By leveraging varied spring properties, zoned support is achieved to optimize performance. Hard and soft spring combinations conform to body contours, minimizing movement disturbances. This hybrid system effectively absorbs multi-frequency vibrations, enhancing shock absorption efficiency.
Engineered with specialized materials/processes, this product withstands intense compression, far surpassing standard bagged springs, making it ideal for high-load, confined spaces. Its rapid rebound and deformation stability ensure long-term durability, minimizing fatigue/fracture risks.
Each spring is independently encased in non-woven fabric, fiber cloth, or plastic film. The isolated pouch structure enables springs to adjust individually to pressure, adapting to varied weights, body types, and sleeping postures for dynamic body contouring. This configuration reduces inter-spring friction/noise and limits vibration transfer.
A steel wire mesh framework resists spring breakage/collapse during prolonged use. Mature automated production cuts costs by 30-50% vs. individually packaged springs, catering to budget-focused markets.
By leveraging varied spring properties, zoned support is achieved to optimize performance. Hard and soft spring combinations conform to body contours, minimizing movement disturbances. This hybrid system effectively absorbs multi-frequency vibrations, enhancing shock absorption efficiency.
Engineered with specialized materials/processes, this product withstands intense compression, far surpassing standard bagged springs, making it ideal for high-load, confined spaces. Its rapid rebound and deformation stability ensure long-term durability, minimizing fatigue/fracture risks.
Each spring is independently encased in non-woven fabric, fiber cloth, or plastic film. The isolated pouch structure enables springs to adjust individually to pressure, adapting to varied weights, body types, and sleeping postures for dynamic body contouring. This configuration reduces inter-spring friction/noise and limits vibration transfer.
A steel wire mesh framework resists spring breakage/collapse during prolonged use. Mature automated production cuts costs by 30-50% vs. individually packaged springs, catering to budget-focused markets.