Abstract:
Disclosed is a drug packaging device including a packaging unit and a cutting unit. The packaging unit includes a pair of packaging rollers that are pressed against each other with a drug packaging member disposed therebetween, thereby forming isolation regions in the drug packaging member at regular intervals so that at least one drug accommodation section can be formed between the isolation regions. The cutting unit forms a non-continuous zigzag cut line in which peak-shaped cuts and valley-shaped cuts are alternatively arranged and separated by a plurality of uncut portions. With this structure, it is possible to contribute to improvement in durability of a drug packaging member as well as in cuttability of the drug packaging member.
Abstract:
There is provided a punching unit that is readily adjusted, is capable of always punching high quality holes through sheets and is steadily capable of discharging punch chips. A punch shaft and a die shaft are disposed vertically in parallel between side plates and these very punch shaft and the die shaft compose structural members (reinforcing members) of the punching unit. The die shaft has a die shaft body formed into a hollow cylinder and is provided with dies that correspond to the punches of the punch shaft at an outer peripheral surface thereof while fitting into die holes penetrating to the hollow section. A chip discharging screw plate fixed to the right side plate is disposed in the hollow section of the die shaft. Punch chips are transported along slopes of the chip discharging screw plate and discharged out of an opening when the die shaft rotates.
Abstract:
A sheet processing apparatus provided with a sheet punching device and a processor unit for controlling the apparatus, said processor unit being adapted to enable an operator to specify sheet size, sheet orientation, and hole positions in batches of sheets being processed and creating a staggered stack of sheets by stacking said batches of sheets with holes aligned.
Abstract:
To produce at least one perforation in a non-woven sheet of fibers or filaments, the sheet is brought into contact with a perforated cylinder, equipped with at least one insert. Each insert includes, at one end, a plane surface, and is provided with a recess which emerges in the plane surface, and which has a sharp edge formed by the intersection of the inner surface of the recess with the plane surface. A perforation in the non-woven sheet is obtained by cutting out a portion of the non-woven sheet by shearing of the fibers or filaments of the non-woven sheet, between the sharp edge of the insert and a perforating member driven simultaneously in translation and in rotation about its own axis.
Abstract:
A sheet punching device that cuts holes in a sheet while punches are entering die holes, in which a plurality of punch trains along each of which a plurality of punches are aligned on a rotating shaft in parallel with the rotating shaft are disposed in the rotation direction of the rotating shaft, and the die holes are disposed in correspondence with the punches of the punch trains.
Abstract:
An apparatus (10) is disclosed including a web of film (20) extending between first and second pairs of pinch rollers (12–15) and onto a vacuum table (18). A rotary cutter (46) positioned before the first pair of pinch rollers (12, 13) includes laterally extending and spaced knives (52) for creating cuts (54, 58) in the film (20) which expand into vent openings (54′) positioned over the sides (68) of the product (72) when the film (20) is wrapped around and shrunk upon the product (72). A further rotary cutter (30) positioned between the pairs of pinch rollers (12–15) includes a cut-off knife (36) and first and second blades (44). The cut-off knife (36) creates a cut (60) in the film (20) to form a single sheet of film (20) and includes notches (38) in its cutting edge to form tie strips (62) connecting the single sheet to the web of film (20). A kicker plate (84) of a rotatable tie strip breaker (80) engages the cut film (20) on the vacuum table (18) at the trailing edge and at a speed faster than the film (20) is being conveyed to place tensional force on and breaking the tie strips (62).
Abstract:
To maintain high productivity and performing high-grade processes while minimizing deviation of a sheet process position in a direction at a right angle to a sheet conveying direction whatever types of sheets are to be processed, timing for starting detection of an end position of each of the sheets is controlled so as to execute the detection of the end position of each of the sheets at a vicinity of a sheet processing position on the sheet at which a sheet process is executed.
Abstract:
To maintain high productivity and performing high-grade processes while minimizing deviation of a sheet process position in a direction at a right angle to a sheet conveying direction whatever types of sheets are to be processed, timing for starting detection of an end position of each of the sheets is controlled so as to execute the detection of the end position of each of the sheets at a vicinity of a sheet processing position on the sheet at which a sheet process is executed.
Abstract:
According to one aspect of the invention, an apparatus and process are provided for transporting sheet-shaped print material. A first transport element and a first contact element are actuated to transport a sheet-shaped print material with alignment against an alignment stop. A second transport element and a second contact element are actuated to transport sheet-shaped print material past the alignment stop without alignment against the alignment stop.
Abstract:
A processing module and print material process and apparatus are provided. The processing module comprises at least one processing tool having at least one print material processing functionality, and at least one read and write data storage having data with at least one parameter that allows identification of the processing module.