Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism

In this study, displacement, velocity and acceleration equations were obtained for the mechanism created by modifying the long-stroke reciprocating mechanism. Thus, a novel mechanism has been created. In addition, the effects of the design parameters were examined and the results obtained were compa...

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Bibliographic Details
Main Author: Emre Arabacı
Format: Article
Language:English
Published: Turkish Society of Automotive Engineers 2020-09-01
Series:International Journal of Automotive Science and Technology
Subjects:
Online Access:https://dergipark.org.tr/en/pub/ijastech/issue/55251/725750
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spelling doaj-098abbbfbd7d47129cac32150cfe58162021-02-08T21:29:22ZengTurkish Society of Automotive EngineersInternational Journal of Automotive Science and Technology2587-09632020-09-014311612410.30939/ijastech..72575058Analysis of Design Parameters of a Novel Modified Reciprocating MechanismEmre Arabacı0MEHMET AKİF ERSOY ÜNİVERSİTESİIn this study, displacement, velocity and acceleration equations were obtained for the mechanism created by modifying the long-stroke reciprocating mechanism. Thus, a novel mechanism has been created. In addition, the effects of the design parameters were examined and the results obtained were compared with the conventional crank-connecting rod mechanism. While the crank radius (r) and connecting rod length (L), which are the main design parameters of the conventional crank-connecting rod mechanism, are fixed, the design parameters of the novel mechanism are changed and the effects of these design parameters on the velocity and acceleration characteristics are examined. For the novel mechanism, the ratio of the inner gear radius to the pinion gear radius (r2/r1=k) and the ratio of the output gear radius to the pinion gear radius (r0/r1=m) are determined as the basic design parameters. Accordingly, by decreasing k and increasing m, it was seen that the connecting rod angle, mean piston velocity, and mean piston acceleration were decreased. The correct choice of k and m shows that the novel mecha-nism can be made more advantageous compared to the conventional crank-connecting rod mechanism. The results are predicted to be promising for engine designers.https://dergipark.org.tr/en/pub/ijastech/issue/55251/725750crank mechanismkinematicslong strokereciprocate
collection DOAJ
language English
format Article
sources DOAJ
author Emre Arabacı
spellingShingle Emre Arabacı
Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism
International Journal of Automotive Science and Technology
crank mechanism
kinematics
long stroke
reciprocate
author_facet Emre Arabacı
author_sort Emre Arabacı
title Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism
title_short Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism
title_full Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism
title_fullStr Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism
title_full_unstemmed Analysis of Design Parameters of a Novel Modified Reciprocating Mechanism
title_sort analysis of design parameters of a novel modified reciprocating mechanism
publisher Turkish Society of Automotive Engineers
series International Journal of Automotive Science and Technology
issn 2587-0963
publishDate 2020-09-01
description In this study, displacement, velocity and acceleration equations were obtained for the mechanism created by modifying the long-stroke reciprocating mechanism. Thus, a novel mechanism has been created. In addition, the effects of the design parameters were examined and the results obtained were compared with the conventional crank-connecting rod mechanism. While the crank radius (r) and connecting rod length (L), which are the main design parameters of the conventional crank-connecting rod mechanism, are fixed, the design parameters of the novel mechanism are changed and the effects of these design parameters on the velocity and acceleration characteristics are examined. For the novel mechanism, the ratio of the inner gear radius to the pinion gear radius (r2/r1=k) and the ratio of the output gear radius to the pinion gear radius (r0/r1=m) are determined as the basic design parameters. Accordingly, by decreasing k and increasing m, it was seen that the connecting rod angle, mean piston velocity, and mean piston acceleration were decreased. The correct choice of k and m shows that the novel mecha-nism can be made more advantageous compared to the conventional crank-connecting rod mechanism. The results are predicted to be promising for engine designers.
topic crank mechanism
kinematics
long stroke
reciprocate
url https://dergipark.org.tr/en/pub/ijastech/issue/55251/725750
work_keys_str_mv AT emrearabacı analysisofdesignparametersofanovelmodifiedreciprocatingmechanism
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