From swift production times to energy-efficient workflows, dental 3d printing devices offer compelling advantages for clinics, labs, and patients alike. As global dental professionals gain expertise in 3D printing, we can anticipate even more transformative updates that will solidify its position as a cornerstone of modern oral care
New Delhi, Dec. 30, 2024 (GLOBE NEWSWIRE) — The global dental 3D printing devices market is projected to hit the market valuation of US$ 50.10 billion by 2033 from US$ 10.50 billion in 2024 at a CAGR of 18.96% during the forecast period 2025–2033.
Dental 3D printing devices are revolutionizing oral healthcare with unprecedented precision and agility. These devices help craft customized crowns, bridges, surgical guides, and dental implants while significantly reducing turnaround times. Today, dental 3D printing amounts to more than a mere trend in 2023—it is a critical pillar of contemporary dentistry. Multiple manufacturers, such as Formlabs with its Form 3B series, are enabling clinics to produce highly accurate and patient-specific restorations in under a day. For instance, reputable labs like California’s Glidewell Laboratories have integrated over 40 industrial-grade printers to expedite crown manufacturing. Meanwhile, Carbon’s M2 printer employs Digital Light Synthesis for ultra-fast curing times, marking a major leap forward in prosthetic production speed.
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According to a recent technology update from the International Dental Show (IDS) in Cologne, 15 new resin-based printers specifically geared toward orthodontic aligners were launched in the first half of 2023. In Asia dental 3D printing devices market, over 2,000 clinics have reported adopting specialized 3D printing workflows for same-day implant services. Stratasys, with its J5 DentaJet, has delivered more than 800 units worldwide, each capable of printing multi-color, multi-material dental appliances in a single run. In addition, the FDA has cleared 24 new biocompatible printing materials that suit everything from surgical guides to dentures. Across Europe, more than 60 dental organizations now actively train staff on in-house 3D printing techniques, further demonstrating its growing importance.
These technological innovations do far more than just speed up production. They allow for intricate designs—such as bridging implants and advanced prosthetics—once deemed too complex or time-consuming. With direct chairside applications, practitioners can now fabricate ultra-personalized restorations while the patient waits. By harnessing cutting-edge devices and validated printing materials, dental professionals can confidently deliver results that align with exact oral anatomies. Consequently, 3D printing is setting new standards for clinical excellence, dramatically reducing wait times, and paving the way for truly patient-centric dentistry.
Key Findings in Dental 3D Printing Devices Market
Market Forecast (2033) | US$ 50.10 billion |
CAGR | 18.96% |
Largest Region (2024) | North America (40%) |
By Equipment | 3D Printing Scanner (60%) |
By Technology | SLA (55%) |
By Material | Plastic (70%) |
By Applications | Orthodontics (40%) |
Top Drivers |
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Top Trends |
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Top Challenges |
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Rising Demand Shifts Dental Laboratories Towards Advanced Device Adoption And Integration
Dental laboratories across the global dental 3D printing devices market are recognizing the need to embrace 3D printing devices as conventional fabrication methods become obsolete in the face of modern patient demands. McGill University’s Faculty of Dentistry states that at least 4,500 students worldwide have enrolled in specialized 3D printing courses in 2023. Meanwhile, leading dental laboratory networks in the United States, including National Dentex Labs, have added over 20 new printer models to their facilities to handle restoration requests. The popularity of digital workflows is further exemplified by the 35 newly opened, fully digitized labs in Canada, each equipped with multiple resin and metal dental 3D printers. In the UK, at least 12 continuing education events in 2023 focused exclusively on training technicians in advanced print setups. A number of labs in Germany, such as Flemming Dental, now utilize more than 25 high-definition printers for specialized tasks like producing geometric occlusal splints. Moreover, post-processing hardware—like the Bright Dental Wash & Cure system—has seen an uptick of 1,000 units sold this year, signifying a push for end-to-end print solutions. Dental labs in Japan have formed a collective innovation hub, testing around 18 new 3D printing materials that promise higher fracture toughness and clarity in final restorations. Across the Middle East, 70 newly certified lab technicians are emerging from specialized 3D printing training programs, marking a substantial increase in skilled professionals.
With these technological integrations, dental labs across the global dental 3D printing devices market can now accommodate a broader range of client needs—from single-unit crowns to fully customized orthodontic appliances. Many labs also leverage automated design software, like 3Shape Dental System, to generate precise digital models ready for print. The synergy between advanced scanners, cloud-based design platforms, and high-performance printers allows labs to optimize materials, reduce manual errors, and deliver a higher volume of cases in less time. This accelerated production capability not only boosts profitability but also cements labs as leaders in cutting-edge patient care, bridging the gap between traditional craftsmanship and modern innovation.
Material Advancements Propel Next-Generation Dental 3D Printing For Enhanced Clinical Efficiency
Beyond hardware breakthroughs, the progress in dental 3D printing materials is transforming treatment outcomes. In 2023 alone, 3D Systems unveiled seven new NextDent materials ranging from flexible dentures to reinforced surgical guides. Meanwhile, Dentsply Sirona introduced four specialized zirconia-based filaments that significantly improve the longevity of crowns and bridges. At the University of Toronto’s Materials Research Lab, scientists discovered an experimental polymer showing a threefold increase in tensile strength compared to conventional resin. Desktop Health, a division of Desktop Metal, launched a bioactive resin that promotes gum tissue adhesion, offering a new dimension for gingival restorations. In Europe dental 3D printing devices market, 15 national dental associations have recognized newly developed biocompatible materials for their potential to reduce post-operative complications. Some clinics in South Korea report using a next-gen ceramic resin that shortens milling times by half, optimizing same-day treatments. Furthermore, a new fiberglass-infused resin type is undergoing trials in 10 major research centers to validate its fracture resistance in load-bearing implants. In Australia, at least 30 dentists participated in pilot programs testing heat-resistant resins designed for advanced surgical guide manufacturing.
The upsurge in specialized materials addresses diverse clinical applications, whether it’s manufacturing a custom aligner or a complex implant abutment. By significantly expanding compatibility with open-source printers, these materials simplify workflows and bring down operational costs. As a result, laboratories and dental offices can customize solutions with more confidence, balancing durability and aesthetics. The frequent introductions of novel polymers, ceramics, and hybrid composites are catalyzing unprecedented levels of precision, helping dentists ensure a snug fit and optimal function. Ultimately, these materials champion personalized care strategies that can significantly minimize chairside adjustments and postoperative issues, thereby solidifying the future of 3D printing in modern dentistry.
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Collaborations Drive Wider Usage and Accelerate Growth In Global Dental 3D Printing Devices Market
Strategic partnerships are fueling dental 3D printing growth, tying together hardware manufacturers, software developers, and material researchers. In 2023, Formlabs announced a new collaboration with Henry Schein, providing more than 500 dental distributors immediate access to Form 3B printers and compatible resins. Similarly, Ivoclar and Carbon joined forces to test advanced resin formulations, leading to the certification of two brand-new resin products for long-term patient restorations. The European Federation of Periodontology has partnered with Stratasys to introduce a specialized training module for complex periodontal surgical guides. Meanwhile, the American Dental Association is cooperating with CAD/CAM software providers to streamline the digital workflow from tooth scanning to final print. During LMT Lab Day in Chicago, 22 joint product demonstrations highlighted synergy between 3D printers and milling units, enabling labs to finalize complex restorations in under 48 hours. Funded by a global health consortium in the dental 3D printing devices market, the University of Melbourne has introduced a cross-disciplinary research initiative involving 10 leading 3D printing firms. This program explores new material substrates aimed at enhancing implant stability. In India, a collaborative network of 100 private clinics has been established to share best practices for 3D-printed aligner solutions. Additionally, the Middle East witnessed a cross-border partnership that brought together six major labs to develop region-specific 3D printing workflows, addressing local regulatory requirements.
Such collaborative efforts extend beyond product co-development and training. By pooling resources and expertise, these partnerships help standardize printing protocols, ensuring that clinicians can seamlessly switch between different systems without losing quality or reliability.
Sustainable 3D Printing Practices Elevating Patient Outcomes and Fortifying Industry Reputation
As the dental sector increasingly integrates 3D printing, sustainability has emerged as a crucial focus, shaping technology choices and overall patient care. By 2023, at least 10 major dental printer manufacturers in the dental 3D printing devices market, including Sisma and Prodways, have launched eco-friendly product lines emphasizing energy-efficient operations. A multi-institutional study led by the University of Cambridge highlighted that resin recycling methods can recover up to 40 kilograms of unused material per year for larger labs. In Switzerland, five leading dental centers, such as the University Hospital of Basel, are running pilot programs to assess biodegradable supports that degrade under simple water-based treatments. Meanwhile, the Harvard School of Dental Medicine introduced an annual conference dedicated to green 3D printing innovations, featuring 18 sustainability-focused exhibitors and multiple clinical case studies.
In Japan, a new cross-industry consortium in the dental 3D printing devices market is working on precision recycling solutions for metal-based dental posts, potentially reducing metallic waste by nearly one metric ton per year. Concurrently, eight research teams across the EU are exploring plant-based resins that produce lower VOC emissions during the printing process and curing cycles. Africa’s first sustainable dental tech hub in Nairobi, supported by an international grant, now features advanced 3D printers that run on solar-generated power. Moreover, the Indian Institute of Technology (IIT) in Bombay is investigating ways to repurpose leftover support materials for educational models, aiming to cut back on disposable plastic usage.
Global Dental 3D Printing Devices Market Key Players:
- Ackuretta
- Asiga
- Bego USA, Inc.
- Dentsply Sirona Inc.
- Desktop Metal
- Eplus3D Tech Co., Ltd
- Formlabs Inc.
- Höganäs AB
- Institut Straumann
- Renishaw
- SLM Solutions
- SprintRay
- Sterngold Dental LLC
- Stratasys Ltd
- 3D Systems
- Other Prominent Players
Market Segmentation:
By Equipment
- 3D Scanners
- 3D Printer
By Technology
- Stereolithography (SLA)
- LCD
- FDM
- SLS
By Material
- Plastics
- Metals
By Application
- Orthodontics
- Prosthodontics
- Implantology
By End Use
- Dental Labs
- Dental Clinics
- Hospitals
By Region
- North America
- Europe
- Asia Pacific
- Middle East & Africa
- South America
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