Patent classifications
C08G18/307
Triply curable optically clear adhesive
The present invention provides an adhesive composition, which can be cured through three ways: UV-radiation curing, thermal-radiation curing and moisture-curing. The adhesive composition comprises a) an oligomer having an isocyanate group and a (meth)acryloxy group; b) a (meth)acrylic monomer and/or oligomer not having an isocyanate group; c) a photoinitiator; and d) a peroxide.
CURABLE COMPOSITION OF LOW DENSITY
A moisture-curing composition including a) at least one moisture-reactive polymer P with a proportion of 10% to 60% by weight, based on overall composition, b) at least one inorganic filler F with a proportion of at least 9% by weight, based on overall composition, c) between 3% and 25% by weight, based on overall composition, of at least one type of microscopic hollow beads H, wherein composition has density of less than 1.20 kg/l, and microscopic hollow beads H have compressive strength, measured to ASTM D3102-72, of at least 2.5 MPa, and microscopic hollow beads H have a volume-based particle size D90, measured by Coulter counter, of less than 100 μm.
SECONDARY BATTERY AND METHOD FOR MANUFACTURING THE SAME
The embodiment of the present application relates to the field of Li-ion battery and, in particular, to a secondary battery. The secondary battery includes a cell, a safety component fixed on the cell and thermal conductive adhesive provided between the cell and the safety component, the thermal conductive adhesive contains at least one of hot melt adhesive, silica gel binder or epoxy resin binder, and thermal conductive filling material. The thermal conductive adhesive in the secondary battery performs good thermal conductivity and adhering property, which can stably adhere the safety component with the cell, meanwhile transferring, via the thermal conductive adhesive, heat of the cell to the safety component rapidly, so that the safety component cuts off the circuit to protect the cell during overcharge, thereby avoid situations that the thermal conductive adhesive is separated from the cell due to cell inflation and deformation.
SECONDARY BATTERY AND METHOD FOR MANUFACTURING THE SAME
The embodiment of the present application relates to the field of Li-ion battery and, in particular, to a secondary battery. The secondary battery includes a cell, a safety component fixed on the cell and thermal conductive adhesive provided between the cell and the safety component, the thermal conductive adhesive contains at least one of hot melt adhesive, silica gel binder or epoxy resin binder, and thermal conductive filling material. The thermal conductive adhesive in the secondary battery performs good thermal conductivity and adhering property, which can stably adhere the safety component with the cell, meanwhile transferring, via the thermal conductive adhesive, heat of the cell to the safety component rapidly, so that the safety component cuts off the circuit to protect the cell during overcharge, thereby avoid situations that the thermal conductive adhesive is separated from the cell due to cell inflation and deformation.
STORAGE-STABLE, MOISTURE-CURING POLYURETHANE ADHESIVE WITH RAPID ADHESIVE FORMATION ON GLASS
A moisture-curing adhesive composition has a) at least one polyurethane polymer having isocyanate groups, b) at least a silane adhesion promoter, c) at least one amine catalyst, and d) at least one chelate complexing agent. Compositions are suitable especially as adhesive or sealant, in particular for glass panes, for example in vehicle construction or vehicle repair, wherein the use of a primer or activator can be dispensed with.
One component isocyanate prepolymer mixture for polyurethane product formulation in a single step process
A one component isocyanate prepolymer mixture for formulating a polyurethane product in a single step process, with monomeric methylene diphenyl diisocyanate (MDI) content in the mixture not exceeding 3%, preferably less than 2%, more preferably less than 1% of the total weight. The mixture contains monofunctional alcohol, an isocyanate component or isocyanate mixture component, propellant, catalyst, stabiliser, and one or more polyols. The monofunctional alcohol constitutes ethylene glycol ethers or propylene glycol ethers. A method for formulating a one component polyurethane foam on the basis of the mixture is disclosed.
One component isocyanate prepolymer mixture for polyurethane product formulation in a single step process
A one component isocyanate prepolymer mixture for formulating a polyurethane product in a single step process, with monomeric methylene diphenyl diisocyanate (MDI) content in the mixture not exceeding 3%, preferably less than 2%, more preferably less than 1% of the total weight. The mixture contains monofunctional alcohol, an isocyanate component or isocyanate mixture component, propellant, catalyst, stabiliser, and one or more polyols. The monofunctional alcohol constitutes ethylene glycol ethers or propylene glycol ethers. A method for formulating a one component polyurethane foam on the basis of the mixture is disclosed.
Two-Component Polyurethane Hot-Melt Adhesive With High Initial And Final Strength
A two-pack polyurethane adhesive for semi-structural and structural adhesive bonds which are applied in melt form and have a high handling strength wherein the two-pack polyurethane adhesive includes a first pack A containing at least one polyester A1 which is solid at room temperature and at least one polyol A2 having a hydroxyl group functionality greater than 2.0, and a second pack B containing polyurethane prepolymers having isocyanate groups.
Two-Component Polyurethane Hot-Melt Adhesive With High Initial And Final Strength
A two-pack polyurethane adhesive for semi-structural and structural adhesive bonds which are applied in melt form and have a high handling strength wherein the two-pack polyurethane adhesive includes a first pack A containing at least one polyester A1 which is solid at room temperature and at least one polyol A2 having a hydroxyl group functionality greater than 2.0, and a second pack B containing polyurethane prepolymers having isocyanate groups.
POROUS LAYER STRUCTURE AND METHOD FOR PRODUCING SAME
Provided is a porous layer structure including a base material (A) and a urethane foam layer provided on the base material (A), wherein the urethane foam layer is a foam layer formed by foaming a urethane prepolymer having an isocyanate group, the urethane foam layer has a density of 0.10 to 0.60 g/cm.sup.3, and the urethane prepolymer substantially contains no volatile component and satisfies a predetermined composition.