Automatic Grease Dispensing System
20180135802 ยท 2018-05-17
Inventors
Cpc classification
F16N11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16N13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16N2270/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16N23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16N23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16N19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An automatic grease dispensing system for supplying grease to at least one destination includes a grease container, at least one drive cylinder configured for reciprocating motion, a pump cylinder coupled to and driven by each drive cylinder, wherein the pump cylinder includes an inlet in fluid communication with grease in the grease container and an outlet in fluid communication with one destination to be supplied with grease, a first one way check valve coupled to each inlet configured to allow grease to flow from the grease container to the pump cylinder and configured to prevent grease to flow from the pump cylinder to the grease container, and a second one way check valve coupled to each outlet configured to allow grease to flow from the pump cylinder to the one destination and configured to prevent grease to flow from the destination to the pump cylinder.
Claims
1-10. (canceled)
11. An automatic grease dispensing system for supplying grease to at least one destination, comprising: a grease container; at least one drive cylinder configured for reciprocating motion; a pump cylinder coupled to and driven by each drive cylinder, wherein the pump cylinder includes an inlet in fluid communication with grease in the grease container and an outlet in fluid communication with one destination to be supplied with grease; a first one way check valve coupled to each inlet configured to allow grease to flow from the grease container to the pump cylinder and configured to prevent grease to flow from the pump cylinder to the grease container; and a second one way check valve coupled to each outlet configured to allow grease to flow from the pump cylinder to the one destination and configured to prevent grease to flow from the destination to the pump cylinder.
12. The automatic grease dispensing system according to claim 11 further including at least one flexible line extending to at least one destination to be supplied with grease.
13. The automatic grease dispensing system according to claim 11 further including a plurality of drive cylinders each configured for reciprocating motion, wherein each drive cylinder is independent of the remaining drive cylinders.
14. The automatic grease dispensing system according to claim 13 wherein each drive cylinder is associated with a distinct destination to be supplied with grease via a pump driven by each drive cylinder.
15. The automatic grease dispensing system according to claim 14 wherein the grease container is an open top container.
16. The automatic grease dispensing system according to claim 15 wherein the plurality of drive cylinders are suspended above the open top grease container.
17. The automatic grease dispensing system according to claim 16 wherein the plurality of drive cylinders are supported on a flange resting on the open top grease container.
18. The automatic grease dispensing system according to claim 17 wherein each pump cylinder extends below the flange into the grease within the grease container.
19. The automatic grease dispensing system according to claim 18 wherein six drive cylinders are provided in an annular array.
20. The automatic grease dispensing system according to claim 19 further including a programmable control coupled to each drive cylinder for independently controlling and monitoring the grease delivery of each pump cylinder.
21. The automatic grease dispensing system according to claim 20 further including at least one pressure switch positioned between at least one second one way check valve and the associated destination.
22. The automatic grease dispensing system according to claim 21 further including coupling each pressure switch to the programmable control which is configured to prevent grease flow to the associated destination from the pump cylinder above a present pressure threshold.
23. The automatic grease dispensing system according to claim 22 further including a load cell coupled to the grease container and to the programmable controller to track the amount of grease in the container.
24. The automatic grease dispensing system according to claim 23 further including a moveable cart supporting the grease container.
25. An automatic grease dispensing system for supplying grease to a plurality of destinations, comprising: a grease container; a series of independent drive cylinders configured for reciprocating motion; a separate pump cylinder coupled to and driven by each drive cylinder, wherein each pump cylinder includes an inlet in fluid communication with grease in the grease container and an outlet in fluid communication with one distinct destination of the plurality of destinations to be supplied with grease; a first one way check valve coupled to each inlet of each pump cylinder configured to allow grease to flow from the grease container to the pump cylinder and configured to prevent grease to flow from the pump cylinder to the grease container; and a second one way check valve coupled to each outlet configured to allow grease to flow from the pump cylinder to the one destination and configured to prevent grease to flow from the destination to the pump cylinder; and a programmable control coupled to each drive cylinder for independently controlling and monitoring the grease delivery of each pump cylinder.
26. The automatic grease dispensing system according to claim 25 further including at least one pressure switch positioned between at least one second one way check valve and the associated destination.
27. The automatic grease dispensing system according to claim 26 further including coupling each pressure switch to the programmable control which is configured to prevent grease flow to the associated destination from the pump cylinder above a present pressure threshold.
28. The automatic grease dispensing system according to claim 25 further including a load cell coupled to the grease container and to the programmable controller to track the amount of grease in the container.
29. The automatic grease dispensing system according to claim 25 wherein the grease container is an open top container and wherein the plurality of drive cylinders are suspended above the open top grease container.
30. The automatic grease dispensing system according to claim 29 wherein six drive cylinders are provided in an annular array.
Description
DESCRIPTION OF THE DRAWINGS
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
PREFERRED EMBODIMENT
[0015] Referring to the Figures, wherein like numerals indicate like or corresponding parts throughout the several views, an exemplary robot is generally shown at 10 adjacent to the Lubricator System Cart 13. For purpose of illustration and not to be in any way limiting, the following description will make reference to robot 10. However, it will be appreciated that the invention is equally applicable to any machinery or style of robot requiring lubrication at one or multiple locations.
[0016] The Lubricator System Cart 13 is an example of a cart in which the lubricator assembly 15 is shown and comprised of components to easily transport the invention. The specific type of rolling cart or transportation device is not important for this invention.
[0017] Referring now to
[0018] The means in which a lubricating substance is dispersed from lubricating assembly 15 to robot 10 is shown in
[0019] Referring to
[0020] The second pneumatic cylinder 28 is driven by cylinder 14. As the piston and shaft in the cylinder 14 moves in a specific direction, the shaft in cylinder 28 follows the same path of motion. As the internal piston in cylinder 28 decreases volume, this causes negative pressure and draws or sucks the substance into the internal cylinder. The preferred embodiment includes a one-way check valve 50 and 55 to control flow in the proper direction.
[0021] After which material is drawn into cylinder 28 through the valve assembly 50, the air is then applied to port 22 on cylinder 14. When the air is supplied to port 22, the piston in cylinder 28 translates and forces the lubricant through valve assembly 55 out of the container 21 and to the robot 10.
[0022] The preferred embodiment in
[0023]
[0024]
[0025] The invention has been described in an illustrative manner and it is to be understood that the terminology which has been used is intended to the nature of the words rather than of limitation. Obviously, many variations of the present invention are possible in regards to cylinder size, valve assembly sizes, lubrication types and controls. It is, therefore, to be understood that within the scope of the appended claim, the invention may be practiced otherwise than as specifically described. The invention is defined by the claim.