The effects of surface roughness and metal temperature on the heat-transfer coefficient at the metal mold interface

被引:45
|
作者
Coates, Basil [1 ]
Argyropoulos, Stavros A.
机构
[1] Hentel Litecare Corp, Brooklyn, NY 11224 USA
[2] Univ Toronto, Dept Mat Sci & Engn, Toronto, ON, Canada
来源
METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE | 2007年 / 38卷 / 02期
基金
加拿大自然科学与工程研究理事会;
关键词
D O I
10.1007/s11663-007-9020-y
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This article focused on the effects of surface roughness and temperature on the heat-transfer coefficient at the metal mold interface. The experimental work was carried out in a unique and versatile apparatus, which was instrumented with two types of sensors, thermocouples, and linear variable differential transformers (LVDTs). The monitoring of the two types of sensors was carried out simultaneously during solidification. The concurrent use of two independent sensors provided mutually supportive data, thereby strengthening the validity of the interpretations that were made. With this type of instrumentation, it was possible to measure temperature profiles in mold and casting, as well as the air gap at the metal mold interface. Commercial purity aluminum was cast against steel and high carbon iron molds. Each type of mold had a unique surface roughness value. Inverse heat-transfer analysis was used to estimate the heat-transfer coefficient and the heat flux at the metal mold interface. A significant drop in the heat-transfer coefficient was registered, which coincided with the time period of the air gap formation, detected by the LVDT. An equation of the form h = 1/b* A+c + d was found to provide excellent correlation between the heat-transfer coefficient and air gap size. In general, an increase in mold surface roughness results in a decrease In the heat-transfer coefficient at the metal mold interface. On the other hand, a rise in liquid metal temperature results in a higher heat-transfer coefficient.
引用
收藏
页码:243 / 255
页数:13
相关论文
共 50 条
  • [21] Selection of Initial Mold–Metal Interface Heat Transfer Coefficient Values in Casting Simulations—a Sensitivity Analysis
    Ramesh K. Nayak
    Suresh Sundarraj
    Metallurgical and Materials Transactions B, 2010, 41 : 151 - 160
  • [22] HEAT-TRANSFER ANALYSIS AND FLUIDITY OF FLOWING METAL IN A CYLINDRICAL MOLD CAVITY
    MATSUDA, M
    OHMI, M
    INTERNATIONAL CAST METALS JOURNAL, 1981, 6 (04): : 18 - 27
  • [23] EFFECTS OF MOLD MATERIAL AND SURFACE UPON SOLIDIFICATION HEAT-TRANSFER
    DURHAM, DR
    BERRY, JT
    JOM-JOURNAL OF METALS, 1976, 28 (12): : A71 - A71
  • [24] Determination of the interfacial heat transfer coefficient at the metal-sand mold interface in low pressure sand casting
    Zhang, A.
    Liang, S.
    Guo, Z.
    Xiong, S.
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2017, 88 : 472 - 482
  • [25] Effect of various casting parameters on air gap formation and heat transfer coefficient at the metal-mold interface
    Argyropoulos, Stavros A.
    Carletti, Horazio G.
    SIMULATION OF ALUMINUM SHAPE CASTING PROCESSING: FROM ALLOY DESIGN TO MECHANICAL PROPERTIES, 2006, : 243 - +
  • [26] Modelling heat transfer coefficient at cast/chill interface to account for effects of metal head
    Meneghini, A.
    Cellini, G. Sangiorgi
    Tomesani, L.
    INTERNATIONAL JOURNAL OF CAST METALS RESEARCH, 2007, 20 (03) : 159 - 162
  • [27] A STUDY OF HEAT-TRANSFER IN THE INITIAL SOLIDIFICATION PHASE OF GREY IRON IN A METAL MOLD
    ANISOVICH, GA
    SEVASTIYANOV, PV
    GALAGAEV, SV
    DOKLADY AKADEMII NAUK BELARUSI, 1989, 33 (08): : 712 - 715
  • [28] Heat transfer from an extended surface at a stochastic heat-transfer coefficient and stochastic environmental temperature
    Madera, AG
    INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 1996, 34 (09) : 1093 - 1099
  • [29] Identification of heat transfer coefficient including radiative effects at the glass/mold interface
    Cressin, M.
    Bechet, F.
    Moreau, P.
    Lochegnies, D.
    Naceur, H.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2023, 209
  • [30] CRYSTALLIZER TEMPERATURE EFFECT ON THE HEAT-TRANSFER RATE IN SOLIDIFYING METAL
    ANISOVICH, GA
    BARANOVSKII, EF
    STEPANENKO, AA
    TYULYUKIN, VN
    DOKLADY AKADEMII NAUK BELARUSI, 1979, 23 (07): : 603 - 606