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Wood Composite Materials Product List

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【For Automotive Parts】Selbrid® Design Grade

Achieving lightweight automotive parts with Scope3-compliant biomass composite materials.

In the automotive industry, reducing weight of components is a crucial challenge for improving fuel efficiency and minimizing environmental impact. In particular, lightweighting of the body and interior parts is essential for reducing the overall weight of the vehicle and enhancing fuel efficiency. Conventional petroleum-based resins can hinder weight reduction. The Selbride® design grade is a WPC (wood plastic composite) with a high content of wood flour, which not only offers lightweight properties and environmental considerations but also allows for unique design expressions characteristic of wood flour. 【Application Scenarios】 - Automotive interior parts (door trims, instrument panels, etc.) - Exterior parts (grilles, etc.) - Other components where weight reduction is required 【Benefits of Implementation】 - Improved fuel efficiency through lightweighting of components - Reduction of CO2 emissions through Scope 3 compliance - Increased added value through wood-based design features

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  • WPC意匠表面.png
  • plastic
  • Composite Materials
  • fiber
  • Wood Composite Materials

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~Lighter than Talc PP~ [For Automobiles] Selbrid® Standard Grade

Achieving lightweight automotive parts with Scope3-compliant wood powder blended WPC.

In the automotive industry, reducing the weight of components has become a crucial challenge for improving fuel efficiency and reducing environmental impact. In particular, the lightweighting of body and interior parts is essential for decreasing the overall weight of the vehicle and enhancing fuel efficiency. Traditional materials have faced the challenge of balancing lightweighting with strength and durability. The Celbrid® standard grade incorporates up to 55wt% wood powder, reducing the use of petroleum-derived resins while being compatible with injection molding and extrusion, making it possible to replace existing polypropylene-based materials. It also provides aesthetic qualities derived from wood, contributing to Scope 3 compliance. 【Application Scenes】 - Automotive interior parts (door trims, instrument panels, etc.) - Other parts where lightweighting is required 【Benefits of Implementation】 - Improved fuel efficiency due to lightweighting - Reduced environmental impact (decrease in CO2 emissions) - Increased added value through wood-derived aesthetics - Potential cost reduction through replacement of existing materials

  • plastic
  • Composite Materials
  • fiber
  • Wood Composite Materials

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Wood Nano Plus® Standard Grade for Automotive Parts

Contributing to the lightweighting of automobiles with WPC using nano-micron hybrid fillers.

In the automotive industry, reducing vehicle weight is a crucial challenge for improving fuel efficiency and minimizing environmental impact. Lightweighting also contributes to enhanced vehicle performance. The "Wood Nano Plus® Standard Grade" achieves a balance between lightweight properties and high rigidity, contributing to the resolution of these challenges. 【Application Scenarios】 - Automotive interior parts (door trims, instrument panels, etc.) - Exterior parts (bumpers, grilles, etc.) - Other parts where lightweighting is required 【Benefits of Implementation】 - Improved fuel efficiency due to vehicle weight reduction - Enhanced moldability of parts - Contribution to reducing environmental impact

  • plastic
  • Composite Materials
  • fiber
  • Wood Composite Materials

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Wood Nano Plus® Standard Grade for Exterior Building Materials

Improving durability with WPC using nano-micron hybrid fillers.

In the construction industry, the long-term durability of structures is important. In particular, building materials used outdoors must withstand deterioration from rain, wind, and ultraviolet rays. Proper material selection also leads to reduced maintenance costs. "Wood Nano Plus" is a molding compound that uniformly disperses wood-based filler materials with both nano and micron sizes in thermoplastic resins such as polypropylene, contributing to improved durability. 【Application Scenarios】 - Outdoor decks - Exterior wall materials - Fences - Civil engineering materials 【Benefits of Implementation】 - Improved weather resistance - Long-term performance maintenance - Extended maintenance cycles

  • plastic
  • Composite Materials
  • fiber
  • Wood Composite Materials

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