CN100451341C - Roller type compressor with concentric rings - Google Patents
Roller type compressor with concentric rings Download PDFInfo
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- CN100451341C CN100451341C CNB2006101346303A CN200610134630A CN100451341C CN 100451341 C CN100451341 C CN 100451341C CN B2006101346303 A CNB2006101346303 A CN B2006101346303A CN 200610134630 A CN200610134630 A CN 200610134630A CN 100451341 C CN100451341 C CN 100451341C
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- outer shroud
- interior ring
- main shaft
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- 230000006835 compression Effects 0.000 description 3
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- 230000003292 diminished effect Effects 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 238000001802 infusion Methods 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
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Abstract
The invention discloses a roll compressor with concentric ring, comprising machine shell (1), main spindle (21), outer ring (2), inner ring (3), drum (4), and clapboard (7). Two ends of machine shell (1) are connected with main spindle (21) by bearings. Air hole of cavity connection, which is formed by outer ring (2), inner ring (3), drum (4) and clapboard (7), is set on the machine shell (1). Inner ring (2) and outer ring (3) in the machine shell are concentric. The drum (4) is set between outer ring (2) and inner ring (3). The drum (4) is inscribed with the inner wall of outer ring (2) and the outer wall of inner ring (3). The open port (26) through the drum (4) is set on the drum axis. The clapboard (7) between outer ring (2) and inner ring (3) is set in the open port (26) of drum (4). Up and down ends of clapboard (7), inner wall of outer ring (2) and outer wall of inner ring (3) are fixed in the same time, or they are connected in sliding along the arc face in the same time, or one end is fixed and the other end is connected in sliding along the arc face. The spindle (21) in machine shell (21) is connected with one of drum (4), inner ring (3), and outer ring (3) at least.
Description
Technical field:
The present invention relates to a kind of positive displacement compressor, be specifically related to air conditioner refrigerating compressor, air compressor, especially a kind of structure and manufacturing process is simple, cost is low, good seal performance, vibration and the low roller type compressor with concentric rings of noise.
Background technique:
The application area of compressor is wider, is divided into centrifugal and positive displacement compressor according to the difference of working method.Positive displacement compressor is divided into reciprocating piston type, ramp type, rocking plate type and radial radiation-type, rolling-piston-type, rotary vane type, roots-type, three-apexed rotor formula, screw type, rolling rotor-type, scroll compressor etc. by structure.Compressor can be divided into air compressor, natural gas compressor, air conditioner refrigerating compressor according to the difference of fed sheet of a media.
At present, compressor relatively more commonly used is piston compressor, rolling rotor type compressor, screw compressor and scroll compressor.The piston compressor major defect: inertial force is big, and rotating speed is low, so machine is heavy, more so, complete machine oscillation is big during big discharge capacity.Complex structure, easily damaged parts is many, and maintenance load is big.Exhaust is discontinuous, and the stream pressure pulsation easily produces the gas column vibration.Noise is big, can only be placed in outdoor insulating noise.The major defect of rolling rotor type compressor is after compression finishes more residual gas to be arranged, volumetric efficiency is low, the structure of fixed center distance can occur obvious leak in case appearance is worn and torn between back rotor and the cylinder wall surface, has limited the raising of its operating life and efficient.The major defect of screw compressor is: complicated spiral camber processing difficulties, equipment has high input, the cost height, manufacturing efficiency is low, and spiral camber profile tolerance precision is low, and the potted line area of contact is little, poor sealing performance, need lubricant oil cooling and sealing, vent systems needs the oil gas purifier, the auxiliary system complexity.Although scroll compressor is because its volume little, in light weight, advantage, especially its volumetric efficiency height such as noise is low, no suction valve, part is few, the life-span is long, under the equivalent discharge capacity situation joint expect, characteristics such as energy-conservation, thereby extremely favor in market.In light duty compressors such as automobile air conditioner compressor, household air-conditioner compressor, capture and lead the status.But scroll compressor needs complicated navigation system, the vortex Machining of Curved Surface difficulty that it is complicated, and equipment needed thereby has high input, the cost height, manufacturing efficiency is low, can't meet the need of market.
Summary of the invention:
The present invention is in order to solve the above-mentioned technical problem of existing in prior technology, provides that a kind of structure and manufacturing process are simple, cost is low, good seal performance, vibration and noise is low, the roller type compressor with concentric rings of energy saving.
Technical solution of the present invention is: a kind of roller type compressor with concentric rings, comprise casing 1, main shaft 21, outer shroud 2, interior ring 3, cylinder 4, dividing plate 7, casing 1 two ends join by bearing and main shaft 21, casing 1 is provided with and outer shroud 2, interior ring 3, cylinder 4, the vent that the cavity that forms between the dividing plate 7 communicates, it is characterized in that: outer shroud 2 and interior ring 3 concentric settings in the casing 1, between outer shroud 2 and the interior ring 3 cylinder 4 is set, the inwall of cylinder 4 and outer shroud 2 and the outer wall of interior ring 3 be inscribe mutually simultaneously, cylinder 4 axially is provided with the opening 26 that connects cylinder 4, in the opening 26 of cylinder 4 and between outer shroud 2 and the interior ring 3 dividing plate 7 is set, the outer wall of the two ends up and down of dividing plate 7 and the inwall of outer shroud 2 and interior ring 3 is slidingly connected with arc surface simultaneously; The outer wall of the inwall of the outer shroud 2 that is provided with and interior ring 3 is provided with arc surface groove 10,14 vertically with one heart, the upper and lower end face of dividing plate 7 for the outer wall of the inwall of outer shroud 2 and interior ring 3 on the arc surface that matches of arc surface groove 10,14, described opening 26 is plane openings and extends on the circular base slab 29 in the cylinder 4, the left and right plane of dividing plate 7 and plane opening 26 match, and circular base slab 29 that cylinder 4 joins by inside and axle sleeve 17 join with the eccentric diameter of axle 19 of main shaft 21.
Below described dividing plate 7, be connected to the catch 25 that places in circular base slab 29 upper sheds.
In the described dividing plate 7 cavity 31 is arranged, one-way valve 12 is arranged in the cavity 31, at least one side of dividing plate 7 is provided with vent and communicates with cavity 31.
The invention has the beneficial effects as follows:
1, simple in structure, volume is little.Compressor arrangement spare is less than scroll compressor, reliable performance, front end does not need complicated navigation system, the rear end does not need exhaust cavity, equivalent capacity compressors is compared, whole meeting approaches about 1/3, and the volume of single cylinder engine of the present invention is equivalent to the volume of two compressor with rolling rotor, so the compressor volume of equivalent discharge capacity can be littler.
2, manufacturing process is simple, manufacturing efficiency is high, cost is low.Manufacturing equipment does not need to depend on NC machining center, high precision numerical control grinding center, detection facility and does not rely on highi degree of accuracy numerical control devices such as three coordinate measuring machine, and equipment investment is low.Process equipment is a standard equipment, and cost of production is low, the manufacturing efficiency height.
3, sealing and good energy-conserving effect.The precision of key components and parts is by external cylindrical grinding machine and surface grinding machine decision, so contour accuracy height, especially the set-up mode of dividing plate not only makes positioning means simple, and in whole motion process, remain large size contact, sealing is tight, the superior performance of same performance under the slow-speed of revolution is if Sealing has wearing and tearing also self adaption to regulate in long-term the use, from motive sealing.While operating accuracy height, the reliability height.Because the high rotating speed and the slow-speed of revolution are little to the sealability influence of gas leakage, so be suitable for adopting variable-frequency control technique to reach energy-conservation effect.
4, volumetric efficiency height.Gas main shaft after compression goes to the volume that compresses during end position near compression and has only ten thousand of total volume/several, consider the existence of exhaust passage, the residual gas space also only accounts for the some thousandths of of total breathing space volume, be volumetric efficiency up to more than 99%, be higher than the volumetric efficiency of scroll compressor 90%~98%.
5, the life-span height of key structure spare.Because the main shaft force bearing point is between two bearings, stress is good.The speed of related movement of cylinder and interior ring, outer shroud is very low, and it is very slow to wear and tear, long service life.
6, vibration and noise are low, scientific and technological environmental protection.The distribution mode of equilibrium block is more flexible, can interiorly distribute, and also can arrange in addition.Can realize very high dynamic and static balance quality.Vibration is slight, and noise is low, compliance with environmental protection requirements.
7, big, the high working efficiency of discharge capacity.Because its porting adopts the end face intake and exhaust except being arranged on the end cap, the inlet and outlet mouth can also be arranged on the circumference of inner and outer rings, also can be arranged on the dividing plate, so the inlet and outlet open area can be done very greatly, can satisfy the requirement of big discharge capacity, can be made into large-scale compressor.
8, pressure surge is little, stable work in work.The phase angle of internal layer active chamber and outer active chamber work just differs 180 degree, and inner chamber and exocoel be simultaneously outwards during exhaust, and main shaft turns over identical angle, and to discharge the total measurement (volume) of gas be essentially identical, so the delivery pressure wave range is less, and stable working state.As air pressure motor and oil hydraulic motor under the driving of highly pressurised liquid or gas, can stablize output torque.
9, applied range.The present invention can be widely used in automobile air conditioner compressor, household air-conditioner compressor, industrial refrigeration compressor, also can be used as air compressor, vacuum pump, infusion pump, pneumatic motor and oil hydraulic motor etc.
Description of drawings:
Now the present invention is further described in conjunction with the accompanying drawings and embodiments.
Fig. 1 is the structural representation of embodiments of the invention 1.
Fig. 2 is the longitudinal sectional view of embodiments of the invention 1.
Fig. 3 is the A-A view of Fig. 2.
Fig. 4 is the structural representation of the cylinder of the embodiment of the invention 1.
Fig. 5 is the structural representation of the dividing plate of the embodiment of the invention 1.
Fig. 6, Fig. 7, Fig. 8, Fig. 9 be the embodiment of the invention 1 the working procedure schematic representation of outer active chamber.
Figure 10, Figure 11, Figure 12, Figure 13 be the embodiment of the invention 1 the working procedure schematic representation of internal layer active chamber.
Figure 14 is the structural representation of embodiments of the invention 2.
Figure 15 is the partial enlarged drawing of embodiments of the invention 2.
Figure 16 is the longitudinal sectional view of embodiments of the invention 2.
Figure 17 is the perspective view that the embodiment of the invention 2 is used for totally-enclosed compressor.
Figure 18 is the B-B view of Figure 16.
The structural representation of the cylinder of Figure 19 embodiment of the invention 2.
Figure 20 is the structural representation of the crescent moon panel of the embodiment of the invention 2.
Figure 21, Figure 22, Figure 23, Figure 24 be the embodiment of the invention 2 the working procedure schematic representation of outer active chamber.
Figure 25, Figure 26, Figure 27, Figure 28 be the embodiment of the invention 2 the working procedure schematic representation of internal layer active chamber.
Figure 29 is the structural representation of embodiments of the invention 3.
Figure 30 is the C-C view of Figure 29.
Figure 31 is the structural representation of the eccentric disc of embodiments of the invention 3.
Figure 32 is the structural representation of embodiments of the invention 4.
Figure 33 is the D-D view of Figure 32.
Figure 34 is the structural representation of embodiments of the invention 5.
Figure 35 is the E-E view of Figure 34.
Figure 36 is the structural representation of embodiments of the invention 6.
Figure 37 is the F-F view of Figure 36.
1-casing among the figure, ring in the 2-outer shroud, 3-, 4-cylinder, contraction chamber in the 5-, relief opening under the 6-, 7-dividing plate, the outer contraction chamber of 8-, the last relief opening of 9-, the cylndrical surface groove of 10-outer shroud, 11-pore, 12-one-way valve, the cylndrical surface groove of annulus in the 13-pore, 14-, expansion chamber in the 15-ventilating hole, 16-, the 17-axle sleeve, 18-excentric sleeve, the eccentric diameter of axle of 19-main shaft, the outer expansion chamber of 20-, the 21-main shaft, 22-garden pin, 23-equilibrium block, the 24-seal ring, 25-catch, 26-opening, the 27-bearing, 28-end cap, 29-circular base slab, the 30-seal groove, the cavity of 31-dividing plate, 32-crescent moon panel, 33-is outer every dish, 34-circular groove, 35-eccentric disc, the eccentric disk ring of 36-, 37-equalizing orifice, 38-through hole, the 39-passage, the last inlet hole of 40-, inlet hole under the 41-
Embodiment:
Embodiment 1:
Shown in Fig. 1,2,3,4,5, compressor is mainly by casing 1, outer shroud 2, interior ring 3, cylinder 4, dividing plate 7 and circular base slab 29, main shaft 21, excentric sleeve 18, equilibrium block 23, compositions such as end cap 28, bearing and fastening piece.There are outer shroud 2 and interior ring 3 in casing 1 inside, and outer shroud 2 and interior ring 3 are structure as a whole with casing 1, also can be the branch body structures.Outer shroud 2 and interior ring 3 arranged concentric, interior ring 3 and outer shroud are referred to as inside and outside ring below 2.The inner headed face at outer shroud 2 tops is provided with the downward cylndrical surface groove 10 of breach, and the top periphery of interior ring 3 is provided with 14, two cylndrical surface grooves of cylndrical surface groove, 10,14 arranged concentric that breach makes progress, and between two cylndrical surface grooves 10,14 dividing plate 7 is set.Dividing plate 7 be shaped as up and down that the side is an arc surface, be preferably the cylndrical surface, the left and right side is a parallel plane, the rear and front end face is the plane.Dividing plate 7 is embedded in the cylndrical surface groove 10,14 between the inside and outside ring, and the cylndrical surface up and down of dividing plate 7 and the cylndrical surface groove of inside and outside ring are slidingly connected.
Between outer shroud 2 and interior ring 3 cylinder 4 is set, the inwall of cylinder 4 and outer shroud 2 and interior ring 3 outer walls are inscribe mutually simultaneously.Cylinder 4 inside are circular base slab 29 and axle sleeve 17, axially connect on cylinder 4 and the circular base slab 29 opening 26 is set, and two sides of opening 26 are the plane.Dividing plate 7 is arranged in the opening 26 of cylinder 4.On the cylinder 4 through hole 15 can be set as required, through hole 15 can be in a side of opening 26, through hole 15 also can be distributed in the both sides of opening 26, on the cylinder 4 one-way valve 12 can also be set, and cylinder 4 also can not be provided with through hole 15 and adopt existing technology commonly used to carry out exhaust certainly.
Casing 1 both sides can be provided with end cap 28, and the end face of outer shroud 2, interior ring 3 and cylinder 4 is sealed, and end cap 28 can be structure as a whole with casing 1, also can be the branch body structure.Casing 1 or end cap 28 join by bearing 27 and main shaft 21, and cylinder 4 joins by the circular base slab 29 of inside and the eccentric diameter of axle 19 of axle sleeve 17 and main shaft 21.Can also be provided with excentric sleeve 18 or bearing between the axle sleeve 17 of the eccentric diameter of axle 19 of main shaft 21 and cylinder 4 inside.The inside and outside circle cylinder of excentric sleeve 18 is eccentric to be provided with, and positioning hole and straight pin 22 can be set on the excentric sleeve 18 and equilibrium block 23 is installed.
As shown in Figure 5, the bottom of dividing plate 7 can also be extended downwards catch 25 is set, catch 25 places the opening 26 on the circular base slab 29, the thickness of catch 25 is preferably identical with the thickness of circular base slab 29, exhaust port 6 and upper air-vent 9 can be set down on the dividing plate 7, cavity 31 is arranged in the dividing plate 7, one-way valve 12 is set in the cavity 31.
The outer active chamber working procedure of present embodiment 1 is shown in Fig. 6,7,8,9, internal layer active chamber working procedure is shown in Figure 10,11,12,13: outer active chamber is separated into outer expansion chamber 20 and outer contraction chamber 8, expansion chamber 16 and interior contraction chamber 5 in the internal layer active chamber is separated into.
Fig. 6,7,8, the 9th, outer field active chamber is spent 4 different operating positions that corners demonstrate respectively every 90.When main shaft 21 forwards Fig. 6 position to, it is big that outer expansion chamber 20 becomes gradually, expansion chamber 20 beginnings outside pore 13 enters of the gas of low pressure area are air-breathing, outer contraction chamber 8 diminishes gradually, when main shaft 21 forwards Fig. 7 position to, outer expansion chamber 20 continues to become big, and gas is expansion chamber 20 outside pore 13 enters, and outer contraction chamber 8 continues to diminish.When main shaft 21 forwards Fig. 8 position to, outer expansion chamber 20 continues to become big and air inlet, outer contraction chamber 8 continues to diminish, when the pressure of outer contraction chamber 8 during greater than the pressure of zone of high pressure, one-way valve 12 in the dividing plate 7 is opened, gases in the outer contraction chamber 8 enter in the cavity 31 of dividing plate 7 through the last relief opening 9 of dividing plate 7, again through air passing hole 11 to the zone of high pressure exhaust.When main shaft 21 forwarded Fig. 9 position to, it is maximum that outer expansion chamber 20 becomes, and sucks the gas of maximum flow, and outer contraction chamber 8 becomes minimum and discharges all gas, finishes a work cycle.When main shaft 21 continues to forward to Fig. 6 position, enter next work cycle, circulation constantly is transported to the zone of high pressure to the gas of low pressure area like this.
Figure 10,11,12, the 13rd, the active chamber of internal layer is spent 4 different operating positions that corners illustrate respectively every 90.When main shaft 21 forwarded Figure 10 position to, the gas of low pressure area is expansion chamber 20 outside pore 13 enters, expansion chamber 16 in entering through the ventilating hole 15 on the cylinder 4 again, and interior expansion chamber 16 becomes greatly gradually, begins air-breathingly, and interior contraction chamber 5 diminishes gradually.When main shaft 21 forwarded Figure 11 position to, gas continued to enter interior expansion chamber 16 from pore 13 and ventilating hole 15, and interior expansion chamber 16 continues to become big and air-breathing, and interior contraction chamber 5 continues to diminish.When main shaft 21 forwards Figure 12 position to, interior expansion chamber 16 continues to become big and air-breathing, interior contraction chamber 5 continues to diminish, when the pressure of interior contraction chamber 5 during greater than zone of high pressure pressure, one-way valve 12 in the dividing plate 7 is opened, the gas of interior contraction chamber 5 enters cavity 31 in the dividing plate 7 through the following relief opening 6 of dividing plate 7, again through air passing hole 11 to the zone of high pressure exhaust.When main shaft 21 forwarded Figure 13 position to, it is maximum that interior expansion chamber 16 becomes, and sucks maximum gas, and it is minimum that interior contraction chamber 5 becomes, and discharge all gas, finishes a work cycle.When main shaft 21 continues to forward to Figure 10 position, enter next work cycle, circulation constantly is transported to the zone of high pressure to the gas of low pressure area like this.
Cylinder of the present invention can be provided with ventilating hole 15, can relief opening all be set in the both sides of dividing plate, communicates with pore 11,13 by the cavity 31 in the dividing plate 7 and carries out distribution.
Embodiment 2:
Shown in Figure 14~20, the basic structure of compressor is with embodiment 1, be fixedly connected with the inwall of outer shroud 2 and the outer wall of interior ring 3 respectively with the two ends up and down of embodiment 1 different is described dividing plate 7, two sides of the opening 26 on the cylinder 4 are axially being the arc surface of center line, be preferably the cylndrical surface, between dividing plate 7 and arc surface opening 26, crescent moon panel 32 be set.Crescent moon panel 32 is crescent section rectangular as shown in figure 20, and promptly a side of crescent moon panel 32 is preferably the cylndrical surface for the arc surface that the side with the opening 26 of cylinder 4 matches, and opposite side is the plane.Two crescent moon panels 32 are distributed in the both sides of dividing plate 7, and the arc surface of the opening of the arc surface of crescent moon panel 32 and cylinder 4 fits, and the plane of the plane of crescent moon panel 32 and dividing plate 7 fits.Cylinder 4 inside are provided with circular base slab 29 and axle sleeve 17, and opening 26 can extend in the circular base slab 29, and cylinder 4 outer installment are outer every dish 33, on the inwall of casing 1 or outer shroud 2, have with outside every the corresponding circular groove 34 of dish 33 outer rims.
The outer active chamber working procedure of present embodiment 2 is shown in Figure 21,22,23,24, internal layer active chamber working procedure is shown in Figure 25,26,27,28: outer active chamber is separated into outer expansion chamber 20 and outer contraction chamber 8, expansion chamber 16 and interior contraction chamber 5 in the internal layer active chamber is separated into.
Figure 21,22,23, the 24th, outer field active chamber is spent 4 different operating positions that corners illustrate respectively every 90.When main shaft 21 forwarded Figure 21 position to, outer expansion chamber 20 became greatly gradually, and expansion chamber 20 beginnings outside pore 13 enters of the gas of low pressure area are air-breathing, and outer contraction chamber 8 diminishes gradually.When main shaft 21 forwarded Figure 22 position to, gas is expansion chamber 20 outside pore 13 continues to enter, and outer expansion chamber 20 continues to become big, and outer contraction chamber 8 continues to diminish.When forwarding Figure 23 position to, it is big and air-breathing that outer expansion chamber 20 continues to become, and outer contraction chamber 8 continues to diminish, and when outer contraction chamber 8 pressure during greater than zone of high pressure pressure, one-way valve 12 is opened, through air passing hole 11 to the zone of high pressure exhaust.When main shaft 21 forwarded Figure 24 position to, it is maximum that outer expansion chamber 20 becomes, and sucks maximum gas, and it is minimum that outer contraction chamber 8 becomes, and discharges all gas, finishes a work cycle.When main shaft 21 continues to forward to Figure 21 position, enter next work cycle, circulation constantly is transported to the zone of high pressure to the gas of low pressure area like this.
Figure 25,26,27, the 28th, outer field active chamber is spent 4 different operating positions that corners illustrate respectively every 90.When main shaft 21 forwarded Figure 25 position to, the gas of low pressure area is expansion chamber 20 outside pore 13 enters, expansion chamber 16 in entering through the ventilating hole 15 of cylinder 4 again, and interior expansion chamber 16 becomes greatly gradually, begins air-breathingly, and the while, interior contraction chamber 5 diminished gradually.When main shaft 21 forwards Figure 26 position to, expansion chamber 16 in gas continues to enter from pore 13, ventilating hole 15, interior expansion chamber 16 continues to become big, and interior contraction chamber 5 continues to diminish.When main shaft 21 forwarded Figure 27 position to, it is big and air-breathing that interior expansion chamber 16 continues to become, and interior contraction chamber 5 continues to diminish, and when interior contraction chamber 5 pressure during greater than zone of high pressure pressure, one-way valve 12 is opened, through air passing hole 11 to the zone of high pressure exhaust.When main shaft 21 forwarded Figure 28 position to, interior expansion chamber 16 became greatly, sucked the gas of maximum flow, and interior contraction chamber 5 becomes minimum and discharges all gas, finishes a work cycle.When main shaft 21 continues to forward to Figure 25 position, enter next work cycle, circulation constantly is transported to the zone of high pressure to the gas of low pressure area like this.
Embodiment 3:
As Figure 29, Figure 30, shown in Figure 31, basic structure is with embodiment 2, and different is that cylinder 4 one sides are provided with eccentric disc 35 with embodiment 2.On the inwall of casing 1 or outer shroud 2, have and the corresponding circular groove 34 of eccentric disc 35 outer rims.The outside of eccentric disc 35 is eccentric disk ring 36, eccentric disk ring 36 inside are provided with circular base slab 29, the axle sleeve 17 of circular base slab 29 is concentric with the inner cylindrical surface of eccentric disk ring 36, the end face of eccentric disk ring 36 and the end face of outer shroud 2 slide and join, and the external cylindrical surface of the inner cylindrical surface of eccentric disk ring 36 and cylinder 4 slides and joins.The axle sleeve 17 and the main shaft 21 of eccentric disc 35 join, and rotate synchronously with main shaft 21, remedy the side clearance between outer shroud and the cylinder 4 all the time.Eccentric disc 35 again as counterweight, dwindles structural volume both as Sealing.
When said structure is arranged along eccentric disc 35 both sides, be duplex cylinder compressor, when said structure was arranged along eccentric disc 35 1 sides, structure as shown in figure 29 was single cylinder compressor.
Embodiment 4:
As Figure 32, shown in Figure 33, basic structure is with embodiment 2, different is that cylinder 4 is fixedly connected with casing 1 with embodiment 1,2, and outer shroud 2, interior ring 3, dividing plate 7 combine as a whole, and is slidingly connected by interior ring 3 or the inner circular base slab 29 eccentric diameter of axle 19 with main shaft 21.
Embodiment 5:
As Figure 34, shown in Figure 35, basic structure is with embodiment 1,2,3,4, can rotate in the same way around the center of circle separately with embodiment 1,2,3,4 different is outer shroud 2, interior ring 3, dividing plate 7, cylinder 4, rotates synchronously.
In the described casing 1 outer shroud 2 is arranged, outer shroud 2 is slidingly connected with casing 1, outer shroud 2, interior ring 3, cylinder 4, dividing plate 7 join by bearing and casing slip with gyration center line separately, main shaft 21 in outer shroud 2, interior ring 3, cylinder 4, the dividing plate 7 at least one and the casing is fixedly connected, and rotates synchronously around gyration center separately.
Shown in the embodiment 5 is that interior ring and main shaft 21 are fixedly connected, outer shroud 2 and cylinder 4 with join by sliding bearing or rolling bearing with separately gyration center line and casing 1, fixedly connected with the outer wall of the inwall of outer shroud 2 and interior ring 3 simultaneously in the two ends up and down of dividing plate 7, main shaft 21 rotations, ring 3 in driving, outer shroud 2, dividing plate 7 and cylinder 4 rotate in the same way around the center of circle separately together, cylinder 4 still rolls along the inwall of interior ring 3 outer walls and outer shroud 2, outer shroud 2, interior ring 3, dividing plate 7, cylinder 4, the internal and external layer active chamber 5 that crescent moon panel 32 and casing 1 and end cap 28 surround, 8,16,20 volume constantly changes, and constitutes positive displacement compressor.
Embodiment 6:
As Figure 36, shown in Figure 37, basic structure is with embodiment 1,2,3,4,5, and between the outer wall of the inwall of the two ends up and down of embodiment 1,2,3,4,5 different is dividing plate 7 and outer shroud 2 and interior ring 3, wherein an end is fixedly connected, and the other end is slidingly connected.
Between the outer shroud 2 of arranged concentric and the interior ring 3 dividing plate 7 is set, axially connect with the simultaneously tangent cylinder 4 of the outer wall of the inwall of outer shroud 2 and interior ring 3 and to be provided with opening 26, two sides of opening 26 are axially being the arc surface of center line, dividing plate 7 is arranged in the opening 26 of cylinder 4, between the opening 26 of dividing plate 7 and cylinder 4 crescent moon panel 32 is set, the cylndrical surface, upper end of dividing plate 7 and the inner cylindrical surface of outer shroud 2 are slidingly connected, the bottom of dividing plate 7 and interior ring 3 are connected to one, also can be that the cylndrical surface, lower end of dividing plate 7 and the outer wall of interior ring 3 are slidingly connected, the top of dividing plate 7 and outer shroud 2 are connected to one, interior ring 3, at least one is fixedlyed connected with the main shaft 21 in the casing 1 in outer shroud 3 and the cylinder 4, more simply is that interior ring 3 is fixedlyed connected with main shaft 21.The inside of cylinder 4 also can be provided with dunnage 29, and cylinder 4 or inner dunnage 29 one or both sides join by sliding bearing or rolling bearing with casing 1 or end cap 28.
Structural member in above-mentioned several embodiment can adopt monolithic construction, also can adopt split-type structural or composite structure, and for example: Figure 18, cylinder 4 shown in Figure 19 can resolve into circular base slab 29, form every dish 33, cylinder 4 outward.End cap 28 and casing 1 and inside and outside ring can be combined into one.
As shown in Figure 2, between end cap 28 and cylinder 4 surface of contact wearing plate can be set, circular base slab 29 both sides also can be provided with wearing plate.As shown in Figure 4, the end face of cylinder 4 and interior ring 3 can be provided with seal groove 30, and seal ring 24 is installed in the seal groove 30.
Vent systems of the present invention also can adopt existing known technology, and as adopting end face intake type and circumferential intake type, inlet hole and exhaust port can be arranged on the end cap, and relief opening also can be arranged on the inside and outside ring, and exhaust ports is provided with exhaust valve plate.
The internal and external layer active chamber is worked independently of one another, can be considered as two compressors and work simultaneously.The suction port of internal and external layer active chamber and relief opening can also can be connected in parallel connection, and displacement is big when in parallel.Though displacement is little when the suction port of internal and external layer active chamber and relief opening series connection, the pressure difference height.
Because the phase difference of internal and external layer active chamber is 180 °, when respectively the suction port of internal and external layer active chamber being connected side by side with relief opening, the air displacement summation is constant substantially, and the exhaust fluctuation is very little, and compressor operating is very steady.
Claims (3)
1. roller type compressor with concentric rings, comprise casing (1), main shaft (21), outer shroud (2), interior ring (3), cylinder (4), dividing plate (7), casing (1) two ends join by bearing and main shaft (21), casing (1) is provided with and outer shroud (2), interior ring (3), cylinder (4), the vent that the cavity that forms between the dividing plate (7) communicates, it is characterized in that: outer shroud (2) and the concentric setting of interior ring (3) in the casing (1), between outer shroud (2) and the interior ring (3) cylinder (4) is set, the inwall of cylinder (4) and outer shroud (2) and the outer wall of interior ring (3) be inscribe mutually simultaneously, cylinder (4) axially is provided with the opening (26) that connects cylinder (4), be provided with the dividing plate (7) that places between outer shroud (2) and the interior ring (3) in the opening (26) of cylinder (4), the inwall of the two ends up and down of dividing plate (7) and outer shroud (2) and the outer wall of interior ring (3) are slidingly connected with arc surface simultaneously; The outer wall of the inwall of the outer shroud (2) that is provided with and interior ring (3) is provided with arc surface groove (10) vertically with one heart, (14), the upper and lower end face of dividing plate (7) is the arc surface groove (10) on the outer wall with the inwall of outer shroud (2) and interior ring (3), (14) arc surface that matches, described opening (26) is the plane opening and extends on the interior circular base slab (29) of cylinder (4), the left and right plane of dividing plate (7) and plane opening (26) match, and circular base slab (29) that cylinder (4) joins by inside and axle sleeve (17) join with the eccentric diameter of axle (19) of main shaft (21).
2. roller type compressor with concentric rings according to claim 1 is characterized in that: be connected to the catch (25) that places in circular base slab (29) upper shed below described dividing plate (7).
3. roller type compressor with concentric rings according to claim 1 is characterized in that: cavity (31) is arranged in the described dividing plate (7), one-way valve (12) is arranged in the cavity (31), at least one side of dividing plate (7) is provided with vent and communicates with cavity (31).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CNB2006101346303A CN100451341C (en) | 2006-12-08 | 2006-12-08 | Roller type compressor with concentric rings |
Applications Claiming Priority (1)
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CNB2006101346303A CN100451341C (en) | 2006-12-08 | 2006-12-08 | Roller type compressor with concentric rings |
Publications (2)
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CN1971049A CN1971049A (en) | 2007-05-30 |
CN100451341C true CN100451341C (en) | 2009-01-14 |
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CNB2006101346303A Expired - Fee Related CN100451341C (en) | 2006-12-08 | 2006-12-08 | Roller type compressor with concentric rings |
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Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108105097B (en) * | 2018-01-08 | 2020-03-24 | 珠海凌达压缩机有限公司 | Pump body structure and compressor |
CN110513478B (en) * | 2018-05-22 | 2023-03-14 | 青岛海尔洗涤电器有限公司 | Dryer roller sealing structure and dryer |
CN109139454A (en) * | 2018-09-18 | 2019-01-04 | 广州市海同机电设备有限公司 | One kind pumping mechanism and the bicyclic pump of sanitation-grade |
CN110159531A (en) * | 2019-03-13 | 2019-08-23 | 大连奇想科技有限公司 | Roller compactor and pump and motor |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3125031A (en) * | 1964-03-17 | Multi-chamber rotary pump | ||
CN2117480U (en) * | 1992-05-07 | 1992-09-30 | 金刚裕 | Oscillating rotor machine for converting mechanical energy into pressure energy |
CN1087703A (en) * | 1992-12-02 | 1994-06-08 | 金刚裕 | Oscillating rotor machine for converting mechanical energy into fluid pressure energy |
CN2329793Y (en) * | 1998-04-30 | 1999-07-21 | 叶继兴 | Positive displacement rotary vane pump |
KR20040007984A (en) * | 2002-07-15 | 2004-01-28 | 김현진 | Vane compressor |
CN1815026A (en) * | 2005-02-04 | 2006-08-09 | Lg电子株式会社 | Axial force reducing structure of orbiting vane compressor |
-
2006
- 2006-12-08 CN CNB2006101346303A patent/CN100451341C/en not_active Expired - Fee Related
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3125031A (en) * | 1964-03-17 | Multi-chamber rotary pump | ||
CN2117480U (en) * | 1992-05-07 | 1992-09-30 | 金刚裕 | Oscillating rotor machine for converting mechanical energy into pressure energy |
CN1087703A (en) * | 1992-12-02 | 1994-06-08 | 金刚裕 | Oscillating rotor machine for converting mechanical energy into fluid pressure energy |
CN2329793Y (en) * | 1998-04-30 | 1999-07-21 | 叶继兴 | Positive displacement rotary vane pump |
KR20040007984A (en) * | 2002-07-15 | 2004-01-28 | 김현진 | Vane compressor |
CN1815026A (en) * | 2005-02-04 | 2006-08-09 | Lg电子株式会社 | Axial force reducing structure of orbiting vane compressor |
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CN1971049A (en) | 2007-05-30 |
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Effective date of registration: 20190522 Address after: 116033 No. 25, Fanglin Garden, Southwest Road, Ganjingzi District, Dalian City, Liaoning Province, 1-6-1 Patentee after: Dalian Qixiang Technology Co.,Ltd. Address before: 116033 Room 601, Unit 1, No. 25, Fanglin Garden, Southwest Road, Ganjingzi District, Dalian City, Liaoning Province Patentee before: Liu Zhongchen |
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