IP Library › Granted Patent US 9,371,963
Granted Patent B2
US 9,371,963 · App. 13/508,480 · Granted Jun 21, 2016

Lubricant distributor

Inventor: Jürgen Brendel (Pottenstein, DE)
Assignee: Baier and Koeppel GmbH and Co.
F16N29/04F16N7/385F16N25/00F16N2260/08F16N2260/12F16N2260/22
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Quick Facts
Patent No.
US 9,371,963
App. No.
13/508,480
Granted
Jun 21, 2016
Kind
B2
Abstract

The invention relates to a lubricant distributor ( 1 ), in particular for use in central lubricating systems for machines, vehicles, construction machines, or agricultural machines, for conveying and distributing lubricant from a lubricant source to predetermined lubricant discharge points by means of one or more lines,comprising a main distributor ( 2 ). The lubricant distributor is characterized in that the lubricant distributor comprises at least one line-break monitor ( 3 ) for detecting a pressure drop in at least one line, and in that the at least one line-break monitor ( 3 ) is structurally arranged in or on the main distributor ( 2 ) in order to create a rigid unit comprising the main distributor ( 2 ) and the line-break monitor ( 3 ).

Claims (10)

1. A lubricant distributor for conveying and distributing lubricant from a lubricant source via one or more lines to one or more lubricant supply points, the lubricant distributor comprising at least one removable or exchangeable modular rupture monitor and a basic distributor comprising at least one distributor outlet and a connection element assigned to each distributor outlet; wherein the basic distributor and the at least one line rupture monitor are removably connected to provide a rigid unit; wherein the at least one line rupture monitor comprises at least one line rupture monitor module, the line rupture monitor module removably connected to a connection element, for ease of combination of modules and retrofitting of modules, the rupture module removably assigned to a distributor outlet of the basic distributor and each of the at least one line rupture monitors comprises a detection device comprising electrical components, optical components, or both electrical and optical components and is configured and adapted to detect a pressure drop in the connection element, wherein each line rupture monitor module is operatively connected to a connection element, the connection element is configured in such a way that the lubricant is guided out of the distributor outlet via a bypass fluid path which is formed by an opening on the wall of the connection element, a hole section and a relief hole provided in the line rupture monitor module, the hole section is connected at one end to the opening and connected at another end to the relief hole.

2. The lubricant distributor as claimed in claim 1 , wherein the at least one line rupture monitor module has a disk-shaped configuration.

3. The lubricant distributor as claimed in claim 1 , wherein the distributor comprises at least one empty nonfunctional module comprising no electrical or optical components serving to close a gap between two functional line rupture monitor modules and producing a signal transmission path between two functional line rupture monitor modules.

4. The lubricant distributor as claimed in claim 3 , wherein the line rupture monitor module comprises a feeler plunger spring-mounted within an opening in a lubricant channel, such that the feeler plunger is positionable counter to the force of the spring.

5. The lubricant distributor as claimed in claim 4 , wherein the position of the feeler plunger is dependent on the fluid pressure within the opening in the lubricant channel.

6. The lubricant distributor as claimed in claim 1 , wherein each of the at least one distributor outlets is assigned a line rupture monitor module.

7. The lubricant distributor as claimed in claim 1 , wherein the basic distributor is configured as a progressive distributor.

8. A central lubrication system for machines, vehicles, construction or agricultural machines comprising a lubricant distributor as claimed in claim 1 .

9. The lubricant distributor as claimed in claim 1 , wherein the at least one line rupture monitor comprises at least one line rupture monitor module the connection element is configured in such a way that it does not produce a direct connection between the distributor outlet and a line which is connected to the connection element.

10. A lubricant distributor for conveying and distributing lubricant from a lubricant source via one or more lines to one or more lubricant supply points, the lubricant distributor comprising at least one rupture monitor and a basic distributor comprising at least one distributor outlet and a connection element assigned to each distributor outlet; wherein the basic distributor and the at least one line rupture monitor are removeably connected to provide a rigid unit; wherein the at least one line rupture monitor comprises at least one line rupture monitor module, the line rupture monitor module removeably connected to a connection element, for ease of combination of modules and retrofitting of modules, the rupture module removeably assigned to a distributor outlet of the basic distributor and each of the at least one line rupture monitors comprises a detection device comprising electrical components, optical components, or both electrical and optical components and is configured and adapted to detect a pressure drop in the connection element, wherein each line rupture monitor module is operatively connected to a connection element, the connection element is configured in such a way that the lubricant is guided out of the distributor outlet via a bypass fluid path which is formed by an opening on the wall of the connection element, a hole section and a relief hole provided in the line rupture monitor module, the hole section is connected at one end to the opening and connected at another end to the relief hole.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2012
From: BRENDEL, JUERGEN
To: BAIER AND KOEPPEL GMBH AND CO.
Reel/Frame 028498/0635 →
Continuity (1)
Related Publication 20120273305A1 · Nov 1, 2012