CN102305128B - Device for pushing engine to rotate continuously - Google Patents

Device for pushing engine to rotate continuously Download PDF

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Publication number
CN102305128B
CN102305128B CN2011102244990A CN201110224499A CN102305128B CN 102305128 B CN102305128 B CN 102305128B CN 2011102244990 A CN2011102244990 A CN 2011102244990A CN 201110224499 A CN201110224499 A CN 201110224499A CN 102305128 B CN102305128 B CN 102305128B
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China
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guide
shell
block
hole
groove
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Expired - Fee Related
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CN2011102244990A
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CN102305128A (en
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何学文
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/12Improving ICE efficiencies

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Abstract

The invention discloses a device for pushing an engine to rotate continuously. The technical problem to be solved is to realize continuous rotation of a combustion engine by blast energy conduction in a combustion cavity. The device consists of a sealed shell, a guide block which is arranged in the shell and is coaxial with the shell, sliding blocks which are radially distributed between the shell and the guide block, and a rotary table which is arranged between the shell and the guide block and is coaxial with the guide block; the two ends of each sliding block are contacted with the inner wall of the shell and the peripheral wall of the shell in a way of forming an included angel of less than 90 DEG C respectively; the sliding blocks pass through holes in the peripheral wall of the rotary table and are movably connected with the rotary table; the peripheral wall of the shell is provided with air inlets; the guide block is provided with oil inlets; the oil inlets are connected with an oil pipe of an oil tank; and the shell is also provided with vent holes. Compared with the prior art, the device has the advantages that the track motion that the guide block is driven by air generated after combustion to move along a guide groove replaces reciprocating motion of a piston, so that the engine has a smaller volume and a simpler structure.

Description

Promote the device of motor continuous rotation
Technical field
The present invention relates to a kind of motor car engine, particularly a kind of device that promotes the motor continuous rotation.
Background technique
At present, the cylinder of general motor car engine all is the rotation of finishing motor by piston, and prior art fires energy and conducts to connecting rod by piston and conduct to bent axle again and realize the loaded down with trivial details poor efficiency of continuous rotation structure, is difficult to be applied to reality and uses.
Summary of the invention
The purpose of this invention is to provide a kind of device that promotes the motor continuous rotation, the technical problem that solve is by firing energy conduction to realize the continuous rotation of internal-combustion engine in the burning cavity.
The present invention is by the following technical solutions: a kind of device that promotes the motor continuous rotation, this device is by the shell of sealing, arrange in the enclosure and with the guide block of the coaxial setting of shell, radially distribute between shell and guide block slide block and be arranged on shell and guide block between and form with the rotating disk of the coaxial setting of guide block, the two ends of described slide block respectively with the inwall of shell, the periphery wall of guide block forms respectively angle and touches less than 90 °, the Kong Bingyu rotating disk that described slide block passes on the rotating disk perisporium is flexibly connected, the perisporium of described shell is provided with inlet hole, guide block is provided with oil inlet hole, described oil inlet hole connects the oil pipe of fuel tank, also is provided with exhaust port on the described shell.
Shell of the present invention is comprised of upper casing, mesochite and lower casing, and described exhaust port is arranged on upper casing or the lower casing, and inlet hole is arranged on both sides perisporium corresponding to mesochite.
Shell of the present invention is ellipse or irregular polygon.
The upper/lower terminal of mesochite of the present invention is provided with the first guide groove, and the up and down two ends of described guide block are respectively equipped with the second guide groove.
Upper casing of the present invention is provided with hole A, is provided with in the A of hole and the unconnected loam cake of upper casing, and described loam cake is arranged on the upper end of guide block, is provided with hole B covering.
Slide block of the present invention is provided with at least four, and slide block is rectangle, and the two ends in cross section are arc.
The two ends of slide block of the present invention are respectively equipped with groove, are provided with the first guide pillar in the opposite ends of groove, and the groove of a described side is arranged on the mesochite, and a side the first guide pillar slides in the first guide groove, and opposite side the first guide pillar slides in the second guide groove.
Guide block of the present invention is irregular polygon.
The up and down two ends of guide block of the present invention are respectively equipped with the second guide groove, and the groove of described slide block one side is arranged on the guide block, and the first guide pillar slides in the second guide groove.
The another kind of device that promotes the motor continuous rotation of the present invention, the shell that this device is made of sealing, setting in the enclosure and with the guide block of the coaxial setting of shell, be arranged on the slide block that is piston movement in the guide block and form;
Be provided with the first guide hole of connection in the described guide block, be provided with block in the apertura lateralis of the first guide hole, block is provided with the second guide hole;
Described slide block is a pair of, slide block is the T character form structure, the front end section of slide block is round structure, the rear end is cross bar, the rear portion of described cross bar is provided with groove, corresponding both sides at groove are provided with the first guide pillar, described groove is arranged on the mesochite, the first guide pillar slides in the first guide groove, the front end round structure of described slide block is horizontally installed in the first guide hole, the cross bar of slide block passes the second guide hole and contacts with the inwall formation of shell, and joint one side between the second guide hole and cross bar is provided with a hole C, and the upper end of described round structure is provided with arc notch;
Described shell is comprised of upper casing, mesochite and lower casing, and the inside upper/lower terminal of described mesochite is provided with the first guide groove, and the groove of described slide block is arranged on the first guide groove, and the first guide pillar of groove slides in the first guide groove;
Be respectively equipped with hole A on described upper casing and the lower casing, the upper/lower terminal of guide block exposes in the A of hole;
The middle part, lower end of described guide block is provided with the protruding chamber to lower convexity, and the both sides in described protruding chamber are provided with protruding chamber exhaust port, are provided with the trapezoidal hole that is communicated with the second guide hole in protruding chamber, and the lower end in protruding chamber is provided with hole F;
Be provided with the second guide pillar in the described protruding chamber, described the second guide pillar is cylindrical, be provided with the trapezoidal column identical with the trapezoidal hole gradient in the upper end of the second guide pillar, the upper end of trapezoidal column is provided with the arc-like sheet of indent, the length of described arc-like sheet is greater than the column diameter of the second guide pillar, and described arc-like sheet is arranged in the second guide hole;
Described the second guide pillar is provided with the trapezoid block of handstand, is provided with spring in trapezoid block with in the protruding chamber;
The inclined-plane, both sides of described trapezoid block is provided with slide bar, and described slide bar is L shaped structure, and a side of described slide bar forms with the inclined-plane, both sides of trapezoid block and contacts;
Described guide block is provided with oil pipe;
Described shell is oval;
Described guide block is circular.
The present invention compared with prior art, adopt rear (firing) gas push slide block that produces of burning along the orbiting motion of guide groove, thereby replace the to-and-fro motion of piston, so that the volume of motor is less, structure is simpler, makes the continuous rotation that the energy efficient conduction realizes machine that fires in the burning cavity, is applied to easily reality, can use a burning cavity operation also can become a plurality of burning cavity operations, preferably 2 burning cavity to 10 burning cavity equiblibrium mass distributions by required design.
Description of drawings
Fig. 1 is the plan view of the embodiment of the invention one.
Fig. 2 is the worm's eye view of Fig. 1.
Fig. 3 is the left view of Fig. 1.
Fig. 4 is that Fig. 2 is along the sectional view of A-A direction.
Fig. 5 is the structural representation of the embodiment of the invention one rotating disk.
Fig. 6 is the sectional view of the embodiment of the invention one rotating disk.
Fig. 7 is the structural representation of the embodiment of the invention one slide block.
Fig. 8 is the external structure schematic representation of the embodiment of the invention two.
Fig. 9 is the plan view of the embodiment of the invention two.
Figure 10 is the plan view of Fig. 9.
Figure 11 is that Figure 10 is along the sectional view of B-B direction.
Figure 12 is the structural representation of the shell of the embodiment of the invention two.
Figure 13 is the structural representation of the embodiment of the invention two rotating disks.
Figure 14 is the structural representation of the embodiment of the invention two guide blocks.
Figure 15 is the structural representation of the embodiment of the invention two mesochites.
Figure 16 is the structural representation of the embodiment of the invention two slide blocks.
Figure 17 is the internal structure schematic representation of the embodiment of the invention two.
Figure 18 is the external structure schematic representation one of the embodiment of the invention three.
Figure 19 is the external structure schematic representation two of the embodiment of the invention three.
Figure 20 is the plan view of the embodiment of the invention three.
Figure 21 is the plan view of the embodiment of the invention three.
Figure 22 is that Figure 20 is along the sectional view of C-C direction.
Figure 23 is that Figure 21 is along the sectional view of D-D direction.
Figure 24 is the structural representation of the embodiment of the invention three guide blocks.
Figure 25 is the plan view of the embodiment of the invention three guide blocks.
Figure 26 is that Figure 25 is along the sectional view of E-E direction.
Figure 27 is that Figure 25 is along the sectional view of F-F direction.
Figure 28 is the structural representation of the embodiment of the invention three guide pillars.
Figure 29 is the plan view of the embodiment of the invention three slide blocks.
Figure 30 is the plan view of Figure 29.
Figure 31 is the right elevation of Figure 29.
Figure 32 is the structural representation of the embodiment of the invention three trapezoid blocks.
Figure 33 is the structural representation of the embodiment of the invention three mesochites.
Embodiment
Below in conjunction with drawings and Examples technological scheme of the present invention is described in further detail.
Shown in Fig. 1,2,3 and 4, the device of the promotion motor continuous rotation of the embodiment of the invention one by the shell 5 of sealing, be arranged in the shell 5 and with the guide block 6 of shell 5 coaxial settings, radially distribute between shell 5 and guide block 6 slide block 7 and be arranged on shell 5 and guide block 6 between and form with the guide block 6 coaxial rotating disks 8 that arrange;
Wherein, described shell 5 is irregular polygons, further be that a two ends symmetry and four edges are the class parallelogram of arc-shaped transitional surface, this shell 5 is comprised of upper casing 3, mesochite 2 and lower casing 4, be provided with exhaust port 11 at upper casing 3 or lower casing 4, exhaust port 11 is distributed on the position at four diagonal angles of class parallelogram, the both sides perisporium of mesochite 2 correspondences is provided with inlet hole 9, and this inlet hole 9 is arranged on and forms between guide block 6 outers and mesochite 2 inwalls that the angle angle that contact is minimum to be located;
As shown in Figure 7, described slide block 7 is rectangles, the length of this slide block is 300mm, and width is 15mm, and thickness is 40mm, the two ends of this slide block 7 are cambered surface, the two ends of slide block 7 form oblique line with the periphery wall of the inwall of shell 5, guide block 6 respectively and touch, and namely angle is less than 90 ° touch, and this slide block 7 is provided with 4 at least, be 9 in the present embodiment, radially distribute;
As illustrated in Figures 5 and 6, described rotating disk 8 is rings, distance between the minimum diagonal angle of the diameter of this rotating disk 8 and mesochite 2 equates, obliquely on the perisporium of rotating disk 8 offer the hole 81 corresponding with slide block 7 quantity, the length in hole 81 equates with the width of slide block 7, and described slide block 7 passes the hole 81 on rotating disk 8 perisporiums and is flexibly connected with rotating disk 8;
Described guide block 6 is ellipses, and the internal diameter equal in length of the longest diameter of this guide block 6 and rotating disk 8 is provided with oil inlet hole 10 at guide block 6, and described oil inlet hole 10 connects the oil pipe of fuel tank.
The project organization of present embodiment is by the effect of shell 5 guide blocks 6 relative continuous rotations, and the volume-variation of sealing forms the stroke of internal-combustion engine between slide block 7 and shell 5 guide blocks 6.
Shown in Fig. 8,9,10,11 and 17, the device of the promotion motor continuous rotation of the embodiment of the invention two by the shell 5 of sealing, be arranged in the shell 5 and with the guide block 6 of shell 5 coaxial settings, radially distribute between shell 5 and guide block 6 slide block 7 and be arranged on shell 5 and guide block 6 between and form with the guide block 6 coaxial rotating disks 8 that arrange;
Wherein, as shown in figure 12, described shell 5 is irregular polygons, it further is a two ends symmetry, and four edges is the class parallelogram of arc-shaped transitional surface, shell 5 is by upper casing 3, mesochite 2 and lower casing 4 form, be provided with hole A31 at upper casing 3, be provided with two exhaust ports 11 at hole A31, lower casing 4 is provided with four exhaust ports 11, two exhaust ports 11 on the A31 of hole are arranged on corresponding two ends, in the A31 of hole, be provided with and upper casing 3 unconnected loam cakes 32, described loam cake 32 is arranged on the upper end of guide block 6, be provided with two hole B33 at loam cake 32, two exhaust ports 11 on these two hole B33 and the hole A31 are cross distribution, are provided with inlet hole 9 at the both sides perisporium of mesochite 2 correspondences;
As shown in figure 13, described rotating disk 8 is annulus, offer 36 with gradient hole 81 at annulus, this hole 81 is uncovered that Open Side Down, distance in the inwall of the outside diameter of described rotating disk 8 and mesochite 2 between the shortest a pair of diagonal angle of two diagonal angle length equates, the degree of depth in hole 81 is less than the length of slide block 7, and when slide block 7 is connected to hole 81 when interior, slide block 7 is the emitting shape structure;
As shown in figure 14, described guide block 6 is that a profile two ends symmetry and the four edges identical with shell 5 profiles are the class parallelogram of arc-shaped transitional surface, the place of keeping to the side, up and down two surface of this guide block 6 is provided with the second guide groove 61, and the center of guide block 6 is provided with rotating shaft 67, and rotating shaft 67 connects flabellum 65;
As shown in figure 15, the up and down both ends of the surface of described mesochite 2 are provided with the first guide groove 12, and the thickness of mesochite 2 is 68mm;
As shown in figure 16, described slide block 7 is rectangles, the two ends of rectangular cross section are arc, be respectively equipped with groove 71 at the two ends of slide block 7, opposite ends at groove 71 is provided with the first guide pillar 72, the groove 71 of a described side is arranged on the mesochite 2, one side the first guide pillar 72 slides in the first guide groove 12, opposite side the first guide pillar 72 slides in the second guide groove 61, the diameter of described the first guide pillar 72 equates with the width of the second guide groove 61 with the first guide groove 12, the length of described slide block 7 is 300mm, and width is 15mm, and thickness is 40mm;
The project organization of present embodiment is that the effect by continuous rotation causes the volume-variation that seals between parts, thereby forms the stroke of internal-combustion engine.
Shown in Figure 18,19,20,21,22 and 23, the shell 5 that the device of the promotion motor continuous rotation of the embodiment of the invention three is made of sealing, be arranged in the shell 5 and with the guide block 6 of shell 5 coaxial settings, be arranged on the slide block 7 that is piston movement in the guide block 6 and form;
Wherein, shown in Figure 24,25,26 and 27, described guide block 6 is circles, be provided with the first guide hole 66 of connection in it, be provided with block 62 in the apertura lateralis of the first guide hole 66, block 62 is provided with the second guide hole 63, the middle part, lower end of described guide block 6 is provided with the protruding chamber 13 to lower convexity, the both sides in described protruding chamber 13 are provided with protruding chamber exhaust port 14, be provided with the trapezoidal hole 15 that is communicated with the second guide hole 63 in protruding chamber 13, the lower end in protruding chamber 13 is provided with hole F16, is provided with the second guide pillar 17 in the described protruding chamber 13, is provided with spring 21 in the lower end in protruding chamber 13;
As shown in figure 28, described the second guide pillar 17 is cylindrical, be provided with the trapezoidal column 18 identical with trapezoidal hole 15 gradients in the upper end of the second guide pillar 17, the upper end of trapezoidal column 18 is provided with the arc-like sheet 19 of indent, the length of described arc-like sheet 19 is greater than the column diameter of the second guide pillar 17, and described arc-like sheet 19 is arranged in the second guide hole 63, and is subjected to that trapezoidal hole 15 and hole F16's is spacing, make it up and down in protruding chamber 13, discharge the gas in the second guide hole 63;
Such as Figure 29, shown in 30 and 31, described slide block 7 is a pair of, slide block 7 is T character form structures, the front end section of slide block 7 is round structure 73, the rear end is cross bar 74, the rear portion of described cross bar 74 is provided with groove 71, be provided with the first guide pillar 72 in the corresponding both sides of groove 71, described groove 71 is arranged on the mesochite 2, the first guide pillar 72 slides in the first guide groove 12, the round structure 73 of the front end of described cross bar 74 is horizontally installed in the first guide hole 66, the diameter of this round structure 73 equates with the aperture of the first guide hole 66, the cross bar 74 of slide block 7 passes the second guide hole 63 and contacts with the inwall formation of shell 5, and a side of the joint between the second guide hole 63 and cross bar 74 is provided with a hole C64, and the upper end of described round structure 73 is provided with arc notch 75;
Shown in figure 32, described trapezoid block 20, be provided with hole D201 at the middle part of trapezoid block 20, be provided with hole E202 in the upper end of hole D201, described the second guide pillar 17 is connected in the D201 of hole, the cylinder cover of the second guide pillar 17 between hole E202 and protruding chamber 13 has spring 21, the diameter of spring 21 is less than the diameter of hole E202, one end of described spring is against in the E202 of hole, the other end is against on the outer surface in protruding chamber 13, as shown in figure 22, is provided with slide bar 22 on the inclined-plane, both sides of described trapezoid block 20, described slide bar 22 is L shaped structures, and a side of described slide bar 22 forms with the inclined-plane, both sides of trapezoid block 20 and contacts;
Described shell 5 is comprised of upper casing 3, mesochite 2 and lower casing 4, and as shown in figure 33, the inside upper/lower terminal of described mesochite 2 is provided with the first guide groove 12, and the groove 71 of described slide block 7 is arranged on the first guide groove 12, and groove the first guide pillar 72 slides in the first guide groove 12;
As shown in figure 22, be respectively equipped with hole A31 on described upper casing 3 and the lower casing 4, the upper/lower terminal of guide block 6 exposes in the A31 of hole;
Described guide block 6 is provided with oil pipe 23.
The project organization of present embodiment is by the effect of shell 5 with guide groove 12 relative continuous rotations, makes sealed volume between a pair of slide block 7 change to form the stroke of internal-combustion engine.
The present invention can make the energy conduction that fires in the burning cavity realize that the continuous rotation energy conduction process of machine is efficient, be applied to easily reality, the present invention can use a burning cavity operation, also can become the operation of a plurality of burnings chamber, preferably 2 to 10 equiblibrium mass distributions by required design.

Claims (2)

1. device that promotes the motor continuous rotation, it is characterized in that: this device is by the shell (5) of sealing, be arranged in the shell (5) and with the guide block (6) of the coaxial setting of shell (5), radially distribute between shell (5) and guide block (6) slide block (7) and be arranged on shell (5) and guide block (6) between and form with the rotating disk (8) of the coaxial setting of guide block (6), the two ends of described slide block (7) respectively with the inwall of shell (5), the periphery wall of guide block (6) forms respectively angle and touches less than 90 °, described slide block (7) passes the hole (81) on rotating disk (8) perisporium and is flexibly connected with rotating disk (8), the perisporium of described shell (5) is provided with inlet hole (9), guide block (6) is provided with oil inlet hole (10), described oil inlet hole (10) connects the oil pipe of fuel tank, also is provided with exhaust port (11) on the described shell (5);
Described shell (5) is comprised of upper casing (3), mesochite (2) and lower casing (4), and described exhaust port (11) is arranged on upper casing (3) or the lower casing (4), and inlet hole (9) is arranged on both sides perisporium corresponding to mesochite (2);
Described shell (5) is ellipse or irregular polygon;
The upper/lower terminal of described mesochite (2) is provided with the first guide groove (12), and the up and down two ends of described guide block (6) are respectively equipped with the second guide groove (61);
Described upper casing (3) is provided with hole A(31), hole A(31) in be provided with and the unconnected loam cake of upper casing (3) (32), described loam cake (32) is arranged on the upper end of guide block (6), is provided with hole B(34 at loam cake (32));
Described slide block (7) is provided with at least four, and slide block (7) is rectangle, and the two ends in cross section are arc;
The two ends of described slide block (7) are respectively equipped with groove (71), are provided with the first guide pillar (72) in the opposite ends of groove (71), and the groove of a side (71) is arranged on the mesochite (2), and the groove of opposite side (71) is arranged on the guide block (6); A described side the first guide pillar (72) slides in the first guide groove (12), and opposite side the first guide pillar (72) slides in the second guide groove (61);
Described guide block (6) is irregular polygon.
2. device that promotes the motor continuous rotation is characterized in that: the shell that this device is made of sealing (5), be arranged in the shell (5) and with the guide block (6) of the coaxial setting of shell (5), be arranged on the slide block (7) that is piston movement in the guide block (6) and form;
Be provided with first guide hole (66) of connection in the described guide block (6), be provided with block (62) in the apertura lateralis of the first guide hole (66), block (62) is provided with the second guide hole (63);
Described slide block (7) is a pair of, slide block (7) is the T character form structure, the front end section of slide block (7) is round structure (73), the rear end is cross bar (74), the rear portion of described cross bar (74) is provided with groove (71), be provided with the first guide pillar (72) in the corresponding both sides of groove (71), described groove (71) is arranged on the mesochite (2), the first guide pillar (72) slides in the first guide groove (12), the front end round structure (73) of described slide block (7) is horizontally installed in the first guide hole (66), the cross bar (74) of slide block (7) passes the second guide hole (63) and contacts with the inwall formation of shell (5), joint one side between the second guide hole (63) and cross bar (74) is provided with a hole C(64), the upper end of described round structure (73) is provided with arc notch (75);
Described shell (5) is comprised of upper casing (3), mesochite (2) and lower casing (4), the inside upper/lower terminal of described mesochite (2) is provided with the first guide groove (12), the groove (71) of described slide block (7) is arranged on the first guide groove (12), and first guide pillar (72) of groove (71) slides in the first guide groove (12);
Be respectively equipped with hole A(31 on described upper casing (3) and the lower casing (4)), the upper/lower terminal of guide block (6) exposes at hole A(31) in;
The middle part, lower end of described guide block (6) is provided with the protruding chamber (13) to lower convexity, the both sides in described protruding chamber (13) are provided with protruding chamber exhaust port (14), be provided with the trapezoidal hole (15) that is communicated with the second guide hole (63) in protruding chamber (13), the lower end of protruding chamber (13) is provided with hole F(16);
Be provided with the second guide pillar (17) in the described protruding chamber (13), described the second guide pillar (17) is cylindrical, be provided with the trapezoidal column (18) identical with trapezoidal hole (15) gradient in the upper end of the second guide pillar (17), the upper end of trapezoidal column (18) is provided with the arc-like sheet (19) of indent, the length of described arc-like sheet (19) is greater than the column diameter of the second guide pillar (17), and described arc-like sheet (19) is arranged in the second guide hole (63);
Described the second guide pillar (17) is provided with the trapezoid block (20) of handstand, is provided with spring (21) in trapezoid block (20) Yu in the protruding chamber (13);
The inclined-plane, both sides of described trapezoid block (20) is provided with slide bar (22), and described slide bar (22) is L shaped structure, and a side of described slide bar (22) forms with the inclined-plane, both sides of trapezoid block (20) and contacts;
Described guide block (6) is provided with oil pipe (23);
Described shell (5) is oval;
Described guide block (6) is circular.
CN2011102244990A 2011-08-06 2011-08-06 Device for pushing engine to rotate continuously Expired - Fee Related CN102305128B (en)

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Application Number Priority Date Filing Date Title
CN2011102244990A CN102305128B (en) 2011-08-06 2011-08-06 Device for pushing engine to rotate continuously

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Application Number Priority Date Filing Date Title
CN2011102244990A CN102305128B (en) 2011-08-06 2011-08-06 Device for pushing engine to rotate continuously

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CN102305128A CN102305128A (en) 2012-01-04
CN102305128B true CN102305128B (en) 2013-10-16

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Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL9401729A (en) * 1994-10-19 1996-06-03 Lambertus Hendrik De Gooijer Combustion engine.
CN1130716A (en) * 1995-03-07 1996-09-11 王立涛 Elliptical piston rotary engine
CN101675224B (en) * 2007-03-05 2013-03-27 小罗伊·J·哈特菲尔德 Positive displacement rotary vane engine
CN101086224B (en) * 2007-06-16 2010-09-15 吴刚 Sliding-vane rotor engine
CN201560841U (en) * 2009-08-11 2010-08-25 天津工程师范学院 Double-vane type rotor engine

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