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2024-2032 年按材料、技术、应用、最终用户和地区分類的牙科 3D 列印市场报告Dental 3D Printing Market Report by Material, Technology, Application, End User, and Region 2024-2032 |
IMARC Group年,全球牙科3D列印市场规模达29亿美元。由于对个人化解决方案的需求不断增长、高解析度3D 列印机以及先进的电脑辅助设计(CAD) 和电脑辅助製造(CAM) 系统的引入、对成本效益的日益关注以及快速发展,市场正在经历稳定增长。
市场成长与规模:由于患者对个人化牙科治疗解决方案的需求不断增长,以及个人对牙科疾病的认识不断提高,市场正在经历适度增长。
技术进步:电脑辅助设计 (CAD) 和电脑辅助製造 (CAM) 系统的集成,以及生物相容性材料的开发,以提高牙科效果。
产业应用:牙科三维 (3D) 列印可用于创建客製化植体、牙冠、牙桥和矫正设备。它也用于牙科模型和修復部件的快速原型製作。
地理趋势:在发达和先进的医疗基础设施的推动下,北美引领市场。然而,由于政府的积极倡议,亚太地区正在成为一个快速成长的市场。
竞争格局:主要参与者正在提高 3D 列印机的精度、速度和多功能性,并开发用于牙科应用的新型生物相容性材料。
挑战与机会:市场在面临材料不断创新等挑战的同时,也面临满足人口老化需求的机会。
未来展望:随着先进技术的融合,牙科3D列印市场的未来前景广阔。此外,对加强患者护理的日益关注预计将推动市场成长。
技术进步
牙科三维(3D)列印技术的进步,例如高解析度3D列印机和先进电脑辅助设计(CAD)和电脑辅助製造(CAM)系统的引入,有助于提高牙科三维(3D)列印的精度和效率。修復。与此一致,这些技术可以创建更精确的复杂牙科修復体,确保更好的贴合度并提高患者的舒适度。此外,这些进步有助于缩短生产时间,使牙医能够为患者提供更快的解决方案。除此之外,牙医和牙科实验室可以获得各种适合 3D 列印的材料,包括生物相容性树脂和金属,这有助于市场的成长。此外,这种材料的多功能性扩大了牙科 3D 列印的应用范围,从牙冠和牙桥到活动假牙和矫正装置。
对个人化解决方案的需求不断增长
个人对客製化和个人化治疗解决方案的需求不断增长,推动了市场的成长。除此之外,患者越来越多地寻求根据其独特需求和偏好量身定制的牙科解决方案。此外,3D 列印技术可以创建客製化牙植体、牙冠和牙桥,确保精确贴合和自然外观。除此之外,牙医还可以使用数位扫描和患者特定资料来设计和生产与患者个体解剖结构相符的义肢。与此一致的是,这种程度的定制不仅提高了患者满意度,而且改善了治疗结果。此外,3D 列印牙科解决方案是患者的合适选择,因为它们提供了更好的美观、舒适性和功能性。
更加重视成本效益
由于 3D 列印的成本效益,牙科诊所和实验室越来越多地采用它。除此之外,传统的牙科製造流程通常涉及劳动密集且耗时的程序,而且成本高昂。此外,3D列印有助于简化生产并减少劳动力成本和材料浪费,这支持了市场的成长。此外,它还可以有效利用材料,同时最大限度地减少材料费用。除此之外,牙医和牙科技术人员正在利用 3D 列印来节省成本。此外,3D 列印对于小型诊所和大型实验室来说是一个有吸引力的选择。此外,3D 列印支援按需製造的概念,即根据需要生产产品,从而减少对大量库存和相关仓储成本的需求。
快速原型製作
由于 3D 列印具有快速原型製作能力,对 3D 列印的需求不断增长,带来了积极的市场前景。与此一致,快速原型製作使公司能够快速开发和测试原型,及早发现设计缺陷并进行必要的调整,而所有这些都无需花费工具或模具。它增加了产品开发週期并降低了相关成本。此外,牙医可以使用这些模型进行术前规划,使他们能够可视化治疗过程并做出明智的决定。此外,牙科实验室可以创建义肢装置的原型,从而促进设计和修改过程。快速迭代设计和原型的能力有助于提高工作流程的效率,并最终使牙科专业人员和患者受益。
The global dental 3D printing market size reached US$ 2.9 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 7.8 Billion by 2032, exhibiting a growth rate (CAGR) of 11.3% during 2024-2032. The market is experiencing steady growth driven by the growing demand for personalized solutions, introduction of high-resolution 3D printers and advanced computer-aided design (CAD) and computer-aided manufacturing (CAM) systems, rising focus on cost-efficiency, and rapid prototyping.
Market Growth and Size: The market is witnessing moderate growth, driven by the increasing demand for personalized dental treatment solutions among patients, along with the rising awareness among individuals about dental disorders.
Technological Advancements: The integration of computer-aided design (CAD) and computer-aided manufacturing (CAM) systems, along with the development of biocompatible materials to enhance dental outcomes.
Industry Applications: Dental three-dimensional (3D) printing finds applications in creating custom implants, crowns, bridges, and orthodontic devices. It is also used for rapid prototyping of dental models and prosthetic components.
Geographical Trends: North America leads the market, driven by the presence of well-developed and advanced healthcare infrastructure. However, Asia Pacific is emerging as a fast-growing market due to the favorable government initiatives.
Competitive Landscape: Key players are improving the precision, speed, and versatility of 3D printers and developing new biocompatible materials for dental applications.
Challenges and Opportunities: While the market faces challenges, such as the need for continuous material innovation, it also encounters opportunities to meet the demand of an aging population.
Future Outlook: The future of the dental 3D printing market looks promising, with the integration of advanced technologies. Moreover, the rising focus on enhancing patient care is projected to propel the market growth.
Technological advancements
Technological advancements in dental three-dimensional (3D) printing, such as the introduction of high-resolution 3D printers and advanced computer-aided design (CAD) and computer-aided manufacturing (CAM) systems, assist in improving the precision and efficiency of dental restorations. In line with this, these technologies allow for the creation of intricate dental prosthetics with enhanced accuracy, ensuring a better fit and improved patient comfort. Furthermore, these advancements aid in reducing production times, enabling dentists to provide quicker solutions to patients. Apart from this, dentists and dental laboratories have access to a wide range of materials suitable for 3D printing, including biocompatible resins and metals, which is contributing to the growth of the market. In addition, this versatility in materials expands the scope of applications in dental 3D printing, ranging from crowns and bridges to removable dentures and orthodontic devices.
Rising demand for personalized solutions
The rising demand for customization and personalized treatment solutions among individuals is bolstering the growth of the market. Apart from this, patients are increasingly seeking dental solutions tailored as per their unique needs and preferences. Moreover, 3D printing technology allows for the creation of custom-made dental implants, crowns, and bridges, ensuring a precise fit and natural appearance. Besides this, dentists can use digital scans and patient-specific data to design and produce prosthetics that match the individual anatomy of a patient. In line with this, this level of customization not only enhances patient satisfaction but also leads to improved treatment outcomes. Furthermore, 3D-printed dental solutions are a suitable choice among patients, as they offer improved aesthetics, comfort, and functionality.
Increasing focus on cost-efficiency
Dental practices and laboratories are increasingly adopting 3D printing due to its cost-effectiveness. Besides this, traditional dental manufacturing processes often involve labor-intensive and time-consuming procedures, which can be expensive. Additionally, 3D printing assists in streamlining production and reducing labor costs and material waste, which is supporting the growth of the market. Moreover, it also allows for efficient use of materials while minimizing material expenses. Apart from this, dentists and dental technicians are utilizing 3D printing to save costs. In addition, 3D printing is an attractive option for small practices and large laboratories. Furthermore, 3D printing supports the concept of on-demand manufacturing, where products are produced as needed, reducing the need for large inventories and associated warehousing costs.
Rapid prototyping
The growing demand for 3D printing, as it has rapid prototyping capabilities, is offering a positive market outlook. In line with this, rapid prototyping allows companies to quickly develop and test prototypes, identify design flaws early, and make necessary adjustments, all without the expense of tooling or molds. It increases product development cycles and reduces associated costs. Additionally, dentists can use these models for pre-surgical planning, allowing them to visualize the treatment process and make informed decisions. Furthermore, dental laboratories can create prototypes of prosthetic devices, facilitating the design and modification process. The ability to rapidly iterate designs and prototypes contributes to more efficient workflows and ultimately benefits both dental professionals and patients.
IMARC Group provides an analysis of the key trends in each segment of the market, along with forecasts at the global, regional, and country levels for 2024-2032. Our report has categorized the market based on material, technology, application, and end user.
Metals
Photopolymers
Ceramics
Others
The report has provided a detailed breakup and analysis of the market based on the material. This includes metals, photopolymers, ceramics, and others.
Metals are widely employed in dental 3D printing, particularly for applications like dental implants and prosthetic components. Titanium and cobalt-chromium alloys are commonly used metals in dental 3D printing due to their biocompatibility and mechanical properties. There is a rise in the demand for metal-based 3D-printed dental implants due to their durability and long-term success rates. Additionally, metal 3D printing finds applications in the production of removable partial dentures and dental crowns with metal frameworks for added strength.
Photopolymers are widely used to produce dental models, crowns, bridges, and orthodontic devices. These materials are known for their precision and ability to produce highly detailed and accurate dental components. Photopolymer-based 3D printing utilizes digital impressions and layer-by-layer polymerization through ultraviolet (UV) light. The ease of use and versatility of photopolymers make them a preferred choice for many dental professionals seeking aesthetic and functional dental solutions.
Ceramics are employed to manufacture dental crowns, bridges, and veneers. Dental ceramics are known for their biocompatibility and ability to mimic natural tooth aesthetics. In addition, zirconia is a commonly used ceramic material in dental 3D printing due to its strength and natural appearance. Ceramic 3D printing offers a high level of customization, enabling the creation of aesthetically pleasing and durable dental restorations.
Vat Photopolymerization
Polyjet Technology
Fused Deposition Modelling
Selective Laser Sintering
Others
A detailed breakup and analysis of the market based on the technology have also been provided in the report. This includes vat photopolymerization, polyjet technology, fused deposition modelling, selective laser sintering, and others.
Vat photopolymerization is a popular technology that is known for its precision and speed. It utilizes a liquid photopolymer resin that is solidified layer by layer using a UV light source. It is widely used for creating highly detailed dental models, crowns, bridges, and orthodontic devices. Vat photopolymerization is favored for its ability to produce fine, intricate details, and smooth surface finishes, making it suitable for aesthetic dental applications.
Polyjet technology is recognized for its capability to produce multi-material and multi-color dental components. It works by jetting thin layers of photopolymer material onto a build platform and then curing them with UV light. It is ideal for creating dental models, diagnostic wax-ups, and realistic dental prototypes. PolyJet 3D printers can blend different materials, allowing for the creation of flexible gingival masks and rigid tooth structures in a single print.
Fused deposition modelling (FDM) is a cost-effective 3D printing technology utilized in dental applications. FDM printers extrude thermoplastic materials layer by layer to create dental models, surgical guides, and orthodontic models. In line with this, FDM is valued for its affordability and simplicity and is often used in dental educational settings and smaller practices.
Selective laser sintering (SLS) is a technology that is known for its versatility in dental applications. It operates by sintering powdered materials, typically ceramics or metals, layer by layer using a laser. SLS is utilized to produce dental crowns, bridges, and removable partial dentures. It offers high precision and can work with a range of materials, making it suitable for a variety of dental prosthetic components.
Prosthodontics
Orthodontics
Implantology
Orthodontics represent the leading market segment
The report has provided a detailed breakup and analysis of the market based on the application. This includes prosthodontics, orthodontics, and implantology. According to the report, orthodontics represented the largest segment.
3D printing in orthodontics enables the production of customized orthodontic appliances, such as clear aligners and retainers. Orthodontists use 3D printing to create precise models of the teeth of patients, facilitating treatment planning and the design of orthodontic devices. The technology allows for the mass production of clear aligners tailored as per individual patients, making orthodontic treatment more efficient and comfortable. 3D printing also plays a role in the creation of orthodontic brackets and archwires, enhancing the overall orthodontic experience for patients.
Prosthodontics involves the replacement of missing teeth or oral structures. Dental laboratories use 3D printing to fabricate crowns, bridges, and dentures with exceptional precision and fit. 3D-printed prosthodontics ensure that patients receive restorations that match their natural teeth in aesthetics and functionality. The ability to rapidly produce prosthetic components reduces lead times, allowing patients to receive their dental prosthetics more quickly.
Implantology involves the creation of dental implants and associated components. 3D printing technology allows for the precise manufacturing of dental implant abutments and crowns, ensuring a secure fit and natural appearance. Customized dental implants can be 3D printed to match the unique anatomical features of each patient, enhancing implant success rates.
Dental Laboratories
Dental Hospitals and Clinics
Dental Academic and Research Institutes
Dental laboratories exhibit a clear dominance in the market
The report has provided a detailed breakup and analysis of the market based on the end user. This includes dental laboratories, dental hospitals and clinics, and dental academic and research institutes. According to the report, dental laboratories represented the largest segment.
Dental laboratories utilize 3D printing technology to produce dental prosthetics, including crowns, bridges, dentures, and orthodontic devices. Dental laboratories benefit from the precision and customization offered by 3D printing, allowing them to create high-quality restorations that meet the unique needs of patients. 3D printing also streamlines the workflow in dental laboratories, reducing production times and costs while maintaining the quality of dental components.
Dental hospitals and clinics utilize 3D printing is used for a wide range of applications, ranging from creating surgical guides for implant placement to producing clear aligners for orthodontic treatment. Dental professionals in hospitals and clinics leverage 3D printing to enhance patient care, ensuring precise treatment planning and efficient production of dental devices. It enables dentists to offer customized, patient-specific solutions, improving the overall quality of dental services.
Dental academic and research institutes use 3D printing technology for both research purposes and training the next generation of dental professionals. Research institutes explore new materials, technologies, and applications in dental 3D printing, driving innovation in the field. Dental academic institutions incorporate 3D printing into their curricula, ensuring that dental students and researchers are well-versed with its application.
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
North America leads the market, accounting for the largest dental 3D printing market share
The market research report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, North America accounted for the largest market share due to the presence of well-developed and advanced healthcare infrastructure, including numerous dental clinics, hospitals, and dental laboratories. In addition, the rising adoption of advanced technologies in the dental industry to provide enhanced convenience to patients is contributing to the growth of the market. Moreover, the presence of several leading dental 3D printing equipment manufacturers and material suppliers is bolstering the market growth in the region.
Asia Pacific stands as another key region in the market, driven by the improving healthcare infrastructure. In line with this, favorable government initiatives assist in ensuring the safety and efficacy of 3D-printed devices, which is propelling the market growth in the region. Moreover, the increasing demand for high-quality dental treatments at affordable prices is impelling the market growth.
Europe maintains a strong presence in the market, with the rising focus on dental technology innovation. Apart from this, the growing focus on ensuring the safety and efficacy of medical and dental devices is offering a positive market outlook. Furthermore, products are undergoing rigorous testing and quality assurance measures due to stringent regulatory standards, which are supporting the market growth.
Latin America exhibits growing potential in the dental 3D printing market on account of the increasing awareness among individuals about 3D printing technology. In addition, the rising dental tourism industry in the region is contributing to the market growth. Besides this, the growing demand for advanced dental treatment solutions among the masses is positively influencing the market.
The Middle East and Africa region shows a developing market for dental 3D printing, primarily driven by the increasing number of dental hospitals and clinics, along with advancements in dental care facilities. Apart from this, the rising demand for cost-effective dental treatment solutions among people is bolstering the market growth.
Key players in the market are investing in research and development (R&D) activities to develop innovative technologies, materials, and software for the dental industry. They are improving the precision, speed, and versatility of 3D printers and developing new biocompatible materials for dental applications. In line with this, companies are developing new 3D printing systems, such as high-resolution printing, multi-material capabilities, and user-friendly software interfaces, that are tailored as per the requirements of dental professionals. Moreover, they are working on developing and enhancing dental-specific materials that are biocompatible, durable, and capable of producing aesthetically pleasing dental restorations. Furthermore, manufacturers are adhering to regulatory standards to ensure the safety and quality of their products.
3D Systems Inc.
Carbon Inc.
EnvisionTEC (Desktop Metal Inc.)
EOS GmbH
FormLabs Inc.
Institut Straumann AG
Prodways Group
Rapid Shape GmbH
Renishaw plc
Roland DG Corporation
SLM Solutions Group AG
Stratasys Ltd.
(Please note that this is only a partial list of the key players, and the complete list is provided in the report.)
May 1, 2023: 3D Systems Inc. entered into an agreement to acquire Wematter, a Swedish 3D printer manufacturer. The partnership will broaden the Selective Laser Sintering (SLS) portfolio of 3D Systems. Besides this, 3D Systems will be able to make SLS available to a broader range of individuals with a high-reliability, affordable solution to produce end-use parts.
February 28, 2023: Stratasys Ltd., a leader in polymer 3D printing, signed an agreement with Ricoh USA, Inc. to provide on-demand 3D-printed anatomic models for clinical settings. Stratasys has patient-specific 3D Solutions that combine 3D printing technology. The new service builds on an existing relationship between Ricoh 3D for Healthcare and Stratasys to expand access to 3D-printed medical models.
February, 2022: EnvisionTEC (Desktop Metal Inc.) launched its 'Einstein' series of dental 3D printing systems based on the digital light processing technology (DLP) Desktop Metal acquired through its takeover of EnvisionTEC. In addition, Desktop Health believes the products will allow dental professionals to deliver accurate dental restorations for a range of applications.