IP Library Granted Patent US 8,574,486
Granted Patent B2
US 8,574,486 · App. 10/570,796 · Granted Nov 5, 2013

Method and device for blow molding containers

Inventors: Wolf Jaksztat (Hamburg, DE); Michael Linke (Ahrensburg, DE); Rolf Baumgarte (Hamburg, DE); Michael Litzenberg (Geesthacht, DE); Klaus Vogel (Barsbüttel, DE); Günther Godau (Hamburg, DE)
Assignee: KHS Corpoplast GmbH
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Quick Facts
Patent No.
US 8,574,486
App. No.
10/570,796
Granted
Nov 5, 2013
Kind
B2
Abstract

Disclosed are a method and a device for blow molding containers ( 2 ). A parison ( 1 ) is stretched by means of a stretching rod ( 11 ) within a blow mold ( 4 ) and molded into the container by applying blow pressure following thermal conditioning. The pressurized gas is introduced into the container ( 2 ) via at least two different flow paths ( 55, 56 ). Advantageously, one of the flow paths ( 56 ) ends near the orifice area ( 21 ) while a second flow path ( 55 ) ends near a container bottom ( 51 ). At least some of the pressurized gas is introduced into the container ( 2 ) through the stretching rod ( 11 ).

Claims (18)

1. Method for blow molding containers, in which a preform is stretched inside a blow mold by a stretch rod after thermal conditioning and is reshaped into the container by the action of blowing pressure, and in which pressurized gas for the blow molding is fed into the container through the stretch rod, wherein the pressurized gas is simultaneously conveyable into the container ( 2 ) by a flow path that runs through the stretch rod ( 11 ) and a flow path that runs past the stretch rod ( 11 ) on the outside, wherein the pressurized gas initially reshapes the preform into a container bubble, and subsequently reshapes the bubble into the container, wherein the pressurized gas is fed through the stretch rod along both flow paths before a final shaping of the container.

2. Method in accordance with claim 1 , wherein the pressurized gas is supplied at least temporarily by only one of the flow paths.

3. Method in accordance with claim 1 , wherein the pressurized gas is conveyed into the preform ( 1 ) in the vicinity of the mouth section ( 21 ) in a first phase of the process.

4. Method in accordance with claim 3 , wherein the pressurized gas is introduced by a flow path surrounding the stretch rod ( 11 ) during the first phase of the process.

5. Method in accordance with claim 3 , wherein the pressurized gas is introduced through the stretch rod ( 11 ) in a second phase of the process.

6. Method in accordance with claim 5 , wherein the pressurized gas is introduced in the vicinity of a base of the container ( 2 ) during the second phase of the process.

7. Method in accordance with claim 5 , wherein the pressurized gas is introduced at a higher pressure during the second phase of the process than during the first phase of the process.

8. Method in accordance with claim 3 , wherein the pressure is relieved after the stretch rod ( 11 ) has first been retracted.

9. Method in accordance with claim 1 , wherein the pressure is relieved at least partially through the stretch rod ( 11 ).

10. Device for blow molding containers, which has at least one blowing station with at least one blow mold and at least one stretch rod, and in which the stretch rod is connected to a supply system for supplying pressurized gas for blow molding a preform to form a container, wherein the blowing station ( 3 ) has at least two different flow paths for the pressurized gas that lead into the space enclosed by the blow mold ( 4 ), wherein one flow path runs through the stretch rod ( 11 ) and one flow path runs past the stretch rod ( 11 ) on the outside, the blowing station being configured to permit simultaneous flow of the pressurized gas through both flow paths, whereby the pressurized gas first reshapes the preform to form a container bubble and subsequently reshapes the bubble to form the container, wherein the pressurized gas is conducted through the stretch rod along both flow paths before a final shaping of the container.

11. Device in accordance with claim 10 , wherein at least two flow paths flow through the stretch rod ( 11 ).

12. Device in accordance with claim 10 , wherein a flow path opens into the blow mold ( 4 ) in the vicinity of an access opening of the blow mold ( 4 ).

13. Device in accordance with claim 10 , wherein one flow path opens at least temporarily into an interior space enclosed by the blow mold ( 4 ) in the vicinity of a base section ( 7 ) of the blow mold ( 4 ).

14. Device in accordance with claim 10 , wherein the first flow path is designed for feeding the pressurized gas for molding the container.

15. Device in accordance with claim 10 , wherein the second flow path is designed for feeding the pressurized gas for molding the container.

16. Device in accordance with claim 10 , wherein at least two flow paths are designed for feeding the pressurized gas with different pressure levels.

17. Device in accordance with claim 10 , wherein the stretch rod ( 11 ) has an interior that is enclosed by sidewalls, and that the interior is connected to a pressurized gas supply by a plurality of recesses in the wall.

18. Device in accordance with claim 10 , wherein at least one adjusting element for realizing a valve function is arranged in the area of each flow path.

Assignments (4)
MERGER Recorded Jul 19, 2022
From: KHS CORPOPLAST GMBH
To: KHS GMBH
Reel/Frame 060715/0640 →
CHANGE OF NAME Recorded Aug 2, 2013
From: KHS CORPOPLAST GMBH & CO. KG
To: KHS CORPOPLAST GMBH
Reel/Frame 030935/0993 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2009
From: SIG TECHNOLOGY LTD.
To: KHS CORPOPLAST GMBH & CO. KG
Reel/Frame 023064/0697 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2006
From: JAKSZTAT, WOLF; LINKE, MICHAEL; BAUMGARTE, ROLF; LITZENBERG, MICHAEL; VOGEL, KLAUS; GODAU, GUNTHER
To: SIG TECHNOLOGY LTD.
Reel/Frame 018596/0440 →
Priority Claims (2)
DE 103 40 915 · Sep 5, 2003 · national
DE 10 2004 003 939 · Jan 26, 2004 · national
Continuity (1)
Related Publication 20070164488A1 · Jul 19, 2007