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[ 英語タイトル ] Military 3D Printing Market by Offering (Printer, Material, Software, Service), Application (Functional Part Manufacturing, Tooling, Prototyping), Platform (Airborne, Land, Naval, Space), Process, Technology, and Region - Global Forecast to 2025


Product Code : MNMAD00109737
Survey : MarketsandMarkets
Publish On : February, 2021
Category : Aerospace and Defence
Study Area : Global
Report format : PDF
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[Report Description]

The military 3D printing market is projected to grow at a CAGR of 28.37% during the forecast period.
The military 3D printing market is estimated to be USD 799.8 million in 2018 and is projected to reach USD 4,594.4 million by 2025, at a CAGR of 28.37% from 2018 to 2025. Military 3D printing can be defined as the process of creating three-dimensional objects from a digital file using various materials, such as steel alloys, aluminum, titanium, plastics, nickel, and ceramics. The demand for lightweight parts and components in the defense industry and investments made by defense entities in 3D printing projects are key factors projected to drive the growth of the military 3D printing market. However, limited availability of materials and stringent military standards are acting as restraints to the growth of the market.
Based on offering, the printer segment is estimated to lead the military 3D printing market in 2018.
Based on offering, the printer segment is estimated to lead the military 3D printing market in 2018. OEMs are focused on the adoption of 3D printing technology to manufacture defense equipment, which, in turn, has contributed to the increasing demand for 3D printers.
Based on process, the powder bed fusion segment is estimated to lead the military 3D printing market in 2018.
Based on process, the powder bed fusion segment is estimated to lead the military 3D printing market in 2018. Benefits of powder metal 3D printing that include diverse material options and suitability for prototyping are contributing to the growth of the powder bed fusion segment.
Based on application, the prototyping segment is estimated to lead the military 3D printing market in 2018.
Based on application, the prototyping segment is estimated to lead the military 3D printing market in 2018. The increasing use of 3D printing by defense companies to reduce wastage during prototype transitions in traditional manufacturing is one of the key factors driving the market for prototyping.
North America led the military 3D printing market in 2017.
The North American region led the military 3D printing market in 2017. The US and Canada are key countries considered for market analysis in this region. Increased government investments in 3D printing projects are expected to fuel the growth of the military 3D printing market in North America.
• By Company Type: Tier 1 – 35%, Tier 2 – 45%, and Tier 3 – 20%
• By Designation: C Level – 35%, Director Level – 25%, and Others – 40%
• By Region: North America – 40%, Europe – 20%, Asia Pacific – 10%, and RoW – 30%

Key players operating in the military 3D printing market include Stratasys (US), 3D Systems (US), ExOne (France), EOS (Germany), Arcam (Sweden), and Norsk Titanium (Germany).
Research Coverage
The military 3D printing market has been segmented on the basis of offering (printer, material, software, and service), process (binder jetting, direct energy deposition, material extrusion, material jetting, powder bed fusion, vat photopolymerization, and sheet lamination), application (functional part manufacturing, tooling, and prototyping), and platform (airborne, land, naval, and space). These segments and subsegments are mapped across major regions, namely, North America, Europe, Asia Pacific, the Middle East, and Rest of the World (RoW). The report provides in-depth market intelligence regarding key market dynamics and major factors (drivers, restraints, opportunities, and industry-specific challenges) that influence the growth of the military 3D printing market, in addition to an analysis of micromarkets with respect to individual growth trends, prospects, and their contribution to the military 3D printing market.
Reasons to buy the report:
From an insight perspective, the military 3D printing market report focuses on various levels of analyses — industry analysis; market share analysis of top players; company profiles that comprise and discuss basic views on the competitive landscape; high-growth regions and countries as well as their respective regulatory policies; and drivers, restraints, opportunities, and challenges.
The military 3D printing market report provides insights on the following pointers:
• Market Penetration: Comprehensive information regarding the competitive landscape in the military 3D printing market
• Market Sizing: Market size in the financial year (2016-2017) and projection of the market size from 2018 to 2025
• Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and new product launches in the military 3D printing market
• Market Overview: Market dynamics and subsequent analysis of associated trends, drivers, and opportunities prevailing in the military 3D printing market
• Market Development: Comprehensive information about lucrative markets—the report analyzes the market for military 3D printing solutions across various regions worldwide
• Market Diversification: Exhaustive information about new products, untapped geographies, recent developments, and investments in the military 3D Printing market
• Regional Analysis: Factors influencing market shares of North America, Europe, Asia Pacific, the Middle East, and Rest of the World
• Competitive Assessment: In-depth assessment of strategies, products, and manufacturing capabilities of leading market players

TABLE OF CONTENTS

1 INTRODUCTION 18
1.1 OBJECTIVES OF THE STUDY 18
1.2 DEFINITION 18
1.3 STUDY SCOPE 19
1.3.1 MARKETS COVERED 19
1.3.2 REGIONAL SCOPE 19
1.3.3 YEARS CONSIDERED FOR THE STUDY 20
1.4 CURRENCY & PRICING 20
1.5 LIMITATIONS 21
1.6 MARKET STAKEHOLDERS 21
2 RESEARCH METHODOLOGY 22
2.1 RESEARCH DATA 22
2.1.1 SECONDARY DATA 23
2.1.1.1 Key data from secondary sources 24
2.1.2 PRIMARY DATA 25
2.1.2.1 Key data from primary sources 25
2.1.2.2 Breakdown of primaries 26
2.2 MARKET SIZE ESTIMATION 26
2.2.1 BOTTOM-UP APPROACH 27
2.2.2 TOP-DOWN APPROACH 28
2.3 DATA TRIANGULATION 29
2.4 RESEARCH ASSUMPTIONS 30
3 EXECUTIVE SUMMARY 31
4 PREMIUM INSIGHTS 35
4.1 ATTRACTIVE GROWTH OPPORTUNITIES IN THE MILITARY 3D PRINTING MARKET 35
4.2 MILITARY 3D PRINTING MARKET, BY PROCESS 35
4.3 EUROPE MILITARY 3D PRINTING MARKET, BY PLATFORM & COUNTRY 36
4.4 US MILITARY 3D PRINTING MARKET, BY OFFERING 37
4.5 EUROPE MILITARY 3D PRINTING MARKET, BY PLATFORM 37
4.6 MILITARY 3D PRINTING MARKET, BY COUNTRY 38
5 MARKET OVERVIEW 39
5.1 INTRODUCTION 39
5.1.1 DRIVERS 40
5.1.1.1 Increasing investments by defense entities in 3D printing projects 40
5.1.1.2 Reduction in manufacturing cost of parts 40
5.1.1.3 Demand for lightweight parts and components in the defense industry 40
5.1.2 RESTRAINTS 41
5.1.2.1 Limited availability of materials 41
5.1.2.2 Stringent military standards 41
5.1.3 OPPORTUNITIES 41
5.1.3.1 Development of advanced 3D printing technologies 41
5.1.3.2 3D printing as a service 42
5.1.3.3 Development of portable printers 42
5.1.4 CHALLENGES 42
5.1.4.1 Not suitable for high volume production 42
5.1.4.2 Production of low-cost 3D printing parts 42
5.1.4.3 Lack of standard process control 42
6 INDUSTRY TRENDS 43
6.1 INTRODUCTION 43
6.2 EMERGING TRENDS 43
6.2.1 MULTI-MATERIAL 3D PRINTING IN THE DEFENSE INDUSTRY 43
6.2.2 3D PRINTING OF DRONES & MISSILES 43
6.2.3 3D PRINTING OF COMPLEX COMPONENTS 44
6.2.4 3D PRINTING OF FOOD 44
6.3 PORTER’S FIVE FORCES ANALYSIS 44
6.3.1 THREAT FROM NEW ENTRANTS 45
6.3.2 THREAT OF SUBSTITUTES 45
6.3.3 BARGAINING POWER OF SUPPLIERS 45
6.3.4 BARGAINING POWER OF BUYERS 46
6.3.5 INTENSITY OF COMPETITIVE RIVALRY 46
6.4 PATENT ANALYSIS 47
7 MILITARY 3D PRINTING MARKET, BY OFFERING 48
7.1 INTRODUCTION 49
7.2 PRINTER 50
7.2.1 PRINTER, BY TYPE 50
7.2.1.1 Industrial printer 51
7.2.1.2 Portable printer 51
7.3 MATERIAL 51
7.3.1 MATERIAL, BY TYPE 51
7.3.1.1 Plastics 52
7.3.1.1.1 Plastic, by type 52
7.3.1.1.1.1 Thermoplastics 52
7.3.1.1.1.2 Photopolymers 52

7.3.1.1.2 Plastic, by form 53
7.3.1.1.2.1 Powder 53
7.3.1.1.2.2 Filament/Wire 53
7.3.1.1.2.3 Liquid 53
7.3.1.2 Metal 53
7.3.1.2.1 Metal, by type 54
7.3.1.2.1.1 Steel 54
7.3.1.2.1.2 Aluminum 54
7.3.1.2.1.3 Titanium 55
7.3.1.2.1.4 Silver 55
7.3.1.2.1.5 Others 55
7.3.1.2.2 Metal, by form 56
7.3.1.2.2.1 Powder 56
7.3.1.2.2.2 Filament/Wire 56
7.3.1.3 Ceramics 56
7.3.1.3.1 Ceramics, by form 57
7.3.1.3.1.1 Powder 57
7.3.1.3.1.2 Filament/Wire 57
7.3.1.3.1.3 Liquid 57
7.3.1.4 Others 57
7.4 SOFTWARE 58
7.4.1 SOFTWARE, BY TYPE 58
7.4.1.1 Printing 58
7.4.1.2 Design 58
7.4.1.3 Inspection 59
7.4.1.4 Scanning 59
7.5 SERVICE 59
8 MILITARY 3D PRINTING MARKET, BY PLATFORM 60
8.1 INTRODUCTION 61
8.2 AIRBORNE 62
8.2.1 AIRCRAFT 62
8.2.1.1 Engines 63
8.2.1.2 Aerostructures 63
8.2.1.3 Cockpit controls 63
8.2.1.4 Others 63
8.2.2 MISSILES 64
8.2.2.1 Rocket engines 64
8.2.2.2 Fins 64
8.2.2.3 Guidance systems 64
8.2.2.4 Controls 65
8.2.2.5 Others 65

8.2.3 UAV 65
8.2.3.1 UAV engines 65
8.2.3.2 Aerostructures 65
8.2.3.3 Payloads 66
8.2.3.4 Others 66
8.3 LAND 66
8.3.1 VEHICLES 66
8.3.1.1 Engines 67
8.3.1.2 Structures 67
8.3.1.3 Others 67
8.3.2 SOLDIERS 67
8.3.2.1 Helmets 68
8.3.2.2 Vests 68
8.3.2.3 Communication devices 68
8.3.2.4 Food 68
8.3.2.5 Others 68
8.3.3 UNMANNED GROUND VEHICLES (UGVS) 69
8.3.3.1 UGV engines 69
8.3.3.2 Structures 69
8.3.3.3 Others 69
8.4 NAVAL 70
8.4.1 SHIPS 70
8.4.2 UNMANNED MARITIME VEHICLES (UMV) 70
8.5 SPACE 71
9 MILITARY 3D PRINTING MARKET, BY APPLICATION 72
9.1 INTRODUCTION 73
9.2 PROTOTYPING 74
9.3 FUNCTIONAL PART MANUFACTURING 74
9.4 TOOLING 74
10 MILITARY 3D PRINTING MARKET, BY PROCESS 75
10.1 INTRODUCTION 76
10.2 POWDER BED FUSION 77
10.3 MATERIAL EXTRUSION 77
10.4 VAT PHOTOPOLYMERIZATION 77
10.5 MATERIAL JETTING 78
10.6 BINDER JETTING 78
10.7 DIRECT ENERGY DEPOSITION 78
10.8 SHEET LAMINATION 79

11 MILITARY 3D PRINTING MARKET, BY TECHNOLOGY 80
11.1 INTRODUCTION 81
11.2 STEREOLITHOGRAPHY 82
11.3 FUSE DEPOSITION MODELING 82
11.4 SELECTIVE LASER SINTERING (SLS) 82
11.5 DIRECT METAL LASER SINTERING (DMLS) 83
11.6 POLYJET PRINTING 83
11.7 INKJET PRINTING 83
11.8 ELECTRON BEAM MELTING 83
11.9 LASER METAL DEPOSITION 84
11.10 DIGITAL LIGHT PROCESSING 84
11.11 LAMINATED OBJECT MANUFACTURING 84
12 REGIONAL ANALYSIS 85
12.1 INTRODUCTION 86
12.2 NORTH AMERICA 87
12.2.1 US 90
12.2.2 CANADA 91
12.3 EUROPE 92
12.3.1 FRANCE 94
12.3.2 RUSSIA 95
12.3.3 GERMANY 96
12.3.4 UK 97
12.3.5 ITALY 98
12.3.6 SPAIN 99
12.3.7 REST OF EUROPE 100
12.4 ASIA PACIFIC 101
12.4.1 CHINA 103
12.4.2 INDIA 104
12.4.3 JAPAN 105
12.4.4 SOUTH KOREA 106
12.4.5 AUSTRALIA 107
12.4.6 REST OF ASIA PACIFIC 108
12.5 MIDDLE EAST 109
12.5.1 ISRAEL 111
12.5.2 SAUDI ARABIA 112
12.5.3 UAE 113
12.5.4 REST OF MIDDLE EAST 114
12.6 REST OF THE WORLD 115
12.6.1 LATIN AMERICA 116
12.6.2 AFRICA 117
13 COMPETITIVE LANDSCAPE 118
13.1 INTRODUCTION 118
13.2 COMPETITIVE ANALYSIS 118
13.3 MARKET RANKING ANALYSIS 119
13.4 COMPETITIVE SCENARIO 120
13.4.1 CONTRACTS 120
13.4.2 NEW PRODUCT LAUNCHES 120
13.4.3 AGREEMENTS, ACQUISITIONS, COLLABORATIONS, PARTNERSHIPS, AND JOINT VENTURES 121
14 COMPANY PROFILES 122
(Business Overview, Products Offered, Recent Developments, SWOT Analysis, and MnM View)*
14.1 STRATASYS 122
14.2 3D SYSTEMS CORPORATION 125
14.3 THE EXONE COMPANY 128
14.4 EOS GMBH 131
14.5 ARCAM AB 133
14.6 NORSK TITANIUM AS 136
14.7 AMERICAN ELEMENTS 137
14.8 CIMETRIX SOLUTIONS 138
14.9 ARTEC 139
14.10 3T RPD 140
14.11 OPTOMEC 141
14.12 INITIAL 142
14.13 MARKFORGED 143
14.14 SMG3D 144
14.15 ENGINEERING & MANUFACTURING SERVICES 145
*Details on Business Overview, Products Offered, Recent Developments, SWOT Analysis, and MnM View might not be captured in case of unlisted companies.
15 APPENDIX 146
15.1 DISCUSSION GUIDE 146
15.2 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 149
15.3 INTRODUCING RT: REAL-TIME MARKET INTELLIGENCE 151
15.4 AVAILABLE CUSTOMIZATION 152
15.5 RELATED REPORTS 152
15.6 AUTHOR DETAILS 153

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