The global flexible filament 3D printing material market is estimated to attain US$467.143 million by 2030, growing at a CAGR of 16.63% from US$216.469 million in 2025.
A flexible filament is made from Thermoplastic Elastomers (TPE), a mixture of hard plastics and rubber. The material can flex and stretch easily, owing to its elastic nature. TPE comes in various types, with thermoplastic polyurethane (TPU) being the most popular. PETG and PLA filaments cannot be used to print things such as RC airplane wheels and flexible phone cases, but flexible filaments are the ideal choice for this application. Another option to expand the 3D printer's capabilities is to use flexible filaments. These filaments provide flexibility, great adhesion between layers, and sometimes also elasticity, unlike most common materials (such as PLA or PET-G). Printing flexible objects with extreme mechanical wear and tear resistance is possible.
Using flexible filaments for automotive components, household appliances, or medical devices is common. Due to their soft and elastic nature, filaments can withstand high loads. Several market leaders seized the opportunity and started using flexible filaments to grow their businesses. A prime example is Nike. For the production of the Flyprint upper, Nike used a Solid Deposition Modelling (SDM) procedure. This is similar to fused deposition modeling and is built using flexible TPU filament.
This material is well suited for adding value to various industries, including footwear, where it can be used to create elastic soles, or the automotive industry, where tires and shock absorbers are manufactured. Using TPU filament makes creating functional prototypes, concept models, and custom components easy. Mobile phone covers are often made from this type of material, as it protects the device from shocks and fractures. To keep up with the market, companies conduct continuous research and development.
The global demand for flexible filament 3D printing material market is expected to increase significantly. This is owing to the increasing utilization of 3D printing technologies across multiple industries like automotive, aerospace, healthcare, and domestic applications.
In the global market, the utilization of 3D printing technologies across multiple industries, like aerospace, automotive, construction, and healthcare, is also estimated to propel this market's growth during the forecasted timeline.
Various companies worldwide have introduced key components and products using 3D printing technologies. For instance, in October 2024, McLaren Corporate, a global automotive giant, launched the McLaren W1, which features 3D-printed components, like the suspension parts. Similarly, in May 2024, Agnikul, an India-based aerospace startup, launched the world's first 3D-printed engine for the rockets. It offers 3D-printed semi-cryogenic engines and shows reliable and flexible performance.
In the global flexible filament 3D printing material market, the North American region is expected to propel at a significant rate. This region is among the global leaders in 3D technology, which has integrated the utilization of 3D-based technologies across multiple industries, like automotive, aerospace & defense, education, healthcare, and construction, among others.
In the aerospace and automotive sectors, flexible filament integrates and produces lightweight components. The flexible filaments can also help in reducing the spare parts manufacturing time.
A flexible filament is made from Thermoplastic Elastomers (TPE), a mixture of hard plastics and rubber. The material can flex and stretch easily, owing to its elastic nature. TPE comes in various types, with thermoplastic polyurethane (TPU) being the most popular. PETG and PLA filaments cannot be used to print things such as RC airplane wheels and flexible phone cases, but flexible filaments are the ideal choice for this application. Another option to expand the 3D printer's capabilities is to use flexible filaments. These filaments provide flexibility, great adhesion between layers, and sometimes also elasticity, unlike most common materials (such as PLA or PET-G). Printing flexible objects with extreme mechanical wear and tear resistance is possible.
Using flexible filaments for automotive components, household appliances, or medical devices is common. Due to their soft and elastic nature, filaments can withstand high loads. Several market leaders seized the opportunity and started using flexible filaments to grow their businesses. A prime example is Nike. For the production of the Flyprint upper, Nike used a Solid Deposition Modelling (SDM) procedure. This is similar to fused deposition modeling and is built using flexible TPU filament.
This material is well suited for adding value to various industries, including footwear, where it can be used to create elastic soles, or the automotive industry, where tires and shock absorbers are manufactured. Using TPU filament makes creating functional prototypes, concept models, and custom components easy. Mobile phone covers are often made from this type of material, as it protects the device from shocks and fractures. To keep up with the market, companies conduct continuous research and development.
The global demand for flexible filament 3D printing material market is expected to increase significantly. This is owing to the increasing utilization of 3D printing technologies across multiple industries like automotive, aerospace, healthcare, and domestic applications.
Global Flexible Filament 3D Printing Material Market Drivers
Rising applications of 3D printing
TPU combines the properties of rubber and plastic to create highly durable, elastic, bendable parts. TPU is most commonly used for consumer goods, such as accessories for phones and footwear components. Medical applications can also be made with TPU. It is also great for automotive applications like seals, gaskets, plugs, tubes, and protective applications. Since it has high chemical resistance to oils and greases, these materials are popular for creating orthopedic models. Manufacturers launch new innovative products to maintain their competitiveness.In the global market, the utilization of 3D printing technologies across multiple industries, like aerospace, automotive, construction, and healthcare, is also estimated to propel this market's growth during the forecasted timeline.
Various companies worldwide have introduced key components and products using 3D printing technologies. For instance, in October 2024, McLaren Corporate, a global automotive giant, launched the McLaren W1, which features 3D-printed components, like the suspension parts. Similarly, in May 2024, Agnikul, an India-based aerospace startup, launched the world's first 3D-printed engine for the rockets. It offers 3D-printed semi-cryogenic engines and shows reliable and flexible performance.
Global Flexible Filament 3D Printing Material Market geographical outlook:
North America is forecasted to hold a major share of the Global Flexible Filament 3D Printing Material Market.In the global flexible filament 3D printing material market, the North American region is expected to propel at a significant rate. This region is among the global leaders in 3D technology, which has integrated the utilization of 3D-based technologies across multiple industries, like automotive, aerospace & defense, education, healthcare, and construction, among others.
In the aerospace and automotive sectors, flexible filament integrates and produces lightweight components. The flexible filaments can also help in reducing the spare parts manufacturing time.
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- Historical data & forecasts from 2022 to 2030
- Growth Opportunities, Challenges, Supply Chain Outlook, Regulatory Framework, Customer Behaviour, and Trend Analysis
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- Revenue Growth and Forecast Assessment of segments and regions including countries
- Company Profiling (Strategies, Products, Financial Information, and Key Developments among others)
The Global Flexible Filament 3D Printing Material Market is segmented and analyzed as follows:
By Color
- Neutral
- Black
- White
- Other
By Diameter
- 1.75 mm
- 2.85mm
- 3mm
By Geography
- North America
- South America
- Europe
- Middle East and Africa
- Asia-Pacific
Table of Contents
1. INTRODUCTION
2. RESEARCH METHODOLOGY
3. EXECUTIVE SUMMARY
4. MARKET DYNAMICS
5. FLEXIBLE FILAMENT 3D PRINTING MATERIAL MARKET BY COLOR
6. FLEXIBLE FILAMENT 3D PRINTING MATERIAL MARKET BY DIAMETER
7. FLEXIBLE FILAMENT 3D PRINTING MATERIAL MARKET BY GEOGRAPHY
8. COMPETITIVE ENVIRONMENT AND ANALYSIS
9. COMPANY PROFILES
Companies Mentioned
- 3DXTech
- 3D4Makers
- Treed Filaments
- 3D Jake (Niceshops GmbH)
- Recreus Industries, S.L.
- 3DZone
- MatterHacker
- Filament2print
- WOL3D Printer Filaments
- Dream Polymers
- FILATECH
- Spectrum Filaments
- Z Industries
- Terrafilum
- colorFabb BV.
Methodology
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Table Information
Report Attribute | Details |
---|---|
No. of Pages | 145 |
Published | December 2024 |
Forecast Period | 2025 - 2030 |
Estimated Market Value ( USD | $ 216.47 Million |
Forecasted Market Value ( USD | $ 467.14 Million |
Compound Annual Growth Rate | 16.6% |
Regions Covered | Global |
No. of Companies Mentioned | 15 |