Claw for a milking machine
10111400 ยท 2018-10-30
Assignee
Inventors
- Tor Bonnier (Tumba, SE)
- Nathalie Back (Tumba, SE)
- Emil Olsson (Tumba, SE)
- Markus Stridsberg (Tumba, SE)
Cpc classification
International classification
Abstract
A claw for a milking machine includes an enclosure having an upper part and a lower part and enclosing an inner space for a milk flow during a milking operation. A center axis extends through the enclosure and through the upper lower parts. The upper part includes an upper end defining an upper end point, and a lower annular end extending along a periphery of the claw in a connection plane. The lower part is detachably connected to the upper part along the connection plane, and rotary symmetric with respect to an axis of rotation being perpendicular to the connection plane. The connection plane is inclined with respect to the center axis so that the enclosure has a first height at a first peripheral position greater than and a second height at a second peripheral position diametrically opposite to the first peripheral position.
Claims
1. A claw (C) for a milking machine, comprising: an enclosure having an upper part (1) and a lower part (2) that together enclose an inner space (3) for a milk flow during a milking operation, the enclosure having a center axis (x) extending through the upper part (1) and the lower part (2), the center axis (x) defining a height direction of the enclosure, wherein the lower part (2) is detachably connected to the upper part (1) along a connection plane (p), wherein the upper part (1) comprises i) an upper end (5) defining an upper end point (5), ii) an upper wall (16) adjoining the upper end (5), and iii) a lower annular end (7) at a periphery of the claw (C) in the connection plane (p), wherein the lower part (2) comprises a bottom surface (4) facing the inner space (3) with the center axis (x) extending through the bottom surface (4), wherein the lower part (2) is rotationally symmetric with respect to an axis (x) of rotation being perpendicular to the connection plane (p), wherein the center axis (x) is non-coincident with the axis (x) of rotation, and wherein the connection plane (p) is inclined with respect to the center axis (x) such that the enclosure has i) a first height at a first peripheral position (p.sub.1) of the upper part, and ii) a second height at a second peripheral position (p.sub.2) of the upper part, the second peripheral position (p.sub.2) being diametrically opposite to the first peripheral position (p.sub.1), the first height being greater than the second height; and an outlet nipple (12) extending from the end (5) and outwardly with respect to the center axis (x), the outlet nipple (12) providing a milk discharge path from the inner space (3), the outlet nipple (12) configured for connection to a long milk conduit (13) for discharge of milk from the inner space (3), wherein, the upper wall (16) further comprises a plurality of inlet members (8), each inlet member (8) configured for receiving a respective short milk conduit (9), and the lower annular end (17) comprises a lower side wall (17) adjoining a lower part of the upper wall (16) to the periphery of the claw (C) in the connection plane (p).
2. The claw (C) according to claim 1, wherein the side wall (17) has varying wall thickness along the periphery with a first wall thickness at the first peripheral position (p.sub.1) and a second wall thickness at the second peripheral position (p.sub.2), the first wall thickness being larger than the second wall thickness.
3. The claw (C) according to claim 2, wherein the upper wall (16) extends along an imaginary cone being rotationally symmetric around the center axis (x).
4. The claw (C) according to claim 1, wherein the upper wall (16) extends along an imaginary cone being rotationally symmetric around the center axis (x).
5. The claw (C) according to claim 1, wherein the upper part (1) is at least partly made of a transparent material to enable observation of the milk flow in the inner space (3) during the milking operation.
6. The claw (C) according to claim 1, wherein the upper part (1) has a transparent zone extending inside the first peripheral position (p.sub.1).
7. The claw (C) according to claim 1, wherein the outlet nipple (12) extends outwardly from the upper part (1) towards the first peripheral position (p.sub.1).
8. The claw (C) according to claim 1, further comprising a bayonet coupling that enables the lower part (2) to be detachably connected to the upper part (1) along the connection plane (p).
9. The claw (C) according to claim 8, wherein the bayonet coupling comprises: at least two pins (26) extending from one of the upper part (1) and the lower part (2), and at least two grooves (27) in the other of the upper part (1) and the lower part (2), each of the at least two grooves configured to receive a respective one of the at least two pins (26).
10. The claim according to claim 1, further comprising a suction tube (20) connecting the inner space (3) to the outlet nipple (12) and providing a path that conveys the milk from the inner space (3) to the outlet nipple (12), wherein the suction tube (20) comprises a lower tube section (20a) positioned in proximity of the bottom surface (4) with a gap present between the lower tube section (20a) and the bottom surface (4), and wherein the lower part (2) further comprises a central depression (25) extending inwardly toward the upper part (1), the center axis (x) and the axis (x) of rotation of the lower part extending through the depression (25).
11. The claim according to claim 10, wherein, the upper wall (16) further comprises a plurality of inlet members (8), each inlet member (8) configured for receiving a respective short milk conduit (9), and the upper part (1) further includes a transparent zone that enables observation of the milk flow in the inner space (3) during the milking operation.
12. A claw (C) for a milking machine, comprising: an enclosure having an upper part (1) and a lower part (2) that together enclose an inner space (3) for a milk flow during a milking operation, the enclosure having a center axis (x) extending through the upper part (1) and the lower part (2), the center axis (x) defining a height direction of the enclosure, wherein the lower part (2) is detachably connected to the upper part (1) along a connection plane (p), wherein the upper part (1) comprises i) an upper end (5) defining an upper end point (5), ii) an upper wall (16) adjoining the upper end (5), and iii) a lower annular end (7) at a periphery of the claw (C) in the connection plane (p), wherein the lower part (2) comprises a bottom surface (4) facing the inner space (3) with the center axis (x) extending through the bottom surface (4), wherein the lower part (2) is rotationally symmetric with respect to an axis (x) of rotation being perpendicular to the connection plane (p), wherein the center axis (x) is non-coincident with the axis (x) of rotation, and wherein the connection plane (p) is inclined with respect to the center axis (x) such that the enclosure has i) a first height at a first peripheral position (p.sub.1) of the upper part, and ii) a second height at a second peripheral position (p.sub.2) of the upper part, the second peripheral position (p.sub.2) being diametrically opposite to the first peripheral position (p.sub.1), the first height being greater than the second height; and an outlet nipple (12) extending from the end (5) and outwardly with respect to the center axis (x), the outlet nipple (12) providing a milk discharge path from the inner space (3), the outlet nipple (12) configured for connection to a long milk conduit (13) for discharge of milk from the inner space (3), further comprising a peripheral ring (29) extending along the periphery at the connection plane (P).
13. The claw (C) according to claim 12, wherein the peripheral ring (29) is made of a rubber material.
14. The claw (C) according to claim 13, wherein the peripheral ring (29) comprises at least one outwardly extending wing (30) positioned between the first peripheral position (p.sub.1) and the second peripheral position (p.sub.2).
15. The claw (C) according to claim 12, wherein the peripheral ring (29) comprises at least one outwardly extending wing (30) positioned between the first peripheral position (p.sub.1) and the second peripheral position (p.sub.2).
16. The claw (C) according to claim 15, wherein the upper part has at least one grip-facilitating pattern (31) on an outer surface of the upper part (4), which pattern (31) is located radially inside said at least one outwardly extending wing (30).
17. A claw (C) for a milking machine, comprising: an enclosure having an upper part (1) and a lower part (2) that together enclose an inner space (3) for a milk flow during a milking operation, the enclosure having a center axis (x) extending through the upper part (1) and the lower part (2), the center axis (x) defining a height direction of the enclosure, wherein the lower part (2) is detachably connected to the upper part (1) along a connection plane (p), wherein the upper part (1) comprises i) an upper end (5) defining an upper end point (5), ii) an upper wall (16) adjoining the upper end (5), and iii) a lower annular end (7) at a periphery of the claw (C) in the connection plane (p), wherein the lower part (2) comprises a bottom surface (4) facing the inner space (3) with the center axis (x) extending through the bottom surface (4), wherein the lower part (2) is rotationally symmetric with respect to an axis (x) of rotation being perpendicular to the connection plane (p), wherein the center axis (x) is non-coincident with the axis (x) of rotation, and wherein the connection plane (p) is inclined with respect to the center axis (x) such that the enclosure has i) a first height at a first peripheral position (p.sub.1) of the upper part, and ii) a second height at a second peripheral position (p.sub.2) of the upper part, the second peripheral position (p.sub.2) being diametrically opposite to the first peripheral position (p.sub.1), the first height being greater than the second height; and an outlet nipple (12) extending from the end (5) and outwardly with respect to the center axis (x), the outlet nipple (12) providing a milk discharge path from the inner space (3), the outlet nipple (12) configured for connection to a long milk conduit (13) for discharge of milk from the inner space (3), wherein the lower part (2) comprises a central depression (25) extending inwardly toward the upper part (1), the center axis (x) extending through the depression (25).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention is now to be explained more closely through a description of various embodiments and with reference to the drawings attached hereto.
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DETAILED DESCRIPTION OF VARIOUS EMBODIMENTS OF THE INVENTION
(14)
(15) The claw C comprises a plurality of inlet members 8 configured for receiving a respective short milk conduit 9 of a respective teatcup 10 of the milking member, see
(16) The claw C disclosed comprises four inlet members 8 which each extends through the upper part 1 to permit feeding of milk to the inner space 3 from the respective teatcup 10 and the respective teat. The claw C also comprises an outlet nipple 12 configured for being connected to a long milk conduit 13 for the discharge of milk from the inner space 3 to a milk receiving member 15 of a milking machine. The outlet nipple 12 extends outwardly with respect to the centre axis x from the upper part 1 of the enclosure. During the milking operation, milk is sucked through the teatcups 10, the short milk conduits 9 into the inner space 3 of the claw C by means of the application of a milking vacuum generated by a vacuum pump (not disclosed). From the inner space 3, the milk is then sucked through the long milk conduit 13 to the milk receiving member 15 by means of the vacuum pump. A shut-off valve 14 may be provided on the long milk conduit 13 permitting automatic shut-off of the milk vacuum between the milking operations.
(17) The upper part 1 comprises an upper wall 16, through which the inlet members 8 extend, and a side wall 17 connected to the upper wall 16. The side wall 17 thus adjoins the upper wall 16 at an outer corner extending around the enclosure. The upper wall 16 adjoins the upper end portion 6 at an inner corner extending around the enclosure. An air inlet 18 extends into the inner space 3 from the surroundings, and in the embodiments disclosed through the upper part 1.
(18) The upper wall 16 extends along a cone k, which is rotary symmetric around the centre axis x, see
(19) As can be clearly seen in
(20) The lower part 2 is rotary symmetric with respect to an axis x of rotation, which axis x is perpendicular to the connection plane p see
(21) The claw C also comprises a suction tube 20 which is provided in the inner space 3 and which connects the inner space 3 to the outlet nipple 12 for conveying the milk from the inner space 3 to the outlet nipple 12. The suction tube 20 comprises a lower tube section 20a, an intermediate tube section 20b and an upper tube section 20c, see
(22) The suction tube 20 is a separate part which may be attached by friction to the upper part 1. The upper tube section of 20c of the suction tube 20 is tapering from the upper end to the intermediate tube section 20b to form an internal space which is a concavely shaped as can be seen in
(23) The suction tube 20 is shown in two variants one first variant for the first embodiments shown in
(24) In the first variant, the gap between the lower tube section 20a and the bottom surface 4 has a varying height with a first height at a first position along the lower tube section 20a, and a second height at a second position along the lower tube section 20a. The second position is diametrically opposite to the first position. The first height is greater than the second height. The first position is located on the same radial line as the first peripheral position with respect to the centre axis x. The second position is located at the same radial line as the second peripheral position with respect to the centre axis x. In this variant at least one of the support legs 21 has a length that is different from the length of at least one of the other support legs 21.
(25) In the second variant, the lower tube section 20a defines an annular end line from which the support legs 21 extend. The annular end line defines an end plane p.sub.e, see
(26) The upper part 1 is at least partly made of a transparent material to enable observation of the milk flow in the inner space 3 during the milking operation. Advantageously, the whole upper part 1 may be made of the same transparent material. It is important that there is a transparent zone extending inside the first peripheral position where the side wall 17 has the largest height. The lower part 2 may be made of a plastic, transparent or non-transparent material as illustrated in
(27) The lower part 2 is bowl-shaped. Thus, the lower part 2 forms a part space of the inner space 3. The part space tapers from the connection plane p, as can be seen in
(28) The lower part 2 is detachably connected to the upper part 1 along the connection plane p by means of a bayonet coupling as can be seen in
(29) The claw C also comprises a peripheral ring 29, which extends along the periphery of the claw C at the connection plane p, see
(30) Furthermore, the upper part 1 has at least one, in the present case, two grip-facilitating patterns 31 provided on the outer surface of the upper part 1, see
(31) The claw C also comprises a closing valve 33, which comprises a valve body 34 provided at the upper tube section 20c of the suction tube 20. The valve body 34 is movable to a closed position, see
(32) In the rest state, there is no pressure difference over the valve body 34, i.e. the pressure on one side of the valve body 34, i.e. in the inner space 3, is equal to the pressure on the other side of the valve body 34, i.e. inside the outlet nipple 12. Moreover, in the rest state the membrane 35 may be in its most relaxed state with a minimum of internal tensions or stresses.
(33) The membrane 35 is configured for automatically moving the valve body 34 to the open position, to the closed position or to the intermediate position, see
(34) When the shut-off valve 14 is closed, the membrane 35 will be in the rest state, i.e. the valve body 34 will be moved to and held in the intermediate position.
(35) The closing valve 33 comprises a physical stop member defining the open position. In the embodiments disclosed, the physical stop member comprises at least three projections 36 projecting into the internal space of the upper tube section 20c of the suction tube 20.
(36) The closing valve 33 also comprises a valve seat 37 defining the closed position. The valve body 34 thus rests against the valve seat 37 in the closed position.
(37) Furthermore, a leakage channel 38 is provided for permitting a leakage flow from the inner space 3 to the outlet nipple 12 when the valve body 34 is in the closed position. In the embodiments disclosed, the leakage channel 38 is formed by a recess in the valve seat 37 as can be seen in
(38) Furthermore, the closing valve 33 comprises a button member 39 connected to the valve body 34 via a rod 40. The button member 39 permits manual moving of the valve body 34, in particular towards the open position. The button member 39 projects upwardly from the upper part 1.
(39) The claw C also comprises a housing 43, see
(40) The cover 44 is in the embodiment disclosed a part of an insert member 45 attached to an upper end portion of the housing 43 by means of a bayonet coupling 46. The insert member 45 comprises a base portion 47 to which the cover 44 is attached. The base portion 47 is made of a first material and the cover 44 is made of another, second material. The second material is resilient, or more resilient that the first material, thereby permitting the cover 44 to be elastically deformed.
(41) The housing 43 comprises two separate channels, a first channel 51 and a second channel 52, see
(42) With reference to
(43) With reference to
(44) When the teatcup 10 has fallen down completely the short milk conduit 9 will be closed. Thanks to the leak flow through the leakage channel 38, vacuum or a low pressure is created in the inner space 3, permitting the membrane 35 to move the valve body 34 once again to the open position, thereby permitting milking through the three teatcups 10 remaining on the respective teats. This procedure will be repeated at least also in case a second teatcup 10 falls off the teat, and possibly also in case a third teatcup 10 falls off the teat.
(45) With reference to
(46) The membrane 35 is thus configured to move the valve body 34 first to the intermediate position when a first teatcup 10 is lifted so that air may be sucked into the inner space 3 of the claw. Thanks to the leakage channel 38, the pressure difference over the valve body 34 will be reduced or removed when the valve body 34 is in the closed position, permitting the membrane 35 to move the valve body 34 to the intermediate position. From this intermediate position, the membrane 35 will then move the valve body 34 to the open position when said first teatcup 10 has been attached since the pressure in the inner space 3 will be reduced and become lower than the pressure in the outlet nipple 12. Consequently, the valve body 34 will, as explained above, respond quickly, i.e. open quickly when the first teatcup 10 is attached since the valve body 34 is starting from the intermediate position and thus moved only a short distance from the intermediate position to the open position.
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(48) The present invention is not limited to the embodiments disclosed, but may be varied and modified within the scope of the following claims.