Claims
- 1. A process for the production of a can structure utilizing a press apparatus for the production of an intermediate can structure having a sheet metal sidewall that is open at one end and fillable at the open end prior to sealing and closing of the can structure, the intermediate can structure having a closed end opposite said open end, the closed end being sealed by a closure diaphragm of a material selected from the group consisting of paper, plastic film and metal foil, the intermediate can structure having an axis, the closure diaphragm having a diaphragm edge region which is raised in a direction of said axis, the diaphragm edge region being tightly connected to an inner surface of said sidewall without overlapping an edge of said sidewall at said closed end, wherein an inner surface of said sidewall has a cylindrical shape in an area of the sidewall that is tightly connected to said diaphragm edge region, and wherein the diaphragm edge region is free from a heat-conducting cover, the process comprising introducing the closure diaphragm with the raised diaphragm edge region into the can structure having the sidewall with the inner surface, pressing the diaphragm edge region by expansion against the inner surface of the sidewall with an adjustable press surface of the press apparatus, and tightly connecting the raised edge region substantially over a total vertical distance thereof, to the inner surface of the can sidewall, by radial movement of the adjustable press surface.
- 2. An intermediate can structure having a sheet metal sidewall that is open at one end and fillable at the open end prior to sealing and closing of the can structure, the intermediate can structure having a closed end opposite said open end, the closed end being sealed by a closure diaphragm of a material selected from the group consisting of paper, plastic film and metal foil, the intermediate can structure having an axis, the closure diaphragm having a diaphragm edge region which is raised in a direction of said axis, the diaphragm edge region being tightly connected to an inner surface of said sidewall without overlapping an edge of said sidewall at said closed end, wherein an inner surface of said sidewall has a cylindrical shape in an area of the sidewall that is tightly connected to said diaphragm edge region, and wherein the diaphragm edge region is free from a heat-conducting cover.
- 3. An intermediate can structure according to claim 2, wherein the closure diaphragm is not more than about 0.2 mm in thickness, and is selected from the group consisting of embossed diaphragm material and grained metal foil.
- 4. An intermediate can structure according to claim 2, having a configuration selected from the group consisting of 1) a can structure wherein the edge of the can sidewall is flanged in an outward direction, and 2) a can structure wherein the diaphragm edge region rests against the inner surface of the can substantially without creases or wrinkles.
- 5. A foil for the manufacture of a can structure according to claim 2, characterized in that the foil has, in a radial outer part thereof, a raised foil edge region which diverges conically upwards by about 0.2 to 0.3 mm.
- 6. The foil of claim 5 having a heat-sealed coating on an outer surface thereof.
- 7. A foil according to claim 5 having a foil edge region with a free end including a collar which points radially outward and is substantially hook-shaped in cross-section.
- 8. A press apparatus for carrying out a process for the production of an intermediate can structure having a sheet metal sidewall that is open at one end and fillable at the open end prior to sealing and closing of the can structure, the intermediate can structure having a closed end opposite said open end, the closed end being sealed by a closure diaphragm of a material selected from the group consisting of paper, plastic film and metal foil the intermediate can structure having an axis, the closure diaphragm having a diaphragm edge region which is raised in a direction of said axis, the diaphragm edge region being tightly connected to an inner surface of said sidewall without overlapping an edge of said sidewall at said closed end, wherein an inner surface of said sidewall has a cylindrical shape in an area of the sidewall that is tightly connected to said diaphragm edge region, and wherein the diaphragm edge region is free from a heat-conducting cover, said process comprising introducing the closure diaphragm with the raised diaphragm edge region into the can structure having the sidewall with the inner surface, pressing the diaphragm edge region by expansion against the inner surface of the sidewall with a punch having an expandable circumference, and tightly connecting the raised edge region substantially over a total vertical distance thereof, to the inner surface of the can sidewall, under action of heat, wherein the expansion is effected without an external pressure absorption apparatus, the press apparatus for tightly connecting the can sidewall to the closure diaphragm, the press apparatus having at least two press parts which together form an adjustable press surface arranged around an axis and comprising part-surfaces, wherein the press parts are arranged substantially fixed in an axial direction and can be moved radially by an actuating element displaceable in the axial direction.
- 9. The apparatus as claimed in claim 8, wherein the part-surfaces are arranged in a plurality of layers in the axial direction, with the part-surfaces of adjacent layers being formed to overlap in a circumferential direction.
- 10. The apparatus as claimed in claim 8, wherein adjacent part-surfaces are in different layers which are formed by parts adjacent to one another in the axial direction.
- 11. The apparatus as claimed in claim 8, wherein the press parts are in a form of segments and are mounted so that they are substantially radially movable with each segment having a central region in a linear guide substantially normal to the axis, wherein the part-surfaces are arranged in adjacent layers having a degree of overlap which varies during radial movement between a feed position and a pressing position, wherein adjacent layers of part-surfaces have steps fitting into one another, or layers of the press parts engage one another.
- 12. The apparatus as claimed in claim 8, wherein the press surface is provided for pressing in a configuration selected from the group consisting of convex for pressing from inside the can wall, and concave for pressing from outside the can wall.
- 13. The apparatus of claim 12 wherein the press surface has a circular crosssection and the press surface has a radius which is about equal to a radius of a contact surface to be pressed.
- 14. The apparatus as claimed in claim 8, wherein the press parts comprise flat part-surfaces.
- 15. The apparatus as claimed in claim 8, wherein the press surface has a shape selected from the group consisting of at least a partly cylindrical shape and at least a partly conical shape.
- 16. The apparatus as claimed in claim 15, adapted to a flanged can end.
- 17. The apparatus as claimed in claim 8, wherein at least one heating element is provided in heat-conducting contact with a heat transmission surface connected to a press part.
- 18. The apparatus as claimed in claim 17, wherein said at least one heating element is normal to said axis.
- 19. The apparatus of claim 17 wherein said at least one heating element includes at least one heating surface of a heat-conducting member which is adjacent to said transmission surface, wherein said heating surface is a guide surface for movement of the press parts.
- 20. The apparatus as claimed in claim 8, wherein the actuating element has a conical actuating surface which is arranged around the axis and against which conical abutting surfaces of the press parts rest, the press parts being radially guided and being capable of being pressed against the actuating surface by restoring elements, in order to achieve radial movement of the press parts.
- 21. The apparatus as claimed in claim 8, wherein the part-surfaces each extend along a part of a circumferential line in a plane which is substantially perpendicular to the axis, and wherein there are gaps between part-surfaces of a first circumferential line which are staggered relative to gaps of another circumferential line in the circumferential direction, so that the press surface has no continuous gaps.
- 22. An apparatus according to claim 8, including an expansion device comprising a plurality of radially expanding rings having mutually staggered openings, said rings being connected to a plurality of annularly arranged wedges.
- 23. An apparatus according to claim 8, comprising an expansion device including an elastic ring arranged along a circumference of the press parts.
- 24. A process for the production of an intermediate can structure having a sheet metal sidewall that is open at one end and fillable at the open end prior to sealing and closing of the can structure, the intermediate can structure having a closed end opposite said open end, the closed end being sealed by a closure diaphragm of a material selected from the group consisting of paper, plastic film and metal foil, the intermediate can structure having an axis, the closure diaphragm having a diaphragm edge region which is raised in a direction of said axis, the diaphragm edge region being tightly connected to an inner surface of said sidewall without overlapping an edge of said sidewall at said closed end, wherein an inner surface of said sidewall has a cylindrical shape in an area of the sidewall that is tightly connected to said diaphragm edge region, and wherein the diaphragm edge region is free from a heat-conducting cover, said process comprising introducing the closure diaphragm with the raised diaphragm edge region into the can structure having the sidewall with the inner surface, pressing the diaphragm edge region by expansion against the inner surface of the sidewall with a punch having an expandable circumference, and tightly connecting the raised edge region substantially over a total vertical distance thereof, to the inner surface of the can sidewall, under action of heat, wherein the expansion is effected without an external pressure absorption apparatus.
- 25. A process according to claim 24, characterized in that the expansion of the punch circumference is effected by a combination of wedges, and piston rings or spring rings.
- 26. A process according to claim 24, characterized in that the expansion of the punch circumference is effected by a pneumatically operated rubber bellows.
- 27. A can of sheet metal having a closure diaphragm of paper, plastic film or metal foil which is provided on at least one end face of the can and closes the at least one end face so that an outer surface of a diaphragm edge region which is raised in a direction of a can axis is tightly connected to an inner surface of the can wall, without overlapping an edge of the can wall, obtained by a process according to claim 24.
- 28. An apparatus for carrying out a process for the production of an intermediate can structure having a sheet metal sidewall that is open at one end and fillable at the open end prior to sealing and closing of the can structure, the intermediate can structure having a closed end opposite said open end, the closed end being sealed by a closures diaphragm of a material selected from the group consisting of paper, plastic film and metal foil, the intermediate can structure having an axis, the closure diaphragm having a diaphragm edge region which is raised in a direction of said axis, the diaphragm edge region being tightly connected to an inner surface of said sidewall without overlapping an edge of said sidewall at said closed end, wherein an inner surface of said sidewall has a cylindrical shape in an area of the sidewall that is tightly connected to said diaphragm edge region, and wherein the diaphragm edge region is free from a heat-conducting cover, said process comprising introducing the closure diaphragm with the raised diaphragm edge region into the can structure having the sidewall with the inner surface, pressing the diaphragm edge region by expansion against the inner surface of the sidewall with a punch having an expandable circumference, and tightly connecting the raised edge region substantially over a total vertical distance thereof, to the inner surface of the can sidewall, under action of heat, wherein the expansion is effected without an external pressure absorption apparatus, the apparatus having a displaceably mounted punch with a circumference expandable transversely to a displacement direction, a displacement device for the punch and an expansion device for producing corresponding movements, further including at least one feature selected from the group consisting of 1) a centering device for centering at least one member selected from the group consisting of the diaphragm foil, the can or a combination thereof, 2) a heating device for heating a circumference of the punch, and 3) a combination thereof.
Priority Claims (2)
| Number |
Date |
Country |
Kind |
| 95104906 |
Apr 1995 |
EPX |
|
| 96111741 |
Jul 1996 |
EPX |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part application of PCT/EP96/01410, filed Mar. 30, 1996, and PCT/EP97/03144, filed Jun. 17, 1997.
US Referenced Citations (7)
Foreign Referenced Citations (7)
| Number |
Date |
Country |
| 0007487 |
Feb 1980 |
EPX |
| 0540748 |
May 1993 |
EPX |
| 9414440 |
Jan 1995 |
DEX |
| 60-24238 |
Feb 1985 |
JPX |
| 642316 |
Apr 1984 |
CHX |
| 659633 |
Feb 1987 |
CHX |
| 8404507 |
Nov 1984 |
WOX |
Related Publications (1)
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Number |
Date |
Country |
|
PCT/EP97/03144 |
Jun 1997 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
PCT/EP96/01410 |
Mar 1996 |
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