Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion

Cams are considered as one of the most important mechanical components that depends the contact action to do its job and suffer a lot of with drawbacks to be predicted and overcame in the design process. this work aims to investigate the induced cam contact and the maximum shear stress energy or (vo...

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Main Author: Aveen Ahmed Abdulkareem
Format: Article
Language:English
Published: University of Baghdad 2017-01-01
Series:Journal of Engineering
Online Access:https://www.jcoeng.edu.iq/index.php/main/article/view/280/246
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author Aveen Ahmed Abdulkareem
author_facet Aveen Ahmed Abdulkareem
author_sort Aveen Ahmed Abdulkareem
collection DOAJ
description Cams are considered as one of the most important mechanical components that depends the contact action to do its job and suffer a lot of with drawbacks to be predicted and overcame in the design process. this work aims to investigate the induced cam contact and the maximum shear stress energy or (von misses) stresses during the course of action analytically using Hertz contact stress equation and the principal stress formulations to find the maximum stress value and its position beneath the contacting surfaces. The experimental investigation adopted two dimensions photoelastic technique to analyze cam stresses under a plane polarized light. The problem has been numerically simulated using Ansys software version 15 as FE solver and depending on Lagrange and Penalty contact algorithm. The effect of cam geometry, characterized by some parameters such as follower radius, face width, rise and return angles, and modulus of elasticity on the contact stress is investigated aiming to minimize the induced stresses
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spelling doaj.art-d58e45f974e7442d92389248194464502023-09-03T01:51:05ZengUniversity of BaghdadJournal of Engineering1726-40732520-33392017-01-01231198214Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic MotionAveen Ahmed AbdulkareemCams are considered as one of the most important mechanical components that depends the contact action to do its job and suffer a lot of with drawbacks to be predicted and overcame in the design process. this work aims to investigate the induced cam contact and the maximum shear stress energy or (von misses) stresses during the course of action analytically using Hertz contact stress equation and the principal stress formulations to find the maximum stress value and its position beneath the contacting surfaces. The experimental investigation adopted two dimensions photoelastic technique to analyze cam stresses under a plane polarized light. The problem has been numerically simulated using Ansys software version 15 as FE solver and depending on Lagrange and Penalty contact algorithm. The effect of cam geometry, characterized by some parameters such as follower radius, face width, rise and return angles, and modulus of elasticity on the contact stress is investigated aiming to minimize the induced stresseshttps://www.jcoeng.edu.iq/index.php/main/article/view/280/246
spellingShingle Aveen Ahmed Abdulkareem
Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion
Journal of Engineering
title Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion
title_full Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion
title_fullStr Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion
title_full_unstemmed Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion
title_short Theoretical and Experimental Stress Analysis of Cam With Simple Harmonic Motion
title_sort theoretical and experimental stress analysis of cam with simple harmonic motion
url https://www.jcoeng.edu.iq/index.php/main/article/view/280/246
work_keys_str_mv AT aveenahmedabdulkareem theoreticalandexperimentalstressanalysisofcamwithsimpleharmonicmotion