DESIGN OF A SMALL-SCALE HOT FORGING TEST

被引:2
|
作者
Ganesan, S. M. [1 ]
Moe, P. T. [1 ,2 ]
Salberg, B. [2 ]
Audestad, J. I. [2 ]
Valberg, H. [1 ]
Rudd, W. [3 ]
Burnell-Gray, J. S. [3 ]
机构
[1] Norwegian Univ Sci & Technol, Dept Engn Design & Mat, N-7491 Trondheim, Norway
[2] AMR Engn AS, N-3018 Drammen, Norway
[3] Incubator Ltd, Team Valley NE11 0AF, Gateshead, England
关键词
Forging; High temperature; Medium carbon steel; Induction heating; Finite element simulation;
D O I
10.1007/s12289-009-0570-1
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Small scale material testing offers many advantages compared to large or full scale testing. Small scale tests are usually simpler and quicker to perform than full scale tests, and as a consequence they are cost-effective - the concomitant speed of screening has implications for product commercialization (notably the time to market and the time in market). However, in order to make sure that small scale tests produce relevant information for the full scale process, it should always be demonstrated that the material is exposed to thermo-mechanical and environmental conditions similar to those of the full scale process. The objective of the work described in this article has been to demonstrate the feasibility of miniaturizing a hot forging process. In the original full scale process, a medium carbon steel pipe with Outer Diameter (OD) of 200 mm and wall thickness of 12 mm is heated locally by high-frequency induction heating coil before being forged to a plastic strain of approximately 1 and subsequently cooled in air. In the small scale test, specimens with OD 12 mm and wall thickness 3 mm are heated in a similar way by induction heating coil and forged. The heating and cooling rates (as well as gaseous environment) are controlled in order to carefully recreate the temperature history of the full scale test. Finite element simulations of heating, forging and cooling phases clearly demonstrate how to design the small scale test. If the specimen is heated by an induction coil during the cooling phase, it is possible to compensate the greater heat losses to the surroundings experienced by the small scale specimen.
引用
收藏
页码:113 / 116
页数:4
相关论文
共 50 条
  • [11] Design of a Small-Scale Hydrology Experiment
    Poor, C. J.
    Dillon, H. E.
    Chabert, A.
    De Jesus, J. Bastida
    JOURNAL OF CIVIL ENGINEERING EDUCATION, 2020, 146 (03):
  • [12] SMALL-SCALE QUALITY TEST IN WHEAT BREEDING
    COPP, LG
    NATURE, 1956, 177 (4512) : 756 - 757
  • [13] A SMALL-SCALE FIELD TEST FOR EVALUATING FUNGICIDES
    LEBEN, C
    TSAO, PH
    KEITT, GW
    PHYTOPATHOLOGY, 1956, 46 (06) : 333 - 335
  • [14] NEW SMALL-SCALE IGNITION RESISTANCE TEST
    MATONIS, VA
    JOURNAL OF FIRE & FLAMMABILITY, 1978, 9 (01): : 14 - 29
  • [15] Small-scale tunnel test for blast performance
    Felts, J. E.
    Lee, R. J.
    18TH APS-SCCM AND 24TH AIRAPT, PTS 1-19, 2014, 500
  • [16] SMALL-SCALE SUPERSONIC INLET TEST FACILITY
    HAAS, M
    KARANIAN, AJ
    JOURNAL OF SPACECRAFT AND ROCKETS, 1981, 18 (04) : 293 - 294
  • [17] Test of a modified small-scale biochar kiln
    Petchaihan, Lalita
    Panyoyai, Numpon
    Khamdaeng, Tipapon
    Wongsiriamnuay, Thanasit
    INTERNATIONAL CONFERENCE ON SUSTAINABLE ENERGY AND GREEN TECHNOLOGY 2019, 2020, 463
  • [18] RAPID SMALL-SCALE TEST FOR WHEAT HARDNESS
    MORRISON, P
    JOURNAL OF FLOUR AND ANIMAL FEED MILLING, 1977, 160 (02): : 23 - 23
  • [19] MEASUREMENT OF SMALL-SCALE TURBULENCE STRUCTURE WITH HOT WIRES
    WYNGAARD, JC
    JOURNAL OF PHYSICS E-SCIENTIFIC INSTRUMENTS, 1968, 1 (11): : 1105 - &
  • [20] BOSONS - HOT DARK MATTER WITH SMALL-SCALE POWER
    MADSEN, J
    ASTROPHYSICAL JOURNAL, 1991, 371 (02): : L47 - L49