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Modelling Heat Transfer Efficiency in Forced Convection Reflow Ovens

机译:强制对流回流焊炉中的传热效率建模

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The investigation of the forced convection heating efficiency in reflow soldering environment and its necessity was presented in our paper. The calculations are based on the mass stream changes on the surface of the circuit, which have high impact on the convection constant. But all important stream variables (scalar space of the density, vector space of the speed, rotation etc.) were studied. The properties of the stream are studied separately: first until it reaches the circuit (laminar phase), then it reaches the circuit and the stream becomes radial (transition phase), and finally the stream on the surface of the circuit (radial phase). From the aspect of the forced convection efficiency the arrangement and the size of the components have high importance, so these circumstances are also taken into consideration. Finally, it was proven that the convection constant and the efficiency of force convection heating can be changed from side to side on the components. This effect can cause reflow soldering failures.
机译:本文介绍了对回流焊接环境中强制对流加热效率的研究及其必要性。该计算基于回路表面的质量流变化,这对对流常数有很大影响。但是研究了所有重要的流变量(密度的标量空间,速度的矢量空间,旋转等)。分别研究流的性质:首先直到流到达回路(层流相),然后到达流,然后流变为径向(过渡相),最后流到回路表面(径向相)。从强制对流效率的角度来看,组件的布置和尺寸非常重要,因此也要考虑这些情况。最后,证明了对流常数和强制对流加热的效率可以在组件上左右改变。这种影响会导致回流焊接失败。

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