IP Library Granted Patent US 9,108,833
Granted Patent B2
US 9,108,833 · App. 13/514,678 · Granted Aug 18, 2015

Apparatus for screwing a ring nut of a trigger pump on a container

Inventor: Renzo Vesentini (Marmirolo, IT)
Assignee: REJVES S.R.L.
B67B3/2033B67B3/2073B67B2201/12Y10T29/49826Y10T29/53
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Quick Facts
Patent No.
US 9,108,833
App. No.
13/514,678
Granted
Aug 18, 2015
Kind
B2
Abstract

A method for screwing a ring nut of a trigger-shaped ( 5 ) pump or trigger ( 1 ) on a vessel ( 6 ), the pump or trigger being provided with a threaded fixing ring nut ( 2 ) by a gripping lever assembly ( 11 ). The method includes the steps of: screwing the ring nut on the threaded mouth of the vessel by screwing it to the body until the screwing torque does not reach a preset value; performing a first detachment of elements for tightening the ring nut; rotating the tightening elements ( 11 ), by an associated motor, relocating them in their starting configuration, by clearing the trigger by the presence of the levers ( 11 ) themselves; lastly, performing a further opening of the tightening elements from the ring nut ( 2 ); the driving being necessary for completely opening the gripper and clearing the trigger.

Claims (29)

1. A head ( 10 ) for screwing a ring nut of a trigger pump ( 1 ) on a vessel ( 6 ), the trigger pump ( 1 ) being provided with i) a body ( 8 ), ii) a driving trigger ( 5 ), iii) a dip pipe ( 4 ) extending downward from the body ( 8 ) and intended to be inserted within the vessel ( 6 ), and iv) an externally-toothed ring nut ( 2 ) free to rotate relative to the body ( 8 ) of the pump and is internally threaded ( 3 ) in correspondence with threading provided on the neck of the vessel ( 6 ), said head ( 10 ) comprising:

a gripping unit comprised of a plurality of clamping levers ( 11 ) arranged about a longitudinal axis ( 10 a ), the clamping levers drivable between i) a first open position that allows an introduction of the trigger pump ( 1 ) between the levers, and ii) a second closed position where the clamping levers grip the ring nut ( 2 ) between the clamping levers;

a motor drive ( 16 ) operatively connected to axially rotate the clamping levers, when the clamping levers are in the second closed position, about the longitudinal axis ( 10 a ) such that the clamping levers axially rotate the ring nut ( 2 ) in a screwing-on direction to screw the ring nut ( 2 ) onto the threading provided on the neck of the vessel ( 6 ) with the clamping levers avoiding interference with the driving trigger ( 5 ) during the rotation of the clamping levers; and

an electronic apparatus ( 22 ) operatively connected to the motor and configured to detect a present position of the clamping levers relative to the trigger pump ( 1 ) to thereby define or not define interference conditions of the clamping levers ( 11 ) with the driving trigger ( 5 ),

wherein the clamping levers ( 11 ) are shaped such that, in the second position during rotation of the clamping levers, the clamping levers have clearance over the driving trigger ( 5 ), wherein,

the clamping levers are hinged at a pivot point (C),

each of the clamping levers have a substantially C shape, a bottom portion of the C shape terminating with a plate ( 11 A) and extending first downward and then upwardly to the pivot point,

a distal end of the driving trigger ( 5 ) extends a first distance perpendicular to the longitudinal axis ( 10 a ), and

the C shape defines an inside surface of each clamping lever such that, in the second position during rotation of the clamping levers, a closest inside surface of each clamping lever to the distal end of the driving trigger ( 5 ), has a second distance perpendicular to the longitudinal axis ( 10 a ) greater than the first distance perpendicular to the longitudinal axis ( 10 a ) such that the clamping levers each have clearance over the driving trigger ( 5 ) during the rotation of the ring nut ( 2 ) in the screwing-on direction when screwing the ring nut ( 2 ) onto the threading provided on the neck of the vessel ( 6 ).

2. The head ( 10 ) according to claim 1 , further comprising an axially sliding cylinder ( 12 ), wherein the clamping levers ( 11 ) are driven from the first open position to the second closed position by the axially sliding cylinder ( 12 ) moving between a first cylinder position and a second cylinder position.

3. The head ( 10 ) according to claim 1 , wherein,

the clamping levers ( 11 ) are hinged parallel to the longitudinal axis ( 10 a ) on an assembly that axially rotates about the longitudinal axis ( 10 a ), and

an angular rotation of the assembly about the longitudinal axis ( 10 a ) drives clamping levers ( 11 ) from the first open position to the second closed position.

4. The head ( 10 ) according to claim 1 in combination with a rotating capping machine that rotates axially.

5. The head ( 10 ) according to claim 1 in combination with a linear capping machine.

6. A head ( 10 ) for screwing a ring nut of a trigger pump ( 1 ) on a vessel ( 6 ), the trigger pump ( 1 ) being provided with i) a body ( 8 ), ii) a driving trigger ( 5 ), iii) a dip pipe ( 4 ) extending downward from the body ( 8 ) and intended to be inserted within the vessel ( 6 ), and iv) an externally-toothed ring nut ( 2 ) which is free to rotate relative to the body ( 8 ) of the pump and is internally threaded ( 3 ) in correspondence with threading provided on the neck of the vessel ( 6 ), said head ( 10 ) comprising:

a gripping unit comprised of a plurality of clamping levers ( 11 ) arranged about a longitudinal axis ( 10 a ) and axially rotatable about the longitudinal axis ( 10 a ), the clamping levers drivable between i) a first open position that allows an introduction of the trigger pump ( 1 ) between the levers, and ii) a second closed position where the clamping levers grip the ring nut ( 2 ) between the clamping levers,

wherein with the clamping levers in the second closed position, rotation of the clamping levers about the longitudinal axis ( 10 a ) rotates the ring nut ( 2 ) in a screwing-on direction to screw the ring nut ( 2 ) onto the threading provided on the neck of the vessel ( 6 ) with the clamping levers avoiding interference with the driving trigger ( 5 ), and

wherein the clamping levers ( 11 ) are shaped such that, in the second position during rotation of the clamping levers, the clamping levers have clearance over the driving trigger ( 5 ),

wherein the clamping levers are hinged at a pivot point (C),

each of the clamping levers have a substantially C shape, a bottom portion of the C shape terminating with a plate ( 11 A) and extending first downward and then upwardly to the pivot point,

a distal end of the driving trigger ( 5 ) extends a first distance perpendicular to the longitudinal axis ( 10 a ), and

the C shape defines an inside surface of each clamping lever such that, in the second position during rotation of the clamping levers, a closest inside surface of each clamping lever to the distal end of the driving trigger ( 5 ), has a second distance perpendicular to the longitudinal axis ( 10 a ) greater than the first distance perpendicular to the longitudinal axis ( 10 a ) such that the clamping levers each have clearance over the driving trigger ( 5 ) during the rotation of the ring nut ( 2 ) in the screwing-on direction when screwing the ring nut ( 2 ) onto the threading provided on the neck of the vessel ( 6 ).

7. The head ( 10 ) according to claim 6 , further comprising an axially sliding cylinder ( 12 ), wherein the clamping levers ( 11 ) are driven from the first open position to the second closed position by the axially sliding cylinder ( 12 ) moving between a first cylinder position and a second cylinder position.

8. The head ( 10 ) according to claim 6 , wherein,

the clamping levers ( 11 ) are hinged parallel to the longitudinal axis ( 10 a ) on an assembly that axially rotates about the longitudinal axis ( 10 a ), and

an angular rotation of the assembly about the longitudinal axis ( 10 a ) drives clamping levers ( 11 ) from the first open position to the second closed position.

9. The head ( 10 ) according to claim 6 in combination with a rotating capping machine that rotates axially.

10. The head ( 10 ) according to claim 6 in combination with a linear capping machine.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 66249 FRAME: 447. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 11, 2024
From: P.J.M. S.R.L. IN LIQUIDAZIONE
To: REJVES MACHINERY S.R.L.
Reel/Frame 066848/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2024
From: P.J.M. S.R.L. IN LIQUIDAZIONE
To: REJVES MACHINERY S.R.L.
Reel/Frame 066249/0447 →
CHANGE OF NAME Recorded Jan 25, 2024
From: REJVES S.R.L.
To: P.J.M. S.R.L. IN LIQUIDAZIONE
Reel/Frame 066371/0174 →
NUNC PRO TUNC ASSIGNMENT Recorded Jan 19, 2024
From: VESENTINI, RENZO
To: REJVES S.R.L.
Reel/Frame 066187/0119 →
Priority Claims (1)
IT PR2009A0101 · Dec 11, 2009 · national
Continuity (1)
Related Publication 20120272502A1 · Nov 1, 2012