IP Library › Granted Patent US 10,150,624
Granted Patent B2
US 10,150,624 · App. 15/564,128 · Granted Dec 11, 2018

Device for aligning and righting preforms, comprising a bowl centrifuge equipped with means for ejecting misaligned preforms

Inventors: Denis Doudement (Octeville-sur-mer, FR); Anthony Debris (Octeville-sur-mer, FR); Frederic Willig (Octeville-sur-mer, FR); Eric Mazo (Octeville-sur-mer, FR)
Assignee: SIDEL PARTICIPATIONS
B65G47/1464B29C49/4205B65G47/256B29C49/06B29C2049/4231B29K2067/003B29L2031/7158B65D1/0223B65G2201/0244
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Quick Facts
Patent No.
US 10,150,624
App. No.
15/564,128
Granted
Dec 11, 2018
Kind
B2
Abstract

Disclosed is a device for aligning preforms in a row and righting same, the device including a bowl centrifuge formed by: a horizontal circular platen rotating about a vertical axis; a fixed peripheral rail; at least a first angular sector for aligning the preforms against the rail; and at least a second angular sector for righting the preforms. The device includes a unit for actively ejecting incorrectly aligned preforms from the row of correctly aligned and righted preforms.

Claims (32)

1. A device ( 10 ) for aligning in a row and righting preforms ( 12 ), with the device ( 10 ) being intended to be applied to axisymmetrical thermoplastic preforms ( 12 ) for blow molding containers, said preforms having necks ( 16 ) that are separated from bodies ( 14 ) by annular support faces ( 18 ) projecting relative to the body ( 14 ), the device ( 10 ) comprising:

a centrifuge bowl ( 20 ) that is formed by:

a horizontal circular platen ( 24 ) that rotates around a vertical axis (B), the platen having an outer edge ( 25 ),

wherein the platen has at least a first angular sector ( 20 A) and a second angular section ( 20 B) that is arranged downstream from said first angular sector ( 20 A),

a stationary peripheral railing ( 28 ),

a peripheral gap ( 34 ) located within the second angular section ( 20 B) of the platen at a radial separation of the peripheral railing ( 28 ) relative to the outer edge ( 25 ) of the platen ( 24 ), and

at least one exit passage ( 32 ) arranged downstream from said second angular sector ( 20 B) of the platen in the direction of rotation of the platen ( 24 ),

the first angular sector ( 20 A) of the platen for aligning the preforms ( 12 ) against the railing ( 28 ),

the second angular sector ( 20 B) of the platen for righting the aligned preforms ( 12 ) at the peripheral gap ( 34 ) to have the righted aligned preforms ( 12 ) supported by their support face ( 18 ), with the body ( 14 ) of each righted aligned preform ( 12 ) hanging outside of the bowl ( 20 ) through said gap ( 34 ) while the neck ( 16 ) of each righted aligned preform ( 12 ) remains inside the bowl ( 20 ) and forms part of a row of correctly-aligned and righted preforms ( 12 ), and

at least one exit passage ( 32 ) arranged downstream from said second angular sector ( 20 B) in the direction of rotation of the platen ( 24 ), the at least one exit passage ( 32 ) accepting the row of correctly-aligned and righted preforms ( 12 ); and

an ejector mechanism structured for actively ejecting incorrectly-aligned preforms ( 12 N) from the row of correctly-aligned and righted preforms ( 12 ).

2. The device ( 10 ) according to claim 1 , wherein the active ejector mechanism comprises at least a first wheel ( 40 , 42 ) with pallets ( 46 ) that is arranged to rotate in the bowl ( 20 ) above the rotating platen ( 24 ) around a stationary axis (C, E), a space swept by the pallets ( 46 ) extending outside of a volume through which the necks ( 16 ) of the correctly-aligned preforms ( 12 ) go.

3. The device ( 10 ) according to claim 2 , being intended to be applied to the axisymmetrical preforms ( 12 ), each of the preforms having an outside diameter of the preform body, the preforms to which the device is applied having body outside diameters that are greater or equal to a minimum outside diameter of the body of the preforms, wherein at least one of the pallets ( 46 ) sweeps at least one space that is located above the rotating platen ( 24 ) at a vertical distance (D 4 ) that is smaller than said minimum outside diameter of the body ( 14 ) of the preforms ( 12 ) and at a radial edge distance (D 5 ) of the rotating platen ( 24 ) that is smaller than said minimum outside diameter of the body of the preforms ( 12 ) to eject the preforms ( 12 N) that are incorrectly aligned overall in the direction of the center of the rotating platen ( 24 ).

4. The device ( 10 ) according to claim 3 , wherein each pallet ( 46 ) sweeps a space that extends vertically above the gap ( 34 ) at a distance that is essentially equal to the height of the neck ( 16 ) of a preform ( 12 ) that is intended to be aligned correctly.

5. The device ( 10 ) according to claim 4 , wherein each pallet ( 46 ) has a cutaway ( 48 ) design for simultaneously:

i) preventing a neck of a correctly aligned preform in the gap from interfering with a space swept by the pallet, and

ii) allowing the pallet to sweep a volume extending above the platen and below the height of said neck.

6. The device according to claim 2 , wherein the axis (C, E) of rotation of the first wheel ( 40 , 42 ) is essentially vertical.

7. The device according to claim 3 , further comprising at least one stationary deflector ( 44 ) that is arranged above the rotating platen ( 24 ) at a distance that is smaller than the minimum diameter of the body ( 14 ) of a preform ( 12 ) and that extends to downstream from the outlet by coming close to the center of the rotating platen ( 24 ) in the direction of rotation of the rotating platen ( 24 ).

8. The device according to claim 7 , the first wheel ( 40 ) with pallets ( 46 ) is arranged directly upstream from the deflector ( 44 ).

9. The device according to claim 8 , wherein each pallet ( 46 ) of the first wheel has a cutaway ( 48 ) design for simultaneously preventing a neck of a correctly aligned preform from interfering with a space swept by the pallet, and allowing the pallet to sweep a volume extending above the platen and below the height of said neck, and the active ejector mechanism further comprising a second wheel ( 42 ) with pallets ( 46 ) that is interposed between the deflector ( 44 ) and the exit passage ( 32 ) in the direction of rotation of the rotating platen.

10. The device according to claim 8 , wherein the first wheel ( 40 ) with pallets ( 46 ) is arranged downstream from the angular righting sector ( 20 B).

11. The device ( 10 ) according to claim 2 , wherein each pallet ( 46 ) sweeps a space that extends vertically above the gap ( 34 ) at a distance that is essentially equal to the height of the neck ( 16 ) of a preform ( 12 ) that is intended to be aligned correctly.

12. The device according to claim 3 , wherein the axis (C, E) of rotation of the first wheel ( 40 , 42 ) is essentially vertical.

13. The device according to claim 4 , wherein the axis (C, E) of rotation of the first wheel ( 40 , 42 ) is essentially vertical.

14. The device according to claim 1 , further comprising at least one stationary deflector ( 44 ) that is arranged above the rotating platen ( 24 ) at a distance that is smaller than the minimum diameter of the body ( 14 ) of a preform ( 12 ) and that extends to downstream from the outlet by coming close to the center of the rotating platen ( 24 ) in the direction of rotation of the rotating platen ( 24 ).

15. The device according to claim 2 , further comprising at least one stationary deflector ( 44 ) that is arranged above the rotating platen ( 24 ) at a distance that is smaller than the minimum diameter of the body ( 14 ) of a preform ( 12 ) and that extends to downstream from the outlet by coming close to the center of the rotating platen ( 24 ) in the direction of rotation of the rotating platen ( 24 ).

16. The device according to claim 4 , further comprising at least one stationary deflector ( 44 ) that is arranged above the rotating platen ( 24 ) at a distance that is smaller than the minimum diameter of the body ( 14 ) of a preform ( 12 ) and that extends to downstream from the outlet by coming close to the center of the rotating platen ( 24 ) in the direction of rotation of the rotating platen ( 24 ).

17. The device according to claim 5 , further comprising at least one stationary deflector ( 44 ) that is arranged above the rotating platen ( 24 ) at a distance that is smaller than the minimum diameter of the body ( 14 ) of a preform ( 12 ) and that extends to downstream from the outlet by coming close to the center of the rotating platen ( 24 ) in the direction of rotation of the rotating platen ( 24 ).

18. The device according to claim 6 , further comprising at least one stationary deflector ( 44 ) that is arranged above the rotating platen ( 24 ) at a distance that is smaller than the minimum diameter of the body ( 14 ) of a preform ( 12 ) and that extends to downstream from the outlet by coming close to the center of the rotating platen ( 24 ) in the direction of rotation of the rotating platen ( 24 ).

19. The device according to claim 9 , wherein the first wheel ( 40 ) with pallets ( 46 ) is arranged downstream from the angular righting sector ( 20 B).

20. The device according to claim 2 , wherein at least one pallet is located to hit preform bodies lying on the platen and moving toward the space swept by the ejector mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2017
From: DOUDEMENT, DENIS; DEBRIS, ANTHONY; WILLIG, FREDERIC; MAZO, ERIC
To: SIDEL PARTICIPATIONS
Reel/Frame 044043/0788 →
Priority Claims (1)
FR 15 53374 · Apr 16, 2015 · national
Continuity (1)
Related Publication 20180079599A1 · Mar 22, 2018
Cited By (2)
US 12,319,513 US 12,703,576