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SURFACE COMPOSITE GEAR AND PIPE MADE BY SEPARATED EUTECTIC TECHNOLOGY

Z.Q. Cao , L. Y Piao , X.G. Zhang , Z. Li and J.Z. jin(Research Center of Foundry Engineering , Dalian University of Technology , Dalian 116024 , China)

金属学报(英文版)

It is found that the anomalous eutectics can be separated on macroscopic scale by flow caused by electromagnetic stirring, and the separated phase is the leading faceted phase with the solution entmpy over 23J/(mol.K). By using this technology, a new kind of composite pipe ond gear with good abrasive properties are made without adding any reinforced particles. Emphases are paid on the researehes about formation mechanism of seporated eutectic and abrasive property of the composite pipe or gear. The result shows that the entropy of solution controlling the eutectic microstructure is also valid and useful as a criterion of separated eutectic, and the kind and its chemical scope of the off-eutectic used to make composite can be calculated accoofing to this theory.

关键词: composite pipe or gear , null , null , null

First Cycle Effect of Polycrystalline CuZnAl Shape Memory Alloy during Thermal-Mechanical Cycling

Wenge LIU+ , Min ZHU , Dazhi YANG , Dept. of Materials Engineering , Dalian University of Technology , Dalian , 116024 , ChinaZhongguang WANG , State Key Laboratory for Fatigue and Fracture of Materials , Institute of Metal Research , Academia Sinica , Shenyang , 11001

材料科学技术(英文)

The thermal-mechanical (T-M) cycles at constant strain of a polycrystalline CuZnAl alloy have been studied in the. present work. In-situ optical microscopic observations have been made to reveal the features of the phase transitions during T-M cycling. The variation of stress-temperature (S-T) curves and electrical resistance-temperature (R-T) curves accompanying with T-M cycling have been measured by tensile test and electrical resistance measurements. It has been found that the polycrystalline CuZnAl alloy shows apparent morphology changes and properties variations in the first cycle during T-M cycling which is called the first cycle effect in the present work. The stable transformation procedure in the T-M cycle is: martensiteparent phase +residual acicular martensite. This residual martensite possesses the character of stress-induced martensite.

关键词: CuZnAl shape memory alloy , null , null

CALCULATION OF 3-D TRANSIENT TEMPERATURE FIELD DURING LASER TRANSFORMATION HARDENING PROCESS

L. W Zhang , R.S. Wang , J. Th.M.De Hosson , Y.L. Xia and F. G. Wang 1) The State Key Lab. for Materials Modification by Laser , Ion and Electron Beams , Dalian University of Technology , Dalian 116023 , China 2) Department of Applied Physics , University of Groningen , The Netherlands

金属学报(英文版)

A three-dimensional transient heat transfer model for laser transformation hardening process has been developed in this paper. The finite size of the laser treated sample, the surface heat loss of the sample, the latent heat of phase transformation and the temperature dependence of thermal properties of materials were considered. The heat source was considered as a moving Gaussian heat flux with a constant velocity. Three-dimension unequally spatial grid explicit finite difference equations, alternating direction implicit finite difference equations and implicit finite difference equations were deduced respectively. Three programs to calculate the temperature field were developed using Fortran language. The transient temperature fields of C22, 42CrMo, C60 steel samples during laser transformation hardening process were calculated using these programs, and the widths and depths of laser transformation hardening zones were also predicted. C22, 42CrMo, C60 steel samples were treated by CO_2 laser,the widths and depths of laser transformation hardening zones of these samples were also measured experimentally. The calculated widths and depths of laser transformation hardening zones are in good agreement with the experimental results.

关键词: temperature field , null , null

SUPERPLASTICITY OF A Ni-28.5Al-20.4Fe INTERMETALLIC ALLOY

W. L. Zhou , J. T. Guo , R.S. Chen and J. Y Zhou(Institute of Metal Research , The Chinese Academy of Sciences , Shenyang 110015 , China)(Department of Materials Engineering , Dalian University of Technology , Dalian 116024 , China)

金属学报(英文版)

Our previous investigation examines the soperplastic behavior of an extruded Ni-28.5Al-20.IFe alloy. Its tensile properties were determined at temperature from 1123Kto 1323K and initial strain rates from 1.0{x 10-2s-1 to 1.04x 10-4s-1. A maximumelongation of 233K was obtained at 1123K and a strain rate Oj 5.2x 10-4s-1. Fur-thermore, microstructural features, such a8 decrease in the avempe gmin Bize afier de-formation at 85dC and 98dC the presence oj many dislocationthee gmins adjacentto grains with a high dislocation density, indicate that dynamic recrystallization hasoccuwed as an decient accotnmodation mechanism. SEM examination Of the fracturesample afier saperplastic defOrmation revealS many voids on the hecture sudece. Bycoerelating with the results Oj TEM observation, it is sopested that the soperplasticdejormation in this alloy should be controlled by a gmin boundarp sliding-based mech-anism accommodated by the movement oj dislocation and dynamic recrpstallization.

关键词: Ni-Al-Fe intermetallics , null

CALCULATION OF RESIDUAL STRESS FIELD IN LASER TRANSFORMATION HARDENED MoCu NODULAR IRON

L. W. Zhang , J. Th.M.De Hosson , Y.L. Xia and F. G. Wang 1)The State Key Lab. for Materials Modification by Laser , Ion and Beams , Dalian University of Technology , Dalian 116023 , China 2)Department of Applied Physics , University of Froningen , The Netherlands

金属学报(英文版)

In this paper,a thermal elastic-plastic 2-D finite element model of stress generation during laser transformation hardening process was developed. In this model, the mechanical properties of the material, Young's modules E, Poisson's ratio v, yield limit s, and thermal expansion coefficient α, are all change with temperature. The equivalent expansion method was used to deal with the problem with phase transformation. Based on this model, a program to calculate the residual stress field was developed using FORTRAN language. The residual stress fields in CO2 laser transformation hardened MoCu nodular iron were calculated. The calculated results showed that in the transformation hardened zone, the residual stress state is compress,whereas adjacent to this zone the residual stress state is tensile, and there is a tensile stress peak close to the transformation hardened zone. To verify this model, the residual stress fields were measured using X-ray diffraction method. The calculated results of residual stress fields are in good agreement with the experimental results.

关键词: laser , null , null , null , null

SYNTHESIS OF NANO-METER TiAl INTERMETALLIC COMPOUND THROUGH MECHANICAL ALLOYING

M.Qi , L.S.Cui and D.Z.Yang(D Engineering , Dalian University of Technology , Dalian 116024 , China Manuscript received 26 August 1996)

金属学报(英文版)

The transformation process of mixture of elemental Al and Ti powders during mechanical alloying was investigated.Results show that Al-Ti amorphous phase and then TiAl intermetallic compound form.The TiAl intermetallic compound produced by mechanical alloying is nanocrystalline with disordered structure.

关键词: :TiAl intermetallic , null

Positron Annihilation Study of the Quenched-in Vacancies in CuZnAl Alloys

Zhongguo WEI and Dazhi YANG (Dept. of Materials Engineering , Dalian University of Technology , Dalian , 116024 , China)

材料科学技术(英文)

The excess vacancies in ternary CuZnAl and Ti-doped CuZnAl alloys quenched from temperatures between 673 K and 1223 K, and the behaviour of the quenched-in vacancies on postquench aging in martensite phase have been studied by Doppler broadening measurements. It has been found that adding Ti to the alloys resuIts in the formation of vacancy-Ti solute atom complexes which lowers the mobility of the vacancies. In the Ti-free alloy, the prominent changes in the lineshape S-parameter during the early stage of martensite aging have evidenced the occurrence of vacancy migration to sinks, clustering or vacancy related atomic distortion. The role of the vacancies in martensite stabilization has been discussed

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