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Numerical simulation of die-casting mold filling process by using fractional step method

机译:分步法压铸模具充型过程的数值模拟

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In the numerical simulation of mold filling process, the calculation efficiency has been a key point for practical applications due to the complexity and thin-section of die castings. In current research work, a fractional step method was applied in the solution of the unsteady Navier-Stokes equations, which can be implemented with a single solution to the momentum/pressure equations at each time step. This method may avoid the decrease in efficiency induced by iteration. A water analog system was designed and developed to simulate the die casting process. The flow patterns were recorded by a high speed camera with a capturing rate of 500 frames per second. The simulation results were consistent with the experimental ones. Besides, the fluid flow patterns of several components were simulated by the fractional step and VOF algorithm, and the SOLA-VOF algorithm respectively. The simulation results showed that the combination of the fractional step method and VOF method can improve the computational efficiency to some extent in numerical simulation of mold filling process.
机译:在压铸过程的数值模拟中,由于压铸件的复杂性和薄截面,计算效率已成为实际应用的关键点。在当前的研究工作中,分数步法被应用于非稳态Navier-Stokes方程的解,可以在每个时间步上对动量/压力方程进行单个解。该方法可以避免由迭代引起的效率降低。设计并开发了水模拟系统以模拟压铸过程。用高速摄像机以每秒500帧的捕获速率记录流型。仿真结果与实验结果吻合。此外,分别用分数步法和VOF算法以及SOLA-VOF算法模拟了几种组分的流体流动模式。仿真结果表明,分数步法与VOF法相结合可以在一定程度上提高模具填充过程的数值计算效率。

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