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BMI

Coating ingredients supplied by Designer Molecules

8 Products match your search

BMI -1700

by Designer Molecules

Amorphous, low molecular weight, imide-extended bismaleimide oligomer. Exhibits excellent low pH hydrolytic resistance and thermal stability. It can be homo-cured via UV or free radical initiators to form tough, hydrophobic, cross-linked polyimides. Forms room-temperature-stable solutions in a variety of free radical reactive diluents. It is soluble in many common solvents such as toluene, xylene, NMP, etc. Listed in TSCA.
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BMI -3000 GEL

by Designer Molecules

Amorphous, low molecular weight, imide-extended bismaleimide oligomer. Exhibits excellent flexibility, excellent hydrolytic stability, excellent adhesion to a variety of substrates and thermal stability. It is hydrophobic in nature and is used as a toughener. It is soluble in most aromatic and aliphatic solvents such as toluene, NMP, etc. It is compatible with and can be incorporated directly into many resin systems for enhanced performance. When used as a base resin, it can produce films that are tough, flexible and demonstrate good peel strength.

BMI -3000

by Designer Molecules

BMI -3000 by Designer Molecules is an amorphous, low molecular weight, imide-extended bismaleimide oligomer. It is used as a toughener. Exhibits excellent low pH hydrolytic resistance, excellent flexibility and thermal stability. It is soluble in most aromatic and aliphatic solvents such as toluene, xylene, NMP. BMI -3000 can be processed in a resin system as a solid or dissolved in a solvent.

BMI -3000 (50% Toluene)

by Designer Molecules

Amorphous, low molecular weight, imide-extended bismaleimide oligomer. It is used as a toughener. Exhibits excellent low pH hydrolytic resistance, excellent flexibility and thermal stability. It is soluble in most aromatic and aliphatic solvents such as toluene and NMP and forms very tough, hydrophobic polyimides on curing. When used as a base resin, it can produce films that are tough, flexible and demonstrate good peel strength.

BMI -1500

by Designer Molecules

Amorphous, low molecular weight, imide-extended bismaleimide oligomer. It can be homo-cured via UV or free radical initiators to form tough, hydrophobic, cross-linked polyimides. Exhibits excellent low pH hydrolytic resistance and thermal stability. The amorphous nature of this imide-extended BMI allows it to form room-temperature-stable solutions in a variety of free radical reactive diluents. It is soluble in many common solvents such as toluene, xylene, MIBK, etc.

BMI -5000

by Designer Molecules

Imide-extended bismaleimide oligomer. Exhibits excellent toughness in the cured state with an intermediate cross-link density. It is non-tacky, and can be cured thermally, via UV irradiation, or in the presence of free-radical initiators to form a tough thermoset. It is soluble in aromatic and aliphatic solvents such as toluene, nmp, etc. and can be processed in a resin system as a solid or dissolved in a solvent. When used as a base resin, it can produce films that are tough, flexible and demonstrate good peel strength.

BMI -5000 (50% in Toluene)

by Designer Molecules

Imide-Extended Bismaleimide Oligomer (50% Toluene). Exhibits excellent toughness in the cured state with an intermediate cross-link density. It can be cured thermally, via UV irradiation, or in the presence of free-radical initiators to form a tough thermoset. It is an amber, waxy solid at room temperature and can be cast as a hot melt or from solution to form pliable, non-tacky films. Can also be supplied as a solid slab, powdered solid or in alternative solvents. When used as a base resin, it can produce films that are tough, flexible and demonstrate good peel strength.

BMI -4500

by Designer Molecules

Medium molecular weight, maleimide terminated polyamide-imide oligomer. Exhibits low melting point, good film properties, good thermal stability and good adhesion to a variety of substrates. It is hydrophobic in nature and is easily soluble in aromatic solvents such as toluene, ether solvents such as THF and cyclic ketones such as cyclopentanone or cyclohexanone. Highly compatible with a variety of acrylate or methacrylate diluents. When used as a base resin, it can produce films that are tough, flexible and demonstrate good peel strength.
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