WO2021062979A1 - 一种左轮式弹射玩具 - Google Patents

一种左轮式弹射玩具 Download PDF

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Publication number
WO2021062979A1
WO2021062979A1 PCT/CN2020/076400 CN2020076400W WO2021062979A1 WO 2021062979 A1 WO2021062979 A1 WO 2021062979A1 CN 2020076400 W CN2020076400 W CN 2020076400W WO 2021062979 A1 WO2021062979 A1 WO 2021062979A1
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WO
WIPO (PCT)
Prior art keywords
assembly
launching
block
rotating
trigger
Prior art date
Application number
PCT/CN2020/076400
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English (en)
French (fr)
Inventor
谢国华
陈佳瑜
杨晶晶
谢幼兰
Original Assignee
广州灵动创想文化科技有限公司
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Application filed by 广州灵动创想文化科技有限公司 filed Critical 广州灵动创想文化科技有限公司
Publication of WO2021062979A1 publication Critical patent/WO2021062979A1/zh

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    • 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
    • F41B7/003Spring guns in pistol or rifle form
    • 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
    • F41B7/006Adaptations for feeding or loading missiles from magazines
    • 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

Definitions

  • the invention relates to the technical field of toys, in particular to a revolver-type ejection toy.
  • the present invention provides a revolver-type ejection toy with reasonable structure design, which not only has the function of ejection, and the ejected rotating body can also perform rotating motions, but also can continuously launch the rotating body, which expands the fun and functionality of the toy .
  • a revolver-type ejection toy includes an ejection base in which a launching assembly, a driving assembly, a rotating drum assembly, a pin assembly and a trigger assembly are installed; the ejection base is provided with a launching groove above the front end, The launching assembly is slidably arranged in the launching slot; the rotating drum assembly is rotatably arranged on the ejection base, and a plurality of magazine parts are evenly arranged in the rotating drum assembly, and each magazine part can be The rotating body is detachably clamped; the launching assembly is used for launching the rotating body; the driving assembly is arranged below the launching slot and is used for driving the launching assembly to be engaged with the trigger assembly; The latch assembly is engaged with the trigger assembly, and the latch assembly is used to drive the drum assembly to rotate; the drive assembly is used to drive the latch assembly to press the rotating body into the launch assembly; the trigger assembly is used to release the launch assembly The rotating body; and the drive assembly is used to drive the rotating body on the launching assembly to make
  • the rotating drum assembly includes a fixed shaft, a rotating shaft, and a rotating drum wheel
  • the fixed shaft is mounted on the ejection base
  • one end of the rotating shaft is rotatably sleeved on the fixed shaft.
  • the other end of the rotating shaft is connected with the rotating drum wheel, and the pin assembly is used for driving the rotating shaft to drive the rotating drum wheel to rotate.
  • a plurality of step slide grooves are provided at equal intervals on the circumferential surface of the rotating shaft, and the number of step slide grooves is the same as the number of the magazine parts; each step slide groove includes The first-level ladder and the second-level ladder, the two adjacent ladder chutes are connected by an arc-shaped groove, one end of the arc-shaped groove is connected with the first-level step of the step chute on one side, and the other of the arc-shaped grooves One end is connected with the second step of the step slide groove on the other side; the pin assembly includes a rotating push block, which is slidably arranged on the passage connecting the step slide groove and the arc groove, and is used for driving rotation The shaft rotates.
  • one end of the rotating shaft close to the drum wheel is provided with an outwardly extending cylinder, and the inner wall of the cylinder is provided with a clamping strip, and a slidable return piece is fitted on the clamping strip.
  • a return spring is provided between the return part and the bottom of the cylinder; one side of the drum wheel is fixedly provided with a rotating part, and one end of the return part is recessed inward with an inverted triangular notch, so One end of the rotating member is provided with a triangular protrusion extending outward, and the triangular protrusion of the rotating member fits with the inverted triangular recess of the returning member.
  • a plurality of through holes are equally spaced on the drum wheel, and the number of through holes is the same as the number of the magazine parts;
  • the bolt assembly includes a rotating push block, a transmission tooth block and a bolt A toothed piece, the rotating push block is used to drive the rotating shaft to rotate, the transmission tooth block is slidably arranged on the rear side of the rotating push block, and a release spring is provided between the rear side of the transmission tooth block and the ejection base,
  • the transmission gear block and the pin gear are connected in reverse transmission through a pin gear set;
  • the drive assembly includes a long tooth member for pressing the rotating push block through the through hole and then moving and driving the pin tooth The member is inserted into the magazine part to eject the rotating body and make the rotating body to be clamped with the launching assembly.
  • the rotating push block drives the transmission gear block to compress the release spring and makes the transmission gear block to be clamped with the trigger assembly.
  • a first movable block is telescopically provided in the magazine portion, the rotating body is clamped in the first movable block, and the launching assembly includes a launching slider, a launching spring, and a first movable block.
  • the launching slider is slidably arranged in the launching groove, the launching slider is connected with the ejection base through the launching spring, and the second movable block is slidably arranged on In the launching slider; the pin assembly is used for pushing the rotating body into the second movable block of the launching assembly and drivingly connected with the driving assembly.
  • the bottom of the launching slider is provided with a launching block
  • the trigger assembly includes a triggering block
  • the driving assembly drives the launching slider to compress the launching spring to store energy, and at the same time drive the launching block It is matched and clamped with the trigger block of the trigger assembly.
  • the drive assembly includes a long tooth member and a drive gear set, the long tooth member is slidably arranged below the emission slot, and the upper end of the long tooth member is provided with a driving block, and the long tooth member
  • the gear member pushes the launching assembly and the trigger assembly through the drive block to fit and clamp; the drive gear set is installed on the ejection base and is in driving connection with the long gear member.
  • the drive gear set includes a gear mounting seat arranged at the rear end of the launching groove, and a driving gear, a sliding gear and an output gear that are connected in sequence on the gear mounting seat.
  • Corresponding sliding grooves are provided on both sides of the mounting seat, and the two ends of the rotating shaft of the sliding gear are respectively slidably arranged in the sliding grooves on both sides of the gear mounting seat;
  • the long rack is connected by the gear transmission, and the long tooth is used to drive the output gear to make a one-way rotation movement.
  • the trigger assembly includes a trigger, a trigger block, a trigger spring, and a latch block.
  • the trigger is telescopically arranged on the ejection base through the trigger spring, and the trigger block is arranged on the trigger.
  • the front and upper part of the trigger block is engaged with the launching assembly, the latch block is arranged behind the trigger, and is engaged with the latch assembly, and the trigger is used to drive the trigger block and the trigger block.
  • the launching component is disengaged, and is used to drive the latch block and the latch assembly to disengage.
  • Figure 1 is a schematic diagram of the structure of a revolver-type ejection toy in some embodiments
  • Figure 2 is a schematic diagram of the internal structure of a revolver-type ejection toy in some embodiments
  • Fig. 3 is another structural diagram of a revolver-type ejection toy in some embodiments.
  • Figure 4 is a front view of a revolver-type projectile toy in some embodiments
  • Figure 5 is another schematic diagram of the internal structure of the revolver-type ejection toy in some embodiments.
  • Fig. 6 is another schematic diagram of the internal structure of the revolver-type ejection toy in some embodiments.
  • Fig. 7 is another schematic diagram of the internal structure of the revolver-type ejection toy in some embodiments.
  • Fig. 8 is a schematic structural diagram of a revolver assembly of a revolver-type ejection toy in some embodiments
  • Figure 9 is a rear view of the revolver assembly of the revolver-type projectile toy in some embodiments.
  • Figure 10 is a front view of a revolver assembly of a revolver ejection toy in some embodiments
  • Figure 11 is a side view of a revolver assembly of a revolver-type ejection toy in some embodiments
  • Figure 12 is an internal structure diagram of a revolver wheel of a revolver ejection toy in some embodiments
  • Figure 13 is a schematic diagram of the connection between the rotating shaft and the rotating push block in some embodiments.
  • FIG. 14 is another schematic diagram of the connection between the rotating shaft and the rotating push block in some embodiments.
  • 15 is a schematic diagram of the connection between the rotating shaft and the rotating part in some embodiments.
  • Figure 16 is another schematic diagram of the connection between the rotating shaft and the rotating member in some embodiments.
  • Figure 17 is a schematic diagram of the connection between the rotating drum and the return piece in some embodiments.
  • FIG. 18 is a schematic diagram of the structure of a rotating body in some embodiments.
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features.
  • plural means two or more.
  • installed ed
  • connected e.g., they can be fixed or detachable.
  • Connected or integrally connected can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
  • Connected or integrally connected can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
  • This embodiment provides a left-wheeled ejection toy, which includes an ejection base 10 in which a launching assembly 20, a driving assembly 30, a rotating drum assembly 40, a latch assembly 50 and a trigger assembly 60 are installed;
  • a launching slot 11 is provided above the front end of the ejection base 10, and the launching assembly 20 is slidably arranged in the launching slot 11;
  • the rotating drum assembly 40 is rotatably arranged on the ejecting base 10, and the rotating drum
  • a plurality of magazine parts 41 are uniformly provided in the assembly 40, and a rotating body 70 is detachably clamped in each magazine part 41;
  • the launching assembly 20 is used to launch the rotating body 70;
  • the driving assembly 30 is provided Under the launching slot 11, and used for driving the launching assembly 20 to be engaged with the trigger assembly 60;
  • the latch assembly 50 is engaged with the trigger assembly 60, and the latch assembly 50 is used for driving the rotation
  • the barrel assembly 40 rotates;
  • the drive assembly 30 is used to drive
  • the ejection base 10 can be designed into a variety of different ejection base structures, and the ejection base 10 of this embodiment is preferably a revolver-type gun body structure.
  • the launching slot 11 is a slot structure with openings at both ends, and the front end of the launching slot 11 is provided with a limiting part that cooperates with the launching assembly, so as to prevent the launching assembly 20 from being launched together with the rotating body.
  • the rotating drum assembly 40 includes a fixed shaft 42, a rotating shaft 43, and a rotating drum wheel 44.
  • the fixed shaft 42 is mounted on the ejection base 10, and one end of the rotating shaft 43 can be It is rotatably sleeved on the fixed shaft 42, and the other end of the rotating shaft 42 is connected with the drum wheel 44.
  • the rotating drum wheel 44 is arranged at the rear end of the launch slot 11.
  • three magazine parts 41 are evenly distributed on the drum assembly 40, and a rotating body 70 is matched and clamped on each magazine part 41.
  • each magazine portion 41 can be telescopically provided with a first movable block 45, and the rotating body 70 is clamped in the first movable block 45.
  • the two ends of the first movable block 45 respectively extend to the same side with first bumps, and the outer sides of the two first bumps are designed with inclined surfaces; in addition, the other side of the first movable block 45 passes
  • the first spring is telescopically connected to the magazine portion 41; the rotating body 70 is clamped between the two first movable blocks 45.
  • the circumferential surface of the rotating shaft 43 is provided with a plurality of step slide grooves 46 at equal intervals, and the number of step slide grooves 46 is the same as the number of the magazine portion 41; each step slide groove 46 includes a first step
  • the two adjacent step chutes 46 communicate with each other through an arc-shaped groove 47.
  • One end of the arc-shaped groove 47 communicates with the first-level step of the step chute 46 on one side.
  • the arc-shaped groove 47 The other end is connected with the second step of the step chute 47 on the other side.
  • the step chute 46 is a straight groove structure, the bottom surface of the first step and the bottom surface of the arc groove 47 are located on the same plane, and the bottom surface of the first step is lower than the bottom surface of the second step.
  • one end of the rotating shaft 43 close to the drum wheel 44 is provided with an outwardly extending cylinder body 48.
  • the inner wall of the cylinder body 48 is provided with a clamping strip 481, and the clamping strip 481 is matched with There is a slidable return piece 49.
  • a return spring 482 is provided between the return piece 49 and the bottom of the cylinder 48. In order to facilitate the display of the return spring, the cylinder is omitted in FIGS.
  • One side of the wheel 44 is fixed outwardly with a rotating member 441, one end of the return member 49 is recessed inwardly with an inverted triangular notch 491, and one end of the rotating member 441 is outwardly extended with a triangular protrusion 442,
  • the triangular protrusion 442 of the rotating member 441 fits with the inverted triangular recess 491 of the return member 49. Therefore, when the rotating drum 44 is manually rotated to install the rotating body 70 on the magazine portion 41, the rotating drum 44 drives the rotating member 441 to rotate, and the returning member 49 is pressed by the rotating member 441 along the clamping strip 481 of the inner wall of the cylindrical body 48.
  • the launching assembly 20 includes a launching slider 21, a launching spring 22, and a second movable block 23.
  • the launching slider 21 is slidably arranged in the launching slot 11, and the launching slider 21 passes through the launching spring.
  • 22 is connected to the ejection base 10, and the second movable block 23 is telescopically arranged in the launching slider 21.
  • Two ends of the second movable block 23 respectively extend to the same side with second protrusions, and the other side of the second movable block 23 is telescopically connected to the launching slider 21 through a second spring.
  • a wedge-shaped block is provided on the same side of the launching slot 11 and the second movable block 23, and the wedge-shaped block is fixedly arranged above the front end of the launching slot 11, and its side surface close to the launching slot 11 is set upside down. Inclined structure. Therefore, when the latch assembly 50 presses the rotating body 70 into the second movable block 23 of the launching slider 21, after the launching slider 21 is disengaged from the trigger assembly 60, the launching slider 21 is in the launching spring 22.
  • the second movable block 23 When the second movable block 23 contacts the wedge block, under the action of the wedge block, the second movable block 23 compresses the second spring inwardly, so that the rotating body 70 and the second movable block The blocks 23 are disengaged, and the rotating body 70 is launched under the action of inertia.
  • the driving assembly 30 includes a long toothed member 31 and a drive gear set 32 that is in transmission connection with the long toothed member 31.
  • the long toothed member 31 is slidably disposed below the launch slot 11, and the upper end of the long toothed member 31 A driving block 33 is provided.
  • the driving gear set 32 is installed on the rear end side of the launching slot 11 and is located at the second movable block 23 when the launching slider 21 stretches the launching spring 22 and is clamped with the trigger assembly 60 Therefore, the long toothed member 31 drives the driving gear set 32 to rotate, thereby driving the rotating body 70 located at the second movable block 23 to rotate.
  • the driving gear set 32 includes a gear mounting seat 34 arranged on the rear side of the launching slot 11, and the gear mounting seat 34 is mounted on the gear mounting seat 34.
  • the two sides of the gear mounting seat 34 are provided with corresponding sliding grooves 38.
  • the two ends of the rotating shaft of the sliding gear 36 are respectively slidably arranged In the sliding grooves 38 on both sides of the gear mounting seat 34; the upper surface of the long tooth member 31 is provided with a long rack 310 that is connected to the driving gear 35 in transmission.
  • the driving gear 35 rotates clockwise and drives the sliding gear 36 to slide to one end of the sliding groove 38 to rotate.
  • the driving gear 35 rotates counterclockwise and drives the sliding gear 36 to slide to the other end of the sliding groove 38 to rotate.
  • the output gear 37 can be arranged on the side close to one end of the sliding groove 38, and when the sliding gear 36 slides to the sliding groove 38 When it is close to one end of the output gear 37, the sliding gear 36 is in transmission connection with the output gear 37, and when the sliding gear 36 is slid to the other end of the sliding groove 38, the sliding gear 36 is not in transmission connection with the output gear 37, and long teeth can be realized.
  • the piece 31 unidirectionally drives the output gear 37 to have the effect of unidirectional rotation.
  • first auxiliary gears 39 are provided between the driving gear 35 and the sliding gear 36, and two first auxiliary gears 39 are provided between the sliding gear 36 and the output gear 37.
  • the bolt assembly 50 includes a rotating push block 51, a transmission tooth block 52, and a bolt tooth 53.
  • the rotating push block 51 is slidably arranged on the passage communicating with the step sliding groove 46 of the drum assembly 40 and the arc groove 47 ,
  • the side surface of the rotating push block 51 is provided with a pushing cylinder 511, and the pushing cylinder 511 is used on the passage connecting the stepped sliding groove 46 and the arc-shaped groove 47 .
  • the transmission tooth block 52 is slidably arranged on the rear side of the rotating push block 51, a release spring 54 is provided between the rear end of the transmission tooth block 52 and the ejection base 10, and the transmission tooth block 52 is connected to the latch
  • the gears 53 are connected in reverse transmission through a pin gear set 55.
  • the pin gear set 55 of this embodiment includes a first-stage gear 56, a second-stage gear 57, and a third-stage gear 58 that are connected in sequence by transmission.
  • the upper surface of the transmission tooth block 52 is provided with A rack-shaped structure connected with the first-stage gear 56 in transmission
  • the lower surface of the pin tooth member 53 is provided with a rack-shaped structure connected with the third-stage gear 58 in transmission.
  • the drum wheel 44 is provided with a plurality of through holes 402 at equal intervals, and the number of through holes 402 is the same as the number of the magazine portion 41; and each through hole 402 is slidably With a transmission column 401.
  • the drum wheel 44 is provided with three through holes 402, each through hole 402 is slidably provided with a transmission column 401, and the three through holes 402 are evenly distributed on the drum body 44, such as As shown in FIG.
  • the transmission column 401 is pressed to move backward and the rotating push block 51 is driven to move backward, and then the transmission tooth block 52 is continuously pressed to move the compression release spring 54 to the
  • the trigger assembly 60 is engaged and clamped, and the pin tooth member 53 moves forward under the transmission of the pin gear set 55 at the same time, and presses the first movable block 45 in the magazine portion 41 to retract, so that the first movable block 45 is retracted.
  • the pin tooth 53 continues to press the rotating body 70 and makes the rotating body 70 fit into the second movable block 23 of the launching slider 21.
  • the transmission tooth block 52 moves forward under the action of the release spring 54 and drives the latch tooth 53 to move out of the magazine portion 41 of the drum wheel 44, Then the transmission tooth block 52 continues to move forward and pushes the rotating push block 51.
  • the push post 511 of the rotating push block 51 moves from the first step of the step slide 46 along the arc groove 47.
  • the rotating push block 51 moves forward in a straight line Therefore, by pushing the column 511 from the first step of the step chute 46 to the second step of the other step chute 46 along the arc-shaped groove 47, the rotating shaft 53 is driven to rotate by 120°, and the next rotating body 70 is aligned with the rear end of the launching slot 11; when the long tooth member 31 pushes the rotary push block 51 to move backward, the pushing post 511 recedes linearly from the second step of the step chute 46 to the first step of the arc-shaped slot 47, thereby Will not drive the rotating shaft to rotate.
  • the transmission tooth block 52 pushes the rotary push block 51 to move forward, and the rotary push block 51 and the transmission tooth block 52 are engaged with the trigger assembly
  • the distance at 60 o'clock is greater than the distance at which the pin tooth member 53 is inserted into the magazine portion 41.
  • the trigger assembly 60 includes a trigger 61, a trigger block 62, a trigger spring 63 and a latch block 64.
  • the trigger 61 is telescopically arranged on the ejection base 10 through the trigger spring 63, and the trigger block 62 is arranged on Above the front end of the trigger 61, a launching block 24 is provided at the bottom of the launching slider 21.
  • the long toothed member 31 drives the launching slider 21 to compress the launching spring 22 to stretch and store energy, and at the same time drive the launching block 24
  • the trigger block 62 of the trigger assembly 60 is matched and clamped.
  • the latch block 64 is arranged behind the trigger 61 and is engaged with the transmission tooth block 52 of the latch assembly 50.
  • the trigger 61 is used to drive the trigger block 62 and the launching assembly 20.
  • the launching block 24 is disengaged, and is used to drive the latch block 64 and the transmission tooth block 52 of the latch assembly 50 to disengage.
  • the rotating body 70 of this embodiment is a gyro body.
  • the rotating body 70 includes a gyro body 71 and a gyroscopic shaft 72 disposed under the gyro body 71, wherein the gyroscopic shaft 72 From top to bottom, a gyro blocking block 73, a rotating gear 74, and a top 75 are sequentially arranged.
  • the gyro blocking block 73 is rotatably arranged on the top shaft 72, and the rotating gear 74 is fixed on the top shaft. 72, the spinning tip 75 is sleeved on the bottom of the spinning shaft 72 of the spinning top.
  • the rotating gear 74 is drivingly connected with the output gear 37.
  • the long tooth 31 moves forward and backward to drive the rotating body 70 on the launching slider 21 to make a one-way rotation, and pull the trigger 61 backward to disengage the launching block 24 and the triggering block 62, and the launching slider 21 launches the rotating body 70 out under the action of the launching spring 22.
  • the trigger 61 continues to move the pressing latch block 64 back to disengage it from the transmission tooth block 52.
  • the transmission tooth block 52 slides forward under the action of the disengagement spring 54 and at the same time drives the latch tooth 53 to move back and exit the elastic
  • the box part 41, the transmission tooth block 52 continue to press the rotating push block 51 forward and drive the rotating shaft 43 to rotate, so that the drum wheel 44 rotates and the next magazine part 41 is realigned with the launch slot 11 for the next round Ready for launch.
  • the ejection base is used as the base for the energy storage and launch of the rotating body, and a rotating drum assembly arranged on the ejection base is used to coordinate and clamp a plurality of rotating bodies, and the launching assembly, the rotating drum assembly, The driving component, the latch component and the trigger component cooperate with each other to realize the rotation and launch of the rotating body.
  • the launching assembly is driven by the drive assembly to engage with the trigger assembly, and then the pin assembly is driven to be engaged with the trigger assembly through the drive assembly, and the pin assembly is pressed against the rotating body to insert the launching assembly, and the rotating body on the launching assembly is connected to the drive assembly.
  • the rotating body on the launching assembly is driven to rotate and accumulate energy through the drive assembly.
  • the trigger assembly is released from the launching assembly.
  • the launching assembly launches the rotating body.
  • the trigger assembly and the latch assembly are released, and the latch assembly is driven to rotate.
  • the barrel assembly rotates and makes the next rotating body align with the launch slot.
  • the revolver-type ejection toy has a novel structure design, not only has the ejection function, but the ejected rotating body can also make a rotating movement, and at the same time, it can continuously launch the rotating body, which expands the fun and functionality of the toy.

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  • General Engineering & Computer Science (AREA)
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Abstract

一种左轮式弹射玩具,包括弹射基座(10),弹射基座(10)中安装有发射组件(20)、驱动组件(30)、转筒组件(40)、插销组件(50)和扳机组件(60);弹射基座(10)的前端上方设有发射槽(11),发射组件(20)可滑动地设置在发射槽(11)中;转筒组件(40)可转动地设置在弹射基座(10)上,转筒组件(40)中均匀设有多个弹匣部(41),每个弹匣部(41)中可拆卸地卡接有旋转体(70);插销组件(50)与扳机组件(60)配合卡接,且插销组件(50)用于驱动转筒组件(40)转动;驱动组件(30)用于驱动发射组件(20)与扳机组件(60)配合卡接,用于驱动插销组件(50)顶压旋转体(70)插入发射组件(20);且驱动组件(30)用于驱动发射组件(20)上的旋转体(70)做单向转动运动。

Description

一种左轮式弹射玩具 技术领域
本发明涉及玩具技术领域,特别是涉及一种左轮式弹射玩具。
背景技术
玩具作为小孩智力开发以及娱乐玩耍的重要用具,而且随着人们的生活水平不断提高,对于玩具的品质和功能的要求也越来越高。
现有的玩具在追求智力开发活动的同时,更应该增加其趣味性,从而提高孩子的兴趣。现实生活中的动漫,凭借形象逼真的特效,吸引了一大群的粉丝,而由其衍生出来的许多玩具,深受粉丝的追棒。其中,现有的左轮式弹射玩具由于其做工比较粗糙、仿真性不高,或者由于其只具有弹射功能,满足不了现代人对于玩具多玩法的追求。
现有的左轮式弹射玩具往往只有单一的玩法,只能单一地将弹射件弹射出去,并没有其它有新颖性的玩法,从而缺乏趣味性。再者,现有的左轮式弹射玩具通常在发射之后,需要重新将旋转体上膛之后再发射,这种玩耍方式的趣味性较低,连贯性也不够,从而导致其难于获得小孩的长期喜爱,小孩很容易对其失去兴趣,并渐渐地将其搁置一边。
发明内容
本发明提供一种左轮式弹射玩具,其结构设计合理,不仅具有弹射的功能且弹射出去的旋转体还能够做旋转运动,同时还能够连续发射旋转体,扩展了玩具的趣味性和功能性。
本发明采用的技术方案为:
一种左轮式弹射玩具,包括弹射基座,所述弹射基座中安装有发射组件、驱动组件、转筒组件、插销组件和扳机组件;所述弹射基座的前端上方设有发射槽,所述发射组件可滑动地设置在该发射槽中;所述转筒组件可转动地设置在弹射基座上,该转筒组件中均匀设有多个弹匣部,每个弹匣部中可拆卸地卡接有旋转体;所述发射组件用于发射所述旋转体;所述驱动组件设置在所述发射槽的下方,且用于驱动发射组件与所述扳机组件配合卡接;所述插销组件与所述扳机组件配合卡接,且该插销组件用于驱动转筒组件转动;所述驱动组件用于驱动插销组件顶压旋转体插入发射组件;所述扳机组件用于释放发射组件上的旋转体;且该驱动组件用于驱动发射组件上的旋转体做单向转动运动。
在一些实施例中,所述转筒组件包括固定轴、转动轴和转筒轮,所述固定轴安装在所述弹射基座上,所述转动轴的一端可转动地套设在所述固定轴上,该转动轴的另一端与所述转 筒轮连接,所述插销组件用于驱动转动轴带动转筒轮转动。
可选地,或结合前述,所述转动轴的圆周面上等间距地设有多个阶梯滑槽,且阶梯滑槽的数量与所述弹匣部的数量相同;每个阶梯滑槽均包括一级阶梯和二级阶梯,相邻的两个阶梯滑槽之间通过弧形槽连通,所述弧形槽的一端与一侧的阶梯滑槽的一级阶梯连通,该弧形槽的另一端与另一侧的阶梯滑槽的二级阶梯连通;所述插销组件包括转动推块,该转动推块可滑动地设置在阶梯滑槽与弧形槽连通的通道上,且用于驱动转动轴转动。
可选地,或结合前述,所述转动轴靠近转筒轮的一端设有向外延伸的筒体,所述筒体的内壁设有卡条,该卡条上配合设有可滑动的返程件,所述返程件与筒体的底部之间设有返程弹簧;所述转筒轮的一侧向外固定设有转动件,所述返程件的一端向内凹陷设有倒三角凹口,所述转动件的一端向外延伸设有三角状凸起,该转动件的三角状凸起与所述返程件的倒三角状凹口相契合。
可选地,或结合前述,所述转筒轮上等间距地设有多个通孔,通孔的数量与弹匣部的数量相同;所述插销组件包括转动推块、传动齿块和插销齿件,所述转动推块用于驱动转动轴转动,所述传动齿块滑动设置在所述转动推块的后侧,该传动齿块的后侧与弹射基座之间设有脱销弹簧,所述传动齿块与插销齿件之间通过插销齿轮组反向传动连接;所述驱动组件包括长齿件,所述长齿件用于穿过通孔顶压转动推块后移带动插销齿件插入弹匣部将旋转体顶出并使得旋转体与所述发射组件卡接,同时通过转动推块带动传动齿块压缩脱销弹簧并使得传动齿块与所述扳机组件卡接。
在一些实施例中,所述弹匣部内可伸缩地设有第一活动卡块,所述旋转体卡接在该第一活动卡块中,所述发射组件包括发射滑块、发射弹簧和第二活动卡块,所述发射滑块可滑动地设置在所述发射槽中,该发射滑块通过所述发射弹簧与所述弹射基座连接,所述第二活动卡块可伸缩地设置在所述发射滑块中;所述插销组件用于顶压旋转体插入发射组件的第二活动卡块并与所述驱动组件传动连接。
可选地,或结合前述,所述发射滑块的底部设有发射卡块,所述扳机组件包括扳机卡块,所述驱动组件驱动发射滑块压缩发射弹簧进行蓄能,同时带动发射卡块与所述扳机组件的扳机卡块配合卡接。
在一些实施例中,所述驱动组件包括长齿件和驱动齿轮组,所述长齿件可滑动地设置在所述发射槽的下方,该长齿件的上端设有驱动块,所述长齿件通过所述驱动块推动发射组件与所述扳机组件配合卡接;所述驱动齿轮组安装在弹射基座上,且与所述长齿件传动连接。
可选地,或结合前述,所述驱动齿轮组包括设置在发射槽后端一侧的齿轮安装座,以及在所述齿轮安装座上依次传动连接的主动齿轮、滑动齿轮和输出齿轮,该齿轮安装座的两侧 设有相对应的滑槽,所述滑动齿轮的转动轴两端分别可滑动地设置在齿轮安装座两侧的滑槽中;所述长齿件的上表面设有与主动齿轮传动连接的长齿条,该长齿件用于驱动输出齿轮做单向转动运动。
在一些实施例中,所述扳机组件包括扳机、扳机卡块、扳机弹簧和插销卡块,所述扳机通过扳机弹簧可伸缩地设置在弹射基座上,所述扳机卡块设置在所述扳机的前上方,且与所述发射组件配合卡接,所述插销卡块设置在所述扳机的后方,且与所述插销组件配合卡接,所述扳机用于驱动所述扳机卡块与所述发射组件脱卡,且用于驱动所述插销卡块与所述插销组件脱卡。
为了更好地理解和实施,下面结合附图详细说明本发明。
附图说明
图1为一些实施例中的左轮式弹射玩具的结构示意图;
图2为一些实施例中的左轮式弹射玩具的内部结构示意图;
图3为一些实施例中的左轮式弹射玩具的另一结构示意图;
图4为一些实施例中的左轮式弹射玩具的前视图;
图5为一些实施例中的左轮式弹射玩具的另一内部结构示意图;
图6为一些实施例中的左轮式弹射玩具的另一内部结构示意图;
图7为一些实施例中的左轮式弹射玩具的另一内部结构示意图;
图8为一些实施例中的左轮式弹射玩具的转筒组件的结构示意图;
图9为一些实施例中的左轮式弹射玩具的转筒组件的后视图;
图10为一些实施例中的左轮式弹射玩具的转筒组件的前视图;
图11为一些实施例中的左轮式弹射玩具的转筒组件的侧视图;
图12为一些实施例中的左轮式弹射玩具的转筒轮的内部结构图;
图13为一些实施例中的转动轴与转动推块之间的连接示意图;
图14为一些实施例中的转动轴与转动推块之间的另一连接示意图;
图15为一些实施例中的转动轴与转动件之间的连接示意图;
图16为一些实施例中的转动轴与转动件之间的另一连接示意图;
图17为一些实施例中的转筒与返程件之间的连接示意图;
图18为一些实施例中的旋转体的结构示意图。
附图标记说明:
10、弹射基座;11、发射槽11;20、发射组件、21、发射滑块、22、发射弹簧、23、第 二活动卡块;24、发射卡块;30、驱动组件;31、长齿件;310、长齿条;32、驱动齿轮组;33、驱动块;34、齿轮安装座;35、主动齿轮;36、滑动齿轮;37、输出齿轮;38、滑槽;39、第一辅助齿轮;391、第二辅助齿轮;40、转筒组件;41、弹匣部;42、固定轴;43、转动轴;44、转筒轮;441、转动件;442、三角状凸起;45、第一活动卡块;46、阶梯滑槽;47、弧形槽;48、筒体;481、卡条;482、返程弹簧;49、返程件;491、倒三角状凹口;401、传动柱;402、通孔;50、插销组件;51、转动推块;511、推动圆柱;52、传动齿块;53、插销齿件;54、脱销弹簧;55、插销齿轮组;56、一级齿轮;57、二级齿轮;58、三级齿轮;60、扳机组件;61、扳机;62、扳机卡块;63、扳机弹簧;64、插销卡块;70、旋转体;71、陀螺本体;72、陀螺旋转轴;73、陀螺卡位块;74、旋转齿轮;75、陀尖。
具体实施方式
为进一步说明各实施例,本发明提供有附图。这些附图为本发明揭露内容的一部分,其主要用以说明实施例,并可配合说明书的相关描述来解释实施例的运作原理。配合参考这些内容,本领域的普通技术人员应能理解其他可能得实施方式以及本发明的优点。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“左”、“右”、“顶”、“底”、“内”、“外”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解对本发明的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
请同时参阅图1至图18。
本实施例提供一种左轮式弹射玩具,其包括弹射基座10,所述弹射基座10中安装有发射组件20、驱动组件30、转筒组件40、插销组件50和扳机组件60;所述弹射基座10的前端上方设有发射槽11,所述发射组件20可滑动地设置在该发射槽11中;所述转筒组件40可转动地设置在弹射基座10上,该转筒组件40中均匀设有多个弹匣部41,每个弹匣部41 中可拆卸地卡接有旋转体70;所述发射组件20用于发射所述旋转体70;所述驱动组件30设置在所述发射槽11的下方,且用于驱动发射组件20与所述扳机组件60配合卡接;所述插销组件50与所述扳机组件60配合卡接,且该插销组件50用于驱动转筒组件40转动;所述驱动组件30用于驱动插销组件50顶压旋转体70插入发射组件20;所述扳机组件60用于释放发射组件20上的旋转体70;且该驱动组件30用于驱动发射组件20上的旋转体70做单向转动运动。
弹射基座10可以设计成多种不同的弹射座结构,本实施例的弹射基座10优选为左轮式的枪体结构。具体地,所述发射槽11为两端开口的槽体结构,该发射槽11的前端设有与发射组件配合的限位部,从而防止发射组件20连同旋转体一起发射出去。
请参见图8-17,所述转筒组件40包括固定轴42、转动轴43和转筒轮44,所述固定轴42安装在所述弹射基座10上,所述转动轴43的一端可转动地套设在所述固定轴42上,该转动轴42的另一端与所述转筒轮44连接。所述转筒轮44设置在发射槽11的后端。在本实施例中,转筒组件40上均匀分布有3个弹匣部41,每个弹匣部41上均匹配卡接有旋转体70。其中,每个弹匣部41内均可伸缩地设有第一活动卡块45,所述旋转体70卡接在该第一活动卡块45中。所述第一活动卡块45的两端向同一侧分别延伸设有第一凸块,两个第一凸块的外侧面均为斜面设计;另外,第一活动卡块45的另一侧通过第一弹簧与所述弹匣部41可伸缩连接;所述旋转体70卡设在两个第一活动卡块45之间。
所述转动轴43的圆周面上等间距地设有多个阶梯滑槽46,且阶梯滑槽46的数量与所述弹匣部41的数量相同;每个阶梯滑槽46均包括一级阶梯和二级阶梯,相邻的两个阶梯滑槽46之间通过弧形槽47连通,所述弧形槽47的一端与一侧的阶梯滑槽46的一级阶梯连通,该弧形槽47的另一端与另一侧的阶梯滑槽47的二级阶梯连通。所述阶梯滑槽46为直槽结构,所述一级阶梯的底面与所述弧形槽47的底面位于同一个平面,且一级阶梯的底面低于二级阶梯的底面。
如图13-17所示,所述转动轴43靠近转筒轮44的一端设有向外延伸的筒体48,所述筒体48的内壁设有卡条481,该卡条481上配合设有可滑动的返程件49,所述返程件49与筒体48的底部之间设有返程弹簧482,为便于展示返程弹簧,图15和图16中省去了筒体,;所述转筒轮44的一侧向外固定设有转动件441,所述返程件49的一端向内凹陷设有倒三角凹口491,所述转动件441的一端向外延伸设有三角状凸起442,该转动件441的三角状凸起442与所述返程件49的倒三角状凹口491相契合。因此,当手动转动转筒轮44给弹匣部41装上旋转体70时,转筒体44带动转动件441转动,通过该转动件441压迫返程件49沿着筒体48内壁的卡条481后移且压缩返程弹簧482;从而使得手动转动转筒体44时,转动轴43 不随着转动,而通过插销组件50带动转动轴43转动时,转动轴43带动返程件49转动,并在返程弹簧491的顶压下,返程件49始终与转动件441咬死,从而实现转动轴43转动时,转筒体44也随着一起转动的效果。
所述发射组件20包括发射滑块21、发射弹簧22和第二活动卡块23,所述发射滑块21可滑动地设置在所述发射槽11中,该发射滑块21通过所述发射弹簧22与所述弹射基座10连接,所述第二活动卡块23可伸缩地设置在所述发射滑块21中。所述第二活动卡块23的两端向同一侧分别延伸设有第二凸块,述第二活动卡块23的另一侧通过第二弹簧与所述发射滑块21可伸缩连接。另外,所述发射槽11与所述第二活动卡块23的同一侧上设有楔形块,该楔形块固定设置在发射槽11的前端上方,其靠近发射槽11一侧的侧面设置为倒斜面结构。因此,在所述插销组件50顶压旋转体70插入发射滑块21的第二活动卡块23中的状态下,发射滑块21与扳机组件60脱卡之后,发射滑块21在发射弹簧22的作用下向前快速滑动,待第二活动卡块23接触楔形块时,在楔形块的作用下,第二活动卡块23向内压缩第二弹簧,从而使得旋转体70与第二活动卡块23之间脱卡,旋转体70在惯性的作用下发射出去。
所述驱动组件30包括长齿件31和与长齿件31传动连接的驱动齿轮组32,所述长齿件31可滑动地设置在所述发射槽11的下方,该长齿件31的上端设有驱动块33,所述驱动齿轮组32安装在发射槽11的后端一侧,且位于发射滑块21拉伸发射弹簧22并与扳机组件60卡接时的第二活动卡块23的位置下方,因此,通过长齿件31带动驱动齿轮组32转动,从而带动位于第二活动卡块23的旋转体70做旋转运动。
为了达到驱动组件30单向驱动旋转体70转动的效果,如图6所示,所述驱动齿轮组32包括设置在发射槽11后端一侧的齿轮安装座34,所述齿轮安装座34上设有依次传动连接的主动齿轮35、滑动齿轮36和输出齿轮37,该齿轮安装座34的两侧设有相对应的滑槽38,所述滑动齿轮36的转动轴两端分别可滑动地设置在齿轮安装座34两侧的滑槽38中;所述长齿件31的上表面设有与主动齿轮35传动连接的长齿条310。因此,当长齿件31后移带动主动齿轮35转动时,主动齿轮35顺时针转动并带动滑动齿轮36滑动至滑槽38的一端转动,当长齿件31前移带动主动齿轮35转动时,主动齿轮35逆时针转动并带动滑动齿轮36滑动至滑槽38的另一端转动,因此,该输出齿轮37可设置在靠近滑槽38其中一端的一侧,则当滑动齿轮36滑动到滑槽38中靠近输出齿轮37的一端时,滑动齿轮36与输出齿轮37传动连接,而当滑动齿轮36滑动至滑槽38的另一端时,滑动齿轮36不与输出齿轮37传动连接,便可实现长齿件31单向驱动输出齿轮37做单向转动的效果。
在本实施例中,所述主动齿轮35与滑动齿轮36之间设有两个传动连接的第一辅助齿轮39,所述滑动齿轮36与所述输出齿轮37之间设有两个传动连接的第二辅助齿轮391。
所述插销组件50包括转动推块51、传动齿块52和插销齿件53,所述转动推块51可滑动地设置在转筒组件40的阶梯滑槽46与弧形槽47连通的通道上,转动推块51的侧面设有推动圆柱511,该推动圆柱511用于阶梯滑槽46与弧形槽47连通的通道上。所述传动齿块52可滑动地设置在所述转动推块51的后侧,该传动齿块52的后端与弹射基座10之间设有脱销弹簧54,所述传动齿块52与插销齿件53之间通过插销齿轮组55反向传动连接。另外,如图5和图6所示,本实施例的插销齿轮组55包括依次传动连接的一级齿轮56、二级齿轮57和三级齿轮58,所述传动齿块52的上表面设有与一级齿轮56传动连接的齿条状结构,所述插销齿件53的下表面设有与三级齿轮58传动连接的齿条状结构。
如图8-12所示,所述转筒轮44上等间距地设有多个通孔402,通孔402的数量与弹匣部41的数量相同;且每个通孔402中可滑动地设有传动柱401。在本实施例中,转筒轮44上设有3个通孔402,每个通孔402中可滑动地设有传动柱401,3个通孔402分别均匀分布在转筒体44上,如图2所示,长齿件31插入其中一个通孔402之后顶压传动柱401后移并驱动转动推块51后移,然后继续顶压传动齿块52后移压缩脱销弹簧54至与所述扳机组件60配合卡接,而插销齿件53同时在插销齿轮组55的传动下向前移动,并顶压弹匣部41中的第一活动卡块45缩回,使第一活动卡块45与旋转体70之间脱卡,插销齿件53继续顶压旋转体70并使得旋转体70配合插入所述发射滑块21的第二活动卡块23中。另外,当扳机组件60与传动齿块52之间脱卡时,传动齿块52在脱销弹簧54的作用下向前移动并带动插销齿件53后移退出转筒轮44的弹匣部41,然后传动齿块52继续向前移动并推动转动推块51,转动推块51的推动柱511从阶梯滑槽46的第一阶梯沿着弧形槽47移动,由于转动推块51向前做直线运动,因此通过推动柱511从阶梯滑槽46的第一阶梯沿着弧形槽47移动至另一个阶梯滑槽46的第二阶梯,从而带动转动轴53转动120°,并使得下一个旋转体70对准发射槽11的后端;当长齿件31推动转动推块51后移时,推动柱511从阶梯滑槽46的第二阶梯直线退回该弧形槽47的第一阶梯中,从而不会驱动转动轴转动。
在插销齿件53的脱销过程,为了确保插销齿件53完全退出弹匣部41后,传动齿块52才推动转动推块51向前移动,转动推块51与传动齿块52卡接扳机组件60时的距离大于插销齿件53插入弹匣部41的距离。
所述扳机组件60包括扳机61、扳机卡块62、扳机弹簧63和插销卡块64,所述扳机61通过扳机弹簧63可伸缩地设置在弹射基座10上,所述扳机卡块62设置在所述扳机61的前端上方,所述发射滑块21的底部设有发射卡块24,所述长齿件31驱动发射滑块21压缩发射弹簧22进行拉伸蓄能,同时带动发射卡块24与所述扳机组件60的扳机卡块62配合卡接。所述插销卡块64设置在所述扳机61的后方,且与所述插销组件50的传动齿块52配合卡接, 所述扳机61用于驱动所述扳机卡块62与所述发射组件20的发射卡块24脱卡,且用于驱动所述插销卡块64与所述插销组件50的传动齿块52脱卡。
如图18所示,本实施例的旋转体70为陀螺体,具体地,所述旋转体70包括陀螺本体71和设置在陀螺本体71下方的陀螺旋转轴72,其中,所述陀螺旋转轴72上从上到下依次设有陀螺卡位块73、旋转齿轮74和陀尖75,所述陀螺卡位块73可转动地设置在陀螺旋转轴72上,所述旋转齿轮74固定在陀螺旋转轴72上,所述陀尖75套设在陀螺旋转轴72的底部。所述旋转体70插入所述第二活动卡块23时,所述旋转齿轮74与输出齿轮37传动连接。
以下说明该左轮式弹射玩具的工作原理:
首先通过手动转动转筒轮44并依次将旋转体70插入弹匣部41的第一活动卡块45中卡接固定;然后通过向后滑动长齿件31,长齿件31带动发射滑块21后移并与扳机卡块62配合卡接,继续后移长齿件31使得长齿件31顶压转筒轮44的通孔402中的传动柱401后移,并顶压转动推块51和传动齿块52后移,同时传动齿块52带动插销齿件53前移并将发射槽11后端的弹匣部41中的旋转体70顶出插入到发射滑块21的第二发射滑块23中,该旋转体70与驱动齿轮组32传动连接,且传动齿块52压缩脱销弹簧54并与插销卡块64配合卡接。
然后通过长齿件31前后移动驱动发射滑块21上的旋转体70作单向转动运动,并通过向后扣动扳机61使得发射卡块24与扳机卡块62之间脱卡,发射滑块21在发射弹簧22的作用下将旋转体70发射出去。扳机61继续后移顶压插销卡块64使其与所述传动齿块52之间脱卡,传动齿块52在脱销弹簧54的作用下向前滑动,同时带动插销齿件53后移退出弹匣部41,传动齿块52继续向前顶压转动推块51并带动转动轴43转动,从而使得转筒轮44转动并使得下一个弹匣部41重新对准发射槽11,进行下一轮的发射准备。
所述的左轮式弹射玩具,以弹射基座作为旋转体蓄能发射的基体,利用设置在弹射基座上的转筒组件配合卡接多个旋转体,并且通过发射组件、转筒组件、驱动组件、插销组件以及扳机组件之间的相互配合来实现旋转体的旋转与发射。具体地,首先通过驱动组件驱动发射组件与扳机组件配合卡接,然后通过驱动组件驱动插销组件与扳机组件卡接,同时插销组件顶压旋转体插入发射组件,发射组件上的旋转体与驱动组件传动连接;通过驱动组件驱动发射组件上的旋转体转动蓄能,蓄能后通过扳机组件与发射组件脱卡,发射组件将旋转体发射出去,同时扳机组件与插销组件脱卡,插销组件驱动转筒组件转动并使得下一个旋转体对准发射槽。该左轮式弹射玩具结构设计新颖,不仅具有弹射的功能且弹射出去的旋转体还能够做旋转运动,同时还能够连续发射旋转体,扩展了玩具的趣味性和功能性。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明左轮式弹射玩具范围的限制。应当指出的是,对于本领域的普通技术人员 来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。

Claims (10)

  1. 一种左轮式弹射玩具,包括:
    弹射基座,其前端上方设有发射槽;
    转筒组件,可转动地设置在弹射基座上,并均匀设有多个弹匣部;
    至少一个旋转体,可拆卸地卡接于所述弹匣部中;
    发射组件,安装于弹射基座中,并可滑动地设置在该发射槽中,用于发射所述旋转体;
    插销组件,安装于弹射基座中,用于驱动转筒组件转动,并用于顶压弹匣部中的旋转体插入发射组件;
    扳机组件,安装于弹射基座中,与插销组件配合卡接,且用于释放发射组件上的旋转体;
    驱动组件,安装于弹射基座中,并设置在所述发射槽的下方,用于驱动发射组件与扳机组件配合卡接,用于驱动插销组件顶压旋转体插入发射组件,以及用于驱动发射组件上的旋转体做单向转动运动。
  2. 根据权利要求1所述的左轮式弹射玩具,其特征在于:所述转筒组件包括固定轴、转动轴和转筒轮,所述固定轴安装在所述弹射基座上,所述转动轴的一端可转动地套设在所述固定轴上,该转动轴的另一端与所述转筒轮连接,所述插销组件用于驱动转动轴带动转筒轮转动。
  3. 根据权利要求2所述的左轮式弹射玩具,其特征在于:所述转动轴的圆周面上等间距地设有多个阶梯滑槽,且阶梯滑槽的数量与所述弹匣部的数量相同;每个阶梯滑槽均包括一级阶梯和二级阶梯,相邻的两个阶梯滑槽之间通过弧形槽连通,所述弧形槽的一端与一侧的阶梯滑槽的一级阶梯连通,该弧形槽的另一端与另一侧的阶梯滑槽的二级阶梯连通;所述插销组件包括转动推块,该转动推块可滑动地设置在阶梯滑槽与弧形槽连通的通道上,且用于驱动转动轴转动。
  4. 根据权利要求2所述的左轮式弹射玩具,其特征在于:所述转动轴靠近转筒轮的一端设有向外延伸的筒体,所述筒体的内壁设有卡条,该卡条上配合设有可滑动的返程件,所述返程件与筒体的底部之间设有返程弹簧;所述转筒轮的一侧向外固定设有转动件,所述返程件的一端向内凹陷设有倒三角凹口,所述转动件的一端向外延伸设有三角状凸起,该转动件的三角状凸起与所述返程件的倒三角状凹口相契合。
  5. 根据权利要求2所述的左轮式弹射玩具,其特征在于:所述转筒轮上等间距地设有多个通孔,通孔的数量与弹匣部的数量相同;所述插销组件包括转动推块、传动齿块和插销齿 件,所述转动推块用于驱动转动轴转动,所述传动齿块滑动设置在所述转动推块的后侧,该传动齿块的后侧与弹射基座之间设有脱销弹簧,所述传动齿块与插销齿件之间通过插销齿轮组反向传动连接;所述驱动组件包括长齿件,所述长齿件用于穿过通孔顶压转动推块后移带动插销齿件插入弹匣部将旋转体顶出并使得旋转体与所述发射组件卡接,同时通过转动推块带动传动齿块压缩脱销弹簧并使得传动齿块与所述扳机组件卡接。
  6. 根据权利要求1所述的左轮式弹射玩具,其特征在于:所述弹匣部内可伸缩地设有第一活动卡块,所述旋转体卡接在该第一活动卡块中;所述发射组件包括发射滑块、发射弹簧和第二活动卡块,所述发射滑块可滑动地设置在所述发射槽中,该发射滑块通过所述发射弹簧与所述弹射基座连接,所述第二活动卡块可伸缩地设置在所述发射滑块中;所述插销组件用于顶压旋转体插入发射组件的第二活动卡块并与所述驱动组件传动连接。
  7. 根据权利要求6所述的左轮式弹射玩具,其特征在于:所述发射滑块的底部设有发射卡块,所述扳机组件包括扳机卡块,所述驱动组件驱动发射滑块压缩发射弹簧进行蓄能,同时带动发射卡块与所述扳机组件的扳机卡块配合卡接。
  8. 根据权利要求1所述的左轮式弹射玩具,其特征在于:所述驱动组件包括长齿件和驱动齿轮组,所述长齿件可滑动地设置在所述发射槽的下方,该长齿件的上端设有驱动块,所述长齿件通过所述驱动块推动发射组件与所述扳机组件配合卡接;所述驱动齿轮组安装在弹射基座上,且与所述长齿件传动连接。
  9. 根据权利要求8所述的左轮式弹射玩具,其特征在于:所述驱动齿轮组包括设置在发射槽后端一侧的齿轮安装座,以及在所述齿轮安装座上依次传动连接的主动齿轮、滑动齿轮和输出齿轮,该齿轮安装座的两侧设有相对应的滑槽,所述滑动齿轮的转动轴两端分别可滑动地设置在齿轮安装座两侧的滑槽中;所述长齿件的上表面设有与主动齿轮传动连接的长齿条,该长齿件用于驱动输出齿轮做单向转动运动。
  10. 根据权利要求1所述的左轮式弹射玩具,其特征在于:所述扳机组件包括扳机、扳机卡块、扳机弹簧和插销卡块,所述扳机通过扳机弹簧可伸缩地设置在弹射基座上,所述扳机卡块设置在所述扳机的前上方,且与所述发射组件配合卡接,所述插销卡块设置在所述扳机的后方,且与所述插销组件配合卡接,所述扳机用于驱动所述扳机卡块与所述发射组件脱卡,且用于驱动所述插销卡块与所述插销组件脱卡。
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CN110230948A (zh) * 2018-03-05 2019-09-13 广州灵动创想文化科技有限公司 一种双发弹射玩具
CN110193209A (zh) * 2019-06-27 2019-09-03 广州灵动创想文化科技有限公司 一种转盘式弹射玩具
CN110553544A (zh) * 2019-09-30 2019-12-10 广州灵动创想文化科技有限公司 一种左轮式弹射玩具

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