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  • poraver® expanded glass is available in five standard and four special grain sizes. With this wide variety of grain sizes from .04mm to 2.5mm, Poraver® expanded glass offers a suitable lightweight aggregate for every field of application.
  • Poraver® expanded glass is available in five standard and four special grain sizes. With this wide variety of grain sizes from .04mm to 2.5mm, Poraver® expanded glass offers a suitable lightweight aggregate for every field of application.
  • Poraver® expanded glass is available in five standard and four special grain sizes. With this wide variety of grain sizes from .04mm to 2.5mm, Poraver® expanded glass offers a suitable lightweight aggregate for every field of application.  
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.  
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.  
  • Ravecarb are polycarbonate diols (PCD), which are aliphatic polycarbonate with molecular weight around 500-3000, and two terminal OH groups. PCD are increasingly well known and used intermediates for high performance PU systems in sectors like synthetic leathers, various coatings and resins for flooring or wooden surfaces, paints, elastomers, adhesives, sealants, liquid inks for printers, etc. In all those sectors PCD are undisputedly considered as the ultimate solution in terms of quality improvement for mechanical resistance, chemical resistance, elongation property, UV resistance, anti-scratch and anti-stain properties.
  • Fumed silica rheology additive, treated Applications
    • Synthetic rubbers and Silicone rubbers: Reinforcing effect , Electrical insulation
    • Sealants: Thickening and thixotropy, Reinforcement, improved adhesion
    • Unsaturated polyester resins: Thickening and thixotropy
    • Paints / Coatings: Thickening and thixotropy, Storage stability (resistance to settlement)
    • Adhesives: Thickening and thixotropy, improved adhesion Storage stability (resistance to settlement)
    • Paper: Adsorbent, Transparency
    • Bulk materials: Anti-caking, free flow aids , Adsorbent, Anti-blocking effect, moisture resistance
    • CMP: Polishing agent
    • Toners: Improved flow properties, electric charge control, Improved toner transfer to paper
    Characteristics Thickening and thixotropy: REOLOSIL provides thickening and thixotropic effects in liquid systems such as polyesters, epoxies, and urethane resins due to interactions between aggregates and the development of three-dimensional networks between REOLOSIL particles. Reinforcement: Adding REOLOSIL as a filler material improves various mechanical properties of elastomers, including modulus, elongation at break, tensile strength and tear resistance. REOLOSIL's large specific surface area also makes it possible to achieve excellent transparency in elastomers. Anti-settling effects: REOLOSIL improves the suspension behavior in liquid systems, such as pigmented coatings or resins containing filters. Anti-caking, effects for Improved flow characteristics: Due to a property that makes it behave like bait bearings, REOLOSIL resists lumping and clogging. It can be used to improve the storage stability of powders that are especially prone to caking. REOLOSIL can also be used to improve flow characteristics and prevent flow problems. Insulation: With its very low solid state conductivity and vast spacing between particles, REOLOSIL provides excellent electrical and thermal insulation properties. Electrical charge: Hydrophobic REOLOSIL is used as a toner additive to stabilize electrical charge characteristics. TOKUYAMA can provide hydrophobic REOLOSIL grades manufactured to custom specifications. Polishing: In the semiconductor manufacturing process, the planarizalion of silicon wafers is achieved via CMP (chemical mechanical polishing) processes such as ILD, STI and metal CMP. REOLOSIL is used in certain CMP slurries as a polishing agent, due to high purity, sub-micron particle size and its distribution characteristics.      
  • D 50        11 microns surface area   250 m2/g pH        7.0
  • Fumed silica matting agent Low gloss, good clarity    
  • Fumed silica, treated, rheology additive Applications
    • Synthetic rubbers and Silicone rubbers: Reinforcing effect , Electrical insulation
    • Sealants: Thickening and thixotropy, Reinforcement, improved adhesion
    • Unsaturated polyester resins: Thickening and thixotropy
    • Paints / Coatings: Thickening and thixotropy, Storage stability (resistance to settlement)
    • Adhesives: Thickening and thixotropy, improved adhesion Storage stability (resistance to settlement)
    • Paper: Adsorbent, Transparency
    • Bulk materials: Anti-caking, free flow aids , Adsorbent, Anti-blocking effect, moisture resistance
    • CMP: Polishing agent
    • Toners: Improved flow properties, electric charge control, Improved toner transfer to paper
    Characteristics Thickening and thixotropy: REOLOSIL provides thickening and thixotropic effects in liquid systems such as polyesters, epoxies, and urethane resins due to interactions between aggregates and the development of three-dimensional networks between REOLOSIL particles. Reinforcement: Adding REOLOSIL as a filler material improves various mechanical properties of elastomers, including modulus, elongation at break, tensile strength and tear resistance. REOLOSIL's large specific surface area also makes it possible to achieve excellent transparency in elastomers. Anti-settling effects: REOLOSIL improves the suspension behavior in liquid systems, such as pigmented coatings or resins containing filters. Anti-caking, effects for Improved flow characteristics: Due to a property that makes it behave like bait bearings, REOLOSIL resists lumping and clogging. It can be used to improve the storage stability of powders that are especially prone to caking. REOLOSIL can also be used to improve flow characteristics and prevent flow problems. Insulation: With its very low solid state conductivity and vast spacing between particles, REOLOSIL provides excellent electrical and thermal insulation properties. Electrical charge: Hydrophobic REOLOSIL is used as a toner additive to stabilize electrical charge characteristics. TOKUYAMA can provide hydrophobic REOLOSIL grades manufactured to custom specifications. Polishing: In the semiconductor manufacturing process, the planarizalion of silicon wafers is achieved via CMP (chemical mechanical polishing) processes such as ILD, STI and metal CMP. REOLOSIL is used in certain CMP slurries as a polishing agent, due to high purity, sub-micron particle size and its distribution characteristics.    
  • Fumed silica rheology additive Applications
    • Synthetic rubbers and Silicone rubbers: Reinforcing effect , Electrical insulation
    • Sealants: Thickening and thixotropy, Reinforcement, improved adhesion
    • Unsaturated polyester resins: Thickening and thixotropy
    • Paints / Coatings: Thickening and thixotropy, Storage stability (resistance to settlement)
    • Adhesives: Thickening and thixotropy, improved adhesion Storage stability (resistance to settlement)
    • Paper: Adsorbent, Transparency
    • Bulk materials: Anti-caking, free flow aids , Adsorbent, Anti-blocking effect, moisture resistance
    • CMP: Polishing agent
    • Toners: Improved flow properties, electric charge control, Improved toner transfer to paper
    Characteristics Thickening and thixotropy: REOLOSIL provides thickening and thixotropic effects in liquid systems such as polyesters, epoxies, and urethane resins due to interactions between aggregates and the development of three-dimensional networks between REOLOSIL particles. Reinforcement: Adding REOLOSIL as a filler material improves various mechanical properties of elastomers, including modulus, elongation at break, tensile strength and tear resistance. REOLOSIL's large specific surface area also makes it possible to achieve excellent transparency in elastomers. Anti-settling effects: REOLOSIL improves the suspension behavior in liquid systems, such as pigmented coatings or resins containing filters. Anti-caking, effects for Improved flow characteristics: Due to a property that makes it behave like bait bearings, REOLOSIL resists lumping and clogging. It can be used to improve the storage stability of powders that are especially prone to caking. REOLOSIL can also be used to improve flow characteristics and prevent flow problems. Insulation: With its very low solid state conductivity and vast spacing between particles, REOLOSIL provides excellent electrical and thermal insulation properties. Electrical charge: Hydrophobic REOLOSIL is used as a toner additive to stabilize electrical charge characteristics. TOKUYAMA can provide hydrophobic REOLOSIL grades manufactured to custom specifications. Polishing: In the semiconductor manufacturing process, the planarizalion of silicon wafers is achieved via CMP (chemical mechanical polishing) processes such as ILD, STI and metal CMP. REOLOSIL is used in certain CMP slurries as a polishing agent, due to high purity, sub-micron particle size and its distribution characteristics.    
  • Fumed silica, untreated Applications
    • Synthetic rubbers and Silicone rubbers: Reinforcing effect , Electrical insulation
    • Sealants: Thickening and thixotropy, Reinforcement, improved adhesion
    • Unsaturated polyester resins: Thickening and thixotropy
    • Paints / Coatings: Thickening and thixotropy, Storage stability (resistance to settlement)
    • Adhesives: Thickening and thixotropy, improved adhesion Storage stability (resistance to settlement)
    • Paper: Adsorbent, Transparency
    • Bulk materials: Anti-caking, free flow aids , Adsorbent, Anti-blocking effect, moisture resistance
    • CMP: Polishing agent
    • Toners: Improved flow properties, electric charge control, Improved toner transfer to paper
    Characteristics Thickening and thixotropy: REOLOSIL provides thickening and thixotropic effects in liquid systems such as polyesters, epoxies, and urethane resins due to interactions between aggregates and the development of three-dimensional networks between REOLOSIL particles. Reinforcement: Adding REOLOSIL as a filler material improves various mechanical properties of elastomers, including modulus, elongation at break, tensile strength and tear resistance. REOLOSIL's large specific surface area also makes it possible to achieve excellent transparency in elastomers. Anti-settling effects: REOLOSIL improves the suspension behavior in liquid systems, such as pigmented coatings or resins containing filters. Anti-caking, effects for Improved flow characteristics: Due to a property that makes it behave like bait bearings, REOLOSIL resists lumping and clogging. It can be used to improve the storage stability of powders that are especially prone to caking. REOLOSIL can also be used to improve flow characteristics and prevent flow problems. Insulation: With its very low solid state conductivity and vast spacing between particles, REOLOSIL provides excellent electrical and thermal insulation properties. Electrical charge: Hydrophobic REOLOSIL is used as a toner additive to stabilize electrical charge characteristics. TOKUYAMA can provide hydrophobic REOLOSIL grades manufactured to custom specifications. Polishing: In the semiconductor manufacturing process, the planarizalion of silicon wafers is achieved via CMP (chemical mechanical polishing) processes such as ILD, STI and metal CMP. REOLOSIL is used in certain CMP slurries as a polishing agent, due to high purity, sub-micron particle size and its distribution characteristics.    
  • Fumed silica untreated Applications
    • Synthetic rubbers and Silicone rubbers: Reinforcing effect , Electrical insulation
    • Sealants: Thickening and thixotropy, Reinforcement, improved adhesion
    • Unsaturated polyester resins: Thickening and thixotropy
    • Paints / Coatings: Thickening and thixotropy, Storage stability (resistance to settlement)
    • Adhesives: Thickening and thixotropy, improved adhesion Storage stability (resistance to settlement)
    • Paper: Adsorbent, Transparency
    • Bulk materials: Anti-caking, free flow aids , Adsorbent, Anti-blocking effect, moisture resistance
    • CMP: Polishing agent
    • Toners: Improved flow properties, electric charge control, Improved toner transfer to paper
    Characteristics Thickening and thixotropy: REOLOSIL provides thickening and thixotropic effects in liquid systems such as polyesters, epoxies, and urethane resins due to interactions between aggregates and the development of three-dimensional networks between REOLOSIL particles. Reinforcement: Adding REOLOSIL as a filler material improves various mechanical properties of elastomers, including modulus, elongation at break, tensile strength and tear resistance. REOLOSIL's large specific surface area also makes it possible to achieve excellent transparency in elastomers. Anti-settling effects: REOLOSIL improves the suspension behavior in liquid systems, such as pigmented coatings or resins containing filters. Anti-caking, effects for Improved flow characteristics: Due to a property that makes it behave like bait bearings, REOLOSIL resists lumping and clogging. It can be used to improve the storage stability of powders that are especially prone to caking. REOLOSIL can also be used to improve flow characteristics and prevent flow problems. Insulation: With its very low solid state conductivity and vast spacing between particles, REOLOSIL provides excellent electrical and thermal insulation properties. Electrical charge: Hydrophobic REOLOSIL is used as a toner additive to stabilize electrical charge characteristics. TOKUYAMA can provide hydrophobic REOLOSIL grades manufactured to custom specifications. Polishing: In the semiconductor manufacturing process, the planarizalion of silicon wafers is achieved via CMP (chemical mechanical polishing) processes such as ILD, STI and metal CMP. REOLOSIL is used in certain CMP slurries as a polishing agent, due to high purity, sub-micron particle size and its distribution characteristics.    
  • Fumed silica matting agent Applications
    • Synthetic rubbers and Silicone rubbers: Reinforcing effect , Electrical insulation
    • Sealants: Thickening and thixotropy, Reinforcement, improved adhesion
    • Unsaturated polyester resins: Thickening and thixotropy
    • Paints / Coatings: Thickening and thixotropy, Storage stability (resistance to settlement)
    • Adhesives: Thickening and thixotropy, improved adhesion Storage stability (resistance to settlement)
    • Paper: Adsorbent, Transparency
    • Bulk materials: Anti-caking, free flow aids , Adsorbent, Anti-blocking effect, moisture resistance
    • CMP: Polishing agent
    • Toners: Improved flow properties, electric charge control, Improved toner transfer to paper
    Characteristics Thickening and thixotropy: REOLOSIL provides thickening and thixotropic effects in liquid systems such as polyesters, epoxies, and urethane resins due to interactions between aggregates and the development of three-dimensional networks between REOLOSIL particles. Reinforcement: Adding REOLOSIL as a filler material improves various mechanical properties of elastomers, including modulus, elongation at break, tensile strength and tear resistance. REOLOSIL's large specific surface area also makes it possible to achieve excellent transparency in elastomers. Anti-settling effects: REOLOSIL improves the suspension behavior in liquid systems, such as pigmented coatings or resins containing filters. Anti-caking, effects for Improved flow characteristics: Due to a property that makes it behave like bait bearings, REOLOSIL resists lumping and clogging. It can be used to improve the storage stability of powders that are especially prone to caking. REOLOSIL can also be used to improve flow characteristics and prevent flow problems. Insulation: With its very low solid state conductivity and vast spacing between particles, REOLOSIL provides excellent electrical and thermal insulation properties. Electrical charge: Hydrophobic REOLOSIL is used as a toner additive to stabilize electrical charge characteristics. TOKUYAMA can provide hydrophobic REOLOSIL grades manufactured to custom specifications. Polishing: In the semiconductor manufacturing process, the planarizalion of silicon wafers is achieved via CMP (chemical mechanical polishing) processes such as ILD, STI and metal CMP. REOLOSIL is used in certain CMP slurries as a polishing agent, due to high purity, sub-micron particle size and its distribution characteristics.    
  • Used as a sole curing agent or as a DICY and anhydride cure accelerator in epoxy resin based formulations. Loading levels as sole curing agent: 3-5 phr Loading levels as accelerator: .5-1.5 phr Used in 1k adhesives, composites, electrical potting and powder coatings.
  • ROFOB PY K 2R, it’s brand new universal water repellent agent specifically designed to be a fluorine and silicone free fabric treatment polymer for textile formulations. Applications in cotton, synthetic and blended materials water repellent finishing. Camping materials and cotton tarpaulins -included its blends with synthetic fiber- water column resistant finish. ROFOB PY K-2R may be added to bath together with any usual synthetic resins of high quality finishing, as well as based on polyvinyl alcohol (PVA) handle modifiers. In the same way, it may be combined with fungicides, respecting the ionicity.   Properties:
    • Excellent water repellent effect.
    • Not oil repellency.
    • Excellent durability.
    • Fluorinate free.
    • High water column resistance.
    • Excellent application properties.
    • Smooth and soft handle.
    • No color brightness loose.
  • Product short description goes here.
  • INCI name: polyquaternium-22 Acrylamide free, amphoteric conditioner.  Anti stat and conditioning for hair and skin care applications. This range of products is parabens and preservative free.  
  • PVdC emulsion High Barrier/Heat Seal Coating
  • PVdC emulsion for use in metal coatings and fire retardant coatings.
  • PVdC emulsion Metal Primer & Fire Retardant Coating
  • A DADMAC quaternary ammonium chloride which can form linear homopolymers and copolymers through different reactions.  At room temp, DADMAC is stable, does not hydrolyze and is not flammable.  It exhibits low toxicity and is not reactive with skin.  This product does not contain sodium chloride. DADMAC is diallyl dimethyl ammonium chloride with a CAS # 7398-69-8  
  • Amorphous TiO2 extender based on synthetic aluminum sodium silicate.  25% reduction of TiO2 possible at .65/lb to .75/lb cost.  High whiteness and no crystalline silica.  High oil absorption and 1.45 refractive index.
  • TDU 200M is an aromatic substituted urea based on accelerator [1,1-(4 methyl-m-phenylen, bis(3,3 dimethyl urea)].  Used as an accelerator for DICY to produce shelf stable on part systems.  Perfect for adhesives, powder coatings, prepegs, films and reinforced composites. Long pot life Fast cure and strength development High Tg CAS #17526-94-2
  • Styrene-acrylic emulsion for use in ceramic tile adhesives,concrete sealers and other coatings.
  • A styrene-acrylic emulsion designed for use in high performance roof coating compounds and in a wide range of water-based paints and coatings.
  • Styrene-acrylic copolymer emulsion. Outstanding water-resistance with excellent adhesion strength for difficult substrates.
  • Binder for use in flexible elastomeric roof coatings and stucco. % Solids 52.5 Viscosity 400 - 2000 pH 7.5 - 8.5 Polymer Type Styrene / Acrylic Surfactant Anionic
  • Binder for use in flexible elastomeric roof coatings and stucco. % Solids 52.5 Viscosity 400 - 2000 pH 7.5 - 8.5 Polymer Type Styrene / Acrylic Surfactant Anionic