Supply device for viscous media
20170021374 ยท 2017-01-26
Assignee
Inventors
- Daniel Beisel (Kronau, DE)
- Juergen Kreutzkaemper (Waibstadt-Daisbach, DE)
- Andreas Schoenfeld (Sankt Leon-Rot, DE)
Cpc classification
F16N2013/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16N11/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Disclosed is a supply device (1) for supplying a consumer with a viscous medium, in particular a lubricant supply device (1), comprising at least a reservoir (6) for the viscous medium (8) comprising a follower piston (30) which comprises a ring seal (32) at its circumferential edges and is supported on the viscous medium and which separates the reservoir (6) into a space (36) supplied with a viscous medium and an air space (38), and a feed pump (10) for feeding the viscous medium from the reservoir (6) to a medium outlet (12), wherein further in the reservoir (6) at least one opening (60) is provided which serves to receive a ventilation apparatus (50) via which the reservoir (6) is in air-exchanging contact with the exterior surroundings; wherein the opening (60) is arranged in the reservoir (6) such that in a determined filling state of the reservoir (6) the ring seal (32) at least partially overrides the opening (60) so that the space supplied with a viscous medium is in fluidic connection with the opening (60).
Claims
1. A supply device for supplying a consumer with a viscous medium, in particular a lubricant supply device, comprising at least a reservoir for the viscous medium comprising a follower piston which comprises a ring seal at its circumferential edges and is resting on the viscous medium and which separates the reservoir into a space supplied with a viscous medium and an air space, a feed pump for feeding the viscous medium from the reservoir to a medium outlet, wherein further in the reservoir at least one opening is provided which serves to receive a ventilation apparatus via which the reservoir is in air-exchanging contact with the exterior surroundings; characterized in that the opening is arranged in the reservoir such that in a determined filling state of the reservoir the ring seal at least partially overrides the opening so that the space supplied with a viscous medium is in fluidic connection with the opening.
2. The supply device according to claim 1, wherein the fluidic connection is formed in case of a maximum filling of the reservoir with a viscous medium.
3. The supply device according to claim 1, wherein the opening is further configured to provide a detachable connection between the reservoir and the ventilation apparatus.
4. The supply device according to claim 1, wherein the opening and/or the ventilation apparatus comprise at least one sealing element by means of which the connection between the reservoir and the ventilation apparatus may be sealed.
5. The supply device according to claim 1, wherein the detachable connection may be acquired via a form lock, in particular a snap lock, bayonet lock or screw lock, or a frictional lock, in particular clamps.
6. The supply device according to claim 1, wherein the reservoir or the ventilation apparatus comprises a projection which cooperates with a complementarily configured groove at the ventilation apparatus or the reservoir such that the ventilation apparatus may be snapped in at the reservoir.
7. The supply device according to claim 1, wherein the ventilation apparatus is configured tube-shaped and comprises an air inlet opening and an air outlet opening, wherein the air outlet opening leads to an interior space of the reservoir and the air inlet opening leads to an exterior surrounding, wherein the air inlet opening is arranged below the air outlet opening.
8. The supply device according to claim 7, wherein the ventilation apparatus comprises a connecting section comprising the air outlet opening which extends basically horizontally and a tube section following the connecting section which extends basically vertically and at whose end opposite to the connecting section the air inlet opening is formed.
9. The supply device according to claim 1, wherein at the reservoir a first position securing element and at the ventilation apparatus a second position securing element which is complementary to the first position securing element are formed which secure a spatial position of the ventilation apparatus at the supply device.
Description
[0020] In the following, the invention is to be described in more detail with reference to the embodiments illustrated in the Figures. Here, the embodiments are merely exemplary and are not to restrict the scope of the application. The same is defined by the appended claims only.
[0021] What is illustrated:
[0022]
[0023]
[0024]
[0025] In the following, like or elements seemingly like regarding their function are designated by the same reference numerals.
[0026] The Figures illustrated in the following are sectional views through a lubricant supply device which serves as an exemplary embodiment for a supply device comprising viscous medium. Of course, also other supply devices, for example a water dispenser or soap dispenser may be provided with the described characteristics.
[0027]
[0028] This supply pump 10 is as usual driven by a motor 14, in particular an electric motor which, as is conventionally known, rotates an eccentric 16 which in turn moves a supply piston 18 of the supply pump 10.
[0029] In order to provide a lubricant supply device 1 which is especially space-saving, the motor 14 is further arranged in the first housing section 2 forming the reservoir 6. In this respect, in the housing section 2 an interior housing 20 may be provided which receives the motor 14 and extends from a lid side 22 of the housing section 2 to the eccentric 16. Consequently, the interior housing 20 forms a substantially lubricant-free space. On the side facing the eccentric 16 the housing 20 is sealed tight by means of sealing elements 24 at which simultaneously bearings 26 are arranged which care for a transmission of the rotary movement of an axis of rotation 28 of the motor 14 to the eccentric 16.
[0030] Further,
[0031] Further,
[0032] Further,
[0033] Apart from the space-saving arrangement of the motor 14 in the reservoir 6, the arrangement has the further advantage that the motor 14 is in heat-exchanging contact with the interior housing 20 and thus with the lubricant 8. In this way, on the one hand the waste heat of the motor 14 may care for heating up the lubricant 8 and simultaneously the lubricant 8 insulates the motor 14 from excessive temperature fluctuations. This way, in particular with cold temperatures, the motor 14 is better protected. Apart from that, the viscosity of the lubricant 8 may be kept in an optimum temperature range also at low temperatures.
[0034] Above the lid area 22 further a housing section 48 may be arranged which includes an electrical controller (not illustrated) for the motor 14 and the piston pump 10.
[0035] Further,
[0036] As in case of such a fluidic connection between the space 36 filled with lubricant and the ventilation element 50 an escape of the lubricant from the space 36 filled with lubricant into the ventilation apparatus 50 is possible, it is provided to arrange the ventilation apparatus 50 detachably within the opening 60. In this respect, the ventilation apparatus 50, as it may be gathered from the sectional view of
[0037] One possible detachable connection between ventilation element 50 and opening 60 is illustrated in
[0038] It may further be seen in
[0039] By the simple tube-shaped implementation of the ventilation apparatus 50 it may further be guaranteed that the same may easily be cleaned. Apart from that, the ventilation apparatus 50 may be manufactured from a plastics material, for example, so that it is also available as a cost-effective exchange element.
[0040] Further, the opening 60 and the connecting element 52 may be configured such that the connecting element 52 and/or the ventilation apparatus 50 are sealingly received in the opening 60. For this purpose, for example, corresponding ring seals may be provided.
[0041] All in all, it may be guaranteed using the proposed supply device which includes a follower piston that air which accumulates below the follower piston when filling the supply device may escape through the fluidic connection between the space filled with lubricant and the opening so that the feed pump is not damaged by air intake. Apart from that, it may be guaranteed by the removable ventilation apparatus 50 that lubricant which has entered the ventilation apparatus 50 does not lead to the complete reservoir having to be exchanged but that only the ventilation apparatus 50 is cleaned or exchanged. This way, a cost-effective possibility is created to maintain the functioning of the lubricant pump over a long period of time. Simultaneously, by means of the exchangeable ventilation apparatus also strict hygiene requirements may be met. It is possible this way, for example, to exchange the ventilation apparatus 50 in regular intervals so that it is prevented for bacteria or vermin to accumulate permanently in the ventilation apparatus 50.
REFERENCE NUMERAL LIST
[0042] 1 lubricant supply device [0043] 2 first housing section [0044] 4 second housing section [0045] 6 reservoir [0046] 8 lubricant [0047] 10 feed pump [0048] 12 lubricant outlet [0049] 14 motor [0050] 16 eccentric [0051] 18 feed piston [0052] 20 interior housing [0053] 22 lid side [0054] 24 seal [0055] 26 bearing [0056] 28 rotational axis [0057] 30 follower piston [0058] 32 ring seal [0059] 36 lubricant receptacle [0060] 38 air space [0061] 40 intermediate floor [0062] 42 stirring device [0063] 44 stirring blade [0064] 46 roll [0065] 48 housing for controlling [0066] 50 ventilation apparatus [0067] 52 horizontal connector [0068] 54 tube piece [0069] 56 air inlet opening [0070] 58 air outlet opening [0071] 60 opening in the first housing section [0072] 62 stud [0073] 64 groove [0074] 66 projection [0075] 68 recess