Device for examining filled containers using obliquely...

G - Physics – 01 – N

Patent

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Details

G01N 23/04 (2006.01) B07C 5/34 (2006.01)

Patent

CA 2503887

The invention relates to a device for examining filled containers (10) for foreign bodies (26) such as glass slivers. Said device comprises a transport unit (16), which transports the containers (10) individually in line one behind the other on a transport plane, in addition to an X-ray source (18) for emitting an X-ray (24) in a predetermined direction and a unit (20, 22) for capturing the X-rays (24) once they have traversed the container (10). The direction, in which the X-rays (24) are emitted by the X-ray source (18) is inclined at between 10 and 60~ to the transport plane. Two X-ray sources can be provided (18), one above and one below the transport plane. The device is particularly suitable for examining filled containers (10) for foreign bodies, the X-ray source (18) being positioned in such a way that the course of the rays runs approximately tangentially to the maximum gradient of the convexity of the container base.

L'invention concerne un système servant à inspecter des contenants pleins (10) à la recherche de corps étrangers (26), tels que des débris de verre. Ce système comprend un dispositif de transport (16) au moyen duquel les contenants (10) sont transportés individuellement l'un à la suite de l'autre sur un plan de transport, ainsi qu'une source de rayons X (18) destinée à émettre un faisceau de rayons X (24) dans une direction prédéterminée et un dispositif (20, 22) destiné à détecter les rayons X (24) après que ceux-ci ont traversé les contenants (10). La direction dans laquelle les rayons X (24) sont émis par la source de rayons X (18) est inclinée de 10 à 60· par rapport au plan de transport. Le système selon l'invention peut comprendre deux sources de rayons X (18) : une au-dessus et une au-dessous du plan de transport. Ce système est adapté en particulier pour inspecter des contenants pleins (10) à la recherche de corps étrangers, la source de rayons X (18) étant placée de telle sorte que la trajectoire des rayons soit sensiblement tangentielle par rapport au degré maximal de courbure du fond du contenant.

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