advanced additive manufacturing training1... · 2020. 12. 25. · • fdm for tooling &...

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siemens.com/am-energy Advanced Additive Manufacturing Training Ole Geisen Head of Engineering Services for Additive Manufacturing [email protected] Michael Hajduk Head of Training for Additive Manufacturing [email protected] Jan Bogner R&D Engineer Additive Manufacturing [email protected] Published by Siemens AG Gas and Power Freyeslebenstraße 1 91058 Erlangen, Germany Article No. GPPO-B10001-00-7600 IB 10190.5 © Siemens 2019 Subject to changes and errors. The information given in this document only contains general descriptions and/or perfor- mance features which may not always specifically reflect those described, or which may undergo modification in the course of further development of the products. The requested perfor- mance features are binding only when they are expressly agreed upon in the concluded contract. Contact us! Learning Targets How to find, design and add value to components through L-PBF • Designing: AM design rules, support structures, reverse engineering Powder characterization and requirements, material challenges and typical defects • L-PBF process chain: From ideation to production including post-processing • L-PBF part production: Use-Cases with highlights and lowlights • Introduction to costing of L-PBF parts • Understand technology benefits and limitations Target Group Engineers working in the field of design and manufacturing of metal parts Training Packages 1-day Executive Training & Overview of metal L-PBF 4-day Advanced L-PBF Training FDM for tooling & post-processing of metal L-PBF parts

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  • siemens.com/am-energy

    Advanced Additive Manufacturing Training

    Ole Geisen Head of Engineering Services for Additive Manufacturing [email protected]

    Michael Hajduk Head of Training for Additive Manufacturing [email protected]

    Jan Bogner R&D Engineer Additive Manufacturing [email protected]

    Published by Siemens AG

    Gas and Power Freyeslebenstraße 1 91058 Erlangen, Germany

    Article No. GPPO-B10001-00-7600 IB 10190.5 © Siemens 2019

    Subject to changes and errors. The information given in this document only contains general descriptions and/or perfor-mance features which may not always specifically reflect those described, or which may undergo modification in the course of further development of the products. The requested perfor-mance features are binding only when they are expressly agreed upon in the concluded contract.

    Contact us!Learning Targets

    • How to find, design and add value to components through L-PBF

    • Designing: AM design rules, support structures, reverse engineering

    • Powder characterization and requirements, material challenges and typical defects

    • L-PBF process chain: From ideation to production including post-processing

    • L-PBF part production: Use-Cases with highlights and lowlights

    • Introduction to costing of L-PBF parts

    • Understand technology benefits and limitations

    Target Group

    • Engineers working in the field of design and manufacturing of metal parts

    Training Packages

    • 1-day Executive Training & Overview of metal L-PBF

    • 4-day Advanced L-PBF Training

    • FDM for tooling & post-processing of metal L-PBF parts

  • Advanced Additive Manufacturing Training

    Focus: Laser Powder-Bed Fusion

    What do we offer?The aim of this training is to inspire novel thinking in part production and educate on the usage and design of AM-parts.

    It will be conducted by consultants and engineers from Siemens Gas & Power and Materials Solutions with multi-year experience in AM, especially Laser Powder-Bed Fusion (L-PBF). The training is based on company-wide use-cases and experiences in R&D and industrialization projects.

    Over a four day workshop a holistic overview of the L-PBF technology from ideation to costing and production is given, with a special focus on the engineering aspect of L-PBF part production.

    Training Overview

    • AM technology and materials overview (different technologies, focus L-PBF)

    • L-PBF process chain

    • L-PBF job preparation: Nesting and support structures

    • Opportunities and limitations (flexibility, build size, process speed, ...)

    AM Fundamentals Design for L-PBF

    • Design rules and case studies to meet require-ments for:• Manufacturing• Component

    performance• Cost targets

    • Functional integration• AM ideation metho-

    dologies

    • Reverse Engineering

    L-PBF Materials Science

    • Microstructure of L-PBF metal parts

    • Mechanical Integrity of L-PBF parts made of:• Steels• Nickel-based alloys• Aluminum

    • Heat treatment strategies

    • Surface finishing & post-processing

    Component Screening

    and Selection

    • Selection and filter methodologies

    • Cost estimation methods

    • Pain point analysis

    • AM roadmap develop-ment

    Siemens and Materials Solutions offer you our experience from over 12 years of metal L-PBF printing ‒ Imagine what we can achieve together.