With the rapid commercialization of global humanoid robot technology, bionic robots are widely applied in commercial exhibition halls, science and technology museums, cultural tourism scenic spots and public interactive scenarios. Traditional general indoor bionic silicone can no longer adapt to the increasingly complex working conditions and commercial operation standards. Ordinary silicone materials have prominent defects in practical application: weak wear resistance leads to surface scratches, whitening and abrasion after frequent human‑machine interaction and long‑term friction; poor weather resistance causes rapid aging, yellowing, hardening and cracking under UV radiation, temperature difference and humid environment; insufficient fatigue stability results in elastic attenuation and skin cracking after long‑term joint movement, bringing high maintenance cost and short replacement cycle for robot enterprises.
In high‑end simulation industries such as museum wax figures, scenic simulation sculptures and outdoor film special‑effect prosthetics, traditional silicone also faces the problems of poor durability, easy aging and low weather resistance, which restrict the quality improvement and long‑term display effect of high‑end bionic products. Global bionic manufacturing markets are in urgent need of a high‑performance, long‑life, wear‑resistant and weather‑resistant professional bionic skin material to support industrial upgrading and large‑scale commercial promotion of humanoid robots.
Targeting the core industrial pain points of poor wear resistance, insufficient weather resistance and easy aging of traditional robot skin materials, Shenzhen Hong Ye Jie Technology independently developed and launched HYJ‑RS‑037 high wear‑resistant scratch‑proof weather‑resistant anti‑aging robot skin silicone. Adopting upgraded molecular cross‑linking toughening technology and optimized weather‑resistant anti‑aging system, this new‑generation platinum addition silicone greatly improves surface abrasion resistance, scratch resistance, UV resistance and environmental adaptability, fundamentally solving the durability bottleneck of bionic skin in complex working conditions.
After professional repeated friction and scratch tests, the material maintains stable surface toughness, without scratch residue, whitening or peeling, effectively resisting daily human touch friction, dust abrasion and slight external impact damage. The excellent weather‑resistant formula enables the silicone to resist ultraviolet aging, moisture erosion and temperature difference embrittlement, ensuring stable performance in long‑term indoor static display and outdoor weak light working environment, no yellowing, no hardening, no cracking and no oil precipitation.
With ultra‑low shrinkage rate and high texture reduction capability, the material can accurately restore human skin pores, subtle lines and natural skin texture, presenting ultra‑realistic bionic visual and tactile effect. The 0‑25A multi‑hardness gradient design meets the dual requirements of ultra‑soft facial simulation and high‑wear‑resistant body protection. High resilience and fatigue resistance ensure stable dynamic performance of robot joints after long‑term repeated bending and torsion movement.
The eco‑friendly platinum system ensures safe and odorless performance, compliant with international environmental safety standards for indirect human contact products. Custom skin tone and special colors are available with durable color fastness. The product is widely used in commercial humanoid robot bionic outer skin, long‑term exhibition simulation wax figures, outdoor special‑effect prosthetics, medical training mannequins and high‑end wearable simulation props.
As a professional silicone manufacturer with independent R&D and mass production capacity, Hong Ye Jie focuses on scenario‑based formula optimization and industrial pain point solving. We provide customized formula adjustment, free sample testing and stable global bulk supply services, helping overseas bionic manufacturing enterprises reduce maintenance costs, improve product durability and accelerate commercial project implementation.