B29C66/73773

Reshaping method and device for carrying out the method

The present invention relates to a method for reshaping a workpiece, in which a reshaping force is exerted on the workpiece by means of a reshaping tool and the workpiece is heated during or before the reshaping of the workpiece, wherein the heating of the workpiece is performed by the at least partial absorption of an ultrasonic vibration in the workpiece. In order to provide a method and a device for reshaping a workpiece that avoids the aforementioned. disadvantages, in particular when reshaping materials with a highly temperature-dependent damping constant, it is proposed according to the invention that, before the reshaping force is applied to the workpiece, at least a first portion of the workpiece is brought to a temperature which differs from the temperature of a second portion of the workpiece that comes into contact with the reshaping tool.

GLASS AND POLYMER FILM ASSEMBLIES AND METHODS OF MAKING
20170210095 · 2017-07-27 ·

A glass and polymer film assembly including a glass film and a polymer film bonded to a surface of the glass film. The polymer film is directly bonded to the glass film by applying the polymer to the glass film when the glass film is above a bonding temperature of the polymer film. The glass film may have a thickness less than about 1 mm and the polymer film may be an oriented semicrystalline homopolymer which is permanently bonded to a major surface of the glass film.

CUSTOM NEEDLE GUIDE APPARATUS AND METHOD FOR MANUFACTURE IN A MEDICAL PROCEDURE
20170209170 · 2017-07-27 ·

A sterile needle guide for use during a biopsy procedure includes a planar plate having at least one tubular needle guide extending there through. Needle guide may be manufactured from a kit having plurality of guide tubes each paired with a drill bit. In practice, a drill bit and guide tube are coupled to a drilling machine and positioned relative to a planar blank at a location derived from previously recorded or real-time imaging data. Drilling through the plate causes the guide tube to extend through the plate and become thermally fused therewith. In one embodiment, a guide tube includes multiple needle guide passages enabling multiple, clustered insertion points in a single area from a single guide tube.

SYSTEMS AND METHODS FOR JOINING BLADE COMPONENTS OF ROTOR BLADES

Systems and methods for joining blade components of a rotor blade are provided. A method includes positioning a first blade component and a second blade component such that a joint location of the first blade component and a joint location of the second blade component are proximate each other. The method further includes applying a force to an outer surface of the second blade component and an opposing force to an inner surface of the second blade component. The force and opposing force maintain an aerodynamic contour of the second blade component. The method further includes connecting the joint location of the first blade component and the joint location of the second blade component together.

Multi-layered article

Multi-layered articles or products comprising layers of filled polymer compositions, methods of making and applications or uses thereof.

Multilayer structure for transporting or storing hydrogen

A multilayer structure selected from a reservoir, a pipe or a tube, for transporting, distributing or storing hydrogen, including, from the inside to the outside, at least one sealing layer and at least one composite reinforcing layer, the innermost composite reinforcing layer being welded to the outermost adjacent sealing layer, the sealing layers including at least one semi-crystalline thermoplastic polymer, the Tm of which is less than 280 C., wherein the at least one thermoplastic polymer of each sealing layer may be the same or different, and at least one of the composite reinforcing layers being of a fibrous material in the form of continuous fibers impregnated with a composition of at least one thermoplastic polymer P2j, the thermoplastic polymer P2j having a Tg greater than the maximum temperature of use of said structure (Tu), with TgTu+20 C., Tu being greater than 50 C.