Investigation on the Effect of Pulsating Pressure on Tube-Hydroforming Process

被引:1
|
作者
Khalili, Khalil [1 ]
Brooghani, Seyed Yousef Ahmadi [2 ]
Ashrafi, Amir [2 ]
机构
[1] Islamic Azad Univ, Branch Birjand, Mech Engn Grp, Tehran, Iran
[2] Birjand Univ, Fac Engn, Dept Mech Engn, Birjand, Iran
来源
SHEET METAL 2011 | 2011年 / 473卷
关键词
Tube hydroforming; pulsating pressure hydroforming; wall thickness; protrusion height; SIMULATION;
D O I
10.4028/www.scientific.net/KEM.473.618
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Tube hydroforming process is one of the metal forming processes which uses internal pressure and axial feeding simultaneously to form a tube into the die cavity shape. This process has some advantages such as weight reduction, more strength and better integration of produced parts. In this study, T-shape tube hydroforming was analyzed by experimental and finite element methods. In Experimental method the pulsating pressure technique without counterpunch was used; so that the internal pressure was increased up to a maximum, the axial feeding was then stopped. Consequently, the pressure decreased to a minimum. The sequence was repeated until the part formed to its final shape. The finite element model was also established to compare the experimental results with the FE model. It is shown that the pulsating pressure improves the process in terms of maximum protrusion height obtained. Counterpunch was eliminated as being unnecessary. The results of simulation including thickness distribution and protrusion height were compared to the part produced experimentally. The result of modeling is in good agreement with the experiment. The paper describes the methodology and gives the results of both experiment and modeling.
引用
收藏
页码:618 / +
页数:2
相关论文
共 50 条
  • [21] Process Control Model for Tube Hydroforming
    Kilonzo, Obadiah
    PROCEEDINGS OF THE ASME INTERNATIONAL MANUFACTURING SCIENCE AND ENGINEERING CONFERENCE 2010, VOL 2, 2011, : 131 - 139
  • [22] Wrinkling study in tube hydroforming process
    Khalilli, Khalil
    Shahri, S. Ehsan Eftekhari
    Kahhal, Parviz
    Khalili, M. Soheil
    SHEET METAL 2011, 2011, 473 : 151 - +
  • [23] Investigation of Aluminum-Copper Tube Hydroforming with Axial Feeding
    Parto D, M.
    Seyedkashi, S. M. H.
    Liaghat, Gh.
    Naeini, H. Moslemi
    Panahizadeh R, V.
    INTERNATIONAL CONFERENCE ON ADVANCES IN MATERIALS AND PROCESSING TECHNOLOGIES, PTS ONE AND TWO, 2010, 1315 : 475 - 480
  • [24] Optimizing tube hydroforming using process simulation and experimental verification
    Aue-U-Lan, Y
    Ngaile, G
    Altan, T
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2004, 146 (01) : 137 - 143
  • [25] EXPERIMENTAL INVESTIGATION OF NON-UNIFORM DEFORMATION IN TUBE HYDROFORMING
    Plancak, Miroslav
    Kuzman, Karl
    Vilotic, Dragisa
    Pepeljnjak, Tomaz
    Kacmarcik, Igor
    Movrin, Dejan
    METALLURGICAL & MATERIALS ENGINEERING-ASSOCIATION OF METALLURGICAL ENGINEERS OF SERBIA, 2011, 17 (03): : 131 - 138
  • [26] Experimental investigation of friction coefficient in tube hydroforming
    Hyae Kyung YI
    Hong Sup YIM
    Gun Yeop LEE
    Sung Mun LEE
    Gi Suk CHUNG
    Young-Hoon MOON
    Transactions of Nonferrous Metals Society of China, 2011, 21(S1) (S1) : 194 - 198
  • [27] Loading path optimization of tube hydroforming process
    Imaninejad, M
    Subhash, G
    Loukus, A
    INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2005, 45 (12-13) : 1504 - 1514
  • [28] Experimental investigation of friction coefficient in tube hydroforming
    Yi, Hyae Kyung
    Yim, Hong Sup
    Lee, Gun Yeop
    Lee, Sung Mun
    Chung, Gi Suk
    Moon, Young-Hoon
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2011, 21 : S194 - S198
  • [29] Investigation on determination of loading path to enhance formability in tube hydroforming process using APDL
    Heo, S. C.
    Kim, J.
    Kang, B. S.
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2006, 177 (1-3) : 653 - 657
  • [30] Prediction and analysis of wrinkling in tube hydroforming process
    Yuan, Shijian
    Tang, Zejun
    Liu, Gang
    INTERNATIONAL JOURNAL OF MATERIALS & PRODUCT TECHNOLOGY, 2011, 40 (3-4) : 296 - 310