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NATUR-CORK Matersia Pellets

MATERSIA-NATUR-CORK-1000
32.00 € 32.00 €
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In stock 0 units available for immediate shipping.
units available for shipping in 2 - 3 days
Available for shipment within 2 - 3 days

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Approximate delivery date: Thursday 22 January - Friday 23 January

Matersia Natur-Cork is established as an advanced technical material for 3D printing that is distributed in pellet form, designed to meet the most demanding needs of industrial additive manufacturingl, product design, architecture, and professional interior design. This thermoplastic composite with natural cork incorporates bio-based components that reduce density, optimize material consumption, and lower the carbon footprint, key factors in purchasing decisions for industrial 3D printing materials.

Thanks to its specific formulation for fused granular manufacturing, Matersia Natur-Cork offers excellent processability in FGF 3D printers, ensuring stability, repeatability, and surface quality even in prolonged printing processes and large-volume parts. Its natural aesthetic with a glossy finish provides a clear differential value compared to conventional plastic materials, positioning it as a premium solution for applications where design and sustainability directly influence conversion.

The technical base of Matersia Natur-Cork is supported by the development of Biocork, a bio-based composite with natural cork that provides lightness, printing stability, and a significant reduction in carbon footprint. This integration allows Natur-Cork to offer an optimal balance between technical performance, sustainability, and natural aesthetics in industrial 3D printing processes.

Matersia Natur-Cork provides homogeneous behavior during the manufacturing process, facilitating the production of large parts and complex geometries with an attractive natural finish. These properties make it the ideal base for advanced solutions like Matersia Natur-Cork, aimed at high-value professional applications.

Competitive advantages of Matersia Natur-Cork in industrial 3D printing

Key Features of Matersia Natur-Cork
Matersia Natur-Cork is a material aimed at manufacturing elements in the field of industrial design, offering an advanced technical solution for high-value 3D printing projects.
It is an ideal material for transformation into products specified by architects and designers seeking sustainable, differentiating materials with high-quality natural aesthetics.
Its glossy finish provides a highly attractive aesthetic combining naturalness and elegance, highly demanded in architecture, interior design, and 3D-printed product applications.
It is fully compatible with fused granular 3D printers, making it a strategic option for industrial and production environments based on pellet-fed 3D printing.
It presents a very stable behavior during the 3D printing process, even in prolonged manufacturing times, optimizing efficiency, reducing waste, and ensuring consistent results.

Matersia Natur-Cork: differentiation, sustainability, and high commercial value

Matersia Natur-Cork represents a high-value solution for projects requiring innovative 3D printing materials, combining sustainability, design, and technical performance. Its ability to reduce weight, improve process efficiency, and offer an exclusive natural aesthetic positions it as a strategic material for professional 3D printing, with a clear competitive advantage in industrial and creative environments.

Choosing Matersia Natur-Cork drives projects with higher perceived value, optimizes additive manufacturing, and reinforces organic positioning in searches related to advanced 3D printing materials with pellets, sustainable 3D FGF materials, and high-performance technical materials.

General information

Manufacturer Matersia
Format 1 Kg | 5 Kg | 20 Kg | 100 Kg
Density 1.17 g/cm³

Mechanical properties

Elongation at break 4.6 %
Elongation at break [X] (ISO 527) 4.6 | [Z] (ISO 527) 2.7 %
Tensile strength [X] (ISO 527) 35 | [Z] (ISO 527) 23 MPa
Tensile modulus [X] (ISO 527) 1500 | [Z] (ISO 527) 1200 MPa

Other

HS Code 3901.1

For more information, please refer to the Safety Sheet and Technical Sheet in the Attachments tab.

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