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Composites Product List

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Nanocellulose + starch-based biodegradable resin composite

The mechanical strength of starch-based biodegradable resins, such as tensile strength and elasticity, has improved!

By compounding starch-based biodegradable resin with nanocellulose (cellulose nanofiber: CNF), the mechanical strength such as tensile strength and elastic modulus of the starch-based biodegradable resin is improved. There is also a possibility of enhanced biodegradability, foaming properties, and crystallinity (currently under verification). This product is a certified material by the Japan Biomass Plastic Association for Green Plastic and Biomass Plastic. 【Features】 ■ Compounding starch-based biodegradable resin with nanocellulose ■ Improved mechanical strength such as tensile strength and elastic modulus ■ Certified material by the Japan Biomass Plastic Association for Green Plastic and Biomass Plastic * For more details, please refer to the PDF document or feel free to contact us. * If you would like a paid sample, please inquire.

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  • plastic
  • Other polymer materials

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Nanocellulose + PBS composite polybutylene succinate

It is a material made by mixing nanocellulose with various biodegradable plastics.

By compounding PBS with nanocellulose (cellulose nanofiber: CNF), the mechanical strength of PBAT, such as tensile strength and elastic modulus, is improved. There is also a possibility of enhanced biodegradability, foaming properties, and crystallinity. (Currently under verification) This product is a certified material of Green Plastic and Biomass Plastic by the Japan Biomass Plastic Association. 【Features】 ■ Compounding of PBS and nanocellulose ■ Improved mechanical strength such as tensile strength and elastic modulus ■ Certified material of Green Plastic and Biomass Plastic by the Japan Biomass Plastic Association * For more details, please refer to the PDF document or feel free to contact us. * If you would like a paid sample, please inquire.

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  • plastic
  • Other polymer materials

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Nanocellulose + Polylactic Acid (PLA) composite material

Effects such as improved crystallinity, foaming properties, and biodegradability have been confirmed!

By compounding PLA with nanocellulose (CNF: cellulose nanofiber), improvements in tensile strength, elastic modulus, and flexural strength have been confirmed. Additionally, more detailed observations using an electron microscope have confirmed that compounding nanocellulose with PLA results in a more uniform and smaller distribution of foaming (pores). This product is a certified material by the Japan Biomass Plastic Association for Green PLA and biomass plastics. 【Features】 ■ Improved tensile strength, elastic modulus, and flexural strength ■ Enhanced crystallinity ■ Improved foamability ■ Increased biodegradability ■ 100% natural-derived materials, petroleum 0 *For more details, please refer to the PDF document or feel free to contact us. *If you would like a paid sample, please inquire.

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  • plastic
  • Other polymer materials

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Nanocellulose + PBAT composite polybutylene adipate terephthalate

There is also the possibility of improved biodegradability, foaming properties, and crystallinity!

By compounding PBAT with nanocellulose (cellulose nanofiber: CNF), the mechanical strength of PBAT, such as tensile strength and elasticity, is improved. There is also a possibility of enhanced biodegradability, foaming properties, and crystallinity. (Currently under verification) This product is a material that mixes nanocellulose with various biodegradable plastics. 【Features】 ■ Compounding of PBAT and nanocellulose ■ Improved mechanical strength such as tensile strength and elasticity ■ Certified material by the Japan Biomass Plastic Association for Green Plastics and Biomass Plastics * For more details, please refer to the PDF document or feel free to contact us. * If you would like a paid sample, please inquire.

  • plastic
  • Other polymer materials

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Quantum dot + UV (infrared curing type) resin composite material

Introducing a material that can be molded into various shapes and has adjustable luminescent colors! It is a composite of quantum dots and UV (ultraviolet) curing resin.

We would like to introduce the quantum dot + UV resin composite material developed by our company. This product is a material that combines quantum dots with UV (ultraviolet) curing resin. Since it is a UV curing resin, it can be shaped into various forms using molds. By changing the type of quantum dots, it is also possible to produce light emission colors of various wavelengths. We plan to improve water resistance, weather resistance, and heat resistance as well. 【Features】 ■ Since it is a UV curing resin, it can be shaped into various forms using molds. ■ By changing the type of quantum dots, it is also possible to produce light emission colors of various wavelengths. *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Other polymer materials

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PLA/hydroxyapatite composite material

Creating 3D shapes! It is expected to be developed as a material for 3D printers for medical use.

"PLA/Hydroxyapatite composite materials" are materials that have the potential to be applied as artificial bones and bone fillers. Using a 3D printer, it is possible to create arbitrary three-dimensional shapes, enabling the fabrication of complex shapes of artificial bones tailored to each patient, which is expected to be developed as a material for 3D printers for custom-made medical applications. The PDF document below includes photos of the shapes of toy bones printed with a 3D printer, as well as the shapes of screws that could potentially be used for bone fixation. Please feel free to download and take a look. [Features] ■ Printable with a 3D printer ■ Applicable as scaffold materials for artificial bones and regenerative medicine *For more details, please refer to the PDF document or feel free to contact us.

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  • Composite Materials

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