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Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent

    Buy cheap Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent from wholesalers
     
    Buy cheap Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent from wholesalers
    • Buy cheap Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent from wholesalers

    Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent

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    Brand Name : HONINGLITE
    Model Number : F6700
    Price : Negotiation
    Payment Terms : T/T, L/C, D/P
    Supply Ability : 5000TONS PRT MONTH
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    Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent

    Phenol Formaldehyde Resin Powder Short Curing Cycle for Friction Materials

    Product Description


    Phenol Formaldehyde Resin F6700 is produced by condensing a molar excess of phenol to formaldehyde in the presence of an acid catalyst. This produces a thermoplastic resin. To cure this resin, a hardening agent is used, HMTA (or hexa). Under heat and pressure, it yields ammonia and formaldehyde as methylene groups to cure the resin, hence the term “two-step,” because of the two formaldehyde additions. A novolak phenolic resin has an infinite shelf life under normal storage conditions.Cured phenolic resin provides the rigidity necessary to maintain structural integrity and dimensional stability even under severe conditions.


    Characteristics


    1. Bonding Strength


    The primary use of phenolic resin is as a bonding agent. Phenolic resin effortlessly penetrates and adheres to the structure of many organic and inorganic fillers and reinforcements, which makes it an ideal candidate forvarious end uses.


    2. High Temperature Performance


    A key characteristic of thermoset phenolic resin is its ability to withstand high temperature under mechanical

    load with minimal deformation or creep. In other words, cured phenolic resin provides the rigidity necessary to maintain structural integrity and dimensional stability even under severe conditions.


    3. Chemical Resistance


    Phenolic resins accommodate the harsh exposure of severe chemical environments. The inherent nature of

    phenolic resin provides an impervious shield to protect a variety of substrates from the corrosive effects of

    chemicals. Laboratory tests confirm minimal degradation from many chemicals after prolonged exposure,

    often at elevated temperatures.


    4. Low Smoke and Toxicity


    Burning phenolic resin typically generates hydrogen, hydrocarbons, water vapor, and carbon dioxide. Phenolic resin produces a relatively low amount of smoke at a relatively low level of toxicity.


    5 . High Carbon and Char Yield


    Phenolic resins demonstrate higher char yields than other plastic materials when exposed to temperatures

    above their point of decomposition. In an inert atmosphere at high temperatures (600° - 2,000°F, 300 -

    1,000°C), phenolic resin will convert to a structural carbon known as vitreous carbon. In many ways, this

    material behaves similar to ceramic and may actually contribute to structural integrity when exposed to fire

    situations.


    Application


    Phenol Formaldehyde Resin F6700 is recommended for Friction Materials.

    The use of Phenol Formaldehyde Resin as binder for friction materials provided the necessary
    thermal resistance and performance characteristics


    ● Low free phenol
    ● Improved toughness
    ● Improved heat resistance
    ● Reduced noise and judder


    Specification:


    PropertiesValueTest standard
    Flow@125°C10-30mmGB/T24411-2009
    Curing time @150°C30-70sGB/T24411-2009
    Free-phenol2.5%maxGB/T30773-2014

    Packing&Storage


    the package is paper-plastics bag in 25KGS each one
    The storage life of this product is several months in a cool and dry place in original closed bags


    Modified Synthetic Phenol Formaldehyde Resin Chemical Resistance For Bonding Agent


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