B60Y2410/12

ASSEMBLING STRUCTURES COMPRISING 3D PRINTED COMPONENTS AND STANDARDIZED COMPONENTS UTILIZING ADHESIVE CIRCUITS

One aspect is an apparatus including a plurality of additively manufactured components each having an adhesive injection channel. The components are connected together such that adhesive injection channels are aligned to form an adhesive path that allows adhesive flow between the components. Another aspect is an apparatus, including an additively manufactured component having an adhesive injection channel and an adhesive flow mechanism comprising at least one of an adhesive side end effector or a vacuum side end effector, the adhesive flow mechanism configured to provide adhesive to the adhesive injection channels.

SYSTEM FOR CHANGING HEIGHT OF HANGER MOUNTING PLATE

A system for changing a height of a hanger mounting plate, may include a frame; a hanger arm fixing device mounted at an upper side of the frame in a longitudinal direction of the vehicle body to be movable in the longitudinal direction of the vehicle body and fixing both sides of the connecting blocks; a pin fixing device which is mounted at a center portion of the frame to be movable in a width direction of the vehicle body and separates or couples the coupling pin from/to the connecting block; and a mounting plate height adjusting device mounted at a lower side of the center portion of the frame to be movable in the height direction of the vehicle body in a state in which the mounting plate height adjusting device supports a lower portion of the mounting plate, and adjusting a height of the mounting plate.

METHOD OF MANUFACTURING A COMPONENT WITH AT LEAST ONE EMBEDDED FEATURE

A method of manufacturing a component with at least one embedded feature includes the steps of defining a boundary template for the component, reserving a functional region within the boundary template for the at least one embedded feature, consolidating and structurally optimizing the component to allow more efficient distribution of material and manufacturing the component using additive manufacturing techniques. A motor vehicle component including a motor vehicle center console are also disclosed.

Method of fastening vehicle parts

An improved joining process interlocks parts together and avoids breakthrough in joints that would otherwise be infeasible. The process is used to join a relatively thin rear part to a relatively thick front part. A dedicated backer plate is joined to the front and rear parts such that the rear part is sandwiched between the front part and the backer plate. The front part, rear part, and backer plate are plastically deformed to establish interlock by insertion of a self-piercing rivet, clinching, or insertion of a flow drill screw.

Impact beam and method for producing an impact beam

An impact beam and a method of producing the impact beam for a motor vehicle is disclosed. A light metal profile with an extrusion width is produced by flattening the light metal profile to a working width and cutting to length to form semi-finished products. The semi-finished products are subjected to further treatment by press-forming techniques to form the impact beam. The impact beam has a longitudinal length which extends transversely to the direction of extrusion of the light metal profile.

Sliding console, range of consoles, corresponding manufacturing process

A sliding console that includes a stationary support, a moving console body, and a connecting device connecting two longitudinal guideways each having a rail and a slide. The sliding connecting device has two moving supports transversely separated from one another and at least two reinforcements separate from one another and separate from the moving supports. The reinforcements are spaced longitudinally apart from one another and fasten the moving supports to one another. The console body is fastened to the reinforcements, with each rail being fastened to one of the moving supports, and the slides being fastened to the stationary support.

Method for production of a combustion chamber tube for restraint systems in vehicles and device for implementation of the method
09987815 · 2018-06-05 · ·

A method and device for production of a combustion chamber tube for restraint systems in vehicles. The combustion chamber tube is embossed by several embossing dies arranged stellate around the combustion chamber tube and movable by an annular compression module with several punches movable in synchronized fashion in the radial direction and two inner punches extending into the ends of the combustion chamber tube, each with a support mandrel and a shaping mandrel movable relative to support mandrel. The combustion chamber tube is embossed from the outside by the embossing dies radially movable via punches against the support mandrels and the ends of the combustion chamber tube are shaped by shaping mandrels movable relative to support mandrels when the embossing dies are closed.

TORSION BAR FOR A STEERING SYSTEM ASSEMBLY

A torsion bar for a steering system includes a main body. Also included is an end region having a cylindrical outer surface extending from an axial end surface. Further included is a serrated portion disposed proximate the end region and axially offset from the axial end surface.

METHOD FOR PRODUCING AN ACOUSTIC PROTECTION SCREEN FOR A MOTOR VEHICLE ENGINE AND SCREEN OBTAINED USING SUCH A METHOD
20180105122 · 2018-04-19 ·

A method for producing an acoustic protection screen for a motor vehicle engine, comprising providing a reflective metal thermal protection sheet having a plurality of micro perforations, providing a batt of fibres containing a thermosetting resin, superposing the metal thermal protection sheet and the batt in a first thermocompression mould, compressing the batt by binding the fibres together, in order to form a thermal insulation layer, and combining the metal thermal protection sheet with the layer using the thermosetting resin, placing the thermal protection shell against an upper wall of a second mould, the wall being provided with out-gassing vents, the sheet facing toward the wall, injecting into the second mould an air-porous polyurethane foam precursor mixture, the lower wall of the second mould being free of any fluid-tight coating, after the foam has expanded, demoulding the screen obtained, in which screen the foam forms a support overmoulding the layer.

Power feeding structure, resin plate body for window including power feeding structure, and method of manufacturing resin plate body for window including power feeding structure

A power feeding structure includes a resin plate body for window configured by stacking a resin panel and a resin film including an object to have power fed such that the object to have power fed is interposed between the resin panel and the resin film, and an electrical conductive portion that contacts the object to have power fed and is provided inside the resin plate body for window, the power feeding structure feeding power to the object to have power fed via the electrical conductive portion that is provided at a resin sheet that is provided inside the plate body such that the electrical conductive portion is interposed between the resin sheet and the object to have power fed, the resin panel and the resin sheet being adhered, and resin components contained in the object to have power fed and the electrical conductive portion, respectively, being adhered.