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Monomers for high performance PUR resin manufacturing


  • VESTAGON B 1065

    VESTAGON B 1065 is a polyisocyanate adduct used in combination with hydroxy functional resins. Due to the e-Caprolactam blocked NCO-groups it is stable during processing up to the unblocking temperature of more than 170 °C.

  • VESTAGON B 1400

    VESTAGON B 1400 is a polyisocyanate adduct used in combination with hydroxy functional resins. Due to the e-Caprolactam blocked NCO-groups it is stable during processing up to the unblocking temperature of more than 160 °C.

  • VESTAGON B 1530

    VESTAGON B 1530 is a polyisocyanate adduct used in combination with hydroxy functional resins. Due to the e-Caprolactam blocked NCO-groups it is stable during processing up to the unblocking temperature of more than 170 °C

  • VESTAGON BF 1320

    VESTAGON BF 1320 is a polyisocyanate adduct used in combination with hydroxy functional resins. Because of an internal blocking mechanism, the product retains its processing stability up to the splitting temperature of approximately 160 °C.

  • VESTAGON BF 1321

    VESTAGON BF 1321 is a polyisocyanate adduct used in combination with hydroxy functional resins. Because of an internal blocking mechanism, the product retains its processing stability up to the splitting temperature of approximately 160 °C.

  • VESTAGON BF 1540

    VESTAGON BF 1540 is a polyisocyanate adduct used in combination with hydroxy functional resins. Because of an internal blocking mechanism, the product retains its processing stability up to the splitting temperature of approximately 160 °C.

  • VESTAGON EP-BF 1350

    VESTAGON EP-BF1350 is a polyisocyanate adduct used in combination with hxdroxy functional resins.

  • VESTAGON EP-SC 5050

    VESTAGON EP-SC 5050 is a catalyst that has been patented for use in combination with 1) blocking agent free polyisocyanate adducts and hydroxyl-functional resins for polyurethanes and 2) matting hardeners based on salts of polycarboxylic acid.

  • VESTAMIN A 139

    VESTAMIN A 139 is a liquid, blocked crosslinker for polyisocyanate resins based on a cycloaliphatic diamine. As supplied the product exhibits a very low reactivity towards isocyanate groups.

  • VESTAMIN IPD

    VESTAMIN IPD is a cycloaliphatic diamine, based on isophorone chemistry. It is a mixture of two stereo-isomers of 3-aminomethyl-3,5,5- trimethylcyclohexylamine, and is a colorless low viscosity liquid with a faint amine odor.

  • VESTAMIN PACM

    VESTAMIN PACM is a cycloaliphatic diamine which is manufactured by hydrogenation of methylene dianiline.

  • VESTAMIN TMD

    VESTAMIN TMD is a branched aliphatic diamine. It is a colorless liquid with approximately equal parts of the 2,2,4- and 2,4,4-trimethyl hexamethylene diamine isomers.

  • VESTANAT B 1358 A

    VESTANAT B 1358 A is a blocked, cycloaliphatic polyisocyanate. It is supplied as a 63 % solution in Solvesso 100*.

  • VESTANAT B 1358/100

    VESTANAT B 1358/100 is a solvent-free, blocked polyisocyanate, based on isophorone diisocyanate (VESTANAT IPDI). It is supplied in flakes.

  • VESTANAT B 1370

    VESTANAT B 1370 is a blocked, cycloaliphatic polyisocyanate. It is supplied as a solution of 60 % in n-butyl-acetate/xylene.

  • VESTANAT EP-DS 1076

    VESTANAT EP-DS 1076 is a blocked polyisocyanate dispersed in water without any additional solvent. It is based on the cycloaliphatic VESTANAT IPDI (Isophorone diisocyanate).

  • VESTANAT EP-DS 1205

    VESTANAT EP-DS 1205 is a blocked polyisocyanate based on the cycloaliphatic VESTANAT IPDI (Isophoronediisocyanate) emulsified in water without any auxiliary solvents.

  • VESTANAT EP-HP 2333

    VESTANAT EP-HP 2033 is a solvent free, hydrophilic polyisocyanate based on hexamethylene diisocyanate.

  • VESTANAT EP-M 222

    Solvent based polyfunctional methoxysilane which can be used as a co-crosslinker to increase the flexibility of stoving, highly scratch resistant enamles.

  • VESTANAT EP-M 95

    Silane crosslinker used in combination with suitable acrylic or polyester resins to formulate highly scratch resistant pigmented or clear coatings.

  • VESTANAT EP-MF 201

    Solvent free, and ready catalyzed crosslinker used as sole binder or in combination with appropriate resins for fast ambient temperature curable scratch resistant coatings.

  • VESTANAT EP-MF 202

    Flexibilizer in combination with VESTANAT EP-MF 201

  • VESTANAT H12-MDI

    Aliphatic and cycloaliphatic diisocyanates like VESTANAT H12MDI are less reactive than aromatic diisocyanates. To accelerate the urethane reaction tin catalysts (e.g. DBTDL or DBTDAc) are recommended.

  • VESTANAT HB 2640 LV

    VESTANAT HB 2640 is an aliphatic polyisocyanate and comprises the biuret of hexamethylene diisocyanate (VESTANAT HDI). It provides a functionality of 3 to 4. VESTANAT HB 2640 is available as solvent grades as well as solvent free.

  • VESTANAT HB 2640 MX

    VESTANAT HB 2640 is an aliphatic polyisocyanate and comprises the biuret of hexamethylene diisocyanate (VESTANAT HDI). It provides a functionality of 3 to 4. VESTANAT HB 2640 is available as solvent grades as well as solvent free.

  • VESTANAT HB 2640/100

    VESTANAT HB 2640 is an aliphatic polyisocyanate and comprises the biuret of hexamethylene diisocyanate (VESTANAT HDI). It provides a functionality of 3 to 4. VESTANAT HB 2640 is available as solvent grades as well as solvent free.

  • VESTANAT HT 2500 L

    VESTANAT HT 2500 is an aliphatic polyisocyanate based on hexamethylene diisocyanate (VESTANAT HDI). It contains isocyanurate groups and has a functionality of 3 to 4.

  • VESTANAT HT 2500 LV

    VESTANAT HT 2500 is an aliphatic polyisocyanate based on hexamethylene diisocyanate (VESTANAT HDI). It contains isocyanurate groups and has a functionality of 3 to 4.

  • VESTANAT HT 2500/100

    VESTANAT HT 2500 is an aliphatic polyisocyanate based on hexamethylene diisocyanate (VESTANAT HDI). It contains isocyanurate groups and has a functionality of 3 to 4.

  • VESTANAT IPDI

    VESTANAT IPDI is a cycloaliphatic diisocyanate and as such a prefered raw material for the synthesis of lightstable and weather-resistant polyurethanes. It is a low-viscosity liquid with a weak but specific odour.

  • VESTANAT T 1890 E

    VESTANAT T 1890 is a cycloaliphatic polyisocyanate based on isophorone diisocyanate (VESTANAT IPDI). It contains isocyanurate groups and has a NCO-functionality between 3 and 4.

  • VESTANAT T 1890 L

    VESTANAT T 1890 is a cycloaliphatic polyisocyanate based on isophorone diisocyanate (VESTANAT IPDI). It contains isocyanurate groups and has a NCO-functionality between 3 and 4.

  • VESTANAT T 1890 M

    VESTANAT T 1890 is a cycloaliphatic polyisocyanate based on isophorone diisocyanate (VESTANAT IPDI). It contains isocyanurate groups and has a NCO-functionality between 3 and 4.

  • VESTANAT T 1890/100

    VESTANAT T 1890/100 is a cycloaliphatic polyisocyanate based on isophorone diisocyanate (VESTANAT IPDI). The basic structure is the isocyanurate ring, its NCO-functionality is between 3 and 4. VESTANAT T 1890/100 is a solvent-free material.

  • VESTANAT TMDI

    VESTANAT TMDI is an aliphatic diisocyanate, methyl group branched. It represents a mixture of the 2,2,4- and 2,4,4-trimethyl-hexamethylene diisocyanate (about 1 : 1).

  • VESTASOL DHN

    VESTASOL DHN is a cyclo-aliphatic hydrocarbon with a characteristic odor. It is insoluble in water but miscible with organic solvents.

  • VESTASOL IP

    VESTASOL IP is an unsaturated cyclic ketone of a high degree of purity. It consists essentially of a-Isophorone (3,5,5-Trimethyl-2-cyclohexen-1-one), in which about 1-3 % of the b-isomer (3,5,5-Trimethyl-3-cyclohexen-1-one) are present.

  • VESTASOL THN

    VESTASOL THN is an aromatic-cycloaliphatic hydrocarbon. The naphthalene-like smelling, colorless liquid is insoluble in water and miscible with all common solvents.

  • VESTASOL TMC-on

    VESTASOL TMC-on is a high-boiling solvent which has only limited miscibility with water, but is infinitely miscible with the usual organic solvents in the varnish industry. It is closely related to Isophorone.

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