Abstract:
A buffer means and a method for buffering containers, in particular in a container handling apparatus, like for example bottles in a bottle filling apparatus, is described. The buffer means comprises at least a first conveyor track. Furthermore at least a second conveyor track is provided, which is drivable along a second transport direction. The first conveyor track and the second conveyor track are parallel to each other and form a buffer module. A transfer device transfers the containers from an infeed conveyor track onto an outlet conveyor track of the buffer module. By means of a sliding device the required buffer capacity of the buffer means can be set. Between the infeed conveyor track and the outlet conveyor track of a buffer module at least two further drivable transfer conveyors are provided. Thus a closed surface of the buffer module is created.
Abstract:
Disclosed is a method for molding plastic preforms into plastic containers using a blow mould assembly including a blow mould unit, wherein a part of the blow mould unit is retained on a blow mould holder element using negative pressure.
Abstract:
The disclosure relates to a buffer device and a method for buffering piece goods, in particular containers, bottles or packages, with a buffer area, a feed device for supplying piece goods to the buffer area, a discharge device for discharging piece goods from the buffer area. The device additionally comprises several circulating, independently drivable row pushers which can transport the piece goods in the direction of transport through the buffer area.
Abstract:
An apparatus for the conveying of plastics material containers and, in particular, plastics material pre-forms with a first roller arranged so as to be rotatable about its longitudinal axis, with a second roller arranged so as to be rotatable about its longitudinal axis, wherein the first roller and the second roller are arranged with respect to each other such that the plastics material containers can be conveyed between these rollers, wherein the plastics material container is supported by the two rollers during conveying. At least one roller has a main body produced from a first material and a layer which surrounds this main body in its peripheral direction and which is produced from a plastics material differing from the first material, wherein this layer acts as a contact layer for contacting the plastics material containers.
Abstract:
A storage section for the intermediate storage of articles, packaged or piece goods of a conveyor device. The storage section has at least one storage span on a first level and at least one empty span on a second level that is connected with the storage span. The storage span has two flexible loading and transport sections that run parallel to one another in opposite directions on the first level for the articles, packaged or piece goods to be stored, connected by a first diversion section. The endlessly circulating loading and transport sections are connected by a second diverting section in the area of the empty span. The positions of the first diversion section and the second diversion section can be changed in opposite directions such that a storage volume of the storage span can be varied.
Abstract:
Method for monitoring and controlling a loading rate of a transport section with one or several individually speed-controlled consecutive partial sections (T1, T2, T3) in a filling line, including detecting a container loading over a certain region at an incoming region (E1) of the transport section; simulating a container flow in real time using the detected container loading in the incoming region of the transport section and a transport speed, the simulation including: entering the detected value for the container loading into a shift register (SR1); and synchronizing a shift register clock with the transport speed, so that the shift register content (DW0, DW1, . . . ) represents the container loading on the transport section.
Abstract:
Method for monitoring and controlling a loading rate of a transport section with one or several individually speed-controlled consecutive partial sections (T1, T2, T3) in a filling line, including detecting a container loading over a certain region at an incoming region (E1) of the transport section; simulating a container flow in real time using the detected container loading in the incoming region of the transport section and a transport speed, the simulation including: entering the detected value for the container loading into a shift register (SR1); and synchronizing a shift register clock with the transport speed, so that the shift register content (DW0, DW1, . . . ) represents the container loading on the transport section.
Abstract:
A blowing mould array includes a blowing mould unit forming a cavity, inside of which plastic preforms are expanded to plastic containers. The blow mould unit includes a blowing mould retainer having at least two mould retainer elements for accommodating parts of the blowing mould unit, and a locking mechanism to arrest at least one part of the blowing mould unit against at least one mould retainer element. The locking mechanism includes an engagement element that can be pivoted and/or shifted relative to a default axis, which in an arrested state abuts a segment of a part of the blowing mould unit. The locking mechanism has an actuating element to loosen the arrest between the mould retaining element and the blowing mould unit. Actuation of the actuating element is coupled with actuation of the engagement element.