسار التماس الحقيقي) على سطح سن الترس الصغير و الترس الكبير (ب) دالة الأخطاء المنقولة.
Abstract EN
A new method for generation and simulation of meshing for involute helical gears is presented.
The approaches proposed for generation are based on the imaginary application of two rack-cutters one for pinion and the other for gear generation.
The proposed simulation of meshing of aligned and misaligned helical gears gives (i) the shift of the bearing contact (real contact path) on pinion and gear tooth surfaces, (ii) the function of transmission errors.
American Psychological Association (APA)
Abd Allah, Muhammad Qasim& Ismail, Mansur Ali. 2009. Generation and simulation of meshing for involute helical gears. Journal of Engineering،Vol. 15, no. 2, pp.3743-3755.
https://search.emarefa.net/detail/BIM-327473
Modern Language Association (MLA)
Abd Allah, Muhammad Qasim& Ismail, Mansur Ali. Generation and simulation of meshing for involute helical gears. Journal of Engineering Vol. 15, no. 2 (Jun. 2009), pp.3743-3755.
https://search.emarefa.net/detail/BIM-327473
American Medical Association (AMA)
Abd Allah, Muhammad Qasim& Ismail, Mansur Ali. Generation and simulation of meshing for involute helical gears. Journal of Engineering. 2009. Vol. 15, no. 2, pp.3743-3755.
https://search.emarefa.net/detail/BIM-327473
Data Type
Journal Articles
Language
English
Notes
Includes bibliographical references : p. 3755
Record ID
BIM-327473