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Showing result 1 - 5 of 7 essays matching the above criteria.

  1. 1. Product-development for laser powder bed fusion

    University essay from KTH/Produktionsutveckling

    Author : Ludvig Dagberg; David Hu; [2023]
    Keywords : Laser Powder Bed Fusion; Additive Manufacturing; DFAM; Selective Laser Melting; Design for Additive Manufacturing; Laser beam fusion;

    Abstract : This thesis investigates the differences in the design process when developing a product for additive manufacturing (AM) compared to traditional manufacturing methods, such as CNC machining. In recent years, additive manufacturing (AM), including metal-based laser powder bed fusion (L-PBF), has gained popularity, leading to increased adoption by companies. READ MORE

  2. 2. Design of Nose-cone for Autonomous Underwater Vehicle

    University essay from Lunds universitet/Innovation

    Author : Anna Arnwald; [2021]
    Keywords : AUV; AM; 3D printing; product development; DfAM; Technology and Engineering;

    Abstract : The goal was to perform a feasibility study on an additive manufactured thermoplastic nose-cone hull design for an autonomous underwater vehicle SAM. Where feasibility includes the technical, economic and sustainable aspect in the analysis. READ MORE

  3. 3. Additive   manufacturing   of   spare   parts   for   the  mining   industry  a   pilot   study   on   business   impact   from   an   aftermarket   perspective.

    University essay from Örebro universitet/Institutionen för naturvetenskap och teknik

    Author : Kristian Vingerhagen; Julia Alfredsson; [2021]
    Keywords : dditive manufacturing; spare parts; aftermarket; mining industry; design research methodology; dditiv tillverkning; reservdelar; eftermarknad; gruvindustri; designforsknings- metodologi;

    Abstract : The   purpose   of   this   pilot   study   was   to   identify   and   evaluate   different   business   cases   for   Epiroc’s  Parts   &   Services   Division   (PSD)   regarding   the   use   of   additive   manufacturing   (AM),   also   known   as  3D   printing,   for   their   spare   parts   within   the   mining   industry.    This   study   presents   an   approach   for  how   spare   parts   promising   for   AM   can   be   identified   and   shows   the   difficulties   with   AM. READ MORE

  4. 4. Design for Additive Manufacturing : An Optimization driven design approach

    University essay from KTH/Maskinkonstruktion (Inst.)

    Author : Satabdee Dash; [2020]
    Keywords : Additive Manufacturing; Design for Additive Manufacturing; Overhang Constraint; Topology Optimization; Additiv tillverkning; Design för Additiv tillverkning; överhängsbegränsning; Topologioptimering;

    Abstract : Increasing application of Additive Manufacturing (AM) in industrial production demands product reimagination (assemblies, subsystems) from an AM standpoint. Simulation driven design tools play an important part in achieving this with design optimization subject to the capabilities of AM technologies. READ MORE

  5. 5. Additive Manufacturing Applications for Suspension Systems : Part selection, concept development, and design

    University essay from Linköpings universitet/Produktrealisering; Linköpings universitet/Maskinkonstruktion

    Author : Morgan Waagaard; Johan Persson; [2020]
    Keywords : AM; Additive Manufacturing; 3D printing; DfAM; Design for Additive Manufacturing; SLM; Selective Laser Melting; L-PBF; Laser Powder Bed Fusion; Topology Optimization; Design Optimization; titanium alloy; Suspension Systems; Automotive Applications; Racing; Motorcycle; Motorbike; Moto Racing; Roadracing; Additiv tillverkning; Additiv Tillverkningsteknik; Friformsframställning; Topologioptimering; Designoptimering; Titanlegering; Hjulupphängning; Fjädringssystem; Fordonsteknik; Fordonsapplikationer; Motorcykel; Motorcykelracing; Motorsport;

    Abstract : This project was conducted as a case study at Öhlins Racing AB, a manufacturer of suspension systems for automotive applications. Öhlins usually manufacture their components by traditional methods such as forging, casting, and machining. READ MORE