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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of scanning strategy and speed on the microstructure and mechanical properties of selective laser melted IN718 nickel-based superalloy
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Effect of scanning strategy and speed on the microstructure and mechanical properties of selective laser melted IN718 nickel-based superalloy

机译:扫描策略和速度对选择性激光熔化的微观结构和力学性能的影响IN718镍基超合金

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摘要

In the present study, the properties of selective laser melted IN718 superalloy specimens, prepared by using different processing parameters, were investigated. The scanning strategy (island strategy with and without 30 degrees interlayer rotation and continuous bi-directional scanning with and without 90 degrees interlayer rotation) and scanning speeds of 500, 700, and 1000mm/s were selected as variables to prepare the superalloy samples. Then, the microstructure and mechanical properties (hardness and compressive strength) were characterized. The results showed, in a given scanning strategy, the density decreases as the scanning speed increases. Also, the island strategy with interlayer rotation during fabrication process leads to a higher level of density (near full density, about 8.20g/cm3). Interlayer rotation resulted in a more uniform structure by re-melting of deposit layers in different directions during deposition of next layers in both scanning strategies. The higher values of hardness and compressive yield strength were obtained from the samples produced using continuous scanning strategy. Among the investigated samples, the sample produced with continuous scanning strategy with 90 degrees interlayer rotation, 500mm/s scanning speed has the highest value of hardness, 330 Vickers, and compressive yield strength, 686MPa.
机译:在本研究中,研究了通过使用不同的加工参数制备的选择性激光熔化的选择性激光的性质。的扫描策略和500的扫描速度,700(有和没有夹层旋转和连续双向扫描30度和无夹层的旋转90度岛策略),和千毫米/ s的被选择作为变量来制备超合金样品。然后,表征了微观结构和机械性能(硬度和抗压强度)。结果显示,在给定的扫描策略中,随着扫描速度的增加,密度降低。此外,在制造过程中具有层间旋转的岛策略导致更高的密度水平(近全密度,约8.20g / cm 3)。在扫描策略中,在不同方向上在不同方向上重新熔化沉积层的层间旋转导致更均匀的结构。从使用连续扫描策略生产的样品获得的硬度和压缩屈服强度越高。在研究的样品中,用连续扫描策略产生的样品具有90度层间旋转,500mm / s扫描速度具有最高的硬度,330维氏,和压缩屈服强度,686MPa。

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