This application is the US-national stage of PCT application PCT/EP2012/066103 filed 17 Aug. 2012 and claiming the priority of German patent application 202011051640.7 itself filed 14 Oct. 2011.
The invention relates to a collecting container comprising a housing that is formed with an inlet port to introduce lubricant and is open on the opposite end, and comprising a flexible membrane that is attached to the housing, which membrane delimits a lubricant collection chamber adjacent the inlet port.
Contaminated and excess lubricant in lubricant systems in which, for example, a bearing is supplied with lubricant is often captured and collected in reusable collecting containers that are connected to the outlet of a bearing. A collecting container for lubricants having the above-referenced purpose and the above-described features has been disclosed in DE 20 2010 014 823 [US 2012/0103465]. In the known collecting container, an elastic membrane that delimits and seals the lubricant collection chamber is displaced by the inflowing lubricant. At the same time, air present in the collecting container escapes through a vent provided in a cover closing the collecting container. Once the collecting container is filled completely, the membrane rests against the bottom of the cover. The disadvantage here is that it is impossible, or is possible only with great effort, to then empty the collecting container.
In response to the situation described above, the object of the invention is to provide a reusable collecting container for lubricants that is sealed effectively and can be emptied by simple means.
The object of the invention and achievement of this object is a collecting container for lubricants in which the membrane starting from its attachment to the housing first has a bellows section and a reinforced section connected to the end thereof. The reinforced section forms a surface whose face near the inlet port is in contact with the lubricant after the lubricant collection chamber has been filled. This surface distributes the force to be applied to empty the collecting container across the lubricant, and this provides uniform ejection and enables the lubricant container to be emptied completely. In addition, the reinforced surface is robust, and unlike the elastic regions of the membrane cannot be damaged even if a plunger, pencil-shaped tool, or the like is applied and used to eject the lubricant.
In order to ensure both that the optimum distribution of force is possible for downward pressure and also that the bellows section of the membrane does not move between the edge of the reinforced section and jam, the reinforced section preferably extends essentially across the entire cross section of the lubricant collection chamber.
The housing of the collecting container according to the invention preferably has a cylindrical base body and a smaller-diameter neck connected to the inlet port. In a first embodiment of the invention, the membrane is secured to the end of the inlet port. In particular, provision is made whereby the membrane is attached in the neck and sealed against the housing. Various attachment approaches are possible. For example, the membrane can be welded or glued in place. In addition, the membrane can include a connector piece having a screw thread that is screwed into the neck. Provision is furthermore made whereby the bellows section and the reinforced section of the membrane are sized so that the membrane rests against the inner surface of the housing and lines the interior space of the housing after the collecting container chamber has been filled. As a result, the lubricant that completely fills the lubricant collection chamber is surrounded by the membrane, and the collection chamber is effectively sealed when in the filled condition. Air can escape from inside the housing when the membrane is moved due to the fact that the collection chamber is open at one end.
The arrangement according to the invention enables an inflow pressure of less than 0.2 bar to be sufficient to displace the membrane and fill the space surrounded by the membrane.
At its open end, the housing is provided with at least one stop that limits expansion of the membrane, thereby preventing the membrane from extending beyond a maximum fill condition. The stop can be formed by a projecting lug on the inside face of the housing. It is furthermore possible to provide an arrangement formed by multiple projecting lugs that are spaced apart angularly, or to provide a stop ring.
In a second embodiment of the collecting container according to the invention, the membrane is attached to the end of the housing opposite the inlet port, where the attachment seals off an intermediate space between the housing and the membrane. The housing in this embodiment thus directly forms the lubricant collection chamber, while the membrane the discharge of lubricant on the open end of the housing. Provision is made in this embodiment whereby the membrane is permanently attached to the housing. The membrane can, for example, be permanently welded or glued in place along the edge of the open end of the housing. The membrane is preferably clamped in place between a top edge of the housing and a cover that has a vent.
The reinforced section in both embodiments of the collecting container according to the invention is formed by a dimensionally stable plate—preferably a plastic plate that is permanently attached to the membrane—and, in particular, can also be integrated in the membrane as a core. At least certain regions of the membrane can be of multilayer form, with the reinforcement element laminated or vulcanized between the layers.
In order to improve handling, the reinforced section of the membrane can include a tool seat to allow attachment of an ejection tool. The invention also comprises an approach whereby a cover with an opening or hole is provided on the housing such that an ejection tool can be introduced through the opening of the cover and fitted to the tool seat in order to empty the collecting container. A tool fitted in the tool seat is both adequately supported in the tool seat during the downward-pressing action and is also advantageously guided within the opening of the cover. This ensures that the reinforced section can be pressed down without tilting and cannot jam.
In a development of the collecting container according to the invention, the completely filled collecting container is emptied by compressed air. To this end, a cover including a connection is provided on the housing so as to enable a compressed air source to be connected, the cover being mounted on the housing in a pressure-resistant manner.
The following describes the invention with reference to illustrated embodiments. Therein:
The collecting container for lubricants as illustrated in
Based on the filled condition of the lubricant collection chamber as shown in
Expansion of the elastic membrane 4 is limited by at least one stop 11 at the open upper end of the housing 1 opposite the inlet port 2. The reinforced section 7 of the membrane 4, which is formed by a dimensionally stable plate, comes into contact with the projecting lug 11 in the filled condition as shown here.
The second embodiment of the lubricant collection chamber as shown in
Number | Date | Country | Kind |
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20 2011 051 640 U | Oct 2011 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2012/066103 | 8/17/2012 | WO | 00 | 4/10/2014 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2013/053516 | 4/18/2013 | WO | A |
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Number | Date | Country | |
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20140224837 A1 | Aug 2014 | US |