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Comparison of residual stresses in sand- and chill casting of ductile cast iron wind turbine main shafts

机译:韧性铸铁风力涡轮机主轴砂和冷却铸件残余应力的比较

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In this work, simulations of pouring, solidification and cooling, and residual stress evolution of sand and chill cast wind turbine main shafts is performed. The models are made in the commercial software MAGMAsoft. As expected, the cooling rate of the sand casting is shown to be much lower than for the chill casting, resulting in a very course microstructure. From the simulations the nodule count is found to be 17 nodules per mm2 and 159 nodules per mm2 for the sand and chill casting, respectively, in the critical region of the main bearing seat. This is verified from nodule counts performed on the real cast main shafts. Residual stress evaluations show an overall increase of the maximum principal stress field for the chill casting, which is expected. However, the stresses are found to be in compression on the surface of the chill cast main shaft, which is unforeseen.
机译:在这项工作中,进行了浇注,凝固和冷却的仿真,砂和冷却铸造风力涡轮机主轴的剩余应力演化。该模型是在商业软件磁场的。如预期的那样,砂铸件的冷却速率显示出低于冷却铸件的冷却速率,从而产生非常的微观结构。从模拟中,发现结节计数为27个Nodules,分别为砂和冷却铸造的每个MM2和159个结节,在主轴承座的临界区域中。这通过对真实铸造主轴执行的结节计数来验证。残余应力评估显示了寒冷铸造的最大主应力场的总体增加,预期的速度为预期。然而,发现应力在冷却铸造主轴的表面上压缩,这是不可预见的。

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