Bionic anti-slip pad is a high-performance anti-slip tool that mimics biological structures (such as gecko feet, octopus suction cups), and achieves glue-free strong adhesion (effective in both dry and wet environments) and shock absorption buffering through micro-nano surface design.
Brief: Discover the Bionic Non-slip Pad, a high-performance tool inspired by nature, designed for precision industries like photovoltaic, semiconductor, and optoelectronics. This innovative pad offers glue-free strong adhesion, shock absorption, and ultra-clean properties, enhancing production yield and reducing costs.
Related Product Features:
Mimics biological structures like gecko feet and octopus suction cups for glue-free strong adhesion.
Effective in both dry and wet environments with micro-nano surface design.
Ultra-clean, anti-static, and resistant to extreme temperatures up to 260℃.
Reduces wafer edge breakage, improving production yield in precision industries.
Features a bionic micro-nano array structure for high tangential friction and low normal adhesion.
Special polymer elastic material for semiconductor field, reusable with no imprint pollution.
Certified by SEMI S2/S8, resistant to plasma corrosion for semiconductor applications.
High light transmittance (>90%) and anti-laser burn properties for photoelectric industry use.
Faqs:
What is a bionic anti-slip mat and how does it work?
A bionic anti-slip mat mimics natural structures like gecko feet or octopus suckers to provide strong, glue-free grip through microscopic patterns, working effectively in both wet and dry conditions.
Where are bionic anti-slip mats commonly used?
They are widely used in high-tech industries such as solar, semiconductors, and optics for precision equipment fixation, vibration reduction, and cleanroom safety.
What are the special requirements for bionic anti-slip pads in the photovoltaic industry?
In the photovoltaic industry, these pads require UV aging resistance for outdoor life of 25 years and PID resistance (potential induced attenuation) materials to ensure long-term performance.