MILKING PLATFORM
20190373850 ยท 2019-12-12
Inventors
Cpc classification
F16C19/305
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/585
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2310/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2300/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2208/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B61J1/00
PERFORMING OPERATIONS; TRANSPORTING
B65G47/28
PERFORMING OPERATIONS; TRANSPORTING
F16C2208/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/526
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C43/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A rotary milking platform 1 has a deck 2, a circular upper beam 4 connected to and supporting the deck, a circular lower beam 6 and a series of carriages 5 connected end to end to form a ring between the beams. The platform is formed such that the upper beam 4 is arranged to rest and rotate on the ring of carriages 5 to rotate the deck 2. Each carriage has at least one carriage roller 10, and each roller 10 arranged to rotate on the lower beam 4. Each roller 10 also has a retention flange 11 at only one side. The flanges 11 of some of the rollers 10 are at or adjacent an inner side of the ring, and the flanges 11 of others of the rollers are at or adjacent an outer side of the ring. The rollers 10 of the ring are arranged such that at least one roller is oriented with its flange 11 on an opposite side to another of the flanged rollers immediately adjacent to it. The flanges prevent the carriages from moving off the lower beam 4 when the platform 1 is in use. Further, at least some of the carriages can be disconnected from the ring and swung laterally to be moved free of the beams 4, 6 for maintenance, repair or replacement.
Claims
1. A rotary milking platform comprising: a deck; a circular upper beam connected to and supporting the deck; a circular lower beam; and a series of carriages connected end to end to form a ring between the beams; the platform formed such that: the upper beam is arranged to rest and rotate on the ring of carriages to rotate the deck; each carriage has at least one carriage roller; each carriage roller is arranged to rotate on the lower beam; each carriage roller has a retention flange at only one side; the flanges of some of the rollers are at or adjacent an inner side of the ring and the flanges of others of the rollers are at or adjacent an outer side of the ring; the flanged rollers of the ring are arranged such that at least one roller is oriented with its flange on an opposite side of the ring to another of the flanged rollers immediately adjacent to it; the flanges prevent the carriages from moving off the lower beam when the platform is in use; and at least some of the carriages can be disconnected from the ring and swung laterally to be moved free of the beams for maintenance, repair or replacement.
2. A rotary platform according to claim 1, wherein: o each carriage has at least a pair of the carriage rollers and the flanges within each pair are at opposite sides of the carriage; or the rollers are arranged in pairs, and each pair is oriented with their flanges on an opposite side of the ring of carriages to a pair of immediately adjacent rollers of the ring.
3. A rotary milking platform according to claim 1, wherein the lower beam is stationary.
4. A rotary milking platform according to claim 3, wherein the ring of carriages is free to the extent that it can rotate at a different rate to the upper beam.
5. A rotary milking platform according to claim 4, wherein each flange overlaps an upright side of the lower beam and an upright side of the upper beam.
6. A rotary milking platform according to claim 5, wherein each carriage is releasably connected to another of the carriages immediately before it, and to another of the carriages immediately after it.
7. A rotary milking platform according to claim 6, wherein each carriage has a chassis and at least two carriage rollers, the chassis having at least two internal spaces which receive those rollers, respectively.
8. A rotary milking platform according to claim 7, wherein an axle passes through each carriage roller and fastens that roller to the chassis.
9. A rotary milking platform according to claim 8, wherein the carriages are curved to match the curvature of the upper and lower beams.
10. A rotary milking platform according to claim 1, wherein the lower beam is stationary; the ring of carriages is free to the extent that it can rotate at a different rate to the upper beam; each flange overlaps an upright side of the lower beam and an upright side of the upper beam; each carriage is releasably connected to another of the carriages immediately before it, and to another of the carriages immediately after it; each carriage has a chassis connected to at least two carriage rollers, the chassis having at least two internal spaces which receive those rollers, respectively; an axle passes through each carriage roller and fastens that roller to the chassis; the carriages are curved to match the curvature of the upper and lower beams; the ring of carriages is substantially circular; and each roller has an axis that is radially aligned with a centre of the ring.
11. A method of replacing at least one carriage roller of a rotary milking platform according to claim 1, comprising the steps of: disconnecting the carriage from immediately adjacent carriages, swinging the disconnected carriage laterally to position its roller(s) clear of the upper and lower beams; replacing at least one carriage roller; swinging the carriage into alignment with the beams; and connecting the carriage to two immediately adjacent carriages.
Description
DRAWINGS
[0047] Some preferred embodiments of the invention will now be described by way of example, and with reference to the accompanying drawings, of which:
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DETAILED DESCRIPTION
[0065] Referring to
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[0068] Preferably there are three of the drive rollers 7 spaced evenly around the upper beam 4. In other embodiments there may be fewer (for example two), or more (for example four), of the drive rollers.
[0069] Referring to
[0070] Referring to
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[0075] Referring to
[0076] Preferably the rollers 10 of each carriage are cast from a tough durable nylon polymer. They are formed to withstand a 2 tonne loading per roller. Optionally the drive rollers 7 and the lateral guide rollers 20 are formed from compressible polyurethane.
[0077] Referring to
[0078] An advantage of the preferred embodiment is that the rollers 10 do not require bearings, they simply turn on their axle 21 (see
[0079] In other embodiments of the invention at least some of the carriages may have more than two rollers. However in that case the rollers at the forward half of the carriage will have their flanges on the same side of the carriage, and the rollers at the rear half will all be on the opposite side of the carriage. This will enable the carriage to be rotated through 90, in the manner described above, for replacement rollers or repairs generally. An example of a ring of carriages made up of, or including, four-roller carriages is shown at
[0080] While the invention is preferably used for milking dairy cows it can be used in the same or a similar way for milking other animals, for example goats, sheep and buffalo, etc.
[0081] While some embodiments of the invention have been described by way of example it should be understood that modifications and improvements can occur without departing from the scope of the following claims.