Bio-Flex®
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Skyi FKuR’s Bio-Flex® is a collection of biodegradable and compostable plastics derived from renewable resources. Designed mainly for flexible films, it also supports injection molding and thermoforming processes, making it suitable for a range of industries focused on sustainable material solutions.
Bio-Flex® plastics provide biodegradable, compostable solutions with excellent processability, supporting sustainability across various industries and flexible packaging applications.
Bio-Flex® is produced using renewable resources, offering fully biodegradable and compostable properties. It enables superior processing capabilities, ensuring easy coloring, printing, and sealing for manufacturers seeking sustainable alternatives in film and molded applications.
Bio-Flex® is suitable for agricultural, household, and hygiene films, along with injection-molded and thermoformed products for diverse applications.
Bio-Flex® materials are widely used in applications such as biodegradable films for agriculture, compostable household items, and hygiene films. Additionally, these materials are applied in injection-molded and thermoformed products, making them versatile across various sustainability-driven industries.
Bio-Flex® materials can be processed using standard plastics manufacturing techniques, ensuring seamless integration into existing production lines.
Bio-Flex® supports standard processing methods such as extrusion, injection molding, and thermoforming. These materials are designed for easy adoption into existing production lines without requiring major modifications, offering a smooth transition to biodegradable and compostable alternatives.
Explore Bio-Flex® Grades
With 70% renewable content, this industrially compostable bioplastic is ideal for injection molding…
With 70% renewable content, this industrially compostable bioplastic is ideal for injection molding…
Connect with our SMEs to find your ideal grade formulation. Skyi FKuR specialists guide you through material selection to ensure the right fit for your application.
Terralene®
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Skyi FKuR’s Terralene® is a range of bio-based polyethylene compounds derived from renewable raw materials and designed for full recyclability. These compounds can be processed using injection molding, blow molding, and film extrusion, with options including natural fiber-reinforced versions, bio-based polypropylene compounds, and bio-recyclate hybrids for various industries.
Terralene® provides high renewable content and full recyclability, making it ideal for sustainable applications requiring durability and versatility.
Terralene® is produced from renewable raw materials and designed to be fully recyclable, ensuring a reduced environmental impact. It offers various formulations, including bio-based polypropylene compounds, bio-recyclate hybrids, and natural fiber-reinforced options, providing flexibility for diverse applications.
Terralene® is used for bottles, jars, packaging, cosmetic accessories, food containers, flip-cap lids, bags, and many other applications.
Terralene® is widely applied in packaging, consumer goods, and industrial products, including bottles, canisters, buckets, carrier bags, cups, and food packaging. Its compatibility with various processing techniques makes it an excellent choice for sustainable product development.
Terralene® can be processed using injection molding, blow molding, and film extrusion, ensuring easy integration into existing production lines.
Terralene® is designed for use with conventional plastic processing methods, including injection molding, blow molding, and film extrusion. Its material properties allow manufacturers to transition seamlessly to bio-based alternatives without significant equipment modifications.
Explore Terralene® Grades
Connect with our SMEs to find your ideal grade formulation. Skyi FKuR specialists guide you through material selection to ensure the right fit for your application.
Fibrolon®
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Fibrolon® is a line of natural fiber-reinforced plastics and wood-polymer composites based on polyolefins or bioplastics. These materials offer a harmonious blend of wood's aesthetic appeal and plastic's versatility, making them ideal for various applications.
Fibrolon® offers high renewable content, biodegradability, and superior mechanical properties for sustainable product solutions.
Fibrolon® materials are composed of a significant percentage of renewable resources and, in certain formulations, are biodegradable. They exhibit high stiffness and strength, providing an attractive fiber surface that visibly emphasizes sustainability.
Fibrolon® is ideal for producing boxes, cosmetic accessories, 3D printing filaments, plant pots, housings, technical parts, toys, and urns.
Applications of Fibrolon® include manufacturing boxes and jars, decorative cosmetic accessories, 3D printing filaments, plant pots, plastic housings, technical plastic parts, toys, and biodegradable urns. Its versatility makes it suitable for a wide range of products.
Fibrolon® can be processed using standard injection molding and extrusion techniques for efficient manufacturing.
Fibrolon® materials are designed for compatibility with conventional processing methods, including injection molding and extrusion. This ensures seamless integration into existing production lines without the need for significant modifications.
Connect with our SMEs to find your ideal grade formulation. Skyi FKuR specialists guide you through material selection to ensure the right fit for your application.
Terralene LD 2509 CL
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Terralene® LD 2509 CL is a bio-based, low-density polyethylene (LDPE) compound designed for flexible packaging and film applications. It combines renewable content with excellent clarity, sealability, and processability, offering a sustainable alternative to conventional LDPE while maintaining high performance and recyclability.
Terralene® LD 2509 CL is a translucent bio-PE compound based on renewable raw materials. Technically, this bio-based PE compound resembles a polypropylene. It combines the PE properties of very good translucency, very good flow properties and a predominantly organic content, which are not common in injection molding. Terralene® LD 2509 CL is certified for food contact.
This highly translucent, free-flowing compound is perfect for injection-molded food cans and boasts top-tier recyclability (19/20) per Interseroh.
Biobased carbon content
50%
Melt flow rate (190°C/2.16kg)
42.0 g/10 min
Recommended Processing
Injection Moulding
Other Terralene Grades
Bio-Flex F 1100
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A biodegradable and compostable bioplastic compound, designed for flexible film applications. Derived from renewable raw materials, it offers excellent processability and mechanical properties, making it suitable for packaging, agricultural films, and disposable items. Certified according to EN 13432, it ensures environmental compatibility.
Bio-Flex® F 1100 is a biodegradable and industrially compostable polymer compound designed for blown film applications. It is certified for industrial composting under EN 13432 standard. This material is suitable for applications such as fruit bags and can be processed into films with a maximum thickness of 60 µm.
Certified industrially compostable in compliance with EN 13432 at TÜV Austria / OK Compost Industrial
Melt flow rate (190 °C/2.16 kg)
3.5 [g/10 min]
Appearance
Natural
Recommended Processing
Blown Film Extrusion
Other Bio-Flex Grades
Terralene PP 3509
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Terralene® PP 3509 is a bio-based polypropylene (PP) compound designed for injection molding applications. It offers a balance of strength, durability, and processability while incorporating renewable content. Suitable for a range of industrial and consumer applications, it provides a sustainable alternative to conventional PP without compromising performance or recyclability.
Terralene® PP 3509 is a biobased compound with a renewable raw material content of around 33%. This thermoplastic material can be excellently processed by injection molding and essentially has the same properties as PP. Due to its outstanding flowability, it is also suitable for the production of complex components with long flow paths. Terralene® PP 3509 is approved for contact with food.
Biobased carbon content
33%
Melt flow rate (230°C/2.16kg)
36.0 g/10 min
Recommended Processing
Injection Moulding
Other Terralene Grades
Bio-Flex FX 1130
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An industrially compostable bioplastic compound with mechanical properties similar to LDPE. It is suitable for producing tear-resistant, thin films and nettings, such as carrier bags, mulch films, and paper coatings. This material is approved for food contact and certified compostable according to EN 13432
Films made of this industrially compostable plastic are characterized by a high puncture resistance and high elongation at break transverse to the machine direction (TD). Due to the high melt strength of the material, films can easily be drawn out to 10µm. Bio-Flex® FX 1130 is also approved for contact with food and is industrially compostable in compliance with the EN 13432 standard.
Certified industrially compostable
in compliance with EN 13432 at TÜV Austria / OK Compost Industrial
Biobased carbon content
10%
Appearance
Cream-colored
Recommended Processing
Lamination, Blown Film Extrusion
Other Bio-Flex Grades
Terralene HD 3505
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Terralene® HD 3505 is a high-density bioplastic compound designed for injection molding applications. Incorporating renewable content, it offers excellent strength, durability, and processability. It serves as a sustainable alternative to conventional HDPE, making it suitable for a wide range of industrial and consumer applications while reducing environmental impact.
Terralene® 3505 is a biobased HD-PE compound. It combines excellent processability with good mechanical properties, especially with a high impact resistance. Terralene® HD 3505 is also suitable for contact with food.
Biobased carbon content
64% in compliance with ASTM 6866
Melt flow rate (190°C/2.16kg)
7.0 g/10 min
Recommended Processing
Injection Moulding
Other Terralene Grades
Bio-Flex F 6611
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An industrially compostable bioplastic compound with a high content of renewable resources. It is designed for injection molding applications, offering good flow properties and mechanical strength. This material is suitable for producing items such as cutlery, trays, and technical parts. Additionally, it is approved for food contact and certified compostable according to EN 13432.
This biodegradable compound is specifically designed for sheet extrusion and thermoforming applications. With 70% biobased content, it offers a sustainable alternative while maintaining high heat resistance and a pleasant pearlescent gloss. The material is GMO-free and provides a smooth touch, making it ideal for various packaging applications. It has a melt flow rate of 1.5 – 3.0 g/10 min (190°C/2.16 kg) and is certified industrially compostable under EN 13432 standards.
Certified industrially compostable in compliance with EN 13432 at TÜV Austria / OK Compost Industrial
Biobased carbon content
70%
Melt flow rate (190°C/2.16kg)
1.5 – 3.0 g/10 min
Recommended Processing
Thermoforming
Other Bio-Flex Grades
Fibrolon 3D Natural fibres - Wood
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Fibrolon 3D Wood is a biocomposite filament combining biodegradable polymers with natural wood fibers for enhanced strength and dimensional stability. With its wood-like texture and thermal stability, it is ideal for functional prototypes, decorative applications, and consumer products. Its composition ensures improved impact resistance and printability compared to conventional filaments.
Are you still woodworking or are you already printing? Filaments made of Fibrolon D Wood not only look like wood, they also feel and smell like real wood. Due to its good mechanical properties, Fibrolon® 3D Wood is very easy to process into filaments. The wood filling not only enables a natural, unique look, the filament is also virtually warp-free. Just like wood, components made of Fibrolon® 3D Wood can be painted or laminated, the physical properties are very similar. Bring the fresh scent of wood into your print room with Fibrolon® 3D Wood.
Biobased carbon content
75%
Natural fibers
Wood fibers from Europe
Melt flow rate (190°C/2.16kg)
3.5 g/10 min
Recommended Processing
3D printing