Abstract:
A label assembly comprised of a carrier strip and a plurality of labels. The carrier strip comprises at least a first backing layer and a layer of adhesive material located over said first backing layer. A second backing layer may be located over said adhesive layer. Predetermined areas are removed from the second backing area to expose the adhesive layer. Cover tabs overlay portions of the exposed adhesive layer with the labels being removably adhered to the carrier strip on the remaining exposed adhesive layer. The labels may be provided with frangible regions for partitioning the wire label. The frangible regions include both severed portions and points of attachment.
Abstract:
The present disclosure encompasses three-dimensional articles comprising flexible-composite materials and methods of manufacturing said three-dimensional articles. More particularly, the present system relates to methods for manufacturing seamless three-dimensional-shaped articles usable for such finished products as airbags/inflatable structures, bags, shoes, and similar three-dimensional products. A preferred manufacturing process combines composite molding methods with specific precursor materials to form fiber-reinforced continuous shaped articles that are flexible and collapsible.
Abstract:
A cylinder system for tissue paper lamination comprising an embossing cylinder (22), which includes a combined DESL (1) and Point to Point (2) embossing, and for this purpose, higher elements (23) are provided for DESL process, and lower elements (24) for Point to Point process, such elements forming several relieves on paper surface and can compose figures, ribbing and all sorts of drawings.
Abstract:
An apparatus for welding a tubular lining of a wastewater pipe includes a retainer for the butt-jointed longitudinal edges, which are to be welded, of a plastic panel bent to form a pipe, and a welding apparatus. The retainer includes one respective clamping device for each edge formed by a stationary clamping bar on the outside of the pipe and a movable clamping bar on the inside of the pipe which is connected to an actuating drive. The stationary clamping bars are located opposite of one another with respect to the butt joint between the two longitudinal edges while leaving a gap open. At least one of the two movable clamping bars forms a stop for one longitudinal edge of the plastic panel in a position placed against the associated stationary clamping bar. A guide is provided along the gap between the stationary clamping bars for the welding device.
Abstract:
In a method for manufacturing a packed electrode, an electrode is set between two separation layers that are made of resin, a heat-resistant layer is set between at least one of the two separation layers and the electrode, the two separation layers, the electrode and the heat-resistant layer, an overlapped portion of the two separation layers overlapped with the heat-resistant layer interposed therebetween is pinched, pressed and heated by a pair of heat sealing chips at an outside of the electrode, and the two separation layers are fastened by destroying the heat-resistant layer at the overlapped portion that are pressed and heated. According to the above manufacturing method, man-hours required for stacking can be reduced by integrating the heat-resistant layer with the packed electrode.
Abstract:
A method for producing a part made of a composite material, including a skin and at least one stiffener made of strips, which are in turn made of one or more plies of fibers impregnated with a non-polymerized resin. The method includes the steps of: producing a preform of the part by pulling the strips through a die for shaping and positioning the skin and the stiffeners, a polymerization core being provided between a first strip and a second strip prior to the passage thereof through the die; and pressing the resulting preform in a hot press for a duration dt while applying a pressure P and at a temperature T for polymerizing the resin of the strips in the hot press over a pressing length L that is shorter than the length of the panel.
Abstract:
A membrane cartridge is manufactured by repeatedly folding and joining two strips of membrane to form a cross-pleated cartridge with a stack of openings or fluid passageways configured in an alternating cross-flow arrangement. The cartridge can be modified for other flow configurations including co-flow and counter-flow arrangements. Methods for manufacturing such cross-pleated membrane cartridges, as well as apparatus used in the manufacturing process are described. Cross-pleated membrane cartridges comprising water-permeable membranes can be used in a variety of applications, including in heat and water vapor exchangers. In particular they can be incorporated into energy recovery ventilators (ERVs) for exchanging heat and water vapor between air streams being directed into and out of buildings.
Abstract:
A dispensing and sealing system generally includes a film-feed assembly with a support mechanism for a supply of film and a film-drive mechanism to advance the film along a path, a dispenser with an outlet port for dispensing fluid into the film, and a transverse seal mechanism for forming a seal in the film transversely of the path. A calendering device and a movable structure for the support mechanism are also described.
Abstract:
Apparatus for producing a composite filler includes at least one die and a device for moving a stack of reinforced ply strips through the die. The die has peripheral die face adapted for forming the ply strip stack into a desired cross sectional shape. The cross section of the die face may vary around the periphery of the die.
Abstract:
A membrane cartridge is manufactured by repeatedly folding and joining two strips of membrane to foam a cross-pleated cartridge with a stack of openings or fluid passageways configured in an alternating cross-flow arrangement. The cartridge can be modified for other flow configurations including co-flow and counter-flow arrangements. Methods for manufacturing such cross-pleated membrane cartridges, as well as apparatus used in the manufacturing process are described. Cross-pleated membrane cartridges comprising water-permeable membranes can be used in a variety of applications, including in heat and water vapor exchangers. In particular they can be incorporated into energy recovery ventilators (ERVs) for exchanging heat and water vapor between air streams being directed into and out of buildings.