High-Rebound Type
Suitable for soft-touch applications that require high elongation and elastic cushioning.
Hanin provides a complete elastomer 3D printing solution for footwear, sports protective gear, medical support devices, consumer electronics, industrial flexible fixtures, and soft robotic components.
Built around the LCD-L298 elastomer 3D printer, Hanin integrates dual-cure polyurethane elastomer resin, printing parameters, post-processing, and dyeing workflows to support 3D printed footwear, shoe soles, elastomer slippers, sports protective gear, cushioning components for consumer electronics, flexible fixtures, and soft robotic parts.
A commercial elastomer 3D printer designed for elastomer material printing, flexible structure validation, and small-batch production.
| Printing Technology | LCD selective-area light transmission |
|---|---|
| Light Source | COB light source + Fresnel lens |
| Wavelength | 405 nm |
| Layer Thickness | 0.01–0.3 mm |
| XY Precision | 46 μm |
| LCD Resolution | 6480 × 3600 (8K) |
| Build Volume | 294 × 160 × 400 mm |
| Printing Speed | 20–80 mm/h |
| Touchscreen | 13.3 inches |
|---|---|
| Printer Size | 502 × 458 × 890 mm |
| Weight | Approx. 45 kg |
| Motherboard | Embedded industrial motherboard |
| Operating System | Android 10 |
| Power Supply | AC 220 V |
| Power Consumption | 700 W |
| Supported File Format | STL |
For elastomer 3D printing material selection, Hanin offers flexible resin options with different hardness and mechanical properties for footwear, protective gear, cushions, flexible fixtures, and cushioning components for consumer electronics.
Suitable for soft-touch applications that require high elongation and elastic cushioning.
Balances flexibility and support for most elastomer 3D printing product validation needs.
Suitable for 3D printed shoe midsoles, orthotic supports, and functional elastomer parts.
Designed for 3D printed elastomer parts that require higher strength and hardness.
From 3D printed footwear and shoe soles to industrial flexible fixtures, cushioning components for consumer electronics, and soft robotic parts, elastomer 3D printing is expanding into more functional product development and small-batch manufacturing scenarios.
Elastomer 3D printing products depend not only on printing, but also on material matching, structural stability, surface quality, and finishing results. Hanin provides integrated process support from elastomer material selection to printing, cleaning, sanding, dyeing, and final sample validation.
3D printed footwear parts, elastomer slippers, flexible parts, lattice structures, and dyed elastomer samples.
Whether you want to purchase an elastomer 3D printer, get custom elastomer 3D printing services, or develop 3D printed footwear, medical support devices, consumer electronics cushioning parts, flexible fixtures, or soft robotic parts, you can start with sample testing.
For 3D printing service providers, footwear manufacturers, sports product factories, industrial workshops, and technology startups looking to build elastomer 3D printing capacity.
Get Printer QuoteFor brands, designers, and small-batch customers who want to validate structure, material, hand feel, appearance, and application performance before investing in equipment.
Request Sample TestingFor customers with clear application goals, Hanin can support the development of 3D printed footwear, elastomer slippers, rehabilitation supports, consumer electronics cushioning parts, and soft robotic parts.
Discuss CooperationCommon questions about elastomer 3D printing, elastomer 3D printers, materials, sample testing, and production applications.
Elastomer 3D printing is used to produce flexible, rubber-like parts with elastic performance. It is suitable for 3D printed footwear, shoe soles, elastomer slippers, cushioning components, flexible fixtures, rehabilitation supports, and soft robotic parts.
Yes. With suitable elastomer 3D printing materials such as dual-cure polyurethane elastomer resin, rubber-like flexible parts can be printed for sample testing, functional prototyping, and small-batch production.
The LCD-L298 is a commercial elastomer 3D printer designed for elastomer material printing, flexible resin 3D printing, sample validation, and small-batch production. It is not positioned as a general desktop FDM flexible filament printer.
Hanin offers dual-cure polyurethane elastomer resin options such as DE-60A, DE-70A, DE-75A, and DE-80A. Material selection can be based on Shore hardness, rebound, tensile strength, elongation at break, and application requirements.
Yes. You can submit your product requirements, 3D model, or target sample. Hanin can provide elastomer 3D printing services, sample testing, material selection suggestions, process support, and equipment configuration recommendations.
Tell us what elastomer 3D printing product you want to develop, including hardness, hand feel, application requirements, and target samples. Hanin can provide LCD-L298 equipment quotes, sample testing, elastomer material selection, and process recommendations.
We provide comprehensive, one-stop services tailored to your needs, including 3D scanning, modeling, data processing, reverse engineering, and more.
Our advanced 3D printing technologies deliver precise control within a 0.05-0.3mm range, with metal 3D printing achieving an impressive ±0.05mm tolerance, ideal for high-precision industrial applications.
We support multi-process parallel production and an intelligent scheduling system, which reduces product development cycles by 30%-50%, ensuring timely delivery from concept validation to small-batch production.
We support a wide variety of 3D printing materials, including resins, nylon, aluminum alloys, titanium alloys, ABS, PLA, and more, meeting both consumer and industrial-grade needs.
Enhance the look and functionality of your parts with a range of surface treatments, such as dyeing, polishing, and sanding, tailored to your specifications.
We offer tailored confidentiality agreements, ensuring zero risk of data leakage throughout the entire process—from initial design to final product.
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