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Numerical modelling of the surface cracking tendency in solidifying ceramic materials

机译:凝固陶瓷材料表面开裂趋势的数值模拟

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EUCOR is a ceramic material resistant to extreme heat and wear. A block made of EUCOR with dimensions of 350 × 200 × 400 mm was used for the numerical calculation and the experiment. The numerical model of the casting block temperature field determines the temperature gradients, the solidification rate and the local solidification time (i.e., the time between the liquidus and solidus temperatures). The local solidification time significantly affects the forming of the pouring structure of the given material and it makes one of the input parameters for the second cooperating chemical heterogeneity model. This model and its application on EUCOR samples prove that the applied measuring method of the chemical heterogeneity provides detailed quantitative information on the material structure and makes possible the analysis of the solidification process. The analysis of this process entails statistical processing of results of the heterogeneity measurements of the EUCOR components and it performs correlation of individual components during the solidification. The model of the chemical heterogeneity enables estimation of the structure parameters at any critical point of castings. The combining of both models makes it possible to estimate the structure parameter, which expresses the size of the crystallites in the resultant material structure. It is a tool for the estimation of the tendency to surface cracking and fracturing tendency at the critical point of casting made of EUCOR.
机译:eUCOR是一种耐热和磨损的陶瓷材料。用尺寸为350×200×400mm的eUCOR制成的块用于数值计算和实验。铸造块温度场的数值模型决定了温度梯度,凝固率和局部凝固时间(即液相率和固态温度之间的时间)。局部凝固时间显着地影响给定材料的浇注结构,并且它成为第二合作化学异质性模型的输入参数之一。该模型及其在eUCOR样品上的应用证明了化学异质性的施加测量方法提供了关于材料结构的详细定量信息,并且可以分析凝固过程。该过程的分析需要统计处理EUCOR组分的异质性测量结果,并且它在凝固过程中进行各个组分的相关性。化学异质性模型能够估计铸件的任何临界点处的结构参数。两种模型的组合使得可以估计结构参数,其表示所得材料结构中的微晶的尺寸。它是估计在eUCOR制成的铸造临界点处的表面裂化和压裂趋势倾向的工具。

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