Patent classifications
B05B13/0457
ELECTROSTATIC ROTARY PROJECTOR FOR COATING PRODUCT AND SPRAYING INSTALLATION COMPRISING SUCH A PROJECTOR
An electrostatic rotary sprayer for a coating product, including a spraying cup, a body, a drive turbine assembled in the body and configured to rotate the spraying cup about an axis of rotation defined by the body. The sprayer also includes electrodes for charging the coating product sprayed by the spraying cup, these electrodes being assembled on a ring attached on the body and each supplied with high voltage through a resistance. Each resistance extends axially outside the ring and is equipped, at its end opposite the electrode that it supplies, with a first electrical connection plug on a second plug of corresponding geometry provided on the body, with a movement parallel to the axis of rotation, and in that the ring is configured to be assembled and connected on the body, or disassembled and disconnected from the body while being equipped with electrodes and resistances.
ELECTROSTATIC ROTARY PROJECTOR FOR COATING PRODUCT, SPRAYING INSTALLATION COMPRISING SUCH A PROJECTOR AND COATING METHOD USING SUCH A PROJECTOR
An electrostatic rotary sprayer for coating product including a spraying cup, a body and a drive turbine assembled in the body and configured to rotate the spraying cup about an axis of rotation defined by the body. The sprayer also includes electrodes for charging the coating product sprayed by the spraying cup, these electrodes being assembled on a ring attached on the body, and a skirt for discharging air around the cup. An annular slit, supplied by a pressurized air flow circuit with pressurized air, is defined radially between the ring and the skirt, with its outlet oriented toward the front of the sprayer.
COATING BOOTH AND COATING METHOD
A coating booth includes a coating chamber in which coating is performed on a coated object by a coating device, a supply air chamber placed above the coating chamber, and a recovery chamber placed below the coating chamber. The coating booth is configured such that: air directed from the supply air chamber toward the recovery chamber flows through a predetermined region inside the coating chamber, the predetermined region including a passage region for the coated object; and the air directed from the supply air chamber toward the recovery chamber does not flow through a predetermined-region outside region inside the coating chamber.
Method for applying a coating product to a component being moved by a conveyor, and coating product application installation
This method allows a coating product to be applied to a component (13) being moved by a conveyor (12), along which conveyor at least one spray (62.1, 62.2) is arranged. It comprises automated steps involving determining, within a fixed frame of reference (X12, Y12, Z12), the coordinates of the points (A1, B1, C1, A2, B2, C2) of one or more lines (L1, L2) of the exterior profile of the component which are distributed along the length of the component, in assigning to each spray the points of each exterior profile line that lie within its field of spraying, in identifying, from among the points assigned to each spray, the point (A1, A2; B1, B2) closest to the spray for each exterior profile line, in determining, for each spray, a line (L3, L4) to follow that passes through all the points (A1, A2, B1, B2) closest to the spray as identified in step c), and in establishing a reference path for each spray according to the points on the line (L3, L4) to follow so that the application distance of each spray is adjusted automatically and independently according to the exterior profile of the component.
SPRAYING SYSTEM FOR FOOTWEAR
The manufacturing of footwear includes the joining of components. The joining may be accomplished with adhesive. The adhesive, such as a polyurethane, is applied as a single-sided adhesive to a footwear component. The application of the adhesive can contaminate the system that is applying the adhesive with intentional over spray of the footwear component. The over spray ensures adequate coverage of the footwear component to allow a sufficient bond. A masking platform of the system masks portions of the system to limit the contamination caused by the over spray. Additionally, material brushes and scrapers may engage with components of the system to remove or limit adhesive contamination on those components. A vision system maps a surface of the footwear component to ensure the adhesive is applied for the specific article.
INNOVATIVE METHOD AND SYSTEM FOR COATING
A method for through-type coating of a device includes picking up a loaded carrier from a supplying conveyor, conveying the loaded carrier together with a fork-type loader into a coating booth, coupling the device to be coated to a system that rotates the device during coating, and separating the device from its carrier; handing over the unloaded carrier to a fork-type unloader; withdrawing the empty loader, the unloader, and the unloaded carrier out of the booth; closing the booth; rotating and coating the device to be coated; opening the booth; conveying the unloaded carrier into the coating booth; uncoupling the device from the system while joining the device with the carrier; withdrawing the unloader and the loaded carrier out of the booth; and handing over the loaded carrier to a discharging conveyor.
Variable cross-section compliance mechanism
A surface treatment support structure assembly for treating a contoured surface includes a support structure array formed from a plurality of base structures, each base structure being operably coupled with respect to one another and configured to slide along a longitudinal axis and rotate about a laterally translating axis which is perpendicular to the longitudinal axis. The support structure array further includes at least one applicator head coupled to each base structure of the support structure array, each of the at least one applicator head being configured to treat the contoured surface. Additionally, a base structure actuator is operatively coupled to and configured to manipulate each base structure along the longitudinal axis and the laterally translating axis such that the support structure array is adjusted relative to the contoured surface.
Multiple-Nozzle Defined Edge Tool
Systems apply a material (e.g., adhesive) to an article (e.g., a component in an article of footwear) with a multiple-nozzle tool. A first nozzle of the multiple-nozzle tool is effective to provide an edge application of the material that is consistent in application of the material. A second nozzle of the multiple-nozzle tool is effective to provide a greater material coverage application than the first nozzle. The second nozzle may be implemented to apply the material at an interior area from the edge at which the first nozzle applies the material, in an exemplary aspect.
Manufacturing process for making a dome element provided with thermal protection for a solid propellant rocket engine
For producing a dome-shaped element (2) provided with thermal protection for a solid propellant rocket engine, a coupling annular body (4) is arranged in a mold (5) and has a surface (20) that is clean and activated, by an atmospheric-pressure plasma treatment, before depositing a primer layer (26) and an adhesive layer (27) on the surface (20); ablative material is then automatically applied to the adhesive layer and to an area (17) of the mold (5) so as to form a series of superimposed layers (30).
INSTALLATION FOR PRODUCING COATED PLASTIC COMPONENTS AND MEHTOD THEREFOR
An installation and method for producing coated plastic components, having a first plastic manufacturing device and at least a second plastic manufacturing device for producing plastic components and a coating device for the surface coating of plastic components. The coating device has a first coating line which is associated with the first plastic manufacturing device and at least a second coating line which is associated with the first and/or second plastic manufacturing device. The first and/or second plastic manufacturing device is preferably an injection molding device or an additive manufacturing device.