Investigation of tribological condition in cold forging using an optimized design of spike forging test

The spike forging test is still commonly used although there are some new tribology test methods, but each designer would like to give their own parameters. Considering the spike height difference between low friction and high friction as the evaluation index, an optimal spike forging test developed...

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Main Authors: Chengliang Hu, Hengan Ou, Zhen Zhao
Format: Article
Language:English
Published: SAGE Publishing 2015-05-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814015587212
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spelling doaj-b6a1082d490c48aeb7ee7611162e5ce22020-11-25T02:52:40ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402015-05-01710.1177/168781401558721210.1177_1687814015587212Investigation of tribological condition in cold forging using an optimized design of spike forging testChengliang Hu0Hengan Ou1Zhen Zhao2Institute of Forming Technology & Equipment, National Engineering Research Center of Die and Mold CAD, Shanghai Jiao Tong University, Shanghai, ChinaDepartment of Mechanical, Materials and Manufacturing Engineering, University of Nottingham, Nottingham, UKInstitute of Forming Technology & Equipment, National Engineering Research Center of Die and Mold CAD, Shanghai Jiao Tong University, Shanghai, ChinaThe spike forging test is still commonly used although there are some new tribology test methods, but each designer would like to give their own parameters. Considering the spike height difference between low friction and high friction as the evaluation index, an optimal spike forging test developed using finite element simulations based on orthogonal optimization method and sensitivity analysis of tribological conditions of selected key design parameters was carried out. The spike height does not always monotonically decrease with the increase in friction factor in the scheme with improper parameters; therefore, the design of spike forging test should be critically evaluated before assessing tribological conditions. According to the optimized parameters, a simplified set-up of spike forging test was designed, and two retainers with a clearance fit and the billet with a chamfer were prepared to position the test billet. Finally, four different tribological conditions, including dry polytetrafluoroethylene lubricant, multipurpose grease, VG32 oil, and dry condition, in aluminum forging were chosen as a case study for the optimized design of spike forging test, and correspondingly, the lubricating effect was distinguished.https://doi.org/10.1177/1687814015587212
collection DOAJ
language English
format Article
sources DOAJ
author Chengliang Hu
Hengan Ou
Zhen Zhao
spellingShingle Chengliang Hu
Hengan Ou
Zhen Zhao
Investigation of tribological condition in cold forging using an optimized design of spike forging test
Advances in Mechanical Engineering
author_facet Chengliang Hu
Hengan Ou
Zhen Zhao
author_sort Chengliang Hu
title Investigation of tribological condition in cold forging using an optimized design of spike forging test
title_short Investigation of tribological condition in cold forging using an optimized design of spike forging test
title_full Investigation of tribological condition in cold forging using an optimized design of spike forging test
title_fullStr Investigation of tribological condition in cold forging using an optimized design of spike forging test
title_full_unstemmed Investigation of tribological condition in cold forging using an optimized design of spike forging test
title_sort investigation of tribological condition in cold forging using an optimized design of spike forging test
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2015-05-01
description The spike forging test is still commonly used although there are some new tribology test methods, but each designer would like to give their own parameters. Considering the spike height difference between low friction and high friction as the evaluation index, an optimal spike forging test developed using finite element simulations based on orthogonal optimization method and sensitivity analysis of tribological conditions of selected key design parameters was carried out. The spike height does not always monotonically decrease with the increase in friction factor in the scheme with improper parameters; therefore, the design of spike forging test should be critically evaluated before assessing tribological conditions. According to the optimized parameters, a simplified set-up of spike forging test was designed, and two retainers with a clearance fit and the billet with a chamfer were prepared to position the test billet. Finally, four different tribological conditions, including dry polytetrafluoroethylene lubricant, multipurpose grease, VG32 oil, and dry condition, in aluminum forging were chosen as a case study for the optimized design of spike forging test, and correspondingly, the lubricating effect was distinguished.
url https://doi.org/10.1177/1687814015587212
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AT zhenzhao investigationoftribologicalconditionincoldforgingusinganoptimizeddesignofspikeforgingtest
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