The global dental 3D printing market value was USD 2 billion in 2022, driven by the rising prevalence of dental disorders across the globe. The market size is anticipated to grow at a CAGR of 24.20% during the forecast period of 2023-2031 to achieve a value of USD 13.92 billion by 2031.
Based on technology, the increasing adoption of vat photopolymerisation is driving the market growth of dental 3D printing. Vat polymerisation, a 3D printing process, uses a light source to solidify liquid photocurable resins and develop a solid part. The technology is used in many applications in the dental sector, such as dental models, surgical guides, crowns, and bridges, among others. In addition, it provides multiple advantages, like high accuracy, availability of a wide range of resin materials, and offers fine pieces with a smooth surface finish.
The growing popularity of vat polymerisation technologies, such as stereolithography (SLA) and digital light processing (DLP) 3D technologies, is providing impetus to the dental 3D printing market development. As digital light processing technology uses a conventional source of light rather than UV light, offers high-speed printing, and uses fewer resins, its preference is increasing to facilitate low cost and efficient resource utilisation. Advancements in vat photopolymerisation technologies and the development of automated systems are likely to further aid the market over the forecast period.
Dental 3D printing is the process of developing three-dimensional objects based on computer-aided design models for various applications like dental implants, crowns, and bridges, among others. Such technologies offer increased efficiency, better patient experience, high quality, and lower costs to dental practices.
The dental 3D printing market by technology is divided into:
Based on application, the market is segmented into:
On the basis of end use, the market is classified into:
The regional markets for dental 3D printing can be divided into North America, Europe, the Asia Pacific, Latin America, and the Middle East and Africa.
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The rising demand for cosmetic dentistry due to the increasing focus on physical appearance and improved living standards is driving the dental 3D printing market expansion. The growing prevalence of oral diseases worldwide, such as tooth decay, tooth loss, and gum diseases, due to unhealthy lifestyles, is boosting the adoption of dental procedures, hence contributing to the market growth of dental 3D printing.
The utilisation of 3D printing in dental clinics reduces product turnaround time, eliminates the wastage of materials, facilitates the designing and printing of more complex models, and offers more accurate results. Moreover, advancements in software applications and computer technologies, such as CAD, are benefitting the dental 3D printing market.
The expanding presence of dental clinics and the emergence of new dental practices worldwide are also aiding the market growth. Innovations in 3D printing technologies are expected to further strengthen the market for dental 3D printing over the forecast period.
The report gives a detailed analysis of the following key players in the global dental 3D printing market, covering their competitive landscape, capacity, and latest developments like mergers, acquisitions, and investments, expansions of capacity, and plant turnarounds:
The comprehensive EMR report provides an in-depth assessment of the market based on the Porter's five forces model along with giving a SWOT analysis.
|Scope of the Report||
Historical and Forecast Trends, Industry Drivers and Constraints, Historical and Forecast Market Analysis by Segment:
|Breakup by Technology||
|Breakup by Application||
|Breakup by End User||
|Breakup by Region||
*At Expert Market Research, we strive to always give you current and accurate information. The numbers depicted in the description are indicative and may differ from the actual numbers in the final EMR report.
1.1 Objectives of the Study
1.2 Key Assumptions
1.3 Report Coverage – Key Segmentation and Scope
1.4 Research Methodology
2 Executive Summary
3 Global Dental 3D Printing Market Overview
3.1 Global Dental 3D Printing Market Historical Value (2016-2022)
3.2 Global Dental 3D Printing Market Forecast Value (2023-2031)
4 Global Dental 3D Printing Market Landscape
4.1 Global Dental 3D Printing Developers Landscape
4.1.1 Analysis by Year of Establishment
4.1.2 Analysis by Company Size
4.1.3 Analysis by Region
4.2 Global Dental 3D Printing Product Landscape
4.2.1 Analysis by Technology
4.2.2 Analysis by End User
4.2.3 Analysis by Applications
5 Global Dental 3D Printing Market Dynamics
5.1 Market Drivers and Constraints
5.2 SWOT Analysis
5.3 Porter’s Five Forces Model
5.4 Key Demand Indicators
5.5 Key Price Indicators
5.6 Industry Events, Initiatives, and Trends
5.7 Value Chain Analysis
6 Global Dental 3D Printing Market Segmentation
6.1 Global Dental 3D Printing Market by Technology
6.1.1 Market Overview
6.1.2 Vat Photopolymerization
126.96.36.199 Digital Light Processing
188.8.131.52 Liquid Crystal Display
6.1.3 Poly Jet Technology
6.1.4 Fused Deposition Modelling
6.1.5 Selective Laser Sintering
6.2 Global Dental 3D Printing Market by Application
6.2.1 Market Overview
6.2.2 Dental Implants
6.2.4 Crown and Bridges
6.3 Global Dental 3D Printing Market by End User
6.3.1 Market Overview
6.3.2 Dental Hospitals
6.3.3 Dental Clinics and Laboratories
6.3.4 Academic and Research Institutes
6.4 Global Dental 3D Printing Market by Region
6.4.1 Market Overview
6.4.2 North America
6.4.4 Asia Pacific
6.4.5 Latin America
6.4.6 Middle East and Africa
7 North America Dental 3D Printing Market
7.1 Market Share by Country
7.2 United States of America
8 Europe Dental 3D Printing Market
8.1 Market Share by Country
8.2 United Kingdom
9 Asia Pacific Dental 3D Printing Market
9.1 Market Share by Country
10 Latin America Dental 3D Printing Market
10.1 Market Share by Country
11 Middle East and Africa Dental 3D Printing Market
11.1 Market Share by Country
11.2 Saudi Arabia
11.3 United Arab Emirates
11.5 South Africa
12 Patent Analysis
12.1 Analysis by Type of Patent
12.2 Analysis by Publication year
12.3 Analysis by Issuing Authority
12.4 Analysis by Patent Age
12.5 Analysis by CPC Analysis
12.6 Analysis by Patent Valuation
12.7 Analysis by Key Players
13 Grants Analysis
13.1 Analysis by year
13.2 Analysis by Amount Awarded
13.3 Analysis by Issuing Authority
13.4 Analysis by Grant Application
13.5 Analysis by Funding Institute
13.6 Analysis by NIH Departments
13.7 Analysis by Recipient Organization
14 Funding Analysis
14.1 Analysis by Funding Instances
14.2 Analysis by Type of Funding
14.3 Analysis by Funding Amount
14.4 Analysis by Leading Players
14.5 Analysis by Leading Investors
14.6 Analysis by Geography
15 Partnership and Collaborations Analysis
15.1 Analysis by Partnership Instances
15.2 Analysis by Type of Partnership
15.3 Analysis by Leading Players
15.4 Analysis by Geography
16 Regulatory Framework
16.1 Regulatory Overview
16.1.1 US FDA
16.1.2 EU EMA
16.1.3 INDIA CDSCO
16.1.4 JAPAN PMDA
17 Supplier Landscape
17.1 3D Systems, Inc.
17.1.1 Financial Analysis
17.1.2 Product Portfolio
17.1.3 Demographic Reach and Achievements
17.1.4 Mergers and Acquisitions
17.2 Stratasys Ltd.
17.2.1 Financial Analysis
17.2.2 Product Portfolio
17.2.3 Demographic Reach and Achievements
17.2.4 Mergers and Acquisitions
17.3 Roland DGA Corporation
17.3.1 Financial Analysis
17.3.2 Product Portfolio
17.3.3 Demographic Reach and Achievements
17.3.4 Mergers and Acquisitions
17.4 Dentsply Sirona
17.4.1 Financial Analysis
17.4.2 Product Portfolio
17.4.3 Demographic Reach and Achievements
17.4.4 Mergers and Acquisitions
17.5 Institut Straumann AG
17.5.1 Financial Analysis
17.5.2 Product Portfolio
17.5.3 Demographic Reach and Achievements
17.5.4 Mergers and Acquisitions
17.6 Formlabs Inc.
17.6.1 Financial Analysis
17.6.2 Product Portfolio
17.6.3 Demographic Reach and Achievements
17.6.4 Mergers and Acquisitions
17.7 Prodways Tech
17.7.1 Financial Analysis
17.7.2 Product Portfolio
17.7.3 Demographic Reach and Achievements
17.7.4 Mergers and Acquisitions
17.8.1 Financial Analysis
17.8.2 Product Portfolio
17.8.3 Demographic Reach and Achievements
17.8.4 Mergers and Acquisitions
17.9 SLM Solutions
17.9.1 Financial Analysis
17.9.2 Product Portfolio
17.9.3 Demographic Reach and Achievements
17.9.4 Mergers and Acquisitions
17.10.1 Financial Analysis
17.10.2 Product Portfolio
17.10.3 Demographic Reach and Achievements
17.10.4 Mergers and Acquisitions
17.11 Form Labs
17.11.1 Financial Analysis
17.11.2 Product Portfolio
17.11.3 Demographic Reach and Achievements
17.11.4 Mergers and Acquisitions
17.12.1 Financial Analysis
17.12.2 Product Portfolio
17.12.3 Demographic Reach and Achievements
17.12.4 Mergers and Acquisitions
17.13.1 Financial Analysis
17.13.2 Product Portfolio
17.13.3 Demographic Reach and Achievements
17.13.4 Mergers and Acquisitions
18 Global Dental 3D Printing Market- Distribution Model (Additional Insight)
18.2 Potential Distributors
18.3 Key Parameters for Distribution Partner Assessment
19 Key Opinion Leaders (KOL) Insights (Additional Insight)
20 Company Competitiveness Analysis (Additional Insight)
20.1 Very Small Companies
20.2 Small Companies
20.3 Mid-Sized Companies
20.4 Large Companies
20.5 Very Large Companies
21 Payment Methods (Additional Insight)
21.1 Government Funded
21.2 Private Insurance
*Additional insights provided are customisable as per client requirements.
The Dental 3D Printing Market was valued at USD 2 billion in 2022.
The market is expected to grow at a CAGR of 24.20% from 2023 to 2031 to reach a value of USD 13.92 billion by 2031.
The major market drivers include the expanding dental clinics, various benefits associated with dental 3D printing, and the growing popularity of vat photopolymerisation technologies.
The key market trends guiding the growth of the market include the increasing demand for cosmetic dentistry, the surging prevalence of oral diseases worldwide, advancements in computer technologies and software applications, and innovations in 3D printing technologies.
In the forecast period, dental 3D printing is anticipated to enable the efficient replacement or repair of a damaged tooth, the manufacturing of customised dental implants, and develop constructive surgical tools. Further, technological advancements and innovations in 3D printing technology are expected to enable dentists to expand service offerings and provide next or same-day dentistry services.
The significant technologies of dental 3D printing, include vat photopolymerisation, poly jet technology, fused deposition modelling, and selective laser sintering, among others.
The major regions in the market are North America, Europe, the Asia Pacific, Latin America, and the Middle East and Africa.
The various applications of dental 3D printing include dental implants, dentures, and crown and bridges, among others.
The different end uses of dental 3D printing include dental clinics and laboratories, and academic and research institutes, among others.
3D printing technologies like digital light processing (DLP) and stereolithography (SLA), among others, are increasingly used to offer enhanced precision and accuracy in various dental applications.
The major players in the market are 3D Systems, Inc., Stratasys Ltd., Roland DGA Corporation, Dentsply Sirona, Institut Straumann AG, Formlabs Inc., and Prodways Tech, among others.
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