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Title: :  GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR
PaperId: :  8509
Published in:   International Journal Of Advance Research And Innovative Ideas In Education
Publisher:   IJARIIE
e-ISSN:   2395-4396
Volume/Issue:    Volume 4 Issue 3 2018
DUI:    16.0415/IJARIIE-8509
Licence: :   IJARIIE is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

Author NameAuthor Institute
BIRULING KASHINATH GAUDAGUNDEV. V. P. Institute of Engineering & Technology, Solapur, Maharashtra, India
Dr. S. V. DESHPANDEV. V. P. Institute of Engineering & Technology, Solapur, Maharashtra, India

Abstract

MECHANICAL ENGINEERING
Pressure Angle, Gear Tooth Profile, Involute Meshing
Gear is a machine element used to transmit motion and power between rotating shafts by means of progressive engagement of projections called teeth. Gears are classified according to the relative position of the axes of the shaft, type of gearing, peripheral velocity of the gears and position of teeth on gear surface. Presently gears are suffered by backlash the amount by which the width of a tooth space exceeds the thickness of the engaging tooth on the pitch circles, undercut a condition in generated gear teeth when any part of the fillet curve lies inside of a line drawn tangent to the working profile at its lowest point and interference is an important aspect of kinematics of gearing. When the gear tooth tries to dig below the base circle of mating gear then the gear tooth action shall be non-conjugate and violate the fundamental law of gearing this non conjugate action is called the interference. These defects can be eliminated by increasing the pressure angle, by increasing the addendum of mating gear and another way of increasing the load capacity of transmissions is to modify the involute geometry. This has been a standard practice in sophisticated gear design for many years; the nomenclature describing these types of gear modifications can be quite confusing with reference to addendum modification or profile shift. An additional alteration that is very rarely used is to make the gears asymmetric with different pressure angles for each side of the tooth In this study, geometric design of asymmetric gear involute meshing is done. This method is appropriate for the geometric design of spur gears with a small teeth number and is based on the generalized model of involute meshing.

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IJARIIE BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. "GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR" International Journal Of Advance Research And Innovative Ideas In Education Volume 4 Issue 3 2018 Page 936-948
MLA BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. "GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR." International Journal Of Advance Research And Innovative Ideas In Education 4.3(2018) : 936-948.
APA BIRULING KASHINATH GAUDAGUNDE, & Dr. S. V. DESHPANDE. (2018). GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR. International Journal Of Advance Research And Innovative Ideas In Education, 4(3), 936-948.
Chicago BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. "GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR." International Journal Of Advance Research And Innovative Ideas In Education 4, no. 3 (2018) : 936-948.
Oxford BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. 'GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR', International Journal Of Advance Research And Innovative Ideas In Education, vol. 4, no. 3, 2018, p. 936-948. Available from IJARIIE, http://ijariie.com/AdminUploadPdf/GEOMETRY_AND_DESIGN_OF_INVOLUTE_SPUR_GEAR_WITH_ASYMMETRIC_TEETH_TO_IMPROVE_BENDING_LOAD_CARRYING_CAPACITY_OF_THE_GEAR_ijariie8509.pdf (Accessed : ).
Harvard BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. (2018) 'GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR', International Journal Of Advance Research And Innovative Ideas In Education, 4(3), pp. 936-948IJARIIE [Online]. Available at: http://ijariie.com/AdminUploadPdf/GEOMETRY_AND_DESIGN_OF_INVOLUTE_SPUR_GEAR_WITH_ASYMMETRIC_TEETH_TO_IMPROVE_BENDING_LOAD_CARRYING_CAPACITY_OF_THE_GEAR_ijariie8509.pdf (Accessed : )
IEEE BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE, "GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR," International Journal Of Advance Research And Innovative Ideas In Education, vol. 4, no. 3, pp. 936-948, May-Jun 2018. [Online]. Available: http://ijariie.com/AdminUploadPdf/GEOMETRY_AND_DESIGN_OF_INVOLUTE_SPUR_GEAR_WITH_ASYMMETRIC_TEETH_TO_IMPROVE_BENDING_LOAD_CARRYING_CAPACITY_OF_THE_GEAR_ijariie8509.pdf [Accessed : ].
Turabian BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. "GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR." International Journal Of Advance Research And Innovative Ideas In Education [Online]. volume 4 number 3 ().
Vancouver BIRULING KASHINATH GAUDAGUNDE, and Dr. S. V. DESHPANDE. GEOMETRY AND DESIGN OF INVOLUTE SPUR GEAR WITH ASYMMETRIC TEETH TO IMPROVE BENDING LOAD CARRYING CAPACITY OF THE GEAR. International Journal Of Advance Research And Innovative Ideas In Education [Internet]. 2018 [Cited : ]; 4(3) : 936-948. Available from: http://ijariie.com/AdminUploadPdf/GEOMETRY_AND_DESIGN_OF_INVOLUTE_SPUR_GEAR_WITH_ASYMMETRIC_TEETH_TO_IMPROVE_BENDING_LOAD_CARRYING_CAPACITY_OF_THE_GEAR_ijariie8509.pdf
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