Patent classifications
B29K2305/02
MATERIAL SYSTEMS AND METHODS OF MANUFACTURING MATERIAL SYSTEMS
A material system may include: an aluminum layer; a glass composite layer adjacent to the first aluminum layer; and a carbon composite layer adjacent to the first glass composite layer, and opposite to the first aluminum layer. A method of manufacturing a material system may include: stacking an aluminum layer, glass composite layer that may include thermoplastic prepreg plies, and carbon composite layer so that the aluminum layer is adjacent to the glass composite layer, and the glass composite layer is adjacent to the carbon composite layer; and consolidating the thermoplastic prepreg plies to soften the aluminum layer. A method of manufacturing a material system may include: stacking an aluminum layer, glass composite layer that comprises thermoplastic resin, and carbon composite layer so that the glass composite layer is between the aluminum and carbon composite layers; and adjusting temperature and pressure to consolidate the stack.
METAL MEMBER-POLYARYLENE SULFIDE MEMBER COMPOSITE AND METHOD FOR ITS PRODUCTION
A metal member-polyarylene sulfide resin member composite having an air-tight joint between the metal member and the polyarylene sulfide resin member and a method for its production are provided. A metal member-polyarylene sulfide resin member composite comprising a metal member and a polyarylene sulfide member which is obtained by injection molded direct joining, wherein the polyarylene sulfide member is made of a polyarylene sulfide resin composition which satisfies all of the following (1) to (3): (1) it has a melt crystallization peak temperature of at least 200 C. and at most 230 C., (2) it has an MFR of at least 20 g/10 minutes and at most 150 g/10 minutes, and (3) it comprises 100 parts by weight of a polyarylene sulfide resin (A), from 5 to 25 parts by weight of a modified ethylene copolymer (B) and from 10 to 120 parts by weight of glass fiber (C).
Use of recycled packaging in polymer composite products
A polymer composite and its method of manufacture using a recycled multilayer material. An example of the recycled multilayer material is comprised of a polyethylene/polyethylene terephthalate/aluminum film or polyethylene/nylon/aluminum film that may be extruded with organic filler to obtain desirable performance in wood-substitute products such as deck boards, railing, fencing, pergolas, residential cladding/siding, sheet products, and other applications.
Use of recycled packaging in polymer composite products
A polymer composite and its method of manufacture using a recycled multilayer material. An example of the recycled multilayer material is comprised of a polyethylene/polyethylene terephthalate/aluminum film that may be extruded with organic filler to obtain desirable performance in wood-substitute products such as deck boards, railing, fencing, pergolas, residential cladding/siding, sheet products, and other applications.
Corrosion sensor having double-encapsulated wire connections and manufacturing method for it
A sensor (1) and a method of manufacturing the sensor (1), the sensor (1) including a number of metallic strips (5,6,7) mounted on a non-conducting substrate (4) and a module (3) for forming electrical connections to the strips (5,6,7) whereby to enable communication between the strips (5,6,7) and monitoring equipment for the sensor (4), the module including a number of wire connections (16), the method including the steps of encapsulating the wire connections within a flexible chemical and heat resistant sealing compound, and subsequently, encapsulating the flexible sealing compound within a second sealing compound (34) by an injection molding process.
THERMOSETTING COMPOSITION, METHOD FOR PRODUCING MOLDED ARTICLE USING THE SAME, AND CURED PRODUCT
A thermosetting composition comprising: (A) a compound represented by the formula (A2) or (A3), (B) a thermal polymerization initiator, and (E) an inorganic filler.
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Printable Susceptor For Use In Induction Welding
A composite fibrous susceptor for use in induction welding is described, along with methods of its construction and use. The composite fibrous susceptor can include a magnetically susceptible continuous fiber in conjunction with a thermoplastic polymer. The composite fibrous susceptor can be deposited according to an additive manufacturing process on a surface to be bonded according to an induction welding process.
Printable Susceptor For Use In Induction Welding
A composite fibrous susceptor for use in induction welding is described, along with methods of its construction and use. The composite fibrous susceptor can include a magnetically susceptible continuous fiber in conjunction with a thermoplastic polymer. The composite fibrous susceptor can be deposited according to an additive manufacturing process on a surface to be bonded according to an induction welding process.
Printable susceptor for use in induction welding
A composite fibrous susceptor for use in induction welding is described, along with methods of its construction and use. The composite fibrous susceptor can include a magnetically susceptible continuous fiber in conjunction with a thermoplastic polymer. The composite fibrous susceptor can be deposited according to an additive manufacturing process on a surface to be bonded according to an induction welding process.
Printable susceptor for use in induction welding
A composite fibrous susceptor for use in induction welding is described, along with methods of its construction and use. The composite fibrous susceptor can include a magnetically susceptible continuous fiber in conjunction with a thermoplastic polymer. The composite fibrous susceptor can be deposited according to an additive manufacturing process on a surface to be bonded according to an induction welding process.