Abstract:
The invention relates to a component comprising an insert and a plastic encapsulation made of at least two plastic components, wherein the insert is encapsulated by a first plastic component A and the first plastic component A is encapsulated by a second plastic component B, wherein the first plastic component A is made of: A1: 5 to 80 wt %, relative to the total weight of the components A1 and A2, of at least one polyester based on aliphatic and aromatic dicarbolic acids and aliphatic dihydroxy compounds; A2: 20 to 95 wt %, relative to the total weight of the components A1 and A2, of at least one homo or copolyester selected from the group made up of polylactide (PLA), polycaprolactone, polyhydroxyalkanoates, and polyester made of aliphatic dicarbolic acids and aliphatic dioles; A3: 0.05 to 15 wt %, relative to the total weight of the components A1 and A2, a) of a copolymer comprising epoxide groups based on styrol, acrylic acid ester, and/or methacrylic acid ester, b) of a bisphenol-A epoxide, or c) of a natural oil, fatty acid ester, or fatty acid amide comprising epoxide groups; and the second plastic component B is made of B1: 50 to 100 wt % of at least one partially crystalline thermoplastic polyester based on aromatic dicarbolic acids and aliphatic or aromatic dihydroxy compounds, and B2: 0 to 50 wt % of at least one thermoplastic styrol(co)polymer, each relative to the polymer portion of the second plastic component B.
Abstract:
A system for producing an in-situ foam, which comprises the components from 50 to 98% by weight of one or more inorganic fillers A), from 1 to 48% by weight of one or more water-soluble, cationic polymers B), from 0.5 to 48% by weight of one or more surfactants C), from 0.01 to 5% by weight of one or more crosslinkers D) which are capable of reacting with the polymers B), from 0 to 20% by weight of one or more additives E), where the percentages by weight of the components A) to E) are based on the nonaqueous fraction and the sum of A) to E) is 100% by weight, process for producing an in-situ foam using the components of the system and foaming by means of a gas or a gas mixture and use for thermal insulation and filling of hollow spaces and hollow bodies.
Abstract:
A PROCESS FOR PRODUCING AT LEAST ONE MONOFILAMENT FROM A THERMOPLASTIC POLYMER MATERIAL COMPRISING AT LEAST ONE POLYESTER AND ALSO NANOPARTICLES AND OPTIONALLY FURTHER ADDITIVES AS COMPONENTS, COMPRISES ADDING THE COMPONENTS TO AN EXTRUDER AS PARTIAL OR COMPLETE MIXTURES OR SEPARATELY AND THE THERMOPLASTIC POLYMER MATERIAL BEING INITIALLY STRAND EXTRUDED, COOLED AND STRETCHED AND FINALLY HEAT-CONDITIONED AT A TEMPERATURE IN THE RANGE FROM 40 TO 120°C FOR 0.01 TO 10 MM. THE INVENTION FURTHER RELATES TO USING A RNONOFILAMENT OBTAINED BY THE PROCESS IN THE MANUFACTURE OF ARTIFICIAL TURF, WIGS AND ALSO AS BRISTLES FOR SOFT OR STIFF BRUSHES.
Abstract:
The invention relates to flexible flat substrates having a flexible abrasive surface and containing 0.1 to 90 wt.%, relative to the uncoated substrate, of a mixture containing the condensation product of 99.985 to 20 wt.% of at least one pre-condensate of a heat-curing resin, 0.005 to 10 wt.% polymeric thickener chosen from the group consisting of biopolymers, associative thickeners and/or fully synthetic thickeners, 0.01 to 10 wt.% curing agent, 0 to 10 wt.% surface-active substances or surfactants, 0 to 15 wt.% active ingredients and special-effect substances, and 0 to 75% water, said mixture containing 10 to 70 wt.% of one or more binders from the group comprising polyacrylates, polymethacrylates, polyacrylonitriles, copolymers of acrylic acid esters and acrylonitrile, styrene and acrylonitrile, acrylic acid ester and styrene and acrylonitrile, acrylonitrile and butadiene and styrene, polyurethanes, melamine formaldehyde resins, phenol formaldehyde resins, urea formaldehyde resins, melamine urea formaldehyde resins, melamine urea phenol formaldehyde resins, urea glyoxal resins, or mixtures thereof.
Abstract:
Винахідстосуєтьсязастосуваннятермопластичнихформувальнихмас, якімістятьяксуттєвікомпоненти: A) від 29 до 99,95 мас. % поліестеру, B) від 0,05 до 2,0 мас. % Na2CO3, K2CO3, NaHCO3, KHCO3 абоїхсумішейвідносно 100 мас. % компонентівА) іВ), атакож, крімцього, C) від 0 до 70 мас. % іншихдодатковихречовин, причомусумамас. % компонентівА) - С) складає 100 %, длявиготовленняформованихвиробівбудь-якоговиду, проникнихдлялазерноговипромінювання.
Abstract:
The invention relates to a system and a method for producing an in-situ foam comprising the components 50 to 98 wt.% of one or more inorganic fillers A), 1 to 48 wt.% of one or more cationic or amphoteric polymers B), 0.5 to 48 wt.% of one or more surfactants C), 0.01 to 5 wt.% of one or more crosslinking agents D) which are reactive with the polymers B), 0.5 to 10 wt.% of one or more cell regulators E), selected from silicones, siliconates, and carbon, and 0 to 20 wt.% of one or more additives F), wherein the percentage weights of the components A) to F) are nonaqueous components, and the sum of A) to F) equals 100 wt.%.
Abstract:
The invention relates to a system and a method for producing an in-situ foam comprising the components 50 to 98 wt.% of one or more inorganic fillers A), 1 to 48 wt.% of one or more cationic or amphoteric polymers B), 0.5 to 48 wt.% of one or more surfactants C), 0.01 to 5 wt.% of one or more crosslinking agents D) which are reactive with the polymers B), 0.5 to 10 wt.% of one or more cell regulators E), selected from silicones, siliconates, and carbon, and 0 to 20 wt.% of one or more additives F), wherein the percentage weights of the components A) to F) are nonaqueous components, and the sum of A) to F) equals 100 wt.%.
Abstract:
The invention relates to a system and a method for producing an in-situ foam comprising the components 50 to 98 wt.% of one or more inorganic fillers A), 1 to 48 wt.% of one or more cationic or amphoteric polymers B), 0.5 to 48 wt.% of one or more surfactants C), 0.01 to 5 wt.% of one or more crosslinking agents D) which are reactive with the polymers B), 0.5 to 10 wt.% of one or more cell regulators E), selected from silicones, siliconates, and carbon, and 0 to 20 wt.% of one or more additives F), wherein the percentage weights of the components A) to F) are nonaqueous components, and the sum of A) to F) equals 100 wt.%.
Abstract:
A system is described for producing an in-situ PUR foam, consisting of the components 50 to 98 percent by weight of one or more inorganic fillers A), 1 to 48 percent by weight of one or more water-soluble, cationic polymers B) 0.5 to 48 percent by weight of one or more surfactants C) 0.01 to 5 percent by weight of one or more cross-linkers D) which are reactive with the polymers B), 0 to 20 percent by weight of one or more additives E), wherein the weight percentages of components A) to E) relate to the non-aqueous proportions and the total of A) to E) is 100 percent by weight. The inventino further relates to a method for producing an in-situ PUR foam using the components of the system and foaming with a gas or a gas mixture, and to a use for thermally insulating and filling-in cavities and hollow articles.