Refrigerant compressor with lubricant distribution unit having filter holding chamber with filter body therein
10508839 · 2019-12-17
Assignee
Inventors
Cpc classification
F25B31/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2240/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B31/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2240/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C23/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F03C2/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B31/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03C4/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A refrigerant compressor particularly a rotary screw compressor comprising a compressor housing, a compressor element which is driven by a drive and is arranged in said compressor housing, at least one bearing unit for at least one element of the drive which comprises at least one bearing housing and at least one roller bearing that is arranged in the bearing housing. Lubricant is supplied by a lubricant distribution system to the bearing housing and a lubricant dispensing unit which comprises a filter holding chamber and a filter body that is arranged in the filter holding chamber is associated with the bearing housing.
Claims
1. Refrigerant compressor, in the form of a rotary screw compressor, comprising a compressor housing, at least one compressor element which is arranged in the compressor housing and is driven by a drive, a plurality of bearing units disposed at at least one of a low pressure side or a high pressure side for the at least one compressor element driven by the drive, each of the bearing units comprising a bearing housing and at least one roller bearing that is arranged in the bearing housing, a lubricant being supplied to the bearing housing by a lubricant distribution system, a plurality of lubricant dispensing units, each lubricant dispensing unit comprising a filter holding chamber and a filter body is arranged in the filter holding chamber, wherein the lubricant dispensing units include a first lubricant dispensing unit arranged to dispense lubricant to at least one of the bearing units of the low pressure side or the high pressure side and a second lubricant dispensing unit arranged to dispense to at least another one of the bearing units of the low pressure side or the high pressure side.
2. The refrigerant compressor in accordance with claim 1, wherein each lubricant dispensing unit comprises an inlet channel which extends from the filter holding chamber to a lubricant chamber adjoining the roller bearing.
3. The refrigerant compressor in accordance with claim 1, wherein each lubricant dispensing unit comprises a throttle boring which is arranged between the filter holding chamber and a lubricant chamber adjoining the roller bearing.
4. The refrigerant compressor in accordance with claim 3, wherein each lubricant dispensing unit supplies the lubricant to the lubricant chamber associated therewith.
5. The refrigerant compressor in accordance with claim 1, wherein each of the first and second lubricant dispensing units is integrated into the bearing housing of a respective unit of the first and second bearing units to dispense lubricant thereto.
6. The refrigerant compressor in accordance with claim 1, wherein the bearing housing for each of the first and second bearing units comprises a housing element in which a respective unit of the first and second lubricant dispensing units is arranged.
7. The refrigerant compressor in accordance with claim 6, wherein the housing element is a bearing housing cover of the bearing housing.
8. The refrigerant compressor in accordance with claim 6, wherein the housing element is a bearing housing ring of the bearing housing.
9. The refrigerant compressor in accordance with claim 1, wherein each lubricant dispensing unit is provided with a nozzle boring which is located after the filter holding chamber and produces a jet of lubricant that is directed onto the roller bearing in the bearing housing.
10. The refrigerant compressor in accordance with claim 9, wherein the nozzle boring simultaneously acts as a throttle boring of the respective lubricant dispensing unit.
11. The refrigerant compressor in accordance with claim 1, wherein the refrigerant compressor comprises a plurality of screw rotors.
12. The refrigerant compressor of claim 1, wherein the first lubricant dispensing unit dispenses lubricant only to the first bearing unit, and the second lubricant dispensing unit dispenses lubricant only to the second bearing unit.
13. The refrigerant compressor of claim 1, wherein some of the bearing units are unaffiliated with any of the lubricant dispensing units.
14. The refrigerant compressor of claim 1, wherein each of the bearing units comprises a plurality of bearings arranged side by side.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(11) An exemplary embodiment of a refrigerant compressor in accordance with the invention which is illustrated in
(12) Seating borings 22, 24 are provided in the compressor housing 12 for screw rotors 26 and 28 which are mounted in the seating borings 22, 24 such as to be rotatable about respective rotational axes 32, 34.
(13) Hereby, the screw rotors 26, 28 extend from a low pressure side 36 to a high pressure side 38 wherein a refrigerant supply channel 42 is associated with the low pressure side 36, whereas, on the high pressure side 38, provision is made for a high pressure outlet which is not illustrated in
(14) The mounting of the screw rotors 26, 28 is effected in the region of the low pressure side 36 of the screw rotors 26, 28 by means of bearing units 62, 64 which are arranged in the compressor housing and serve to hold bearing shaft sections 66, 68 of the screw rotors 26, 28.
(15) Furthermore, mounting of the screw rotors 26, 28 is effected in the region of their high pressure side by means of bearing units 72, 74 which likewise serve to hold shaft sections 76, 78 of the screw rotors 26, 28.
(16) Hereby, the bearing units 72, 74 are arranged in a high-pressure-side bearing housing 82 which is firmly attached to the compressor housing 12 and in connection with the compressor housing 12 projects into the pressure housing 16.
(17) The drive for the screw rotors 26, 28 is provided by a drive motor 84 which is arranged in the motor housing 14 whilst the motor shaft 86 thereof extends, in one piece manner for example, into the bearing shaft section 66 and carries a rotor 92 which is likewise rotatable coaxially with respect to the rotational axis 32 of the bearing shaft section 66 in this exemplary embodiment.
(18) Furthermore, the driver motor 84 comprises a stator 94, which is arranged in non-rotary manner in the motor housing 14.
(19) In the illustrated exemplary embodiment of the refrigerant compressor in accordance with the invention, the sucked-in refrigerant flows firstly through the motor housing 14 in order to cool the rotor 92 and the stator 94 for example, and then passes over into the refrigerant supply channel 42 which supplies the sucked-in refrigerant to the low pressure side 36 of the screw rotors 26, 28.
(20) For the purposes of lubricating all of the bearing units 62, 64 and 72, 74 as well as the screw rotors 26, 28 in the seating borings 22, 24, provision is made for a lubricant supply system which receives lubricant from the lubricant oil sump 56 that is subjected to a high pressure and supplies it to a filter unit 102 and then supplies the lubricant to the individual bearing units 62, 64, 72, 74 from the filter unit 102.
(21) In particular, the lubricant supply system comprises a lubricant distribution system 104 which leads from the filter unit 102 to the bearing units 62, 64.
(22) In order to enable the bearing units 62, 64 to be optimally lubricated by the lubricant distribution system 104, the roller bearings 112, 114 accommodating the bearing shaft sections 66, 68 in rotary manner are each arranged in bearing housings 116, 118 that are formed on the one hand by wall areas 132, 134 of the compressor housing 12 which accommodate outer bearing races 122, 124 of the roller bearings 112, 114 and are provided with seating borings 126, 128 and are closed on the side remote from the respective screw rotors 26, 28 by bearing housing covers 136, 138 so that lubricant chambers 142, 144 are formed in the bearing housings 116, 118 to which the lubricant for lubricating the roller bearings 112, 114 is to be supplied.
(23) On the one hand, a sufficient quantity of lubricant has to be supplied to these lubricant chambers 142, 144 in order to ensure reliable and long-term lubrication of the roller bearings 112, 114, but on the other hand, the supply of too much lubricant to the lubricant chambers 142, 144 will lead to churning losses and pinching losses in the region of the roller bearings 112, 114 which will increase the power consumed by the drive motor 84 and thus worsen the performance figures of the refrigerant compressor.
(24) Consequently, it is necessary to ensure that there is a proportioned supply of lubricant from the lubricant distribution system 104. To this end, each of the bearing housings 116, 118 is provided with a lubricant dispensing unit 152, 154 which is integrated into the respective bearing housing cover 136, 138 for example.
(25) The function and the operation of the lubricant dispensing units 152, 154 are described exemplarily hereinafter on the basis of the lubricant dispensing unit 154 which is integrated into the bearing housing cover 138, whereby corresponding remarks apply for the lubricant dispensing unit 152 integrated into the bearing housing cover 136.
(26) As illustrated in
(27) Furthermore, the annular body 162 comprises a peripheral groove 174 which extends into the body from the peripheral surface 164 and also serves to convey the lubricant being supplied from the lubricant distribution system 104 to the bearing housing cover 138 for example.
(28) In the first exemplary embodiment illustrated in
(29) An inlet channel 186 extends into the inner space 168 from the filter holding chamber 182 and is preferably coaxial therewith.
(30) Here for example, the filter holding chamber 182 and also the inlet channel 186 are implemented as borings wherein, with reference to a central axis 188, the filter holding chamber 182 is of greater diameter than the inlet channel 186 which adjoins it coaxially, so that a step 192 upon which the filter body 184 abuts is formed at the point of transition from the filter holding chamber 182 to the inlet channel 186 and this step prevents the filter body 184 from migrating into the inner space 168.
(31) The filter body 184 is preferably made of a porous material so that, by appropriate selection of the porosity thereof, the filter body 184 is effective as a flow control for the supplied lubricant and it is thus in a position to restrict the supply of lubricant to the corresponding lubricant chamber 144 in such a way that sufficient lubricant, but not too much lubricant, is supplied to the respective lubricant chamber, in this case, the lubricant chamber 144.
(32) The filter body 184 can be constructed from various materials.
(33) One possibility envisages that the filter body 184 be formed of a sintered metal whereby bronze or stainless steel can be used as the material.
(34) Another possibility envisages that the filter body 184 be formed of a refrigerant-neutral and lubricant-neutral synthetic material whereby in particular, a sintered porous synthetic material and/or a compacted baked synthetic material granulate can be used.
(35) In the first exemplary embodiment of the lubricant dispensing unit 154 in accordance with the invention, the inlet channel 186 adjoining the filter holding chamber 182 does not work here as a flow obstructing means, but rather, it is irrelevant to the question of proportioning the amount of lubricant being supplied to the lubricant chamber 144.
(36) For example, the lubricant then collects at least partially in the lubricant chamber 144 in the form of a lubricant bath 190 at the deepest point in the direction of the force of gravity, and from there, it passes on into the roller bearing 114.
(37) In a second exemplary embodiment of a lubricant dispensing unit 154 in accordance with the invention which is illustrated in
(38) In a third exemplary embodiment of a lubricant dispensing unit 154 in accordance with the invention which is illustrated in
(39) In this case for example, the inlet channel 186 is closed with respect to the inner space 168 of the annular body 162.
(40) In a second exemplary embodiment of a rotary screw compressor in accordance with the invention which is illustrated in
(41) In contrast to the first exemplary embodiment, the lubricant distribution system 104 not only supplies the bearing units 62 and 64 but also the bearing units 72 and 74 with lubricant.
(42) As illustrated in
(43) On the sides of the wall regions 232, 234 opposite the high pressure sides 38 of the screw rotors 26, 28, there are bearing housing rings 242, 244 which are inserted into the seating borings 222, 224 and are thus arranged between the respective wall regions 232, 234 and the respectively nearest roller bearing 202.
(44) Bearing housing rings 242, 244 of this type can either be arranged at the ends of the roller bearings 202, 204, 206 as illustrated in
(45) The bearing housing rings 242, 244 bound lubricant chambers 252, 254 that are arranged between them and the nearest roller bearings 202, the supply of lubricant to the roller bearings 202, 204 and 206 through the respective bearings for example being effected from said lubricant chambers.
(46) As is illustrated in
(47) Furthermore, a groove 274 extends from the peripheral surface 264 into the annular body 262 in the same way as for the bearing housing covers 136, 138.
(48) Furthermore, extending from the groove 274, there is the filter holding chamber 182 with the filter body 184 and an inlet channel 186 which is connected to the filter holding chamber 182 and opens out into the inner space 266 of the bearing housing ring 244.
(49) Commencing from the groove 274 which has the same purpose as was described in connection with the bearing housing covers 136, 138, there is thus likewise provided in each of the bearing housing rings 242, 244 the lubricant dispensing unit 152, 154 which comprises the filter holding chamber 182 that extends from the groove 274 into the annular body 262 and into which the filter body 184 is inserted and then the inlet channel 186 which extends therefrom into the inner space 266 of the bearing housing ring 244.
(50) Here, the lubricant dispensing unit 152, 154 is constructed in the same way as that described in the preceding exemplary embodiments and has the same effect as was likewise explained in connection with these exemplary embodiments.
(51) The bearing housing ring 244 could also be inserted between two of the roller bearings 202, 204, 206.
(52) In a second exemplary embodiment of the bearing housing ring 244 which is illustrated in
(53) A third exemplary embodiment of a bearing ring 244 in accordance with the invention which is illustrated in
(54) In all other respects, the third exemplary embodiment is constructed in the same way as the second exemplary embodiment so that reference is made to the details thereof.