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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The effects of billet temperature on compound extrusion of magnesium alloy by three-dimensional finite element modeling and experiments
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The effects of billet temperature on compound extrusion of magnesium alloy by three-dimensional finite element modeling and experiments

机译:坯料温度对镁合金复合挤压的三维有限元建模与实验影响

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摘要

Extrusion-shearing of magnesium billets is associated with large deformations, high strain rates and high temperatures, which could result in many difficulties in process. Thermo-mechanically coupled three-dimensional finite element simulations of extrusion-shearing wrought magnesium alloy AZ31 into small rods at certain speed have been performed, and computed parameters including workpiece material characteristics and process conditions (billet preheated temperature, extrusion ratio, ram speed, friction factors and heat transfer coefficients) have been taken into consideration. The temperatures and stress and strain rates of extrudates with different billet preheated temperature have been calculated by finite element method software DEFORM-3D. A series of extrusion-shearing experiments and microstructure observations have been done to perform tests in order to validate the finite element method simulation results at different preheated temperatures of billets. Surface defects of rods for magnesium alloys extruded by the extrusion-shearing extrusion have been observed and analyzed. The influences of preheated temperature on the microstructures and the causes have been given. Finite element method software DEFORM-3D has been used successfully to simulate the temperatures and stress and strain rates under three different extrusion conditions. The results of these simulations helped to understand the formation of surface defects in the surface of extrusion-shearing rods. These results could assist in improving quality of extrusion-shearing extrusion.
机译:镁锭的挤压剪切与大变形,高应变速率和高温相关,这可能会导致许多加工困难。进行了将锻造的镁合金AZ31以一定速度挤压剪切成小棒的热力耦合三维有限元模拟,并计算了包括工件材料特性和工艺条件在内的参数(坯料预热温度,挤压比,冲头速度,摩擦力)系数和传热系数)已被考虑在内。通过有限元方法软件DEFORM-3D计算出了具有不同坯料预热温度的挤出物的温度,应力和应变率。为了验证在不同的钢坯预热温度下的有限元方法模拟结果,已经进行了一系列的挤压剪切实验和微观结构观察以进行测试。观察并分析了通过剪切剪切挤压法挤压出的镁合金棒材的表面缺陷。给出了预热温度对组织的影响及其原因。有限元方法软件DEFORM-3D已成功用于模拟三种不同挤压条件下的温度以及应力和应变率。这些模拟的结果有助于了解挤压剪切杆表面的表面缺陷的形成。这些结果可以帮助提高挤出-剪切挤出的质量。

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