EP0679331A2

A method of automatically milking animals and an implement for applying same.

Abstract

In a method of automatically milking animals, such as cows, use is made of teat cups, each of which is provided with a liner made of a flexible material, by means of which the teat space of a teat cup is separated from the pulsation space. During milking, a pulsating vacuum stimulating the milk yield is created in the pulsation space. When a teat cup is being connected to a teat, the pulsation space is kept at an approximately atmospheric pressure, while air is extracted from the teat space. Conversely, when a teat cup is being disconnected, in the pulsation space a vacuum is maintained and in the teat space the vacuum is neutralized.

EP0679331A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 18 April 2015, 11.4 years ago.

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45 claims: 13 independent, 32 dependent

  1. 1
    A method of automatically milking animals, such as cows, in which use is made of teat cups, each of which is provided with a liner made of a flexible material, by means of which the teat space of a teat cup is separated from the pulsation space that is provided to create therein a pulsating vacuum stimulating the milk yield, characterized in that, when a teat cup is being disconnected, in the pulsation space a vacuum is maintained and in the teat space the vacuum is neutralized.
  2. 3
    A method of automatically milking animals, such as cows, in which use is made of teat cups, each of which is provided with a liner made of a flexible material, by means of which the teat space of a teat cup is separated from the pulsation space that is provided to create therein a pulsating vacuum stimulating the milk yield, characterized in that, when a teat cup is being connected to a teat, the pulsation space is kept at an approximately atmospheric pressure, while air is extracted from the teat space.
  3. 6
    A method according to any one of the preceding claims, characterized in that, during the connection of the teat cups as well as during milking and during the disconnection of the teat cups, the pressure in the pulsation space can be controlled by means of a pulsator under electronic or computer control.
  4. 7
    A method according to any one of the preceding claims, characterized in that the teat cups are connected and disconnected individually, while the pressure in the pulsation space of each teat cup, during the connection of the teat cups to the teats, the milking and the disconnection of the teat cups, is controlled by means of separate pulsators under electronic or computer control.
  5. 8
    A method according to any one of the preceding claims, characterized in that the teat cups are automatically connected to, and disconnected from an animal's teats by means of a milking robot.
  6. 10
    A method of automatically milking animals, such as cows, in which use is made of teat cups, each of which is provided with a liner made of a flexible material, by means of which the teat space of a teat cup is separated from the pulsation space that is provided to create therein a pulsating vacuum stimulating the milk yield, characterized in that the suction stroke and/or idle stroke and/or the vacuum level of a pulsator are controlled by electronic or computer means.
  7. 12
    A method according to any one of the preceding claims, characterized in that, during milking, the vacuum in a teat space or in a milk line connected to this space is measured permanently and is kept at a constant value through the intermediary of a computer.
  8. 13
    A method according to any one of the preceding claims, characterized in that, when at least the teat cups are included in a rinsing circuit, with a rinsing liquid being led through the teat cups via separate rinse jetters, the rinsing liquid supply lines of the individual rinse jetters are released and closed either directly by a computer or by means of an electronically controlled or computer-controlled pulsator.
  9. 14
    A method of automatically milking animals, such as cows, in which use is made of teat cups, each of which is provided with a liner made of a flexible material, by means of which the teat space of a teat cup is separated from the pulsation space that is provided to create therein a pulsating vacuum stimulating the milk yield, characterized in that, when at least the teat cups are included in a rinsing circuit, with a rinsing liquid being led through the teat cups via separate rinse jetters, the rinsing liquid supply lines of the individual rinse jetters are released and closed either directly by a computer or by means of an electronically controlled or computer-controlled pulsator.
  10. 17
    A method according to any one of claims 13 to 16, characterized in that in the rinsing circuit a pre-rinsing takes place by means of water of approximately 32° C to 42° C, especially of about 37° C.
  11. 18
    A method according to any one of claims 13 to 17, characterized in that the rinsing circuit is closed, while therein hot water containing a detergent or cleaning agent is fed, i.e. through the circuit comprising the teat cups, the milk lines connected thereto and a collecting element, such as a milk jar, into which these milk lines discharge.
  12. 21
    A method according to any one of claims 13 to 17, characterized in that the rinsing circuit is open, while therein during a certain time, preferably in the order of two or five minutes, hot water or steam is fed, i.e. through the circuit comprising the teat cups, the milk lines connected thereto and a collecting element, such as a milk jar, into which these milk lines discharge.
  13. 23
    An implement for automatically milking animals, such as cows, in which the method according to any one of the preceding claims can be applied, which implement is provided with teat cups (1) and a collecting element (3), such as a milk claw or a milk jar, into which the milk obtained from each udder quarter of an animal is fed via separate milk lines (2), while also each of the teat cups (1) is provided with a liner made of a flexible material, by means of which the teat space of a teat cup (1) is separated from the pulsation space provided to apply therein a pulsating vacuum stimulating the milk yield, characterized in that for each teat cup (1) there is provided an electronically controlled or computer-controlled pulsator (8) to control the pressure in the pulsation space of a relevant teat cup (1).
  14. 26
    An implement according to any one of claims 23 to 25, characterized in that the implement comprises a rinsing circuit (15) including rinse jetters (19), which circuit permits at least the teat cups (1) to be included, while each of the rinsing liquid supply lines (18) of the individual rinse jetters (19) is provided with a shut-off element (23) which is operated directly by the computer (14) or is operated by means of a pulsator (8) under electronic or computer control, with the rinsing liquid flow through the teat cups (1) being controlled by these shut-off elements (23).
  15. 27
    An implement according to any one of claims 23 to 26, characterized in that, during milking, the vacuum in the teat space or in the milk line connected thereto can be measured permanently by means of vacuum sensors (12) included in the individual milk lines (2), with the vacuum sensor (12) output signals being supplied to the computer (14) which ensures that the pressure in the milk lines is kept constant by means of a computer-controlled shut-off element (11) in each of the milk lines (2).
  16. 28
    An implement according to any one of claims 23 to 27, characterized in that it is provided with a milking robot for both automatically connecting the teat cups (1) to an animal's teat and for automatically disconnecting same therefrom.
  17. 29
    An implement according to any one of claims 23 to 28, characterized in that the rinsing circuit (15) comprises a first supply line (29) for a pre-rinsing liquid and a second supply line (34) for a further rinsing liquid from the rinsing liquid tank (16), said first and second supply lines (29, 34) being connected to a rinsing line (21) of the rinsing circuit.
  18. 30
    An implement for automatically milking animals, such as cows, in which the method according to any one of the preceding claims can be applied, which implement is provided with teat cups (1) and a collecting element (3), such as a milk claw or a milk jar, into which the milk obtained from each udder quarter is fed via milk lines (2), as well as a rinsing circuit for cleaning at least the teat cups (1), the collecting element (3) and the milk lines (2), and a rinsing liquid tank (16) and rinsing lines, characterized in that the rinsing circuit comprises a first supply line (29) for a pre-rinsing liquid and a second supply line (34) for a further rinsing liquid from the rinsing liquid tank (16), said first and second supply lines (29, 34) being connected to a rinsing line (21) of the rinsing circuit.
  19. 34
    An implement according to any one of claims 29 to 33, characterized in that the first supply line (29) and the second supply line (34) are provided with computer-controlled cocks (30, 35).
  20. 35
    An implement according to any one of claims 29 to 34, characterized in that the rinsing liquid tank (16) is provided with a level sensor (41) for the rinsing liquid.
  21. 36
    An implement according to any one of claims 29 to 35, characterized in that a supply line (59, 61) for supplying a base and/or an acid to the rinsing liquid tank (16) is provided, the supply line comprising a computer-controlled cock (63).
  22. 38
    An implement according to any one of claims 29 to 37, characterized in that a rinsing liquid supply line (43) is connected to the first supply line (29) for the supply of rinsing liquid to a cleaning implement (44) for cleaning of cleaning elements, with the aid of which the udder and/or teats of an animal are cleaned, while further in the rinsing liquid line (43) there is included a Venturi element (47) connected, via a further line (53), to a tank (54) containing a disinfecting liquid, such as chlorine.
  23. 40
    An implement according to any one of claims 37 to 39, characterized in that the Venturi element (47) is adjustable, the arrangement being such that the flow rate of the line connected to the Venturi element (47) is controllable.
  24. 41
    An implement according to any one of the preceding claims, characterized in that a manure separator (65) is included in the pulsation line (64).
  25. 44
    An implement according to any one of claims 41 to 43, characterized in that the manure separator(s) (65) is/are included before the pulsator(s) (8) in the pulsation line(s) (64).
  26. 45
    An implement according to any one of the preceding claims, characterized in that a milk-level sensor is provided in the milk jar (3), while near the bottom thereof an air line is connected thereto, by means of which air line it is possible to blow air bubbles through the milk collected in the milk jar (3) in order that the milk is appropriately mixed, while there is provided a milk sampling apparatus connected to the milk discharge line of the milk jar (3), by means of which apparatus one or a plurality of milk samples can be drawn from a quantity of milk pre-defined by means of the milk-level sensor, so that each milk sample comprises roughly the same quantity of milk, irrespective of the animal's milk yield.
Independent claims26