Toy sword
By setting a connection point and a drive mechanism on the toy sword, the gyroscope can be separated from and connected to the scabbard. The gyroscope can be driven to rotate by inserting and removing the scabbard, which solves the problem of the toy launcher having a single function and realizes the fun and novelty of dual play.
Patent Information
- Application Number
- CN201911206516.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-11-29
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2039-11-29
AI Technical Summary
Existing toy launchers are limited in function and lack novelty and fun; players are looking forward to more interesting ways to play.
Design a toy sword that incorporates a connecting point and a drive mechanism on the sword body, allowing the gyroscope to be separated from and attached to the scabbard. By inserting or removing the scabbard, the drive mechanism is activated, causing the gyroscope to rotate, thus increasing the fun of playing with it.
This invention enables the toy sword to function as both a sword toy and a spinning top launcher, providing a dual gameplay experience of playing with a sword and driving a spinning top, thus enhancing the fun and novelty of playing.
Smart Images

Figure CN110898441B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of toys, in particular to a toy sword. BACKGROUND
[0002] The existing toy launcher mostly only has the function of launching objects, and the function is monotonous. For example, the existing gyro launcher usually has an insertion hole for inserting a pull rod or a pull ring for pulling a rope on the launcher, and a connecting part for installing a gyro. A player can know at a glance that the toy is a launcher for launching a gyro, and there is a lack of freshness and surprise. The market expects more interesting launcher play. SUMMARY
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, one object of the present application is to provide a toy sword that can allow a player to experience the dual play of a sword toy and driving a gyro to rotate, thereby increasing the fun of playing.
[0004] According to the toy sword of the present application, the sword body is provided with a connecting position that can be separated from and combined with a rotating object, and a driving mechanism for driving the rotating object to rotate is arranged at the connecting position. The sword sheath is detachably sleeved on the sword body, and the sword sheath cooperates with the driving mechanism. When the sword sheath is inserted into or pulled out of the sword body, the driving mechanism is driven to work, thereby driving the rotating object to rotate.
[0005] According to the toy sword of the present application, the gyro can be on the connecting position or separated from the connecting position by providing the connecting position on the sword body. The driving mechanism can drive the gyro to rotate on the connecting position by arranging the driving mechanism in cooperation with the connecting position. Further, the sword sheath can drive the driving mechanism to move by being inserted into or pulled out of the sword body, so that the gyro can be driven to rotate while playing the toy sword, thereby improving the fun of the player.
[0006] In addition, the toy sword according to the present application can have the following additional technical features:
[0007] In some embodiments, the driving mechanism includes a driving member for surface contact or engagement with the rotating object, and the driving member is arranged on the sword body and / or the sword sheath.
[0008] Optionally, the sword sheath is detachably arranged on the sword body, and the driving member is a movable rack that engages with the rotating object. The movable rack drives the rotating object to rotate when the sword sheath is inserted into or pulled out of the sword body.
[0009] Optionally, the movable rack is telescopically arranged on the scabbard, and the movable rack is extended into the sword body when the scabbard is inserted into the sword body, and the movable rack is retracted into the scabbard when the scabbard is pulled out of the sword body.
[0010] Further, the sword body is provided with a fixed rack and a reverse gear, the reverse gear is engaged with the fixed rack, and the movable rack is slidably arranged on the scabbard, and the movable rack is engaged with the reverse gear when the scabbard is inserted into the sword body.
[0011] In some embodiments, the driving member is a rope, the scabbard is connected with the rope, and the scabbard is configured to drive the rope to move relative to the rotator to rotate the rotator when the scabbard is inserted and / or pulled out.
[0012] Optionally, at least one end of the rope is connected with an automatic rope winding device, and the scabbard pulls the rope out of the automatic rope winding device when the scabbard is pulled out of the sword body.
[0013] Further, the rope and the rotator adopt sliding friction transmission power, or the rope is engaged with the rotator through a gear transmission set.
[0014] In some embodiments, the driving member is an output gear connected with a motor, and the motor is triggered to be energized to rotate the output gear and drive the rotator to rotate when the sword body is pulled out of the scabbard.
[0015] In some other embodiments, the toy sword further comprises a trigger member for driving the rotator to be separated from the connecting position when triggered.
[0016] Optionally, the trigger member is a flap rotatably arranged at the bottom of the connecting position, and the flap is configured to make the rotator pop out of the connecting position when the flap is raised, or the flap is configured to make the rotator turn out of the connecting position along the trigger member when the flap is raised.
[0017] Optionally, one end of a rotating shaft of the flap is connected with an elastic member for driving the flap to be raised, and the other end of the rotating shaft is sleeved with a gear, and the gear is engaged with a damper, and the flap is slowly raised upward under the damping of the damper after being unlocked, so that the rotator can turn out of the connecting position along the trigger member.
[0018] Further, the trigger member is a push block slidably arranged at a horizontal side of the connecting position, and the push block is configured to make the rotator pop out of the connecting position when the push block is ejected.
[0019] In some embodiments, the toy sword further comprises a release member for limiting and releasing the rotator, and the release member is arranged in linkage with the trigger member.
[0020] Optionally, the releasing member comprises two clamping jaws, the two clamping jaws are oppositely arranged and configured to act reversely, each of the clamping jaws is rotatably arranged on the sword body, a part of the two clamping jaws is curved towards the direction away from each other, and the corresponding curved parts of the two clamping jaws form a connecting position with an opening, the clamping jaws rotate to open the opening when the releasing member is triggered.
[0021] Further, the releasing member is rotatably arranged on the sword body, the releasing member is arranged on the pressing surface, and the pressing surface is configured to be downwardly inclined in the direction away from the rotating shaft of the releasing member.
[0022] Additional aspects and advantages of the present application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS
[0023] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0024] Figure 1 is a structural schematic view of the toy sword of Example 1;
[0025] Figure 2 is a structural schematic view of the toy sword of Example 1 when the sword body is pulled out of the scabbard;
[0026] Figure 3 is an exploded view of the toy sword of Example 1;
[0027] Figure 4 is a sectional view along line A-A in Figure 1
[0028] Figure 5 is an enlarged view of area B in Figure 4
[0029] Figure 6 is a structural schematic view of the toy sword of Example 2;
[0030] Figure 7 is a structural schematic view of the toy sword of Example 2;
[0031] Figure 8 is a structural schematic view of the toy sword of Example 2 in a transformed state;
[0032] Figure 9 is a sectional view along line C-C in Figure 7
[0033] Figure 10 is Figure 9 is an enlarged view of the D region in FIG. 1;
[0034] Figure 11 is an assembly view of the sword body, automatic rope winding device, reversing pulley and gyroscope of the toy sword of Example 2;
[0035] Figure 12 is a structural schematic view of the toy sword of Example 2 with the sword body, automatic rope winding device, reversing pulley and gyroscope hidden;
[0036] Figure 13 is an exploded view of the toy sword of Example 2.
[0037] Reference Signs:
[0038] 100: toy sword;
[0039] 1: sword body; 11: sword body; 111: extension groove;
[0040] 12: sword handle;
[0041] 13: sword guard;
[0042] 14: connecting position;
[0043] 15: movable rack;
[0044] 16: rope body;
[0045] 17: fixed rack;
[0046] 18: reverse gear;
[0047] 19: automatic rope winding device;
[0048] 20: elastic member;
[0049] 21: gear;
[0050] 22: damper;
[0051] 23: reversing pulley;
[0052] 24: traction member;
[0053] 2: scabbard;
[0054] 3: launching member; 31: push block;
[0055] 4: release member; 41: clamping jaw;
[0056] 5: unlocking member;
[0057] 200: gyroscope; 201: gyroscope gear. DETAILED DESCRIPTION
[0058] Embodiments of the present application are described below in the detailed description and illustrated in the accompanying drawings by which like or similar elements, e.g., 100, are indicated with the same reference numerals throughout the several views. The embodiments described are presented by way of example only and are not intended to limit the present application as described and defined in the claims.
[0059] In the description of the present application, it is to be understood that the orientations or positional relationships indicated by the terms "upper", "lower", "front", "back", "left", "right", "horizontal", "top", "bottom", "inner", "outer", "circumferential" and the like are based on the orientations or positional relationships shown in the drawings, and are merely intended to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specified.
[0060] In the description of the present application, it should be noted that unless otherwise specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0061] Reference is made below to Figures 1-13 A toy sword 100 according to an embodiment of the present application is described.
[0062] As Figures 1-13 shown, the toy sword 100 according to an embodiment of the present application comprises a sword body 1 and a scabbard 2, the sword body 1 is provided with a connecting position 14 which can be separated and combined with a rotating object, and the connecting position 14 is provided with a driving mechanism which can drive the rotating object to rotate. The scabbard 2 is pluggably sleeved on the sword body 1, the scabbard 2 cooperates with the driving mechanism, and the scabbard 2 drives the driving mechanism to work when it is plugged or unplugged relative to the sword body 1, so as to drive the rotating object to rotate.
[0063] That is, the connecting position 14 can be arranged on the sword body 1, and the rotating object can be combined to or separated from the connecting position 14 after the connecting position 14 is arranged on the sword body 1. The driving mechanism is arranged in cooperation with the connecting position 14, so that the rotating object can rotate relative to the connecting position 14. Further, the sword sheath 2 can drive the driving mechanism to move by inserting and pulling the sheath on the sword body 1, so that the driving mechanism can drive the rotating object to rotate. Therefore, the rotating object can rotate during the playing of the toy sword 100, so that a new playing method of the toy sword 100 is provided.
[0064] It can be understood that the rotating object can be a Figure 6 The rotating object can be a toy flying saucer, and the type of the rotating object is not limited. For convenience, the rotating object is taken as the gyro 200 in the following description.
[0065] Therefore, the toy sword 100 according to the embodiment of the application can make the gyro 200 combined to or separated from the connecting position 14 by arranging the connecting position 14 on the sword body 1. The driving mechanism can drive the gyro 200 to rotate on the connecting position 14 by arranging the driving mechanism in cooperation with the connecting position 14. Further, the player can drive the gyro 200 to rotate while playing the toy sword 100 by inserting and pulling the sword sheath 2, so that the interestingness of playing is improved.
[0066] In some examples, the driving mechanism can be arranged on the sword body 1, and the driving mechanism can be driven to move by the movement of the sword sheath 2 when the sword sheath 2 is inserted and pulled on the sword body 1, so that the driving mechanism can drive the gyro 200 to rotate.
[0067] In some other examples, the driving mechanism can be arranged on the sword sheath 2, and the driving mechanism can move with the sword sheath 2 when the sword sheath 2 is inserted and pulled on the sword body 1. The driving mechanism can drive the gyro 200 to rotate during the movement.
[0068] In some embodiments of the application, the driving mechanism comprises a driving member for surface contact or engagement with the rotating object. The driving member can be arranged on the sword body 1 and / or the sword sheath 2, that is, the driving member can drive the rotating object to rotate, and the driving member can be in surface contact, line contact or point contact with the rotating object to drive the rotating object to rotate. The driving member can be arranged on the sword sheath 2, or the driving member can be arranged on the sword body 1, or the driving member can be arranged on both the sword body 1 and the sword sheath 2. The arrangement position of the driving member is not limited.
[0069] In one example, the driving mechanism is provided on the scabbard 2, and the driving member can be a driving gear. The driving gear is provided on the gyroscope 200, and a gyroscope gear 201 is provided on the driving gear. When the scabbard 2 moves relative to the sword body 1, the scabbard 2 can drive the driving gear to move relative to the gyroscope gear 201, so that the driving gear can engage with the gyroscope gear 201 and drive the gyroscope gear 201 to rotate, thereby driving the gyroscope 200 to rotate.
[0070] In another example, the driving mechanism is provided on the sword body 1, and the driving member can be a string body. One end of the string body can be provided on the scabbard 2, and the other end of the string body can be provided on the sword body 1. The string body surrounds the gyroscope 200 to drive the gyroscope 200 to rotate. Specifically, the string body can surround the gyroscope 200 for one turn, or the string body can surround at least part of the gyroscope 200, so that the string body can drive the gyroscope 200 to rotate during movement. The string body can be a rope, a wire body, or even a chain, such as a steel wire rope, a plastic rope, or a cowhide rope, without limitation. When the string body is made of cowhide, the string body has a light weight and is wear-resistant.
[0071] Optionally, as shown in Figure 2 and Figure 3 , the scabbard 2 is detachably provided on the sword body 1, and the driving member is a movable rack 15 that engages with the rotating object. The movable rack 15 drives the rotating object to rotate with the insertion and / or removal of the scabbard 2. Thus, when the scabbard 2 moves relative to the sword body 1, the scabbard 2 can drive the movable rack 15 to move, so that the movable rack 15 can engage with the gyroscope 200 to drive the gyroscope 200 to rotate.
[0072] The movable rack 15 can be provided on the scabbard 2 or the sword body 1. For example, when the movable rack 15 is provided on the scabbard 2, the movable rack 15 can move with the scabbard 2 to drive the gyroscope 200 to rotate. For another example, when the movable rack 15 is provided on the sword body 1, a plurality of gear stages are provided on the scabbard 2 to engage with the movable rack 15. When the scabbard 2 moves relative to the sword body 1, the plurality of gear stages on the scabbard 2 can engage with the movable rack 15 to drive the movable rack 15 to move, thereby driving the gyroscope 200 to rotate.
[0073] Optionally, the movable rack 15 is telescopically arranged on the scabbard 2, and the movable rack 15 extends into the sword body 1 when the scabbard 2 is inserted into the sword body 1, and the movable rack 15 retracts into the scabbard 2 when the scabbard 2 is pulled out of the sword body 1. Thus, when playing the toy sword 100, the movable rack 15 can move relative to the sword body 1, so that the movable rack 15 can drive the gyroscope 200 to rotate. Further, when the scabbard 2 is pulled out of the sword body 1, the movable rack 15 can retract into the scabbard 2, and when the scabbard 2 is completely pulled out of the sword body 1 (i.e., the sword body 1 and the scabbard 2 are independent of each other), the movable rack 15 can completely retract into the scabbard 2, without affecting the overall shape of the toy sword 100, thereby arousing the curiosity of onlookers and improving the interest of the players.
[0074] In one specific example, the movable rack 15 is arranged in the sword body 1, and during the movement of the scabbard 2 being inserted into the sword body 1, the scabbard 2 can drive the movable rack 15 to move towards the direction of the gyroscope 200, so that the movable rack 15 can drive the gyroscope 200 to rotate. When the scabbard 2 is pulled out of the sword body 1, the scabbard 2 can drive the movable rack 15 to move away from the direction of the gyroscope 200, so that the movable rack 15 can be hidden in the sword body 1.
[0075] Further, as shown in Figure 3 the sword body 1 is provided with a fixed rack 17 and a reverse gear 18, the reverse gear 18 is engaged with the fixed rack 17, and the movable rack 15 is slidably arranged on the scabbard 2, and the movable rack 15 can be engaged with the reverse gear 18 when the scabbard 2 is inserted into the sword body 1.
[0076] Thus, by inserting the scabbard 2 into the sword body 1, the fixed rack 17 can drive the reverse gear 18 to rotate, so that the reverse gear 18 can drive the movable rack 15 to move, and the movable rack 15 can extend out of the scabbard 2 and into the sword body 1. When the scabbard 2 is pulled out of the sword body 1, the scabbard 2 drives the movable rack 15 to move away from the sword body 1, so that the movable rack 15 can be engaged with the gyroscope gear 201 and drive the gyroscope gear 201 to rotate, and the gyroscope 200 can rotate. At the same time, during the movement of the scabbard 2 driving the movable rack 15 to move away from the sword body 1, the movable rack 15 can also be engaged with the reverse gear 18, so that the movable rack 15 can retract into the scabbard 2. After the scabbard 2 is completely pulled out of the sword body 1, the movable rack 15 can be hidden in the scabbard 2, without affecting the overall shape of the scabbard 2, and the movable rack 15 will not be easily damaged by being exposed to the outside world, and the structure is simple and the cost is low.
[0077] In one example, the reverse gear 18 and the movable rack 15 can be arranged on the scabbard 2, the fixed rack 17 is arranged on the sword body 1, during the process of inserting the scabbard 2 into the sword body 1, the reverse gear 18 can move with the scabbard 2, the reverse gear 18 meshes with the fixed rack 17 so that the reverse gear 18 can rotate, thus the reverse gear 18 can mesh with the movable rack 15 and drive the movable rack 15 to move, and then the movable rack 15 can extend out of the scabbard 2. When the scabbard 2 is pulled out of the sword body 1, the scabbard 2 drives the movable rack 15 to move away from the sword body 1, at the same time, the reverse gear 18 also moves synchronously under the movement of the scabbard 2, so that the reverse gear 18 moves relative to the fixed rack 17, thus the reverse gear 18 meshes with the fixed rack 17 to rotate, and then the reverse gear 18 can drive the movable rack 15 to move, so that the movable rack 15 can be hidden in the scabbard 2, and the overall shape of the toy sword 100 is not affected.
[0078] In one specific example, after the scabbard 2 is pulled out and then inserted into the sword body 1, during the process of repeatedly inserting and pulling out the scabbard 2, the movable rack 15 can mesh with the gyro gear 201, so that the gyro gear 201 can rotate, and even the gyro 200 can rotate at a higher speed, thus the interestingness of playing is increased.
[0079] In some embodiments of the present application, the driving member is a rope 16, the scabbard 2 is connected with the rope 16, and the scabbard 2 is configured to drive the rope 16 to move relative to the rotating object to drive the rotating object to rotate when the scabbard 2 is inserted and / or pulled out. That is, when the driving member is the rope 16, the scabbard 2 can be connected with the rope 16, and after the rope 16 is connected with the scabbard 2, the scabbard 2 can drive the rope 16 to move when the scabbard 2 moves relative to the sword body 1. The rope 16 is arranged in cooperation with the gyro 200, so that the rope 16 can drive the gyro 200 to rotate when the rope 16 moves.
[0080] In one example, one end of the rope 16 is connected to the scabbard 2, and the other end of the rope 16 is connected to the sword body 1, and the rope 16 passes around the gyro 200. Thus, when the scabbard 2 is inserted and pulled out of the sword body 1, the rope 16 can move relative to the gyro 200, so that the rope 16 can drive the gyro 200 to rotate. It can be understood that both ends of the rope 16 can be arranged on the sword body 1, or both ends of the rope 16 can be arranged on the scabbard 2, which is not specifically limited here.
[0081] Optionally, the material of the rope 16 can be rubber, cowhide, plastic, etc., which is not limited here. When the rope 16 is made of cowhide, the rope 16 has a lighter weight and is wear-resistant.
[0082] Optionally, at least one end of the rope 16 is connected with an automatic rope winding device 19, and the sword sheath 2 pulls the rope 16 out of the automatic rope winding device 19 when the sword body 1 is pulled out, that is, the automatic rope winding device 19 can be arranged at one end of the rope 16, or the automatic rope winding device 19 can be arranged at both ends of the rope 16, which is not limited here.
[0083] In one example, the automatic rope winding device 19 is a coil spring device, one end of the rope 16 is connected with the coil spring device, the other end of the rope 16 is connected with the sword body 1, and the middle part of the rope 16 can be pulled by the sword sheath 2, when the sword sheath 2 is pulled away from the sword body 1, the sword sheath 2 can pull the rope 16 out of the coil spring device, at this time the coil spring is in a force storage state, when the sword sheath 2 is inserted into the sword body 1, the coil spring releases the stored energy and makes the rope 16 windable in the coil spring device, preventing the rope 16 from knotting and affecting play. It can be understood that the automatic rope winding device 19 can also be a spring device, and can also be other devices, which is not limited here.
[0084] Further, the rope 16 and the rotating object are driven by sliding friction, or the rope 16 is engaged with the rotating object through a gear transmission set.
[0085] In some examples, as shown in Figures 8-11 The rope 16 and the rotating object are driven by sliding friction, the toy sword 100 includes a plurality of reversing pulleys 23, and the rope 16 is wound around the plurality of reversing pulleys 23. Specifically, after the rope 16 is wound around the plurality of reversing pulleys 23, the plurality of reversing pulleys 23 can change the extension direction of the rope 16, so that the rope 16 generates sliding friction with the gyroscope 200 when moving, thereby making the gyroscope 200 rotate. At the same time, by winding the rope 16 around the plurality of reversing pulleys 23, the reversing pulleys 23 can also support the movement of the rope 16, reduce friction and wear, and increase the service life of the toy. It can be understood that the toy sword 100 can include two reversing pulleys 23, or a plurality of reversing pulleys 23, where the plurality refers to more than two, which is not limited specifically.
[0086] In other examples, the toy sword 100 includes a gear transmission set, the gyroscope 200 is provided with a gyroscope gear 201, and the gear transmission set can be engaged with the gyroscope gear 201. The rope 16 cooperates with the gear transmission set to drive the gear transmission set to move. Specifically, when the sword sheath 2 moves the rope 16, the rope 16 can drive the gear transmission set to rotate, and the gear transmission set is engaged with the gyroscope gear 201, so that the gyroscope gear 201 rotates, thereby making the gyroscope 200 rotate.
[0087] In one embodiment, the driving member is an output gear connected with the motor, when the sword body 1 is pulled out relative to the scabbard 2, the motor is triggered to work, so that the output gear rotates and drives the rotating object to rotate, thus, the motor is triggered to work by the action of pulling out the sword body 1, so that the player can trigger the motor to drive the gyro 200 to rotate while playing the toy sword 100, so that the player can experience the double play of the sword toy and the rotation of the gyro 200, and the interestingness of playing is increased, further, the gyro 200 can be stably rotated by the motor driving, and the structure of the toy sword 100 is simple, convenient to carry and play.
[0088] In some embodiments of the application, the toy sword 100 further comprises a trigger member 3 for triggering the rotating object to be separated from the connecting position 14 when triggered, in other words, the trigger member 3 can release the gyro 200 from the connecting position 14.
[0089] In one example, the trigger member 3 is a launching device, the gyro 200 can be installed on the launching device, the launching device has an energy storage state and a launching state, when the launching device is in the energy storage state, the gyro 200 can be fitted on the launching device, and the gyro 200 can also rotate relative to the launching device, when the launching device is in the launching state, the launching device releases the stored energy to launch the gyro 200 out of the toy sword 100.
[0090] Optionally, the trigger member 3 is a flap rotatably arranged at the bottom of the connecting position 14, so that the rotating object is launched away from the connecting position 14 when the flap is raised, or so that the rotating object can be rotated out of the connecting position 14 along the trigger member 3 when the flap is raised, that is, the flap can be fitted at the bottom of the connecting position 14 and can rotate relative to the connecting position 14, and after the flap is rotated, the gyro 200 can be separated from the connecting position 14. When the flap is raised, the flap can launch the gyro 200 away from the connecting position 14, or the gyro 200 can slide away from the connecting position 14 along the flap, and the way in which the gyro 200 is separated from the connecting position 14 is not limited.
[0091] Further, one end of the rotating shaft of the flap is connected with an elastic member 20 for driving the flap to be raised, the other end of the rotating shaft is sleeved with a gear 21, the gear 21 is engaged with a damper 22, and after the flap is unlocked, the flap is slowly raised upward under the damping of the damper 22, so that the rotating object can be rotated out of the connecting position 14 along the trigger member 3. It can be understood that the damper 22 can adopt the damping structure disclosed in the prior art, and the structure of the damper 22 is not limited here.
[0092] Thus, when the elastic member 20 is not triggered, the flap is in the falling position, and the gyro 200 can be fitted on the connecting position 14 or can rotate relative to the connecting position 14. When the elastic member 20 is triggered, the elastic member 20 releases the elastic energy to drive the rotating shaft of the flap to rotate, so that the rotating shaft of the flap can drive the flap to be raised upward, and meanwhile, the gear 21 at the other end of the rotating shaft of the flap can engage with the damper 22. By engaging the gear 21 with the damper 22, the rotating speed of the rotating shaft of the flap can be reduced, so that the flap can be slowly raised upward, and the gyro 200 can be rotated out of the connecting position 14 and slowly moved along the flap. By reducing the speed of the gyro 200 moving along the flap, the player can see the launching process of the gyro 200, and the surprise and interest of the player are increased. The elastic member 20 can be a torsion spring, a spring or other elastic device, which is not limited here.
[0093] In one example, the elastic member 20 is arranged at both ends of the rotating shaft of the flap, and the elastic member 20 can drive the flap to be raised. When the elastic member 20 is in the energy storage state, the flap is in the falling position, and the gyro 200 can be fitted on the connecting position 14. Triggering the elastic member 20 releases the energy of the elastic member 20, so that the elastic member 20 at both ends of the rotating shaft of the flap can drive the flap to rotate rapidly, and the gyro 200 can be launched out of the connecting position 14, which gives the player a visual impact and increases the surprise of the player.
[0094] In some embodiments, the launching member 3 is a push block 31 slidably arranged on the horizontal side of the connecting position 14. When the push block 31 is launched, the rotating object is pushed away from the connecting position 14, for example Figure 12 As shown, the push block 31 can be arranged on the rear side of the connecting position 14, and the push block 31 can slide relative to the connecting position 14. Specifically, the push block 31 can slide towards and away from the connecting position 14. When the push block 31 moves towards the connecting position 14, the push block 31 can push the gyro 200 to move towards the opening of the connecting position 14, so that the gyro 200 can be separated from the connecting position 14. It can be understood that the push block 31 pushes the gyro 200 to move away from the connecting position 14, and the push block 31 pushes the gyro 200 to be launched out of the connecting position 14, which is not limited specifically here.
[0095] In one example, a spring is arranged on the push block 31. When the spring is released, the spring can drive the push block 31 to move towards the connecting position 14, so that the push block 31 can push the gyro 200 to be separated from the connecting position 14. When the gyro 200 is fitted on the connecting position 14, the gyro 200 can press the push block 31 to move away from the connecting position 14, and the spring is in the compressed state, which simplifies the assembly steps and enables the player to play continuously.
[0096] In some embodiments of the application, the toy sword 100 further comprises a release member 4 for limiting and releasing the rotating object, the release member 4 is arranged in linkage with the launching member 3, whereby the release member 4 can limit the gyro 200 on the connecting position 14, so that the gyro 200 can be combined on the connecting position 14 and rotate relative to the connecting position 14 without being separated from the connecting position 14, when the release member 4 releases the gyro 200, the release member 4 does not limit the gyro 200, and the gyro 200 is driven by the launching member 3 so that the gyro 200 can be separated from the connecting position 14, the linkage between the release member 4 and the launching member 3 makes the gyro 200 be better released and launched out of the connecting position 14.
[0097] Optionally, the release member 4 comprises two clamping jaws 41, the two clamping jaws 41 are oppositely arranged and configured to act reversely, each clamping jaw 41 is rotatably arranged on the sword body 1, a part of the two clamping jaws 41 is curved towards the direction away from each other, the two clamping jaws 41 form the connecting position 14 with an opening corresponding to the curved part, and the clamping jaw 41 rotates to open the opening when the release member 4 is triggered.
[0098] For example Figure 12 As shown, the two clamping jaws 41 are arranged on the sword body 1, the two clamping jaws 41 generally form a pair of small parentheses shape, the two parentheses can form the connecting position 14 therebetween, by arranging the two clamping jaws 41 in curved shape, the gyro 200 is arranged between the two clamping jaws 41, and the two clamping jaws 41 can also limit the gyro 200, so that the gyro 200 is more firmly clamped in the connecting position 14. Further, when the release member 4 is triggered, the two clamping jaws 41 can move towards the direction away from each other, so that the two clamping jaws 41 do not limit the gyro 200, and the gyro 200 can be separated from the connecting position 14 through the opening of the connecting position 14.
[0099] In a specific example, the release member 4 comprises two clamping jaws 41, a spring and a screw rod, the clamping jaw 41 can comprise a clamping head and a clamping handle, the clamping head is generally semicircular, and the clamping handle can be a straight rod, the two clamping jaws 41 are oppositely arranged, so that the two clamping heads can generally form a circle, and the two clamping heads form the connecting position 14 of the gyro 200, the spring is arranged between the two clamping handles, one end of the screw rod abuts against the clamping handle, and the screw rod can rotate relative to the clamping jaw 41, whereby by rotating the screw rod, the distance between the two clamping jaws 41 can be adjusted, so that the gyro 200 can be better limited, and gyro 200 of different sizes can also be fitted on the connecting position 14, further, when the screw rod moves towards the clamping handle, the distance between the two clamping handles can be reduced, so that the spring between the two clamping handles is in an energy storage state, when the screw rod moves away from the clamping handle, the spring can release energy, so that the two clamping jaws 41 move away from each other, thereby opening the opening of the connecting position 14, and further enabling the gyro 200 to fall off the connecting position 14.
[0100] Optionally, the launching member 3 is rotatably arranged on the sword body 1, and the launching member 3 is provided with a pressing surface, the pressing surface is configured to be arranged in a downward inclined manner in a direction away from the rotation axis of the launching member 3, and the releasing member 4 is slidably arranged on the sword body 1, and the releasing member 4 is fitted on the pressing surface.
[0101] For example Figure 3 As shown in the figure, the pressing surface is gradually inclined downward in a direction from the rotation axis of the launching member 3 to the connecting position 14 (i.e. Figure 3 the rear direction as shown in the figure), and by inclining the pressing surface downward in the rear direction, the speed of the gyro 200 passing through the pressing surface can be reduced when the gyro 200 moves from the connecting position 14 to the launching member 3 during the lifting process, which can give the player a visual impact and increase the player's surprise.
[0102] The releasing member 4 is movable relative to the sword body 1, and specifically, the releasing member 4 is movable in the front-rear direction, and when at least part of the releasing member 4 is arranged on the pressing surface, the releasing member 4 limits the pressing surface, so that the pressing surface cannot be lifted upward, and the launching member 3 is in the falling position. When the releasing member 4 moves backward, the area of the releasing member 4 that limits the pressing surface does not limit the pressing surface, and the pressing surface is lifted by the elastic member 20, and during the movement of the releasing member 4 backward, the gyro 200 that is limited is released from the connecting position 14, so that the gyro 200 can move along the launching member 3 until it is rotated out of the sword body 1 and launched.
[0103] In one embodiment, the sword body 1 includes a sword body 11, a sword handle 12, and a sword guard 13 connected between the two, the sword scabbard 2 is detachably sleeved on the sword body 11, the connecting position 14 is arranged at the sword guard 13, the sword body 11 is provided with an extension groove 111, one end of the extension groove 111 extends to the connecting position 14 and the other end is open, and the unlocking member 5 can be arranged on the sword handle 12.
[0104] Thus, by arranging the extension groove 111 on the sword body 11, the extension groove 111 can limit the movement direction of the gyro 200, when the unlocking member 5 is triggered, the gyro 200 can be separated from the connecting position 14 and enter the extension groove 111, when the player holds the sword handle 12 and tilts the sword body 11 downward during the movement of the gyro 200 in the extension groove 111, the player can control the direction and position of the gyro 200 falling to the ground by controlling the orientation of the sword body 11, and when the player keeps the sword body 11 straight, the gyro 200 can rotate on the sword body 11 without sliding, so as to exercise the balance control of the player.
[0105] It can be understood that the extension groove 111 can be a straight slide to limit the straight sliding of the gyro 200, and the extension groove 111 can also be an arc-shaped slide to limit the gyro 200 to slide along an arc, which is not specifically limited here.
[0106] The structure and playing method of the toy sword 100 in two specific embodiments are described below with reference to the accompanying drawings.
[0107] Embodiment 1
[0108] Figures 1-6 The structure diagram of the toy sword 100 in Embodiment 1 is shown.
[0109] As shown in Figures 1-6 the toy sword 100 can be used as a sword toy and as a launcher for the gyro 200. The toy sword 100 comprises a sword body 1 and a sheath 2 which is detachably sleeved on the sword body 1. The sword body 1 comprises a sword blade 11, a sword handle 12 and a sword guard 13 connected between the sword blade 11 and the sword handle 12. The sword guard 13 is provided with a connecting position 14. The gyro 200 is rotatably fitted on the connecting position 14. An extension groove 111 can be provided on the sword blade 11 so that the gyro 200 can slide along the extension groove 111.
[0110] The toy sword 100 further comprises a driving member which can be an active rack 15. The active rack 15 is slidably arranged on the sheath 2. A gyro gear 201 is arranged on the gyro 200. The active rack 15 can engage with the gyro gear 201. A reverse gear 18 and a fixed rack 17 are arranged on the sword blade 11 and engage with each other. When the sheath 2 is sleeved on the sword blade 11, the active rack 15 can engage with the reverse gear 18 so that the active rack 15 can extend into the sword handle 12. When the sheath 2 is detached from the sword blade 11, the reverse gear 18 engages with the active rack 15 so that the active rack 15 can retract into the sheath 2, thereby not affecting the overall sword shape of the toy sword 100.
[0111] The toy sword 100 comprises a launching member 3 which can drive the gyro 200 to shoot off the connecting position 14 when triggered. The launching member 3 is a flap arranged at the bottom of the connecting position 14. An elastic member 20 is connected to one end of the rotating shaft of the flap for driving the flap to rise. When the flap rises, the gyro 200 rotates out of the connecting position 14 along the flap. A gear 21 is arranged on the other end of the rotating shaft of the flap. A damper 22 which engages with the gear 21 is arranged on the sword body 1. The engagement between the gear 21 and the damper 22 allows the flap to rise slowly, thereby allowing the gyro 200 to rotate slowly along the flap.
[0112] The toy sword 100 further comprises a releasing member 4 which is linked with the launching member 3. The releasing member 4 is clamped on the gyro 200 when the launching member 3 is in a falling position and releases the gyro 200 when the launching member 3 is in a rising position. The releasing member 4 has a fork-shaped head which is sleeved on the peripheral wall of the gyro 200 so that the fork-shaped head can limit the gyro 200, thereby allowing the gyro 200 to rotate more firmly on the connecting position 14 and improving the operability of the toy sword 100.
[0113] The toy sword 100 is also equipped with an unlocking part 5 connected to the release part 4. When the unlocking part 5 is activated, it causes the release part 4 to move backward. During the backward movement of the release part 4, the launching part 3 and the gyroscope 200 are not restricted, so that the launching part 3 tilts upward under the action of the elastic part 20, and the gyroscope 200 can rotate out of the connecting part 14 under the action of gravity and rotate along the launching part 3 into the extension slot 111. The player can tilt the sword body 11 downward to control the direction and position of the gyroscope 200 when it lands. When the angle of tilting the sword body 11 downward is large, the gyroscope 200 can detach from the sword body 11 more quickly. The player can also keep the sword body 11 in a straight state, so that the gyroscope 200 can rotate on the sword body 11 without moving, thereby training the player's balance control.
[0114] Example 2
[0115] Figures 7-13 This is a structural diagram of the toy sword 100 in Example 2.
[0116] like Figures 7-13 As shown, the toy sword 100 can transform from a sword shape into a launcher for a spinning top 200. The toy sword 100 includes a sword body 1 and a scabbard 2. The scabbard 2 is detachably fitted onto the sword body 1. The sword body 1 includes a blade 11, a hilt 12, and a guard 13 connecting the two. The guard 13 is provided with a connection position 14. The spinning top 200 is rotatably fitted onto the connection position 14. An extension groove 111 can be provided on the blade 11 so that the spinning top 200 can slide along the extension groove 111.
[0117] The toy sword 100 also includes a driving component, which can be a rope 16. One end of the rope 16 is connected to the sword body 11, and the other end of the rope 16 is connected to an automatic rope winding device 19 located on the sword guard 13. The rope 16 can pass through the connection point 14 and cooperate with the gyroscope 200. The scabbard 2 cooperates with the rope 16 to pull the rope 16 when it is inserted or removed. The rope 16 is configured to drive the gyroscope 200 to rotate when pulled. When the scabbard 2 is inserted or removed from the sword body 1, the scabbard 2 can drive the rope 16 to move, so that the rope 16 can drive the gyroscope 200 to rotate. By repeatedly inserting and removing the scabbard 2 to play with the toy sword 100, the gyroscope 200 can rotate continuously or accelerate. During the play, the player can experience the dual gameplay of a sword toy and driving the gyroscope 200 to rotate, which increases the fun of playing. When the sword body 1 is inserted into the scabbard 2, the automatic rope winding device 19 can automatically wind up the rope body 16, eliminating the need for manual rope winding, improving the continuity of play, and preventing the rope body 16 from piling up and getting tangled.
[0118] The toy sword 100 also includes a traction element 24 connecting the blade 11 and the hilt 12, such as Figure 9 and Figure 10As shown, the traction member 24 is configured to form a mutual traction between the sword body 11 and the sword handle 12 when they are located at the same level, and after the sword body 11 and the sword handle 12 are connected at two ends of the traction member 24, the traction member 24 can traction the sword body 11 and the sword handle 12 to each other, so that the traction member 24 can limit the sword body 11 and the sword handle 12, and then the sword handle 12 and the sword body 11 can be kept at the same level, so that the toy sword 100 has a sword shape.
[0119] The toy sword 100 further comprises a release member 4 for releasing the gyroscope 200 into the extension slot 111, the release member 4 comprises two clamping jaws 41, which generally form a pair of parentheses shape, and the middle of the pair of parentheses is a connecting position 14, and the opening in the middle of the two parentheses can face the extension slot 111, when the release member 4 is triggered to move, the two clamping jaws 41 can move away from each other, so that the two clamping jaws 41 do not limit the gyroscope 200, and then the gyroscope 200 can escape from the connecting position 14 through the opening of the connecting position 14.
[0120] The toy sword 100 further comprises a launching member 3 linked with the release member 4, and when the launching member 3 is triggered, the gyroscope 200 can be launched away from the connecting position 14, and the launching member 3 can slide relative to the connecting position 14, and the launching member 3 can be a push block 31 for pushing the gyroscope 200 to the opening of the connecting position 14, and the push block 31 can be arranged between the two clamping jaws 41.
[0121] The toy sword 100 further comprises an unlocking member 5 connected with the release member 4, when the unlocking member 5 is triggered, the two clamping jaws 41 in the release member 4 move away from each other, so that the gyroscope 200 is not limited by the two clamping jaws 41, and the push block 31 pushes the gyroscope 200 to the opening of the connecting position 14, so that the gyroscope 200 escapes from the connecting position 14 and enters the extension slot 111, at the same time, the sword guard 13 and the sword body 11 rotate relative to the sword handle 12 under the action of gravity or elastic force, and the sword body 11 moves downward again relative to the sword guard 13 under the traction of the traction member 24, so that the toy sword 100 deforms, and gives the player a visual impact, and after the gyroscope 200 enters the extension slot 111, the player can control the sword body 11, so as to control the landing position and direction of the gyroscope 200, increase the play, and improve the interestingness and surprise of the play.
[0122] The other configurations and operations of the toy sword 100 according to the embodiments of the present application are known to those skilled in the art, and will not be described in detail here.
[0123] In the description of the specification, the description of the terms "some embodiments", "optionally", "further", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are contained in at least one embodiment or example of the present application. In the specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any suitable manner in one or more embodiments or examples.
[0124] Although embodiments of the present application have been shown and described, it would be appreciated by those skilled in the art that changes, modifications, alternatives and variations to these embodiments could be made without departing from the principles and spirit of the application, the scope of which is defined by the claims and their equivalents.
Claims
1. A toy sword characterized in that, The sword body is provided with a connecting position which can be separated from and combined with a rotating object, and a driving mechanism which can drive the rotating object to rotate is arranged at the connecting position. The sword sheath is inserted into or pulled out of the sword body, and the sword sheath cooperates with the driving mechanism, so that the sword sheath drives the driving mechanism to work when the sword sheath is inserted into or pulled out of the sword body, thereby driving the rotating object to rotate. When triggered, the trigger member drives the rotating object to separate from the connecting position, the trigger member is rotatably or slidably or ejectably arranged on the connecting position, the trigger member is a ejection device, the rotating object is a gyroscope, and the toy sword further comprises a release member for limiting and releasing the rotating object, the release member is arranged in linkage with the trigger member, the ejection device has an energy storage state and an ejection state, in the energy storage state, the release member limits the gyroscope on the connecting position, the gyroscope is cooperatively arranged on the ejection device and is rotatable relative to the ejection device; in the ejection state, the release member releases the gyroscope, and the ejection device ejects the gyroscope. The driving mechanism comprises a driving member for surface contact or engagement with the rotating object, and the driving member is arranged on the sword body and / or the sword sheath. The sword sheath is detachably arranged on the sword body, the driving member is a movable rack which is engaged with the rotating object, and the movable rack drives the rotating object to rotate when the sword sheath is inserted into and / or pulled out of the sword body.
2. The toy sword of claim 1, wherein The movable rack is telescopically arranged on the sword sheath, and the movable rack is extended into the sword body when the sword sheath is inserted into the sword body, and the movable rack is retracted into the sword sheath when the sword sheath is pulled out of the sword body.
3. The toy sword of claim 2, wherein, The sword body is provided with a fixed rack and a reverse gear which is engaged with the fixed rack, and the movable rack is slidably arranged on the sword sheath, and the movable rack can be engaged with the reverse gear when the sword sheath is inserted into the sword body.
4. The toy sword of claim 3, wherein, The driving member is a rope, the sword sheath is connected with the rope, and the sword sheath is configured to drive the rope to move relative to the rotating object when the sword sheath is inserted and / or pulled out, thereby driving the rotating object to rotate.
5. The toy sword of claim 4, wherein, At least one end of the rope is connected with an automatic rope winding device, and the sword sheath pulls the rope out of the automatic rope winding device when the sword sheath is pulled out of the sword body.
6. The toy sword of claim 2, wherein, The rope and the rotating object adopt sliding friction transmission power, or the rope is engaged with the rotating object through a gear transmission set to transmit power.
7. The toy sword of claim 6, wherein, The driving member is an output gear connected with a motor, and the motor is triggered to work when the sword body is pulled out of the sword sheath, so that the output gear rotates and drives the rotating object to rotate.
8. The toy sword of claim 6, wherein, The trigger member is a flip plate rotatably arranged at the bottom of the connecting position, so that the rotating object is ejected from the connecting position when the flip plate is flipped up, or the rotating object can be turned out of the connecting position along the trigger member when the flip plate is flipped up.
9. The toy sword of claim 2, wherein, 10. The toy sword of claim 1, wherein, 11. The toy sword of claim 10, wherein, The rotating shaft of the flap is connected with an elastic member for driving the flap to be raised, the other end of the rotating shaft is sleeved with a gear, the gear is engaged with a damper, the flap is slowly raised upward under the damping of the damper after being unlocked, so that the rotator can be rotated out of the connecting position along the ejector.
12. The toy sword of claim 1, wherein, The ejector is a push block slidably arranged on the horizontal side of the connecting position, the push block can eject the rotator out of the connecting position when being ejected.
13. The toy sword of claim 1, wherein, The release member comprises: Two clamping jaws, the two clamping jaws are oppositely arranged and configured to act reversely, each clamping jaw is rotatably arranged on the sword body, a part of the two clamping jaws is curved away from each other, and the corresponding curved parts of the two clamping jaws form a connecting position with an opening, the clamping jaws are rotated to open the opening when the release member is triggered.
14. The toy sword of claim 1, wherein, The ejector is rotatably arranged on the sword body, the ejector is provided with a pressing surface, the pressing surface is configured to be downwardly inclined in the direction away from the rotating shaft of the ejector, the release member is slidably arranged on the sword body, and the release member is fitted on the pressing surface.
Citation Information
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