Abstract:
A heatable luminaire cover is described. The heatable luminaire cover has a polymeric main body, a first busbar, a second busbar and at least two conductor tracks on the inside of the polymeric main body.
Abstract:
A heatable luminaire cover is described. The heatable luminaire cover has a polymeric main body, a first busbar, a second busbar and at least two conductor tracks on the inside of the polymeric main body.
Abstract:
A polymer workpiece is described. The workpiece has an upper main surface, a lower main surface, an injection-mold separating surface and a flow attack edge surface. The flow attack edge surface is formed in the region between the injection-mould separating surface and the lower main surface as a planar surface with an angle α with respect to the injection-mould separating surface of 20° to 70°, and/or deviates by an amount a from 0.0 mm to 0.5 mm from the planar surface.
Abstract:
A vehicle add-on part for integrating a camera module includes a cover, which consists at least partially of a transparent thermoplastic material, a carrier part for a camera module, and a camera module having at least one camera lens. The transparent thermoplastic material of the cover has, on the inner side, a local thickening and/or a local thinning, and the camera module is held in the carrier part such that the at least one camera lens of the camera module is arranged directly opposite the thickening and/or the thinning.
Abstract:
A method for producing a vehicle plastic pane having a heating function is presented. The method includes: the provisioning of a one- or two-component, semi-transparent, polymeric pane base body; the coating of the pane base body with a protective coating; the embedding of heating wires for direct electrical contact with busbars that are deposited; the usage of a fine powder coating (FPC) plasma process at atmospheric pressure to deposit the busbars; and the mounting a connection element on and/or in each of the busbars.
Abstract:
A method for producing a heatable luminaire cover is described. The heatable luminaire cover has: a polymeric main body, a first busbar, a second busbar and at least two conductor tracks on the inside of the polymeric main body.
Abstract:
A polymeric vehicle glazing is described, having an outer face and an inner face, with a transparent polymeric component at the outer face and the inner face. An opaque polymeric component is flush mounted at the inner face in at least one section of the transparent polymeric component.
Abstract:
A polymer workpiece is described. The workpiece has an upper main surface, a lower main surface, an injection-mold separating surface and a flow attack edge surface. The flow attack edge surface is formed in the region between the injection-mold separating surface and the lower main surface as a planar surface with an angle α with respect to the injection-mold separating surface of 20° to 70°, and/or deviates by an amount a from 0.0 mm to 0.5 mm from the planar surface.
Abstract:
A polymeric vehicle glazing is described, having an outer face and an inner face, with a transparent polymeric component at the outer face and the inner face. An opaque polymeric component is flush mounted at the inner face in at least one section of the transparent polymeric component.