Abstract:
A die-casting forming mold for vulcanized rubber boots, comprising: a combined shaft mold provided with an inner cavity corresponding to a shaft of a rubber boot; a last mold 21 provided with partition elements, comprising a body substantially corresponding to the shaft of the rubber boot in shape, and two or more partition elements disposed on the body, the last mold 21 being adapted to be mounted in the inner cavity of the shaft mold to form a die-casting forming cavity between the wall of the inner cavity of the shaft mold and the outer surface of the last mold 21, and the die-casting forming cavity being divided into two or more portions by the last mold 21 and the shaft mold, wherein the last mold 21 further comprises: a longitudinally extending rubber injection channel extending longitudinally downward from the upper surface of the last mold 21, and a transversely extending rubber injection channel extending transversely from the longitudinally extending rubber injection channel to a rubber outlet in the surface of the last mold 21; and a rubber injection plate 5 adapted to be mounted to the top of the shaft mold to guide the injection of an unvulcanized mixed rubber material, the rubber injection plate 5 being provided with: a rubber injection hole 11 adapted to be connected to an external injection head to inject the unvulcanized mixed rubber material, and a rubber injection channel for communicating the rubber injection hole 11 with the longitudinally extending rubber injection channel.
Abstract:
The invention relates to a ski boot with an element in shell form, which at least partially consists of a plastics compound material, wherein the compound material comprises a mixture of caprolactam polyamide and ionomers, and to a method for the production thereof, such that cations and anions of the ionomers form ion bonds, wherein elastic components of the compound material form a physical network that is soluble between 60° C. and 100° C., and so the element in shell form of the ski boot that at least partially consists of the compound material can undergo thermoforming below 100° C.
Abstract:
The soft boot and liner include a moisture transfer system that includes an inner fabric layer carefully selected from technically advanced fabrics. A series of layers are provided outside the inner liner including foam material layers, spacer fabrics and breathable membranes, in various orders. Encapsulation technology and waterproofing are used as well. The outer fabric layer is also capable of working with the other layers to promote the transfer of moisture. Frothed foams and flocking with fibers are further characteristics of the present invention. The moisture transfer system is incorporated into a soft boot or skate or as a removable liner for a shell boot. Numerous other modifications and applications are disclosed.
Abstract:
An apparatus and a method for adapting a prefabricated item of footwear that is formed, at least in part, of hard thermoplastic material, to a user's foot and/or leg. A pressure-exerting element is provided that substantially encloses the item of footwear and that has an accommodating space into which the item of footwear can be placed. The accommodating space is bounded, at least in part, by a deformable material which forms an inner layer of the pressure-exerting element, which contains a cavity and has an inlet opening provided for the introduction of a pressure application fluid. The pressure-exerting element is formed with a portion into which the pressure application fluid cannot enter.
Abstract:
A laminated panel comprises a core layer and two fusible layer portions. The core layer has an upper surface. The fusible layers each have an upper surface with a surface finish and a lower surface. The lower surface of the first fusible layer portion is secured to the upper surface of the core layer, exposing the first surface finish. The lower surface of the second fusible layer portion is secured to at least one of the upper surface of the core layer and the upper surface of the first fusible layer portion, exposing the second surface finish. The two fusible layer portions are positioned side by side and are fused to be coplanar. A method for laminating panels is also provided.
Abstract:
The present invention proposes an apparatus for pressure molding multi-layer footwear for use in the field of sport footwear. The apparatus for pressure molding multi-layer footwear has two pressure forming receptacles, each having an inflatable vessel therein. The inflatable vessel is shaped and adapted to surround sides of the footwear, such as a skate. The inflatable vessel has an opening for receiving the skate and an air inlet for inflating the inflatable vessel. The apparatus may further has an air supply device connectable to a control system that will manage the airflow into the inflatable vessel to create the desired pressure onto the skate in order to provide a custom-fit skate.
Abstract:
A ski boot with an element in shell form at least partially contains a plastic compound material. The compound material contains a mixture of caprolactam polyamide and ionomers, such that cations and anions of the ionomers form ion bonds. Elastic components of the compound material form a physical network that is soluble between 60° C. and 100° C., and therefore the element in shell form of the ski boot at least partially containing the compound material can undergo thermoforming below 100° C.
Abstract:
The present invention is directed to welding of a polymeric material and structures formed by such welding. The material is preferably a thermoplastic material that is a blend of one or more thermoplastic polyolefins and one or more elastomers. One preferred welding technique is vibration welding.
Abstract:
The present invention is directed to welding of a polymeric material and structures formed by such welding. The material is preferably a thermoplastic material that is a blend of one or more thermoplastic polyolefins and one or more elastomers. One preferred welding technique is vibration welding.