共 112 条
- [31] Ly S(2017)Effect of process parameters on the surface roughness of overhanging structures in laser powder bed fusion additive manufacturing Addit. Manuf. 13 103-1524
- [32] Rubenchik AM(2020)Influences of processing parameters on surface roughness of Hastelloy X produced by selective laser melting Int. J. Adv. Manuf. Technol. 107 2833-undefined
- [33] Khairallah SA(2019)Surface roughness and densification correlation for direct metal laser sintering Int. J. Adv. Manuf. Technol. 103 4411-undefined
- [34] Guss G(2017)The effect of primary processing parameters on surface roughness in laser powder bed additive manufacturing CIRP Ann. Manuf. Technol. 66 543-undefined
- [35] Matthews MJ(2017)Topography of selectively laser melted surfaces: A comparison of different measurement methods Opt. Eng. 56 111714-undefined
- [36] Qiu C(2019)Optimization of surface measurement for metal additive manufacturing using coherence scanning interferometry Int. J. Fatigue. 124 380-undefined
- [37] Bidare P(2020)The influence of additive manufacturing processing parameters on surface roughness and fatigue life Addit. Manuf. 32 100978-undefined
- [38] Bitharas I(2020)Tracking and controlling the morphology evolution of 3D powder-bed fusion in situ using inline coherent imaging JOM 72 465-undefined
- [39] Ward RM(2020)ICME approach to determining critical pore size of IN718 produced by selective laser melting Addit. Manuf. 36 101552-undefined
- [40] Attallah MM(2018)Defect structure process maps for laser powder bed fusion additive manufacturing J. Mater. Process. Technol. 251 376-undefined