1 Executive Summary
2 Preface
2.1 Abstract
2.2 Stake Holders
2.3 Research Scope
2.4 Research Methodology
2.4.1 Data Mining
2.4.2 Data Analysis
2.4.3 Data Validation
2.4.4 Research Approach
2.5 Research Sources
2.5.1 Primary Research Sources
2.5.2 Secondary Research Sources
2.5.3 Assumptions
3 Market Trend Analysis
3.1 Introduction
3.2 Drivers
3.3 Restraints
3.4 Opportunities
3.5 Threats
3.6 Technology Analysis
3.7 End User Analysis
3.8 Emerging Markets
3.9 Impact of Covid-19
4 Porters Five Force Analysis
4.1 Bargaining power of suppliers
4.2 Bargaining power of buyers
4.3 Threat of substitutes
4.4 Threat of new entrants
4.5 Competitive rivalry
5 Global Rapid Prototyping Market, By Type
5.1 Introduction
5.2 Proof-of-Concept (PoC) Prototype
5.3 Visual Prototype
5.4 Functional Prototype
5.5 User Experience Prototype
5.6 Other Types
6 Global Rapid Prototyping Market, By Form
6.1 Introduction
6.2 Filament
6.3 Powder
6.4 Ink
7 Global Rapid Prototyping Market, By Material
7.1 Introduction
7.2 Metals and Alloys
7.3 Ceramic
7.4 Plaster
7.5 Liquid Silicone Rubber (LSR)
7.6 Starch
7.7 Polymer
7.8 Thermoplastics
7.9 Other Materials
8 Global Rapid Prototyping Market, By Function
8.1 Introduction
8.2 Functional Prototype
8.3 Conceptual Model
9 Global Rapid Prototyping Market, By Technology
9.1 Introduction
9.2 Technology
9.3 Introduction
9.4 Stereolithography (SLA)
9.5 Fused Deposition Modeling (FDM)
9.6 Digital Light Processing [DLP]
9.7 Selective Laser Sintering (SLS)
9.8 Electron Beam Melting [EBM]
9.9 Multi Jet Fusion (MJF)
10 Global Rapid Prototyping Market, By End User
10.1 Introduction
10.2 Aerospace & Defense
10.3 Automotive
10.4 Film & Animation
10.5 Consumer Goods and Electronics
10.6 Architecture
10.7 Transportation
10.8 Medical
10.9 Other End Users
11 Global Rapid Prototyping Market, By Geography
11.1 Introduction
11.2 North America
11.2.1 US
11.2.2 Canada
11.2.3 Mexico
11.3 Europe
11.3.1 Germany
11.3.2 UK
11.3.3 Italy
11.3.4 France
11.3.5 Spain
11.3.6 Rest of Europe
11.4 Asia Pacific
11.4.1 Japan
11.4.2 China
11.4.3 India
11.4.4 Australia
11.4.5 New Zealand
11.4.6 South Korea
11.4.7 Rest of Asia Pacific
11.5 South America
11.5.1 Argentina
11.5.2 Brazil
11.5.3 Chile
11.5.4 Rest of South America
11.6 Middle East & Africa
11.6.1 Saudi Arabia
11.6.2 UAE
11.6.3 Qatar
11.6.4 South Africa
11.6.5 Rest of Middle East & Africa
12 Key Developments
12.1 Agreements, Partnerships, Collaborations and Joint Ventures
12.2 Acquisitions & Mergers
12.3 New Product Launch
12.4 Expansions
12.5 Other Key Strategies
13 Company Profiling
13.1 3D Systems Corporation
13.2 Stratasys, Ltd.
13.3 EOS GmbH Electro Optical Systems
13.4 Materialise NV
13.5 Golden Plastics
13.6 Arcam AB
13.7 LPW Technology Ltd.
13.8 Sandvik AB
13.9 Tethon 3D
13.10 Lithoz GmbH
13.11 Arkema S.A.
13.12 Royal DSM N.V.
13.13 CRP Group
13.14 Oxford Performance Materials
13.15 Renishaw PLC
13.16 Höganäs AB
13.17 GKN PLC
13.18 Carpenter Technology Corporation
13.19 3D Ceram
13.20 Fathom Digital Manufacturing Corporation
List of Tables
Table 1 Global Rapid Prototyping Market Outlook, By Region (2021-2030) ($MN)
Table 2 Global Rapid Prototyping Market Outlook, By Type (2021-2030) ($MN)
Table 3 Global Rapid Prototyping Market Outlook, By Proof-of-Concept (PoC) Prototype (2021-2030) ($MN)
Table 4 Global Rapid Prototyping Market Outlook, By Visual Prototype (2021-2030) ($MN)
Table 5 Global Rapid Prototyping Market Outlook, By Functional Prototype (2021-2030) ($MN)
Table 6 Global Rapid Prototyping Market Outlook, By User Experience Prototype (2021-2030) ($MN)
Table 7 Global Rapid Prototyping Market Outlook, By Other Types (2021-2030) ($MN)
Table 8 Global Rapid Prototyping Market Outlook, By Form (2021-2030) ($MN)
Table 9 Global Rapid Prototyping Market Outlook, By Filament (2021-2030) ($MN)
Table 10 Global Rapid Prototyping Market Outlook, By Powder (2021-2030) ($MN)
Table 11 Global Rapid Prototyping Market Outlook, By Ink (2021-2030) ($MN)
Table 12 Global Rapid Prototyping Market Outlook, By Material (2021-2030) ($MN)
Table 13 Global Rapid Prototyping Market Outlook, By Metals and Alloys (2021-2030) ($MN)
Table 14 Global Rapid Prototyping Market Outlook, By Ceramic (2021-2030) ($MN)
Table 15 Global Rapid Prototyping Market Outlook, By Plaster (2021-2030) ($MN)
Table 16 Global Rapid Prototyping Market Outlook, By Liquid Silicone Rubber (LSR) (2021-2030) ($MN)
Table 17 Global Rapid Prototyping Market Outlook, By Starch (2021-2030) ($MN)
Table 18 Global Rapid Prototyping Market Outlook, By Polymer (2021-2030) ($MN)
Table 19 Global Rapid Prototyping Market Outlook, By Thermoplastics (2021-2030) ($MN)
Table 20 Global Rapid Prototyping Market Outlook, By Other Materials (2021-2030) ($MN)
Table 21 Global Rapid Prototyping Market Outlook, By Function (2021-2030) ($MN)
Table 22 Global Rapid Prototyping Market Outlook, By Functional Prototype (2021-2030) ($MN)
Table 23 Global Rapid Prototyping Market Outlook, By Conceptual Model (2021-2030) ($MN)
Table 24 Global Rapid Prototyping Market Outlook, By Technology (2021-2030) ($MN)
Table 25 Global Rapid Prototyping Market Outlook, By Technology (2021-2030) ($MN)
Table 26 Global Rapid Prototyping Market Outlook, By Introduction (2021-2030) ($MN)
Table 27 Global Rapid Prototyping Market Outlook, By Stereolithography (SLA) (2021-2030) ($MN)
Table 28 Global Rapid Prototyping Market Outlook, By Fused Deposition Modeling (FDM) (2021-2030) ($MN)
Table 29 Global Rapid Prototyping Market Outlook, By Digital Light Processing [DLP] (2021-2030) ($MN)
Table 30 Global Rapid Prototyping Market Outlook, By Selective Laser Sintering (SLS) (2021-2030) ($MN)
Table 31 Global Rapid Prototyping Market Outlook, By Electron Beam Melting [EBM] (2021-2030) ($MN)
Table 32 Global Rapid Prototyping Market Outlook, By Multi Jet Fusion (MJF) (2021-2030) ($MN)
Table 33 Global Rapid Prototyping Market Outlook, By End User (2021-2030) ($MN)
Table 34 Global Rapid Prototyping Market Outlook, By Aerospace & Defense (2021-2030) ($MN)
Table 35 Global Rapid Prototyping Market Outlook, By Automotive (2021-2030) ($MN)
Table 36 Global Rapid Prototyping Market Outlook, By Film & Animation (2021-2030) ($MN)
Table 37 Global Rapid Prototyping Market Outlook, By Consumer Goods and Electronics (2021-2030) ($MN)
Table 38 Global Rapid Prototyping Market Outlook, By Architecture (2021-2030) ($MN)
Table 39 Global Rapid Prototyping Market Outlook, By Transportation (2021-2030) ($MN)
Table 40 Global Rapid Prototyping Market Outlook, By Medical (2021-2030) ($MN)
Table 41 Global Rapid Prototyping Market Outlook, By Other End Users (2021-2030) ($MN)
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.
List of Figures
Figure 1 Rapid Prototyping – Market Segmentation
Figure 2 Research Methodology
Figure 3 Data Mining
Figure 4 Data Analysis
Figure 5 Data Validation
Figure 6 Research Pipeline
Figure 7 Research Approach
Figure 8 Research Sources
Figure 9 Rapid Prototyping Market Scenario, Technology (2023) (% Market Share)
Figure 10 Rapid Prototyping Market Scenario, End User (2023) (% Market Share)
Figure 11 Rapid Prototyping Market Scenario, Emerging Markets (2023) (% Market Share)
Figure 12 Porter’s Five Forces Analysis – Rapid Prototyping
Figure 13 Global Rapid Prototyping Market Analysis & Projection, By Type (2023 VS 2030) (US$MN)
Figure 14 Global Rapid Prototyping Market Analysis & Projection, By Proof-of-Concept (PoC) Prototype (2023 VS 2030) (US$MN)
Figure 15 Global Rapid Prototyping Market Analysis & Projection, By Visual Prototype (2023 VS 2030) (US$MN)
Figure 16 Global Rapid Prototyping Market Analysis & Projection, By Functional Prototype (2023 VS 2030) (US$MN)
Figure 17 Global Rapid Prototyping Market Analysis & Projection, By User Experience Prototype (2023 VS 2030) (US$MN)
Figure 18 Global Rapid Prototyping Market Analysis & Projection, By Other Types (2023 VS 2030) (US$MN)
Figure 19 Global Rapid Prototyping Market Analysis & Projection, By Form (2023 VS 2030) (US$MN)
Figure 20 Global Rapid Prototyping Market Analysis & Projection, By Filament (2023 VS 2030) (US$MN)
Figure 21 Global Rapid Prototyping Market Analysis & Projection, By Powder (2023 VS 2030) (US$MN)
Figure 22 Global Rapid Prototyping Market Analysis & Projection, By Ink (2023 VS 2030) (US$MN)
Figure 23 Global Rapid Prototyping Market Analysis & Projection, By Material (2023 VS 2030) (US$MN)
Figure 24 Global Rapid Prototyping Market Analysis & Projection, By Metals and Alloys (2023 VS 2030) (US$MN)
Figure 25 Global Rapid Prototyping Market Analysis & Projection, By Ceramic (2023 VS 2030) (US$MN)
Figure 26 Global Rapid Prototyping Market Analysis & Projection, By Plaster (2023 VS 2030) (US$MN)
Figure 27 Global Rapid Prototyping Market Analysis & Projection, By Liquid Silicone Rubber (LSR) (2023 VS 2030) (US$MN)
Figure 28 Global Rapid Prototyping Market Analysis & Projection, By Starch (2023 VS 2030) (US$MN)
Figure 29 Global Rapid Prototyping Market Analysis & Projection, By Polymer (2023 VS 2030) (US$MN)
Figure 30 Global Rapid Prototyping Market Analysis & Projection, By Thermoplastics (2023 VS 2030) (US$MN)
Figure 31 Global Rapid Prototyping Market Analysis & Projection, By Other Materials (2023 VS 2030) (US$MN)
Figure 32 Global Rapid Prototyping Market Analysis & Projection, By Function (2023 VS 2030) (US$MN)
Figure 33 Global Rapid Prototyping Market Analysis & Projection, By Functional Prototype (2023 VS 2030) (US$MN)
Figure 34 Global Rapid Prototyping Market Analysis & Projection, By Conceptual Model (2023 VS 2030) (US$MN)
Figure 35 Global Rapid Prototyping Market Analysis & Projection, By Technology (2023 VS 2030) (US$MN)
Figure 36 Global Rapid Prototyping Market Analysis & Projection, By Stereolithography (SLA) (2023 VS 2030) (US$MN)
Figure 37 Global Rapid Prototyping Market Analysis & Projection, By Fused Deposition Modeling (FDM) (2023 VS 2030) (US$MN)
Figure 38 Global Rapid Prototyping Market Analysis & Projection, By Digital Light Processing [DLP] (2023 VS 2030) (US$MN)
Figure 39 Global Rapid Prototyping Market Analysis & Projection, By Selective Laser Sintering (SLS) (2023 VS 2030) (US$MN)
Figure 40 Global Rapid Prototyping Market Analysis & Projection, By Electron Beam Melting [EBM] (2023 VS 2030) (US$MN)
Figure 41 Global Rapid Prototyping Market Analysis & Projection, By Multi Jet Fusion (MJF) (2023 VS 2030) (US$MN)
Figure 42 Global Rapid Prototyping Market Analysis & Projection, By End-Use Industry (2023 VS 2030) (US$MN)
Figure 43 Global Rapid Prototyping Market Analysis & Projection, By Aerospace & Defense (2023 VS 2030) (US$MN)
Figure 44 Global Rapid Prototyping Market Analysis & Projection, By Automotive (2023 VS 2030) (US$MN)
Figure 45 Global Rapid Prototyping Market Analysis & Projection, By Film & Animation (2023 VS 2030) (US$MN)
Figure 46 Global Rapid Prototyping Market Analysis & Projection, By Consumer Goods and Electronics (2023 VS 2030) (US$MN)
Figure 47 Global Rapid Prototyping Market Analysis & Projection, By Architecture (2023 VS 2030) (US$MN)
Figure 48 Global Rapid Prototyping Market Analysis & Projection, By Transportation (2023 VS 2030) (US$MN)
Figure 49 Global Rapid Prototyping Market Analysis & Projection, By Medical (2023 VS 2030) (US$MN)
Figure 50 Global Rapid Prototyping Market Analysis & Projection, By Other End User Industries (2023 VS 2030) (US$MN)
Figure 51 Global Rapid Prototyping Market Analysis & Projection, By Geography (2023 VS 2030) (US$MN)
Figure 52 Global Rapid Prototyping Market Analysis & Projection, By Country (2023 VS 2030) (US$MN)
Figure 53 Global Rapid Prototyping Market Analysis & Projection, By North America (2023 VS 2030) (US$MN)
Figure 54 Global Rapid Prototyping Market Analysis & Projection, By Europe (2023 VS 2030) (US$MN)
Figure 55 Global Rapid Prototyping Market Analysis & Projection, By Asia Pacific (2023 VS 2030) (US$MN)
Figure 56 Global Rapid Prototyping Market Analysis & Projection, By South America (2023 VS 2030) (US$MN)
Figure 57 Global Rapid Prototyping Market Analysis & Projection, By Middle East & Africa (2023 VS 2030) (US$MN)
Figure 58 3D Systems Corporation – Swot Analysis
Figure 59 Stratasys, Ltd. – Swot Analysis
Figure 60 EOS GmbH Electro Optical Systems – Swot Analysis
Figure 61 Materialise NV – Swot Analysis
Figure 62 Golden Plastics – Swot Analysis
Figure 63 Arcam AB – Swot Analysis
Figure 64 LPW Technology Ltd. – Swot Analysis
Figure 65 Sandvik AB – Swot Analysis
Figure 66 Tethon 3D – Swot Analysis
Figure 67 Lithoz GmbH – Swot Analysis
Figure 68 Arkema S.A. – Swot Analysis
Figure 69 Royal DSM N.V. – Swot Analysis
Figure 70 CRP Group – Swot Analysis
Figure 71 Oxford Performance Materials – Swot Analysis
Figure 72 Renishaw PLC – Swot Analysis
Figure 73 Höganäs AB – Swot Analysis
Figure 74 GKN PLC – Swot Analysis
Figure 75 Carpenter Technology Corporation – Swot Analysis
Figure 76 3D Ceram – Swot Analysis
Figure 77 Fathom Digital Manufacturing Corporation – Swot Analysis
| ※参考情報 ラピッドプロトタイピング(RP)は、製品の設計段階において迅速に試作を行うための技術やプロセスを指します。RPの主要な目的は、製品の構造や機能を早期に確認し、必要な改良を迅速かつ効率的に行うことです。このプロセスによって、最終的な製品の開発にかかる時間やコストを大幅に削減することが可能になります。 ラピッドプロトタイピングにはいくつかの種類があります。一つは、3Dプリンティングです。これは、デジタルモデルを基にして、層を重ねることで立体物を作り上げる技術です。3Dプリンティングは、塑性材料や金属を使用して多様な形状のプロトタイプを迅速に生み出すことができます。 もう一つの種類は、CNC加工です。コンピュータ数値制御(CNC)による加工は、金属やプラスチックといった材料から精密な部品を切り出し、形状を形成するプロセスです。この方法は、特に高い精度や仕上がりが求められる場合に適しています。 さらに、ソフトウェアを使ったシミュレーション技術もRPの一部です。この方法では、物理的なプロトタイプを作成することなく、デジタル環境で設計をテストしたり評価したりすることができます。これにより、デザインの修正を迅速に行い、実際の試作にかかる時間を短縮することが可能です。 ラピッドプロトタイ핑の用途は多岐にわたります。製品開発だけではなく、医療分野や航空宇宙産業、自動車産業などでも利用されています。医療分野では、患者の個々のニーズに合わせた義肢やインプラントの設計・製造にRPが活用されており、これにより治療の質が向上しています。自動車産業では、新車の部品試作やデザイン検証のプロセスにRPが取り入れられており、開発工程の迅速化が図られています。 このように、RPは様々な分野で重要な役割を担っています。反復的な試作・改善を通じて、顧客のフィードバックを取り入れながら製品を進化させることが可能です。結果として、競争力のある製品を市場に投入するための情報収集と改善が容易になります。 ラピッドプロトタイピングに関連する技術も多く存在しています。例えば、デジタルファブリケーション技術の発展によって、個々のニーズに応じたカスタマイズが可能になりました。また、データ分析や材料科学の進歩により、新しい材料がRPに応用されるケースも増えています。これにより、強度や耐久性が求められるプロトタイプでも、高性能が実現できるようになっています。 さらに、RPの発展は製造業におけるサプライチェーンの効率化にも寄与しています。迅速な試作によって市場ニーズに即応できるため、在庫リスクを軽減し、製品のタイム・トゥ・マーケットを短縮することが可能です。このことは、企業の収益性を向上させる要因となります。 RPはまた、教育分野でも重要なツールとなっています。学生たちはRP技術を利用して創造的なアイデアを具体化し、実際の製品開発プロセスを学ぶことができます。これは、将来のエンジニアやデザイナーにとって非常に有利な経験となります。 ラピッドプロトタイピングは、今後もますます進化し、その可能性は無限大です。新しい製造技術や材料の開発が進む中、RPはプロダクトデザインと開発プロセスを革新する重要な要素となっています。企業はこの技術を活用することで、より高品質で競争力のある製品を市場に届けることができるでしょう。RPは、未来の創造的な取り組みを力強く支える基盤となるのです。 |
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