CN208731203U - A kind of controllable three-bladed propeller based on physics kinetic energy - Google Patents

A kind of controllable three-bladed propeller based on physics kinetic energy Download PDF

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Publication number
CN208731203U
CN208731203U CN201820873537.2U CN201820873537U CN208731203U CN 208731203 U CN208731203 U CN 208731203U CN 201820873537 U CN201820873537 U CN 201820873537U CN 208731203 U CN208731203 U CN 208731203U
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CN
China
Prior art keywords
fixedly connected
wall
block
bladed propeller
controllable
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Expired - Fee Related
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CN201820873537.2U
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Chinese (zh)
Inventor
石成明
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Xinchang Yin Chuang Auto Parts Co Ltd
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Xinchang Yin Chuang Auto Parts Co Ltd
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Priority to CN201820873537.2U priority Critical patent/CN208731203U/en
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Abstract

The utility model relates to Propeller technology fields, and disclose a kind of controllable three-bladed propeller based on physics kinetic energy, including three-bladed propeller ontology, expansion bend is fixedly connected on outer wall at left and right sides of the three-bladed propeller ontology, the bottom of the expansion bend is provided with welding block body, is fixedly connected with support pillar on the front of the welding block body.It is that back push type consumption is big that the utility model, which solves propeller in the market, the jiggly problem of power output, this programme on the front of battery by being fixedly connected with Rotation Controllers, the power-supply controller of electric being fixedly connected in the right wall of Rotation Controllers, expansion controller is braked by power-supply controller of electric, and the flexible of telescopic rod is controlled by expansion controller, it is operated by the flexible braking vertical columns of telescopic rod, when telescopic rod operates forward, vertical columns operate backward, (being acted on by spring) reaches the push type rotation to shaft bar, and brake the rotation of blade.

Description

A kind of controllable three-bladed propeller based on physics kinetic energy
Technical field
The utility model relates to Propeller technology field, specially a kind of controllable three leaves spiral based on physics kinetic energy Paddle.
Background technique
Propeller refers to be rotated in air or water by blade, converts engine rotation power in the device of propulsive force, Can there are two or more leaf be connected with hub, leaf for helicoid or is similar to a kind of propeller of helicoid on one side backward.Spiral shell Rotation paddle is divided into many kinds, and application is also very extensive, such as the propeller of aircraft, steamer.
Propeller in the market is that back push type consumption is big, the jiggly problem of power output.
Utility model content
(1) the technical issues of solving
In view of the deficiencies of the prior art, the utility model provides a kind of controllable three leaves spiral based on physics kinetic energy Paddle, the propeller solved in the market is that back push type consumption is big, the jiggly problem of power output.
(2) technical solution
To achieve the above object, the utility model provides the following technical solutions: a kind of based on the controllable of physics kinetic energy Three-bladed propeller, including three-bladed propeller ontology are fixedly connected at left and right sides of the three-bladed propeller ontology on outer wall and stretch Contracting device, the bottom of the expansion bend are provided with welding block body, are fixedly connected with support branch on the front of the welding block body Column is fixedly connected with annulus at the top of the support pillar, and the inner wall of the annulus is fixedly connected with Rotary cloumn, It is fixedly connected with pull rod at the top of the Rotary cloumn, hollow block, the three leaves spiral are fixedly connected at the top of the pull rod It is fixedly connected with battery at the top of paddle ontology, grafting block, institute are fixedly connected on the left and right sides outer wall of the battery It states and is fixedly connected with welding block at the top of battery, concave support bracket is fixedly connected on the outer wall of the welding block, it is described Hollow block is located between two legs of concave support bracket, is provided with Rotation Controllers on the left of the concave support bracket, described It is fixedly connected with telescopic prop on the front of Rotation Controllers, Rotary cloumn sheet is fixedly connected on the outer wall of the telescopic prop Body is provided with support panel on the outside of the Rotary cloumn ontology, and the top of the Rotary cloumn ontology is through support panel Inner wall, and it is fixedly connected with nut, ball groove is offered on the front of the support panel, the two books of the ball groove are fixed It is connected with curved cover plate, spin is connected in the slot of the ball groove, welding branch is fixedly connected on the outer wall of the spin Strut is fixedly connected with blade at the top of the welding support rod.
Preferably, power-supply controller of electric is fixedly connected in the left wall of the Rotation Controllers, the power-supply controller of electric passes through Conducting wire is attached with battery, and the bottom of the power-supply controller of electric is fixedly connected with conduit, and the bottom of the conduit is solid Surely be connected with expansion controller, be fixedly connected with extension sleeve on the front of the expansion controller, the extension sleeve it is interior It is connected with telescopic rod on wall, skewback is fixedly connected on the outer wall of the telescopic rod, the skewback is connected with circle The front of skewback is run through in the bottom of column, the cylinder, and is fixedly connected with disk, is fixedly connected with fixation at the top of the skewback Column, the bottom of the vertical columns, which is fixedly connected with, is welded and fixed block, and the bottom that block is welded and fixed is fixedly connected with bullet Spring, the bottom of the spring are fixedly connected with fixed plate, and the bottom of the fixed plate is fixedly connected on the right side of Rotation Controllers On inner wall, the left wall of the Rotation Controllers is connected with shaft bar.
Preferably, the spin is adapted with ball groove size, and the spin bore is less than the bore of ball groove.
Preferably, the grafting block is located in the slot of grafting geosynclinal block, and the grafting geosynclinal block is fixedly connected on concave support branch On the outer wall of frame leg.
Preferably, the quantity of the fixed plate is two, and two fixed plates be respectively fixedly connected with top in spring with Bottom.
Preferably, the quantity of the concave support bracket is three, and three concave support brackets are fixed with battery Connection.
Working principle: this programme is located at rotation control by being fixedly connected with Rotation Controllers on the front of battery The power-supply controller of electric being fixedly connected in the right wall of device brakes expansion controller by power-supply controller of electric, and passes through expansion controller The flexible of telescopic rod is controlled, operated by the flexible braking vertical columns of telescopic rod, it is fixed when telescopic rod operates forward Column operates backward, and (being acted on by spring) reaches the push type rotation to shaft bar, and brakes the rotation of blade Turn.
(3) beneficial effect
The utility model provides a kind of controllable three-bladed propeller based on physics kinetic energy.Have following beneficial to effect Fruit:
(1) this programme uses the cooperation of battery and Rotation Controllers, and this programme passes through fixed on the front of battery It is connected with Rotation Controllers, the power-supply controller of electric being fixedly connected in the right wall of Rotation Controllers, by power-supply controller of electric system Dynamic expansion controller, and controlling the flexible of telescopic rod by expansion controller, are fixed by the flexible braking of telescopic rod Column running, when telescopic rod operates forward, vertical columns operate backward, and (being acted on by spring) reaches to shaft bar Push type rotation, and brake the rotation of blade, the propeller solved currently on the market is that back push type consumption is big, power output Jiggly problem.
(2) this programme uses the cooperation of expansion bend and pull rod, the weldering that this programme is fixedly connected by the bottom in expansion bend Block is connect, and welding block is braked by the catch bar that expansion bend carries, it is operated downwards, is pushed away when welding block operates downwards Dynamic support pillar decline, and brake the Rotary cloumn for being connected to and the annulus of post top portion connection being supported to be connected and revolved Turn, the pull rod at position moves left and right among Rotary cloumn outer wall, can twitch to telescopic prop.
(3) this programme is passed through on the front of support panel using support panel and the cooperation for welding support rod, this programme The ball groove opened up, and be located in ball groove and be provided with spin, facilitate spin to be rotated in ball groove, wherein the bottom of spin is fixed The Rotary cloumn of connection is rotated, and is overturn so as to band movable vane piece.
Detailed description of the invention
Fig. 1 be the utility model three-bladed propeller ontology and its component structure diagram,
Fig. 2 is the utility model Rotation Controllers structural schematic diagram.
In figure: 1 three-bladed propeller ontology, 2 expansion bends, 3 Rotary cloumns, 4 pull rods, 5 batteries, 6 welding blocks, 7 grafting Block, 8 fixed plates, 9 concave support brackets, 10 hollow blocks, 11 Rotation Controllers, 12 telescopic props, 13 blades, 14 nuts, 15 welderings Connect support rod, 16 spin, 17 ball grooves, 18 curved cover plates, 19 Rotary cloumn ontologies, 20 cylinders, 21 skewbacks, 22 welding block bodies, Block, 25 springs, 26 fixed plates, 27 conduits, 28 power-supply controller of electric, 29 expansion controllers, 30 are welded and fixed in 23 vertical columns, 24 Telescopic rod, 31 disks, 32 telescopic rods, 33 shaft bars, 34 support panels, 35 annulus, 36 support pillars.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
As shown in Figs. 1-2, the utility model provides a kind of technical solution: a kind of controllable three leaf based on physics kinetic energy Propeller, including three-bladed propeller ontology 1 are fixedly connected to expansion bend 2 on 1 left and right sides outer wall of three-bladed propeller ontology, The bottom of expansion bend 2 is provided with welding block body 22, welds and is fixedly connected with support pillar 36, branch on the front of block body 22 The top of support pillar 36 is fixedly connected with annulus 35, and the inner wall of annulus 35 is fixedly connected with Rotary cloumn 3, rotation The top of column 3 is fixedly connected with pull rod 4, and the top of pull rod 4 is fixedly connected with hollow block 10, the top of three-bladed propeller ontology 1 Portion is fixedly connected with battery 5, and grafting block 7, the top of battery 5 are fixedly connected on the left and right sides outer wall of battery 5 It is fixedly connected with welding block 6, concave support bracket 9 is fixedly connected on the outer wall of welding block 6, hollow block 10 is located at spill branch Between two legs for supportting bracket 9, the left side of concave support bracket 9 is provided with Rotation Controllers 11, on the front of Rotation Controllers 11 It is fixedly connected with telescopic prop 12, Rotary cloumn ontology 19, Rotary cloumn ontology are fixedly connected on the outer wall of telescopic prop 12 19 outside is provided with support panel 34, and the inner wall of support panel 34 is run through at the top of Rotary cloumn ontology 19, and is fixedly connected There is nut 14, supports and offer ball groove 17 on the front of panel 34, the two books of ball groove 17 are fixedly connected to curved cover plate 18, spin 16 is connected in the slot of ball groove 17, and welding support rod 15, welding support are fixedly connected on the outer wall of spin 16 The top of bar 15 is fixedly connected with blade 13, and power-supply controller of electric 28, power supply control are fixedly connected in the left wall of Rotation Controllers 11 Device 28 processed is attached by conducting wire with battery 5, and the bottom of power-supply controller of electric 28 is fixedly connected with conduit 27, conduit 27 Bottom be fixedly connected with expansion controller 29, extension sleeve 30, telescopic are fixedly connected on the front of expansion controller 29 It is connected with telescopic rod 32 on the inner wall of cylinder 30, skewback 21, the activity of skewback 21 are fixedly connected on the outer wall of telescopic rod 32 It is connected with cylinder 20, the front of skewback 21 is run through in the bottom of cylinder 20, and is fixedly connected with disk 31, and the top of skewback 21 is fixed Vertical columns 23 are connected with, the bottom of vertical columns 23, which is fixedly connected with, is welded and fixed block 24, and the bottom that block 24 is welded and fixed is solid Surely it is connected with spring 25, the bottom of spring 25 is fixedly connected with fixed plate 26, and the bottom of fixed plate 26 is fixedly connected on rotation control On the right side inner wall of device 11 processed, the left wall of Rotation Controllers 11 is connected with shaft bar 33, spin 16 and 17 size phase of ball groove Adaptation, 16 bore of spin are less than the bore of ball groove 17, and grafting block 7 is located in the slot of grafting geosynclinal block 8, and grafting geosynclinal block 8 is fixedly connected On 9 leg outer wall of concave support bracket, the quantity of fixed plate 26 is two, and two fixed plates 26 are respectively fixedly connected in bullet The top and bottom of spring 25, the quantity of concave support bracket 9 is three, and three concave support brackets 9 are solid with battery 5 Fixed connection.
The electric elements occurred in this article are electrically connected with extraneous main controller and 220V alternating current, and main controller can be meter Calculation machine etc. plays the conventionally known equipment of control.
Working principle: this programme is located at rotation control by being fixedly connected with Rotation Controllers 11 on the front of battery 5 The power-supply controller of electric 28 being fixedly connected in the right wall of device 11 processed is braked expansion controller 29 by power-supply controller of electric 28, and is passed through Expansion controller 29 controls the flexible of telescopic rod, is operated by the flexible braking vertical columns 23 of telescopic rod, works as telescopic rod It operating forward, vertical columns 23 operate backward, and (being acted on by spring) reaches the push type rotation to shaft bar, And brake the rotation of blade.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment Intrinsic element.In the absence of more restrictions, the element limited by sentence " including a reference structure ", is not arranged Except there is also other identical elements in the process, method, article or apparatus that includes the element.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (6)

1. a kind of controllable three-bladed propeller based on physics kinetic energy, including three-bladed propeller ontology (1), it is characterised in that: It is fixedly connected to expansion bend (2) on outer wall at left and right sides of the three-bladed propeller ontology (1), the bottom of the expansion bend (2) It is provided with welding block body (22), is fixedly connected with support pillar (36), the branch on the front of welding block body (22) It is fixedly connected with annulus (35) at the top of support pillar (36), it is vertical that the inner wall of the annulus (35) is fixedly connected with rotation Column (3) is fixedly connected with pull rod (4) at the top of the Rotary cloumn (3), is fixedly connected at the top of the pull rod (4) hollow Block (10) is fixedly connected with battery (5) at the top of the three-bladed propeller ontology (1), the left and right sides of the battery (5) It is fixedly connected on outer wall grafting block (7), is fixedly connected with welding block (6), the welding block at the top of the battery (5) (6) it is fixedly connected on outer wall concave support bracket (9), the hollow block (10) is located at two legs of concave support bracket (9) Between, it is provided with Rotation Controllers (11) on the left of the concave support bracket (9), on the front of the Rotation Controllers (11) It is fixedly connected with telescopic prop (12), is fixedly connected with Rotary cloumn ontology (19), institute on the outer wall of the telescopic prop (12) It states and is provided with support panel (34) on the outside of Rotary cloumn ontology (19), the top of the Rotary cloumn ontology (19) is through support The inner wall of panel (34), and nut (14) are fixedly connected with, ball groove (17), institute are offered on the front of support panel (34) The two books for stating ball groove (17) are fixedly connected to curved cover plate (18), are connected with spin in the slot of the ball groove (17) (16), welding support rod (15) is fixedly connected on the outer wall of the spin (16), the top of welding support rod (15) is solid Surely blade (13) are connected with.
2. a kind of controllable three-bladed propeller based on physics kinetic energy according to claim 1, it is characterised in that: described It is fixedly connected in the left wall of Rotation Controllers (11) power-supply controller of electric (28), the power-supply controller of electric (28) is by conducting wire and stores Battery (5) is attached, and the bottom of the power-supply controller of electric (28) is fixedly connected with conduit (27), the conduit (27) Bottom is fixedly connected with expansion controller (29), is fixedly connected with extension sleeve on the front of the expansion controller (29) (30), it is connected with telescopic rod (32) on the inner wall of the extension sleeve (30), it is fixed on the outer wall of the telescopic rod (32) It is connected with skewback (21), the skewback (21) is connected with cylinder (20), and skewback is run through in the bottom of the cylinder (20) (21) front, and disk (31) are fixedly connected with, it is fixedly connected with vertical columns (23) at the top of the skewback (21), it is described The bottom of vertical columns (23), which is fixedly connected with, to be welded and fixed block (24), and the bottom that block (24) is welded and fixed is fixedly connected with The bottom of spring (25), the spring (25) is fixedly connected with fixed plate (26), and the bottom of the fixed plate (26) is fixedly connected On the right side inner wall of Rotation Controllers (11), the left wall of the Rotation Controllers (11) is connected with shaft bar (33).
3. a kind of controllable three-bladed propeller based on physics kinetic energy according to claim 1, it is characterised in that: described Spin (16) is adapted with ball groove (17) size, and spin (16) bore is less than the bore of ball groove (17).
4. a kind of controllable three-bladed propeller based on physics kinetic energy according to claim 1, it is characterised in that: described Grafting block (7) is located in the slot of grafting geosynclinal block (8), and the grafting geosynclinal block (8) is fixedly connected on outside concave support bracket (9) leg On wall.
5. a kind of controllable three-bladed propeller based on physics kinetic energy according to claim 2, it is characterised in that: described The quantity of fixed plate (26) is two, and two fixed plates (26) are respectively fixedly connected with the top and bottom in spring (25).
6. a kind of controllable three-bladed propeller based on physics kinetic energy according to claim 1, it is characterised in that: described The quantity of concave support bracket (9) is three, and three concave support brackets (9) are fixedly connected with battery (5).
CN201820873537.2U 2018-06-07 2018-06-07 A kind of controllable three-bladed propeller based on physics kinetic energy Expired - Fee Related CN208731203U (en)

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CN201820873537.2U CN208731203U (en) 2018-06-07 2018-06-07 A kind of controllable three-bladed propeller based on physics kinetic energy

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108609151A (en) * 2018-06-07 2018-10-02 马鞍山海明船舶配件有限公司 A kind of controllable three-bladed propeller based on physics kinetic energy

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108609151A (en) * 2018-06-07 2018-10-02 马鞍山海明船舶配件有限公司 A kind of controllable three-bladed propeller based on physics kinetic energy

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20190412

Termination date: 20190607