Kinetic modelling of thermal de-binding and sintering of pure Cu, Fe12Cu and W8Ni2Cu

被引:0
|
作者
Hohenauer, Wolfgang [1 ]
Lager, Daniel [1 ]
Ul Mohsin, Ijaz [1 ]
机构
[1] AIT Austrian Inst Technol GmbH, A-1210 Vienna, Austria
关键词
Kinetic modelling; de-binding; sintering; solid state; liquid state sintering; persistent liquid state sintering; rate controlled process; FE-CU; COPPER-ALLOYS; PHASE; TUNGSTEN; DENSIFICATION; DISTORTION; COMPOSITE; BEHAVIOR; POROSITY;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
The prediction of the final shape of sintered parts, the estimation of stress during the sintering process or the design of production relevant technological conditions is of great technological and economic concern. During the technological treatment chemical composition, morphology solid state phases, and sometimes even the state of aggregation change. Thus, it makes sense to emanate from a processing material, and to search for a method describing the sequence of material states and the correlated material properties as well. Appropriate material laws to describe de-binding and sintering are still not known. However, thermo-kinetic modelling enables the mathematical description of a succession of process steps. Subsequently, consecutive reactions as well as branch reactions can be applied to formal kinetic models. Thus, based on the measurements of thermal mass and thermal expansion/shrinkage, formal kinetic models for de-binding and sintering will be formulated. Model free data analysis (Friedman analysis) is used to classify reaction steps and reaction types, and to estimate initial kinetic parameters for subsequent kinetic modelling as well. The final optimum kinetic model is obtained iteratively from a non-linear, multivariate regression fitting the measured curves by optimizing the specific parameters of the describing functions - but strictly related to the assigned reaction types and justified by stringent phenomenological assumptions. The methodology shows how to construct, formulate and optimize thermo-kinetic models to describe de-binding and sintering of three different copper alloys. They represent three different variants of sintering technology: solid state sintering, transient liquid phase sintering, and persistent liquid phase sintering. The resulting thermo-kinetic models represent so called "implicit material laws". The specific kinetic parameters are given. Correlation coefficients k > 0,9999 are achieved. The models are confirmed experimentally and technologically as well and they were successfully used to predict parameters for rate controlled production processes. In a follow up publication elsewhere in this issue (Hohenauer W Lager D, Mohsin IU, Improvement of thermo-physical data od pure coppet; Fe12Cu and W8Ni2Cu during and after sintering using kinetic modelling) these models are used to examine thermo-physical data from measurements under optimum laboratory conditions but mapped on the specific transient histories as materials will meet under production conditions.
引用
收藏
页码:259 / 285
页数:27
相关论文
共 31 条
  • [21] Synthesis and deciphering the effects of sintering temperature on structural, elastic, dielectric, electric and magnetic properties of magnetic Ni0.25Cu0.13Zn0.62Fe2O4 ceramics
    Sharifa Nasrin
    Subrin Mostafa Khan
    M. A. Matin
    M. N. I. Khan
    A. K. M. Akther Hossain
    Md. D. Rahaman
    Journal of Materials Science: Materials in Electronics, 2019, 30 : 10722 - 10741
  • [22] Morphology, structural and thermal characterization of nanocrystalline Ni50Cu30(Fe2B)10P10 powders prepared by mechanical alloying
    Slimi, M.
    Sunol, J. J.
    Khitouni, M.
    EUROPEAN PHYSICAL JOURNAL PLUS, 2016, 131 (05):
  • [23] Structural, Mo<spacing diaeresis>ssbauer and magnetic study of (Mn0.2Co0.2Ni0.2Cu0.2X0.2) Fe2O4 (X=Fe, Mg) spinel high-entropy oxides fabricated via reactive flash sintering
    Manchon-Gordon, A. F.
    Almanza-Vergara, G. E.
    Molina-Molina, S.
    Perejon, A.
    Blazquez, J. S.
    Sanchez-Jimenez, P. E.
    Perez-Maqueda, L. A.
    JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2024, 44 (14)
  • [24] Magnetic properties in metal-organic framework compounds [M2(C8H4O4)2•C6H12N2] (M=Cu, Ni, Co)
    Kozlova, Svetlana G.
    Samsonenko, Denis G.
    Tkachenko, Ivan A.
    Slobodyuk, Arseny B.
    Stepnov, Dmitrii A.
    Yunoshev, Alexander S.
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2016, 253 (11): : 2252 - 2256
  • [25] CO2 seawater acidification by CCS-simulated leakage: Kinetic modelling of Zn, Pb, Cd, Ni, Cr, Cu and As release from contaminated estuarine sediment using pH-static leaching tests
    Camino Martin-Torre, M.
    Ruiz, Gema
    Galan, Berta
    Viguri, Javier R.
    INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2016, 54 : 185 - 199
  • [26] Effects of different alloying additives X (X = Fe, Ni, Mn, Co, Si, Nb, W, Cu, Ce, Y) and water on the structural of Cr2O3 film: a first-principles study
    Niu Yanan
    Dong Nan
    Wang Lan
    Wang Haohao
    Han Peide
    Wu Yucheng
    MATERIALS RESEARCH EXPRESS, 2019, 6 (12)
  • [27] Synthesis and analysis of the influence of Eu3+ on the structural, ferromagnetic, dielectric and conductive characteristics of Ni0.4Zn0.45Cu0.15Fe(2-x)EuxO4 composites using conventional double sintering ceramic method
    Esha, I. N.
    Al-Amin, Md.
    Toma, F. T. Z.
    Hossain, Enayet
    Khan, M. N. I.
    Maria, Kazi Hanium
    JOURNAL OF CERAMIC PROCESSING RESEARCH, 2019, 20 (05): : 530 - 539
  • [28] Syntheses and crystal structures of cyano-bridged cluster-metal layered coordination polymers [Cu(dien)]3[W4Te4(CN)12]•9H2O and [Ni(en)(NH3)]3[W4Se4(CN)12]•7.5H2O
    Kalinina, IV
    Virovets, AV
    Dolgushin, FM
    Antipin, MY
    Llusar, R
    Fedin, VP
    INORGANICA CHIMICA ACTA, 2004, 357 (11) : 3390 - 3396
  • [29] Oxygen-driven de-alloying of Fe-14Cr-12Ni-10Mn-3Cu-2.5Al-1Nb austenitic steel at 500 °C in static Pb-Bi eutectic with concentration of dissolved oxygen alternating from ' 10-6 to 10-9 mass% for 10000 h
    Tsisar, Valentyn
    Stergar, Erich
    Gavrilov, Serguei
    Maia, Eloa Lopes
    Van Renterghem, Wouter
    Louette, Pierre
    Lucas, Stephane
    CORROSION COMMUNICATIONS, 2025, 17 : 1 - 11
  • [30] Cluster cyanide-bridged heterometallic coordination polymers:: synthesis and crystal structures of compounds [{Cu2(dien)2(CN)}2{Mo4Te4(CN)12}] •14.5H2O and (H3O)3K[{Mn(H2O)2}2{Mn(H2O)2(NO3)}4{W4Te4(CN)12}2] • 8H2O
    Kalinina, IV
    Samsonenko, DG
    Gerasimenko, AV
    Fedin, VP
    RUSSIAN CHEMICAL BULLETIN, 2004, 53 (10) : 2135 - 2141