Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure

Purpose – This paper is devoted to prepare micro-cone structure with variable cross-section size by Stereo Lithography Appearance (SLA)-based 3D additive manufacturing technology. It is mainly focused on analyzing the forming mechanism of equipment and factors affecting the forming quality and accur...

وصف كامل

التفاصيل البيبلوغرافية
الحاوية / القاعدة:Journal of Intelligent Manufacturing and Special Equipment
المؤلفون الرئيسيون: Chongjun Wu, Yutian Chen, Xinyi Wei, Junhao Xu, Dongliu Li
التنسيق: مقال
اللغة:الإنجليزية
منشور في: Emerald Publishing 2024-08-01
الموضوعات:
الوصول للمادة أونلاين:https://www.emerald.com/insight/content/doi/10.1108/JIMSE-10-2023-0009/full/pdf
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author Chongjun Wu
Yutian Chen
Xinyi Wei
Junhao Xu
Dongliu Li
author_facet Chongjun Wu
Yutian Chen
Xinyi Wei
Junhao Xu
Dongliu Li
author_sort Chongjun Wu
collection DOAJ
container_title Journal of Intelligent Manufacturing and Special Equipment
description Purpose – This paper is devoted to prepare micro-cone structure with variable cross-section size by Stereo Lithography Appearance (SLA)-based 3D additive manufacturing technology. It is mainly focused on analyzing the forming mechanism of equipment and factors affecting the forming quality and accuracy, investigating the influence of forming process parameters on the printing quality and optimization of the printing quality. This study is expected to provide a µ-SLA surface preparation technology and process parameters selection with low cost, high precision and short preparation period for microstructure forming. Design/methodology/approach – The µ-SLA process is optimized based on the variable cross-section micro-cone structure printing. Multi-index analysis method was used to analyze the influence of process parameters. The process parameter influencing order is determined and validated with flawless micro array structure. Findings – After the optimization analysis of the top diameter size, the bottom diameter size and the overall height, the influence order of the printing process parameters on the quality of the micro-cone forming is: exposure time (B), print layer thickness (A) and number of vibrations (C). The optimal scheme is A1B3C1, that is, the layer thickness of 5 µm, the exposure time of 3000 ms and the vibration of 64x. At this time, the cone structure with the bottom diameter of 50 µm and the cone angle of 5° could obtain a better surface structure. Originality/value – This study is expected to provide a µ-SLA surface preparation technology and process parameters selection with low cost, high precision and short preparation period for microstructure forming.
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spelling doaj-art-d253bd2005d64df39a5f6ed0a95f1e502025-08-20T01:05:56ZengEmerald PublishingJournal of Intelligent Manufacturing and Special Equipment2633-65962633-660X2024-08-015120322010.1108/JIMSE-10-2023-0009Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structureChongjun Wu0Yutian Chen1Xinyi Wei2Junhao Xu3Dongliu Li4College of Mechanical Engineering, Donghua University, Shanghai, ChinaSaic Volkswagen Automobile Co. LTD, Shanghai, ChinaCollege of Mechanical Engineering, Donghua University, Shanghai, ChinaDonghua University, Shanghai, ChinaSicher Elevator Co., Ltd., Huzhou, ChinaPurpose – This paper is devoted to prepare micro-cone structure with variable cross-section size by Stereo Lithography Appearance (SLA)-based 3D additive manufacturing technology. It is mainly focused on analyzing the forming mechanism of equipment and factors affecting the forming quality and accuracy, investigating the influence of forming process parameters on the printing quality and optimization of the printing quality. This study is expected to provide a µ-SLA surface preparation technology and process parameters selection with low cost, high precision and short preparation period for microstructure forming. Design/methodology/approach – The µ-SLA process is optimized based on the variable cross-section micro-cone structure printing. Multi-index analysis method was used to analyze the influence of process parameters. The process parameter influencing order is determined and validated with flawless micro array structure. Findings – After the optimization analysis of the top diameter size, the bottom diameter size and the overall height, the influence order of the printing process parameters on the quality of the micro-cone forming is: exposure time (B), print layer thickness (A) and number of vibrations (C). The optimal scheme is A1B3C1, that is, the layer thickness of 5 µm, the exposure time of 3000 ms and the vibration of 64x. At this time, the cone structure with the bottom diameter of 50 µm and the cone angle of 5° could obtain a better surface structure. Originality/value – This study is expected to provide a µ-SLA surface preparation technology and process parameters selection with low cost, high precision and short preparation period for microstructure forming.https://www.emerald.com/insight/content/doi/10.1108/JIMSE-10-2023-0009/full/pdfMicro-coneMicro-nano additive manufacturingOrthogonal experimental designProcess parameters optimization
spellingShingle Chongjun Wu
Yutian Chen
Xinyi Wei
Junhao Xu
Dongliu Li
Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure
Micro-cone
Micro-nano additive manufacturing
Orthogonal experimental design
Process parameters optimization
title Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure
title_full Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure
title_fullStr Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure
title_full_unstemmed Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure
title_short Morphology analysis and process optimization of μ-SLA 3D manufactured micro-nano conic structure
title_sort morphology analysis and process optimization of μ sla 3d manufactured micro nano conic structure
topic Micro-cone
Micro-nano additive manufacturing
Orthogonal experimental design
Process parameters optimization
url https://www.emerald.com/insight/content/doi/10.1108/JIMSE-10-2023-0009/full/pdf
work_keys_str_mv AT chongjunwu morphologyanalysisandprocessoptimizationofmsla3dmanufacturedmicronanoconicstructure
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AT xinyiwei morphologyanalysisandprocessoptimizationofmsla3dmanufacturedmicronanoconicstructure
AT junhaoxu morphologyanalysisandprocessoptimizationofmsla3dmanufacturedmicronanoconicstructure
AT dongliuli morphologyanalysisandprocessoptimizationofmsla3dmanufacturedmicronanoconicstructure