Patent classifications
B29B2009/163
Continuous and modular process for producing water-redispersible polymer powder compositions
The invention relates to a method for producing polymer powder compositions which are redispersible in water and which are based on polymerisates of one or more ethylenically unsaturated monomers. In a first step, an aqueous polymerisate dispersion is produced by means of a radically initiated polymerization of one or more ethylenically unsaturated monomers in an aqueous medium, said polymerisate dispersion being convened into the polymer powder composition which is redispersible in water by means of a diving process. The invention is characterized in that the polymerization and the drying process are each carried out in a continuous manner, and the polymerization and the diving process are carried out in separate interconnected modules.
METHOD AND APPARATUS FOR MANUFACTURING EXCREMENT TREATMENT MATERIAL
A manufacturing method includes a granulation step. The granulation step is a step of forming a plurality of granules by performing extrusion granulation on a granulation material using a granulation machine. The granulation machine includes a die and a cutter. A through hole that allows the granulation material to pass therethrough is formed in the die. The cutter cuts the granulation material that has been extruded from the through hole while rotating along the back side of the die. In the granulation step, short-distance cutting in which the granulation material is cut while the cutter rotates within a first plane, and long-distance cutting in which the granulation material is cut while the cutter rotates within a second plane that is located farther away from the die than the first plane are executed.
METHOD AND APPARATUS FOR MANUFACTURING EXCREMENT TREATMENT MATERIAL
A manufacturing method includes a granulation step. The granulation step is a step of forming a plurality of granules by performing extrusion granulation on a granulation material using a granulation machine. The granulation machine includes a die and a cutter. A through hole that allows the granulation material to pass therethrough is formed in the die. The cutter cuts the granulation material that has been extruded from the through hole while rotating along the back side of the die. In the granulation step, low-speed cutting in which the granulation material is cut while the cutter rotates at a first speed, and high-speed cutting in which the granulation material is cut while the cutter rotates at a second speed that is higher than the first speed are executed.
METHOD AND APPARATUS FOR MANUFACTURING WATER ABSORPTION TREATMENT MATERIAL
A manufacturing apparatus is an apparatus for manufacturing a water absorption treatment material that is composed of a plurality of grains that bond to each other upon absorbing a liquid, and includes a granulation machine and a pressure application machine. The granulation machine forms a substantially cylindrical granule that constitutes each of the grains by granulating a granulation material. The pressure application machine applies pressure to the granule formed by the granulation machine from a longitudinal direction of the granule so as to reduce the length of the granule.
SAPONIFIED ETHYLENE-VINYL ESTER-BASED COPOLYMER PELLET AND PRODUCING METHOD THEREFOR
Provided is EVOH resin pellet capable of suppressing the occurrence of fish eye even in a resultant monolayer film, and the method for producing the same. The EVOH resin pellet contains a boron compound and the boron amount in a surface portion of the pellet is 1.7 ppm or less. After the EVOH resin pellet is made to contain the boron compound, the EVOH resin pellet is rinsed with a mixture of water and alcohol so that the amount of the boron compound in a surface portion can be reduced.
Feedstocks for additive manufacturing and methods for their preparation and use
Feedstocks for additive manufacturing are provided. The feedstock may include a matrix material, and one or more capsules disposed in the matrix material, wherein the one or more capsules are configured to be removable from a surface portion when the matrix material is solidified to form one or more cavities in the surface portion. Methods of depositing the feedstocks and objects formed from the feedstocks are also provided.
Pellet based tooling and process for biodegradeable component
An example method of forming a biodegradable component includes extruding the biodegradable material through a die. The extruded biodegradable material is divided to form a plurality of biodegradable pellets. A binding agent is applied onto the biodegradable pellets. The plurality of biodegradable pellets with the binding agent are compressed in a mold to form a biodegradable component corresponding to the geometry of the mold.
METHOD FOR THE PRODUCTION OF NANOCOMPOSITE PLASTIC MATERIALS
A method for the preparation of nanocomposite plastic materials includes coating thermoplastic polymer granules with sizes from 0.5 to 5 mm, using a physical vapor deposition (PVD) sputtering technique, with a coating layer from 1 to 100 nm of a material dispersible in a matrix of said thermoplastic polymer to form coated thermoplastic polymer granules, and thereafter plasticizing and injection moulding the coated thermoplastic polymer granules at high pressure into a closed mould.
CHEMICAL-FREE PRODUCTION OF GRAPHENE-POLYMER PELLETS AND GRAPHENE-POLYMER NANOCOMPOSITE PRODUCTS
Provided is a method of producing pellets of a graphene-polymer composite, the method comprising: (a) mixing multiple particles of a graphitic material and multiple particles of a solid polymer carrier material to form a mixture in an impacting chamber of an energy impacting apparatus; (b) operating the energy impacting apparatus with a frequency and an intensity for a length of time sufficient for peeling off graphene sheets from the graphitic material particles and transferring the graphene sheets to surfaces of the solid polymer carrier material particles to produce graphene-coated polymer particles inside the impacting chamber; and (c) feeding multiple graphene-coated polymer particles into an extruder to produce filaments of an extruded graphene-polymer composite and operating a cutter or pelletizer to cut the filaments into pellets of graphene-polymer composite. The process is fast (hours as opposed to days of conventional processes), environmentally benign, cost effective, and highly scalable.
Friable bales
A process to make a friable bale, and a friable bale formed from the same, wherein the friable bale is formed from a composition comprising coated polymer particles, which comprise polymer particles formed from a polymer composition comprising an olefin-based polymer, and a coating formed from a coating composition comprising an aqueous metal acid dispersion, and an aqueous polysiloxane emulsion, and wherein the friable bale has a compression force ?1.00 MPa.