Summary of the invention
The present invention aims to provide a kind of centrifugal compressor and comprises the chiller plant of this centrifugal compressor, can provide emergent fluid for centrifugal compressor, thus avoid centrifugal compressor due to fluid very few and occur tile kilning phenomenon, improve the operational reliability of centrifugal compressor.
To achieve these goals, according to an aspect of the present invention, provide a kind of centrifugal compressor, comprise rotor and be set in epitrochanterian bearing unit, rotor comprises the thrust face coordinated with the axial load-carrying surface of bearing unit, at least one thrust face is provided with and stores oil groove, store oil groove and be connected with the oil supply gallery in the axial load-carrying surface of bearing unit.
Further, the bottom storing oil groove is indent arc.
Further, the outward edge storing oil groove is provided with the oil unloading trough from storing oil groove and extend to thrust face outer periphery.
Further, oil unloading trough is V-type groove or U-type groove.
Further, store oil groove to successively decrease along the radial extension direction degree of depth of rotor.
Further, storing oil groove has multiple, and the circumferential direction along rotor on thrust face is uniformly distributed.
Further, bearing unit comprises fore bearing and rear bearing, the first end of rear bearing is outside equipped with thrust disc, thrust disc is fixedly connected on rotor, thrust face comprises rotor thrust face and thrust disc thrust face, fore bearing is arranged between two rotor thrust faces, and the axial load-carrying surface of rear bearing coordinates with thrust disc thrust face.
Further, fore bearing comprises fore bearing bearing shell and fore bearing bearing shell locating piece, the periphery wall of fore bearing bearing shell is provided with fore bearing fuel feeding distributing chute in parallel, fore bearing bearing shell also comprises the radial oil supply gallery of fore bearing and is separately positioned on fore bearing first side direction oil supply gallery and the fore bearing second side direction oil supply gallery of the radial oil supply gallery both sides of fore bearing, the radial oil supply gallery of fore bearing radially runs through fore bearing bearing shell from fore bearing fuel feeding distributing chute in parallel, fore bearing first side direction oil supply gallery extends to the first end end face of fore bearing bearing shell from fore bearing fuel feeding distributing chute in parallel, fore bearing second side direction oil supply gallery extends to the second end end face of fore bearing bearing shell from fore bearing fuel feeding distributing chute in parallel.
Further, fore bearing bearing shell also comprise the exit position being arranged on the radial oil supply gallery of fore bearing fore bearing circumference oil supply and along the axial oil supply of the axially extended fore bearing in fore bearing circumference oil supply two ends, the axial oil supply of fore bearing and rotor engagement, the axial oil supply two ends of fore bearing are provided with crosses oil groove with store that oil groove is communicated with first on rotor thrust face, rotor also comprises circumference arrange and with first cross that oil groove coordinates divide oil groove.
Further, rear bearing comprises rear bearing bearing shell and rear bearing bearing shell locating piece, the inner circle wall of rear bearing bearing shell locating piece is provided with rear bearing fuel feeding distributing chute in parallel, rear bearing bearing shell comprises the radial oil supply gallery of rear bearing and rear bearing side direction oil supply gallery, rear bearing side direction oil supply gallery is communicated with rear bearing fuel feeding distributing chute in parallel, along the axial direction horizontal-extending of rear bearing bearing shell, and be communicated to thrust disc thrust face stores oil groove.
According to a further aspect in the invention, provide a kind of chiller plant, comprise centrifugal compressor, this centrifugal compressor is above-mentioned centrifugal compressor.
Apply technological scheme of the present invention, centrifugal compressor comprises rotor and is set in epitrochanterian bearing unit, rotor comprises the thrust face coordinated with the axial load-carrying surface of bearing unit, at least one thrust face is provided with and stores oil groove, store oil groove and be connected with the oil supply gallery in the axial load-carrying surface of bearing unit.Store oil groove by arranging on the thrust face of rotor, when centrifugal compressor runs well, under the influence of centrifugal force, parts of lubricating oil enters to store in oil groove through oil supply gallery to be accumulated, and makes to store oil groove and realizes dynamically storing oil, keep the oil mass needed for bearing stable operation.When centrifugal compressor stops suddenly because of power down or other fortuitous events; the lubricant oil stored in oil groove slowly unloads to be put; and be back to the binding site of bearing and rotor; for bearing provides emergency lubrication; bearing is made to be unlikely to occur tile kilning phenomenon because bearing bush temperature is too high; available protecting is formed to bearing, improves the reliability of compressor operating, improve the Security of bearing.
The outward edge storing oil groove is provided with the oil unloading trough from storing oil groove and extend to thrust face outer periphery, can regulate entering the lubricant oil stored in oil groove in bearing working process, enable the lubricant oil stored in oil groove keep forming the convenient pressure needed for hydrodynamic lubrication and oil mass, ensure the ride quality of bearing.
Embodiment
Hereinafter also describe the present invention in detail with reference to accompanying drawing in conjunction with the embodiments.It should be noted that, when not conflicting, the embodiment in the application and the feature in embodiment can combine mutually.
As shown in Figures 1 to 4, according to embodiments of the invention, centrifugal compressor comprises rotor 30 and bearing unit, and bearing unit is set on rotor 30.Bearing unit had both comprised radial load-carrying surface, also comprised axial load-carrying surface, and like this, this bearing unit plays compound action, can bear the radial load of rotor 30, also can bear axial load, and compact structure.Rotor 30 comprises the thrust face matched with the axial load-carrying surface of bearing unit, at least one thrust face of rotor 30 is provided with and stores oil groove 31, store oil groove 31 to be connected with the oil supply gallery in the axial load-carrying surface of bearing unit, in the process of bearing unit work, accumulate lubricant oil.
When centrifugal compressor meets accident and stops operating; the lubricant oil be accumulated in oil groove 31 can discharge; participate in the lubrication between bearing unit and rotor 30; thus protection is formed to the bearing shell of bearing unit; thus can prevent because shortage lubrication causes bearing bush temperature too high and cause tile kilning phenomenon, improving the reliability of compressor operating.
Bearing unit comprises motor fore bearing 10 (hereinafter referred to as fore bearing) and electric motor back shaft holds 20 (hereinafter referred to as rear bearings), and the first end of rear bearing 20 is outside equipped with thrust disc 33, and thrust disc 33 is bolted and is arranged on rotor 30.Thrust face comprises the rotor thrust face 34 coordinated with fore bearing 10 and the thrust disc thrust face 35 coordinated with rear bearing, and fore bearing 10 is arranged between two rotor thrust faces 34 of rotor 30.
Incorporated by reference to see shown in Fig. 5 and Fig. 6, fore bearing 10 is processed as split type structure, and with pin location after being assemblied in rotor 30, the cylindricity keeping two-part bearing to coordinate, is then tightened by bolts.The fore bearing bearing shell locating piece 12 that fore bearing 10 comprises fore bearing bearing shell 11 and is set in outside fore bearing bearing shell 11, fore bearing bearing shell locating piece 12 is fixedly installed, and forms positioning action to fore bearing bearing shell 11.When fore bearing bearing shell 11 is installed, fore bearing 10 is set on rotor 30, make fore bearing 10 and rotor 30 be assembled into assembly, the assembly then fore bearing bearing shell 11 and rotor 30 are assembled into is installed by bearing assemble face and is positioned in fore bearing bearing shell locating piece 12.Fore bearing bearing shell locating piece 12 and fore bearing bearing shell 11 closely cooperate, and prevent fore bearing bearing shell 11 from following rotor journal and rotate together.Bearing assemble face is provided with seal groove, Sealing is provided with in seal groove, the seal makes to form sealing between fore bearing bearing shell 11 and fore bearing bearing shell locating piece 12, prevents lubricant oil from leaking along the matching gap of fore bearing bearing shell 11 and fore bearing bearing shell locating piece 12.After fixing fore bearing bearing shell 11, relative position between rotor 30 and fore bearing bearing shell locating piece 12, with bolt, the fore bearing bearing shell 11 of fore bearing 10 and fore bearing bearing shell locating piece 12 are locked.
Fore bearing bearing shell locating piece 12 comprises the main oil supply gallery 121 of fore bearing arranged along fore bearing radial direction, the first end of the main oil supply gallery 121 of fore bearing is communicated to bearing shell, second end of the main oil supply gallery 121 of fore bearing is communicated to oil sources, thus lubricant oil is introduced participation lubrication and cooling in fore bearing 10.
Fore bearing bearing shell 11 comprises and being arranged on the bearing assemble face of fore bearing bearing shell 11, and the fuel feeding distributing chute 111 in parallel be connected mutually with the main oil supply gallery of fore bearing 121 on fore bearing bearing shell locating piece 12.Fuel feeding distributing chute 111 in parallel along the circumferential direction winding in the bearing assemble face (i.e. the external cylindrical surface coordinated with fore bearing bearing shell locating piece 12 of fore bearing bearing shell 11) of fore bearing bearing shell 11 on the outer wall of fore bearing bearing shell 11.
Fore bearing bearing shell 11 also comprises the radial oil supply gallery 112 of the fore bearing be connected with fuel feeding distributing chute 111 in parallel and fore bearing side direction oil supply gallery.The radial oil supply gallery 112 of fore bearing is positioned at the medium position of the axial direction of fore bearing bearing shell 10, and the radial direction along fore bearing bearing shell 11 runs through fore bearing bearing shell 11.The exit position of the radial oil supply gallery 112 of fore bearing is provided with fore bearing circumference oil supply 115.Fore bearing circumference oil supply 115 arranges along the inwall circumference of fore bearing bearing shell 11 oil supply forming annular.The first end end inwall of fore bearing bearing shell 11 including bearing bush 11 in the past is in axial direction through to the axial oil supply 116 of fore bearing of the second end end of fore bearing bearing shell 11, the axial oil supply 116 of fore bearing runs through fore bearing circumference oil supply 115, after lubricant oil enters fore bearing circumference oil supply 115, the mating part of rotor 30 and fore bearing bearing shell 11 is entered by the axial oil supply 116 of fore bearing, and dynamic pressure oil film is formed between rotor 30 and fore bearing bearing shell 11, rotor 30 is avoided to contact with the direct of fore bearing bearing shell 11, available protecting is formed to fore bearing bearing shell 11.
Fore bearing side direction oil supply gallery comprises fore bearing first side direction oil supply gallery 113 and fore bearing second side direction oil supply gallery 114.Fore bearing first side direction oil supply gallery 113 and fore bearing second side direction oil supply gallery 114 are separately positioned on the both sides of the radial oil supply gallery 112 of fore bearing, are arranged in parallel with the radial oil supply gallery 112 of fore bearing.Fore bearing first side direction oil supply gallery 113 and fore bearing second side direction oil supply gallery 114 are from fuel feeding distributing chute 111s in parallel, fore bearing first side direction oil supply gallery 113 is obliquely extended to the first end end of fore bearing bearing shell 11, and fore bearing second side direction oil supply gallery 114 is obliquely extended to the second end end of fore bearing bearing shell 11.
In the middle of the present embodiment, in the first end end of fore bearing bearing shell 11, oil supply 116 axial with fore bearing is connected fore bearing first side direction oil supply gallery 113, and in the second end end of fore bearing bearing shell 11, oil supply 116 axial with fore bearing is connected fore bearing second side direction oil supply gallery 114.At fore bearing first side direction oil supply gallery 113 and the fore bearing second side direction oil supply gallery 114 end cohesive position with fore bearing bearing shell 11, all the axial direction of the inwall of fore bearing bearing shell 11 is provided with first and crosses oil groove 117, rotor 30 includes circumference arrange and with first cross that oil groove 117 coordinates divide oil groove 36.
For motor fore bearing 10, because there is load-carrying surface both sides, therefore, fore bearing 10 is processed the oil supply gallery in three directions, and oil supply gallery is all come together in fore bearing fuel feeding distributing chute 111 in parallel.Consider rotor 30 operationally, the bearing load in fore bearing 10 3 directions is different, therefore, need be optimized design to the oil supply gallery in three directions, arranges many group oil supply galleries so that mean allocation fuel feeding oil mass.More even in order to make radial direction or axial fuel feeding distribute, as: for radial direction, can at the fore bearing circumferentially multiple radial oil supply hole of mean allocation, quantity is 1 ~ 6 (being also the quantity of the oil supply gallery in parallel on each thrust face).Correspondingly, for the axial direction of fore bearing bearing shell 10, also carry out processing corresponding axial oil supply gallery.Specifically with regard to arranging the fore bearing of single group oil supply gallery, the flow area that need meet the radial oil supply gallery 112 of fore bearing first side direction oil supply gallery 113, fore bearing second side direction oil supply gallery 114 and fore bearing is less than or equal to the flow area of fuel feeding distributing chute 111 in parallel with fore bearing.For singly organizing oil supply gallery, its physical dimension feature is as follows: auxiliary side-thrust face oil supply hole d1: φ 1.5 ~ φ 3.5mm, master thrust face oil supply hole d2: φ 4.5 ~ φ 7.5mm, radial bearing surface oil supply hole d3: φ 4.5 ~ φ 7.5mm, fuel feeding distributing chute width w1:10 ~ 15mm, fuel feeding distributing chute height h1:4 ~ 8mm in parallel in parallel.Organize oil supply gallery if arranged more, consistent with the fuel delivery only arranged in single group oil supply gallery situation for ensureing to arrange many group oil supply gallery fuel deliveries, should ensure that the multiple radial oil supply gallery flow area sum arranged is equal with the flow area of the radial oil supply gallery only arranged when singly organizing oil supply gallery, and the setting of side direction oil supply gallery is also like this, when single group oil supply gallery is even only set, radial oil supply gallery, first side direction oil supply gallery, the circulation area of the second side direction oil supply gallery is A respectively, B, C, often organizing circulation area corresponding to oil supply gallery time when being provided with N group oil supply gallery is a respectively, b, c, the following equation of demand fulfillment:
A+B+C=N (a+b+c), and A=Na, B=Nb, C=Nc
For the view shown in Fig. 1, the bearing produced due to impeller High Rotation Speed left, therefore the Main thrust face of fore bearing is on right side, simultaneously in order to prevent impeller from reversing and reduce perturbing of rotor cantilever segment, left side also arranges thrust face, and therefore whole fore bearing has concentrated Main thrust face and auxiliary thrust face two kinds of forms.Because two thrust face stressing conditions are different, required oil mass is also different, and therefore, fuel feeding aperture is different.Right side is Main thrust face, therefore, the sectional area of the fore bearing second side direction oil supply gallery 114 extended to the right along the axial direction of fore bearing bearing shell 11 is greater than the sectional area of the fore bearing first side direction oil supply gallery 113 that the axial direction along fore bearing bearing shell 11 extends to the left, to enable more lubricant oil enter right side thrust face participate in lubrication and cooling, obviously, the structure of this differentiation setting is more reasonable.
Incorporated by reference to shown in Figure 2, the fore bearing first side direction oil supply gallery 113 being positioned at left side in this figure is made up of two-part that aperture is different, comprise dispensing section 118 that oil supply gallery 112 radial with fore bearing be connected and be connected with dispensing section 118 and extend to the extending section 119 of the first end end of fore bearing bearing shell 11, the sectional area of extending section 119 is greater than the sectional area of dispensing section 118.Setting like this is to change fuel feeding flow velocity, to make the flow velocity of lubricant oil in fore bearing first side direction oil supply gallery 113 mate with the stressed of rotor thrust face 34.
Two rotor thrust faces 34 are provided with and store oil groove 31, this stores oil groove 31 and is connected with the first mistake oil groove 117 on fore bearing bearing shell 11, and in the process of rotor turns, the lubricant oil in the first mistake oil groove 117 is under the effect of rotor centrifugal force, enter and store in oil groove 31, and accumulation is got up.First mistake oil groove 117 is arranged along the circumferential direction of fore bearing bearing shell 11, lubricant oil enters first and crosses after in oil groove 117, oil groove 117 circumference can be crossed along first to be uniformly distributed, thus evenly flowed between each thrust face and the axial load-carrying surface of fore bearing by the first mistake oil groove 117, form good lubrication effect.
In the middle of other embodiment, fore bearing first side direction oil supply gallery 113 and fore bearing second side direction oil supply gallery 114 also can the middle part of the in the past radial oil supply gallery 112 of fore bearing of bearing bush 11 along the axial direction horizontal-extending of fore bearing bearing shell 11, and the sectional area of fore bearing second side direction oil supply gallery 114 is greater than the sectional area of fore bearing first side direction oil supply gallery 113.The main oil supply gallery 121 of fore bearing in lubricant oil the past bearing bush locating piece 12 flows into, enter in the radial oil supply gallery 112 of fore bearing, and be divided into three strands, one flows to the first end end face of fore bearing bearing shell 11, participates in the lubrication between the first end end face of fore bearing bearing shell 11 and rotor thrust face 34; One flows to the second end end face of fore bearing bearing shell 11, participates in the lubrication between the second end end face of fore bearing bearing shell 11 and rotor thrust face 34; One flows to the fore bearing circumference oil supply 115 of fore bearing bearing shell 11, participates in the lubrication between rotor 30 and the inwall of fore bearing bearing shell 11.
Incorporated by reference to see shown in Fig. 3, Fig. 4, Fig. 7 and Fig. 8, rear bearing 20 comprises rear bearing bearing shell 21 and rear bearing bearing shell locating piece 22.Rear bearing bearing shell locating piece 22 is fixedly installed, and forms positioning supports effect to rear bearing bearing shell 21.Rear bearing bearing shell 21 is set on rotor 30, is fixedly installed thrust disc 33 outside the first end of rear bearing bearing shell 21.Thrust disc 33 is bolted to connection on rotor 30, forms axial force to rear bearing bearing shell 21.
Rear bearing bearing shell locating piece 22 comprises rear bearing fuel feeding distributing chute 221 in parallel and the main oil supply gallery 222 of rear bearing.Rear bearing fuel feeding distributing chute 221 in parallel is circumferentially arranged on the inwall of rear bearing bearing shell locating piece 22 in direction, forms circumferential oil supply gallery.The main oil supply gallery 222 of rear bearing is arranged along the radial direction of rear bearing bearing shell locating piece 22, and is communicated with rear bearing fuel feeding distributing chute 221 in parallel, distributes for lubricant oil being delivered to rear bearing fuel feeding distributing chute 221 in parallel.
Rear bearing bearing shell 21 comprises the radial oil supply gallery 211 of rear bearing, the axial oil supply 213 of rear bearing circumference oil supply 212, rear bearing side direction oil supply gallery and rear bearing.The radial oil supply gallery 211 of rear bearing is arranged on the neutral position of rear bearing bearing shell 21 axial direction, and the radial direction along rear bearing bearing shell 21 is arranged, and runs through the sidewall of rear bearing bearing shell 21.Rear bearing circumference oil supply 212 is arranged on the exit position of the radial oil supply gallery 211 of rear bearing along the circumferential direction of the inwall of rear bearing bearing shell 21, lubricant oil is radially introduced inwall from the outer wall of rear bearing bearing shell 21.The axial oil supply 213 of rear bearing is in axial direction arranged on the inwall of rear bearing bearing shell 21, first end along rear bearing bearing shell 21 extends to the second end of rear bearing bearing shell 21, and be connected with rear bearing circumference oil supply 212, the lubricant oil entered in rear bearing circumference oil supply 212 is in axial direction distributed between rotor 30 and rear bearing bearing shell 21, to form dynamic pressure oil film between rotor 30 and rear bearing bearing shell 21.
One end of rear bearing side direction oil supply gallery is communicated with rear bearing fuel feeding distributing chute 221 in parallel, and the other end extends to the first end endface position of rear bearing bearing shell 21.Rear bearing side direction oil supply gallery is arranged between rear bearing fuel feeding distributing chute 221 in parallel and the axial oil supply 213 of rear bearing.Rear bearing side direction oil supply gallery comprises rear bearing first side direction oil supply gallery 214 and rear bearing second side direction oil supply gallery 215.Rear bearing first side direction oil supply gallery 214 extends to the first end end face of rear bearing bearing shell 21 from the radial oil supply gallery 211 of rear bearing, is introduced between the axial load-carrying surface of rear bearing 20 and the thrust disc thrust face 35 of rotor 30 by lubricant oil from the radial oil supply gallery 211 of rear bearing.
Rear bearing bearing shell 21 also comprises fuel feeding distributing chute 221 in parallel with rear bearing and is communicated with and the heavy oilhole 216 extended along the radial direction of rear bearing bearing shell 21, heavy oilhole 216 is blind hole, and rear bearing second side direction oil supply gallery 215 extends laterally to the first end end of rear bearing bearing shell 21 from the end of heavy oilhole 216.
Rear bearing first side direction oil supply gallery 214 and rear bearing second side direction oil supply gallery 215 can obliquely be arranged, also can be horizontally disposed with along the axial direction of rear bearing bearing shell 21, the axial direction that the side direction oil supply gallery in the middle of the present embodiment is along rear bearing bearing shell 21 is horizontally disposed with.All radial oil supply gallery 211 is arranged in parallel with rear bearing for rear bearing first side direction oil supply gallery 214 and rear bearing second side direction oil supply gallery 215, thus lubricant oil is delivered to respectively the axial carrying face of rear bearing 20 and radial supporting plane.
In the endface position coordinated with thrust disc thrust face 35 of rear bearing bearing shell 21, circumferentially direction is provided with second and crosses oil groove, second crosses oil groove is communicated with the axial oil supply 213 of the rear bearing storing oil groove 31 and rear bearing bearing shell 21 on thrust disc thrust face 35, is delivered to by the lubricant oil in axial for rear bearing oil supply 213 stores in oil groove 31 by the second mistake oil groove.
Hold owing to only having a radial load-carrying surface and an axial load-carrying surface for electric motor back shaft, therefore, by the oil supply gallery of bearing machining both direction, respectively lubricant oil is caused two end faces of this bearing, and oil supply gallery is come together in rear bearing fuel feeding distributing chute 221 in parallel.For end thrust face, in order to make distribution of lubrication oil more even, at circumferentially mean allocation 4 oil supply galleries, its physical dimension feature is as follows: radial bearing surface oil supply hole d4: φ 4.5 ~ φ 7.5mm, thrust face oil supply hole d5: φ 1 ~ φ 4mm.
Because the side direction oil supply gallery of fore bearing 10 and rear bearing 20 is arranged in parallel with radial oil supply gallery; be delivered in the process of the thrust face of rotor and the axial load-carrying surface of bearing at lubricant oil; and without the heating of the axial mating part between rotor 30 and bearing; therefore; the oil temperature entering thrust face can meet the effect of cooling and lubrication, and lubricant oil can have better viscosity, is formed and stablizes dynamic pressure oil film; thus available protecting is formed to bush material, prevent the bearing bush abrasion of bearing.
Incorporated by reference to see shown in Fig. 9 to Figure 14, store oil groove 31 for being arranged on the concave inward structure on the thrust face of rotor 30, this concave inward structure forms holding space, and is communicated with the oil supply gallery on bearing unit.Operationally, store oil groove 31 and coordinate with the load-carrying surface of bearing unit and form receiving cavity, thus lubricant oil is entered by oil supply gallery store in oil groove 31 and accumulation.
Please specifically see shown in Fig. 9 to Figure 12, the view structure of what these figures mainly illustrated the is axial direction in the rotor thrust face 34 coordinated with fore bearing 10.As can be seen from the figure, storing oil groove 31 view shape is in axial direction U-shaped, cross sectional view shape along the radial direction of rotor 30 is interior concave circular arc (bottom namely storing oil groove 31 is interior concave circular arc), and this stores oil groove 31 and successively decreases along the degree of depth in the radial extension direction of rotor 30, comprise be positioned at rotor radial direction innermost layer straight and store oily section and store with this arc that oily section is connected and store oily section.Storing oil groove 31 sectional shape in axial direction also can be ellipse or other shape.
The outward edge storing oil groove 31 is provided with the oil unloading trough 32 from storing oil groove 31 and extend to the outer periphery in rotor thrust face 34, and this oil unloading trough 32 and the arc storing oil groove 31 store oily section and be connected, and are connected storing oil groove 31 with outside emptying space.After lubricant oil lubricates motor fore bearing 10 and takes away heat, come together under the influence of centrifugal force and store in oil groove 31, after storing and accumulating enough lubricant oil in oil groove 31, oil unloading trough 32 can regulate the lubricant oil stored in oil groove 31, make to store oil groove 31 can realize dynamically storing oil, and maintain oil film and form pressure needed for hydrodynamic lubrication and oil mass, thus keep the oil mass needed for bearing stable operation.The sectional shape of oil unloading trough 32 is V-type or U-shaped.The oil groove 31 that stores on rotor thrust face 34 has multiple, and is evenly distributed on rotor thrust face 34 along the circumferential direction of rotor 30, and in the middle of the present embodiment, the oil groove 31 that stores on rotor thrust face 34 has six.
It is as follows that rotor thrust face stores oil groove 31 physical dimension feature: flute length L2:15 ~ 25mm, groove width w2:15 ~ 25mm, groove depth L4:3 ~ 4mm, radius of arc A:R15 ~ R20mm, circular arc B:R15 ~ R20mm, draining groove depth L3:1 ~ 2.5mm, draining groove width w3:1 ~ 2.5mm.
Incorporated by reference to see shown in Figure 13 and Figure 14, what mainly illustrate is the view structure of the axial direction of the thrust disc thrust face 35 coordinated with rear bearing 20.As can be seen from the figure, storing oil groove 31 sectional shape is in axial direction U-shaped, and the sectional shape along the radial direction of rotor 30 is interior concave circular arc.Storing oil groove 31 sectional shape in axial direction also can be ellipse or other shape.
The outward edge storing oil groove 31 is provided with the oil unloading trough 32 from storing oil groove 31 and extend to the outer periphery of thrust disc thrust face 35, and this oil unloading trough 32 is connected storing oil groove 31 with outside emptying space.Lubricant oil holds 20 lubrications to electric motor back shaft and after taking away heat, come together under the influence of centrifugal force and store in oil groove 31, after storing and accumulating enough lubricant oil in oil groove 31, oil unloading trough 32 can regulate the lubricant oil stored in oil groove 31, make to store oil groove 31 can realize dynamically storing oil, and maintain oil film and form pressure needed for hydrodynamic lubrication and oil mass, thus keep the oil mass needed for bearing stable operation.The sectional shape of oil unloading trough 32 is V-type or U-shaped.The oil groove 31 that stores on thrust disc thrust face 35 has multiple, and is evenly distributed on thrust disc thrust face 35 along the circumferential direction of rotor 30, and in the middle of the present embodiment, the oil groove 31 that stores on thrust disc thrust face 35 has six.
It is as follows that thrust disc stores oil groove 31 physical dimension feature: flute length L5:15 ~ 25mm, groove width w4:13 ~ 20mm, groove depth L7:1 ~ 3mm, circular arc C: R15 ~ R20mm, draining groove depth L6:0.8 ~ 2mm, draining groove width w5:1.5 ~ 3mm.
Centrifugal compressor is in running, when lubricant oil enters bearing shell from the main fuel feeding runner of fore bearing 10 and rear bearing 20, be introduced into fuel feeding distributing chute in parallel around bearing shell one circle, then the radial load-carrying surface of bearing shell and axial load-carrying surface is distributed to along each fuel feeding uniform flow passage in parallel, after bearing shell being lubricated and take away heat, come together under centrifugal action and store in oil groove 31, under the adjustment of drain pan 32, store in oil groove 31 and maintain oil film and form pressure needed for hydrodynamic lubrication and oil mass, keep the oil mass needed for bearing stable operation.When centrifugal compressor stops suddenly because of power down, the lubricant oil be accumulated in oil groove 31 slowly unloads to be put, and provides emergency lubrication to bearing, makes bearing shell be unlikely to occur tile kilning phenomenon because temperature is too high, improves the reliability of compressor operating.According to embodiments of the invention, chiller plant comprises above-mentioned centrifugal compressor.
From above description, can find out, the above embodiments of the present invention achieve following technique effect: centrifugal compressor comprises rotor and is set in epitrochanterian bearing unit, rotor comprises the thrust face coordinated with the axial load-carrying surface of bearing unit, at least one thrust face is provided with and stores oil groove, store oil groove and be connected with the oil supply gallery in the axial load-carrying surface of bearing unit.Store oil groove by arranging on the thrust face of rotor, when centrifugal compressor runs well, under the influence of centrifugal force, parts of lubricating oil enters to store in oil groove through oil supply gallery to be accumulated, and makes to store oil groove and realizes dynamically storing oil, keep the oil mass needed for bearing stable operation.When centrifugal compressor stops suddenly because of power down or other fortuitous events; the lubricant oil stored in oil groove slowly unloads to be put; and be back to the binding site of bearing and rotor; for bearing provides emergency lubrication; bearing is unlikely to because tile kilning phenomenon appears in bearing bush temperature too high two; available protecting is formed to bearing, improves the reliability of compressor operating, improve the Security of bearing.The outward edge storing oil groove is provided with the oil unloading trough from storing oil groove and extend to thrust face outer periphery, can regulate entering the lubricant oil stored in oil groove in bearing working process, enable the lubricant oil stored in oil groove keep forming the convenient pressure needed for hydrodynamic lubrication and oil mass, ensure the ride quality of bearing.
The foregoing is only the preferred embodiments of the present invention, be not limited to the present invention, for a person skilled in the art, the present invention can have various modifications and variations.Within the spirit and principles in the present invention all, any amendment done, equivalent replacement, improvement etc., all should be included within protection scope of the present invention.