Toy bullet and toy launcher
By setting light emitting parts and vibration switches in the toy bullets, the problems of night loss and unstable flight are solved, and a longer distance and more stable flight effect is achieved.
Patent Information
- Application Number
- CN202211294775.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-21
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2042-10-21
AI Technical Summary
Toy bullets are easily lost after being fired at night, their ballistics are difficult to observe, their flight distance is short and they are easily disturbed by wind, and their ballistic anti-interference ability is poor.
The light emitting parts, power supply and rotary switch are provided in the core of the toy bullet. The vibration switch automatically turns on the power supply after the bullet is excited and fired, making the light emitting device shine, and the flight stability is enhanced by increasing the weight of the core, light supply and power supply.
It improves the recognition of toy bullets at night, is easy to retrieve, has a longer flight distance, has a more stable ballistic trajectory, and reduces wind interference.
Smart Images

Figure CN115597439B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of toys, and more specifically, to a toy bullet and a toy launcher. Background Art
[0002] The toy bullet is energized by a power mechanism and then fired, and then shoots out along a predetermined trajectory. The toy bullets in the related art are generally assembled into a toy launcher, and the feeding mechanism and transmission mechanism in the toy launcher transfer the toy bullet to a predetermined firing position, and then the power mechanism in the toy launcher drives the toy bullet to shoot out from the firing position;
[0003] Currently, common improvements focus on the toy launcher, either improving the firing method, or the feeding method, or the kinetic energy imparting method, etc. There are very few improvements to the toy bullet. In actual use, the toy bullet has the following deficiencies:
[0004] First, after the toy bullet is shot at night, it is very easy to lose, and the ballistic trajectory is difficult to observe, which is inconvenient for users to adjust the firing direction of subsequent toy bullets;
[0005] Second, the overall weight of the toy bullet is relatively small. Even if the power mechanism imparts kinetic energy to the toy bullet, the flying distance of the toy bullet is still small. Moreover, the lightweight toy bullet is prone to large deviations in the flying trajectory due to lateral wind or oblique wind during flight, and has poor anti-interference ability of the ballistic trajectory. Summary of the Invention
[0006] The technical problem to be solved by the present invention is to provide an improved toy bullet and toy launcher.
[0007] The technical solution adopted by the present invention to solve its technical problems is:
[0008] The present application provides a toy bullet, which includes a bullet core, a coating member disposed around the bullet core, a light-emitting member disposed on the bullet core, a power source disposed in the bullet core, and a rotary switch respectively connecting the power source and the light-emitting member;
[0009] The rotary switch is located at the front end of the bullet core. The rotary switch is used to connect or disconnect when rotated, so as to conduct or disconnect the power source and the light-emitting member. The light-emitting member is used to generate light when powered on and working.
[0010] In some embodiments, the toy bullet further includes a vibration switch, and the vibration switch is used to close and conduct when being vibrated;
[0011] The light-emitting member is provided with a first pin and a second pin both for conducting electricity. The first pin is connected to the power source through the vibration switch;
[0012] The rotary switch includes a bullet head disposed on the cartridge core and a conductive member disposed on the cartridge core; the conductive member is electrically connected to the power supply, and the contact portion of the conductive member penetrates through the cartridge core and is exposed between the cartridge core and the bullet head, and a part of the second pin is inserted and exposed between the cartridge core and the bullet head;
[0013] Wherein, when the bullet head moves along a predetermined direction on the cartridge core, the bullet head is used to push against the second pin to deform, so that the second pin abuts against the contact portion to conduct electricity, so that the power supply, the vibration switch and the light-emitting member jointly form a circuit.
[0014] In some embodiments, a fixing boss is formed by outward protrusion at the end of the cartridge core, and a through hole is formed on the side surface of the fixing boss;
[0015] A relief groove is formed on the bullet head, and the width of the relief groove gradually decreases along one direction, so as to form a pushing slope on the groove wall of the relief groove. The bullet head is used to detachably cover the fixing boss, the relief groove communicates with the through hole, and the contact portion passes through the through hole and is exposed in the relief groove,
[0016] Wherein, when the bullet head rotates, the pushing slope is used to push the second pin to bend towards the fixing boss, so that the second pin abuts against the contact portion.
[0017] In some embodiments, a limiting skirt is further provided at the end of the cartridge core, and the limiting skirt is used to push against the bullet head. The limiting skirt is provided with a through hole, and the second pin is inserted into the relief groove through the through hole.
[0018] In some embodiments, a rotation limiting portion is further provided on the side surface of the fixing boss, and a rotation limiting groove is further provided on the bullet head;
[0019] Wherein, when the bullet head rotates on the fixing boss, the rotation limiting portion is used to push against the groove wall of the rotation limiting groove, so as to limit the rotation limit position of the bullet head on the fixing boss.
[0020] In some embodiments, a ring groove is provided on the bullet head, and an annular seal is provided on the side surface of the fixing boss, and the annular seal is used to abut against the groove wall of the ring groove.
[0021] In some embodiments, the light-emitting member is horizontally disposed in the covering member. A positioning groove is formed on the cartridge core, the bottom of the positioning groove is arc-shaped, the two pins of the light-emitting member are limited in the positioning groove, and the two pins of the light-emitting member respectively bypass the bottom of the positioning groove along two directions.
[0022] In some embodiments, the bullet core further includes a first housing and a second housing. A snap hole is formed in the first housing, and a snap portion is provided on the second housing. The snap portion is configured to be inserted into and tightly engaged with the snap hole, so that the first housing and the second housing jointly enclose a switch cavity and a battery cavity. The switch cavity is used to accommodate the vibration switch, and the battery cavity is used to accommodate the power source.
[0023] In some embodiments, the toy bullet further includes a protective tube. The protective tube is sleeved on the bullet core, and the covering member is disposed on the protective tube.
[0024] On the other hand, the present application also provides a toy launcher, which includes a gun body and the toy bullet described in any one of the above technical solutions. The gun body is configured to drive the toy bullet to be shot out along a predetermined trajectory.
[0025] The charging stand of the present invention has at least the following beneficial effects:
[0026] The toy bullet and the toy launcher of the present invention relate to the technical field of toys. On the toy bullet, by arranging a light-emitting member in the bullet core and connecting the power source and the light-emitting member through a vibration switch, the toy bullet can automatically connect the light-emitting member and the power source after being fired and shot out, so that the light-emitting member is powered on and emits light, thereby making the whole toy bullet produce light. In this way, the toy bullet with light has a high recognition rate even when shot at night, is easy to retrieve, and avoids loss. At the same time, the flying trajectory of the toy bullet is also convenient for users to observe after being shot, which is convenient for users to adjust the firing direction of subsequent toy bullets in time.
[0027] In addition, compared with the toy bullet made entirely of EVA material in the related art, the toy bullet of the present solution is provided with a bullet core, a light-emitting member, a power source, a vibration switch, etc., so that the total weight of the toy bullet increases, it can have a longer flying distance, and is less affected by wind force during flight, and has a strong anti-interference ability for the ballistic trajectory. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The present invention will be further described below in conjunction with the drawings and embodiments. In the drawings:
[0029] Figure 1 is a schematic structural diagram of a toy launcher in a preferred embodiment of the present invention;
[0030] Figure 2 is Figure 1 a schematic structural diagram of the driving mechanism in the shown toy launcher;
[0031] Figure 3 is Figure 1 a schematic structural diagram of the toy bullet in the shown toy launcher;
[0032] Figure 4 yes Figure 3 An exploded view of the toy bullet shown;
[0033] Figure 5 yes Figure 4 An exploded view of a portion of the structure of the toy bullet shown;
[0034] Figure 6 From another perspective Figure 5 An exploded view of the toy bullet shown;
[0035] Figure 7 yes Figure 4 A schematic diagram of a portion of the structure of the toy bullet shown;
[0036] Figure 8 yes Figure 7 a cross-section of the toy bullet shown;
[0037] Figure 9 yes Figure 7 An exploded view of the toy bullet shown;
[0038] Figure 10 yes Figure 7 A cross-sectional view of another cutaway position of the toy bullet shown. DETAILED DESCRIPTION
[0039] In order to have a clearer understanding of the technical features, purposes and effects of the present invention, specific embodiments of the present invention are now described in detail with reference to the accompanying drawings.
[0040] Figures 1 to 3 The toy launcher 10 in some preferred embodiments of the present invention is shown. The toy launcher 10 includes a gun body 1 and a toy bullet 2. The gun body 1 is used to drive the toy bullet 2 to be ejected along a predetermined trajectory. The toy bullet 2 can emit light when needed.
[0041] It should be noted that a driving mechanism can be provided in the gun body 1 to impart kinetic energy to the toy bullet 2 so that the toy bullet 2 can be fired smoothly. The driving mechanism can be a structure, element, assembly, device or mechanism commonly used in the toy field in the related art and capable of driving the bullet to move and shoot along a predetermined trajectory. For example, the driving mechanism 11 can be configured to include a motor and two rotating wheels driven by the motor. The two rotating wheels are arranged in parallel and rotate in opposite directions. When the two rotating wheels rotate, the toy bullet fed into the middle of the two rotating wheels will be clamped and driven by the two rotating wheels at the same time, so that the toy bullet can be accelerated. After obtaining kinetic energy, the toy bullet can be shot along a predetermined trajectory. Of course, a pneumatic device or a hydraulic power device can also be used to drive the toy bullet.
[0042] like Figures 3 to 6As shown, the toy bullet includes a bullet core 21, a coating member 22 disposed around the bullet core 21, a light-emitting member 23 disposed on the bullet core 21, a power source 24 disposed within the bullet core 21, and a rotary switch 2a respectively connecting the power source 24 and the light-emitting member 23;
[0043] The rotary switch 2a is located at the front end of the bullet core 21. The rotary switch 2a is used to connect or disconnect when rotated, thereby conducting or disconnecting the power source 24 and the light-emitting member 23. The light-emitting member 23 is used to generate light when powered on.
[0044] The vibration switch 25 is used to close when subjected to vibration, thereby conducting the power source 24 and the light-emitting member 23, and the light-emitting member 23 is used to emit light when powered on.
[0045] It can be understood that the bullet core 21 is used to install and fix the light-emitting member 23, the power source 24, the vibration switch 25 and other components disposed thereon, so that the relative positions of the components are fixed. The coating member 22 plays a role of buffering and protecting, avoiding the impact force acting directly on the internal components. The light-emitting member 23 is used to generate light after being powered on. The power source 24 is used to store and provide electrical energy. The vibration switch 25 is used to close under vibration. After closing, the vibration switch 25 can connect and conduct the pins at both ends, thereby connecting and conducting the corresponding two components.
[0046] It should be noted that the bullet core 21 can be made of materials such as plastic and metal, preferably made of plastic material, which has rigidity and strong plasticity and also has the advantage of low cost. The coating member 22 can be made of EVA material, which has strong buffering performance. The number of the light-emitting members 23 can be set to one or multiple, and can be flexibly set specifically in combination with heat dissipation requirements, brightness requirements and overall weight balance requirements, etc. The power source 24 can be a soft-pack battery, etc. The vibration switch 25 can be configured as a ball switch.
[0047] It should also be noted that during the process that the toy bullet 2 is driven to be given kinetic energy, the toy bullet 2 will be subjected to a certain vibration, and the vibration sensation is transmitted to the vibration switch 25. The vibration switch 25 closes, making the power source 24 and the light-emitting member 23 connected and conducted. The light-emitting member 23 is powered on to work and emit light. The toy bullet 2 emits light. In this way, the shot toy bullet 2 is not only convenient to retrieve, but also enables the user to judge the ballistic trajectory of the toy bullet 2 according to the light path, facilitating the user to adjust the firing angle in time.
[0048] As Figures 4 to 6 shown, in order to solve the problem that the toy bullet 2 flies unstably due to unstable center of gravity, in some preferred embodiments, the central axes of the bullet core 21, the coating member 22, the light-emitting member 23, the power source 24 and the vibration switch 25 coincide with each other, making the overall center of gravity of the toy bullet 2 tend to the center, so that the toy bullet 2 can maintain stability as much as possible during the flight process.
[0049] As Figures 4 to 10 shown, in some embodiments, the toy bullet further includes a vibration switch for closing and conducting when being vibrated;
[0050] The light-emitting member 23 is provided with a first pin 231 and a second pin 232, both of which are used for conducting electricity. The first pin 231 is connected to the power supply 24 through the vibration switch 25;
[0051] It can be understood that the first pin 231 and the second pin 232 are respectively connected to the positive and negative electrodes of the light-emitting member 23. When the first pin 231 and the second pin 232 are successfully connected to the power supply, the light-emitting member 23 operates normally and emits light.
[0052] The rotary switch includes a bullet head 26 provided on the bullet core 21 and a conductive member 27 provided on the bullet core 21; the conductive member 27 is electrically connected to the power supply 24, and the contact portion 271 of the conductive member 27 penetrates through the bullet core 21 and is exposed between the bullet core 21 and the bullet head 26, and a part of the second pin 232 is inserted and exposed between the bullet core 21 and the bullet head 26;
[0053] Wherein, when the bullet head 26 moves along a predetermined direction on the bullet core 21, the bullet head 26 is used to push against the second pin 232 to deform, so that the second pin 232 abuts against the contact portion 271 to conduct electricity, thereby forming a loop together with the power supply 24, the vibration switch 25 and the light-emitting member 23.
[0054] It can be understood that the conduction between the conductive member 27 and the power supply 24 can be contact conduction or can be conducted through a wire or other conductive intermediate elements. The bullet head 26 is exposed outside the covering member 22. The bullet head 26 is at the front end of the toy bullet 2 during flight and preferentially bears the impact from the front of the toy bullet 2, playing a protective role. The conductive member 27 is used to transfer current, specifically to extend the conduction position of the electrode of the power supply 24 to a predetermined position.
[0055] It can also be understood that enough clearance or space needs to be reserved between the bullet core 21 and the bullet head 26 for the contact portion 271 and a part of the second pin 232 to be placed therein, and the contour of this clearance or space must have a certain change. Thus, although the relative positions of the second pin 232 and the contact portion 271 do not change, when the bullet head 26 moves, when the contour of the clearance or space between the bullet core 21 and the bullet head 26 narrows, it will force the second pin 232 and the contact portion 271 to approach each other until they abut. After they abut and conduct electricity, one pole of the power supply 24 can be connected to the second pin 232. At this time, as long as the vibration switch 25 is closed, the two pins of the light-emitting member 23 are simultaneously connected to the positive and negative electrodes of the power supply 24 to conduct electricity and emit light.
[0056] In summary, the moving direction of the bullet head 26 can determine whether one pole of the power supply 24 is electrically connected to the second pin 232. When the bullet head 26 has not moved to the predetermined position, even if the vibration switch 25 is closed, since the second pin 232 is not in electrical contact with the contact portion 271, the light-emitting member 23 still cannot form a conductive loop with the power supply 24, that is, it cannot be powered on and emit light.
[0057] It should be noted that the moving trajectory of the bullet head 26 can be a rotational trajectory, a sliding trajectory, a toggling trajectory similar to a switch, or other types of moving trajectories. The conductive member 27 can be a conductive metal sheet or a combination of a conductive metal sheet and a wire. It can be flexibly adjusted according to the type and position of the power supply 24. Further, the conductive metal sheet can also be directly integrated on the power supply 24. For example, it can be directly integrated on the electrode of a soft-pack battery.
[0058] It should also be noted that both the first pin 231 and the second pin 232 can be made of a conductive metal material. The second pin 232 has a certain elastic recovery performance, so that when the bullet head 26 is reset, the second pin 232 can automatically move away from the contact portion 271, releasing the conductive connection between the second pin 232 and the contact portion 271.
[0059] As Figures 4 to 10 shown, in some embodiments, a fixed boss 211 protrudes outward from the end of the bullet core 21, and a through hole 2111 is formed on the side surface of the fixed boss 211;
[0060] A relief groove 261 is formed on the bullet head 26. The groove width of the relief groove 261 gradually decreases in one direction, so that a holding inclined surface 2611 is formed on the groove wall of the relief groove 261. The bullet head 26 is used to detachably cover the fixed boss 211. The relief groove 261 communicates with the through hole 2111, and the contact portion 271 passes through the through hole 2111 and is exposed in the relief groove 261.
[0061] Wherein, when the bullet head 26 rotates, the holding inclined surface 2611 is used to hold the second pin 232 and bend it towards the fixed boss 211, so that the second pin 232 abuts against the contact portion 271.
[0062] Understandably, the fixing boss 211 functions to fix the warhead 26. At the same time, inside the cartridge case 21 corresponding to the fixing boss 211 is a space for accommodating the power source 24. In this way, it is convenient to linearly lead out the contact portion 271 for connecting and conducting with the electrodes of the power source 24, so that the contact portion 271 can be led out to the side of the fixing boss 211 without being bent and reversed. The through hole 2111 is for the contact portion 271 to pass through and extend out, facilitating contact and conduction with the second pin 232. The avoidance groove 261 is for avoiding enough space between the warhead 26 and the fixing boss 211 for the end of the second pin 232 and the contact portion 271 to be jointly accommodated in this space. The abutting inclined surface 2611 is for abutting against the second pin 232 and guiding the second pin 232 to gradually bend and deform when the warhead 26 rotates until it abuts against the contact portion 272.
[0063] It can also be understood that the fixing boss 211 is cylindrical, the warhead 26 covers the fixing boss 211, and after correct alignment and covering, the avoidance groove 261 will be aligned and communicated with the through hole 2111.
[0064] It should be noted that the groove width of the avoidance groove 261 gradually narrows, which means that the distance from the groove wall of the avoidance groove 261 to the fixing boss 211 will also gradually decrease. Correspondingly, in the case of the gradually decreasing distance, the end of the second pin 232 and the contact portion 271 will gradually approach. If the warhead 26 is rotated in the opposite direction, it means that the distance from the groove wall of the avoidance groove 261 to the fixing boss 211 gradually increases, and with the increase in distance and the elastic restoring force of the second pin 232 itself, the end of the second pin 232 will gradually move away from the contact portion 271.
[0065] As Figures 4 to 10 shown, in some embodiments, a limiting skirt 212 is further provided at the end of the cartridge case 21. The limiting skirt 212 is for mutually abutting against the warhead 26. The limiting skirt 212 is provided with a through hole 2121, and the second pin 232 is inserted into the avoidance groove 261 through the through hole 2121.
[0066] Understandably, the limiting skirt 212 can be configured to be exposed or buried in the covering member 22, increasing the contact area between the cartridge case 21 and the covering member 22 and preventing the cartridge case 21 from separating from the covering member 22. The opening of the through hole 2121 avoids a space for the second pin 232 to pass through and reach the avoidance groove 261.
[0067] Preferably, as Figure 6 、 Figure 7 and Figure 10 shown, a warping bevel 216 can be further provided on the cartridge case 21, and the second pin 232 is located in the warping slope 216.
[0068] Understandably, supported by the warping slope 216, the second pin 232 will tend to bend away from the cartridge core 21, so that the end of the second pin 232 can tightly support on the supporting slope 2611 in the avoidance groove 261, preventing the end of the second pin 232 from accidentally contacting and conducting with the contact part 271.
[0069] As Figures 4 to 10 shown, in some embodiments, a rotation limiting part 2112 is further provided on the side surface of the fixing boss 211, and a rotation limiting groove 262 is also provided on the bullet head 26;
[0070] Wherein, when the bullet head 26 rotates on the fixing boss 211, the rotation limiting part 2112 is used to abut against the groove wall of the rotation limiting groove 262, thereby limiting the limit position of the rotation of the bullet head 26 on the fixing boss 211.
[0071] Understandably, the rotation limiting part 2112 and the rotation limiting groove 262 together play a limiting role, specifically for limiting the rotatable range of the bullet head 26 on the fixing boss 211. As the bullet head 26 rotates, the rotation limiting groove 262 will also rotate synchronously. In other words, relative movement will also occur between the rotation limiting part 2112 and the rotation limiting groove 262. When the rotation limiting part 2112 abuts against the groove wall of the rotation limiting groove 262, the limit rotation position of the bullet head 26 on the fixing boss 211 in this rotation direction is reached. Conversely, the limit rotation position in the opposite rotation direction is also determined.
[0072] It should be noted that for the bullet head 26 that rotates excessively, the second pin 232 will inevitably be excessively distorted under the support of the groove wall of the avoidance groove. However, in the case of preventing the bullet head 26 from rotating excessively, irreversible deformation of the end of the second pin 232 caused by the support of the avoidance groove 261 can be avoided, preventing product failures.
[0073] As Figures 8 to 10 shown, in some embodiments, an annular groove 263 is provided on the bullet head 26, and an annular seal 2113 is provided on the side surface of the fixing boss 211. The annular seal 2113 is used to abut against the groove wall of the annular groove 263.
[0074] Understandably, the annular seal 2113 can be made of a flexible material or a material with a certain rigidity, as long as it can prevent the bullet head 26 from loosening from the fixing boss 211. When the annular groove 263 and the annular seal 2113 are in mutual abutment, it can also prevent contaminants from infiltrating through the mating gap between the bullet head 26 and the fixing boss 211.
[0075] As Figures 4 to 6 shown, and further referring to Figure 9 and Figure 10In some embodiments, the light-emitting component 23 is horizontally placed in the covering component 22, a positioning groove 213 is opened on the elastic core 21, the bottom of the positioning groove 213 is arc-shaped, and the two pins of the light-emitting component 23 are limited in the positioning groove 213, and the two pins of the light-emitting component 23 bypass the bottom of the positioning groove 213 in two directions respectively.
[0076] It can be understood that the positioning groove 213 is used to position the light-emitting component 23 to prevent the light-emitting component 23 from twisting relative to the elastic core 21. The arc-shaped groove bottom of the positioning groove 213 is conducive to the two pins of the light-emitting component 23 to gradually bend and detour, which can improve the convenience of assembly and prevent the pins from being damaged to a certain extent. The two pins are led out from the opposite sides of the arc-shaped groove bottom respectively, and the detour pins have a certain clamping force on the arc-shaped groove bottom, which can improve the stability of the light-emitting component 23.
[0077] like Figures 4 to 9 As shown, in some embodiments, the core 21 also includes a first shell 21a and a second shell 21b. The first shell 21a is provided with a snap hole 216, and the second shell 21b is provided with a snap portion 217. The snap portion 217 is used to be inserted into and snapped with the snap hole 216, so that the first shell 21a and the second shell 21b together enclose a switch cavity 214 and a battery cavity 215. The switch cavity 214 is used to accommodate the vibration switch 25, and the battery cavity 215 is used to accommodate the power supply 24.
[0078] It can be understood that the first shell 21a and the second shell 21b together play the role of accommodating and protecting internal components; the number of buckle holes 216 and buckle parts 217 can be flexibly set, and it is preferred to prevent the first shell 21a from separating from the second shell 21b. The cavity wall contour of the switch cavity 214 is adapted to the outer contour of the vibration switch 25, and the cavity wall contour of the battery cavity 215 is adapted to the contour of the power supply 24, so as to avoid the power supply 24 shaking and causing a virtual connection and causing an open circuit.
[0079] Preferably, if Figure 5 and Figure 6 As shown, in some embodiments, two oppositely disposed positioning protrusions 218 are disposed on the second housing 21 b . During the process of assembling the first housing 21 a and the second housing 21 b , the two positioning protrusions 218 will be correspondingly inserted into the switch cavity 214 .
[0080] It should be noted that after the two positioning protrusions 218 are inserted, they will be held against the vibration switch 25 from two opposite positions, and the vibration switch 25 located in the switch cavity 214 will be further limited. In this way, the matching gap between the vibration switch 25 and the switch cavity 25 is eliminated as much as possible, avoiding excessive collision between the vibration switch 25 and the cavity wall of the light-opening cavity 25 and accidental conduction, thereby ensuring the sensitivity of the vibration switch 25.
[0081] likeFigure 4 As shown, in some embodiments, the toy bullet 2 further includes a protective cylinder 28. The protective cylinder 28 is sleeved on the bullet core 21, and the covering member 22 is disposed on the protective cylinder 28.
[0082] Understandably, the protective cylinder 28 is used to protect the bullet core 21. Especially when the covering member 22 is made of a porous material, the protective cylinder 28 can play an excellent protective effect. Similarly, on the one hand, the protective cylinder 28 protects the bullet core 21, and on the other hand, it also plays a role in protecting the light-emitting member 23.
[0083] Preferably, in order to allow the light emitted by the light-emitting member 23 to penetrate to the outside for observation, the protective cylinder 28 can be configured to be made of a light guide material.
[0084] The charging stand of the present invention has at least the following beneficial effects:
[0085] The toy bullet and toy launcher of the present invention relate to the technical field of toys. On the toy bullet, by arranging a light-emitting member in the bullet core and connecting the power supply to the light-emitting member through a vibration switch, the toy bullet can automatically conduct the light-emitting member and the power supply after being fired and ejected, so that the light-emitting member is powered on and emits light, thereby making the whole toy bullet generate light; in this way, the toy bullet with light still has a high recognition rate even when fired at night, is easy to retrieve, and avoids loss. At the same time, the flying trajectory of the toy bullet can be easily observed by the user after it is fired, which is convenient for the user to timely adjust the firing direction of the subsequent toy bullets;
[0086] In addition, compared with the toy bullets made entirely of EVA material in the related art, the toy bullet of this solution is provided with a bullet core, a light-emitting member, a power supply, a vibration switch, etc., which increases the overall weight of the toy bullet, enables it to have a longer flying distance, and is less affected by wind during flight, and has a strong anti-interference ability for the ballistic trajectory.
[0087] The above embodiments are only used to illustrate the technical concept and characteristics of the present invention, and their purpose is to enable those familiar with this technology to understand the content of the present invention and implement it accordingly, and cannot limit the protection scope of the present invention. All equivalent changes and modifications made to the scope of the claims of the present invention shall fall within the scope covered by the claims of the present invention.
Claims
1. A toy bullet, characterized in that, It includes a bullet core, a cladding member disposed around the bullet core, a light-emitting member disposed on the bullet core, a power source disposed in the bullet core, and a rotary switch respectively connecting the power source and the light-emitting member; The rotary switch is located at the front end of the bullet core. The rotary switch is used to connect or disconnect when rotated, so as to conduct or disconnect the power source and the light-emitting member. The light-emitting member is used to generate light when powered on; The toy bullet further includes a vibration switch, and the vibration switch is used to close and conduct when being vibrated; The light-emitting member is provided with a first pin and a second pin both for conducting electricity. The first pin is connected to the power source through the vibration switch; The rotary switch includes a bullet head disposed on the bullet core and a conductive member disposed on the bullet core; the conductive member is conducted with the power source, and the contact portion of the conductive member penetrates out of the bullet core and is exposed between the bullet core and the bullet head. A part of the second pin is inserted and exposed between the bullet core and the bullet head; Wherein, when the bullet head moves along a predetermined direction on the bullet core, the bullet head is used to hold the second pin to deform, so that the second pin abuts against the contact portion to conduct, so that the power source, the vibration switch and the light-emitting member jointly form a loop; The bullet core further includes a first housing and a second housing. The first housing is provided with a snap hole, and the second housing is provided with a snap portion. The snap portion is used to be inserted and clamped with the snap hole, so that the first housing and the second housing jointly enclose a switch cavity and a battery cavity. The switch cavity is used to house the vibration switch, and the battery cavity is used to house the power source; The second housing is provided with two oppositely arranged positioning convex portions. When assembling the first housing and the second housing, the two positioning convex portions will be correspondingly inserted into the switch cavity.
2. The toy bullet according to claim 1, characterized in that, The end of the bullet core bulges outwards to form a fixed boss, and a through hole is opened on the side surface of the fixed boss; The bullet head is provided with an avoidance groove, and the groove width of the avoidance groove gradually decreases along one direction, so as to form a holding inclined surface on the groove wall of the avoidance groove. The bullet head is used to detachably cover the fixed boss. The avoidance groove is communicated with the through hole, and the contact portion passes through the through hole and is exposed in the avoidance groove, Wherein, when the bullet head rotates, the holding inclined surface is used to hold the second pin to bend towards the fixed boss, so that the second pin abuts against the contact portion.
3. The toy bullet according to claim 2, characterized in that, The end of the bullet core is further provided with a limiting skirt, and the limiting skirt is used to abut against the bullet head. The limiting skirt is provided with a through hole, and the second pin is inserted into the avoidance groove through the through hole.
4. The toy bullet according to claim 2, wherein, The side surface of the fixed boss is further provided with a rotation limiting portion, and the bullet head is further provided with a rotation limiting groove; Wherein, when the bullet head rotates on the fixed boss, the rotation limiting portion is used to abut against the groove wall of the rotation limiting groove, so as to limit the rotation limit position of the bullet head on the fixed boss.
5. The toy bullet according to claim 2, wherein A ring groove is provided on the bullet head, and an annular seal is provided on the side surface of the fixed boss. The annular seal is used to abut against the groove wall of the ring groove.
6. The toy bullet according to claim 1, wherein, The light-emitting component is horizontally arranged in the covering component. A positioning groove is formed in the bullet core, and the bottom of the positioning groove is arc-shaped. Two pins of the light-emitting component are limited in the positioning groove, and the two pins of the light-emitting component respectively bypass the bottom of the positioning groove in two directions.
7. The toy bullet according to claim 1, wherein, The toy bullet further includes a protection cylinder, the protection cylinder is sleeved on the bullet core, and the covering component is arranged on the protection cylinder.
8. A toy launcher, characterized in that, It includes a gun body and the toy bullet according to any one of claims 1 to 7, and the gun body is used to drive the toy bullet to be shot out along a predetermined trajectory.
Citation Information
Patent Citations
Toy bullet and toy launcher
CN218380681U