With the upgrading of global commercial humanoid robot experience standards, surface touch feeling, sanitary cleanliness and long-term display texture have become core indicators of high-end robot product competitiveness. A large number of high-end exhibition halls, science and technology museums and commercial stores deploy humanoid robots in closed indoor environments with long-term display and frequent visitor touch, putting forward extremely strict requirements on surface cleanliness and skin touch comfort of bionic materials.
Traditional bionic silicone has inherent defects of small molecule precipitation and greasy surface. After curing, residual additives continuously precipitate oily substances to form surface oil film, resulting in sticky touch, easy fingerprint residue and strong static dust adsorption. During long-term closed exhibition, the robot skin easily accumulates dust and lint, becoming gray and mottled in a short time, seriously damaging the high-end bionic display effect. Frequent manual cleaning is required, bringing continuous high operation and maintenance pressure. In addition, greasy precipitation may cause sanitary risks and pollute surrounding display equipment, failing to meet high-end commercial display and hygienic interaction standards.
High-end simulation fields such as museum exhibits, art wax figures, medical simulation mannequins and wearable bionic props also face the same greasy and dust-accumulating dilemma. Traditional silicone cannot maintain long-term clean and dry surface state, resulting in shortened display cycle and degraded product grade. The global high-end bionic industry urgently needs professional low-bleed, dry-touch and dust-proof skin materials to adapt to high-standard interactive and exhibition scenarios.
Targeting the core pain points of greasy precipitation, sticky touch and easy fouling of bionic materials, Shenzhen Hong Ye Jie Technology launches HYJ-RS-045 low-bleed dry-touch bionic silicone after repeated formula purification and precipitation control tests. Abandoning the traditional high-residue formula, this product removes volatile small molecules and residual additives from the source, completely solving the industry problems of oil exudation, stickiness and dust accumulation, and creating a long-term clean and comfortable high-end bionic touch experience.
The product features industry-leading dry and clean surface performance without oil film and grease residue. The skin feels smooth and non-sticky during human-computer interaction, effectively avoiding fingerprint and dirt residue. The optimized low-static structure greatly reduces dust and lint adsorption, maintaining a brand-new clean state for long-term closed exhibition and minimizing daily maintenance work.
It achieves perfect balance between high simulation fidelity and long-term cleanliness stability. The ultra-low shrinkage rate accurately restores delicate human skin micro-textures without artificial plastic sense. The oil-free surface ensures stable color rendering, no darkening or mottling after long-term light exposure. Excellent dynamic fatigue resistance ensures stable dry-touch texture without peeling or cracking during frequent facial and joint movement.
Adopting medical-grade high-purity platinum eco-friendly system, the silicone is non-toxic, odorless and non-allergenic, with excellent biocompatibility, safe for long-term human skin contact and high-standard public interactive scenarios. Compatible with pouring and brushing molding processes, it produces high-yield flawless finished products with stable batch consistency, supporting mass production of high-end robots and customized production of clean simulation exhibits.
This low-bleed dry-clean silicone is widely applied in high-end exhibition humanoid robot interactive areas, museum clean simulation models, medical teaching mannequins and wearable bionic props requiring hygienic and dry-touch performance.
Hong Ye Jie Technology continues to iterate scenario-based differentiated bionic silicone formulas covering anti-aging, high resilience, matte texture, ultra-soft expression and low-bleed dry-touch types, fully meeting high-end market material selection needs. We provide free sample testing, personalized customization and full-process technical support, helping global customers upgrade robot interactive experience and long-term display quality.