CN215676658U - Toy soft bullet gun - Google Patents

Toy soft bullet gun Download PDF

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Publication number
CN215676658U
CN215676658U CN202121959307.6U CN202121959307U CN215676658U CN 215676658 U CN215676658 U CN 215676658U CN 202121959307 U CN202121959307 U CN 202121959307U CN 215676658 U CN215676658 U CN 215676658U
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air cylinder
bullet
gear
gun
assembly
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CN202121959307.6U
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Chinese (zh)
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王正光
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Individual
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Abstract

The utility model relates to a toy soft bullet gun, which comprises a gun body, wherein the gun body is provided with a gun barrel, an ejection mechanism, a driving mechanism, a trigger and a change-over switch; the gun barrel is arranged at the front end of the gun body and is connected with the ejection mechanism; the ejection mechanism comprises an air cylinder assembly, a piston, an emission spring, a connecting piece and a connecting rod, wherein the air cylinder assembly is sequentially sleeved on the emission spring and the piston; the air cylinder assembly comprises an inner air cylinder and an outer air cylinder, the outer air cylinder is sleeved outside the inner air cylinder, a first connecting part is arranged at the second end of the inner air cylinder, and the first connecting part is provided with a first limiting part and a bayonet; a return spring is arranged at the first end of the connecting rod, and a clamping piece is arranged at the second end of the connecting rod; the first end of the connecting piece is connected with the gun barrel, and the second end of the connecting piece is connected with the air cylinder assembly through a first limiting piece; the driving mechanism is connected with the air cylinder assembly. The inner air cylinder moves along with the front end trajectory, the inner air cylinder exhausts air to enable soft bullets to enter the trajectory synchronously, the inner space is optimized, the structure is simple, the cost is reduced, and meanwhile, the assembly time can be shortened.

Description

Toy soft bullet gun
Technical Field
The utility model relates to the field of toys, in particular to a toy soft bullet gun.
Background
The toy gun is one of the toys liked by children very much, and many toy guns structure is complicated, and the space that occupies is big, and gaming experience is relatively poor, and spare part is more moreover, not only brings the trouble for the equipment process, still makes with high costs, and the structure is complicated can lead to long overlength when assembling, and the equipment also makes mistakes easily, is unfavorable for production, consequently produces the cost of a toy gun and also increases thereupon, is unfavorable for selling.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem of providing a toy soft bullet gun which is simple in structure, low in cost and convenient to use.
The technical scheme adopted by the utility model for solving the technical problems is as follows: the toy soft bullet gun comprises a gun body, wherein the gun body is provided with a gun barrel, an ejection mechanism for ejecting a soft bullet to be launched stored in the gun barrel, a driving mechanism, a trigger and a change-over switch for changing over a launching mode;
the gun barrel is arranged at a firing port at the front end of the gun body and is connected with the ejection mechanism; the ejection mechanism comprises an air cylinder assembly, a piston, a launching spring sleeved on the piston, a connecting piece and a connecting rod connected with the trigger, and the air cylinder assembly can be sleeved on the launching spring and the piston in sequence in a reciprocating manner;
the inflator assembly comprises an inner inflator and an outer inflator, the outer inflator is sleeved outside the inner inflator, a first connecting part is arranged at the second end of the inner inflator, and a first limiting part and a bayonet are respectively arranged at two radial sides of the first connecting part; a return spring is arranged at the first end of the connecting rod, and a clamping piece matched with the bayonet is arranged at the second end of the connecting rod; a first end of a connecting piece of the popping mechanism is connected with the gun barrel, and a second end of the connecting piece is connected with the air cylinder assembly through the first limiting piece so as to drive the gun barrel to axially displace along the air cylinder assembly, and the loading of the soft bullet is completed;
the driving mechanism is connected with the air cylinder assembly to drive the air cylinder assembly to move axially; the driving mechanism is matched with the ejection mechanism so that the ejection mechanism is separated from the gun tube when the trigger is pulled, and the ejection mechanism moves towards the gun tube to eject soft bullets in the gun tube when the trigger is released.
Preferably, the first end of the barrel protrudes from the firing port, the second end of the barrel is disposed in the gun body, and the barrel extends in the axial direction and is provided with a limiting piece for limiting the axial moving distance of the barrel.
Preferably, the toy soft bullet gun further comprises a magazine mechanism for supplying bullets and a bullet storage space formed between the gun barrel and the inflator assembly in the gun body, a magazine mounting hole for mounting the magazine mechanism is formed in the gun body, and the magazine mechanism is detachably mounted in the magazine mounting hole.
Preferably, the magazine mechanism comprises a magazine body, a bullet supporting plate and a bullet supporting spring, soft bullets are stored in the magazine body, and the bullet supporting plate and the bullet supporting spring are arranged in the magazine body; the supporting spring is arranged below the supporting elastic plate so as to push the supporting elastic plate and the soft bomb above the supporting elastic plate to the bomb storage space.
Preferably, the drive mechanism comprises a powered drive assembly and/or a manual drive assembly.
Preferably, the electric driving assembly comprises a motor, a gear assembly and a battery, wherein the motor is powered by the battery to drive the gear assembly to drive the air cylinder assembly to axially displace;
the gear assembly with the meshing of inflator subassembly is connected, the radial downwardly extending of first connecting portion is provided with the tooth row, the tooth row is followed interior inflator parallel direction sets up, the tooth row deviates from interior inflator and is equipped with the teeth of a cogwheel on one side, in order to realize the inflator subassembly with meshing transmission between the electric drive subassembly.
Preferably, the gear assembly comprises a first gear, a second gear and a third gear which are meshed in sequence; an output shaft meshed with the first gear is arranged at the output end of the motor, the first gear comprises a large tooth, a second connecting part and a small tooth which are coaxially arranged, the large tooth is meshed with the output shaft, and the small tooth is meshed with the second gear; the second gear is meshed with the third gear, and the third gear is matched with the gear row.
Preferably, the third gear comprises a first gear section and a second gear section, the row of teeth is meshed with the first gear section to displace the piston backwards, and the second gear is meshed with the second gear section;
the first gear section is provided with at least one section of smooth structure, and the smooth structure is matched with the launching spring to push the piston to move forwards.
Preferably, the manual drive assembly comprises a draw bar for soft cartridge loading; the pull rod sets up pop-up mechanism top, be equipped with in the radial downward one side of pull rod with first locating part matched with recess, first locating part is in swing joint in the recess, the opposite direction pulling of soft bullet transmission during the pull rod, the pull rod linkage pop-up mechanism axial displacement, the inflator subassembly realizes bleeding and links the soft bullet of storage bullet space department and gets into the barrel.
Preferably, the second end of the inner cylinder is provided with the first limiting piece, and the first limiting piece extends upwards along the radial direction of the cylinder assembly so as to be clamped in the pull rod; the second end of the connecting piece is provided with a sliding chute matched with the first limiting piece;
the air cylinder assembly is provided with a second limiting part, and the second limiting part is arranged on the outer air cylinder and used for limiting the relative position of the inner air cylinder and the outer air cylinder.
The implementation of the utility model has the following beneficial effects: the inner air cylinder moves along with the front end trajectory, the inner air cylinder exhausts air to enable soft bullets to enter the trajectory synchronously, the inner space is optimized, the structure is simple, the cost is reduced, and meanwhile, the assembly time can be shortened.
Drawings
The utility model will be further described with reference to the accompanying drawings and examples, in which:
FIG. 1 is a schematic view of the overall construction of the toy soft bullet gun of the present invention;
FIG. 2 is a schematic view of the internal structure of the toy soft bullet gun of the present invention;
fig. 3 is an exploded view of the upper structure of the body of the toy soft bullet gun of the present invention;
FIG. 4 is a schematic view of the electric drive assembly of the toy soft bullet gun of the present invention;
FIG. 5 is a partial schematic view of the electric drive assembly of the toy soft bullet gun of the present invention;
fig. 6 is a schematic view showing the structure of a third gear of the soft toy gun of the present invention.
Detailed Description
For a more clear understanding of the technical features, objects and effects of the present invention, embodiments of the present invention will now be described in detail with reference to the accompanying drawings. In the following description, it is to be understood that the orientations and positional relationships indicated by "front", "rear", "upper", "lower", "left", "right", "longitudinal", "lateral", "vertical", "horizontal", "top", "bottom", "inner", "outer", "leading", "trailing", and the like are configured and operated in specific orientations based on the orientations and positional relationships shown in the drawings, and are only for convenience of describing the present invention, and do not indicate that the device or element referred to must have a specific orientation, and thus, are not to be construed as limiting the present invention.
It is also noted that, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," "disposed," and the like are intended to be inclusive and mean, for example, that they may be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. When an element is referred to as being "on" or "under" another element, it can be "directly" or "indirectly" on the other element or intervening elements may also be present. The terms "first", "second", "third", etc. are only for convenience in describing the present technical solution, and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated, whereby the features defined as "first", "second", "third", etc. may explicitly or implicitly include one or more of such features. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
In the following description, for purposes of explanation and not limitation, specific details are set forth, such as particular system structures, techniques, etc. in order to provide a thorough understanding of the embodiments of the utility model. It will be apparent, however, to one skilled in the art that the present invention may be practiced in other embodiments that depart from these specific details. In other instances, detailed descriptions of well-known systems, devices, circuits, and methods are omitted so as not to obscure the description of the present invention with unnecessary detail.
Orientation definition in the present invention: the launching direction of the soft bullet is the horizontal forward direction; the first end is one end close to the launching port at the front end of the toy soft bullet gun; the second end is the end far away from the launching port of the toy soft bullet gun.
Referring to fig. 1-6, the present invention provides a toy soft bullet gun, which comprises a gun body 100, wherein the gun body 100 is provided with a gun barrel 1, an ejecting mechanism 2 for ejecting a soft bullet to be fired stored in the gun barrel 1, a driving mechanism 3, a trigger 4 and a change-over switch 5 for changing over the firing mode;
as shown in fig. 1 to 3, a barrel 1 is provided at a firing port 101 at the front end of a gun body 100, and the barrel 1 is connected to an ejection mechanism 2; further, a first end of the barrel 1 protrudes from the firing port 101, a second end of the barrel 1 is disposed in the gun body 100, and the barrel 1 is extended in the axial direction and provided with a limiting member 11 for limiting the axial moving distance of the barrel 1. The inner diameter of the gun barrel 1 is larger than the caliber of the soft bullet, the limiting piece can be arranged by extending the arc section on the upper side of the gun barrel 1 along the axial direction, and the soft bullet to be launched is limited by the limiting piece to move along the radial direction, so that the soft bullet can be launched along a preset launching track in the launching process, the radial offset can be reduced, and the launching is more stable.
The ejection mechanism 2 comprises an air cylinder assembly 21, a piston 22, a launching spring 23 sleeved on the piston 22, a connecting piece 24 and a connecting rod 25 connected with the trigger 4, wherein the air cylinder assembly 21 is sleeved on the launching spring 23 and the piston 22 in sequence in a reciprocating manner;
the gas cylinder assembly 21 comprises an inner gas cylinder 211 and an outer gas cylinder 212, the inner diameter of the outer gas cylinder 212 is larger than that of the inner gas cylinder 211, the outer gas cylinder 212 is sleeved outside the inner gas cylinder 211, a first connecting portion 2111 is arranged at the second end of the inner gas cylinder 211, it can be understood that the first connecting portion 2111 can be arranged along the second end of the inner gas cylinder 211 in an extending mode and can be in a circular ring shape matched with the inner gas cylinder 211 in diameter, a first limiting piece 21111 and a bayonet 21112 are respectively arranged at two radial sides of the first connecting portion 2111, specifically, the first limiting piece 21111 is arranged at the radial upper side of the first connecting portion 2111, and the bayonet 21112 is arranged at the radial lower side of the first connecting portion 2111; a return spring 251 for returning the trigger driven by the connecting rod to the original position is arranged at the first end of the connecting rod 25, and a clamping piece 252 matched with the bayonet 21112 is arranged at the second end; a first end of a connecting piece 24 of the pop-up mechanism 2 is connected with the gun tube 1, and a second end of the connecting piece 24 is connected with the air cylinder assembly 21 through a first limiting piece 21111 so as to drive the gun tube 1 to axially displace along the air cylinder assembly 21 and complete soft bullet loading; wherein, be equipped with the mounting on the barrel 1 second end, connecting piece 24 first end is equipped with the screw with mounting matched with, and the two accessible screw is connected, realizes connecting piece 24 and barrel 1 relatively fixed.
Further, the outer air cylinder 212 comprises a matching part which is arranged at the first end of the outer air cylinder 212 and is matched with the caliber of the soft bullet in size, the diameter of the cross section of the matching part is smaller than that of the outer air cylinder 212, the matching part protrudes out of the first end of the inner air cylinder 211, so that the matching part is matched with the soft bullet, when the air cylinder assembly 21 moves backwards, the inner air cylinder 211 sucks air and simultaneously drives the gun barrel 1 to backwards sleeve the air tap of the soft bullet blocking and matching part, when the trigger 4 is pulled, the inner air cylinder 211 is driven under the action of the launching spring 23 to supply air to the gun barrel 1 and the soft bullet to simultaneously move forwards together, and the soft bullet pops out of the gun barrel 1.
Optionally, the front end of the soft bullet can be connected with the sucking disc; after the soft projectile is ejected, the sucker can be attached to objects made of smooth materials, such as ceramic chips, glass and the like, so that interestingness is improved.
Further, a second end of the inner cylinder 211 is provided with a first stopper 21111, the first stopper 21111 extends upward along the radial direction of the cylinder assembly 21 and protrudes out of the first connection portion 2111 to be clamped in the pull rod 321; a sliding groove 241 matched with the first limiting piece 21111 is formed at the second end of the connecting piece 24, the sliding groove 241 extends towards the middle of the connecting piece 24, the first limiting piece 21111 is arranged in the sliding groove 241 in a penetrating manner, and the sleeve assembly can horizontally move along the sliding groove;
the air cylinder assembly 21 is provided with a second stopper 2121, and the second stopper 2121 is disposed on the outer air cylinder 212 and used for limiting the relative position of the inner air cylinder 211 and the outer air cylinder 212. The outer cylinder 212 is stationary in the whole process, and when the inner cylinder 211 moves towards the first end, the second stopper 2121 limits the relative position of the outer cylinder 212 to the inner cylinder 211, so as to prevent the outer cylinder 212 from being worn when the inner cylinder 211 moves along the first end.
The driving mechanism 3 is connected with the air cylinder assembly 21 to drive the air cylinder assembly 21 to move axially and provide power to finish loading of the soft bullet; the drive mechanism 3 cooperates with the ejection mechanism 2 to allow the ejection mechanism 2 to be separated from the barrel 1 when the trigger 4 is pulled and the ejection mechanism 2 to move toward the barrel 1 to eject the soft fire in the barrel 1 when the trigger 4 is released.
Specifically, the switch 5 is disposed at the rear end of the link 25 and connected to the motor 311. The switch 5 is electrically connected to the motor 311, the movable plate 26 parallel to the connecting rod 25 drives the switch 5, and the connecting rod 25 moves to drive the movable plate 26 to move, so as to trigger the switch 5 to switch the launching mode.
Further, the toy soft bullet gun further comprises a magazine mechanism 6 for supplying the bullet and a bullet storage space 102 formed between the barrel 1 and the air cylinder assembly 21 in the gun body 100, the bullet storage space 102 is located in a cavity between the barrel 1 and the air cylinder assembly 21 and is used for presetting the soft bullet to match the air cylinder assembly 21 to send the soft bullet into the barrel 1, a magazine mounting hole for mounting the magazine mechanism 6 is formed in the gun body 100, and the magazine mechanism 6 is detachably mounted in the magazine mounting hole. Therefore, the ammunition can be manually supplemented one by one or the magazine mechanism 6 is installed for supplementing ammunition.
Further, the magazine mechanism 6 comprises a magazine body 61, a bullet supporting plate 62 and a bullet supporting spring, soft bullets are stored in the magazine body 61, and the bullet supporting plate 62 and the bullet supporting spring are arranged in the magazine body 61; the supporting spring is arranged below the supporting plate 62 to push the supporting plate 62 and the soft bullet above the supporting plate 62 up to the bullet storage space 102. The bullet supporting plate 62 supports the soft bullet, the bullet supporting spring pushes the bullet supporting plate 62 and the soft bullet upwards, the bullet is supplied to the bullet storage space 102 one by one, and bullet taking and loading are completed.
Furthermore, the magazine mechanism 6 is also provided with a locking member for limiting the magazine body 61, the magazine body 61 is provided with a clamping hole corresponding to the locking member, and the locking member is directly clamped in the corresponding clamping hole on the magazine body 61 to limit the position of the magazine mechanism 6. Referring to fig. 2, the initial position of each component of the internal structure of the soft bullet gun is shown, and the magazine mechanism 6 can be installed in the magazine installation hole of the gun body 100 by controlling the locking member when the barrel 1, the eject mechanism 2, etc. are in the initial position.
Further, the drive mechanism 3 comprises an electric drive assembly 31 and/or a manual drive assembly 32.
4-5, the motorized drive assembly 31 further includes a motor 311, a gear assembly 312, and a battery, the motor 311 being powered by the battery to drive the gear assembly 312 to drive the axial displacement of the pneumatic cartridge assembly 21;
the gear assembly 312 is engaged with the gas cylinder assembly 21, the first connecting portion 2111 is provided with a tooth row 21113 extending radially downward, the tooth row 21113 is arranged along the parallel direction of the inner gas cylinder 211, and one surface of the tooth row 21113 departing from the inner gas cylinder 211 is provided with gear teeth so as to realize the engagement transmission between the gas cylinder assembly 21 and the electric driving assembly 31.
Further, the gear assembly 312 includes a first gear 3121, a second gear 3122, and a third gear 3123 that are engaged in sequence; the output end of the motor 311 is provided with an output shaft 3111 engaged with the first gear 3121, the first gear 3121 comprises a large tooth 31211, a second connecting portion 31212 and a small tooth 31213 which are coaxially arranged, the large tooth 31211 is engaged with the output shaft 3111, and the small tooth 31213 is engaged with the second gear 3122; second gear 3122 meshes with third gear 3123, and third gear 3123 meshes with row 21113.
Specifically, at least two bosses are arranged on the periphery of the second connecting portion 31212; the change-over switch 5 controls the movable piece 26 to drive the control member 50 rotatably connected with the gun body 100 to switch the emission mode, and the control member 50 comprises a pressing part 51 extending out of the gun body 100 and a clamping part 52 matched with the boss. The clamping portion 42 is matched with the boss to realize the switching of the emission mode, and when the clamping portion 52 clamps the boss by controlling the pressing portion 51, the gear assembly 312 stops rotating; when the control pressing part 51 makes the clamping part 52 disengage from the boss, the gear assembly 312 can be rotated by the driving motor 311.
As shown in fig. 6, further, the third gear 3123 includes a first gear section 31231 and a second gear section 31232, the row of teeth 21113 engages with the first gear section 31231 to displace the piston 22 backward, and the second gear 3122 engages with the second gear section 31232;
the first gear segment 3121 is provided with at least one smooth structure, and the smooth structure cooperates with the launching spring 23 to push the piston 22 to move forward. The motor 311 drives the gear assembly 312 to translate the gas cylinder assembly 21 and the first gear segment 3121 includes a gear structure and a smooth structure thereon. When the third gear 3123 is rotated to the gear structure, the cylinder assembly 21 can be moved backward to compress the launching spring 23; when the third gear 3123 rotates to a smooth configuration, the row of teeth 21113 on the inner cylinder 211 disengages from the gear assembly 312 and the cylinder assembly 21 is moved forward by the firing spring 23 to fire the soft fire.
Alternatively, the number of gears in the gear assembly may be adjusted according to the firing spring 23, and when the firing spring 23 is a thick spring, it may be necessary to increase the number of gears to reduce the driving speed.
Further, the manual drive assembly 32 includes a pull rod 321 for soft-bullet cocking; the pull rod 321 is disposed above the pop-up mechanism 2, a groove 3211 matched with the first limiting member 21111 is disposed in a radially downward side of the pull rod 321, the first limiting member 21111 is movably connected in the groove 3211, the first limiting member 21111 is inserted into the sliding groove 241 and movably connected in the groove 3211 of the pull rod 321 above the first limiting member 21111, so as to drive the air cylinder assembly 21 to move horizontally. The front ends of the pull rod 321 and the connecting piece 24 are respectively provided with a return spring for returning, when the pull rod 321 is pulled towards the opposite direction of soft bullet launching, the pull rod 321 is linked with the pop-up mechanism 2 to move axially, and the air cylinder assembly 21 realizes air suction and is linked with the soft bullets at the bullet storage space 102 to enter the gun barrel 1.
The transmission principle of the utility model is as follows:
1. manual transmission mode: when the change-over switch 5 is controlled, the movable piece 26 drives the pressing part 51 of the control member 50 to move upwards, so that the boss is clamped by the clamping part 52, and the gear assembly 312 stops rotating; the manual mode is turned on, and the pull rod 321 is pulled backward, thereby moving the inner cylinder 211 backward and compressing the firing spring 23. In the initial state, the inner cylinder 211 is not connected to the third gear 3123, and the first gear 3121, the second gear 3122, the third gear 3123, and the output shaft do not rotate. When the inner gas cylinder 211 is pulled to the bottom, the bayonet 21112 of the first connecting portion 2111 of the inner gas cylinder 211 is fastened on the fastener 252 to complete loading, and in the process that the gas cylinder assembly 21 moves backwards, the inner gas cylinder 211 is pumped and simultaneously drives the barrel 1 to sleeve the soft bomb backwards for loading. The trigger 4 is pulled, the trigger 4 drives the connecting rod 25 to move forwards in an inclined mode, the clamping piece 252 slides down from the second end of the connecting rod 25 along with the forward movement of the connecting rod 25, so that the clamping piece 252 is separated from the bayonet 21112, the inner air cylinder 211 is ejected forwards under the action of the launching spring 23, soft ejection is achieved under the action of air pressure, and manual launching is achieved.
2. Automatic transmission mode: when the change-over switch 5 is controlled, the movable piece 26 drives the pressing part 51 of the control member 50 to be shifted downwards, so that the clamping part 52 is separated from the boss, and the gear assembly 312 is meshed and driven again; the power switch of the automatic mode is turned on, and the automatic mode is turned on. The trigger 4 is pulled, the trigger 4 drives the connecting rod 25 to move forwards in an inclined mode, the connecting rod 25 is triggered and drives the motor 311 to work, the first gear 3121, the second gear 3122 and the third gear 3123 are driven to rotate in a meshed mode sequentially, when the third gear 3123 rotates to the tooth row 21113, the first gear 3121 section 31231 is matched with the tooth row 21113, the inner air cylinder 211 is driven to move backwards, and soft bullets are assembled; the third gear 3123 continues to rotate, when the third gear 3123 rotates to the smooth structure of the first gear 3121 section 31231, the third gear 3123 disengages from the tooth row 21113, the inner air tube 211 springs forward under the action of the launching spring 23, so that the soft bomb is ejected under the action of the air pressure, the matching relationship among the above parts can be adjusted through the resetting action of each spring, and therefore, the circulation is realized, the soft bomb can be launched continuously when the motor 311 rotates continuously, and the automatic continuous launching is completed.
The inner air cylinder moves along with the front end trajectory, the inner air cylinder exhausts air to enable soft bullets to synchronously enter the trajectory, the inner space is optimized, the structure is simple, the cost is reduced, and meanwhile, the assembly time can be shortened; the operation is convenient, a manual single-shot mode and an automatic continuous-shot mode are provided, and different requirements of players can be met. The internal space is simplified and expanded on the premise of not changing the proportion of the simulated real gun, and the length of the soft bullet feeding track is strictly designed according to the length of the soft bullet required by the simulation.
It is to be understood that the foregoing examples, while indicating the preferred embodiments of the utility model, are given by way of illustration and description, and are not to be construed as limiting the scope of the utility model; it should be noted that, for those skilled in the art, the above technical features can be freely combined, and several changes and modifications can be made without departing from the concept of the present invention, which all belong to the protection scope of the present invention; therefore, all equivalent changes and modifications made within the scope of the claims of the present invention should be covered by the claims of the present invention.

Claims (10)

1. A toy soft bullet gun comprises a gun body (100) and is characterized in that,
the gun body (100) is provided with a gun barrel (1), an ejection mechanism (2) for ejecting a soft bullet to be launched stored in the gun barrel (1), a driving mechanism (3), a trigger (4) and a change-over switch (5) for changing over a launching mode;
the gun barrel (1) is arranged at a shooting port (101) at the front end of the gun body (100), and the gun barrel (1) is connected with the ejection mechanism (2); the ejection mechanism (2) comprises an air cylinder assembly (21), a piston (22), a launching spring (23) sleeved on the piston (22), a connecting piece (24) and a connecting rod (25) connected with the trigger (4), and the air cylinder assembly (21) can be sleeved on the launching spring (23) and the piston (22) in sequence in a reciprocating mode;
the inflator assembly (21) comprises an inner inflator (211) and an outer inflator (212), the outer inflator (212) is sleeved outside the inner inflator (211), a second end of the inner inflator (211) is provided with a first connecting portion (2111), and two radial sides of the first connecting portion (2111) are respectively provided with a first limiting piece (21111) and a bayonet (21112); a return spring (251) is arranged at the first end of the connecting rod (25), and a clamping piece (252) matched with the bayonet (21112) is arranged at the second end of the connecting rod; a first end of a connecting piece (24) of the pop-up mechanism (2) is connected with the gun barrel (1), and a second end of the connecting piece (24) is connected with the air cylinder assembly (21) through the first limiting piece (21111) so as to drive the gun barrel (1) to axially displace along the air cylinder assembly (21) to complete soft bullet loading;
the driving mechanism (3) is connected with the air cylinder assembly (21) to drive the air cylinder assembly (21) to axially move; the driving mechanism (3) is matched with the ejection mechanism (2) so that the ejection mechanism (2) is separated from the gun barrel (1) when the trigger (4) is pulled, and the ejection mechanism (2) moves towards the gun barrel (1) to eject soft bullets in the gun barrel (1) when the trigger (4) is released.
2. A toy soft bullet gun according to claim 1, characterized in that said barrel (1) protrudes with a first end from said firing port (101), said barrel (1) is arranged with a second end inside said body (100), and said barrel (1) is extended in an axial direction with a limiting member (11) for limiting the axial movement distance of said barrel (1).
3. The toy soft bullet gun according to claim 1, further comprising a magazine mechanism (6) for feeding the bullet and a bullet storing space (102) formed in said body (100) between said barrel (1) and said cylinder assembly (21), said body (100) being provided with a magazine mounting hole for mounting said magazine mechanism (6), said magazine mechanism (6) being detachably mounted in said magazine mounting hole.
4. The toy soft bullet gun according to claim 3, wherein said magazine mechanism (6) comprises a magazine body (61), a bullet holding plate (62) and a bullet holding spring, soft bullets being stored in said magazine body (61), said bullet holding plate (62) and said bullet holding spring being provided in said magazine body (61); the supporting spring is arranged below the supporting elastic plate (62) so as to push the supporting elastic plate (62) and the soft bullets above the supporting elastic plate (62) to the bullet storage space (102).
5. Toy soft bullet gun according to claim 1, characterized in that said driving mechanism (3) comprises an electric drive assembly (31) and/or a manual drive assembly (32).
6. The toy soft bullet gun according to claim 5, wherein said electric drive assembly (31) comprises a motor (311), a gear assembly (312) and a battery, said motor (311) being powered by said battery to drive said gear assembly (312) to drive said gas cylinder assembly (21) to axially displace;
gear assembly (312) with inflator subassembly (21) meshing is connected, first connecting portion (2111) radial downwardly extending is provided with tooth row (21113), tooth row (21113) are followed interior inflator (211) parallel direction sets up, tooth row (21113) deviate from interior inflator (211) and are equipped with the teeth of a cogwheel in one side, in order to realize inflator subassembly (21) with meshing transmission between electric drive subassembly (31).
7. The toy soft bullet gun according to claim 6, wherein said gear assembly (312) comprises a first gear (3121), a second gear (3122) and a third gear (3123) meshed in sequence; the output end of the motor (311) is provided with an output shaft (3111) meshed with the first gear (3121), the first gear (3121) comprises a large tooth (31211), a second connecting portion (31212) and a small tooth (31213) which are coaxially arranged, the large tooth (31211) is meshed with the output shaft (3111), and the small tooth (31213) is meshed with the second gear (3122); the second gear wheel (3122) and the third gear wheel (3123) are in mesh, the third gear wheel (3123) cooperating with the row of teeth (21113).
8. The toy soft bullet gun according to claim 7, wherein said third gear wheel (3123) comprises a first gear wheel segment (31231) and a second gear wheel segment (31232), said row of teeth (21113) engaging said first gear wheel segment (31231) displacing said piston (22) backwards, said second gear wheel (3122) engaging said second gear wheel segment (31232);
the first gear section (31231) is provided with at least one section of smooth structure, and the smooth structure is matched with the launching spring (23) to push the piston (22) to move forwards.
9. A toy soft bullet gun according to claim 5, characterized in that said manual drive assembly (32) comprises a draw rod (321) for soft bullet cocking; the utility model discloses a bullet gun barrel, including pop-up mechanism (2), pull rod (321) are equipped with in the radial downward one side of pull rod (321) with first locating part (21111) matched with recess (3211), first locating part (21111) are in swing joint in recess (3211), but when pulling rod (321) towards the opposite direction of soft bullet transmission, pull rod (321) linkage pop-up mechanism (2) axial displacement, inflator subassembly (21) realize pumping down and the soft bullet that links storage bullet space (102) department gets into barrel (1).
10. The toy soft bullet gun according to claim 9, wherein said first stop member (21111) is provided at a second end of said inner cylinder (211), said first stop member (21111) extending upward in a radial direction of said cylinder assembly (21) to be engaged in said pull rod (321); a sliding groove (241) matched with the first limiting piece (21111) is formed in the second end of the connecting piece (24);
the air cylinder assembly (21) is provided with a second limiting piece (2121), and the second limiting piece (2121) is arranged on the outer air cylinder (212) and used for limiting the relative position of the inner air cylinder (211) and the outer air cylinder (212).
CN202121959307.6U 2021-08-19 2021-08-19 Toy soft bullet gun Active CN215676658U (en)

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