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Parameter-process-structure relationships of stray grains (SGs) formation in laser direct energy deposition of single crystal (SX) superalloy
Li ZY(李志永)
Source PublicationJournal of Manufacturing Processes
2024-09
Volume131Pages:382-400
Abstract

Laser Direct Energy Deposition (LDED) emerges as a promising technology to repair damaged single crystal (SX) superalloy components with superior properties due to its high efficiency and good precision. However, stray grains (SGs) are still the major challenges that compromise repair quality though multiple techniques have been explored. The current work delves into understanding and mitigating SGs by physically elucidating the Parameter-Process-Structure (PPS) relationships. The Parameter-Process relationship is revealed by discussing the semicircular-to-undulating shape transition (SUT) under various parameter sets, probing the natural tendency of SX superalloy towards SGs through dimensional analysis and modeling the parameter-induced transitions in flow dynamics. The Process-Structure correlation is next derived by researching the oriented-to-misoriented transition (OMT) through transient thermal analysis regarding solidification and predicting the SGs fraction using high-fidelity simulation. The proposed PPS relationships in laser remelting are further confirmed in LDED by physically connecting the correlations between parameter variation-melt pool dynamics-SGs formation. It is revealed the melt pool of SX superalloy naturally shows susceptibilities of undulating shape and its boundary is controlled by thermal advection. The undulation is prone to being formed under higher heat energy input as the enhanced flow instability and the increased flow intensity characterized by the number and the intensity of inside vortex. SGs are sensitive to the undulating melt pool due to the inflection-induced increment in solidification angle and SGs fraction shows a significant increase with energy input. The obtained PPS physics work for both the laser remelting and LDED though the process complexity has been greatly raised by the powder stream and provide insights into the parameter optimization, process adjustment, and quality improvement for the laser repairing of SX superalloy-manufactured parts.

KeywordSingle crystal superalloy Stray grain formation Multiphysics modeling Laser direct energy deposition 3D printing and additive manufacturing
DOI10.1016/j.jmapro.2024.09.003
Indexed BySCI ; EI
Language英语
WOS IDWOS:001318190300001
Classification二类
Ranking1
Citation statistics
Cited Times:1[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/96363
Collection空天飞行科技中心
AffiliationInstitute of Mechanics, Chinese Academy of Sciences
Recommended Citation
GB/T 7714
Li ZY. Parameter-process-structure relationships of stray grains (SGs) formation in laser direct energy deposition of single crystal (SX) superalloy[J]. Journal of Manufacturing Processes,2024,131:382-400.
APA Li ZY.(2024).Parameter-process-structure relationships of stray grains (SGs) formation in laser direct energy deposition of single crystal (SX) superalloy.Journal of Manufacturing Processes,131,382-400.
MLA Li ZY."Parameter-process-structure relationships of stray grains (SGs) formation in laser direct energy deposition of single crystal (SX) superalloy".Journal of Manufacturing Processes 131(2024):382-400.
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