Dental AM
Dental additive manufacturing became the first segment to achieve the production of certain end-use parts, effectively fueling growth for all main traditional polymer additive manufacturing hardware and material stakeholders. Photopolymerization (and material jetting, which is a type of photopolymerization) companies such as Stratasys, 3D Systems, EnvisionTEC, DWS and Prodways – embraced the dental AM segment first.
They were followed by two different categories of companies. On one hand, leading dental companies that began developing their own dental 3D printers (mainly based on DLP technology) and 3D printing-specific dental materials. On the other, leading metal laser PBF hardware providers such as EOS, 3D Systems, SLM Solutions, TRUMPF and Renishaw above that began targeting permanent dental implants as a key business area. More recently, leading ceramic AM firms, such as Lithoz, 3D Ceram and XJet got involved more directly and are seeing significant opportunities for dental implants directly 3D printed in ceramic.
Even more recently the next generation of polymer AM companies entered the arena targeting true digital mass production. Boston-based Formlabs entered the segment providing an accessible and low-cost solution mainly for dental models, while Silicon Valley-based Carbon also entered the market with new materials and the ability to provide very high productivity both for models and tools for custom thermoformed aligners. Both solutions have dramatically increased AM penetration within the entire dental industry at all levels, including the dentist’s office. However, HP was the first company to achieve a million-part application in dentistry by using its technology indirectly, to produce millions of mass-customized tools for dental aligners manufactured by Smile Direct. In fact, dental aligners – including those manufactured by market leader Invisalign – are now one of the hottest applications in this segment.
In general, polymer 3D printers and materials are used in dentistry on several levels: to directly produce models from intraoral scans, CT scans and MRI’s; to produce patterns and molds for end-use materials; to produce visual models, surgical guides and even temporaries – with some now envisioning the direct production of permanent prostheses using polymer-nanoceramic composite materials. Metal and ceramic 3D printers and materials are used as real alternatives to subtractive production methods, reducing material waste.
Historically, dental additive manufacturing technologies have been applied in dental laboratories for over two decades, and more recently they have begun to be adopted by dentists, orthodontists, and oral surgeons. The use of 3D printing in the laboratory and the dentist’s office has been steadily growing for the past several years. Now the dental opportunity has emerged as one of the most relevant for the AM industry as a whole, with literally hundreds of thousands of potential adopters all over the world.
The apparent paradox is that – as dental technologies become more and more established within the dental industry – AM’s visibility within the dental segment has been progressively decreasing, as adopters now increasingly see it as standard practice. In this month’s AM focus we are going to highlight the latest opportunities for AM in dentistry.
-
3DCeram Sinto at the forefront of industrial ceramic AM
Of all additive manufacturing materials, ceramics have proven one of the more difficult to get right over the years. Despite ceramics AM being several decades old, viable commercial applications of…
-

US Army demos potential of dental 3D printing in the field
The US Army Institute of Surgical Research (USAISR) is aggressively investigating technologies that improve readiness by enabling medical professionals to provide care in a deployed setting that would typically be…
-
Masking tetracycline stains with 3D printed UltraThineer
Last year, micro-precision 3D printing specialist Boston Micro Fabrication (BMF) launched and received FDA 510(k) clearance for its first product in the dental market: a super thin 3D printed veneer…
-
SprintRay appoints Meena Barsoum as Global Head of Clinical Strategy
SprintRay, a dental 3D printing company, has appointed Dr. Meena Barsoum as its new Global Head of Clinical Strategy. Dr. Barsoum has spent over a decade at the forefront of…
-
Orthodontists em-brace LithaBite material for translucent brackets
Teeth straightening has been a human preoccupation for millennia, with archaeologists uncovering mummified bodies dating back over two thousand years with teeth bound in metal bands. Even Egyptian queen Cleopatra…
-

Ricoh advances high-strength, full-color 3D inkjet printing
Ricoh, a Japanese multinational imaging and electronics company, has developed an innovative 3D inkjet printing technology that enables the creation of full-color resin components with both high mechanical strength and…
-
Solventum and SprintRay enter dental 3D printing partnership
Solventum, a dental composites and restorative dentistry company, has entered a partnership with SprintRay, a leading provider of chairside 3D dental printing, to meet the needs of dentists with in-office…
-
Asiga launches Asiga PrintPods capsules at IDS
The Australian 3D printer manufacturer Asiga introduced a new material product line at the International Dental Show (IDS) 2025 in Cologne, Germany: the Asiga PrintPods. These self-contained material capsules are…
-

Desyo unveils G040 Factory-in-a-Box for localized clear aligner production
Coming out of stealth at IDS 2025, the Dutch startup Desyo, is introducing the G040 as a Factory-in-a-Box system, marking yet another dramatic acceleration in clear aligner production. This compact…