Upsetting of bi-metallic ring billets

被引:22
|
作者
Essa, K. [2 ]
Kacmarcik, I. [1 ]
Hartley, P. [2 ]
Plancak, M. [1 ]
Vilotic, D. [1 ]
机构
[1] Univ Novi Sad, Fac Tech Sci, Novi Sad 21000, Serbia
[2] Univ Birmingham, Birmingham B15 2TT, W Midlands, England
关键词
Upsetting; Bi-metallic; Experiment; Finite-element modelling; FRICTION; COMPRESSION; PARTS;
D O I
10.1016/j.jmatprotec.2011.11.005
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This report examines the behaviour of bi-metallic components during the cold upsetting process. Each component consists of a solid inner cylinder around which is fitted a ring of a different material. In the first case experimental studies are conducted of a ring of mild steel C45E material surrounded by a softer C15E core. These tests are used to validate the finite-element models. The finite-element method is then used to extend the initial tests to a wider range of cylinder and ring geometries. It is also used to explore a second case where the materials are reversed to give a bi-metallic component with a stronger core. The principal objective is examine how contact between the inner cylinder and outer ring is maintained during the upsetting process. It is apparent that the geometries of the two component parts of the billet are the dominant factors affecting deformation, as the influence of changing the material has only a very small effect. With an initial height/outer diameter ratio of 1.5, contact at the cylinder/ring interface is maintained over the most of the initially contacting surfaces. A small cavity is formed when the inner/outer ring diameter reaches 0.6. Above this value the cavity will become larger, and at 0.8 the wall thickness is sufficiently thin to allow a double-barrel outer profile to develop with two cavities. With an initial height/outer diameter ratio of 1.0 or less, the formation of interfacial cavities is much less and demonstrates the viability of producing hi-metallic components in this way. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:817 / 824
页数:8
相关论文
共 50 条
  • [11] BASIC FORCE PARAMETERS IN EXTRUSION OF BI-METALLIC BUSHES
    DOBROKHO.VP
    RUSSIAN ENGINEERING JOURNAL-USSR, 1966, 46 (02): : 73 - &
  • [12] Interfacial phenomena in magnesium/aluminum bi-metallic castings
    Xu, Guangchen
    Luo, Alan A.
    Chen, Yiqing
    Sachdev, Anil K.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2014, 595 : 154 - 158
  • [13] On analysis of thermodynamic properties of cuboctahedral bi-metallic structure
    Siddiqui, Muhammad Kamran
    Chu, Yu-Ming
    Nasir, Muhammad
    Cancan, Murat
    MAIN GROUP METAL CHEMISTRY, 2021, 44 (01) : 117 - 128
  • [14] Extrusion of axi-symmetric bi-metallic tubes: some experiments using hollow billets and the application of a generalised slab method of analysis
    Chitkara, NR
    Aleem, A
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2001, 43 (12) : 2857 - 2882
  • [15] A PILE-UP OF DISLOCATIONS IN A BI-METALLIC SOLID
    SMITH, E
    SCRIPTA METALLURGICA, 1969, 3 (06): : 415 - &
  • [16] Therm-optic analysis of bi-metallic mirrors
    Vukobratovich, D
    Gerzoff, A
    Cho, MK
    OPTOMECHANICAL DESIGN AND PRECISION INSTRUMENTS, 1997, 3132 : 12 - 23
  • [18] Efficient Screening of Bi-Metallic Electrocatalysts for Glycerol Valorization
    dos Santos, Egon Campos
    Araujo, Rafael B.
    Valter, Mikael
    Salazar-Alvarez, German
    Johnsson, Mats
    Bajdich, Michal
    Abild-Pedersen, Frank
    Pettersson, Lars Gunnar Moody
    ELECTROCHIMICA ACTA, 2021, 398
  • [19] Metallic and bi-metallic Janus nanofibers: electrical and self-propulsion properties
    Reddy, Naveen Krishna
    Palangetic, Ljiljana
    Stappers, Linda
    Buitenhuis, Johan
    Fransaer, Jan
    Clasen, Christian
    JOURNAL OF MATERIALS CHEMISTRY C, 2013, 1 (23) : 3646 - 3650
  • [20] FORCE, TORQUE AND PLASTIC-FLOW ANALYSIS IN ROTARY UPSETTING OF RING SHAPED BILLETS
    OUDIN, J
    RAVALARD, Y
    VERWAERDE, G
    GELIN, JC
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 1985, 27 (11-12) : 761 - &