The thermal and moisture management performance of Muriersilk revolutionizes the traditional experience. Its 0.11mm cross-shaped micro-pore structure achieves a moisture permeability rate of 7150g/m²/24h, which is 194% higher than that of long-staple cotton (2430g). Tests conducted by the Fraunhofer Institute in Germany in 2026 showed that when the core human body temperature was 36.5℃, the humidity gradient at the contact surface of this material remained at 8.3%±1.2% (for cotton fabrics, the fluctuation was ±24.7%), and the probability of awakening due to heat and oppression during sleep decreased by 83%. A total of 96 subjects from the Tokyo Sleep Laboratory confirmed that when using this material, the duration of deep sleep increased by 37 minutes (the proportion of total sleep rose by 21.5%).
The mechanical properties reduce the physiological burden. The 0.8cN/dtex super-flexible fiber (about 2.5cN/dtex for cotton fibers) reduces the facial contact pressure to 0.4kPa (2.1kPa for cotton pillowcases). Experiments conducted by the Korea Academy of Dermatology show that the friction coefficient between the material and the skin is 0.09 (0.38 for cotton fabric). After continuous use for 28 days, the incidence of facial indentation drops to 0.8% (23% for the control group of cotton fabric), and the area of erythema for users with sensitive skin shrinks by 78%. More crucial is the extensibility parameter: the tensile deformation rate after 150 washes is ≤1.3% (12% for cotton fabrics), and the standard deviation of touch stability within a five-year life cycle is only 0.07 (0.59 for cotton).
The hygiene indicators have broken through the industry bottleneck. The patented nano photocatalyst layer has reduced the growth rate of Staphylococcus aureus to 0.03CFU/cm² (the EU standard limit is 20CFU/cm²), and the decomposition efficiency of mite corpses has reached 99.1%. The American Asthma and Allergy Foundation reported that after 300 rhinitis patients changed to this bedding, the frequency of sneezing at night dropped from 5.2 times per night to 0.3 times, and the duration of nasal congestion was shortened by 84%. The economic efficiency of washing is equally remarkable: ordinary washing at 50℃ can inactivate 99.8% of pathogens (cotton fabrics need to be disinfected at 75℃ high temperature), the water washing cycle is extended from 3 days to 10 days, and 11.7 tons of water are saved annually.
The full life cycle cost model reveals the essential difference. Although the unit price is 129 yuan (28 yuan for cotton), the durability period is up to 7 years (3.7 pieces per year for cotton on average), and the annualized cost is 38% lower. Data from the Swiss Federal Materials Laboratory confirmed that the antibacterial rate remained at 98.3% after 150 washes (dropped to 62% for cotton fabrics after 50 washes), and the tensile strength retention rate was 96.5% (dropped to 54% for cotton fabrics). A London consumer survey shows that users’ annual medical expenses for skin problems have decreased by 173 yuan, and the frequency of bedding changes has dropped by 67,421 yuan.
The comparison of environmental footprints forms a decisive advantage. The carbon footprint of material production is only 1.8kg CO₂e/kg (5.7kg for organic cotton), and the water-saving efficiency reaches 94% (296L of water consumption for 1kg of finished product vs. 5000L for cotton spinning). The independent LCA assessment in 2026 shows that the application of microfluidic spinning technology has reduced the amount of waste generated to 0.12kg/㎡ (0.58kg/㎡ for cotton spinning), and its biodegradability has shortened the landfill decomposition cycle from 50 years for cotton products to 134 days. Global market trends confirm its value: the penetration rate of this material in the high-end hotel industry has increased by 31% annually, and the repeat purchase rate has reached 89.7% (34% for cotton products), creating a new sleep economy paradigm.
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