CN208595200U - Gear drive and water bullet rifle - Google Patents

Gear drive and water bullet rifle Download PDF

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Publication number
CN208595200U
CN208595200U CN201820637635.6U CN201820637635U CN208595200U CN 208595200 U CN208595200 U CN 208595200U CN 201820637635 U CN201820637635 U CN 201820637635U CN 208595200 U CN208595200 U CN 208595200U
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CN
China
Prior art keywords
component
gear
driving gear
driving
reverse
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Active
Application number
CN201820637635.6U
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Chinese (zh)
Inventor
梁贵彬
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Dajiang Innovations Technology Co Ltd
SZ DJI Innovations Technology Co Ltd
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Shenzhen Dajiang Innovations Technology Co Ltd
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Application filed by Shenzhen Dajiang Innovations Technology Co Ltd filed Critical Shenzhen Dajiang Innovations Technology Co Ltd
Priority to CN201820637635.6U priority Critical patent/CN208595200U/en
Priority to CN201880017709.9A priority patent/CN110914632A/en
Priority to PCT/CN2018/106274 priority patent/WO2019205463A1/en
Application granted granted Critical
Publication of CN208595200U publication Critical patent/CN208595200U/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H1/00Toothed gearings for conveying rotary motion
    • F16H1/02Toothed gearings for conveying rotary motion without gears having orbital motion
    • F16H1/20Toothed gearings for conveying rotary motion without gears having orbital motion involving more than two intermeshing members
    • F16H1/22Toothed gearings for conveying rotary motion without gears having orbital motion involving more than two intermeshing members with a plurality of driving or driven shafts; with arrangements for dividing torque between two or more intermediate shafts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H57/00General details of gearing
    • F16H57/02Gearboxes; Mounting gearing therein
    • F16H57/028Gearboxes; Mounting gearing therein characterised by means for reducing vibration or noise
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B7/00Spring guns
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B7/00Spring guns
    • F41B7/08Toy guns, i.e. guns launching objects of the gliding type, e.g. airplanes, parachute missiles

Abstract

The application provides a kind of gear drive and water bullet rifle.The gear drive includes the gear set connecting with driving device, and the gear set is equipped with an at least driving gear component.The gear drive further includes anti-reverse component, and the anti-reverse component elasticity is abutted to a wherein driving gear component.When the driving gear component is rotated in a first direction, the anti-reverse component elasticity pushes against the driving gear component, and the driving gear component is rotated about axis and the anti-reverse component is pushed to move along the axis direction.When the driving gear component is along the second direction rotation opposite with first direction, the anti-reverse component and the driving gear component abut each other and lock the turned position of the driving gear component.After driving device stops power input, driving gear component stops operating under the action of precompression, and gear drive will not dally, and compact-sized, noise is small.

Description

Gear drive and water bullet rifle
Technical field
The application belongs to spring gun technical field, is related to a kind of gear drive and water bullet rifle.
Background technique
Water bullet rifle includes gun body, is set to the intracorporal power mechanism of rifle, ammunition feed mechanism and trigger mechanism, wherein power mechanism Equipped with driving device and gear.If driving mechanism is set as power motor, gear is the tooth by multi-stage gear speed-changing Roller box, power motor drive gear-box operation, and gear-box drives trigger mechanism to gun body outgoing jetting bullet.
In the related art, the not set anti-reverse mechanism of the gear-box of water bullet rifle, after water bullet rifle stops transmitting water bullet, tooth Gear in roller box will continue to one preset duration of rotation.Due to being engagement connection between gear, when the gear in gear-box is empty When turning, gear-box generates biggish noise, poor user experience.
Utility model content
In view of this, the application provides a kind of gear drive and water bullet rifle.
Specifically, the application is achieved by the following technical solution:
According to the embodiment of the present application in a first aspect, provide a kind of gear drive, the gear drive packet The gear set connecting with driving device is included, the gear set is equipped with an at least driving gear component, and the gear drive is also Including anti-reverse component, the anti-reverse component elasticity is abutted to a wherein driving gear component;
When the driving gear component is rotated in a first direction, the anti-reverse component elasticity pushes against the transmission gear Component, the driving gear component are rotated about axis and push the anti-reverse component along the axis side of the driving gear component To movement;When the driving gear component is along the second direction rotation opposite with first direction, the anti-reverse component and institute State the turned position that driving gear component abuts each other and locks the driving gear component.
Optionally, the anti-reverse component is along the axis direction elastic telescopic for being parallel to the driving gear component.
Optionally, the anti-reverse component is slidedly arranged in shaft, and the axis of the shaft and the driving gear component is total Line.
Optionally, the anti-reverse component includes the elastic component that rotation preventing device and elasticity are connected to the rotation preventing device, the bullet Property part push the rotation preventing device elasticity to be connected to the driving gear component.
Optionally, the rotation preventing device includes main part and at least stop ledge for being convexly equipped in the main part, the bullet Property part elasticity is connected to the main part, and the stop ledge is abutted to the transmission gear.
Optionally, the stop ledge includes the sliding surface of ramped shaped and the motion-stopping surface positioned at described sliding surface one end, when When the driving gear component is rotated in a first direction, the driving gear component slides against with the sliding surface;When described When driving gear component is along the second direction rotation opposite with first direction, the motion-stopping surface locks the driving gear component.
Optionally, the driving gear component includes gear shaft and the gear that is set on the gear shaft, the biography Movable tooth wheel assembly further includes the anti-transfer part being convexly equipped on described gear one end or gear shaft, and the anti-reverse component elasticity is connected to The anti-transfer part, when the driving gear component is rotated in a first direction, table of the anti-reverse component along the anti-transfer part Face sliding, the anti-transfer part pushes the anti-reverse component along the axial movement of the driving gear component;When the driving cog When wheel is along the second direction rotation opposite with first direction, the anti-transfer part is against the extremely anti-reverse component to lock the biography The turned position of movable tooth wheel assembly.
Optionally, the anti-reverse component is set in the gear set at the driving gear component of driving device.
Optionally, the gear set includes the first gear component engaged with the driving device and the first gear The second gear component of component engagement and the third gear assembly engaged with the second gear component, the anti-reverse component bullet Property is abutted to the first gear component.
According to the second aspect of the embodiment of the present application, a kind of water bullet rifle is provided, including gun body, the installation rifle are intracorporal Trigger mechanism, Xiang Suoshu trigger mechanism provide the ammunition feed mechanism and gear drive as described above of water bullet, and the gear passes Motivation structure drives the trigger mechanism to be compressed to predeterminated position, and the trigger mechanism is used to that water bullet to be pushed to move along the gun body, So that the water bullet is projected to outside the gun body.
Technical solution disclosed in embodiment provided by the present application can have it is following the utility model has the advantages that
Gear drive is equipped with the anti-reverse component that elasticity is connected to driving gear component, and driving gear component is only capable of edge The rotation of one rotation direction, the rotation direction stability of gear set are good.Anti-reverse component elasticity is connected to driving gear component, the two Between have precompression.After driving device stops power input, driving gear component stops operating under the action of precompression, Gear drive will not dally, compact-sized, and noise is small.
Detailed description of the invention
Fig. 1 is that the stereochemical structure that the gear drive shown in one exemplary embodiment of the application is connect with driving device is shown It is intended to.
Fig. 2 is that the front view structure that the gear drive shown in one exemplary embodiment of the application is connect with driving device is shown It is intended to.
Fig. 3 is that the anti-reverse component elasticity shown in one exemplary embodiment of the application is abutted to a wherein driving gear component Schematic perspective view.
Fig. 4 is that the anti-reverse component elasticity shown in one exemplary embodiment of the application is abutted to a wherein driving gear component Schematic cross-sectional view.
Fig. 5 is the structural schematic diagram of the rotation preventing device shown in one exemplary embodiment of the application.
Fig. 6 is the structural schematic diagram of the gear shown in one exemplary embodiment of the application.
Fig. 7 is structural schematic diagram of the gear drive shown in one exemplary embodiment of the application applied to water bullet rifle.
In figure, driving gear component 10;Gear 11;Helical teeth portion 111;Denticle portion 112;Straight-tooth portion 113;Gear shaft 12;It is anti- Transfer part 13;Guide surface 131;Locking surface 132;First gear component 14;Second gear component 15;Third gear assembly 16;Support Axis 161;Function gear 162;Engaging section 1621;Function part 1622;Anti-reverse component 20;Rotation preventing device 21;Main part 211;Stop Boss 212;Sliding surface 2121;Motion-stopping surface 2122;Elastic component 22;Driving device 30;Gun body 40;Ammunition feed mechanism 50;Trigger mechanism 60;Piston component 61;First stage piston rack assembly 611;Second piston rack assembly 612;Elastic parts 62.
Specific embodiment
Example embodiments are described in detail here, and the example is illustrated in the accompanying drawings.Following description is related to When attached drawing, unless otherwise indicated, the same numbers in different drawings indicate the same or similar elements.Following exemplary embodiment Described in embodiment do not represent all embodiments consistent with the application.On the contrary, they be only with it is such as appended The example of the consistent device and method of some aspects be described in detail in claims, the application.
It is only to be not intended to be limiting the application merely for for the purpose of describing particular embodiments in term used in this application. It is also intended in the application and the "an" of singular used in the attached claims, " described " and "the" including majority Form, unless the context clearly indicates other meaning.It is also understood that term "and/or" used herein refers to and wraps It may be combined containing one or more associated any or all of project listed.
As depicted in figs. 1 and 2, gear drive includes the gear set connecting with driving device 30, and gear set is equipped with extremely A few driving gear component 10.Driving device 30 is connect with gear set, and passes through gear set output rotating speed regulation and torque.Driving Device 30 and the power transmitting of driving gear component 10 can be transmitted by direct transfer mode or indirect transfer mode.One In embodiment, the output shaft of driving device 30 is directly fixed in the shaft of driving gear component 10.In one embodiment, Driving gear is installed, which engages connection with driving gear component 10 on the output shaft of driving device 30.It is real one It applies in mode, the output shaft of driving device 30 and the shaft of driving gear component 10 pass through clutch pack plug connection.Driving Device 30 is different from the connection type of gear set, is applicable to different application scenarios, and practicability is good.
In one embodiment, gear drive further includes anti-reverse component 20, and anti-reverse 20 elasticity of component is abutted to it In a driving gear component 10.Gear set includes one or more driving gear component 10, when the driving cog of gear set When wheel assembly 10 is one, anti-reverse 20 elasticity of component is connected to the driving gear component 10.When gear set is equipped with more than one Driving gear component 10 when, connection is engaged between driving gear component 10.Anti-reverse 20 elasticity of component, which is connected to, wherein one to be passed Movable tooth wheel assembly 10.Correspondingly, under the precompression effect of anti-reverse component 20, entire gear set can stop in driving device 30 It stops operating after stopping power input.
Anti-reverse 20 elasticity of component is connected to driving gear component 10, is also used to prevent 10 direction of driving gear component from turning It is dynamic.Wherein, when driving gear component 10 is rotated in a first direction, anti-reverse 20 elasticity of component pushes against driving gear component 10, Driving gear component 10 is rotated about axis and anti-reverse component 20 is pushed to move along the axis direction of driving gear component 10.Work as biography When movable tooth wheel assembly 10 is along the second direction rotation opposite with first direction, anti-reverse component 20 and driving gear component 10 are mutual Against and lock the turned position of driving gear component 10.
Gear drive is equipped with the anti-reverse component 20 that elasticity is connected to driving gear component 10, driving gear component 10 It is only capable of rotating along the first rotation direction, the rotation direction stability of gear set is good.Anti-reverse component 20 and driving gear component 10 It locks against each other, prevents rotating backward for gear set, good braking effect, the stop position controllability of driving gear component 10 By force.Anti-reverse 20 elasticity of component is connected to driving gear component 10, has precompression between the two.Stop in driving device 30 After power input, driving gear component 10 stops operating under the action of precompression, and gear drive will not dally, structure Compact, noise is small.
Anti-reverse 20 elasticity of component is connected to driving gear component 10, when driving gear component 10 is rotated in a first direction, Driving gear component 10 pushes anti-reverse 20 elastic telescopic of component.As anti-reverse component 20 along driving gear component 10 radial direction, It axially or is abutted to inclined direction elasticity to driving gear component 10 with the axis of driving gear component 10, so that transmission gear When component 10 is rotated by first direction, anti-reverse 20 elastic telescopic of component can be pushed.Driving gear component 10 is turned by second direction When dynamic, anti-reverse component 20 pushes against driving gear component 10.
As shown in Figure 3 and Figure 4, in one embodiment, anti-reverse component 20 is along the axis for being parallel to driving gear component 10 Direction elastic telescopic.Driving gear component 10 passes through the driving rotation of driving device 30, axis of the driving gear component 10 around itself Rotation.Anti-reverse component 20 is connected to the surface of driving gear component 10 along the axis direction elasticity of driving gear component 10, Elastic acting force direction is perpendicular to 10 rotational plane of driving gear component.Anti-reverse component 20 is between driving gear component 10 Power transmitting influence is small, and the engagement balance between driving gear component 10 is good, and power transmitting is stablized.
In one optionally embodiment, anti-reverse component 20 is slidedly arranged in shaft, the axis of shaft and driving gear component 10 Line is conllinear.Shaft can be set as the column structure being installed on a fixed position, can also be set as the gear shaft of driving gear component 10 12.At least one cooperation plane is equipped between anti-reverse component 20 and shaft, so that anti-reverse component 20 is only capable of the axial direction along shaft It is mobile, such as the shaft of anti-reverse component 20 is installed and is equipped with relatively parallel two guide surfaces or shaft and is set as splined shaft.It is anti-reverse Component 20 is slided along the axis direction of driving gear component 10, is uniformly distributed with the abutting portion of driving gear component 10, can Make 10 uniform force of driving gear component.Such as, anti-reverse component 20 is set there are two abutting portion, and two abutting portion are set to The opposite sides of shaft.Two abutting portion are abutted to driving gear component 10, so that pressing force suffered by transmission gear 11 is symmetrical Distribution.The axis collinear of anti-reverse component 20 and driving gear component 10, so that the axially loaded of driving gear component 10 is uniform, 10 stability of rotation of driving gear component.
In one embodiment, anti-reverse component 20 includes the elastic component 22 that rotation preventing device 21 and elasticity are connected to rotation preventing device 21, Elastic component 22 pushes 21 elasticity of rotation preventing device to be connected to driving gear component 10.Rotation preventing device 21 is rigid structure, is abutted to transmission Gear assembly 10 so that resilient force in the surface of driving gear component 10.Elastic component 22 can be set as spring like structure or by bullet Property material be made, elastic component 22 has default deformation quantity so that rotation preventing device 21 in the presence of a tensile force with driving gear component 10 Keep abutting state.
As shown in figure 5, at least partly convex of rotation preventing device 21 to be to form abutting portion, the abutting portion and driving gear component 10 mutually abut.When driving gear component 10 is rotated by second direction, the abutting portion is reversely against to driving gear component 10, it is rotated to avoid 10 direction of driving gear component.In an optional embodiment, rotation preventing device 21 includes main part 211 and convex Set on an at least stop ledge 212 for main part 211,22 elasticity of elastic component is connected to main part 211, and stop ledge 212 abuts To transmission gear 11.When driving gear component 10 is rotated in a first direction, driving gear component 10 is against convex to promotion stop The stretching motion in the axial direction of platform 212, wherein at least partly contact surface of stop ledge 212 is set as inclined-plane.
In an optional embodiment, main part 211, which is arranged, to be outside shaft, and main part 211 can be moved along shaft straight line It is dynamic.Two stop ledges 212 are convexly equipped in the end face of main part 211, and two stop ledges 212 along being uniformly distributed clockwise or counterclockwise In on main part 211.When driving gear component 10 is rotated in a first direction, two stop ledges 212 fit in driving gear set The surface of part 10, and the axis direction under the promotion of driving gear component 10 along shaft moves.When 10 edge of driving gear component When second direction rotates, driving gear component 10 is at least partly against to two stop ledges 212, so that two stop ledges 212 limit The rotation of driving gear component 10 is determined, to prevent gear set reverse drive.It is appreciated that the number of the stop ledge 212 It may be other numbers such as one, three, four.
In an optional embodiment, the sliding surface 2121 of stop ledge 212 including ramped shaped and it is located at sliding surface The motion-stopping surface 2122 of 2121 one end.When driving gear component 10 is rotated in a first direction, driving gear component 10 and sliding surface 2121 slide against.When driving gear component 10 is along the second direction rotation opposite with first direction, motion-stopping surface 2122 is locked Driving gear component 10.
The elongated surfaces structure that sliding surface 2121 and 2122 structure of motion-stopping surface have angle or both has angle, for example, sliding Face 2121 and 2122 structure of motion-stopping surface are in an acute angle.When two or more stop ledges 212 are arranged on main part 211, sliding Face 2121 along being distributed clockwise or counterclockwise, so that driving gear component 10 is slided along sliding surface 2121.Motion-stopping surface 2122 is located at The end of sliding surface 2121, and step structure is formed between the end face of main part 211.When driving gear component 10 towards second When direction rotates, driving gear component 10 is against to motion-stopping surface 2122, to lock the turned position of transmission gear 11.Wherein, it passes The end face of movable tooth wheel assembly 10 is equipped with the boss structure or groove structure to match with stop ledge 212.
As shown in Figures 2 and 3, in one embodiment, driving gear component 10 including gear shaft 12 and is set to gear Gear 11 on axis 12, gear 11 are rotated with gear shaft 12.The both ends of gear shaft 12 are installed on fixed object, are such as installed on At the tank wall of gear-box.Driving gear component 10 further includes the anti-transfer part 13 being convexly equipped on 11 one end of gear or gear shaft 12, is prevented 20 elasticity of inversion component is connected to anti-transfer part 13.Anti- transfer part 13 is set to the step on the end face of gear 11 or set on gear shaft 12 At face or at the boss on gear shaft 12, anti-reverse 20 elasticity of component be connected to gear 11 or gear shaft 12 and with it is anti- Transfer part 13 matches.
As shown in Figure 3 and Figure 6, when driving gear component 10 is rotated in a first direction, anti-reverse component 20 is along anti-transfer part 13 surface sliding, anti-transfer part 13 pushes anti-reverse component 20 along the axial movement of driving gear component 10.When transmission gear 11 When along the second direction rotation opposite with first direction, anti-transfer part 13 is against extremely anti-reverse component 20 to lock driving gear component 10 turned position.
In one optionally embodiment, anti-reverse component 20 is sheathed on gear shaft 12 and slides along gear shaft 12, rotation preventing device 21 against to driving gear component 10.Anti- transfer part 13 is the end set on gear 11 and at least anti-rotation boss that protrudes outwardly. Anti-rotation boss is similar to the structure of stop ledge 212, and anti-rotation boss is equipped with the guide surface 131 of ramped shaped and is located at guide surface 131 The locking surface 132 of one end.Guide surface 131 intersects the extended surface intersection in an angle or both with locking surface 132 in an angle.
In an optional embodiment, rotation preventing device 21 is equipped with two stop ledges 212 of face setting, and anti-transfer part 13 is set as Two anti-rotations boss corresponding with two stop ledges 212.When gear 11 drives two anti-rotation boss to rotate to first direction, guide surface 131 fit in sliding surface 2121 and rotation preventing device 21 are pushed to be displaced outwardly along axis, until anti-rotation boss top against with stop The top of boss 212, rotation preventing device 21 are moved at maximum displacement.Gear 11 continues to rotate until anti-rotation boss and stop ledge 212 separation, the end face of rotation preventing device 21 and the top surface of anti-rotation boss contact with each other.Gear 11 continues to rotate, the bullet always of rotation preventing device 21 Property be connected to the endface of gear 11, until another stop ledge 212 of anti-rotation boss and rotation preventing device 21 relatively moves, and successively Circulation.When gear 11 drives two anti-rotation boss to rotate to second direction, the locking surface 132 of anti-rotation boss is against to stop ledge 212 motion-stopping surface 2122, anti-reverse component 20 stops gear 11 to continue to rotate, with the position of lock gear 11.
It cooperates between anti-reverse component 20 and driving gear component 10, limits the reversion of driving gear component 10, pass The stopping of movable tooth wheel assembly 10 is timely, and gear set is avoided to dally and invert.
As depicted in figs. 1 and 2, in one embodiment, anti-reverse component 20 is set in gear set close to driving device 30 Driving gear component 10 at.When gear set is the speed changing structure that multi-stage gear engagement connection is formed, especially reduction gearing Group, the revolving speed that the driving gear component 10 positioned at output one end is exported is small, torque is big, and close to 30 one end of driving device The revolving speed that driving gear component 10 is exported is big, torque is small.Anti-reverse component 20 is resisted against the transmission close to driving device 30 At gear assembly 10, accordingly reduce the elastic force that anti-reverse component 20 acts on driving gear component 10.Driving gear set simultaneously When part 10 is rotated to second direction, the impact force impacted in anti-reverse component 20 accordingly reduces, and reduces the material of anti-reverse component 20 Expect performance requirement, the long service life of anti-reverse component 20.
In one optionally embodiment, gear set includes the first gear component 14 engaged with driving device 30 and first The second gear component 15 that gear assembly 14 engages and the third gear assembly 16 engaged with second gear component 15, anti-reverse group 20 elasticity of part is abutted to first gear component 14.I.e. first gear component 14 is the driving gear component connecting with driving device 30 10。
Driving device 30 is equipped with output gear 11, and output gear 11 engages connection with first gear component 14.For example, output Gear 11 is set as angular wheel, and first gear component 14 includes gear shaft 12, the gear 11 for being installed on gear shaft 12, and gear 11 wraps Include denticle portion 112, the helical teeth portion 111 set on 112 side of denticle portion and the straight-tooth portion 113 set on 112 other side of denticle portion.Its Middle denticle portion 112, helical teeth portion 111 and straight-tooth portion 113 constitute body part, and anti-rotation boss is convexly equipped in one of helical teeth portion 111 outwardly Side.Output gear 11 engages connection with helical teeth portion 111, and anti-reverse component 20 is slidedly arranged on gear shaft 12 and elasticity is connected to helical teeth portion 111, stop ledge 212 and the anti-rotation boss of anti-reverse component 20 match.
Straight-tooth portion 113 is convexly equipped in denticle portion 112 and engages connection with second gear component 15, second gear component 15 and Three gear assemblies 16 engagement connection, wherein between first gear component 14, second gear component 15 and third gear assembly 16 It engages and connects by preset transmission ratio.
Third gear assembly 16 includes support shaft 161 and the function gear 162 for being installed on support shaft 161.Function gear 162 Including engaging the engaging section 1621 of connection with second gear component 15 and being convexly equipped in the function part 1622 of engaging section 1621, wherein Function part 1622 pushes correspondingly mechanism operation according to different scenes.As function part 1622 is set as that connection gear is engaged with rack Structure, or the part gear teeth are equipped on function part 1622.Or function part 1622 is set as multi-stage stairs, the periphery of every level-one step Wall is equipped with part gear teeth etc..
As shown in fig. 7, the application scenarios present invention also provides a kind of said gear transmission mechanism in water bullet rifle.
In one embodiment, water bullet rifle includes gun body 40, the trigger mechanism 60 in installation gun body 40, mentions to trigger mechanism 60 The ammunition feed mechanism 50 and gear drive as described above of water supply bullet.Gear drive is for driving trigger mechanism 60.Its Middle trigger mechanism 60 includes the elastic parts 62 that piston component 61 and elasticity are connected to piston component 61, gear drive and work Plug assembly 61 is drivingly connected.Such as, the function part 1622 of third gear assembly 16 and piston component 61 are drivingly connected, so that piston group 61 elasticity of compression component 62 of part.
When gear drive driving trigger mechanism 60 is compressed to predeterminated position, trigger mechanism 60 is for pushing water bullet edge Gun body 40 is mobile, so that water bullet is projected to outside gun body 40.Piston component 61 is slidedly arranged in the trajectory of gun body 40, ammunition feed mechanism 50 Water bullet is complemented in the trajectory.When piston component 61 is compressed to predeterminated position, gear drive divides with piston component 61 From so that piston component 61 resets under the resilient force of elastic parts 62, in reseting procedure, piston component 61 pushes water Bullet is mobile and provides kinetic energy for water bullet.Correspondingly, water bullet is slided along the trajectory of gun body 40, until projecting from muzzle.Gear passes Motivation structure is driven using multi-stage gear 11, to lower the output revolving speed of gear set, output torque is increased, so that piston component 61 Biggish pretightning force can be born, the emission rate of water bullet is improved.
In one optionally embodiment, piston component 61 includes that first stage piston rack assembly 611 is lived with level-one is slidedly arranged on Fill in the second piston rack assembly 612 of rack assembly 611.Wherein, the function part 1622 of third gear assembly 16 includes a step cone Tooth and the second level gear teeth, the level-one gear teeth and the second level gear teeth are only distributed in the part of the surface of function part 1622, are such as distributed in function part In 1622 one third, the periphery of a quarter.The level-one gear teeth match with first stage piston rack assembly 611, two step cones Tooth matches with second piston rack assembly 612.
When the level-one gear teeth engage connection with first stage piston rack assembly 611, piston component 61 moves integrally until second level The gear teeth engage connection with second piston rack assembly 612.The second level gear teeth drive second piston rack assembly 612 to continue the elasticity of compression Component 62, meanwhile, first stage piston rack assembly 611 is automatically reseting.When function part 1622 is continued to rotate to not set two step cone When the surface of tooth, the Rapid reset under the elastic power drive of elastic parts 62 of second piston rack assembly 612, meanwhile, second level is living Plug rack assembly 612 pushes water bullet to move along trajectory.Multi-stage booster is arranged in piston component 61, and compression travel lengthens, so that elastic The compressing force of component 62 is big, and the elastic force for acting on water bullet increases, and user experience is good.
The above is only the preferred embodiments of the application, not to limit the application, it is all in spirit herein and Within principle, any modification, equivalent substitution, improvement and etc. done be should be included within the scope of the application protection.

Claims (10)

1. a kind of gear drive, which is characterized in that the gear drive includes the gear set connecting with driving device, The gear set is equipped with an at least driving gear component, and the gear drive further includes anti-reverse component, described anti-reverse Component elasticity is abutted to a wherein driving gear component;
When the driving gear component is rotated in a first direction, the anti-reverse component elasticity pushes against the driving gear set Part, the driving gear component are rotated about axis and push the anti-reverse component along the axis direction of the driving gear component It is mobile;When the driving gear component is along the second direction rotation opposite with first direction, the anti-reverse component with it is described Driving gear component abuts each other and locks the turned position of the driving gear component.
2. gear drive according to claim 1, which is characterized in that the anti-reverse component edge is parallel to the biography The axis direction elastic telescopic of movable tooth wheel assembly.
3. gear drive according to claim 1, which is characterized in that the anti-reverse component is slidedly arranged in shaft, The axis collinear of the shaft and the driving gear component.
4. gear drive according to claim 1, which is characterized in that the anti-reverse component includes rotation preventing device and bullet Property is connected to the elastic component of the rotation preventing device, and rotation preventing device elasticity described in the resilient element urges is connected to the driving gear set Part.
5. gear drive according to claim 4, which is characterized in that the rotation preventing device includes main part and is convexly equipped in An at least stop ledge for the main part, the elastic component elasticity are connected to the main part, the stop ledge abut to The transmission gear.
6. gear drive according to claim 5, which is characterized in that the stop ledge includes the sliding of ramped shaped Face and motion-stopping surface positioned at described sliding surface one end, when the driving gear component is rotated in a first direction, the driving cog Wheel assembly slides against with the sliding surface;When the driving gear component is rotated along the second direction opposite with first direction When, the motion-stopping surface locks the driving gear component.
7. gear drive according to claim 1, which is characterized in that the driving gear component include gear shaft with And it is set to the gear on the gear shaft, the driving gear component further includes being convexly equipped on described gear one end or gear shaft Anti- transfer part, the anti-reverse component elasticity is connected to the anti-transfer part, when the driving gear component is rotated in a first direction When, the anti-reverse component is slided along the surface of the anti-transfer part, and the anti-transfer part pushes the anti-reverse component along the biography The axial movement of movable tooth wheel assembly;When the transmission gear is along the second direction rotation opposite with first direction, the anti-rotation Portion is against the turned position for locking the driving gear component to the anti-reverse component.
8. gear drive according to claim 1, which is characterized in that the anti-reverse component is set to the gear In group at the driving gear component of driving device.
9. gear drive according to claim 8, which is characterized in that the gear set includes and the driving device It the first gear component of engagement, the second gear component engaged with the first gear component and is nibbled with the second gear component The third gear assembly of conjunction, the anti-reverse component elasticity are abutted to the first gear component.
10. a kind of water bullet rifle, which is characterized in that including gun body, the intracorporal trigger mechanism of the installation rifle, Xiang Suoshu trigger mechanism The ammunition feed mechanism and gear drive as described in any one of claim 1 to 9 of water bullet are provided, the gear drive drives It moves the trigger mechanism and is compressed to predeterminated position, the trigger mechanism is for pushing water bullet to move along the gun body, so that described Water bullet is projected to outside the gun body.
CN201820637635.6U 2018-04-28 2018-04-28 Gear drive and water bullet rifle Active CN208595200U (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CN201820637635.6U CN208595200U (en) 2018-04-28 2018-04-28 Gear drive and water bullet rifle
CN201880017709.9A CN110914632A (en) 2018-04-28 2018-09-18 Gear transmission mechanism and water bullet rifle
PCT/CN2018/106274 WO2019205463A1 (en) 2018-04-28 2018-09-18 Gear transmission mechanism and gel ball gun

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