Patent classifications
B65B39/12
Enhanced apparatus for filling bags
An enhanced apparatus (10) for filling bags containing products, in particular fruit and vegetable products, arranged in first bags (16) having dimensions smaller than second bags filled with said first bags and comprising a feeding station (12) which feeds first bags (16) to a second bag filling station (18) which fills second bags with the first bags (16), a meshed material feeding station (20) to form bands of second bags, a closing and cutting station (22) which closes and cuts second bags filled with the first bags, said filling station (18) being an intermediate station between said meshed material feeding station (20) and said closing and cutting station (22), the apparatus comprising automatic sorting and selection means, integrated in the filling station (18), which automatically sort and select the first bags (16) fed by the feeding station (12) to transportation means suitable for moving said first bags (16), after being sorted, towards collection/accumulation means comprising unloading means providing for a centered downloading of said first bags into second bags.
AUTOMATIC FILLING AND PACKAGING DEVICE
An object is to provide an automatic filling and packaging device which enhances the efficiency of packaging work and which suppresses the occurrence of defective products to achieve satisfactory yield.
In an automatic filling and packaging device, a locating means, a pair of upper gusset nails, a pair of intermediate gusset nails, a pair of lower gusset nails, and a blade-equipped sealing device are formed into a unit as a unit main body, and the unit main body and the pusher member are formed to be able to freely move close to and apart from each other. In this way, as compared with a conventional automatic filling and packaging device, it is possible to reduce the total time in which one article to be packaged is filled into one packaging bag and then the opening end portion thereof is sealed, with the result that it is possible to enhance the efficiency of packaging work.
BAG PROCESSING MACHINE
A bag processing machine includes: a rotation body which is intermittently rotated; a plurality of holding units which are attached to the rotation body and are moved along a circular movement path in accordance with rotation of the rotation body, the movement path being divided into a plurality of processing sections; a fixation support member which is positioned above the rotation body and does not rotate by rotation of the rotation body; and two or more processing devices which are supported by the fixation support member and perform processes on bags held by the plurality of holding units in two or more processing sections respectively of the plurality of processing sections.
DOSING APPARATUS, AND MACHINE AND METHOD FOR PRODUCING UNIT DOSE ARTICLES
A dosing apparatus for a machine for producing unit dose articles including first and second dosing units each having: a nozzle support body carrying a plurality of nozzles, and a movement control unit configured for moving the respective nozzle support body along a closed-loop path, wherein the movement control units of the first and second dosing units are configured for moving the respective nozzle support bodies independently of each other along the closed-loop path.
DOSING APPARATUS, AND MACHINE AND METHOD FOR PRODUCING UNIT DOSE ARTICLES
A dosing apparatus for a machine for producing unit dose articles including first and second dosing units each having: a nozzle support body carrying a plurality of nozzles, and a movement control unit configured for moving the respective nozzle support body along a closed-loop path, wherein the movement control units of the first and second dosing units are configured for moving the respective nozzle support bodies independently of each other along the closed-loop path.
Folded package and method of formation
The technology described herein generally relates to particular form of folded package and the method of forming that folded package. The package packages loose particles into a conical container and secures the filling with a folded distal end. More specifically, loose plant matter, such as crumbled dried leaves, are supplied as filling and the package may further be provided with a fluid core.
Folded package and method of formation
The technology described herein generally relates to particular form of folded package and the method of forming that folded package. The package packages loose particles into a conical container and secures the filling with a folded distal end. More specifically, loose plant matter, such as crumbled dried leaves, are supplied as filling and the package may further be provided with a fluid core.
VARIABLE SIZE HOLE MULTI-HOLE NOZZLE AND COMPONENTS THEREOF
A multi-hole nozzle component having a periphery, an inlet side and an opposing outlet side. The nozzle component having a plurality of first passageways having a plurality of first openings each first opening having a first opening area, a plurality of second passageways having a plurality of second openings each second opening having a second opening area, and a plurality of third passageways having a plurality third openings each third opening having a third opening area. The plurality of second openings are arranged about the plurality of first openings. The plurality of third openings are arranged about the plurality of first openings. The second opening area is greater than the first opening area and the second opening area is about equal to the third opening area.
Method for elimination of powder segregation during can filling
A powder filling method includes introducing a tube into a can so that the lower end of the tube is near the bottom of the can. The powder in the can is introduced through the tube. The proximity of the lower end of the tube to the powder is controlled by retracting the tube as the powder fills the can.
Method for elimination of powder segregation during can filling
A powder filling method includes introducing a tube into a can so that the lower end of the tube is near the bottom of the can. The powder in the can is introduced through the tube. The proximity of the lower end of the tube to the powder is controlled by retracting the tube as the powder fills the can.