Abstract:
Process and apparatus for improving a concentricity of a pneumatic vehicle tire having a bead. The process includes subjecting at least a portion of the bead, after vulcanization, to a plastic deformation post-treatment. The post-treatment improves the concentricity of the tire. The apparatus includes a drum having a surface which engages a radially inner bead seat surface of the tire. The drum includes at least one of an internal heating mechanism and an internal cooling mechanism. The drum is adapted to plastically deform at least a portion of the bead of the tire so as to affect at least one of a first, a second, and a third harmonic. The plastic deformation improves the concentricity of the tire.
Abstract:
Vehicle wheel that includes a pneumatic tire mounted on a wheel rim. The pneumatic tire includes a tire tread, two side-walls, a carcass, reinforcing elements, and two tire beads with bead cores. The vehicle wheel also includes an emergency support body, mounted on the wheel rim and positioned inside the pneumatic tire. The emergency support body includes an emergency rolling surface to support the tire in case of a failure of the pneumatic tire. The emergency rolling surface includes a radially exterior surface of a ring torus with a bowl-shaped cross section, and the ring torus includes axially exterior sections having cross-sectional contours with first curvatures open to the wheel rim and an intermediate section positioned between the axially exterior sections having a contour with a second curvature open to a crest point of the pneumatic tire. The first and second curvatures include at least one radius of curvature and at least one supporting element is positioned to support the ring torus on the wheel rim.
Abstract:
A method and an apparatus for producing tread/reinforcement belt units for pneumatic vehicle tires in which a rotatable winding drum. a belt feeding device for a first and a second reinforcement belt layer, an overlay feeding device, a tread feeding device and a transfer device are provided. On a winding drum having double width and being axially movable, two tread/reinforcement belt units are simultaneously produced whereby in the first method steps the individual reinforcement belt layers are produced, subsequently two wound overlays are produced, and then two treads are applied one after another or simultaneously.
Abstract:
A method for manufacturing a pneumatic vehicle tire includes the step of folding the carcass ply in the overlap zone of the leading and trailing ends into at least one fold to form an overlength of the reinforcement elements in the overlap zone for preventing the constriction in the overlap zone within the vulcanized, inflated tire. Subsequently, in both methods, the green tire is completed on the building drum and the green tire is then vulcanized to produce the finished tire.
Abstract:
A method for cutting to length a strip-shaped profiled member of unvulcanized rubber material by a cutting edge includes the step of providing a speed between the cutting edge and the profiled member to be cut of at least 2.5 m/s during the cutting action. The device for carrying out the method includes a carriage and a tool with a cutting edge fastened to the carriage. The carriage has an acceleration path, defined between a rest position of the carriage and a side of the profiled member facing the carriage, of between 0.2 and 1 m. The carriage has a deceleration path, defined between an oppositely arranged side of the profiled member and an end position of the carriage, of at least 0.1 m.
Abstract:
A process is disclosed for producing a vehicular pneumatic tire, in which, in order to produce and apply a preferably unvulcanized tread strip to a partial tire, which already has a cambered carcass and a ply packet radially outward therefrom, at least two strips of material, each consisting of a mixture of rubber and/or plastic, are applied to the partial tire. At least one strip of material is wound in numerous essentially adjoining windings running in the circumferential direction of the tire. In the case of two strips of material, these consist of different mixtures and, depending upon the desired characteristics of the tire, are arranged simultaneously or sequentially on different areas in the inner or the radially outer zone of the space occupied by the finished tread strip.
Abstract:
Process and device for transporting a belt construction strip having parallel reinforcing members embedded in a belt construction material for forming a belt for a pneumatic vehicle tire. The process may include feeding the belt construction strip in a feed direction toward a subsequent processing device, such that the feed direction is oblique to the reinforcing members and the belt construction strip includes two lateral sides extending in the feed direction, forming a front edge on a front end of the belt construction strip in the feed direction and a rear edge on a rear end of the belt construction strip in the feed direction, such that the front and rear edges extend obliquely to the feed direction and substantially parallel to the reinforcing members, defining a front tip from a portion of the belt construction strip enclosed by the front edge and one of the two lateral sides, defining a rear tip from a portion of the belt construction strip enclosed by rear edge and the other of the two lateral sides, and feeding the belt construction strip along at least two conveying devices. The process may also include laterally aligning the front tip in accordance with its form and position, laterally aligning the belt construction strip, in a region between the front tip and the rear tip, in accordance with its position, and laterally aligning the rear tip in accordance with its form and position.
Abstract:
The invention relates to a method for producing a tire, especially a pneumatic tire for a motor vehicles. The method includes a stepwise build up of the tire with a layer which is as airtight as possible, at least one casing ply (3), horn profiles, bead cores, side walls as well as a belt assembly including a belt web, if required, a belt layer (13) in one or more parts and a tread (15). The rubber of the tire side walls is applied as an extruded rubber strip (8) in the form of a spiral with several adjacent or partially overlapping turns (28a) on the side walls of the carcass which is at least previously shaped and, if required, provided with at least parts of the belt assembly.
Abstract:
A pneumatic vehicle tire made of rubber or a rubber-like compound has a tire body with two sidewalls and a tread extending between the sidewalls. A carcass is embedded in the tire body and extends from a radially inner edge of a first sidewall to a radially inner edge of a second sidewall. A belt is embedded in the tire body radially inwardly of the tread and radially outwardly of the carcass. A rim-shaped support with fastening elements positioned radially outwardly at the support is provided. The support is connected to the tire body. Reinforcement elements in the form of cords and bands are connected to the fastening elements for forming the carcass. The reinforcement elements extend substantially without deflection from the fastening elements into a neutral bending line of the sidewalls.
Abstract:
A method and apparatus for checking the concentricity of a pneumatic vehicle tire that during operation has its bead regions mounted on the radially inner periphery of a wheel rim. The apparatus includes a two-part test rim, the sections of which are axially movable. In the region of the rim flanges, the test rim is provided with vulcanizing mold contours for receiving the bead-seating surfaces of a tire. The spaces between the tire sidewalls and the bead regions are provided with forming rings.