Basic Information
• Product Name: PU Leather
• Core Material: Polyurethane (PU)
• Application Scenarios: High-end automotive interiors (luxury seats, center console wrapping, armrest boxes, etc.), high-end cockpit interiors of high-speed trains; also suitable for transportation interior scenarios with high requirements for touch and texture.
• Product Positioning: Mid-to-high-end artificial leather dedicated to transportation interiors, balancing texture, comfort and environmental protection.
Core Parameters
• Material Characteristics: Soft and delicate touch, excellent genuine leather simulation effect, better air permeability than traditional PVC artificial leather; excellent flexibility, good bending rebound performance, adapting to the wrapping needs of complex interior curved designs.
• Environmental Indicators: Odorless; harmful substance content is much lower than industry limits; complies with environmental certification standards, ensuring the health of drivers and passengers.
• Specification Customization: Supports customization of thickness, surface texture , texture , and color according to customer needs.
• Substrate Adaptability: Matches high-quality PU leather base fabrics such as milk silk (mainly knitted substrates), improving overall softness and air permeability, and enhancing user comfort.
Product Advantages
• Excellent Texture: The touch is close to natural leather, soft and skin-friendly, enhancing the luxury and comfort of transportation interiors.
• Breathability: Better air permeability than PVC artificial leather, reducing stuffiness during long-term driving and riding, and improving the experience.
• Environmental Safety: Adopts environmentally friendly PU materials and production processes, no harmful gas emissions, meeting the environmental requirements of high-end transportation interiors.
• Strong Durability: Combines good wear resistance and aging resistance; not easy to fade or harden after long-term use, maintaining a high-quality state.
• Process Adaptability: Can meet high-frequency processing such as bending, cutting, and sewing for interior assembly processes, adapting to complex interior structure designs.

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