Abstract:
A packaging installation having at least one filler station includes a filler spout and a connection member connected firstly to a feed duct and secondly to a purge duct in order to connect these ducts to the spout. The connection member includes a spout supply pipe connected to the feed duct and a return pipe opening out into the spout and connected to the purge duct. The supply pipe and the return pipe are entirely independent of each other, such that the connection member acts continuously to connect in series the feed duct, the supply pipe, the spout, the return pipe, and the purge duct.
Abstract:
A pipe includes at least one first section connected to a second section by a hinged element allowing a predetermined angular movement of the first section relative to the second section under a predetermined minimum force. The hinged element includes two end pieces connected respectively to the first section and to the second section and hinged with each other to allow the angular movement, and a tube having ends connected to the end pieces so as to be elastically deformable under the predetermined force according to the predetermined angular movement. The sections and the end pieces themselves are rigid under the predetermined minimum force. A treatment facility include such pipes.
Abstract:
A packaging installation having at least one filler station includes a filler spout and a connection member connected firstly to a feed duct and secondly to a purge duct in order to connect these ducts to the spout. The connection member includes a spout supply pipe connected to the feed duct and a return pipe opening out into the spout and connected to the purge duct. The supply pipe and the return pipe are entirely independent of each other, such that the connection member acts continuously to connect in series the feed duct, the supply pipe, the spout, the return pipe, and the purge duct.
Abstract:
A method for manufacturing receptacles, comprising the steps of: heating tubes separate from each other, each tube being obtained by shaping at least one blank as a tube in order to have two edges of the blank facing each other and fixing the two facing edges to each other; introducing each tube into a mould and blowing a gas therein in order to form the receptacle. A machine for implementing this method.
Abstract:
A mold comprising at least two mold portions, at least one of which includes a vent opening out to the inside of the cavity and to the outside of the mold and presenting a flow section that is predetermined to enable air to be exhausted when the mold is closed. Said mold portion comprises at least two parts that extend over an entire dimension of the mold cavity and that are assembled together, the parts being held apart from each other by at least one spacer so as to define between them a gap that opens out to the inside of the cavity and to the outside of the mold in order to form the vent. A blow-molding machine including such a mold.
Abstract:
An installation for sterilizing articles by radiation, the installation having a radiation-generator device and an article support device disposed facing the radiation-generator device. Devices for moving the articles in front of the radiation-generator device are provided. The article support device comprises devices for varying the orientation of the articles when the articles move in front of the radiation-generator device.
Abstract:
An installation for transporting containers, the installation comprising a rotary platform (1, 2) provided in its periphery with slots (7.1, 7.2), a jaw (8.1, 8.2) being mounted on the platform in the vicinity of each slot in order to be movable between a closed position for holding a container in the slot and an open position. Each jaw comprises a resilient element (9.1, 9.2) having a portion (9.11, 9.21) fastened to the platform in the vicinity of the slot in order to have a free end (9.12, 9.22) that extends facing the slot and that is elastically deformable between a rest state in which the free end co-operates with a side wall of the slot to define a section smaller than the cross-section of the neck, and a deformed state in which the free end cooperates with the side wall of the slot to define a section greater than the cross-section of the neck.
Abstract:
The method for filling containers comprises the following stages: closing an exhaust duct in a calibrated manner (61,62) according to a calibration to an exhaust pressure that is lower than the distribution pressure; placing into position a container to be filled; opening a distribution valve (24) and keeping it open until the closure of an exhaust check valve (46); closing the distribution valve (24).
Abstract:
A method of filling by weight containers having respective bottoms standing on a conveyor. The method comprises the steps of: grasping each container in order to separate it from the conveyor and to bring it up to a substance dispenser spout; weighing the container while it is held separated from the conveyor under the dispenser spout and while simultaneously filling it in order to reach a desired weight; and putting the container back onto the conveyor. An installation for performing the method.
Abstract:
An installation for treating articles by radiation, the installation comprising a structure (1) having an article transport device (10) mounted thereon with a portion housed in a shielded enclosure (2) in the vicinity of at least one radiation emitter (3), the enclosure including a tunnel (40) having internal transverse partitions (51, 52, 53, 54) defining a baffle passage (50) through which there extends a segment of the transport device. The partitions are arranged in such a manner that the baffle passage extends in a plane that is substantially vertical.A packaging installation including such a processing installation.