Global Orthopedic 3D Printing Device
Market Report
2025
The global Orthopedic 3D Printing Devices market size is USD 2261.5 million in 2024. The increasing prevalence of chronic diseases and rising awareness is expected to boost sales to USD 4999.456003 million by 2031, with a Compound Annual Growth Rate (CAGR) of 12.00% from 2024 to 2031.
The base year for the calculation is 2024 and 2021 to 2024 will be historical period. The year 2025 will be estimated one while the forecasted data will be from year 2025 to 2033. When we deliver the report that time we updated report data till the purchase date.
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According to Cognitive Market Research, the global Orthopedic 3D Printing Devices market size will be USD 2261.5 million in 2024. It will expand at a compound annual growth rate (CAGR) of 12.00% from 2024 to 2031.
2019 | 2024 | 2025 | 2032 | 2033 | CAGR | |
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Global Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 5% |
North America Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3.2% |
United States Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3% |
Mexico Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3.7% |
Canada Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4% |
Europe Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3.5% |
France Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 2.7% |
Spain Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 2.6% |
United Kingdom Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.3% |
Russia Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 2.5% |
Italy Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 2.9% |
Germany Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3.7% |
Rest of Europe Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 2.2% |
Asia Pacific Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 7% |
India Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 8.8% |
Korea Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 6.1% |
Japan Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 5.5% |
China Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 6.5% |
Australia Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 6.7% |
Rest of APAC Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 6.8% |
South America Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.4% |
Argentina Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 5.3% |
Brazil Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 5% |
Chile Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.7% |
Peru Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.6% |
Colombia Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.2% |
Rest of South America Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3.5% |
Middle East and Africa Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.7% |
Egypt Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 5% |
Turkey Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 4.2% |
Rest of MEA Orthopedic 3D Printing Device Market Sales Revenue | 121212 | 121212 | 121212 | 121212 | 121212 | 3.7% |
Base Year | 2024 |
Historical Data Time Period | 2021-2024 |
Forecast Period | 2025-2033 |
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List of Competitors |
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Orthopedic 3D Printing Device Market is Segmented as below. Particular segment of your interest can be provided without any additional cost. Download the Sample Pages!
Orthopedic 3D printing devices are specialized medical equipment used in the orthopedics area that generate tools such as surgical guides and implants tailored to the individual patient using 3D printing technology. In the field of orthopedics, conditions affecting the musculoskeletal system—which is made up of the bones, joints, ligaments, tendons, and muscles—are prevented, diagnosed, and treated. In the realm of orthopedics, orthopedic 3D printers have a number of advantages over conventional manufacturing techniques. They make it possible to produce surgical instruments and implants that are specifically tailored to each patient's anatomy. The need for orthopedic 3D printing devices is growing as a result of the increased frequency of orthopedic problems such as fractures, osteoarthritis, and sports injuries. Furthermore, as the world's population ages, orthopedic disorders like osteoarthritis—which is frequently linked to aging—are becoming more common. Orthopedic conditions are more common in older persons because of things like deteriorating joints and decreased bone density. Orthopedic solutions and treatments are in greater demand as a result of this demographic transition. Additionally, as more people become aware of these benefits, the need for orthopedic 3D printing equipment rises. These are the main reasons that the market for orthopedic 3D printing devices is expected to grow over the projected period. For instance, in November 2018, the Simbionix ARTHRO Mentor Express training simulator was introduced by 3D Systems. This is a cost-effective, portable tabletop training solution that enables medical personnel to learn surgical techniques for the knees, shoulders, and hips. (Source: https://www.3dsystems.com/press-releases/3d-systems-launches-simbionix-arthro-mentor-express-first-market-portable )
Customized and individualized choices that are suited to specific patients can be produced through the use of orthopedic 3D printing. Better patient results are achieved by using this technology to design and manufacture orthopedic implants, prostheses, and surgical guides based on the unique anatomical needs of each patient. In addition, patient-specific implants that are tailored to a patient's particular anatomy can be produced thanks to orthopedic 3D printing. Conventional implants are frequently restricted to typical forms and sizes, which may prevent them from fitting every patient perfectly. Implants can be created using 3D printing using patient-specific imaging data, leading to improved fit, more functionality, and fewer problems. Furthermore, highly tailored prosthetic devices can be made thanks to 3D printing technology. Prosthetics that perfectly fit each patient's anatomy and offer the best possible comfort and functionality can be designed by scanning their residual limb. Individuals with limb loss can greatly improve their quality of life and mobility with customized prosthetics. Surgical guides that support surgeons throughout intricate procedures can be produced due to orthopedic 3D printing. Surgeons can also save operating times, cut down on mistakes, and improve patient safety by employing customized surgical guides. Orthopedic 3D printing is becoming more and more popular in the market thanks to its capacity to deliver individualized and tailored solutions based on the needs of certain patients.
Growing focus on 3D bioprinting research and development is a major factor influencing the growth of the orthopedic 3D printed devices market. The synthesis of live tissues is now more feasible because of significant technological advancements in 3D printing. Furthermore, the method—also referred to as 3D bioprinting—involves carefully layering cells, growth stimulants, and biological scaffolds in order to create tissues that are bioidentical. In addition, 3D bioprinters employ a computer-guided pipette to layer living cells, also known as bio-ink, on top of one another to build fake living tissues, in contrast to other 3D printers that use metal or plastic as their raw material. Furthermore, other forms of cartilage and bone, including meniscus cartilage in the knee and spinal disks, have been produced via 3D printing. Moreover, there are a number of benefits that 3D bioprinting has over the conventional regenerative approach. Thus, during the forecast period, these factors are propelling the market's expansion.
One of the main obstacles impeding the growth of the orthopedic 3D printed devices market is the significant risk of counterfeit devices. The primary drawbacks of 3D printing are copyright violations and counterfeiting, or the creation of inferior medical products. Furthermore, if a market participant has access to the blueprint of a rival, the latter can effortlessly create a somewhat modified version of their own. As a result, it would be challenging for the original copyright holder to assert his rights. Additionally, the original manufacturer may lose his trade secret protection in the event of an unlawful disclosure or leak of a confidential trade secret, in which case it may be difficult to identify the perpetrator. It would, therefore, be simple for rivals to produce fake versions. Thus, these elements are having a detrimental effect on the market. Consequently, during the forecast period, it is anticipated to impede market expansion.
The market for orthopedic 3D printing equipment was significantly impacted by the COVID-19 outbreak. The global supply chain, which includes the manufacture and distribution of medical products, was disrupted by the pandemic. The production and delivery of orthopedic 3D printing devices were impacted by this disturbance, which occasionally resulted in delays and shortages. During the COVID-19 outbreak, there was an increase in demand for masks, face shields, and other equipment in addition to personal protective equipment (PPE). Some 3D printing companies decided to divert their energies from orthopedic 3D printing devices and instead concentrate on employing their additive manufacturing capabilities to produce PPE.
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The top producers of orthopedic 3D printed medical products have invested in cooperative developments in the industry to guarantee technological advancement and boost manufacturing capacity.
June 2023: Together, Mighty Oak Medical and HP observed how Mighty Oak Medical developed 3D-printed healthcare solutions using HP's Jet Fusion 5200 3D printers. (Source: https://3dprintingindustry.com/news/mighty-oak-medical-partners-with-hp-to-develop-3d-printed-healthcare-applications-222569/ ) April 2020: A formal strategic relationship has been established between SLM Solutions and Canwell Medical, one of China's top producers of medical devices. Canwell Medical has decided to create its line of 3D-printed surgical implants using SLM® technology. To help Canwell Medical expedite product certification and serial production, SLM Solutions will offer research and development support, technical and application help, and guidance. (Source: https://www.slm-solutions.com/company/news/detail/slm-solutions-and-canwell-medical-partner-to-accelerate-certification-and-serial-production/ )
Top Companies Market Share in Orthopedic 3D Printing Device Industry: (In no particular order of Rank)
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According to Cognitive Market Research, North America dominated the market in 2024. It accounted for around 40% of the global revenue. The demand for orthopedic surgeries in this area is predicted to rise as a result of the aging population's increased risk of fractures and the rising prevalence of bone-related disorders like osteoporosis. It is anticipated that when fracture rates rise, there will be a greater need for orthopedic care and a greater use of implants. Throughout the orthopedic 3D printing devices market projection period, these are the main variables expected to propel the growth of the regional market.
Asia Pacific stands out as the fastest-growing region in the Orthopedic 3D Printing Devices market due to a number of factors, including an aging population, rising rates of osteoporosis and osteoarthritis, a rise in trauma cases from sports and traffic accidents, and shifting lifestyles. Factors such as increased use of 3D printing in the healthcare industry and increased global spending on healthcare are also contributing to the market's growth in this area.
The current report Scope analyzes Orthopedic 3D Printing Device Market on 5 major region Split (In case you wish to acquire a specific region edition (more granular data) or any country Edition data then please write us on info@cognitivemarketresearch.com
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According to Cognitive Market Research, the global Orthopedic 3D Printing Devices market size was estimated at USD 2261.5 Million, out of which North America held the major market share of more than 40% of the global revenue with a market size of USD 904.60 million in 2024 and will grow at a compound annual growth rate (CAGR) of 10.2% from 2024 to 2031.
According to Cognitive Market Research, the global Orthopedic 3D Printing Devices market size was estimated at USD 2261.5 Million, out of which Europe held the market share of more than 30% of the global revenue with a market size of USD 678.45 million in 2024 and will grow at a compound annual growth rate (CAGR) of 10.5% from 2024 to 2031.
According to Cognitive Market Research, the global Orthopedic 3D Printing Devices market size was estimated at USD 2261.5 Million, out of which Asia Pacific held the market share of around 23% of the global revenue with a market size of USD 520.15 million in 2024 and will grow at a compound annual growth rate (CAGR) of 14.0% from 2024 to 2031.
According to Cognitive Market Research, the global Orthopedic 3D Printing Devices market size was estimated at USD 2261.5 Million, out of which Latin America held the market share of around 5% of the global revenue with a market size of USD 113.08 million in 2024 and will grow at a compound annual growth rate (CAGR) of 11.4% from 2024 to 2031. .
According to Cognitive Market Research, the global Orthopedic 3D Printing Devices market size was estimated at USD 2261.5 Million, out of which the Middle East and Africa held the major market share of around 2% of the global revenue with a market size of USD 45.23 million in 2024 and will grow at a compound annual growth rate (CAGR) of 11.7% from 2024 to 2031..
Global Orthopedic 3D Printing Device Market Report 2024 Edition talks about crucial market insights with the help of segments and sub-segments analysis. In this section, we reveal an in-depth analysis of the key factors influencing Orthopedic 3D Printing Device Industry growth. Orthopedic 3D Printing Device market has been segmented with the help of its Type Outlook:, Application Outlook: , and others. Orthopedic 3D Printing Device market analysis helps to understand key industry segments, and their global, regional, and country-level insights. Furthermore, this analysis also provides information pertaining to segments that are going to be most lucrative in the near future and their expected growth rate and future market opportunities. The report also provides detailed insights into factors responsible for the positive or negative growth of each industry segment.
How are Segments Performing in the Global Orthopedic 3D Printing Devices Market?
According to Cognitive Market Research, nylon stands out as the dominant category over the projected period. The most preferred material for Selective Laser Sintering (SLS) is nylon, a thermoplastic engineering thermoplastic with good mechanical qualities. In addition to being robust, lightweight, and flexible, nylon is also resistant to heat, chemicals, impact, UV light, water, and dirt. Furthermore biocompatible and non-sensitizing, 3D printed nylon parts are ready to wear and safe to use in a range of environments.
Plastics emerges as the fastest-growing category in the Orthopedic 3D Printing Devices market. In the global orthopedic market, plastics are used to make knee joints and bones, among other devices. Because of their special properties, which include biocompatibility, affordability, and simplicity of availability, plastics play a significant role in the medical device industry. As a result, they have grown to be an important material that is utilized in many different applications, such as surgical instruments and implants. Furthermore, lightweight orthopedic equipment without sacrificing strength or durability can be produced using plastic 3D printing.
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According to Cognitive Market Research, the dominant category is orthopedic implants. The growing prevalence of low bone density, weaker bones, musculoskeletal issues, and an increased risk of degenerative bone disorders is driving the need for orthopedic 3D printing devices. In addition, the medical industry is anticipated to benefit from the accessibility of advanced orthopedic implants and the quick expansion of the global healthcare infrastructure.
The fastest-growing category in the Orthopedic 3D Printing Devices market is surgical instruments, driven by the growing medical industry adoption of 3D printing technology. Improved surgical results can be achieved by developing surgical instruments that are specifically customized to the demands of each patient, thanks to the precision and customization that 3D printing offers. The capacity to manufacture intricate, patient-specific instruments at a reduced expense in comparison to conventional manufacturing techniques is also stimulating demand. The increasing number of surgical procedures and the increasing frequency of orthopedic diseases are further factors in this category's growth.
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Conclusion
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Type Outlook: | Plastics, Biomaterials, Nylon, Wax, Ceramics, Others |
Application Outlook: | Orthopedic implants, Surgical planning, Surgical instruments |
List of Competitors | Abbott, General Electric, ENVISIONTEC US LLC, Aspect Biosystems Ltd., Smith & Nephew, Johnson & Johnson, 3D Systems Corp, EOS GmbH Electro Optical Systems, Stryker, Zimmer Biomet Holding Inc |
This chapter will help you gain GLOBAL Market Analysis of Orthopedic 3D Printing Device. Further deep in this chapter, you will be able to review Global Orthopedic 3D Printing Device Market Split by various segments and Geographical Split.
Chapter 1 Global Market Analysis
Global Market has been segmented on the basis 5 major regions such as North America, Europe, Asia-Pacific, Middle East & Africa, and Latin America.
You can purchase only the Executive Summary of Global Market (2019 vs 2024 vs 2031)
Global Market Dynamics, Trends, Drivers, Restraints, Opportunities, Only Pointers will be deliverable
This chapter will help you gain North America Market Analysis of Orthopedic 3D Printing Device. Further deep in this chapter, you will be able to review North America Orthopedic 3D Printing Device Market Split by various segments and Country Split.
Chapter 2 North America Market Analysis
This chapter will help you gain Europe Market Analysis of Orthopedic 3D Printing Device. Further deep in this chapter, you will be able to review Europe Orthopedic 3D Printing Device Market Split by various segments and Country Split.
Chapter 3 Europe Market Analysis
This chapter will help you gain Asia Pacific Market Analysis of Orthopedic 3D Printing Device. Further deep in this chapter, you will be able to review Asia Pacific Orthopedic 3D Printing Device Market Split by various segments and Country Split.
Chapter 4 Asia Pacific Market Analysis
This chapter will help you gain South America Market Analysis of Orthopedic 3D Printing Device. Further deep in this chapter, you will be able to review South America Orthopedic 3D Printing Device Market Split by various segments and Country Split.
Chapter 5 South America Market Analysis
This chapter will help you gain Middle East and Africa Market Analysis of Orthopedic 3D Printing Device. Further deep in this chapter, you will be able to review Middle East and Africa Orthopedic 3D Printing Device Market Split by various segments and Country Split.
Chapter 6 Middle East and Africa Market Analysis
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Chapter 7 Top 10 Countries Analysis (Only Available with Corporate User License)
This chapter provides an in-depth analysis of the market share among key competitors of Orthopedic 3D Printing Device. The analysis highlights each competitor's position in the market, growth trends, and financial performance, offering insights into competitive dynamics, and emerging players.
Chapter 8 Competitor Analysis (Subject to Data Availability (Private Players))
(Subject to Data Availability (Private Players))
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
Data Subject to Availability as we consider Top competitors and their market share will be delivered.
This chapter would comprehensively cover market drivers, trends, restraints, opportunities, and various in-depth analyses like industrial chain, PESTEL, Porter’s Five Forces, and ESG, among others. It would also include product life cycle, technological advancements, and patent insights.
Chapter 9 Qualitative Analysis (Subject to Data Availability)
Segmentation Type Outlook: Analysis 2019 -2031, will provide market size split by Type Outlook:. This Information is provided at Global Level, Regional Level and Top Countries Level The report with the segmentation perspective mentioned under this chapters will be delivered to you On Demand. So please let us know if you would like to receive this additional data as well. No additional cost will be applicable for the same.
Chapter 10 Market Split by Type Outlook: Analysis 2021 - 2033
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Chapter 11 Market Split by Application Outlook: Analysis 2021 - 2033
This chapter helps you understand the Key Takeaways and Analyst Point of View of the global Orthopedic 3D Printing Device market
Chapter 12 Research Findings
Here the analyst will summarize the content of entire report and will share his view point on the current industry scenario and how the market is expected to perform in the near future. The points shared by the analyst are based on his/her detailed in-depth understanding of the market during the course of this report study. You will be provided exclusive rights to interact with the concerned analyst for unlimited time pre purchase as well as post purchase of the report.
Why Plastics have a significant impact on Orthopedic 3D Printing Device market? |
What are the key factors affecting the Plastics and Biomaterials of Orthopedic 3D Printing Device Market? |
What is the CAGR/Growth Rate of Orthopedic implants during the forecast period? |
By type, which segment accounted for largest share of the global Orthopedic 3D Printing Device Market? |
Which region is expected to dominate the global Orthopedic 3D Printing Device Market within the forecast period? |
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