Polymer AM Market 2025

Published on: May 2025
  • 816 unique polymer AM companies surveyed and studied.
  • Polymer AM products generated over $7.4 billion in 2024.
  • Market expected to top $46 billion by 2034 at 20.1% CAGR.

This new market study from VoxelMatters provides the most in-depth analysis and forecast of the polymer additive manufacturing market (units and revenues), including hardware, materials and services, by end-user segment and geography.

The report includes the full dataset for hardware, materials and services. These can also be ordered separately here.

£3,490.00 exc. VAT

About the report

This new market study from VoxelMatters offers the most comprehensive analysis and forecast of the polymer additive manufacturing market (units and revenues), including hardware, materials, and services, categorized by end-user segment and geography.

Based on VoxelMatters’ extensive database of polymer additive manufacturing companies—including suppliers of hardware, materials, and services—this report provides the latest global polymer AM market analysis and forecasts. Despite macroeconomic uncertainties, the polymer AM sector continues to grow steadily, driven by increasing demand across industrial and automotive applications, advancements in technical polymers, and a shift toward production-scale additive manufacturing.

In a polymer AM market that generated $7.4 billion in 2024, hardware remained the leading segment, accounting for $3.1 billion in revenue. Services followed with $2.8 billion, while materials generated $1.5 billion. This confirms that polymer AM is a technology still influenced by capital investment but increasingly defined by its role within vertical end-users, even in serial production. Growth is driven by expanding industrial use cases, broader access to production-ready systems, and a diversified materials portfolio supporting applications in sectors such as general industry, automotive, lifestyle products, dental, and medical.

Vat photopolymerization (VPP) remains a core technology for high-resolution applications, particularly in dental and consumer segments. Material extrusion (MEX) has regained momentum due to its affordability and expanding industrial applications, especially within increasingly large print farms. Powder bed fusion technologies (mainly SLS) continue to gain traction for functional parts. However, MJF has experienced a slowdown after years of rapid expansion. Meanwhile, new developments in open material systems are advancing adoption across most key verticals. Material Jetting (MJP) remains primarily a prototyping and tooling technology, although its potential for multi-material functional parts remains interesting.

Although some large companies—such as BASF, Jabil, and Braskem—have divested from AM, primarily because the current market demand is too limited to support the scale required for their businesses, polymer materials for AM continue to diversify, with strong revenue contributions from industrial- and dental-grade resins, thermoplastics, and advanced composites. Applications are expanding across sectors with complex requirements, particularly in industrial, automotive, and lifestyle products, where polymer AM now supports tooling, components, and end-use parts. This demand is further amplified by service providers scaling operations and enabling wider access to advanced polymer AM capabilities.

Geographically, the market is expanding across all major regions. North America currently leads in overall revenue, but APAC is growing the fastest, driven by competitive hardware innovation and rising demand. EMEA remains a strong player, particularly in services and materials. These three regions are expected to share the global market almost evenly by 2034, each contributing around one-third of total revenue. The LATAM market is currently smaller but is growing and will continue to be monitored.

This report provides a thorough analysis of the global polymer AM market, supported by 190 data tables and charts. Leveraging VoxelMatters Directory—the world’s largest verified AM company database with over 7,000 listings—our research team identified 238 hardware manufacturers, 228 material suppliers, and 467 service providers, totaling 933 companies, of which 816 are unique. The underlying dataset for this study includes more than 190,000 data points, offering one of the most accurate and comprehensive views of the global polymer AM landscape.

Prominent and emerging companies featured in the report include:

3D Systems, ADDMAN (and Dinsmore), Airtech, Anycubic, Arkema, Bambu Lab, BMF, Carbon, CMS, Creality, ELEGOO, EOS (and ALM), ERPRO Group, eSun, Facfox, Farsoon, FIT AG, Flashforge, GKN (Forecast 3D), Formlabs, HLH, HP, IN3DTEC, Jingrui3D, Kings 3D, Materialise, MCPP, Nano Dimension (Markforged, ETEC), OECHSLER, Photocentric, Polymaker, Prodways, ProtoFab, Protolabs, Prototal, Prusa Research, Quickparts, SABIC, Shapeways, Solid Solutions (3DPRINTUK), Spectrum Filaments, Stratasys, Syensqo, SUNLU, UnionTech/Unionfab, WeNext, among many others.

Beyond supporting existing suppliers’ market analysis and development efforts, this report is designed to assist companies in entering the technical polymer AM market and capitalizing on emerging opportunities. OEMs interested in adopting polymer AM for part production will gain a clear understanding of currently available technologies, materials, and services, along with their benefits and challenges. Additionally, this study serves as a valuable guide for investors seeking to identify the next wave of disruptive manufacturing technologies.

 To learn more about the scope of this study and the methodology behind this research please contact us.

Chapter 1

1. The State of Polymer Additive Manufacturing

1.1. Introduction to polymer additive manufacturing

1.1.1. About this report

1.1.1.1. Data collection methodology

1.1.1.2. Forecasting methodology

1.2. Intro to polymer AM

1.2.1. Polymer hardware

1.2.2. Polymer materials

1.2.3. Polymer service providers

1.3. Polymer AM market leaders

1.3.1. 3D Systems and SLA/SLS

1.3.2. Bambu Lab and consumer FFF

1.3.3. Carbon and high-speed DLP

1.3.4. EOS and SLS

1.3.5. Formlabs and low-cost SLA/SLS

1.3.6. HP and MJF

1.3.7. UnionTech/Uninofab and Chinese SLA/SLS/LFAM

1.3.8. Materialise

1.3.9. Prusa Research and prosumer FFF

1.3.10. Stratasys and FDM/material jetting

1.4. State of the polymer AM market in 2024

1.4.1. Overall polymer AM market in 2024

1.5. 10-year forecast of the total polymer AM market

1.5.1. Forecast of the polymer AM market 2024–2034

1.5.2. Forecast of the polymer AM market 2024–2034 by vertical

1.5.3. Forecast of the polymer AM market 2024–2034 by region

 

Chapter 2

2. Polymer AM Hardware Technologies

2.1. Overview of polymer AM hardware

2.1.1. Timeline

2.1.2. General evolutionary trends for polymer AM hardware

2.2. Vat Photopolymerization – VPP

2.2.1. Vat Photopolymerization-specific key evolutionary trends

2.2.2. Laser stereolithography (SLA)

2.2.2.1. Description

2.2.2.2. Key players and systems

2.2.3. Digital light processing stereolithography (DLP)

2.2.3.1. Description

2.2.3.2. Key players and systems

2.2.4. LED/LCD stereolithography

2.2.4.1. Description

2.2.4.2. Key players and systems

2.2.5. Continuous DLP stereolithography / high speed vat photopolymerization

2.2.5.1. Description

2.2.5.2. Key players and systems

2.2.6. 2PP and µSLA/µDLP

2.2.6.1. Description

2.2.6.2. Key players and systems

2.2.7. Low Force Stereolithography (LFS) and PSLA

2.2.7.1. Formlabs LFS

2.2.7.2. 3D Systems PSLA

2.2.7.3. Axtra3D Hybrid PhotoSynthesis (HPS)

2.3. Material extrusion – MEX

2.3.1. Filament extrusion

2.3.1.1. Fused Deposition Modeling

2.3.1.2. Fused Filament Fabrication

2.3.1.3. Pellet Material Extrusion

2.3.2. Key players and systems

2.3.3. Large Format Additive Manufacturing (LFAM)

2.3.3.1. Fused Granular Fabrication

2.3.3.2. Robotic Extrusion

2.3.3.3. Key players and systems

2.3.4. Pneumatic Extrusion

2.3.4.1. Silicone

2.3.4.2. Polyurethane

2.3.4.3. Key players and systems

2.4. Powder Bed Fusion

2.4.1. Laser PBF or Selective Laser Sintering – SLS

2.4.1.1. Key players and systems

2.4.1.1.1. Western companies

2.4.1.1.2. Entry-level “benchtop” SLS

2.4.1.1.3. Rise of Chinese SLS companies

2.4.2. Thermal PBF

2.4.2.1. Description

2.4.2.2. Key players and systems

2.5. Material Jetting (MJ)

2.5.1. Description

2.5.2. Key players and systems

2.5.3. Application-specific material jetting technologies

2.5.3.1. Electronics (AME)

2.5.3.2. Ophthalmic

2.5.3.3. Textiles

2.6. Other notable polymer AM technologies

2.6.1. voxeljet: Too big to miss PMMA binder jetting

2.6.2. Massivit GDP: A big one of a kind

2.7. State of the Polymer AM hardware market in 2024

2.7.1. Polymer AM hardware unit sales analysis 2024

2.7.1.1. Polymer VPP AM hardware unit sales analysis 2024 by sub-technologies

2.7.1.2. Polymer PBF AM hardware unit sales analysis 2024 by sub-technologies

2.7.1.3. Polymer MEX AM hardware unit sales analysis 2024 by sub-technologies

2.7.1.4. Polymer JET AM hardware unit sales analysis 2024 by sub-technologies

2.7.2. Polymer AM hardware revenue analysis 2024

2.7.2.1. Polymer AM hardware revenue analysis 2024 by price segment

2.7.2.2. Polymer VPP AM hardware revenue analysis 2024 by sub-technologies

2.7.2.3. Polymer PBF AM hardware revenue analysis 2024 by sub-technologies

2.7.2.4. Polymer MEX AM hardware revenue analysis 2024 by sub-technologies

2.7.2.5. Polymer JET AM hardware revenue analysis 2024 by sub-technologies

2.7.3. Polymer AM hardware unit installed base analysis 2024

2.7.3.1. Polymer AM hardware unit installed base analysis by price segment

2.8. 10-year forecast of polymer AM hardware market 2024–2034

2.8.1. Forecast of polymer AM hardware unit sales 2024–2034

2.8.2. Forecast of polymer AM hardware revenue 2024–2034

2.8.3. Forecast of polymer AM hardware unit installed base 2024–2034

 

Chapter 3

3. Polymer AM Materials

3.1. Overview of available polymer AM materials

3.1.1. Difference between amorphous and crystalline polymers

3.1.1.1. Amorphous polymers

3.1.1.2. Crystalline polymers

3.2. Thermoplastic filaments and pellets for extrusion 3D printing

3.2.1. ABS

3.2.1.1. ABS filaments for extrusion 3D printing

3.2.1.2. ABS pellets for extrusion 3D printing

3.2.2. PLA

3.2.2.1. PLA filaments for extrusion 3D printing

3.2.2.2. PLA pellets for extrusion 3D printing

3.2.3. Nylon (PA)

3.2.3.1. Nylon filaments for extrusion 3D printing

3.2.3.2. Nylon pellets for extrusion 3D printing

3.2.4. PAEK (PEEK and PEKK)

3.2.4.1. PEEK and PEKK filaments for extrusion 3D printing

3.2.4.2. PEEK and PEKK pellets for extrusion 3D printing

3.2.5. PEI (ULTEM)

3.2.5.1. ULTEM filaments for extrusion 3D printing

3.2.5.2. ULTEM pellets for extrusion 3D printing

3.2.6. PET/PETG

3.2.6.1. PET/PETG filaments for extrusion 3D printing

3.2.6.2. PET/PETG pellets for extrusion 3D printing

3.2.7. Polypropylene

3.2.7.1. Polypropylene filaments for extrusion 3D printing

3.2.7.2. Polypropylene pellets for extrusion 3D printing

3.2.8. TPU/TPE and other elastomers for 3D printing

3.2.8.1. Elastomer filaments for extrusion 3D printing

3.2.8.2. Elastomer pellets for extrusion 3D printing

3.2.9. Polycarbonate

3.2.9.1. PC filament for extrusion 3D printing

3.2.9.2. PC pellets for extrusion 3D printing

3.2.10. Polysulfones

3.2.10.1. PSU, PESU, PPSU filaments for extrusion 3D printing

3.2.10.2. PSU, PESU, PPSU pellets for extrusion 3D printing

3.2.11. Other relevant materials

3.2.11.1. ASA

3.2.11.2. Polystyrene and HIPS

3.2.11.3. PVDF

3.2.11.4. PVA and other support materials

3.2.11.5. PMMA (acrylic, acrylic glass or plexiglass)

3.2.11.6. Notable sustainable and bio-derived products

3.2.11.7. Miscellaneous interesting products

3.3. Thermoplastic powder materials for PBF

3.3.1. Nylon for polymer PBF technologies

3.3.1.1. Nylon 12 for polymer L-PBF

3.3.1.2. Nylon 12 for polymer Thermal PBF (MJF, HSS)

3.3.1.3. Nylon 11 for polymer L-PBF

3.3.1.4. Nylon 11 for polymer thermal PBF

3.3.1.5. Nylon 12 and nylon 11 composites for polymer PBF

3.3.1.6. Nylon 6, 66, 613 and other types of nylon for polymer PBF

3.3.2. Elastomers for polymer PBF technologies

3.3.3. Polypropylene for polymer PBF technologies

3.3.4. PAEK for polymer PBF technologies

3.3.5. Other notable polymers for PBF technologies

3.4. WAX and PMMA

3.5. Photopolymers

3.5.1. Photopolymers for stereolithography (SLA, DLP, LCD)

3.5.1.1. Modeling resins for prototyping

3.5.1.2. Castable resins

3.5.1.3. Tough and rigid materials (ABS-like, PP-like, PC-like, TPU-like, PEEK-like)

3.5.1.4. High-temperature and molding resins

3.5.1.5. Transparent resins

3.5.1.6. Flexible (TPU-like, rubber-like) resins

3.5.1.7. Dental resins

3.5.1.7.1. Dental model and tools applications

3.5.1.7.2. In-mouth dental applications

3.5.2. Photopolymers for material jetting

3.5.3. High-speed vat photopolymerization materials for part production

3.5.3.1. Urethane-based and cast urethane alternatives

3.5.3.2. Epoxy-based

3.5.3.3. Silicone-based and molded silicone alternatives

3.5.3.4. Other notable resins for high speed vat photopolymerization

3.5.3.5. Dental resins for high-speed vat photopolymerization

3.6. Thermosets

3.6.1. Silicone for 3D printing

3.6.1.1. Dow Chemical

3.6.1.2. Elkem Silicones

3.6.1.3. COP Chimie

3.6.2. Thermoset Polyurethane for 3D printing

3.7. State of the polymer AM materials market 2024

3.7.1. Key first-party stakeholders in the polymer AM materials market

3.7.2. Key third-party stakeholders in the polymer AM materials market

3.7.3. Analysis of polymer AM material volumes in 2024

3.7.4. Analysis of polymer AM material revenues in 2024

3.8. 10-year forecast of the polymer AM material market

3.8.1. Forecast of polymer AM materials volume 2024–2034

3.8.2. Forecast of polymer AM materials revenue 2024–2034

 

Chapter 4

4. Polymer AM Service Providers

4.1. Types of polymer AM service providers

4.1.1. Pure player (application-agnostic) polymer AM service bureaus

4.1.2. Rapid prototyping polymer service providers offering production services

4.1.3. Small and medium specialized polymer AM service providers

4.1.4. Large polymer AM services and AM factories

4.1.5. Polymer part and contract manufacturers providing AM parts and AM services

4.1.6. AM material manufacturers offering AM services

4.1.7. AM hardware providers offering AM production services

4.1.8. AM/3D printing service networks

4.2. Polymer AM workflow

4.2.1. Design automation

4.2.2. Material supply automation

4.2.3. Process automation

4.2.3.1. In-workflow build handling automation

4.2.3.2. Workflow management

4.2.4. Automating AM technologies

4.2.4.1. Material extrusion

4.2.4.2. Polymer powder bed fusion

4.2.4.3. Photopolymerization

4.2.5. Post-workflow part handling automation

4.3. State of the polymer AM services market 2024

4.3.1. Number of parts produced by polymer AM services 2024

4.3.1.1. Number of parts produced by polymer AM services in 2024 by sub-technologies

4.3.2. Revenues generated by polymer AM services 2024

4.3.2.1. Revenues generated by polymer AM services in 2024 by sub-technologies

4.4. 10-year forecast of the polymer AM services market 2024–2034

4.4.1. Forecast of the number of parts produced by polymer AM services 2024–2034

4.4.1.1. Forecast of the number of parts produced by polymer AM services by sub-technologies 2024–2034

4.4.2. Forecast of revenues generated by polymer AM services 2024–2034

4.4.2.1. Forecast of revenues generated by polymer AM services by sub-technologies 2024–2034

 

Chapter 5

5. Key vertical markets for polymer AM

5.1. Key polymer AM vertical adoption markets

5.1.1. Industrial machinery markets for polymer AM

5.1.2. Automotive markets for polymer AM

5.1.3. Aerospace markets for polymer AM

5.1.4. Medical markets for polymer AM

5.1.5. Dental markets for polymer AM

5.1.6. Consumer markets for polymer AM

5.2. Types of polymer AM parts

5.2.1. Prototypes

5.2.1.1. Visual prototypes

5.2.1.2. Pre-prototypes

5.2.1.3. Functional prototypes

5.2.1.4. Multi-iterative prototypes

5.2.1.5. From prototype to production

5.2.2. Physical models

5.2.2.1. Product models (multi-material/color)

5.2.2.2. Architectural models

5.2.2.3. Medical and dental models

5.2.3. Tools

5.2.3.1. Jigs and fixtures

5.2.3.2. Molds

5.2.3.3. Foundry cores and patterns for casting

5.2.3.4. Mechanical tools

5.2.3.5. End of arm tools (EOAT), robots and cobots

5.3. State of the polymer AM adoption market in 2024

5.3.1. Polymer AM materials by vertical adoption segment (demand and revenues)

5.3.2. Polymer AM parts produced by AM services by vertical AM adoption segment (parts and revenues)

5.4. 10-year forecast of the polymer AM adoption market 2024–2034

5.4.1. Forecast of polymer AM hardware by vertical adoption segment (units and revenues)

5.4.2. Forecast of polymer AM materials by vertical adoption segment (volume and revenues)

5.4.3. Forecast of polymer AM parts produced by AM services by vertical (parts and revenues)

 

Chapter 6

6. Key Geographic Markets for Polymer AM

6.1. EMEA

6.1.1. Germany

6.1.2. France

6.1.3. Italy

6.1.4. UK

6.1.5. Others

6.2. North America

6.2.1. USA

6.3. APAC

6.3.1. China

6.3.2. India

6.3.3. Japan

6.3.4. South Korea

6.3.5. Others

6.4. LATAM

6.5. State of polymer AM regional markets in 2024

6.5.1. Polymer AM hardware by region (units and revenues)

6.5.2. Polymer AM materials by region (volume and revenues)

6.5.3. Polymer AM services by region (part units and revenues)

6.6. 10-year forecast of polymer AM regional markets 2024–2034

6.6.1. Forecast of polymer AM hardware by region (units and revenues)

6.6.2. Forecast of polymer AM materials by region (volume and revenues)

6.6.3. Forecast of polymer AM services by region (parts and revenues)

 

Table of Figures

Chapter 1

Figure 1. Key technologies and relative sub technologies studied in the report

Figure 2. Material and relative available material forms studied in this report

Figure 3. The top 10 players by revenues 2024

Figure 4. Size of the polymer AM market in 2024 by market segment

Figure 5. Polymer AM market revenues 2023 and 2024 by top vertical segment

Figure 6. Polymer AM market revenues 2023 and 2024 by region

Figure 7. Forecast of polymer AM market revenues by segment 2024–2034

Figure 8. Polymer AM market (Hardware, Materials, Services) CAGR 2024–2034

Figure 9. Forecast of polymer AM market revenues by top vertical segment 2024–2034

Figure 10. Forecast of the polymer AM market revenues by region 2024–2034

Chapter 2

Figure 11. Timeline for introduction of polymer AM technologies

Figure 12. Map of major polymer AM technologies

Figure 13. Table of key players and systems in SLA Stereolithography

Figure 14. Table of key players and systems in DLP stereolithography

Figure 15. Table of key players and systems in LED/LCD stereolithography

Figure 16. Table of key players and systems in continuous DLP

Figure 17. Table of key players and systems in micro VPP

Figure 18. Key vendors and systems of filament extrusion hardware

Figure 19. Table of key players and systems in LFAM material extrusion

Figure 20. Table of key players and systems in pneumatic extrusion

Figure 21. Table of key players and systems in SLS

Figure 22. Table of key players and systems in thermal PBF

Figure 23. Table of key players and systems in material jetting

Figure 24. Table of key players and systems in application-specific material jetting

Figure 25. Top 10 polymer hardware companies by unit sales in 2024

Figure 26. Polymer AM hardware unit sales analysis 2024 by technology

Figure 27. Polymer AM hardware unit sales analysis 2024 by price segment

Figure 28. Hardware units by polymer VPP sub-technologies in 2024

Figure 29. Hardware units by polymer PBF sub-technologies in 2024

Figure 30. Hardware units by polymer MEX sub-technologies in 2024

Figure 31. Hardware units by polymer JET sub-technologies in 2024

Figure 32. Top 10 polymer hardware systems by unit sales in 2024

Figure 33. Polymer AM hardware revenues analysis 2024 by technology

Figure 34. Polymer AM hardware revenue analysis 2024 by price segment

Figure 35. Hardware revenue (USD M) by VPP sub-technologies in 2024

Figure 36. Hardware revenue (USD M) by PBF sub-technologies in 2024

Figure 37. Hardware revenue (USD M) by MEX sub-technologies in 2024

Figure 38. Hardware revenue (USD M) by JET sub-technologies in 2024

Figure 39. Top 10 polymer AM companies by installed base 2024

Figure 40. Polymer AM hardware unit installed base analysis 2024 by technology

Figure 41. Hardware installed base analysis 2024 by price segment

Figure 42. Forecast of polymer AM hardware unit sales (thousands) 2024–2034 by technology

Figure 43. Forecast of polymer AM hardware units (thousands) by VPP sub-technologies 2024–2034

Figure 44. Forecast of polymer AM hardware units by PBF sub-technologies 2024–2034

Figure 45. Forecast of polymer AM hardware units (thousands) by MEX sub-technologies 2024–2034

Figure 46. Forecast of polymer AM hardware units by JET sub-technologies 2024–2034

Figure 47. Forecast of polymer AM hardware revenue (USD M) 2024–2034 by technology

Figure 48. Forecast of polymer AM hardware revenue (USD-M) by VPP sub-technologies 2024–2034

Figure 49. Forecast of polymer AM hardware revenue (USD-M) by MEX sub-technologies 2024–2034

Figure 50. Forecast of polymer AM hardware revenue (USD-M) by PBF sub-technologies 2024–2034

Figure 51. Forecast of polymer AM hardware revenue (USD-M) by JET sub-technologies 2024–2034

Figure 52. Forecast of polymer AM hardware installed base by technologies 2024–2034

Chapter 3

Figure 53. Map of polymer AM material types and forms by technology and applications

Figure 54. Characteristics of common thermoplastic polymers that have known uses in 3D printing

Figure 55. ABS filament products

Figure 56. ABS pellet products

Figure 57. PLA filament products

Figure 58. PLA pellet products

Figure 59. Polyamide (nylon) filament products

Figure 60. Polyamide (nylon) pellet products

Figure 61. PEEK and PEKK filament products

Figure 62. PEEK and PEKK pellet products

Figure 63. ULTEM filament products

Figure 64. ULTEM pellets products

Figure 65. PET and PETG filament products

Figure 66. PET and PETG pellet products

Figure 67. Polypropylene filament products

Figure 68. Polypropylene pellet products

Figure 69. Elastomer filament products

Figure 70. Elastomer pellet products

Figure 71. Polycarbonate filament products

Figure 72. Polycarbonate pellet products

Figure 73. Polysulphones filament products

Figure 74. Polysulfones pellet products

Figure 75. Neat nylon 12 powder products for L-PBF

Figure 76. Neat nylon 12 powder products for thermal PBF

Figure 77. Neat nylon 11 powder products for L-PBF

Figure 78. Neat nylon 11 powder products for thermal PBF

Figure 79. Nylon 12 and nylon 11 composite powder products for PBF

Figure 80. Neat and composite nylon 11 powder products for PBF

Figure 81. Elastomer powder products for PBF

Figure 82. Polypropylene powder products for PBF

Figure 83. PAEK powder products for PBF

Figure 84. Other relevant powder products for PBF

Figure 85. Wax products for material jetting

Figure 86. Modeling resins for vat photopolymerization

Figure 87. Castable resins for vat photopolymerization

Figure 88. First party tough, rigid and durable resins for vat photopolymerization

Figure 89. Third party tough, rigid and durable resins for vat photopolymerization

Figure 90. First-party high-temperature resins for vat photopolymerization

Figure 91. Third-party high-temperature and dielectric resins for vat photopolymerization

Figure 92. Transparent and biomedical resins for vat photopolymerization

Figure 93. Flexible resins for vat photopolymerization

Figure 94. Dental-specific resins for vat photopolymerization

Figure 95. Modeling resins for material jetting

Figure 96. Tough, rigid and durable resins for material jetting

Figure 97. High temperature resistant and dielectric resins for material jetting

Figure 98. Transparent and biomedical resins for material jetting

Figure 99. Flexible resins for material jetting

Figure 100. Dental resins for material jetting

Figure 101. Urethane-based resins for AM

Figure 102. Epoxy-based resins for AM

Figure 103. Silicone-based resins for AM

Figure 104. Resins for high-speed photopolymerization

Figure 105. Silicone products for material extrusion

Figure 106. Polyurethane products for material extrusion

Figure 107. Top 10 polymer material companies by volume 2024

Figure 108. Polymer AM material volume (kilograms) analysis 2024 by material form

Figure 109. Polymer filament volume (kilograms) by material in 2024

Figure 110. Polymer pellet volume (kilograms) by material in 2024

Figure 111. Polymer powder volume (kilograms) by material in 2024

Figure 112. Polymer resin volume (kilograms) by material in 2024

Figure 113. Polymer thermoset volume (kilograms) by material in 2024

Figure 114. Top 10 polymer AM companies by revenue 2024

Figure 115. Polymer AM material revenue (USD M) analysis 2024 by material form

Figure 116. Polymer filament revenue (USD M) by material in 2024

Figure 117. Polymer pellet revenue (USD M) by material in 2024

Figure 118. Polymer powder revenue (USD M) by material in 2024

Figure 119. Polymer resin revenue (USD M) by material in 2024

Figure 120. Polymer thermoset revenue (USD M) by material in 2024

Chapter 4

Figure 133. Top 10 polymer AM service companies by number of parts produced in 2024

Figure 134. Number of parts produced by polymer AM services 2024 by technology

Figure 135. Number of parts produced by polymer AM services 2024 by part type

Figure 136. Number of parts produced by polymer AM services in 2024 by VPP sub-technologies and YoY growth

Figure 137. Number of parts produced by polymer AM services in 2024 by PBF sub-technologies and YoY growth

Figure 138. Number of parts produced by polymer AM services in 2024 by MEX sub-technologies and YoY growth

Figure 139. Number of parts produced by polymer AM services in 2024 by JET sub-technologies and YoY growth

Figure 140. Top 10 polymer AM service companies by revenue in 2024

Figure 141. Revenue generated by polymer AM services 2024 by technology

Figure 142. Revenue generated by polymer AM services 2024 by part type

Figure 143. Revenues (USD M) generated by polymer AM services in 2024 by VPP sub-technologies and YoY growth

Figure 144. Revenues (USD M) generated by polymer AM services in 2024 by PBF sub-technologies and YoY growth

Figure 145. Revenues (USD M) generated by polymer AM services in 2024 by MEX sub-technologies and YoY growth

Figure 146. Revenues (USD M) generated by polymer AM services in 2024 by JET sub-technologies and YoY growth

Figure 147. Forecast of the number of parts (millions) produced by polymer AM services by technology

Figure 148. Forecast of the number of parts (millions) produced by polymer AM services by part type

Figure 149. Forecast of the number of parts (thousands) produced by polymer AM services by VPP sub-technologies 2024–2034

Figure 150. Forecast of the number of parts (thousands) produced by polymer AM services by PBF sub-technologies 2024–2034

Figure 151. Forecast of the number of parts (thousands) produced by polymer AM services by MEX sub-technologies 2024–2034

Figure 152. Forecast of the number of parts (thousands) produced by polymer AM services by JET sub-technologies 2024–2034

Figure 153. Forecast of revenues (USD M) generated by polymer AM services 2024–2034 by technology

Figure 154. Forecast of revenues (USD M) generated by polymer AM services 2024–2034 by part type

Figure 155. Forecast of revenues (USD M) generated by polymer AM services by VPP sub-technologies 2024–2034

Figure 156. Forecast of revenues (USD M) generated by polymer AM services by PBF sub-technologies 2024–2034

Figure 157. Forecast of revenues (USD M) generated by polymer AM services by MEX sub-technologies 2024–2034

Figure 158. Forecast of revenues (USD M) generated by polymer AM services by JET sub-technologies 2024–2034

Chapter 5

Figure 159. Polymer AM hardware units sold in 2024 by vertical AM adoption segment

Figure 160. Polymer AM hardware revenues (USD M) in 2024 by vertical AM adoption segment

Figure 161. Polymer AM material volume demand (kilograms) in 2024 by vertical AM adoption segment

Figure 162. Polymer AM material revenues (USD M) in 2024 by vertical AM adoption segment

Figure 163. Number of polymer AM parts produced by services in 2024 by vertical AM adoption segment

Figure 164. Revenues (USD M) generated by polymer AM parts produced by AM services in 2024 by vertical adoption segment

Figure 165. Forecast of polymer AM hardware units (thousands) sold by vertical AM adoption segment 2024–2034

Figure 166. Forecast of polymer AM hardware revenues (USD-M) by vertical AM adoption segment 2024–2034

Figure 167. Forecast of polymer AM material volume demand (tonnes) by vertical AM adoption segment 2024–2034

Figure 168. Forecast of polymer AM material revenues (USD-M) by vertical AM adoption segment 2024–2034

Figure 169. Forecast of the number of polymer AM parts (millions) produced by services by vertical AM adoption segment 2024–2034

Figure 170. Forecast of revenues (USD M) generated by polymer AM parts produced by AM services by vertical adoption segment 2024–2034

Chapter 6

Figure 171. APAC polymer AM hardware revenues (USD M) in 2024 by segment

Figure 172. EMEA polymer AM hardware revenues (USD M) in 2024 by segment

Figure 173. NA polymer AM hardware revenues (USD M) in 2024 by segment

Figure 174. LATAM polymer AM hardware revenues (USD M) in 2024 by segment

Figure 175. Polymer AM hardware units sold in 2024 by region

Figure 176. Polymer AM hardware revenues (USD M) in 2024 by region

Figure 177. Polymer AM material volume demand (kilograms) in 2024 by region

Figure 178. Polymer AM material revenues (USD M) in 2024 by region

Figure 179. Number of polymer AM parts produced by services in 2024 by region

Figure 180. Revenues (USD M) generated by polymer AM parts produced by AM services in 2024 by region

Figure 181. Forecast of APAC polymer AM revenues (USD M) by segment 2024–2034

Figure 182. Forecast of EMEA polymer AM revenues (USD M) by segment 2024–2034

Figure 183. Forecast of NA polymer AM revenues (USD M) by segment 2024–2034

Figure 184. Forecast of LATAM polymer AM revenues (USD M) by segment 2024–2034

Figure 185. Forecast of polymer AM hardware units (thousands) sold by region 2024–2034

Figure 186. Forecast of polymer AM hardware revenues (USD M) by region 2024–2034

Figure 187. Forecast of polymer AM material volume demand (tonnes) by region 2024–2034

Figure 188. Forecast of polymer AM material revenues (USD M) by region 2024–2034

Figure 189. Forecast of the number of polymer AM parts (thousands) produced by services by region 2024–2034

Figure 190. Forecast of revenues (USD M) generated by polymer AM parts produced by AM services by region 2024–2034

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