Patent classifications
B32B19/02
Tungsten oxide thermal shield
A tungsten trioxide thermal shield for electronic components in a gun launched munition includes tungsten trioxide grains suspended in a binder. The thermal shield is made such that a tungsten trioxide rich layer is adjacent the electronic component and a binder rich layer opposes the tungsten trioxide rich layer.
Tungsten oxide thermal shield
A tungsten trioxide thermal shield for electronic components in a gun launched munition includes tungsten trioxide grains suspended in a binder. The thermal shield is made such that a tungsten trioxide rich layer is adjacent the electronic component and a binder rich layer opposes the tungsten trioxide rich layer.
Process for preparing resin composition comprising benzoxazine, prepreg and laminate prepared therefrom
The present invention relates to a process for preparing a resin composition comprising benzoxazine, a prepreg and a laminate prepared therefrom. Said resin composition comprising benzoxazine is prepared by adding an acidic filler into the resin composition comprising benzoxazine, wherein said resin composition comprising benzoxazine comprises a benzoxazine resin, an epoxy resin A1 having an epoxy equivalent of 150-450, and an epoxy resin A2 having an epoxy equivalent of 451-1000. By adding an acidic filler into the resin composition, the present invention promotes the polymerization of benzoxazine and epoxy resins, and decreases the curing temperature needed for the polymerization of benzoxazine and epoxy resins. The laminates prepared from the resin composition added with an acidic filler have a high anti-stripping stability, a high glass transition temperature, a low water absorption, a high heat resistance, a high bending strength and a better processability, and achieves a low coefficient of thermal expansion.
Decorative Panel, and Decorative Floor Covering Consisting of Said Panels
The invention relates to a panel, in particular a decorative panel, a floor panel, a ceiling panel or a wall panel. The invention also relates to a covering consisting of a plurality of mutually coupled panels according to the invention, in particular a floor covering consisting of a plurality of mutually coupled panels, according to the invention.
Decorative Panel, and Decorative Floor Covering Consisting of Said Panels
The invention relates to a panel, in particular a decorative panel, a floor panel, a ceiling panel or a wall panel. The invention also relates to a covering consisting of a plurality of mutually coupled panels according to the invention, in particular a floor covering consisting of a plurality of mutually coupled panels, according to the invention.
MODIFIED BISMALEIMIDE PREPOLYMER, PREPARATION METHOD THEREFOR, AND APPLICATION THEREOF
The present disclosure relates to a modified bismaleimide prepolymer, a preparation method thereof, and use thereof. The modified bismaleimide prepolymer is prepared from raw materials comprising a bismaleimide resin and a modifier. The modifier is a 4,4-bis(allyl-benzoic acid) biphenyl ester-based allyl compound, or a combination of the 4,4-bis(allyl-benzoic acid) biphenyl ester-based allyl compound and another type of bismaleimide resin modifier.
Acoustic panels and methods for preparing them
The disclosure relates to acoustic panels and methods for preparing them. The disclosure relates more particularly to panels having a porous facing and to methods for making such panels. One aspect of the disclosure is an acoustic panel comprising a base structure. The base structure has one or more edges, an outward major surface having a total area, and an inward major surface opposing the outward major surface. The base structure has a noise reduction coefficient (NRC) of at least about 0.3. The panel includes a coating layer directly disposed on the outward major surface of the base structure, the coating layer being formed of an open-cell foam. The coating layer has an exterior major surface opposing the outward major surface of the base structure. The coating layer is substantially scattering for light in the wavelength range of 380 nm to 780 nm, and has an absorption coefficient of less than 0.5 for acoustic frequencies in the range of 100 Hz to 10,000 Hz.
FIBER-REINFORCED COMPOSITE MATERIAL MOLDED ARTICLE AND METHOD FOR PRODUCING SAME
Provided is a fiber-reinforced composite material molded article including a thick portion having a thickness equal to or greater than 10 mm, in which the thick portion has an inner layer which is formed of a cured material of a composite material (A) containing reinforcing fiber and an epoxy resin and a surface layer which is formed of a cured material of a composite material (B) containing reinforcing fiber and a vinyl ester resin.
Spacers for insulated glass
This invention provides a sealing spacer for spacing apart two window panes to form a window assembly. The spacer has an elongated, flexible strip having opposed edge surfaces and opposed side surfaces. The spacer also has a fiber reinforced polymer layer over the elongated, flexible strip. The opposed edge surfaces undulate with crests and troughs. The spacer has an activatable sealant for directly sealingly securing the flexible strip to each of the two window panes. The activatable sealant is on each of the opposed side surfaces of the fiber reinforced polymer. The invention also provides methods for making the spacer and window assembly.
STONE-PLASTIC HOT PRESSING FLOORING AND MANUFACTURING METHOD THEREOF
The present invention provides stone-plastic hot pressing flooring including a stone-plastic base material part which includes a middle material layer, a stone-plastic substrate layer, and a bottom material layer sequentially arranged side by side; a color film layer, located at one side of an upper surface of the stone-plastic base material part; a first wear-resistant layer, located at one side of an upper surface of the color film layer; and a second wear-resistant layer, located at one side of a lower surface of the stone-plastic base material part; and wherein the middle material layer and the bottom material layer are mainly composed of polyvinyl chloride, plasticizer, stabilizer, carbon black, and stone powder.