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Global Desktop 3D Printing Market Size, Share & Industry Trends Analysis Report By Application (Functional Parts, Prototyping, and Tooling), By Vertical, By Technology, By Component, By Material, By Regional Outlook and Forecast, 2022 - 2028

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    Report

  • 387 Pages
  • July 2022
  • Region: Global
  • Marqual IT Solutions Pvt. Ltd (KBV Research)
  • ID: 5645585
The Global Desktop 3D Printing Market size is expected to reach $7.1 billion by 2028, rising at a market growth of 19.2% CAGR during the forecast period.

3D printing is a technology that generates objects commonly referred to as additive manufacturing. It provides a wide range of potential for the creation, design, and performance of unique architectural shapes, construction systems, and materials. It is a cutting-edge, quick, and agile approach to product development and production.

A desktop 3D printer is a compact 3D printer that can construct items from scratch. Owing to the fact that they can be used on a standard desk, they are referred to as desktop 3D printers. They don't need a wide area. Desktop 3D printers, in contrast, are tiny & portable. They are perfect for tiny workstations due to their compact size. A manufacturing business might not have the option of deploying a large 3D printer if it operates out of a tiny plant. Fortunately, there is a space-saving alternative provided by desktop 3D printers. They are a desirable option for small workstations since they may fit on the surface of a desk.



The demand for desktop 3D printers is being driven by the growing use of additive manufacturing and the rising need for advanced manufacturing & rapid prototyping across many industries. Rapid prototyping has become more popular, which has helped businesses create effective systems & products. During the forecast period, these aspects are anticipated to work together to drive market growth.

The growing adoption of 3D printing technology across several verticals is also greatly influenced by the ease of production and various advantages it offers. Manufacturers can benefit from 3D printing through prototyping, structural design of structures and finished goods, modeling, and accelerated time to market. It has dramatically decreased production costs, enabling businesses to sell premium goods at competitive pricing.

COVID-19 Impact Analysis

Many industries have been badly impacted by the outbreak of COVID-19. Both the production process and the availability of raw materials have been halted as a result.  These elements all had an impact on the market expansion for personal 3D printers. Education, entertainment, & photography - the three industries that use 3D printers - are not operational during this pandemic condition. As a result, the demand for 3D printers has significantly decreased over the past financial quarter, and similar trends are predicted for the upcoming quarter as well.

Market Growth Factors

More Budget Friendly

One of the most significant benefits of 3D printing technology is that it requires low labor costs. Labor costs have a significant impact on determining the budgetary allocation for building a framework. When it comes to conventional production, labor costs are very high and skilled machine operators are required. But with 3D printers, all that is required, is for the operator to press a button; the rest of the operation is carried out automatically by the printer. Additionally, mass & small-scale manufacturing are equivalent when producing goods utilizing 3D printing.



Ability To Produce Fast

The deployment of this technology over traditional manufacturing techniques is how quickly 3D printers can manufacture models. The 3D printing is quicker & simpler than traditional manufacturing processes. The rapid incorporation of ideas & designs using 3D printing occurs from the blueprint stage to the finished product. A CAD model can be utilized to extract complex patterns that can then be printed, and the process only takes a few hours.

Market Restraining Factors

Availability Of Better Alternatives In The Market

There are additional 3D printing technologies available in the market. A manufacturing company may need to spend more money on a larger commercial 3D printer if it wishes to use alternative technology. As compared to bigger commercial 3D printers, some desktop printers have worse accuracy. This is one of the certain drawbacks of using a desktop 3D printer. A desktop 3D printer might not work well for applications that call for precise forms and sizes. There are still a lot of really precise desktop 3D printers available in the market. Commercial 3D printers, however, are frequently the most precise.

Component Outlook

On the basis of component, the desktop 3D printing market is fragmented into hardware, software (Design Software, Inspection Software, Printer Software & Scanning Software) and services. The hardware segment led the desktop 3D printing market by generating maximum revenue in 2021. The segment's expansion has been propelled by sophisticated production techniques & rapid prototyping. The growth is being fueled by a number of factors, such as increased consumer electronic device penetration, growing industrialization & urbanization, the development of civil infrastructure, and reduced labor costs.

Technology Outlook

Based on technology, the desktop 3D printing market is segmented into stereolithography, fuse deposition modeling, selective laser sintering, digital light processing, laminated object manufacturing and others. The stereolithography segment covered a substantial revenue share in the desktop 3D printing market in 2021. Users of the stereolithography technique can produce idea models, intricately detailed complex parts, & quick cosmetic prototypes. This is one of the oldest techniques for creating 3D printed objects. Incorporating the stereolithography apparatus (SLA), which turns liquid plastic into solid objects, is the process.

Application Outlook

By application, the desktop 3D printing market is classified into prototyping, tooling & functional parts. In 2021, the prototyping segment witnessed a significant revenue share in the desktop 3D printing market. Prototyping has been widely adopted across a number of business industries. Prototyping is used in the design & development of intricate systems, parts, and components in the aerospace and defense, automotive, industries. Manufacturing companies can create trustworthy finished items because of the incredibly exact outcomes of prototyping. All these factors is expected to support the market growth.

Vertical Outlook

On the basis of vertical, the desktop 3D printing market is categorized into education, fashion & jewellery, objects, dental/healthcare, food and others. In 2021, the fashion and jewelry segment garnered a substantial share of the desktop 3D printing market. The market growth has been fueled by the growing adoption of 3D printing in the production of miniatures, apparel, imitation jewelry, clothing & art, and craft. For the purpose of creating 3D-printed jewelry, the ideas of investment casting & lost wax casting are combined with the capabilities of a digital design and production process.

Material Outlook

Based on material, the desktop 3D printing market is divided into plastic, metal and ceramic. The metal segment procured a significant revenue share in the desktop 3D printing market in 2021. As the demand for direct manufacture of complex end-use parts increases, metals for 3D printing is becoming more & more common. Metals make traditional manufacturing processes' tooling simpler, resulting in reduced costs & shorter lead times. The creative flexibility of 3D printing and the mechanical properties of the metal are combined in metal 3D printing.

Regional Outlook

Region-wise, the desktop 3D printing market is analyzed across North America, Europe, Asia Pacific and LAMEA. The North America led the desktop 3D printing market with the maximum revenue share in 2021. Factors that are anticipated to drive the market in the region include the existence of big companies in the region and customers' ability to spend more than in this region. The high defense budget in the United States combined with the use of 3D-printed metal components in government & private aerospace industries is anticipated to drive market growth.

Cardinal Matrix - Desktop 3D Printing Market Competition Analysis



The major strategies followed by the market participants are Product Launches. Based on the Analysis presented in the Cardinal matrix; Dassault Systèmes SE and Canon, Inc. are the forerunners in the Desktop 3D Printing Market. Companies such as 3D Systems Corporation, Shapeways, Inc. and EnvisionTec, Inc. are some of the key innovators in Desktop 3D Printing Market.

The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Dassault Systèmes SE, 3D Systems Corporation, Autodesk, Inc., Canon, Inc., Materialise NV, EnvisionTec, Inc. (Desktop Metal, Inc.), Voxeljet AG, Stratasys, Ltd., Proto lab, Inc., and Shapeways, Inc.

Recent Strategies Deployed in Ultra-Mobile Devices Market

» Product Launch and Product Expansions:

  • Jun-2022: Stratasys unveiled Stratasys RadioMatrix, the latest material for its Digital Anatomy 3D printers. This material makes it possible to produce ‘radio-realistic models’ that could be under CT scans & X-rays. In addition, the material is the first radiopaque material available for polymer 3D printing leading providers largely adopted Digital Anatomy systems, which is expected to enable consumers to create full-colour & biomechanically realistic models for training, pre-surgical planning & medical device development.
  • Jun-2022: Desktop Metal, Parent company of EnvisionTec, Inc., launched FreeFoam, the latest 3D printable photopolymer resin family which consists of heat-activated foaming agents. This product is expected to help in the development of tunable and durable closed cell foam parts, which are expected to see extensive use in sectors such as automotive, furniture, sporting goods, footwear, & healthcare.
  • May-2022: Stratasys launched F190 CR and F370 CR machines, F123 Series of FDM 3D printers, and FDM Nylon-CF10 material, new carbon fiber-reinforced. The latest composite 3D printers are developed for manufacturers & industrial machinists to produce end-use components, and jigs, fixtures & work holding tools.
  • Nov-2021: Shapeways Holdings partnered with Desktop Metal, a public American technology company. This partnership aimed to help Desktop Metal in expanding its system capacity as well as capabilities by providing consumers access to these solutions at Shapeways’ ISO-9001 manufacturing facilities in Long Island City, New York & Eindhoven, Netherlands. Furthermore, Desktop Metal aimed to leverage Otto, Shapeways’ manufacturing capabilities & purpose-built software platform with the focus of providing its consumers with instant access to fully digitized, end-to-end 3D printing workflows.
  • Oct-2021: Shapeways introduced Otto, Software-as-a-Service. The company focused on making the route to industrial-grade additive production simple, fast & more flexible. This product is expected to enable manufacturers in getting free access to completely digitized and end-to-end 3D printing workflows that help in removing unnecessary risk & costs.
  • Jun-2021: Stratasys introduced PolyJet 3D printers, Stratasys J35 Pro & the Stratasys J55 Prime, and the latest software solutions for research & packaging prototyping. This latest J35 Pro 3D printer accommodates everything from concept modeling to realistic, high-fidelity, and fully functioning models. In addition, the printer is an all-in-one, multi-material desktop 3D printer that is perfect for the engineering & design office setting.
  • Mar-2021: Dassault Systemes introduced two latest software packages on its 3DEXPERIENCE platform. This launch is focused on digital design hobbyists considering creating & share their 3D projects with all. The package provides an exclusive suite of purpose-built 3D design applications designed, by granting access to the original SOLIDWORKS Professional program that includes 3D Creator & 3D Sculptor for engineering & artistic enthusiasts alike.
  • Feb-2021: 3D Systems released high-speed fusion, a 3D printing system. This launch is expected to address aerospace & automotive applications. In addition, the system involves direct printing for applications including aerospace interiors & ducting; tooling & fixtures for things such as automation as well as robotics tooling, and prototyping parts for automotive, medical, and heavy equipment.
  • Feb-2020: Stratasys released J826 3D Printer. The newly launched printer combines part realism & productivity that includes full PANTONE, validated color & multi-material 3D printing. J826 is designed for the designers with the aim of making it possible for enterprise groups to save weeks on design cycles with unique print quality to create highly realistic prototypes which is expected to help achieve the exact intent of the designer, bringing them to life much faster &enhancing quality with more design iterations.

» Partnerships, Collaborations and Agreements:

  • Feb-2022: 3D Systems Corporations entered into a partnership with Saremco Dental AG. The companies aimed to improve its digital dentistry material portfolio. Under this partnership, the companies is expected to expand the distribution of the Swiss manufacturer’s CROWNTEC combined resins in the U.S. for 3D printing of biocompatible permanent restorations like onlays, crowns, veneers, inlays, & artificial teeth for dentures within dental clinics & labs.
  • Jan-2022: Materialise entered into a partnership with Sigma Labs, a quality assurance software developer. Through this partnership, the companies aimed to design a technology that enables the real-time correction of errors during metal additive manufacturing.
  • May-2021: Materialise partnered with Airbus, a European multinational aerospace corporation. The partnership aimed to make the companies qualified by the aerospace leader to manufacture flight-ready parts utilizing EOS’s laser sintering technology, especially the EOS P 770 & a flame-retardant polyamide (PA 2241 FR) powder.
  • Apr-2021: EnvisionTEC signed an agreement with Adaptive3D, the premium Additive Manufacturing polymer resin supplier. With this move, the companies aimed to pair ToughRubber photoresins with Xtreme 8K DLP (digital light processing) printers.

» Acquisitions and Mergers:

  • Feb-2022: 3D Systems took over Titan Additive & Kumovis, polymer extrusion 3D printing companies. This acquisition aimed at expanding the company's reach in the medical & industrial market, which is expected to enable the company to address its consumers' needs for large build volumes, superior performance & enhanced productivity at a lesser cost.

Scope of the Study

Market Segments Covered in the Report:

By Application

  • Functional Parts
  • Prototyping
  • Tooling

By Vertical

  • Dental/Healthcare
  • Fashion & Jewellery
  • Education
  • Objects
  • Food
  • Others

By Technology

  • Digital Light Processing
  • Stereolithography
  • Fuse Deposition Modelling
  • Laminated Object Manufacturing
  • Selective Laser Sintering & Others

By Component

  • Hardware
  • Software
    • Design Software
    • Printer Software
    • Inspection Software
    • Scanning Software

  • Services

By Material

  • Plastic
  • Ceramic
  • Metal

By Geography

  • North America
  • US
  • Canada
  • Mexico
  • Rest of North America
  • Europe
  • Germany
  • UK
  • France
  • Russia
  • Spain
  • Italy
  • Rest of Europe
  • Asia Pacific
  • China
  • Japan
  • India
  • South Korea
  • Singapore
  • Malaysia
  • Rest of Asia Pacific
  • LAMEA
  • Brazil
  • Argentina
  • UAE
  • Saudi Arabia
  • South Africa
  • Nigeria
  • Rest of LAMEA

Key Market Players

List of Companies Profiled in the Report:

  • Dassault Systèmes SE
  • 3D Systems Corporation
  • Autodesk, Inc.
  • Canon, Inc.
  • Materialise NV
  • EnvisionTec, Inc. (Desktop Metal, Inc.)
  • Voxeljet AG
  • Stratasys, Ltd.
  • Proto lab, Inc.
  • Shapeways, Inc.

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Table of Contents

Chapter 1. Market Scope & Methodology
1.1 Market Definition
1.2 Objectives
1.3 Market Scope
1.4 Segmentation
1.4.1 Global Desktop 3D Printing Market, by Application
1.4.2 Global Desktop 3D Printing Market, by Vertical
1.4.3 Global Desktop 3D Printing Market, by Technology
1.4.4 Global Desktop 3D Printing Market, by Component
1.4.5 Global Desktop 3D Printing Market, by Material
1.4.6 Global Desktop 3D Printing Market, by Geography
1.5 Methodology for the research
Chapter 2. Market Overview
2.1 Introduction
2.1.1 Overview
2.1.1.1 Market Composition and Scenario
2.2 Key Factors Impacting the Market
2.2.1 Market Drivers
2.2.2 Market Restraints
Chapter 3. Competition Analysis - Global
3.1 Cardinal Matrix
3.2 Recent Industry Wide Strategic Developments
3.2.1 Partnerships, Collaborations and Agreements
3.2.2 Product Launches and Product Expansions
3.2.3 Acquisition and Mergers
3.2.4 Geographical Expansions
3.3 Top Winning Strategies
3.3.1 Key Leading Strategies: Percentage Distribution (2018-2022)
3.3.2 Key Strategic Move: (Product Launches and Product Expansions: 2012, Jun - 2020, Feb) Leading Players
Chapter 4. Global Desktop 3D Printing Market by Application
4.1 Global Functional Parts Market by Region
4.2 Global Prototyping Market by Region
4.3 Global Tooling Market by Region
Chapter 5. Global Desktop 3D Printing Market by Vertical
5.1 Global Dental/Healthcare Market by Region
5.2 Global Fashion & Jewellery Market by Region
5.3 Global Education Market by Region
5.4 Global Objects Market by Region
5.5 Global Food Market by Region
5.6 Global Others Market by Region
Chapter 6. Global Desktop 3D Printing Market by Technology
6.1 Global Digital Light Processing Market by Region
6.2 Global Stereolithography Market by Region
6.3 Global Fuse Deposition Modelling Market by Region
6.4 Global Laminated Object Manufacturing Market by Region
6.5 Global Selective Laser Sintering & Others Market by Region
Chapter 7. Global Desktop 3D Printing Market by Component
7.1 Global Hardware Market by Region
7.2 Global Software Market by Region
7.3 Global Desktop 3D Printing Market by Software Type
7.3.1 Global Design Software Market by Region
7.3.2 Global Printer Software Market by Region
7.3.3 Global Inspection Software Market by Region
7.3.4 Global Scanning Software Market by Region
7.4 Global Services Market by Region
Chapter 8. Global Desktop 3D Printing Market by Material
8.1 Global Plastic Market by Region
8.2 Global Ceramic Market by Region
8.3 Global Metal Market by Region
Chapter 9. Global Desktop 3D Printing Market by Region
9.1 North America Desktop 3D Printing Market
9.1.1 North America Desktop 3D Printing Market by Application
9.1.1.1 North America Functional Parts Market by Country
9.1.1.2 North America Prototyping Market by Country
9.1.1.3 North America Tooling Market by Country
9.1.2 North America Desktop 3D Printing Market by Vertical
9.1.2.1 North America Dental/Healthcare Market by Country
9.1.2.2 North America Fashion & Jewellery Market by Country
9.1.2.3 North America Education Market by Country
9.1.2.4 North America Objects Market by Country
9.1.2.5 North America Food Market by Country
9.1.2.6 North America Others Market by Country
9.1.3 North America Desktop 3D Printing Market by Technology
9.1.3.1 North America Digital Light Processing Market by Country
9.1.3.2 North America Stereolithography Market by Country
9.1.3.3 North America Fuse Deposition Modelling Market by Country
9.1.3.4 North America Laminated Object Manufacturing Market by Country
9.1.3.5 North America Selective Laser Sintering & Others Market by Country
9.1.4 North America Desktop 3D Printing Market by Component
9.1.4.1 North America Hardware Market by Country
9.1.4.2 North America Software Market by Country
9.1.4.3 North America Desktop 3D Printing Market by Software Type
9.1.4.3.1 North America Design Software Market by Country
9.1.4.3.2 North America Printer Software Market by Country
9.1.4.3.3 North America Inspection Software Market by Country
9.1.4.3.4 North America Scanning Software Market by Country
9.1.4.4 North America Services Market by Country
9.1.5 North America Desktop 3D Printing Market by Material
9.1.5.1 North America Plastic Market by Country
9.1.5.2 North America Ceramic Market by Country
9.1.5.3 North America Metal Market by Country
9.1.6 North America Desktop 3D Printing Market by Country
9.1.6.1 US Desktop 3D Printing Market
9.1.6.1.1 US Desktop 3D Printing Market by Application
9.1.6.1.2 US Desktop 3D Printing Market by Vertical
9.1.6.1.3 US Desktop 3D Printing Market by Technology
9.1.6.1.4 US Desktop 3D Printing Market by Component
9.1.6.1.5 US Desktop 3D Printing Market by Material
9.1.6.2 Canada Desktop 3D Printing Market
9.1.6.2.1 Canada Desktop 3D Printing Market by Application
9.1.6.2.2 Canada Desktop 3D Printing Market by Vertical
9.1.6.2.3 Canada Desktop 3D Printing Market by Technology
9.1.6.2.4 Canada Desktop 3D Printing Market by Component
9.1.6.2.5 Canada Desktop 3D Printing Market by Material
9.1.6.3 Mexico Desktop 3D Printing Market
9.1.6.3.1 Mexico Desktop 3D Printing Market by Application
9.1.6.3.2 Mexico Desktop 3D Printing Market by Vertical
9.1.6.3.3 Mexico Desktop 3D Printing Market by Technology
9.1.6.3.4 Mexico Desktop 3D Printing Market by Component
9.1.6.3.5 Mexico Desktop 3D Printing Market by Material
9.1.6.4 Rest of North America Desktop 3D Printing Market
9.1.6.4.1 Rest of North America Desktop 3D Printing Market by Application
9.1.6.4.2 Rest of North America Desktop 3D Printing Market by Vertical
9.1.6.4.3 Rest of North America Desktop 3D Printing Market by Technology
9.1.6.4.4 Rest of North America Desktop 3D Printing Market by Component
9.1.6.4.5 Rest of North America Desktop 3D Printing Market by Material
9.2 Europe Desktop 3D Printing Market
9.2.1 Europe Desktop 3D Printing Market by Application
9.2.1.1 Europe Functional Parts Market by Country
9.2.1.2 Europe Prototyping Market by Country
9.2.1.3 Europe Tooling Market by Country
9.2.2 Europe Desktop 3D Printing Market by Vertical
9.2.2.1 Europe Dental/Healthcare Market by Country
9.2.2.2 Europe Fashion & Jewellery Market by Country
9.2.2.3 Europe Education Market by Country
9.2.2.4 Europe Objects Market by Country
9.2.2.5 Europe Food Market by Country
9.2.2.6 Europe Others Market by Country
9.2.3 Europe Desktop 3D Printing Market by Technology
9.2.3.1 Europe Digital Light Processing Market by Country
9.2.3.2 Europe Stereolithography Market by Country
9.2.3.3 Europe Fuse Deposition Modelling Market by Country
9.2.3.4 Europe Laminated Object Manufacturing Market by Country
9.2.3.5 Europe Selective Laser Sintering & Others Market by Country
9.2.4 Europe Desktop 3D Printing Market by Component
9.2.4.1 Europe Hardware Market by Country
9.2.4.2 Europe Software Market by Country
9.2.4.3 Europe Desktop 3D Printing Market by Software Type
9.2.4.3.1 Europe Design Software Market by Country
9.2.4.3.2 Europe Printer Software Market by Country
9.2.4.3.3 Europe Inspection Software Market by Country
9.2.4.3.4 Europe Scanning Software Market by Country
9.2.4.4 Europe Services Market by Country
9.2.5 Europe Desktop 3D Printing Market by Material
9.2.5.1 Europe Plastic Market by Country
9.2.5.2 Europe Ceramic Market by Country
9.2.5.3 Europe Metal Market by Country
9.2.6 Europe Desktop 3D Printing Market by Country
9.2.6.1 Germany Desktop 3D Printing Market
9.2.6.1.1 Germany Desktop 3D Printing Market by Application
9.2.6.1.2 Germany Desktop 3D Printing Market by Vertical
9.2.6.1.3 Germany Desktop 3D Printing Market by Technology
9.2.6.1.4 Germany Desktop 3D Printing Market by Component
9.2.6.1.5 Germany Desktop 3D Printing Market by Material
9.2.6.2 UK Desktop 3D Printing Market
9.2.6.2.1 UK Desktop 3D Printing Market by Application
9.2.6.2.2 UK Desktop 3D Printing Market by Vertical
9.2.6.2.3 UK Desktop 3D Printing Market by Technology
9.2.6.2.4 UK Desktop 3D Printing Market by Component
9.2.6.2.5 UK Desktop 3D Printing Market by Material
9.2.6.3 France Desktop 3D Printing Market
9.2.6.3.1 France Desktop 3D Printing Market by Application
9.2.6.3.2 France Desktop 3D Printing Market by Vertical
9.2.6.3.3 France Desktop 3D Printing Market by Technology
9.2.6.3.4 France Desktop 3D Printing Market by Component
9.2.6.3.5 France Desktop 3D Printing Market by Material
9.2.6.4 Russia Desktop 3D Printing Market
9.2.6.4.1 Russia Desktop 3D Printing Market by Application
9.2.6.4.2 Russia Desktop 3D Printing Market by Vertical
9.2.6.4.3 Russia Desktop 3D Printing Market by Technology
9.2.6.4.4 Russia Desktop 3D Printing Market by Component
9.2.6.4.5 Russia Desktop 3D Printing Market by Material
9.2.6.5 Spain Desktop 3D Printing Market
9.2.6.5.1 Spain Desktop 3D Printing Market by Application
9.2.6.5.2 Spain Desktop 3D Printing Market by Vertical
9.2.6.5.3 Spain Desktop 3D Printing Market by Technology
9.2.6.5.4 Spain Desktop 3D Printing Market by Component
9.2.6.5.5 Spain Desktop 3D Printing Market by Material
9.2.6.6 Italy Desktop 3D Printing Market
9.2.6.6.1 Italy Desktop 3D Printing Market by Application
9.2.6.6.2 Italy Desktop 3D Printing Market by Vertical
9.2.6.6.3 Italy Desktop 3D Printing Market by Technology
9.2.6.6.4 Italy Desktop 3D Printing Market by Component
9.2.6.6.5 Italy Desktop 3D Printing Market by Material
9.2.6.7 Rest of Europe Desktop 3D Printing Market
9.2.6.7.1 Rest of Europe Desktop 3D Printing Market by Application
9.2.6.7.2 Rest of Europe Desktop 3D Printing Market by Vertical
9.2.6.7.3 Rest of Europe Desktop 3D Printing Market by Technology
9.2.6.7.4 Rest of Europe Desktop 3D Printing Market by Component
9.2.6.7.5 Rest of Europe Desktop 3D Printing Market by Material
9.3 Asia Pacific Desktop 3D Printing Market
9.3.1 Asia Pacific Desktop 3D Printing Market by Application
9.3.1.1 Asia Pacific Functional Parts Market by Country
9.3.1.2 Asia Pacific Prototyping Market by Country
9.3.1.3 Asia Pacific Tooling Market by Country
9.3.2 Asia Pacific Desktop 3D Printing Market by Vertical
9.3.2.1 Asia Pacific Dental/Healthcare Market by Country
9.3.2.2 Asia Pacific Fashion & Jewellery Market by Country
9.3.2.3 Asia Pacific Education Market by Country
9.3.2.4 Asia Pacific Objects Market by Country
9.3.2.5 Asia Pacific Food Market by Country
9.3.2.6 Asia Pacific Others Market by Country
9.3.3 Asia Pacific Desktop 3D Printing Market by Technology
9.3.3.1 Asia Pacific Digital Light Processing Market by Country
9.3.3.2 Asia Pacific Stereolithography Market by Country
9.3.3.3 Asia Pacific Fuse Deposition Modelling Market by Country
9.3.3.4 Asia Pacific Laminated Object Manufacturing Market by Country
9.3.3.5 Asia Pacific Selective Laser Sintering & Others Market by Country
9.3.4 Asia Pacific Desktop 3D Printing Market by Component
9.3.4.1 Asia Pacific Hardware Market by Country
9.3.4.2 Asia Pacific Software Market by Country
9.3.4.3 Asia Pacific Desktop 3D Printing Market by Software Type
9.3.4.3.1 Asia Pacific Design Software Market by Country
9.3.4.3.2 Asia Pacific Printer Software Market by Country
9.3.4.3.3 Asia Pacific Inspection Software Market by Country
9.3.4.3.4 Asia Pacific Scanning Software Market by Country
9.3.4.4 Asia Pacific Services Market by Country
9.3.5 Asia Pacific Desktop 3D Printing Market by Material
9.3.5.1 Asia Pacific Plastic Market by Country
9.3.5.2 Asia Pacific Ceramic Market by Country
9.3.5.3 Asia Pacific Metal Market by Country
9.3.6 Asia Pacific Desktop 3D Printing Market by Country
9.3.6.1 China Desktop 3D Printing Market
9.3.6.1.1 China Desktop 3D Printing Market by Application
9.3.6.1.2 China Desktop 3D Printing Market by Vertical
9.3.6.1.3 China Desktop 3D Printing Market by Technology
9.3.6.1.4 China Desktop 3D Printing Market by Component
9.3.6.1.5 China Desktop 3D Printing Market by Material
9.3.6.2 Japan Desktop 3D Printing Market
9.3.6.2.1 Japan Desktop 3D Printing Market by Application
9.3.6.2.2 Japan Desktop 3D Printing Market by Vertical
9.3.6.2.3 Japan Desktop 3D Printing Market by Technology
9.3.6.2.4 Japan Desktop 3D Printing Market by Component
9.3.6.2.5 Japan Desktop 3D Printing Market by Material
9.3.6.3 India Desktop 3D Printing Market
9.3.6.3.1 India Desktop 3D Printing Market by Application
9.3.6.3.2 India Desktop 3D Printing Market by Vertical
9.3.6.3.3 India Desktop 3D Printing Market by Technology
9.3.6.3.4 India Desktop 3D Printing Market by Component
9.3.6.3.5 India Desktop 3D Printing Market by Material
9.3.6.4 South Korea Desktop 3D Printing Market
9.3.6.4.1 South Korea Desktop 3D Printing Market by Application
9.3.6.4.2 South Korea Desktop 3D Printing Market by Vertical
9.3.6.4.3 South Korea Desktop 3D Printing Market by Technology
9.3.6.4.4 South Korea Desktop 3D Printing Market by Component
9.3.6.4.5 South Korea Desktop 3D Printing Market by Material
9.3.6.5 Singapore Desktop 3D Printing Market
9.3.6.5.1 Singapore Desktop 3D Printing Market by Application
9.3.6.5.2 Singapore Desktop 3D Printing Market by Vertical
9.3.6.5.3 Singapore Desktop 3D Printing Market by Technology
9.3.6.5.4 Singapore Desktop 3D Printing Market by Component
9.3.6.5.5 Singapore Desktop 3D Printing Market by Material
9.3.6.6 Malaysia Desktop 3D Printing Market
9.3.6.6.1 Malaysia Desktop 3D Printing Market by Application
9.3.6.6.2 Malaysia Desktop 3D Printing Market by Vertical
9.3.6.6.3 Malaysia Desktop 3D Printing Market by Technology
9.3.6.6.4 Malaysia Desktop 3D Printing Market by Component
9.3.6.6.5 Malaysia Desktop 3D Printing Market by Material
9.3.6.7 Rest of Asia Pacific Desktop 3D Printing Market
9.3.6.7.1 Rest of Asia Pacific Desktop 3D Printing Market by Application
9.3.6.7.2 Rest of Asia Pacific Desktop 3D Printing Market by Vertical
9.3.6.7.3 Rest of Asia Pacific Desktop 3D Printing Market by Technology
9.3.6.7.4 Rest of Asia Pacific Desktop 3D Printing Market by Component
9.3.6.7.5 Rest of Asia Pacific Desktop 3D Printing Market by Material
9.4 LAMEA Desktop 3D Printing Market
9.4.1 LAMEA Desktop 3D Printing Market by Application
9.4.1.1 LAMEA Functional Parts Market by Country
9.4.1.2 LAMEA Prototyping Market by Country
9.4.1.3 LAMEA Tooling Market by Country
9.4.2 LAMEA Desktop 3D Printing Market by Vertical
9.4.2.1 LAMEA Dental/Healthcare Market by Country
9.4.2.2 LAMEA Fashion & Jewellery Market by Country
9.4.2.3 LAMEA Education Market by Country
9.4.2.4 LAMEA Objects Market by Country
9.4.2.5 LAMEA Food Market by Country
9.4.2.6 LAMEA Others Market by Country
9.4.3 LAMEA Desktop 3D Printing Market by Technology
9.4.3.1 LAMEA Digital Light Processing Market by Country
9.4.3.2 LAMEA Stereolithography Market by Country
9.4.3.3 LAMEA Fuse Deposition Modelling Market by Country
9.4.3.4 LAMEA Laminated Object Manufacturing Market by Country
9.4.3.5 LAMEA Selective Laser Sintering & Others Market by Country
9.4.4 LAMEA Desktop 3D Printing Market by Component
9.4.4.1 LAMEA Hardware Market by Country
9.4.4.2 LAMEA Software Market by Country
9.4.4.3 LAMEA Desktop 3D Printing Market by Software Type
9.4.4.3.1 LAMEA Design Software Market by Country
9.4.4.3.2 LAMEA Printer Software Market by Country
9.4.4.3.3 LAMEA Inspection Software Market by Country
9.4.4.3.4 LAMEA Scanning Software Market by Country
9.4.4.4 LAMEA Services Market by Country
9.4.5 LAMEA Desktop 3D Printing Market by Material
9.4.5.1 LAMEA Plastic Market by Country
9.4.5.2 LAMEA Ceramic Market by Country
9.4.5.3 LAMEA Metal Market by Country
9.4.6 LAMEA Desktop 3D Printing Market by Country
9.4.6.1 Brazil Desktop 3D Printing Market
9.4.6.1.1 Brazil Desktop 3D Printing Market by Application
9.4.6.1.2 Brazil Desktop 3D Printing Market by Vertical
9.4.6.1.3 Brazil Desktop 3D Printing Market by Technology
9.4.6.1.4 Brazil Desktop 3D Printing Market by Component
9.4.6.1.5 Brazil Desktop 3D Printing Market by Material
9.4.6.2 Argentina Desktop 3D Printing Market
9.4.6.2.1 Argentina Desktop 3D Printing Market by Application
9.4.6.2.2 Argentina Desktop 3D Printing Market by Vertical
9.4.6.2.3 Argentina Desktop 3D Printing Market by Technology
9.4.6.2.4 Argentina Desktop 3D Printing Market by Component
9.4.6.2.5 Argentina Desktop 3D Printing Market by Material
9.4.6.3 UAE Desktop 3D Printing Market
9.4.6.3.1 UAE Desktop 3D Printing Market by Application
9.4.6.3.2 UAE Desktop 3D Printing Market by Vertical
9.4.6.3.3 UAE Desktop 3D Printing Market by Technology
9.4.6.3.4 UAE Desktop 3D Printing Market by Component
9.4.6.3.5 UAE Desktop 3D Printing Market by Material
9.4.6.4 Saudi Arabia Desktop 3D Printing Market
9.4.6.4.1 Saudi Arabia Desktop 3D Printing Market by Application
9.4.6.4.2 Saudi Arabia Desktop 3D Printing Market by Vertical
9.4.6.4.3 Saudi Arabia Desktop 3D Printing Market by Technology
9.4.6.4.4 Saudi Arabia Desktop 3D Printing Market by Component
9.4.6.4.5 Saudi Arabia Desktop 3D Printing Market by Material
9.4.6.5 South Africa Desktop 3D Printing Market
9.4.6.5.1 South Africa Desktop 3D Printing Market by Application
9.4.6.5.2 South Africa Desktop 3D Printing Market by Vertical
9.4.6.5.3 South Africa Desktop 3D Printing Market by Technology
9.4.6.5.4 South Africa Desktop 3D Printing Market by Component
9.4.6.5.5 South Africa Desktop 3D Printing Market by Material
9.4.6.6 Nigeria Desktop 3D Printing Market
9.4.6.6.1 Nigeria Desktop 3D Printing Market by Application
9.4.6.6.2 Nigeria Desktop 3D Printing Market by Vertical
9.4.6.6.3 Nigeria Desktop 3D Printing Market by Technology
9.4.6.6.4 Nigeria Desktop 3D Printing Market by Component
9.4.6.6.5 Nigeria Desktop 3D Printing Market by Material
9.4.6.7 Rest of LAMEA Desktop 3D Printing Market
9.4.6.7.1 Rest of LAMEA Desktop 3D Printing Market by Application
9.4.6.7.2 Rest of LAMEA Desktop 3D Printing Market by Vertical
9.4.6.7.3 Rest of LAMEA Desktop 3D Printing Market by Technology
9.4.6.7.4 Rest of LAMEA Desktop 3D Printing Market by Component
9.4.6.7.5 Rest of LAMEA Desktop 3D Printing Market by Material
Chapter 10. Company Profiles
10.1 Dassault Systèmes SE
10.1.1 Company Overview
10.1.2 Financial Analysis
10.1.3 Regional Analysis
10.1.4 Research & Development Expense
10.1.5 Recent strategies and developments:
10.1.5.1 Partnerships, Collaborations, and Agreements:
10.1.5.2 Product Launches and Product Expansions:
10.1.6 SWOT Analysis
10.2 3D Systems Corporation
10.2.1 Company Overview
10.2.2 Financial Analysis
10.2.3 Segmental and Regional Analysis
10.2.4 Research & Development Expense
10.2.5 Recent strategies and developments:
10.2.5.1 Partnerships, Collaborations, and Agreements:
10.2.5.2 Product Launches and Product Expansions:
10.2.5.3 Acquisition and Mergers:
10.2.6 SWOT Analysis
10.3 Autodesk, Inc.
10.3.1 Company Overview
10.3.2 Financial Analysis
10.3.3 Regional Analysis
10.3.4 Research & Development Expenses
10.3.5 Recent strategies and developments:
10.3.5.1 Geographical Expansions:
10.3.6 SWOT Analysis
10.4 Canon, Inc.
10.4.1 Company Overview
10.4.2 Financial Analysis
10.4.3 Segmental and Regional Analysis
10.4.4 Research & Development Expenses
10.5 Materialise NV
10.5.1 Company Overview
10.5.2 Financial Analysis
10.5.3 Segmental and Regional Analysis
10.5.4 Research & Development Expenses
10.5.5 Recent strategies and developments:
10.5.5.1 Partnerships, Collaborations, and Agreements:
10.6 EnvisionTec, Inc. (Desktop Metal, Inc.)
10.6.1 Company Overview
10.6.2 Financial Analysis
10.6.3 Regional Analysis
10.6.4 Research & Development Expenses
10.6.5 Recent strategies and developments:
10.6.5.1 Partnerships, Collaborations, and Agreements:
10.6.5.2 Product Launches and Product Expansions:
10.7 Voxeljet AG
10.7.1 Company Overview
10.7.2 Financial Analysis
10.7.3 Segmental and Regional Analysis
10.7.4 Research & Development Expenses
10.8 Stratasys, Ltd.
10.8.1 Company Overview
10.8.2 Recent strategies and developments:
10.8.2.1 Product Launches and Product Expansions:
10.9 Proto Labs, Inc.
10.9.1 Company Overview
10.9.2 Financial Analysis
10.9.3 Regional Analysis
10.9.4 Research & Development Expenses
10.10. Shapeways, Inc.
10.10.1 Company Overview
10.10.2 Financial Analysis
10.10.3 Research & Development Expenses
10.10.4 Recent strategies and developments:
10.10.4.1 Product Launches and Product Expansions:

Companies Mentioned

  • Dassault Systèmes SE
  • 3D Systems Corporation
  • Autodesk, Inc.
  • Canon, Inc.
  • Materialise NV
  • EnvisionTec, Inc. (Desktop Metal, Inc.)
  • Voxeljet AG
  • Stratasys, Ltd.
  • Proto lab, Inc.
  • Shapeways, Inc.

Methodology

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