IP Library › Granted Patent US 10,343,325
Granted Patent B2
US 10,343,325 · App. 15/523,431 · Granted Jul 9, 2019

Production apparatus of sterile receptacles, a bottling plant comprising the apparatus and a production method of a sterile receptacle

Inventors: Paolo Pagliarini (Parma, IT); Luigi Casappa (Mamiano, IT)
Assignee: GEA PROCOMAC S.P.A.
B29C49/46B29C49/06B29C49/36B29C33/72B29C45/24B29C49/6409B29C2033/727B29C2049/023B29C2049/1223B29C2049/4635B29C2049/4679B29C2049/4694B29C2049/4697B29L2031/7158
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Quick Facts
Patent No.
US 10,343,325
App. No.
15/523,431
Granted
Jul 9, 2019
Kind
B2
Abstract

An apparatus ( 1 ) for producing sterile receptacles ( 2 ), comprising: a molding unit ( 13 ) for molding parisons ( 4 ) starting from granules of thermoplastic material; a stretch-blowing forming unit ( 3 ) which receives the parisons ( 4 ) from the molding unit ( 13 ), the forming unit ( 3 ) having a plurality of forming stations ( 5 ) in each of which there is a mold ( 6 ) and a sterilization device ( 12 ) so as to form and sterilize the corresponding parison ( 4 ).

Claims (22)

1. Apparatus ( 1 ) for producing sterile receptacles ( 2 ), comprising:

a stretch-blowing forming unit ( 3 ) having a plurality of forming stations ( 5 ) in each of which two half-moulds ( 6 a , 6 b ) are arranged that can be moved towards one another to define at least one housing cavity ( 7 ) for housing a parison ( 4 ) made of thermoplastic material;

a moulding unit ( 13 ) for moulding parisons ( 4 ) starting from granules of thermoplastic material, said moulding unit ( 13 ) being placed upstream of said forming unit ( 3 );

a plurality of sterilisation devices ( 12 ), each of which is situated in one of said forming stations ( 5 ) so as to sterilise the parisons ( 4 ) that arrive in the corresponding housing cavities ( 7 ),

characterised in that said moulding unit ( 13 ) for moulding the parisons ( 4 ) comprises:

a plurality of moulding stations in each of which a mould ( 16 ) is arranged comprising a concave portion ( 16 a ) and a convex portion ( 16 b ) insertable in said concave portion ( 16 a );

means for cleaning ( 17 ) surfaces of said moulds ( 16 ) adapted to come into contact with said parisons ( 4 ),

wherein each sterilisation device ( 12 ) comprises a plasma generator ( 19 ) operatively active on the corresponding housing cavity ( 7 ).

2. Apparatus ( 1 ) according to claim 1 , wherein said means for cleaning ( 17 ) comprise nozzles ( 18 ) for dispensing a washing fluid which are arranged so as to dispense jets of washing fluid at least onto outer surfaces of the convex portions ( 16 b ) of said moulds ( 16 ).

3. Apparatus ( 1 ) according to claim 1 , wherein each sterilisation device ( 12 ) consists of a nozzle for nebulising a sterilising fluid, said nozzle pertaining to the corresponding housing cavity ( 7 ) so as to treat the parison ( 4 ) contained therein.

4. Apparatus ( 1 ) according to claim 1 , further comprising a thermal conditioning unit ( 23 ) interposed between said moulding unit ( 13 ) and said forming unit ( 3 ) so that the parisons ( 4 ) leaving said thermal conditioning unit ( 23 ) have a predefined thermal profile adapted to allow forming by stretch-blowing.

5. Apparatus ( 1 ) according to claim 4 , wherein said moulding unit ( 13 ) and said thermal conditioning unit ( 23 ) are arranged in an ultra-clean environment ( 24 ), i.e. in a volume that is separated from an external environment by means of a physical separation that has the purpose of limiting the entrance of contaminants from the external environment.

6. Bottling plant ( 100 ) comprising:

a production apparatus ( 1 ) of sterile receptacles ( 2 ) according to claim 1 ;

a filling apparatus ( 30 ) of formed receptacles ( 2 ) comprising a plurality of filling stations ( 35 ) and as many filling nozzles ( 36 ) each of which is positioned at one of said filling stations ( 35 );

a closing apparatus ( 40 ) of filled receptacles ( 2 ) comprising a plurality of closing stations ( 45 ) and as many closing heads ( 46 ) each of which is positioned at one of said closing stations ( 45 ).

7. Bottling plant ( 100 ) according to claim 6 , wherein said filling apparatus ( 30 ) comprises a first isolator ( 37 ) adapted to define a first controlled contamination environment ( 38 ) having a volume extending from said filling nozzles ( 36 ) to the position assumed by the neck ( 4 b ) of the receptacles ( 2 ) in said filling stations ( 35 ).

8. Bottling plant ( 100 ) according to claim 6 , wherein said closing apparatus ( 40 ) comprises a second isolator ( 47 ) adapted to define a second controlled contamination environment ( 48 ) having a volume extending from said closing heads ( 46 ) to the position assumed by the neck ( 4 b ) of the receptacles ( 2 ) in said closing stations ( 45 ).

9. Bottling plant ( 100 ) according to claim 6 , wherein said closing apparatus ( 40 ) comprises:

an application unit ( 140 ) of closures ( 50 ) configured to rest and press onto each receptacle ( 2 ) a concave closure ( 50 );

a tightening unit ( 141 ) for tightening the closures ( 50 ) configured to screw each concave closure ( 50 ) to the neck ( 4 b ) of the corresponding receptacle ( 2 ), said application unit ( 140 ) for applying the closures ( 50 ) comprising a third isolator ( 147 ) adapted to define a third controlled contamination environment ( 148 ) having a volume that extends into a narrow zone around the neck ( 4 b ) of the receptacles ( 2 ).

10. Bottling plant ( 100 ) according to claim 9 , wherein said tightening unit ( 141 ) is a non-aseptic capper.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 1, 2017
From: PAGLIARINI, PAOLO; CASAPPA, LUIGI
To: GEA PROCOMAC S.P.A.
Reel/Frame 042196/0741 →
Priority Claims (1)
IT PR2014A0078 · Dec 1, 2014 · national
Continuity (1)
Related Publication 20170312977A1 · Nov 2, 2017