Patent classifications
B65B9/04
Method of protecting security elements from heat degradation during a heat-sealing process
A blister pack includes a housing having a plurality of cavities and a cover sealed to the housing and enclosing the cavities. The cover includes a base layer, at least one security element, and a heat protection layer. The heat protection layer includes one of an amorphous polymer and a semi-crystalline polymer.
Methods and apparatus for packaging products
Provided is a method and machine for packaging products, whereby a tray is generated by means of bonding a plastic film to a base film, the tray including a cavity of a given area and a rim surrounding the cavity. The cavity is generated by applying a given pressure on a forming area of the films. Before generating the tray and before pressing the base film, a support cut is generated in the forming area of the base film, such that with the subsequent pressure on the base film at least one gap is formed in the cavity of the tray as a result the support cut.
Methods and apparatus for packaging products
Provided is a method and machine for packaging products, whereby a tray is generated by means of bonding a plastic film to a base film, the tray including a cavity of a given area and a rim surrounding the cavity. The cavity is generated by applying a given pressure on a forming area of the films. Before generating the tray and before pressing the base film, a support cut is generated in the forming area of the base film, such that with the subsequent pressure on the base film at least one gap is formed in the cavity of the tray as a result the support cut.
Dosing unit, a dosing method, and a machine for producing unit dose articles
A dosing unit for a machine for producing unit dose articles includes a plurality of nozzles carried by respective movable elements and associated to fluid delivery lines, and a plurality of controlled valves associated to respective actuators and arranged for selectively opening and closing a passage of fluid through said fluid delivery lines.
PROCESS FOR MANUFACTURING A BLISTER STRIP FOR A DRY POWDER INHALER
A process for producing a blister strip is provided. The blister strip contains two or more different formulations of powdered medicament for inhalation. The blister strip has a base in which blister cavities are formed. A first set of cavities each contain a first medicament formulation and are covered by a first lid material. A second set of cavities each contain a second medicament formulation and are covered by a second, separate lid material.
METHOD FOR THE PRODUCTION AND FILLING OF CONTAINERS DESIGNED TO CONTAIN FOOD
A method for the production and filling of containers designed to contain food, includes the steps of shaping a sheet made of PET (polyethylene terephthalate) in order to provide accommodation receptacles provided with at least one access inlet; filling, through the access inlet, the accommodation receptacles with at least one food; sealing the access inlet using a closure film; and providing a weakened portion at a connecting edge between at least two adjacent accommodation receptacles.
The final degree of crystallinity at the weakened portion is lower than, equal to, or greater than, at most by a percentage equal to 3%, the degree of crystallinity of portions of the connecting edge not affected by modifications occurring as a consequence of the step of emission of laser radiation and of the sealing step.
METHOD FOR THE PRODUCTION AND FILLING OF CONTAINERS DESIGNED TO CONTAIN FOOD
A method for the production and filling of containers designed to contain food, includes the steps of shaping a sheet made of PET (polyethylene terephthalate) in order to provide accommodation receptacles provided with at least one access inlet; filling, through the access inlet, the accommodation receptacles with at least one food; sealing the access inlet using a closure film; and providing a weakened portion at a connecting edge between at least two adjacent accommodation receptacles.
The final degree of crystallinity at the weakened portion is lower than, equal to, or greater than, at most by a percentage equal to 3%, the degree of crystallinity of portions of the connecting edge not affected by modifications occurring as a consequence of the step of emission of laser radiation and of the sealing step.
Dosing unit, a dosing method, and a machine for producing unit dose articles
A dosing unit for a machine for producing unit dose articles includes a plurality of nozzles carried by respective movable elements and associated to respective dosing chambers, a plurality of plungers reciprocally movable into respective dosing chambers between respective retracted and advanced positions, and a rotary fluid distributor including at least one stationary inlet and a plurality of movable outlets fluidically connected to the respective dosing chambers.
Pharmacy fulfillment and verification of non-sterile compounding
A method and apparatus for pharmacy fulfillment and verification of non-sterile compounding. A system includes an entry node, the entry node including at least a processor, a memory and an input/output device, the memory including at least an operating system and an order entry process, and a pharmacy fulfillment and verification of non-sterile compounding system, the entry node communicatively linked to the pharmacy fulfillment and verification of non-sterile compounding system, the pharmacy fulfillment and verification of non-sterile compounding system including a set of components, the set of components including at least a formulating component, a fabrication component and a dispensing component.
Method and device for producing a packaging body of packaging
A method for producing a packaging body (51) from a web material that comprises paper, wherein the packaging body (51) comprises an indentation (53) for receiving an item to be packaged, the method comprising: pre-tensioning the web material (14); fixing the web material (14) between a holding-down device (32) and a die (31); molding the indentation (53) in the web material (14); and removing the molded indentation (53) from the die (31).