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A simulation study on deformation behavior of IN690 super alloy tube during hot extrusion process

机译:IN690超级合金管热挤压过程中变形行为的模拟研究

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摘要

Based on the results of isothermal compression test of IN690 super alloy for constitutive relationship and ring compression test for interface friction factor, a finite element model for Ni-based super alloy IN690 tube during hot extrusion process is established by using DEFORM-2D. High temperature, high speed and high load are considered in the model. Extrusion load in steady process for the typical size is in good agreement with the measured result. The extrusion load, billet temperature field, stress field, strain field and the strain rate field during deformation process are obtained. Simulation results show that extrusion process can be divided by upsetting, filling, steady-state extrusion and end-stage extrusion. Little change of temperature occurs in upsetting and filling stages extrusion. The maximum temperature increase of billet appears at peak load and stable value 50°C is obtained in steady-state extrusion. Temperature decrease of billet rises up as extrusion process goes on. The maximum of equivalent strain appears at peak load. The maximum equivalent stress increases rapidly to a peak value in initial stage, and rises up slowly in steady-state extrusion process. Equivalent strain and equivalent strain rate keep unchanged in steady-state extrusion.
机译:基于IN690高温合金本构关系的等温压缩试验和界面摩擦系数的环形压缩试验的结果,利用DEFORM-2D建立了镍基高温合金IN690管材热挤压过程的有限元模型。该模型考虑了高温,高速和高负荷。稳定过程中典型尺寸的挤出载荷与测量结果吻合良好。得到了变形过程中的挤压载荷,钢坯温度场,应力场,应变场和应变率场。仿真结果表明,挤压过程可以分为up粗,填充,稳态挤压和末级挤压。在up粗和填充阶段挤出时温度变化很小。坯料的最大温升出现在峰值载荷下,并且在稳态挤压下获得稳定值50°C。随着挤压过程的进行,坯料的温度下降上升。等效应变的最大值出现在峰值载荷下。最大当量应力在初始阶段迅速增加到峰值,而在稳态挤压过程中缓慢上升。稳态挤压时的等效应变和等效应变率保持不变。

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