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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of process parameters on microstructural variables of a commercial TC6 titanium alloy disc
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Effect of process parameters on microstructural variables of a commercial TC6 titanium alloy disc

机译:工艺参数对商用TC6钛合金圆盘微观结构变量的影响

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The interaction between the deformation behaviour and the microstructure evolution is the main characteristic in the forging process of titanium alloy and this interaction is researched using finite element (FE) simulation. Coupled simulation of deformation behaviour with microstructure evolution has been carried out by means of a new constitutive equation presented by Li et al. (Mater. Sci. Technol., 2004, 20, 1256-1260). The effect of deformation temperature, hammer velocity, height reduction and shear factor on the microstructure variables, including grain size and volume fraction, has been studied in the forging process of the TC6 titanium alloy disc with deformation temperatures of 880-940 deg C, hammer velocities of 1.2-12 000 mm min~(-1) and shear factor (m) of the friction of 0.1-0.4. The simulated results show that deformation temperature, hammer velocity and height reduction have a significant effect on the microstructure evolution and this effect is more significant on the microstructure evolution in hot forging than that in isothermal forging. The simulated results are in good agreement with the experimental results.
机译:变形行为与组织演变之间的相互作用是钛合金锻造过程中的主要特征,并使用有限元(FE)模拟研究了这种相互作用。借助Li等人提出的新的本构方程,对变形行为与微观结构演化进行了耦合模拟。 (材料科学技术,2004,20,1256-1260)。在变形温度为880-940℃的TC6钛合金圆盘的锻造过程中,研究了变形温度,锤击速度,高度减小和剪切因子对微观结构变量(包括晶粒尺寸和体积分数)的影响,锤击速度为1.2-12 000 mm min〜(-1),剪切系数(m)为0.1-0.4。仿真结果表明,变形温度,锤击速度和高度减小对组织的演变具有显着影响,并且这种影响对热锻件的组织演变比等温锻造更为显着。仿真结果与实验结果吻合良好。

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