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Cited by 6 publications
(2 citation statements)
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References 29 publications
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“…Z. H. Zhang et al [13] reported that the iron-base PM alloy parts with high performance and high density were obtained by the combination of HVC and powder annealing. K. Q. Zhang et al [14] explored a data-driven model for green density prediction by the multilayer perceptron algorithm and optimised the processing parameters of HVC-based metallic powders. D. D. You et al [15] reported that a green compact with a 98% relative density is produced using pure iron powders with HVC.…”
Section: Introductionmentioning
confidence: 99%
“…Z. H. Zhang et al [13] reported that the iron-base PM alloy parts with high performance and high density were obtained by the combination of HVC and powder annealing. K. Q. Zhang et al [14] explored a data-driven model for green density prediction by the multilayer perceptron algorithm and optimised the processing parameters of HVC-based metallic powders. D. D. You et al [15] reported that a green compact with a 98% relative density is produced using pure iron powders with HVC.…”
Section: Introductionmentioning
confidence: 99%
“…High impact energy was achieved by modifying the existing equipment, and the hydraulic control system was developed to implement automatic control of the energy produced from the disc springs [28]. Zhang et al proposed a machine-learning approach based on materials informatics to predict the green density of compacts using relevant material descriptors, including chemical composition, powder properties, and compaction energy [29]. During the HVC, rapid hammer impacts on powder particles produced very high pressure [26], and the contact area among the powders increased.…”
Section: Introductionmentioning
confidence: 99%