Feeding unit for a manufacturing machine and related feeding method

US12240648B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12240648-B2
Application numberUS-202117797989-A
CountryUS
Kind codeB2
Filing dateFeb 5, 2021
Priority dateFeb 6, 2020
Publication dateMar 4, 2025
Grant dateMar 4, 2025

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  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A feeding unit which is configured to feed articles from a pick-up station to a delivery station. The feeding unit comprises: a gripping head provided with at least one gripping means and attached to a shaft. The shaft is configured to translate along the rotation axis between a lowered position, in which the articles are picked up and released by the gripping head, and a raised position, in which the gripping head rotates between the pick-up station and the delivery station. The feeding unit comprises two actuators which are coaxial to the shaft and which are configured to respectively translate the shaft between the lowered position and the raised position along the rotation axis and to rotate the shaft around the rotation axis between the pick-up station and the delivery station.

First claim

Opening claim text (preview).

The invention claimed is: 1. A feeding unit ( 12 ) for a manufacturing machine ( 6 ), the feeding unit ( 12 ) is configured to feed articles ( 3 ) from a pick-up station (S 10 ) to a delivery station (S 11 ) and comprises: a gripping head ( 16 ), which is provided with at least one gripping means ( 17 ), which is configured to pick up and hold an article ( 3 ) in the pick-up station (S 10 ) and, subsequently, to release the article ( 3 ) in the delivery station (S 11 ); a shaft ( 13 ), which is mounted on a rotation axis (X) in a rotary manner and is provided with a proximal end ( 14 ) and a distal end ( 15 ), which is opposite the proximal end ( 14 ) and to which the gripping head ( 16 ) is attached, wherein the shaft ( 13 ) is configured to translate along the rotation axis (X) between a lowered position (PA), in which the articles ( 3 ) are picked up and released by the gripping head ( 16 ), and a raised position (PS), in which the gripping head ( 16 ) rotates between the pick-up station (S 10 ) and the delivery station (S 11 ); a first actuator ( 25 ), which is coaxial to the shaft ( 13 ) and translates the shaft ( 13 ) between the lowered position (PA) and the raised position (PS) along the rotation axis (X); and a second actuator ( 26 ), which is coaxial to the shaft ( 13 ) and rotates the shaft ( 13 ) around the rotation axis (X) between the pick-up station (S 10 ) and the delivery station (S 11 ). 2. The feeding unit ( 12 ) according to claim 1 , wherein the first actuator ( 25 ) and the second actuator ( 26 ) are operable in an independent manner. 3. The feeding unit ( 12 ) according to claim 1 , wherein: the shaft ( 13 ) has a plurality of helical grooves ( 22 ), which extend between the distal end ( 15 ) and the proximal end ( 14 ), and wherein the feeding unit ( 12 ) comprises a first sleeve ( 23 ), which is coaxially arranged on the shaft ( 13 ) so as to engage the helical grooves ( 22 ) of the shaft ( 13 ) and is mounted so as to rotate around the rotation axis (X); the first actuator ( 25 ) causes the rotation of at least a portion of the first sleeve ( 23 ) in order to translate the shaft ( 13 ) between the lowered position (PA) and the raised position (PS) along the rotation axis (X). 4. The feeding unit ( 12 ) according to claim 3 , wherein the first sleeve ( 23 ) comprises: a first outer annular body ( 23 B), which is fixed; and a first inner annular body ( 23 A), which is interposed between the shaft ( 13 ) and the first outer annular body ( 23 B), is mounted so as to rotate around the rotation axis (X), is connected to the first actuator ( 25 ) and engages the helical grooves ( 22 ) of the shaft ( 13 ). 5. The feeding unit ( 12 ) according to claim 3 , wherein: the first sleeve ( 23 ) comprises: a first outer annular body ( 23 B), which is fixed; and a first inner annular body ( 23 A), which is interposed between the shaft ( 13 ) and the first outer annular body ( 23 B), is mounted so as to rotate around the rotation axis (X), is connected to the first actuator ( 25 ) and engages the helical grooves ( 22 ) of the shaft ( 13 ); the shaft ( 13 ) has a plurality of longitudinal grooves ( 21 ), which longitudinally extend between the distal end ( 15 ) and the proximal end ( 14 ); a second sleeve ( 24 ), which is coaxially arranged on the shaft ( 13 ) so as to engage the longitudinal grooves ( 21 ) of the shaft ( 13 ) and is mounted so as to rotate around the rotation axis (X); the second actuator ( 26 ) causes the rotation of at least a portion of the second sleeve ( 24 ) in order to rotate the shaft ( 13 ) around the rotation axis (X) between the pick-up station (S 10 ) and the delivery station (S 11 ); the second sleeve ( 24 ) comprises: a second outer annular body ( 24 B), which is fixed; and a second inner annular body ( 24 A), which is interposed between the shaft ( 13 ) and the second outer annular body ( 24 B), is mounted so as to rotate around the rotation axis (X), is connected to the second actuator ( 26 ) and engages the longitudinal grooves ( 21 ) of the shaft ( 13 ); and the feeding unit comprises a pair of angle encoders ( 27 , 28 ), each being associated with a corresponding one of the first and second actuator ( 25 , 26 ) and being configured to acquire the angle position of the corresponding inner annular body ( 23 A, 24 A). 6. The feeding unit ( 12 ) according to claim 3 wherein: the shaft ( 13 ) has a plurality of longitudinal grooves ( 21 ), which longitudinally extend between the distal end ( 15 ) and the proximal end ( 14 ); the feeding unit ( 12 ) comprises a second sleeve ( 24 ), which is coaxially arranged on the shaft ( 13 ) so as to engage the longitudinal grooves ( 21 ) of the shaft ( 13 ) and is mounted so as to rotate around the rotation axis (X); the second actuator ( 26 ) causes the rotation of at least a portion of the second sleeve ( 24 ) in order to rotate the shaft ( 13 ) around the rotation axis (X) between the pick-up station (S 10 ) and the delivery station (S 11 ); and the feeding unit ( 12 ) comprises at least one braking device, which is independent of the first and second actuators ( 25 , 26 ) and is designed to prevent the first sleeve ( 23 ) and/or the second sleeve ( 24 ) from moving in the absence of supply of power to the actuators ( 25 , 26 ). 7. The feeding unit ( 12 ) according to claim 1 , wherein: the shaft ( 13 ) has a plurality of longitudinal grooves ( 21 ), which longitudinally extend between the distal end ( 15 ) and the proximal end ( 14 ); the feeding unit ( 12 ) comprises a second sleeve ( 24 ), which is coaxially arranged on the shaft ( 13 ) so as to engage the longitudinal grooves ( 21 ) of the shaft ( 13 ) and is mounted so as to rotate around the rotation axis (X); the second actuator ( 26 ) causes the rotation of at least a portion of the second sleeve ( 24 ) in order to rotate the shaft ( 13 ) around the rotation axis (X) between the pick-up station (S 10 ) and the delivery station (S 11 ). 8. The feeding unit ( 12 ) according to claim 7 , wherein the second sleeve ( 24 ) comprises: a second outer annular body ( 24 B), which is fixed; and a second inner annular body ( 24 A), which is interposed between the shaft ( 13 ) and the second outer annular body ( 24 B), is mounted so as to rotate around the rotation axis (X), is connected to the second actuator ( 26 ) and engages the longitudinal grooves ( 21 ) of the shaft ( 13 ). 9. The feeding unit ( 12 ) according to claim 1 , wherein each actuator ( 25 , 26 ) comprises a synchronous electric motor. 10. The feeding unit ( 12 ) according to claim 1 and comprising at least two gripping means ( 17 ), which are arranged on different sides of the gripping head ( 16 ) so that, when a gripping means ( 17 ) is in the pick-up station (S 10 ), the other gripping means ( 17 ) is in the delivery station (S 11 ) and vice versa. 11. The feeding unit ( 12 ) according to claim 1 and comprising a control device, which is configured to control the two actuators ( 25 , 26 ) so as to cyclically rotate the gripping head ( 16 ), at first, in a direction and, subsequently, in the opposite direction, so as to cause the gripping head ( 16 ) to make an oscillatory movement around the rotation axis (X) having a rotation angle (α) of 180°. 12. The feeding unit ( 12 ) according to claim 1 and comprising a control device, which, by controlling the first and second actuators ( 25 , 26 ), is configured to: operate the first actuator ( 25 ) to cause only a first sleeve ( 23 ) to rotate and keeping a second sleeve ( 24 ) still, so as to obtain only a translation of the gripping head ( 16 ); and operate the first and second actuators ( 25 , 26 )

Assignees

Inventors

Classifications

  • provided with drive systems incorporating rotary and rectilinear movements · CPC title

  • provided with drive systems incorporating rotary and rectilinear movements · CPC title

  • Driving gear · CPC title

  • Feeding closures · CPC title

  • by applying and securing double closures · CPC title

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What does patent US12240648B2 cover?
A feeding unit which is configured to feed articles from a pick-up station to a delivery station. The feeding unit comprises: a gripping head provided with at least one gripping means and attached to a shaft. The shaft is configured to translate along the rotation axis between a lowered position, in which the articles are picked up and released by the gripping head, and a raised position, in wh…
Who is the assignee on this patent?
Gd Spa
What technology area does this patent fall under?
Primary CPC classification B65B7/161. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 04 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).