会议论文详细信息
5th ModTech International Conference - Modern Technologies in Industrial Engineering
New method of processing heat treatment experiments with numerical simulation support
Kik, T.^1 ; Moravec, J.^2 ; Novakova, I.^2
Silesian University of Technology, Konarskiego 18a Street, Gliwice
44-100, Poland^1
Technical University of Liberec, Studentská 2, Liberec
461 01, Czech Republic^2
关键词: Comparison standard;    Computational model;    Cooling conditions;    Distribution of temperature;    Metallurgical phasis;    Method of processing;    Stresses distribution;    Temperature dependence;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/227/1/012069/pdf
DOI  :  10.1088/1757-899X/227/1/012069
来源: IOP
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【 摘 要 】
In this work, benefits of combining modern software for numerical simulations of welding processes with laboratory research was described. Proposed new method of processing heat treatment experiments leading to obtaining relevant input data for numerical simulations of heat treatment of large parts was presented. It is now possible, by using experiments on small tested samples, to simulate cooling conditions comparable with cooling of bigger parts. Results from this method of testing makes current boundary conditions during real cooling process more accurate, but also can be used for improvement of software databases and optimization of a computational models. The point is to precise the computation of temperature fields for large scale hardening parts based on new method of temperature dependence determination of the heat transfer coefficient into hardening media for the particular material, defined maximal thickness of processed part and cooling conditions. In the paper we will also present an example of the comparison standard and modified (according to newly suggested methodology) heat transfer coefficient data's and theirs influence on the simulation results. It shows how even the small changes influence mainly on distribution of temperature, metallurgical phases, hardness and stresses distribution. By this experiment it is also possible to obtain not only input data and data enabling optimization of computational model but at the same time also verification data. The greatest advantage of described method is independence of used cooling media type.
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