Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes

Punching processes are widely used for producing automobile parts, mechanical components, and other parts. To produce highly accurate parts, it is important to estimate the ratio of the sheared surface to the cut surface. Many researchers have applied the finite-element method (FEM) to analyze the r...

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Main Authors: Phyo Wai Myint, Seiya Hagihara, Toru Tanaka, Shinya Taketomi, Yuichi Tadano
Format: Article
Language:English
Published: MDPI AG 2017-10-01
Series:Journal of Manufacturing and Materials Processing
Subjects:
Online Access:https://www.mdpi.com/2504-4494/1/2/12
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spelling doaj-ecf4eb6efa3a4f97812c0ffe0beb67782020-11-24T23:21:45ZengMDPI AGJournal of Manufacturing and Materials Processing2504-44942017-10-01121210.3390/jmmp1020012jmmp1020012Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching ProcessesPhyo Wai Myint0Seiya Hagihara1Toru Tanaka2Shinya Taketomi3Yuichi Tadano4Department of Mechanical Engineering, Saga University, 1 Honjo, Saga 840-8502, JapanDepartment of Mechanical Engineering, Saga University, 1 Honjo, Saga 840-8502, JapanIndustry Technology Center of Saga, 114 Yaemizo, Nabeshima-cho, Saga 849-0932, JapanDepartment of Mechanical Engineering, Saga University, 1 Honjo, Saga 840-8502, JapanDepartment of Mechanical Engineering, Saga University, 1 Honjo, Saga 840-8502, JapanPunching processes are widely used for producing automobile parts, mechanical components, and other parts. To produce highly accurate parts, it is important to estimate the ratio of the sheared surface to the cut surface. Many researchers have applied the finite-element method (FEM) to analyze the ratio of the sheared surface to the fracture surface on cut surfaces by using ductile fracture criteria. However, it is difficult to determine the fracture criteria on the cut surface by tensile tests or bending tests because the punching process involves many complicated steps. In this study, FEM was applied to the punching process to determine the values of critical fracture criteria (C) by using the ductile fracture criteria proposed by Cockcroft and Latham, Oyane, and Ayada. The ductile fracture criteria were compared with the boundary between the shear surface and the fracture surfaces using experiments performed with a simple punching system. The values of the ductile fracture criteria for the fracture initiation of the formed cut surface were predicted under various clearances between the punch and the die with various punch diameters. The influence of stress triaxiality and the effect of punch diameter on the sheared surface length are also discussed.https://www.mdpi.com/2504-4494/1/2/12punching processductile fracturesheared surfacefracture surfacefinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Phyo Wai Myint
Seiya Hagihara
Toru Tanaka
Shinya Taketomi
Yuichi Tadano
spellingShingle Phyo Wai Myint
Seiya Hagihara
Toru Tanaka
Shinya Taketomi
Yuichi Tadano
Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes
Journal of Manufacturing and Materials Processing
punching process
ductile fracture
sheared surface
fracture surface
finite element method
author_facet Phyo Wai Myint
Seiya Hagihara
Toru Tanaka
Shinya Taketomi
Yuichi Tadano
author_sort Phyo Wai Myint
title Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes
title_short Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes
title_full Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes
title_fullStr Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes
title_full_unstemmed Determination of the Values of Critical Ductile Fracture Criteria to Predict Fracture Initiation in Punching Processes
title_sort determination of the values of critical ductile fracture criteria to predict fracture initiation in punching processes
publisher MDPI AG
series Journal of Manufacturing and Materials Processing
issn 2504-4494
publishDate 2017-10-01
description Punching processes are widely used for producing automobile parts, mechanical components, and other parts. To produce highly accurate parts, it is important to estimate the ratio of the sheared surface to the cut surface. Many researchers have applied the finite-element method (FEM) to analyze the ratio of the sheared surface to the fracture surface on cut surfaces by using ductile fracture criteria. However, it is difficult to determine the fracture criteria on the cut surface by tensile tests or bending tests because the punching process involves many complicated steps. In this study, FEM was applied to the punching process to determine the values of critical fracture criteria (C) by using the ductile fracture criteria proposed by Cockcroft and Latham, Oyane, and Ayada. The ductile fracture criteria were compared with the boundary between the shear surface and the fracture surfaces using experiments performed with a simple punching system. The values of the ductile fracture criteria for the fracture initiation of the formed cut surface were predicted under various clearances between the punch and the die with various punch diameters. The influence of stress triaxiality and the effect of punch diameter on the sheared surface length are also discussed.
topic punching process
ductile fracture
sheared surface
fracture surface
finite element method
url https://www.mdpi.com/2504-4494/1/2/12
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