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首页> 外文期刊>Journal of Materials Processing Technology >Texture evolution and controlling of high-strength titanium alloy tube in cold pilgering for properties tailoring
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Texture evolution and controlling of high-strength titanium alloy tube in cold pilgering for properties tailoring

机译:纹理剪裁冷桩中高强度钛合金管的纹理演化与控制

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As one of the preferred fabrication technologies for high-strength titanium alloy tubes, cold pilgering has unique advantages of large deformation, fine surface, and close dimensional tolerance since materials are incrementally experiencing compressive stress states dominated local loading throughout entire rolling process. However, both complex external loading history and low symmetric hexagonal close-packed (HCP) crystal structure induce heavy crystallographic reorientation of polycrystalline significantly influencing formability and performance of titanium tubular products. How to achieve a bespoken tailoring of texture related properties is still a challenge. Accordingly, taking high-strength Ti-3A1-2.5 V tubes as the case material, this study focuses on the tube texture evolution and the texture controlling guidelines for properties tailoring in cold pilgering. By coupling validated and verified three dimensional finite element (3D-FE) model and viscoplastic self-consistent (VPSC) crystal plasticity model, a macro-meso scaled computation platform is established to predict the inhomogeneous deformation flow and texture evolution during pilgering. Then the tube texture evolution characteristics along rolling process with three typical initial textures are investigated, and the correlation between texture evolution and spatial inhomogeneous deformation allocation is explored, in which the deformation history is fully featured by strain vector, viz., strain ratio alpha and equivalent plastic strain epsilon(e) as well as ratios of wall thickness thinning to outer diameter reduction (total Q value and transient Q value). Taking the contractile strain ratio (CSR) as the most important indicator for evaluating the texture and properties, the effect of final texture features of the tube on its tensile mechanical properties is revealed, and then the texture controlling guidelines for properties tailoring of the tube are proposed. To obtain the desired near radial texture and the reasonable CSR, the different pass rolling specifications can be considerably designed to coordinate the spatial strain components based on reasonable range of total Q value and epsilon(e), then the rolling tools can be designed for further fine tuning of the transient Q value and strain ratio alpha.
机译:作为优选的制造技术对于高强度钛合金管中的一个,冷皮尔格式轧管具有大的变形,细的表面,并靠近尺寸公差的独特优点,因为材料是递增地经历支配整个整个轧制过程中局部加载的压缩应力的状态。然而,这两种复杂的外部加载历史和低对称六方密堆积(HCP)晶体结构的多晶诱发的重结晶再取向显著影响可成形性和的钛管状产品的性能。如何实现bespoken纹理相关性的剪裁仍然是一个挑战。因此,服用高强度的Ti-3A1-2.5 V管作为外壳材料,本研究的重点是管纹理进化和纹理控制用于性质冷皮尔格式轧管剪裁准则。通过耦合确认和验证三维有限元(3D-FE)模型和粘塑性自洽(VPSC)晶塑性模型,宏 - 内消旋比例的计算平台建立预测皮尔格式轧管时的不均匀变形流动和纹理进化。然后沿着具有三个典型初始纹理轧制过程中管纹理演变特征进行了研究,并且织构和空间不均匀变形分配之间的相关性进行了探索,其中,所述变形历史完全由应变向量,即,应变比α和功能等效塑性应变(ε)以及壁厚减薄到外直径减小(总Q值和瞬时Q值)的比率。以收缩应变比(CSR)作为最重要的指标进行评价质地和性能,最终纹理的效果上其拉伸机械性能的管的特征被揭示,然后纹理控制准则属性剪裁管是建议的。以获得所需的邻近放射状纹理和合理CSR,不同的光轧规格可大幅度设计基于总Q值和(ε)的合理范围内的坐标的空间的应变分量,则滚动工具可以被设计成用于进一步瞬态Q值和应变比的α微调。

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