Abstract:
Le bec de remplissage selon l'invention comporte un conduit tubulaire (1) ayant une ouverture (3), des moyens de fermeture (4) de l'ouverture (3) disposés en regard de celleci, des moyens de commande (5) des moyens de fermeture et un ajutage (13) ayant un orifice calibré (14) plus petit que l'ouverture (3) et espacé de celle-ci. Lors de la fermeture du clapet (4), on obtient ainsi un volume de réserve (16) pouvant se vider rapidement dans un récipient.
Abstract:
La présente invention concerne des installations de remplissage de récipients. Le dispositif de contrôle comporte un carrousel de transfert 20 disposé en série par l'intermédiaire d'une étoile de transfert4, avec un carrousel de remplissage à dosage pondéral 10. Le carrousel de transfert comporte n,-1 postes statiques 21 et un poste de balance de comparaison 22, le nombre n, des postes du carrousel de transfert étant premier avec le nombre n des postes 11 du carrousel de remplissage 10, permettant ainsi d'établir un pesage de comparaison des récipients remplis 100 prélevés de façon séquentielle à partir du carrousel de remplissage et ainsi de corriger individuellement les balances de pesage du carrousel de remplissage 10. Application notamment aux installations d'embouteil- age
Abstract:
The invention relates to an electromagnetic actuator comprising a coil (1), a magnetic actuation element (3) which is mounted in the coil, at least one ring (6) which is made from a magnetic material and which is disposed around the coil and at least one permanent magnet (5) which is joined to one end of the ring and which is disposed opposite one part of the external surface of the coil (1), said permanent magnet having a magnetisation field that extends along an axial direction of the coil (1). Moreover, the magnetic actuation element is mounted to slide in a non-magnetic guide element (2) that extends in the coil and one end of the ring is disposed opposite the magnet which is separated from the non-magnetic guide element by a non-magnetic space.
Abstract:
The invention relates to a filling tube consisting of a tubular body (1) having a flap valve (11) and a magnetically-actuated element (4) mounted therein. The aforementioned magnetically-actuated element (4) is connected to the flap valve by means of a coupling member (18) comprising two elements (19, 21) which are connected using a link with radial play.
Abstract:
The invention discloses a rotary device for conveying containers (100) comprising a circular guiding member and a driving member (5) mounted concentrically to the guiding member on a driving shaft (3) mounted in a bearing comprising a bearing body (2). The guiding member (15) comprises a track (18) and at least one external rail (19), and is rigidly linked with the bearing body (2).
Abstract:
A device comprising a disc-shaped sealing member (1) movably mounted opposite a cylindrical wall (2) that includes grooves (6) extending opposite the sealing member (1) and facing an outlet port (3).
Abstract:
The invention concerns a threaded joint spindle comprising a spindle shaft (5) provided with a prehensile device (6) and integral with a pinion (7) driven in rotation by a motor set (11) which comprises a cylinder (17) with a rod secured to a transmission member (12, 14, 15, 16), and a member for adjusting pressure (21) arranged on a line supplying (22) the cylinder in a screwing direction.
Abstract:
The invention discloses a rotary device for conveying containers (100) comprising a circular guiding member and a driving member (5) mounted concentrically to the guiding member on a driving shaft (3) mounted in a bearing comprising a bearing body (2). The guiding member (15) comprises a track (18) and at least one external rail (19), and is rigidly linked with the bearing body (2).
Abstract:
A device comprising a drive assembly (13, 47) made of a magnetic material and coupled to a sealing member (11, 45). The drive assembly is operably connected to a magnetic field generator (33, 53) that is connected to a control member (35, 55) and mounted inside a sleeve (21) made of a non-magnetic material and secured to a tubular housing (1). The sleeve (21) extends in a substantially axial direction relative to the tubular housing and has a closed end and an opposite end open to the outside of the tubular housing (1). The drive assembly (13, 47) extends outside the sleeve (21) opposite the magnetic field generator (33, 53).