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Mechanical Properties Enhancement of Additive Manufactured Ti-6A1-4V by Machine Hammer Peening

机译:机械性能增强加成式加工制造的TI-6A1-4V

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Wire + Arc Additive Manufacturing (WAAM) is a technology potentially offering reduction of material wastage, costs and shorter lead-times. It is being considered as a technology that could replace conventional manufacturing processes of Ti-6A1-4V, such as machining from wrought or forged materials. However, WAAM Ti-6A1-4V is characterized by coarse β-grains, which can extend through several deposited layers resulting in strong texture and anisotropy. As a solution, inter-pass cold rolling has been proven to promote grain refinement, texture modification and improvement of material strength by plastically deforming the material between each deposited layer. Nevertheless, with the increased interest in the WAAM technology, the complexity and size of the deposited parts has increased, and its application can be hindered by the low speed and complex/costly equipment required to perform rolling at this scale. Therefore, Machine Hammer Peening (MHP) has been studied as an alternative cold work process. MHP can be used robotically, offering greater flexibility and speed, and it can be applied easily to any large-scale geometry. Similarly to rolling, MHP is applied between each deposited layer with the new ECOROLL peening machine and, consequently, it is possible to eliminate texturing and reduce the β-grains size from centimeters long to approximately 1 to 2 mm. This effect is studied for thin and thick walls and no considerable change in grain size is observed, proving the applicability of MHP to large components. The yield strength and ultimate tensile strength increases to 907 MPa and 993 MPa, respectively, while still having excellent ductility. This grain refinement may also improve fatigue life and induce a decrease in crack propagation rate. In this study, it has been shown that MHP is a suitable process for WAAM Ti-6A1-4V applications, can be applied robotically and the grain refinement induced by very small plastic deformations can increase mechanical properties.
机译:电线+弧添加制造(WAAM)是一种可能提供物质浪费,成本和较短的递减时间的技术。它被认为是一种可以取代Ti-6a1-4v的传统制造过程的技术,例如从锻造或锻造材料加工。然而,WAAM TI-6A1-4V的特征在于粗β-颗粒,其可以通过几个沉积的层延伸,导致强大的质地和各向异性。作为一种解决方案,通过塑性使每个沉积层之间的材料塑性变形来促进晶粒细化,纹理改性和改善材料强度。然而,随着WAAM技术的兴趣增加,沉积部件的复杂性和尺寸增加,其应用可以通过这种规模执行轧制所需的低速和复杂/昂贵的设备来阻碍。因此,已经研究了机器锤喷头(MHP)作为替代冷水工艺。 MHP可以是机器人使用的,提供更大的灵活性和速度,并且可以容易地应用于任何大规模的几何形状。与类似于轧制,使用新的EcoRoll Peening机器在每个沉积层之间施加MHP,并且因此,可以消除纹理并将β-颗粒尺寸从厘米长到约1至2mm。对薄且厚的墙壁研究了这种效果,观察到晶粒尺寸的显着变化,证明了MHP对大型组分的适用性。屈服强度和极限拉伸强度分别增加至907MPa和993MPa,同时仍具有优异的延展性。这种晶粒细化还可以改善疲劳寿命并诱导裂纹繁殖率的降低。在本研究中,已经表明,MHP是WAAM TI-6A1-4V应用的合适方法,可以机械地应用,由非常小的塑性变形引起的晶粒细化可以增加机械性能。

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