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Vascularization for cooling and reduced thermal stresses

机译:血管化以冷却并降低热应力

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This paper documents the effect of thermal expansion on a vascularized plate that is heated and loaded mechanically. Vascular cooling channels embedded in a circular plate provide cooling and mechanical strength. The coolant enters the plate from the center and leaves after it cools the plate to an allowable temperature limit. The mechanical strength of the plate decreases because of the embedded cooling channels. However, cooling the plate under an allowable temperature level decreases the thermal stresses. The mechanical strength of the plate which is heated and loaded mechanically at the same time can be increased by inserting cooling channels in it. The mechanical and thermofluid behavior of a vascularized plate was simulated numerically. The cooling channel configurations that provide the smallest peak temperature and von Mises stress are documented. There is one cooling channel configuration that is the best for the given set of boundary conditions and constraints; however, there is no single configuration that is best for all conditions.
机译:本文记录了热膨胀对血管化板的影响,该血管化板经过机械加热和加载。嵌入圆形板上的血管冷却通道可提供冷却和机械强度。冷却剂从中心进入板并在将板冷却到允许的温度极限后离开。板的机械强度由于嵌入的冷却通道而降低。但是,将板冷却到允许的温度水平会降低热应力。可以通过在其中插入冷却通道来提高同时被加热和机械加载的板的机械强度。数值模拟了血管化板的力学和热流体行为。记录了提供最小峰值温度和冯·米塞斯应力的冷却通道配置。对于给定的一组边界条件和约束条件,有一个最佳的冷却通道配置;但是,没有一种最适合所有条件的配置。

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