Claims
- 1. In an ampul processing machine, a combination comprising:
- (a) means for guiding ampuls along a path, said guiding means including
- an upstream portion having a predetermined width transversely of the path,
- a downstream portion having a transverse width less than the predetermined transverse width of said upstream portion, and
- a throat portion intermediate said upstream and downstream portions and having a transverse width less than the predetermined width of said upstream portion but greater than the transverse width of said downstream portion,
- said upstream, throat and downstream portions all converging in smooth continuous manner downstream of the path; and
- (b) anti-jamming means for preventing ampuls being guided through said guiding means from jamming generally transversely across the path to thereby bridge and block the same, said anti-jamming means including
- a movable agitator adjacent said guiding means, and
- means for initially moving said agitator in a first direction generally transversely across the path between a retracted position away from the path towards an extended position in which said agitator projects partially transversely across the path to thereby engage ampuls being guided along the same, and for subsequently moving said agitator in a second direction generally upstream of the path while the agitator remains in its extended position from one end operating position adjacent said downstream portion towards another end operating position adjacent said upstream portion to thereby displace ampuls engaged by said agitator in countercurrent direction of the path, whereby ampul jamming and bridging across the path is counteracted.
- 2. The combination of claim 1, wherein said agitator has ampul-engaging portions facing said guiding means.
- 3. In an ampul processing machine, a combination comprising:
- (a) means for guiding ampuls along a path, said guiding means including
- an upstream portion having a predetermined width transversely of the path,
- a downstream portion having a transverse width less than the predetermined transverse width of said upstream portion, and
- a throat portion intermediate said upstream and downsteam portions and having a transverse width less than the predetermined width of said upstream portion but greater than the transverse width of said downstream portion,
- said upstream, throat and downstream portions all converging in smooth continuous manner downstream of the path; and
- (b) anti-jamming means for preventing ampuls being guided through said guiding means from jamming generally transversely across the path to thereby bridge and block the same, said anti-jamming means including
- a movable agitator adjacent said guiding means, and
- means for moving said agitator between a retracted position away from the path towards an extended position in which said agitator projects partially transversely across the path to thereby engage ampuls being guided along the same, and for moving said agitator while the latter remains in its extended position from one end operating position adjacent said downstream portion towards another end operating position adjacent said upstream portion to thereby displace ampuls engaged by said agitator in countercurrent direction of the path,
- said moving means including means for supporting said agitator, means for shifting said agitator between its extended and retracted positions, and means for pivoting said agitator between its operating positions,
- whereby ampul jamming and bridging across the path is counteracted.
- 4. The combination of claim 3, wherein said supporting means is an elongated support having one end region mounted to said agitator, another end region formed with a clearance slot, and a pivot member mounted on said support intermediate said end regions thereof.
- 5. The combination of claim 4; and further comprising a stationary guide having an elongated track; and wherein said shifting means is an elongated link having a mating pivot member at one end region thereof operatively connected to said pivot member on said support to thereby form a pivot connection therewith, an offset pin at the other end region operatively connected to said pivoting means, and a fulcrum member mounted on said link intermediate said end regions thereof and mounted for movement along said track, said pivoting means being operative for displacing said offset pin in circumferential direction about said fulcrum member and for concomitantly displacing said pivot connection relative to said stationary guide in opposite circumferential direction about said fulcrum member.
- 6. The combination of claim 5, wherein said support has wall portions bounding an opening having opposite sides, and wherein said offset pin extends through said opening with clearance sufficient to permit said offset pin to be displaced by said pivoting means to said opposite sides of said opening.
- 7. The combination of claim 5; and further comprising a stationary member, and a mounting member connected to said stationary member and extending through said clearance slot with clearance sufficient to permit said support to be shifted by said shifting means in response to operation of said pivoting means.
- 8. The combination of claim 5, wherein said pivoting means is an elongated bar having legs bounding a slot through which said offset pin extends.
- 9. The combination of claim 3; and further comprising a rotary cam having an uneven cam surface, a movable cam follower ridable along said cam surface, and support means for mounting said cam follower for movement relative to said cam surface, said support means being operatively connected to said pivoting means and turning the latter in response to such movement relative to said cam surface.
- 10. A method of preventing ampuls being advanced along a continuously converging path in an ampul processing machine from jamming in direction generally transversely of the path and from thereby bridging and blocking the same, the method comprising the steps of:
- (a) positioning an agitator adjacent the path of ampul advance;
- (b) engaging the ampuls being advanced along the path by initially moving the agitator in a first direction generally transversely across the path from a retracted position remote from the path towards an extended position in which the agitator projects partially transversely across the path; and
- (c) displacing the ampuls engaged by the agitator in countercurrent direction of the path by subsequently moving the agitator in a second direction generally upstream of the path while the agitator remains in its extended position from a downstream portion of the path towards an upstream portion of the path.
- 11. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods; and
- (b) means for continuously feeding at least one ampul to said intermittent conveying means during each dwell time period, and for continuously feeding at least one additional ampul to said intermittent conveying means during each advancement time period to thereby utilize both time periods of each operating cycle of the conveying means, whereby the ampul handling capability of the machine is increased.
- 12. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods; and
- (b) means for feeding ampuls to said intermittent conveying means during each dwell time period to thereby increase the ampul handling capability of the machine, said feeding means including a movable infeed shuttle and means for moving said infeed shuttle between end-limiting positions in countercurrent direction of the path during each dwell time period.
- 13. The combination of claim 12, wherein said infeed shuttle includes a pair of spaced apart channel side walls bounding a passage for ampuls to be fed through, and hinge means for mounting said side walls for turning movement about fixed axes, said moving means being operative for pivoting said channel side walls about said axes.
- 14. The combination of claim 13, wherein said infeed shuttle further includes a pair of spaced apart gate members bounding a passageway which communicates with said passage and which extends generally normally of the path, each gate member being pivotally connected to a respective channel side wall.
- 15. The combination of claim 14, wherein each channel side wall has a first arm mounted to said hinge means, and a second arm pivotally connected to a respective gate member and mounted in sliding telescoping relationship with said first arm.
- 16. The combination of claim 14, wherein said feeding means further includes means for guiding said gate members in direction substantially parallel to the path, including a stationary block having a guideway extending generally parallel to the path, and a guide rod mounted in sliding relationship in the guideway and operatively connected to one of said gate members.
- 17. The combination of claim 12, wherein said moving means includes a pivotable drive member having an elongated passage, and a drive rod mounted in sliding relationship in the elongated passage and being operatively pivotally connected to said infeed shuttle.
- 18. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods; and
- (b) means for feeding ampuls to said intermittent conveying means during each dwell time period to thereby increase the ampul handling capability of the machine, said feeding means also being operative for feeding ampuls to said intermittent conveying means during each advancement time period, said feeding means including a movable infeed shuttle and means for moving said infeed shuttle between one end-limiting position and another end-limiting position in countercurrent direction of the path during each dwell time period, and for moving said infeed shuttle between said other end-limiting position and said one end-limiting position downstream of the path during each advancement time period.
- 19. The combination of claim 18, wherein said moving means includes a reciprocably-driven drive member.
- 20. A method of feeding ampuls in an ampul processing machine, comprising the steps of:
- (a) advancing ampuls along a path in which work stations are successively arranged during advancement time periods in which the ampuls are conveyed from one work station to the next;
- (b) maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with the advancement time periods; and
- (c) continuously feeding at least one ampul to the path during each dwell time period, and for continuously feeding at least one additional ampul to the path during each advancement time period to thereby utilize both the advancement and the dwell time periods, whereby the ampul handling capacity of the machine is increased.
- 21. The combination of claim 20, wherein said feeding step includes feeding ampuls to the path during each advancement time period.
- 22. A method of feeding ampuls in an ampul processing machine, comprising the steps of:
- (a) advancing ampuls along a path in which work stations are successively arranged during advancement time periods in which the ampuls are conveyed from one work station to the next, said advancing step including advancing ampuls at substantially zero speed during each dwell time period and at a predetermined speed during each advancement time period;
- (b) maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with the advancement time periods; and
- (c) feeding ampuls to the path during each dwell time period to thereby increase the ampul handling capacity of the machine, said feeding step including feeding ampuls to the path during each advancement time period, said step of feeding ampuls to the path during each advancement time period being performed at a first speed differential relative to said predetermined speed, and said step of feeding ampuls to the path during each dwell time period being performed at a second speed differential relative to said zero speed which is less than said first speed differential.
- 23. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls in spaced-apart relationship along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods; and
- (b) means for discharging ampuls from said intermittent conveying means during each dwell time period by initially moving the ampuls to be discharged in their spaced-apart relationship away from the conveying means, and by subsequently moving the ampuls to be discharged to a closed contiguous relationship prior to moving all of the ampuls to be discharged in their contiguous relationship downstream of the path to thereby increase the ampul handling capability of the machine.
- 24. The combination of claim 23, wherein said discharging means includes a movable outfeed shuttle having an outfeed elongated passage, and means for moving said outfeed shuttle in direction transversely of the path between an aligned and an offset position in which said outfeed passage is respectively in alignment with and remote from the path.
- 25. The combination of claim 24, wherein said discharging means includes a pusher and a guide block at opposite lateral sides of said passage, and wherein said moving means includes a movable carriage on which both said pusher and block are mounted.
- 26. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods; and
- (b) means for discharging ampuls from said intermittent conveying means during each dwell time period to thereby increase the ampul handling capability of the machine, said means including a movable outfeed shuttle having an outfeed elongated passage, and means for moving said outfeed shuttle in direction transversely of the path between an aligned and an offset position in which said outfeed passage is respectively in alignment with and remote from the path and including a displaceable wiper arm extending generally in direction transversely of the path, and means for displacing said wiper arm between end-limiting positions lengthwise of said outfeed passage.
- 27. The combination of claim 26; and further comprising timing means for halting movement of said outfeed shuttle in its offset position when said wiper arm is located at one of its end limiting positions in which it projects into an upstream region of said outfeed passage, and for maintaining said outfeed shuttle in its offset position until said wiper arm is located at the other one of its end limiting positions.
- 28. The combination of claim 26; and further comprising timing means for initiating movement of said outfeed shuttle to its aligned position when said wiper arm is located at one of its end limiting positions in which it projects into a downstream region of said outfeed passage, and for thereupon initiating movement of said wiper arm to the other one of its end limiting positions.
- 29. A method of discharging ampuls from an ampul processing machine, comprising the steps of:
- (a) advancing ampuls along a path in which work stations are successively arranged during advancement time periods in which the ampuls are conveyed in spaced-apart relationship from one work station to the next;
- (b) maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with the advancement time periods; and
- (c) discharging ampuls from the path during each dwell time period by initially moving the ampuls to be discharged in their spaced-apart relationship away from the path, and by subsequently moving the ampuls to be discharged to a closed contiguous relationship prior to moving all of the ampuls to be discharged in their contiguous relationship downstream of the path to thereby increase the ampul handling capacity of the machine.
- 30. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls in spaced-apart relationship along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods;
- (b) means for continuously feeding at least one ampul to said intermittent conveying means during each dwell time period, and for continuously feeding at least one additional ampul to said intermittent conveying means during each advancement time period to thereby utilize both time periods of each operating cycle of the conveying means; and
- (c) means for discharging ampuls from said intermittent conveying means during each dwell time period by initially moving the ampuls to be discharged in their spaced-apart relationship away from the conveying means, and by subsequently moving the ampuls to be discharged to a closed contiguous relationship prior to moving all of the ampuls to be discharged in their contiguous relationship downstream of the path, whereby the ampul handling capability of the machine is improved.
- 31. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods;
- (b) means for continuously guiding ampuls along the path during both said time periods, including
- an upstream portion having a predetermined width transversely of the path,
- a downstream portion having a transverse width less than the predetermined transverse width of said upstream portion, and
- a throat portion intermediate said upstream and downstream portions and having a transverse width less than the predetermined width of said upstream portion but greater than the transverse width of said downstream portion,
- said upstream, throat and downstream portions all converging in smooth continuous manner downstream of the path;
- (c) anti-jamming means for periodically preventing ampuls being guided through said guiding means during both said time periods from jamming generally transversely across the path to thereby bridge and block the same, said anti-jamming means including
- a movable agitator adjacent said guiding means, and
- means for intially moving said agitator in a first direction generally transversely across the path between a retracted position away from the path towards an extended position in which said agitator projects partially transversely across the path to thereby engage ampuls being guided along the same, and for subsequently moving said agitator in a second direction generally upstream of the path while the agitator remains in its extended position from one end operating position adjacent said downstream portion towards another end operating position adjacent said upstream portion to thereby displace ampuls engaged by said agitator in countercurrent direction of the path; and
- (d) means for continuously feeding at least one ampul to said intermittent conveying means during each dwell time period, and for continuously feeding at least one additional ampul to said intermittent conveying means during each advancement time period to thereby utilize both time periods of each operating cycle of the conveying means whereby the ampul handling capability of the machine is increased.
- 32. In an ampul processing machine having successive work stations arranged along a path, a combination comprising:
- (a) intermittent conveying means for advancing ampuls in spaced-apart relationship along the path during advancement time periods in which the ampuls are conveyed from one work station towards the next, and for maintaining the conveyed ampuls within their respective work stations for processing the ampuls during dwell time periods which alternate with said advancement time periods;
- (b) means for continuously guiding ampuls along the path during both said time periods, including
- an upstream portion having a predetermined width transversely of the path,
- a downstream portion having a transverse width less than the predetermined transverse width of said upstream portion, and
- a throat portion intermediate said upstream and downstream portions and having a transverse width of said upstream portion but greater than the transverse width of said downstream portion,
- said upstream, throat and downstream portions all converging in smooth continuous manner downstream of the path;
- (c) anti-jamming means for periodically preventing ampuls being guided through said guiding means during both said time periods from jamming generally transversely across the path to thereby bridge and block the same, said anti-jamming means including
- a removable agitator adjacent said guiding means, and
- means for initially moving said agitator in a first direction generally transversely across the path between a retracted position away from the path towards an extended position in which said agitator projects partially transversely across the path to thereby engage ampuls being guided along the same, and for subsequently moving said agitator in a second direction generally upstream of the path while the agitator remains in its extended position from one end operating position adjacent said downstream portion towards another end operating position adjacent said upstream portion to thereby displace ampuls engaged by said agitator in countercurrent direction of the path;
- (d) means for continuously feeding at least one ampul to said intermittent conveying means during each dwell time period, and for continuously feeding at least one additional ampul to said intermittent conveying means during each advancement time period to thereby utilize both time periods of each operating cycle of the conveying means; and
- (e) means for discharging ampuls from said intermittent conveying means during each dwell time period by initially moving the ampuls to be discharged in their spaced-apart relationship away from the conveying means, and by subsequently moving the ampuls to be discharged to a closed contiguous relationship prior to moving all of the ampuls to be discharged in their contiguous relationship downstream of the path, whereby the ampul handling capability of the machine is improved.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of my U.S. application Ser. No. 769,188, filed Feb. 16, 1977, for Ampoule Filling and Sealing Machine now issued as U.S. Pat. No. 4,096,683 dated June 27, 1978.
US Referenced Citations (9)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
769188 |
Feb 1977 |
|