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FH-604610 is a bio-based capped polyether polyol developed by HUG CHEM, a China-based manufacturer specializing in sustainable polyurethane (PU) raw materials. This triol is formulated primarily for the production of flexible molded furniture foams and semi-rigid foams, integrating bio-based components to align with growing industry demands for reduced fossil resource reliance. Its design focuses on balanced performance, combining controlled reactivity with practical processing benefits, making it a viable option for manufacturers seeking both functionality and sustainability in foam production.
A key attribute of FH-604610 is its controlled reactivity, which supports consistent core curing in foam products. This characteristic contributes to the formation of foams with high open cell content—a feature that often eliminates the need for additional cell-opening agents in formulations, simplifying production processes. The polyol also offers favorable processability, with properties that support smooth mixing and predictable curing cycles, helping to ensure well-formed, uniformly cured end products. These features make it suitable for both small-scale and large-scale foam manufacturing operations.
Property | Value |
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Hydroxyl number, mg KOH/g | 33-37 |
Water max. % | 0.06 |
Acid number, max. mg KOH/g | 0.006 |
APHA color, max. | 30 |
Viscosity, cSt, 25°C Viscosity, cSt, 38°C | 770-890 360 |
Specific Gravity, 25°C | 1.023 |
Flexible foam: Used in the production of furniture cushions, mattress layers, and upholstery, where its open cell structure supports breathability and comfort.
Rigid foam: Applied in insulation panels, packaging materials, and structural components, leveraging its curing properties to maintain shape and integrity under varying conditions.
Its formulation adapts to different production requirements, making it a flexible choice for manufacturers working across multiple foam categories.
Packaging options include 200kg non-returnable steel drums and 1000kg IBC tanks made from HWHDPE, catering to varying production scales.