Abstract:
An apparatus comprises rotating conveying means (301, 302, 303, 2; 301, 160, 303, 2) for conveying along a curved path components (10, 25) of packaging units comprising containers (10) and container closures (25), filling means (30) for filling with a product said containers (10) on said rotating conveying means (301, 302, 303, 2; 301, 160, 303, 2), sterilising means (21, 37) for sterilising at least part of said components (10, 25) mounted along said path and comprising irradiating means arranged to emit radiation.
Abstract:
The invention relates to a capping machine comprising a protected area from impurities, an unprotected area divided from the protected area by a parting wall, and an operating unit. The operating unit includes a container support element arranged in the protected area, an operating head arranged in the protected area and configured to apply one capsule on the relative container, a motor assembly arranged in the unprotected area and configured to drive motion of the operating head, a torque control head between the motor assembly and the operating head, and an annular bellows element coaxial with the vertical axis and within the protected area and one opposite axial end crossed in a sealed manner by an output shaft of the torque control head. The torque control head is arranged above the parting wall in the unprotected area and the output shaft crosses said opening and the entire bellows element.
Abstract:
A capping head for applying caps on containers or bottles and a capping assembly are provided. The capping head comprises a gripping assembly having a hollow body longitudinally extending along a vertical axis and internally defining a seat for the cap, the seat being delimited at its lower end by an inlet mouth for the introduction of the cap. A moving assembly is connected to the gripping assembly for controlling the movements thereof and is hermetically separated therefrom, and an ejector member is housed inside the hollow body of the gripping assembly, in such a manner that it is free to axially slide. The ejector member carries first and second magnetic elements such that a relative axial approach of the second magnetic element towards the first magnetic element results in a translation of the ejector member towards the lower inlet mouth of the gripping assembly.
Abstract:
A filling/closing device comprises a conditioned zone 2 for performing operations to containers. A drive actuator 11 of an operating system is movable with into and out of the zone. The drive actuator extends through a decontamination box 14 with an outer suction chamber 15 and an inner sterilization chamber 16 is provided. A sterilization medium supply 17 connects to the sterilization chamber, and a discharge 22 connects to the suction chamber. One or more outflow gaps 20, 21 are provided which connect the sterilization to the suction chamber. According to the invention an inner inflow gap 24 is provided in between the suction chamber and the drive actuator which connects the zone to the suction chamber.
Abstract:
A unit for carrying out an operation on a container fillable with a pourable product is disclosed. The unit comprises: a first area; a second area; at least one operative head, which is adapted to carry out the operation; at least one gripping device for gripping the container and which is movable between a rest position, in which the at least one gripping device receives or discharges the container; and an operative position, in which the at least one gripping device sets the container in a position in which the container undergoes the operation. The unit further comprises: a movable element, which is operatively connected to the at least one gripping device for moving the at least one gripping device between the rest position and the operative position, and which comprises a portion movable between the first area and the second area; and a bellow.
Abstract:
A method for closing receptacles (2), comprising steps of: in a controlled-contamination environment (6) having a volume that extends into a restricted zone about the neck (2b) of the receptacles, resting and pressing a closure (10) onto a mouth (2a) of each receptacle (2); screwing the capsule (10) onto the neck (2b) of the corresponding receptacle (2) externally of the controlled contamination environment (6).
Abstract:
A closer for containers, in particular bottles, with a closing head acting in a clean room and with an electric motor comprising at least one rotor and at least one stator, with the closing head connected with the rotor, and an element for clean room separation is formed between the rotor and the stator.
Abstract:
A closing machine for closing containers has closing stations. Each station has a closer tool, a magnetically acting coupling element, a drive space, a product space, a linear drive, and a driver. The magnetically acting coupling element has inner and outer magnet elements. The drive space is formed separately from the product space. The linear guide positively drives the outer magnet element. The driver positively carries along said closer tool in a required height movement.
Abstract:
An apparatus for treating containers includes a housing, inside which a sterile chamber is formed. A treatment element is arranged inside the housing and is rotatable about a predefined axis. The treatment element is arranged on a carrier inside the housing, and has a drive device for driving the treatment element. The drive device is arranged at least partially outside the sterile chamber and includes at least a first drive element arranged outside the sterile chamber for generating rotational movements, and a second drive element arranged inside the sterile chamber. The first drive element and the second drive element cooperate in a contactless manner to generate rotational movement of the treatment element. The drive elements in each case have at least one magnetisable element and preferably at least the second drive element is displaceable in the direction of its axis of rotation relative to the sterile chamber.
Abstract:
A closing machine for closing containers has closing stations. Each station has a closer tool, a magnetically acting coupling element, a drive space, a product space, a linear drive, and a driver. The magnetically acting coupling element has inner and outer magnet elements. The drive space is formed separately from the product space. The linear guide positively drives the outer magnet element. The driver positively carries along said closer tool in a required height movement.