Patent classifications
B32B15/12
LAMINATE, METHOD FOR STORING LAMINATE, METHOD FOR TRANSPORTING LAMINATE, PROTECTIVE LAMINATE, AND WOUND BODY THEREOF
A laminate having: an electrode for electrolysis, and a membrane laminated on the electrode for electrolysis, wherein when the laminate is wetted with a 3 mol/L NaCl aqueous solution, and under a storage condition at ordinary temperature, an amount of a transition metal component (with the proviso that zirconium is excluded), detected from the membrane after storage for 96 hours, is 100 cps or less; and A protective laminate having: a first electrode for electrolysis, a second electrode for electrolysis, a membrane disposed between the first electrode for electrolysis and the second electrode for electrolysis, and an insulation sheet that protects at least one of the surface of the first electrode for electrolysis and the surface of the second electrode for electrolysis.
Aroma penetration heat seal liner and method of sealing a container
A non-venting one-piece, partially perforated multilayer induction heat seal liner for a container that allows an aroma or scent from a solid substance within the sealed container to permeate through the liner, while preventing leakage and/or physical contact of the substance by the consumer. The liner includes a partial perforation extending completely through a metal foil layer, and leaving an un-perforated thickness in a paper layer. The partial perforation will allow a prospective customer to sniff the scent or aroma released through the partial perforation, while the liner remains secured to the container, extending shelf life of the substance, and preventing leakage, as well as, contamination, damage and/or reduced volume caused by consumers sampling the substance/product within the container.
Aroma penetration heat seal liner and method of sealing a container
A non-venting one-piece, partially perforated multilayer induction heat seal liner for a container that allows an aroma or scent from a solid substance within the sealed container to permeate through the liner, while preventing leakage and/or physical contact of the substance by the consumer. The liner includes a partial perforation extending completely through a metal foil layer, and leaving an un-perforated thickness in a paper layer. The partial perforation will allow a prospective customer to sniff the scent or aroma released through the partial perforation, while the liner remains secured to the container, extending shelf life of the substance, and preventing leakage, as well as, contamination, damage and/or reduced volume caused by consumers sampling the substance/product within the container.
LATENT CATALYST
An adhesive composition including a reaction mixture of: (A) at least one isocyanate-containing compound; (B) at least one polyol compound; and (C) a copolymerized crystalline latent catalyst; a process for making the above adhesive composition; and a laminate structure made using the above adhesive composition.
Sheet material, mold, and methods of making and using the sheet material and mold
A one-piece component comprising a tetrahedral-octahedral honeycomb lattice is disclosed herein, along with a mold, a system and methods of making the component. A one-piece component comprising a truncated tetrahedral-octahedral honeycomb lattice also is disclosed, along with corresponding molds, systems and methods.
Resin composition, and prepreg, resin-coated film, resin-coated metal foil, metal-clad laminate, and wiring board each obtained using said resin composition
A resin composition is provided and includes (A) a modified polyphenylene ether compound terminal-modified with a substituent having a carbon-carbon unsaturated double bond, (B) a maleimide compound containing no phenylmaleimide group and having a hydrocarbon group having 10 or more carbon atoms in the molecule thereof, and (C) at least one selected from a maleimide compound containing a phenylmaleimide group and a maleimide compound having an aliphatic hydrocarbon group having 9 or less carbon atoms in the molecule thereof, in which the content ratio of the component (A) to the component (B) is (A):(B)=20:80 to 90:10 in mass ratio.
A PROCESS FOR MAKING A CONTINUOUS LAYER OF AT LEAST A METALLIC FOIL OF THE FAMILY GROUP OF MALLEABLE/DUCTILE METALLIC MATERIALS AND AN APPARATUS TO CARRY OUT THE PROCESS
A procedure is presented for making a continuous tape of at least one metallic material of malleable/ductile metallic materials. The process includes passing a continuous strip of the metallic material between a rigid cylinder and a presser in elastically compressible material, held adherent to the rigid cylinder and at the same time subjecting the continuous tape, in at least a portion of its passage between the rigid roller and the presser and a reduction in the speed of its surface in contact with the presser with respect to the speed of its surface in contact with the rigid cylinder the surfaces of the outgoing tape being always parallel to each other and the final width of the tape corresponding to the initial width.
A PROCESS FOR MAKING A CONTINUOUS LAYER OF AT LEAST A METALLIC FOIL OF THE FAMILY GROUP OF MALLEABLE/DUCTILE METALLIC MATERIALS AND AN APPARATUS TO CARRY OUT THE PROCESS
A procedure is presented for making a continuous tape of at least one metallic material of malleable/ductile metallic materials. The process includes passing a continuous strip of the metallic material between a rigid cylinder and a presser in elastically compressible material, held adherent to the rigid cylinder and at the same time subjecting the continuous tape, in at least a portion of its passage between the rigid roller and the presser and a reduction in the speed of its surface in contact with the presser with respect to the speed of its surface in contact with the rigid cylinder the surfaces of the outgoing tape being always parallel to each other and the final width of the tape corresponding to the initial width.
Flame-retarded rigid polyurethane foams
A process for producing rigid PUR/PIR foams comprising A1 an isocyanate-reactive component, A2 a flame retardant, A3 a blowing agent, A4 a catalyst, A5 optionally auxiliaries and additives, and B an organic polyisocyanate component. Component A1 comprises a triurethane triol A1.1 and a compound A1.2 selected from the group consisting of polyether polyol, polyester polyol, polyether carbonate polyol, and polyether ester polyol. Also disclosed is a rigid PUR/PIR foam, an insulating material, a composite element, and a mixture.
Adhesive dual-component composition based on polyurethane
The invention relates to an adhesive dual-component composition based on polyurethane, comprising an —NCO component and an —OH component such that: the —NCO component is a composition comprising A) at least one polyurethane prepolymer comprising at least two NCO terminal groups obtained by polyaddition reaction of at least one aliphatic polyisocyanate selected from aliphatic diisocyanate monomers and mixtures of at least one aliphatic diisocyanate monomer with at least one triisocyanate based on XDI, and at least one polyester diol, and B) at least one triisocyanate based on XDI; and the —OH component is a composition comprising at least one polyester polyol. The invention relates to a method for producing a multilayer structure implementing an adhesive composition according to the invention, as well as to the use of such a structure in the field of flexible packaging.