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Significant springback occurs after tube rotary-draw-bending (RDB), especially for a high-strength Ti-3A1-2.5V tube (HSTT) due to its high ratio of yield strength to Young's modulus. The combination scheme of explicit and implicit is preferred to predict the springback. This simulation strategy includes several numerical parameters, such as element type, number of elements through thickness (NEL), element size, etc. However, the influences of these parameters on spring- back prediction accuracy are not fully understood. Thus, taking the geometrical specification 9.525 mm × 0.508 mm ofa HSTT as the objective, the effects of numerical parameters on prediction accuracy and computation efficiency of springback simulation of HSTT RDB are investigated. The simulated springback results are compared with experimental ones. The main results are: (1) solid and continuum-shell elements predict the experimental results well; (2) for C3DSR elements, NEL of at least 3 is required to obtain reliable results and a relative error of 29% can occur as NEL is varied in the range of 1-3; (3) specifying damping factor typically works well in Abaqus/Emplicit simulation of springback and the springback results are sensitive to the magnitude of damping factor. In addition, the explanations of the effect rules are given and a guideline is added. 相似文献
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Ti–15V–3Cr–3Sn–3Al(Ti–15–3), a kind of metastable beta titanium which has high specific strength and good cold-formability, is highlighted for applications in the aerospace manufacture industry. However, the technique for improving its formability at elevated temperatures is still a challenge at present. In this work, a step deformation method is proposed for superplasticity improvement of coarse grained Ti–15–3 plates at temperatures around its beta transus. The effects of the strain rate and the strain at the first stage on the superplasticity are investigated. The results show an increase of the strain rate sensitivity and a decrease of the flow stress under the step deformation mode compared to those obtained under constant strain rates at 780℃. The maximum strain to failure obtained in the step mode is 93% higher than that deformed in the constant strain rate mode. Strain rates, strains at the first stage, and temperatures have influences on the superplasticity improvement. The deformation mechanism is concluded as subgrain formation accommodated by grain boundary sliding rate-controlled by dislocation climb. The improved m value in the step deformation is accounted to the extra dislocation density produced during the strain rate reduction. 相似文献
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针对钛合金钣金件冷加工成形精度低、热成形机成形成本高的问题,提出一种采用脉冲电流辅助热压成形工艺。以TC1钛合金U型件为对象,研究了脉冲电流辅助热压成形工艺对钛合金钣金件的缺陷、尺寸精度及力学性能的影响。结果表明,脉冲电流加热可提高成形效率,当脉冲电流密度为9.2A/mm^2,合模速度为15mm/s时,补偿了成形过程的热量损失,使钛合金钣金件保持在良好的成形温度区间,增加其成形极限,得到零件表面质量良好、无裂纹。在成形过程中,随着成形压力、保压时间、模具预热温度的升高,零件的尺寸精度逐渐提高,当成形压力10t、保压时间10s、模具不预热时,零件的尺寸精度即可达到±0.2mm。脉冲电流辅助热压成形后零件的晶粒尺寸比热成形机成形的细小,且力学性能也较好。 相似文献
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