The invention concerns a device for cutting free the colon of a slaughter animal using a hollow cylindrical cutting knife which is driven for rotation, with a guiding arbor, having a suction channel, being disposed within the hollow cylindrical cutting knife, wherein the rotational drive for the cutting knife and the guiding arbor is effected by a pressurized air motor.
These types of device are known in the art (EP1115292B1, EP0457408A1).
It is the underlying purpose of the invention to improve, in a straightforward fashion, the method of operation of a device of this kind as well as the guiding and the cleaning of the device.
This purpose is achieved in accordance with the invention in that the device has two components, namely a tool and a robot attachment plate, which are joined together in a separable fashion, wherein the robot attachment plate has a connecting opening for vacuum, a connecting opening for water, a connecting opening for pressurized air to drive the pressurized air motor, and a connecting opening for exhaust of the pressurized air motor, wherein, in the assembled state of the tool and the robot attachment plate, the above mentioned openings are connected to associated channels in the tool in such a fashion that
The invention also concerns a cutting knife particularly suited for such a device as well as a method for cutting free the colon of a slaughter animal.
Advantageous improvements of the invention are defined in the dependent claims.
In accordance with the invention, the device can be guided in a precise manner by means of a robot and can be easily cleaned in a separate sterilization device while simultaneously washing the hollow regions and the cavities and channels provided in the tool. Exchange of the tool for purposes of repair or replacement of the cutting knife is straightforward. The dimensions of the cutting knife as well as the choice of material are effective and lead to particularly low wear.
An embodiment of the invention is described in detail in the associated drawings.
The embodiment according to
When the slaughter animal, hung from its rear legs, is subsequently separated into two halves through cutting open the abdominal wall, the entire intestine can be removed from the slaughter animal along the cut location, since the colon is cut free from the adjacent tissue (compare EP0954791 and AU573603A1).
The robot attachment plate 1 is securely connected and bolted to a robot (not shown) using screws 7 which pass through openings 8 in the attachment plate 1 (see
As can be seen from
The connecting opening 12 for water is connected to the channel 17 and an end 18′ of a water connecting tube 18 of the tool 2 penetrates into and is likewise sealed (see
In the assembled state of the tool 2 and the robot attachment plate 1, the connecting opening 13 for pressurized air to drive the pressurized air motor 25 is connected to the interior region 29′ of a connecting bushing 29 (
The connecting opening 14 for removal of the exhaust air from the pressurized air motor 25 in the tool 2 is connected to the annular region 19 which, in turn, communicates with the annular region 21 via openings 20 (see
A seal 31 in the connecting bushing 29 seals the pressurized air intake via channel 28 with respect to the angular region 21.
The following description concerns
The precise position of the tool 2 on the robot connecting plate 1 is defined by the engagement of the end 6′ of the vacuum tube 6 and the end 18′ of the water connecting tube 18 in the associated channels. It is also of course possible to provide only one type of attachment of this kind. However, the double attachment presented herein and the simultaneous sealing through insertion of the tube or the end of the tube into another is particularly practical.
As can be best seen from
As can be further seen from
When a vacuum from a vacuum source is connected to the connecting openings 11 via a connecting tube or the like, this vacuum is applied to the channels 51, 52 and 53 via the connecting tube 6 and the openings 49. When the hollow cylindrical cutting knife 3 and the guiding arbor 4 are rotated, the colon of a slaughter animal can be cut free. This procedure is interrupted at regular time intervals and the entire device is introduced by the robot into a sterilizing unit (not shown). Sterilization is started when the water inlet to the connecting openings 12 is fed via a tube or a hose. During the sterilizing procedure via the connecting openings 12, the water connecting tube 18 and the openings 49, the channels 51, 52 and 53 as well as the entire region of the chamber 54 and the hollow cylindrical cutting knife 3 are washed.
The blade-edge angle α of the cutting knife has as a value between 18 degrees and 22 degrees, preferentially 20 degrees, and utilizes stainless steel 1.4112 (hardened). The cutting edge 3 has an inner diameter 1 of 50 to 60 mm, preferentially 54 mm, with an entire overall length L of the cutting knife 53 and the bushing 54 of 145–155 mm, preferentially 149 mm. These dimensions have turned out to be particularly advantageous.
Number | Date | Country | Kind |
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20 2004 019 195 U | Dec 2004 | DE | national |
This application is a continuation of PCT/EP2005/011347 filed on Oct. 21, 2005 and claims Paris Convention priority of DE 20 2004 019 195.4 filed Dec. 07, 2004 the entire disclosures of which are hereby incorporated by reference.
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3526018 | Lovitt | Sep 1970 | A |
3634908 | Chamberlain | Jan 1972 | A |
3921255 | LaBarber | Nov 1975 | A |
3975796 | LaBarber | Aug 1976 | A |
5167568 | Esbroeck et al. | Dec 1992 | A |
5181878 | Bekkers | Jan 1993 | A |
5199922 | Korenberg et al. | Apr 1993 | A |
5419738 | Lysbo | May 1995 | A |
5512044 | Duer | Apr 1996 | A |
6641475 | Nielsen | Nov 2003 | B1 |
Number | Date | Country |
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0 307 550 | Mar 1989 | EP |
0 492 735 | Jul 1992 | EP |
0 723 743 | Jul 1996 | EP |
1 027 829 | Aug 2000 | EP |
1 115 292 | Jul 2001 | EP |
Number | Date | Country | |
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20060099898 A1 | May 2006 | US |
Number | Date | Country | |
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Parent | PCT/EP2005/011347 | Oct 2005 | US |
Child | 11282583 | US |