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Particle Dynamics and Heat Transfer at Workpiece Surface in Heat Treatment Fluidised Beds

机译:热处理床中工件表面的粒子动力学和传热

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The particle behaviour in a heat treatment fluidised bed was studied by the analysis of particle images taken with a high speed CCD digital video camera. The comparison of particle dynamics was performed for the fluidised beds without part, with single part and with multi-parts. The results show that there are significant differences in particle behaviours both in different beds and at different locations of part surfaces. The total and radiative heat transfer coefficients at different surfaces of a metallic part in a fluidised bed were measured by a heat transfer probe developed in the present work. The structure of the probe was optimized with numerical simulation of energy conservation for measuring the heat transfer coefficient of 150-600 W/m~(2)K. The relationship between the particle dynamics and the heat transfer was analysed to form the basis for future more rational designs of fluidised beds as well as for improved quality control.
机译:通过用高速CCD数字摄像机拍摄的粒子图像进行了热处理流化床中的颗粒行为。为流化床进行颗粒动力学的比较,无需部分,用单一部分和多部件进行。结果表明,不同床和零件表面的不同位置存在显着差异。通过在本作工作中开发的传热探针测量流化床中金属部分的不同表面的总和辐射传热系数。优化了探针的结构,用节能的数值模拟测量150-600W / m〜(2)k的传热系数。分析了粒子动力学与传热之间的关系,以形成未来的流化床更合理设计的基础以及改善的质量控制。

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