A COUPLING DEVICE
20190120413 ยท 2019-04-25
Inventors
Cpc classification
F16L37/121
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/138
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/23
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L37/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The problem to be solved is to provide a coupling device (10) that provides efficient engaging and disengaging of the nipple (62) with the coupling device (10) and especially that provides quick release of the nipple (62) with the coupling device (10) after flow of grease through it at high velocity and pressure without exerting excessive pressure on the coupling device (10) by the user, and the problem is solved by providing a coupling device (10) as in present invention that includes a lever (40) with a linkage mechanism that has a roller (48), which movably connects the lever (40) to the slider to move the slider axially forward and backward to disengage and engage the clamping unit (50) with the nipple (62) of the grease fitting by releasing and applying pressure exerted by a protrusion (32) structured at the end of the slider (30) opposite to the side facing the lever (40). FIG. 1 is the representative figure.
Claims
1. A coupling device comprising: an elongated body including a front end, a rear end and a passage between said rear end and said front end; a slider with a protrusion axially movable along said elongated body between a first position and a second position on said elongated body; a lever including a linkage mechanism with a roller that movably connects said lever to said slider to axially move said slider between said first position and said second position when force is applied by a user; a clamping unit structured at said front end of said elongated body and detachably connected with said protrusion at an end of said slider opposite to said lever to engage and disengage with a nipple of a grease fitting, wherein said slider moves axially forward along said elongated body from said first position to said second position to move said protrusion exerting pressure on said clamping unit thereby releasing pressure from said clamping unit to allow retraction of said clamping unit when force is applied on said lever by said user, and said slider moves axially backward along said elongated body from said second position to said first position to move said protrusion on said clamping unit to exert pressure on said clamping unit thereby contracting said clamping unit when force is released from said lever.
2. The coupling device as claimed in claim 1, wherein said clamping unit retract to disengage said nipple of said grease fitting with said elongated body, and said clamping unit contracts to engage said nipple of said grease fitting with said elongated body.
3. The coupling device as claimed in claim 1, wherein said clamping unit includes plurality of spherical heads structured circumferentially along an inner surface of said front end of said elongated body.
4. The coupling device as claimed in claim 1, wherein said clamping unit includes at least two jaws to engage and disengage with said nipple of said grease fitting.
5. The coupling device as claimed in claim 1, wherein said lever includes a notch to provide grip to said lever.
6. The coupling device as claimed in claim 1, wherein said rear end of said elongated body includes plurality of cavities facing away from said lever to enable gripping of said elongated body by said user.
7. The coupling device as claimed in claim 1, wherein said rear end of said elongated body includes a recess facing said lever.
8. The coupling device as claimed in claim 1, wherein said rear end of said elongated body connects to an extension.
9. The coupling device as claimed in claim 1, wherein said lever is movably connected to said elongated body through said linkage mechanism that includes a pivot screw to movably connect said lever with said elongated body.
10. The coupling device as claimed in claim 1, wherein said linkage mechanism includes a rivet that relatively moves with said roller to movably connect said lever with said slider.
11. The coupling device as claimed in claim 10, wherein said lever moves said slider along said elongated body when said lever is pressed downward to move said roller connected with said rivet upward on said slider, resulting in pushing said slider axially forward.
12. The coupling device as claimed in claim 1, wherein said elongated body includes a seal biased by a second spring and structured circumferentially on an inner surface of said passage to connect with said nipple to prevent leakage of fluid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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TABLE-US-00001 Description of Elements Reference Numeral Coupling device 10 Elongated body 20 Front end 22 Cavities 23 Rear End 24 Extension 25 Passage 26 Recess 27 First Part 28 First Spring 29 Slider 30 Protrusion 32 Second Spring 33 Seal 34 Lever 40 Notch 42 Pivot Screw 44 Rivet 46 Roller 48 Clamping Unit 50 Spherical heads 52 Jaws 54 Grease fitting 60 Nipple 62
DETAILED DESCRIPTION
[0031] The embodiments of the present invention can be understood by reading following detailed description of some of the embodiments with reference to the accompanying drawings.
[0032] An embodiment of the present invention discloses a coupling device (10) that comprises of an elongated body (20), a lever (40) and a slider (30) axially movable between first position and the second position. The elongated body (20) includes a rear end (24) to which the hosepipe of the grease pumping equipment is connected, a front end (22) to which a grease fitting (60) is connected and a passage (26) between the front end (22) and rear end (24) of the coupling device (10) for fluids like grease, lubricant to flow through it and pass to the grease fitting through the connected nipple (62).
[0033] As shown in
[0034] As shown in
[0035] As shown in
[0036] As shown in
[0037] The slider (30) is also biased by a first spring (29) that creates a springing action to move slider (30) forward when the lever (40) receives force to move downward. Once the force is applied on the lever (40), the slider (30) moves forward thereby pressing or compressing the first spring (29), and once the force applied on the lever (40) is released, the slider (30) comes back to its original position which is first position due to the pressure exerted by the first spring (29) to expand to its original shape. The slider (30) also includes a protrusion (32) near the front end of the elongated body (20) that applies pressure on the clamping unit (50) when the slider (30) is in the first position. Whereas, when the slider (30) is in second position, the protrusion (32) moves away from the clamping unit (50) to release the pressure from the clamping unit (50), thereby covering or enclosing the clamping unit (50).
[0038] When the user holds the coupling device (10) and applies force on the lever (40), the lever moves downwards being connected to the elongated body (20) through the pivot screw (44). Once the lever (40) moves downward, the roller (48) movably connected with the lever (40) through the rivet (44) moves upward from its initial resting position on elongated body (20). The roller (48) while moving upward, rolls on the first part (28) of the slider (30), which is in its first position. The roller (48) while rolling, pushes or applies force proportionate to the force received by the lever (40) to the first part of the slider (30), thereby pushing slider (30) from its first position to the second position i.e. the slider (30) moves axially forward on the surface of the elongated body. Simultaneously, the first spring due to the push or force received by the roller (48) expands and remains in the expanded position as long as the roller (48) pushes the slider (30) due to the force exerted on the lever (40). While reaching second position, the protrusion (32) moves forward along the elongated body (20) thereby releasing the pressure that was exerted on the spherical heads (52) or the clamping unit (50) when the slider (30) was in first position. The protrusion (32) forms a movable contact with the clamping unit (50) or the ball bearing (52), such that when the slider (30) reaches second position, the protrusion (32) covers or encloses the spherical heads (52) or clamping unit (50) within the elongated body (20) as shown in
[0039] The elongated body (20) also includes a seal (34) that is structured circumferentially on an inner surface of the passage (26) of the elongated body (20). The seal (34) is structured substantially between the clamping unit (50) or spherical heads (52) and the inner surface of the passage (26). The seal (34) is biased by a second spring (33) structured in the passage (26) of the elongated body (20). The seal (34) is provided to seal the gap between the nipple's outer surface and the inner surface or inner circumference of the passage (26) to prevent leakage of fluid when the fluid like grease flows through the passage and the nipple (62) of the grease fitting (60) after the engagement of the nipple with the clamping unit (50) or spherical heads (52).
[0040] In an alternate embodiment as shown in
[0041] As shown in
[0042] As shown in
[0043] As shown in
[0044] The present invention is however not limited to the above embodiments disclosed above and referred in