Metallurgy Additive Manufacturing for Aerospace 2018 Global Market Net Worth US$ 20.9 billion Forecast By 2023

“Metallurgy Additive Manufacturing for Aerospace Industry”
WiseGuyReports.Com Publish a New Market Research Report On –“ Metallurgy Additive Manufacturing for Aerospace 2018 Global Market Net Worth US$ 20.9 billion Forecast By 2023”.

Description:-

The 2017 study has 224 pages, 99 tables and figures. Worldwide markets are poised to achieve continuing growth as the metallurgy additive manufacturing for aerospace decreases the cost of manufacture and increases efficiency in process.  Lowering product manufacturing costs is a key benefit.

Additive manufacturing presents the opportunity to completely, rethink a product’s design, transforming its functionality and reducing manufacturing complexity.  This is a disruptive technology that is transformational.   Aerospace companies and government programs are focusing on the advance of metal 3D printing for aerospace engine applications in 2017.  Advances have been able to make commercial additive manufacturing a reality.

Aerospace and defense customers leverage 3D systems industry-leading solutions and expertise.  Vendors seek to deliver productivity in increasing speed and reliability of quality assurance and validation processes, lowering fuel costs through light weighting and parts consolidation, and increasing manufacturing productivity through innovative 3D printed casting patterns, 3D data recovery, injection-mold design, and direct metal printing of airworthy parts.

“Metal 3D printing is at its beginning stages.  It is poised to grow to new levels in the aerospace industry and beyond.  A key advantage of 3D printing is that it removes constraints found with traditional manufacturing, reducing cycle time and production costs. Manufacturing companies in various industries use FDM Technology and realize benefits.”

The global market for metallic additive manufacturing for aerospace at $1.9 billion in 2016, $2.2 billion in 2017 is forecast to reach $20.9 billion by 2024.  Market growth comes from the economies of scale achieved by building metal parts in layers instead of using cutting.  Coherent designs make a difference, fostering market growth.  The metal parts are structural, making metal additive manufacturing a core business.

 

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Companies Profiled

  • Bright Laser Technologies
  • GE / Concept Laser / Arcam
  • 3D Systems / Boeing
  • SpaceX
  • Aerojet Rocketdyne

Market Participants

  • 3D Systems
  • Aerojet Rocketdyne
  • Airconic
  • Airbus
  • Alcoa
  • American Standard
  • BASF
  • Boeing
  • Bright Laser Technologies
  • Carpenter Technology
  • Cerevo
  • CFM International
  • Concept Laser
  • Desktop Metal —
  • DMG Mori
  • EOS
  • Farsoon
  • GE
  • GE Additive:
  • GE / Arcam AB
  • GE / Concept Laser
  • Hewlett Packard
  • Höganäs Group / Digital Metal
  • Honeywell
  • Kymera
  • Lockheed Martin
  • Lumex
  • Markforged
  • Materialise NV
  • NanoSteel
  • NASA
  • Norsk Titanium
  • Optisys
  • Phoenix Scientific Industries Ltd (PSI),
  • Praxair Powders
  • Renishaw
  • Sciaky
  • Siemens
  • SpaceX
  • H.C. Starck
  • Stratasys
  • Tekna Grou
  • Thales
  • Titomic
  • Trumpf adds Fraunhofer’s Extreme High-Speed Laser Deposition Welding Process
  • United States Metal Powders
  • Voestalpine AG

 

Complete Report Details @  https://www.wiseguyreports.com/reports/2613489-metallurgy-additive-manufacturing-for-aerospace-market-shares-strategies-and-forecasts-worldwide

 

Table Of Contents – Major Key Points

1. Additive Manufacturing For Aerospace: Market Description And Market Dynamics 25
1.1 Aerospace Additive Manufacturing (AM) Process 25
1.2 3D Metallic Printing for Aerospace 27
1.2.1 EBM® in Aerospace 27
1.3 Designing Value into Additive Manufacturing 28

2. Additive Manufacturing For Aerospace Market Shares And Forecasts 30
2.1 Additive Manufacturing for Aerospace Market Driving Forces 30
2.2 Additive Manufacturing for Aerospace Market Shares 34
2.2.1 Bright Laser Technologies 38
2.2.2 GE 39
2.2.3 Benefits of GE Aerospace Additive Manufacturing Acquisitions 40
2.2.4 GE Seeks To Have Its Additive Manufacturing Business Achieve $1 Billion In Revenue by 2020 41 2.2.5 Desktop Metal Technology 42
2.2.6 Höganäs Group / Digital Metal 43
2.2.7 Lockheed Martin 43
2.2.8 Sciaky Big Metal Experts: 44
2.3 Additive Manufacturing for Aerospace Market Forecasts 45
2.4 Metallurgy Additive Manufacturing for Aerospace Market Challenges 49
2.5 Metallurgy Additive Manufacturing for Aerospace Market Segment Forecasts 50
2.5.1 Metallurgy Additive Manufacturing for Aerospace Applications 52
2.5.2 Additive Manufacturing Materials 54
2.6 Market Forecast Additive Manufacturing, Market Segment Analysis 56
2.7 Additive Manufacturing for Aerospace Pricing 57
2.8 Additive Manufacturing for Aerospace Regional Segment Analysis 58
2.8.1 US Metallurgy Additive Manufacturing For Aerospace Market 60
2.8.2 Significant Regional Growth In Metal Additive Manufacturing in Asia 61

3. Additive Manufacturing For Aerospace Product Description 62
3.1 3D Systems Aerospace and Defense Metallic Additive Manufacturing 62
3.1.1 3D Systems DMP Printers 62
3.2 Digital Metal 63
3.3 GE 3D Metallurgy Printing in Jet Engines 64
3.3.1 GE Arcam EBM 68
3.3.2 GE Arcam EBM® — Electron Beam Melting 71
3.3.3 Additive Manufacturing (AM) at GE Additive 77
3.4 Ancor AM Powders 79
3.5 Metallurgy Additive Manufacturing at NASA 79
3.6 3D Metallurgy Printing at SpaceX 82

4. Additive Manufacturing For Aerospace Research And Technology 90
4.1 3D Printing Set To Revolutionize Manufacturing Processes Involving Metals 90
4.1.1 3D Printing Of High-Strength Aluminum Alloys 91
4.1.2 Nanoparticles of Nucleants Used To Resolve Melting And Solidification Dynamics 92
4.1.3 Selective Laser Melting Creates Grains Roughly Equal In Length, Width And Height 92
4.2 Microstructure and Mechanical Properties of Aerospace Metallic Components and Parts 93
4.3 Additive Manufacturing of Titanium Alloy for Aerospace Components 94
4.4 High-Strength Nickel Based Superalloy Metal AM Rocket Engine ProjectX 98
4.5 Most Effective Size Range for EBAM Parts 99

5. Additive Manufacturing For Aerospace Company Profiles 102
5.1 3D Systems 102
5.1.1 3D Systems Teams with Airbus Defence and Space to Produce Metal AM satellite RF Filter 104
5.1.2 3D Systems Revenue 106
5.2 Aerojet Rocketdyne 113
5.2.1 Aerojet Rocketdyne Breaks Ground Advanced Manufacturing Facility in Huntsville 115
5.3 Airconic 117
5.4 Airbus 118
5.5 Alcoa 119
5.6 American Standard 119
5.7 BASF 120
5.7.1 BASF SLM Solutions 123 5.8 Boeing 124
5.8.1 Boeing AM Advantages 126
5.9 Bright Laser Technologies 132
5.10 Carpenter Technology 135

Continued……

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