Gyroscope clamping plate and gyro launcher

By designing an integrated gyroscope clamping plate, the problem of numerous and complex components in existing gyroscope transmitters has been solved, achieving efficient gyroscope installation and launch, and reducing failure rate and production costs.

CN223810808UActive Publication Date: 2026-01-20SHANTOU QILETONG FOOD CO LTD
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Patent Information

Application Number
CN202423305289.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-20
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing gyroscope transmitters have many components, and the fit between these components is critical, making them prone to malfunctions, difficult to manufacture, and costly.

Method used

Design an integrated gyroscope clamping plate that combines the receiving part, clamping part, positioning part and elastic part into a whole plate through one-time injection molding, realizing the functions of gyroscope installation, clamping, releasing and ejection.

Benefits of technology

It reduces failure rate and production costs, simplifies processing procedures, and improves performance and structural simplicity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a gyro clamping plate and a gyro launcher, the gyro clamping plate comprises a containing part, an elastic part, a clamping part and a positioning part which jointly form a plate formed by one-time injection molding, and the plate is provided with a first plate body part, a second plate body part and a third plate body part which are sequentially connected into a whole; the second plate body part is wider than the first plate body part, so that the two side ends extend to the left and right sides; the accommodating part is positioned on the front end surface of the first plate body part; the elastic parts extend forwards from the two side ends of the second plate body part, gaps are formed between the elastic parts and the side faces of the first plate body part, and the front ends of the battens forwards exceed the front end of the first plate body part. The clamping parts are symmetrically arranged at the front end parts of the two battens; the positioning part is configured to be a hook part located on the third plate body part. The plate integrates various functions, so that the matching relation is accurate, the performance is good, and the problem of dislocation or falling is avoided. Therefore, the number of parts of the gyro launcher is reduced, the gyro launcher is simple in structure and not prone to faults or damage, production procedures can be simplified, and cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a toy technical field, concretely relates to a gyro clamping plate spare and gyro launcher. BACKGROUND

[0002] The existing gyro launcher generally includes four parts of launcher shell, driving mechanism, launching mechanism and mounting mechanism. The mounting mechanism includes mounting position for mounting gyro, clamping piece for fixing gyro on mounting position to facilitate driving mechanism to accelerate gyro rotation, elastic member for pushing accelerated gyro away from mounting position, and releasing member for releasing clamping piece when elastic member is launched. In the existing gyro launcher, these components (mounting position, clamping piece, elastic member and releasing member) are basically independent, or two components are integrated. Such design results in more components of the gyro launcher, higher requirement for cooperation between components, and the need for elastic member (such as spring, torsion spring, etc.) to work, so that the gyro launcher has poor performance, and once a component is misaligned or falls off, the gyro launcher is prone to failure and cannot be used. In addition, there are problems of more components, manufacturing difficulty and high cost. SUMMARY

[0003] The utility model aims at the above-mentioned problems and deficiencies, and provides a gyro clamping plate spare, which integrates functions of various components of the existing mounting mechanism, effectively reduces failure rate and product cost, and further provides a gyro launcher, which has simple structure and improved performance.

[0004] The technical scheme of the utility model is implemented as follows:

[0005] The utility model discloses a kind of gyro clamping plate parts, including accommodating part, elastic part, clamping part and positioning part, it is characterized in that, the accommodating part, clamping part, positioning part and elastic part are jointly configured on the plate piece of disposable injection molding;The plate piece has first plate body part, second plate body part and third plate body part;The first plate body part is located at the front of the plate piece;The front end of the second plate body part is integrally connected with the rear end of the first plate body part, and the two side ends of the second plate body part are respectively extended in left and right directions relative to the first plate body part;The third plate body part is integrally connected in the rear end of the second plate body part and extends to rear;The accommodating part is configured as the recess position in the front end surface position of the first plate body part;The elastic part is configured as two strips extending forward from the two side ends of the second plate body part, and the gap between each of the strip and the side surface of the first plate body part is formed, and the front end of the strip exceeds the front end of the first plate body part;The clamping part is configured as two protrusions symmetrically arranged and located in the front end of the two strips;The positioning part is configured as hook part on the third plate body part.

[0006] In some embodiments, the clamping part includes clamping protrusions and pressure receiving protrusions; the clamping protrusions are protrusions extending from the protrusions to the middle position of the first plate body part in the left and right directions, and the two protrusions and the accommodating part jointly form an accommodating position for embedding the shaft of the gyroscope; the pressure receiving protrusions are protrusions extending from the protrusions away from the two sides of the first plate body part in the left and right directions, and the pressure receiving protrusions drive the elastic part to deform when pressed, so that the two clamping protrusions are relatively contracted to clamp the shaft of the gyroscope.

[0007] Further, the clamping part further includes a spreading protrusion, the spreading protrusion is integrally arranged at the front end of the protrusion, and the spreading protrusion has a spreading surface, and the spreading surface extends forward and outward from the front end surface of the protrusion.

[0008] In some embodiments, the front end of the first plate body part extends upward and / or downward to form a thickness of the front end of the first plate body part in the up and down directions greater than other parts of the first plate body part, and the accommodating part corresponds to a recess position penetrating through the front end in the up and down directions and recessed towards the rear end of the first plate body part.

[0009] In some embodiments, the third plate body part has a groove, the groove has a bottom and two sides, and the groove penetrates through the front and rear ends of the third plate body part in the length direction; the positioning part is arranged in the groove and relatively away from the position of the rear end of the third plate body part.

[0010] In some embodiments, the utility model also includes the guide part for guiding the plate member moving direction and moving distance, the guide part is arranged on the first plate body part and / or the second plate body part.

[0011] Further, the guide part is a guide groove arranged in the middle part of the first plate body part and the second plate body part and penetrating the plate member up and down; or the guide part includes the guide groove and two guide plates arranged on both sides of the second plate body part and extending forward, the guide plates are located on the outside of the plate strip and form a gap between the guide plates and the plate strip.

[0012] The utility model also provides a gyro launcher, its characterized in be including the gyro clamping plate member, still include launcher shell, drive mechanism and launch mechanism, the gyro clamping plate member movably installs on the launcher shell, the drive mechanism sets up on the launcher shell in the third plate body part one side position, the launch mechanism installs on the launcher shell in the third plate body department rear end position.

[0013] In some embodiments, the launcher shell includes mounting position, guide plate, reset plate and guide column; the gyro clamping plate member is placed in the mounting position and can move in the mounting position in the front and back directions; the guide plate is provided with two, and is located in the two sides of the mounting position respectively, and the relative distance of the front half of two guide plates is greater than the relative distance of the rear half of the guide plate, when the pressed convex part of the clamping part is located in the front half of the guide plate, the pressed convex part is not in contact with the guide plate, when the pressed convex part of the clamping part is located in the rear half of the guide plate, the pressed convex part is extruded by the guide plate and drives the elastic part to deform; the reset plate is arranged in the front end position of the mounting position, when the gyro clamping plate member moves forward to the contact of the supporting convex part of the clamping part and the reset plate, the supporting surface of the supporting convex part cooperates with the reset plate and drives the elastic part to deform and recover; the guide column is arranged in the middle position of the mounting position and extends into the guide groove of the guide part.

[0014] In some embodiments, the launcher shell is designed into the shell of one of the structure shapes of sword, knife, dagger or gun.

[0015] The utility model has the advantages of:

[0016] (1) The utility model discloses a gyro clamping plate part contains the department, clamping part, positioning part and elastic part and is jointly constructed on the plate part of one -off injection moulding, so that the plate part can install the gyro, can clamp the gyro in the containing department position and carry out acceleration, can also realize the function of the clamping, loosening and ejecting of gyro through the movement of the plate part itself, so each functional component is an entirety, so the cooperation relationship between each component is accurate, and the performance is good, and each functional component will not be misaligned or fall off, effectively reduces the failure rate and production cost.

[0017] (2) Since the gyro launcher of the utility model discloses adopts the gyro clamping plate part, so the components of the gyro launcher are greatly reduced, the gyro launcher is simple in structure, is not easy to malfunction or damage, and the machining production procedure can be simplified, and the cost is reduced.

[0018] The utility model will be further described below in connection with the drawings. DRAWINGS

[0019] Figure 1 It is the three-dimensional structure schematic diagram of the utility model gyro clamping plate part embodiment one;

[0020] Figure 2 It is the three-dimensional structure schematic diagram of the clamping part of the utility model gyro clamping plate part;

[0021] Figure 3 It is the three-dimensional structure schematic diagram of the containing department of the utility model gyro clamping plate part;

[0022] Figure 4 It is the three-dimensional structure schematic diagram of the third plate body part of the utility model gyro clamping plate part;

[0023] Figure 5 It is the three-dimensional structure schematic diagram of the utility model gyro clamping plate part embodiment two;

[0024] Figure 6 It is the three-dimensional structure schematic diagram of the utility model gyro launcher;

[0025] Figure 7 It is the assembly structure schematic diagram of the internal component of the utility model gyro launcher;

[0026] Figure 8 It is the internal structure schematic diagram of the launcher shell of the utility model gyro launcher.

[0027] Signs:

[0028] Plate part 100;

[0029] First plate body part 11, front end part 111, second plate body part 12, both sides end 121, third plate body part 13, recess 131, hook 132;

[0030] Accommodation part (recess) 2;

[0031] Elastic part (slat) 3;

[0032] Gap 31;

[0033] Clamping part 4;

[0034] Clamping convex part 41, pressure convex part 42, distraction convex part 43, distraction surface 431;

[0035] Positioning part (hook part) 5;

[0036] Guide part 6;

[0037] Guide groove 61, guide plate 62;

[0038] Transmitter housing 7;

[0039] Mounting position 71, guide plate 72, reset plate 73, guide column 74;

[0040] Driving mechanism 8;

[0041] Firing mechanism 9;

[0042] Firing button 91, clasp 92. DETAILED DESCRIPTION

[0043] The embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary only, only for explaining the present application, and cannot be understood as a limitation of the present application.

[0044] In the description of the present application, it is understood that the terms "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying 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 a limitation of the present application. In addition, the features limited as "first", "second" can explicitly or implicitly include one or more of the features, for distinguishing the described features, without order, without difference.

[0045] In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0046] In the description of the utility model, it is necessary to explain, unless another explicit provision and limitation, the term "fitting", "connection", "connection", "installation" should be broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through the intermediate medium, can be two elements inside the communication。For ordinary skilled in the art, the above-mentioned terms can be understood in the specific meaning of the utility model according to specific circumstances.

[0047] The utility model discloses a gyro launcher.

[0048] As Figure 1 And Figure 5 The utility model relates to a gyro clamping plate piece 100, including accommodating portion 2, elastic part 3, clamping part 4 and positioning part 5, the accommodating portion 2, elastic part 3, clamping part 4 and positioning part 5 are jointly configured to have accommodating portion 2, elastic part 3, clamping part 4 and positioning part 5 simultaneously on the plate piece 100 of disposable injection molding, i.e. an integral plate piece 100;The plate piece 100 has first plate body part 11, second plate body part 12 and third plate body part 13;First plate body part 11 is located at the front of plate piece 100;The front end of second plate body part 12 is integrally connected with the rear end of first plate body part 11, and the two side ends 121 of second plate body part 12 are respectively extended in the left and right directions relative to first plate body part 11, can be understood, first plate body part 11 and second plate body part 12 are combined into a plate block similar to "convex" character, wherein the wider part is second plate body part 12;Third plate body part 13 is integrally connected at the rear end of second plate body part 12 and extends rearwardly. It can be understood that first plate body part 11, second plate body part 12 and third plate body part 13 are only regional division expression to this integral plate piece 100, and there is no obvious connection trace between them, which is an integral itself.

[0049] The accommodating part 2 is a concave position 2 located at the front end face of the first plate body part 11, and is used for accommodating a gyroscope. The elastic part 3 is two plate strips 3 extending forward from the two side ends 121 of the second plate body part 12, each plate strip 3 is provided with a gap 31 between the side face on the same side of the first plate body part 11, and the plate strip 3 has plastic deformation ability due to the relatively long and thin structure. The gap 31 is provided to allow the plate strip 3 to have a space for deformation and bending. The front end of the plate strip 3 is located beyond the front end of the first plate body part 11. The clamping part 4 is two protrusions symmetrically arranged at the front end of the two plate strips 3, and the two clamping parts 4 and the accommodating part 2 jointly form a mounting position 71 of the gyroscope. When the elastic part 3 is deformed to drive the two clamping parts 4 to move close to each other, the gyroscope can be clamped in the mounting position 71 and cannot be separated. The positioning part 5 is a hook part 5 arranged on the third plate body part 13, and is used for being buckled with a hook 92 on a launching mechanism 9 of a gyroscope launcher when the plate member 100 is moved to a position where the gyroscope on the plate member 100 can be rotated and accelerated by a driving mechanism 8 of the gyroscope launcher. Therefore, the plate member 100 can be used for mounting, clamping and launching the gyroscope, and the functions of clamping, releasing and launching the gyroscope can be realized by moving the plate member 100 itself. Therefore, the cooperation relationship between the components is accurate, the performance is good, the components are not dislocated or separated, the failure rate and production cost are effectively reduced.

[0050] The deformation of the elastic part 3 can be caused by extrusion of the elastic part 3 itself during movement of the plate member 100, or can be caused by the clamping part 4. Figure 2 As shown in the embodiment, the clamping part 4 includes a clamping protrusion 41 and a pressure receiving protrusion 42. The clamping protrusion 41 is a protrusion extending to the middle of the first plate body part 11 along the left-right direction, and the two protrusions are located at the front sides of the accommodating part 2 and jointly form an accommodating position for the shaft of the gyroscope. The pressure receiving protrusion 42 is a protrusion extending away from the two sides of the first plate body part 11 along the left-right direction, and the pressure receiving protrusion 42 is deformed to bend in the direction of the gap 31 when being pressed, so that the two clamping protrusions 41 are relatively closed to clamp the shaft of the gyroscope. The pressure receiving protrusion 42 is arranged on the clamping part 4, so that the elastic part 3 has a columnar structure with an unchanged cross section, and the deformation ability is more stable.

[0051] The elastic part 3 itself has the ability of plastic deformation recovery, and the elastic part 3 automatically restores to a straight state when the pressure receiving protrusion 42 is not pressed. Further, in order to ensure that the elastic part 3 can be deformed and recovered in time to open the clamping part 4 when the plate member 100 launches the gyroscope,Figure 2 In the shown embodiment, the clamping portion 4 further comprises a spreading protrusion 43 integrally arranged at the front end of the protrusion, the spreading protrusion 43 has a spreading surface 431 extending from the front end of the protrusion to the front and outwardly inclined, that is, the spreading protrusion 43 is a right triangle, one of the right angle sides is located on the front end surface of the protrusion, and the other right angle side is located on the outer side of the spreading protrusion 43. When the elastic portion 3 is deformed and bent, the spreading surface 431 will deflect to the middle direction of the plate 100, that is, the angle between the spreading surface 431 and the axis of the plate 100 in the front-back direction becomes smaller; when the spreading surface 431 contacts the opposite inclined surface on the gyro launcher which has the same initial inclination angle as the spreading surface 431, the spreading surface 431 will be guided by the inclined surface to make the angle between the spreading surface 431 and the axis of the plate 100 in the front-back direction larger to restore to the initial angle, at the same time, because the spreading surface 431 is guided to reset, the elastic portion 3 is also reset synchronously.

[0052] In order to further make the shaft portion of the gyro placed in the accommodating portion 2 rotate more stably when driven to rotate by the driving mechanism 8, the front end portion 111 of the first plate body portion 11 can be extended upward and / or downward to form a front end portion 111 of the first plate body portion 11 having a thickness in the up-down direction larger than other parts of the first plate body portion 11. Understandably, the front end portion 111 has a protrusion protruding along the up-down direction, thereby forming a height difference between the front end portion 111 and other parts of the first plate body portion 11. The protrusion can only protrude upward, only protrude downward, or protrude upward and downward at the same time. Figure 3 In the shown embodiment, the front end portion 111 of the first plate body portion 11 is upwardly protruding to form a front end portion 111, and the accommodating portion 2 corresponds to a recessed position 2 penetrating the front end portion 111 upward and downward and recessed toward the rear end of the first plate body portion 11. The upward and downward penetration of the recessed position 2 can be suitable for gyroscopes with more shaft portion length sizes, and of course, the recessed position 2 can not be designed to be upward and downward penetrating, but can be a recessed position 2 not penetrating downward to form a support.

[0053] In order to make the plate 100 move more stably, the utility model further comprises a guide portion 6 for guiding the moving direction and distance of the plate 100. The guide portion 6 can be arranged only on the first plate body portion 11, only on the second plate body portion 12, or on both the first plate body portion 11 and the second plate body portion 12. In addition, the structure of the guide portion 6 can also be diverse, such as Figure 5In the shown embodiment, the guiding portion 6 of the embodiment is a separate structure, specifically a guiding groove 61 provided in the upper and lower through plate 100 in the middle of the first plate body portion 11 and the second plate body portion 12, at this time a guiding column 74 is provided on the corresponding gyro launcher in the upper, the guiding column 74 is a rectangular column, which extends into the guiding groove 61, the two side walls of the guiding groove 61 cooperate with the two side faces of the guiding column 74 to make the moving direction of the plate 100 straight, at the same time the guiding column 74 can limit the moving distance of the plate 100 in the guiding groove 61, avoiding that the plate 100 is damaged due to excessive movement and collision. Figure 1 In the shown embodiment, the guiding portion 6 of the embodiment includes the guiding groove 61 and two guiding plates 62 provided on the two side ends 121 of the second plate body portion 12 and extending forward, the guiding plates 62 are located outside the plate strip 3 and form a gap 31 with the plate strip 3, the gap 31 is also designed to make the elastic portion 3 have better deformation performance and not interfere with the deformation of the elastic portion 3, at this time vertical plates are provided on the two sides of the guiding plates 62 on the gyro launcher, the inner side face of the vertical plate cooperates with the outer side face of the guiding plate 62 to make the moving direction of the plate 100 straight, and the guiding column 74 of the gyro launcher only needs to be designed as a cylindrical column, the cylindrical guiding column 74 can limit the moving distance of the plate 100 in the guiding groove 61.

[0054] The third plate body portion 13 of the utility model can have the same width as the second plate body portion 12 or can be smaller than the second plate body portion 12, and the width of the third plate body portion 13 can be adjusted according to the modeling design requirements of the gyro launcher shell 7. Figure 4 In the shown embodiment, the third plate body portion 13 is smaller than the second plate body portion 12, and the width of the third plate body portion 13 is about half of the width of the second plate body portion 12, the third plate body portion 13 has a groove 131 with a bottom and two side portions, the groove 131 extends through the front and rear ends of the third plate body portion 13 in the length direction, and the positioning portion 5 is arranged in the groove 131 and is located away from the rear end of the third plate body portion 13.

[0055] As shown in the figure, Figure 6 to Figure 8 The utility model also relates to a gyro launcher, which comprises the gyro clamping plate and a launcher shell 7, a driving mechanism 8 and a launching mechanism 9, the gyro clamping plate is movably arranged on the launcher shell 7, the driving mechanism 8 is arranged on the launcher shell 7 at one side of the third plate body portion 13, and the launching mechanism 9 is arranged on the launcher shell 7 at the rear end of the third plate body portion 13. Since the gyro clamping plate is used, the components of the gyro launcher are greatly reduced, the structure of the gyro launcher is simple, the gyro launcher is not prone to failure or damage, the processing and production procedures are simplified, and the cost is reduced.

[0056] Specifically, as shown in the figure, Figure 8As shown, the transmitter housing 7 comprises a mounting position 71, a guide plate 72, a reset plate 73 and a guide column 74. The mounting position 71 is generally rectangular, the guide plate 72 is provided with two guide plates respectively located on both sides of the mounting position 71, the gyro clamping plate is arranged in the mounting position 71 and can move in the mounting position 71 along the front and back directions. The relative distance of the front half of the two guide plates 72 is greater than the relative distance of the rear half of the two guide plates 72. It can be understood that the two guide plates 72 can be arranged in a V-shaped style with the front being wide and the rear being narrow, or the front half of the two guide plates 72 can be parallel to each other, and the rear half of the two guide plates 72 can also be parallel to each other, and then the middle position is connected by an inclined plate to form a style with the front being wide and the rear being narrow. Figure 8 The style of the two guide plates 72 shown is the latter. When the stressed convex part 42 of the clamping part 4 is located at the front half of the guide plate 72, the stressed convex part 42 does not contact the guide plate 72; when the stressed convex part 42 of the clamping part 4 is located at the rear half of the guide plate 72, the stressed convex part 42 is extruded by the guide plate 72 to cause the elastic part 3 to deform. The reset plate 73 is provided at the front end position of the mounting position 71, and the reset plate 73 has the same inclined surface as the initial inclined angle of the opening surface 431 of the opening convex part 43. The inclined surface is opposite to the opening surface 431. When the gyro clamping plate moves forward to the position where the opening convex part 43 contacts the reset plate 73, the opening surface 431 cooperates with the inclined surface of the reset plate 73 to cause the elastic part 3 to deform and recover. The guide column 74 is provided at the middle position of the mounting position 71. The guide column 74 is a cylinder which extends into the guide groove 61 of the guide part 6. The guide column 74 and the guide groove 61 cooperate to limit the movement distance of the plate 100. The rear half of the guide plate 72 of the gyro transmitter also cooperates with the guide plate 62 of the guide part 6 to limit the front and back movement direction of the plate 100 to be flat.

[0057] The gyro clamping plate of the utility model can be applied to various shaped gyro launchers, and does not constitute a limitation on the shape of the gyro launcher housing 7. In some embodiments, the launcher housing 7 can be a conventional rectangular housing, a pistol-shaped housing, etc. The launcher housing 7 can also be designed as a housing with the structure shape of a sword, a knife, a dagger or a gun. Figure 6 As shown, the launcher of the gyro transmitter is shaped as a sword structure, and the gyro clamping plate is mounted at the position where the sword blade and the sword handle are connected. The sword blade is provided with a sliding groove for guiding the gyro shooting path, and the mounting part of the gyro clamping plate is located at the tail end of the sliding groove. Figure 7As shown, the drive mechanism 8 of the gyroscope launcher is a pull-cord drive mechanism 8, with its pull-cord end (not shown) extending outside the sword-shaped launcher housing 7. The drive gear of the pull-cord drive mechanism 8 faces the center of the plate 100 and is located below the plate 100 to avoid interference with it. The launch mechanism 9 of the gyroscope launcher includes a launch button 91 and a latch 92. The latch 92 is located in the groove 131 of the third plate portion 13. When the plate 100 moves backward, the latch 92 moves forward relative to the groove 131 and eventually engages with the positioning part 5 located in the groove 131, thereby fixing the gyroscope clamping plate in the rearward position. When the launch button 91 is pressed, the latch 92 disengages from the positioning part 5, and the gyroscope clamping plate moves forward quickly, launching the gyroscope. To enable the gyroscope clamping plate to move forward quickly, a push plate can be provided in the gyroscope launcher to push it forward quickly. However, to simplify the structure, such as Figure 7 In the embodiment shown, a hook 132 is provided on the third plate portion 13 of the gyroscope clamping plate. The hook 132 is used to connect to one end of a tension spring (not shown in the figure), while the other end of the tension spring is fixedly connected to the transmitter housing 7. When the gyroscope clamping plate moves backward, the tension spring is stretched and stores energy; when the launch button 91 is pressed, the tension spring releases energy and drives the gyroscope clamping plate to move forward quickly.

[0058] The operation method of the gyro launcher is as follows: the gyro is put into the sliding groove opening of the sword blade tip, then the gyro is moved backward along the sliding groove, the shaft part of the gyro is put into the mounting part of the gyro clamping plate, then the gyro is continuously moved backward, at this time the gyro drives the gyro clamping plate to move backward until the positioning part 5 is buckled with the hook 92 of the launching mechanism 9, at this time the gyro clamping plate stops moving, the tension spring is in the stretched state, and the pressed convex part 42 of the clamping part 4 is located at the rear half of the guide plate 72, so that the pressed convex part 42 is pressed to drive the elastic part 3 to bend to the direction of the inside gap 31, so that the two clamping convex parts 41 are relatively closed to clamp the shaft part of the gyro, thus the gyro is limited in the containing part 2, and the gear at the lower end of the shaft part of the gyro is just engaged with the driving gear of the driving mechanism 8; then the driving gear is driven to rotate by pulling the pull rope, so that the gyro is rotated and accelerated; when the acceleration is completed, the hook 92 is buckled with the positioning part 5 by pressing the launching button 91, at this time the gyro clamping plate is quickly moved forward under the tension of the tension spring, and drives the gyro to move forward; when the opening convex part 43 of the gyro clamping plate contacts the reset plate 73, the opening surface 431 cooperates with the inclined surface of the reset plate 73 to drive the elastic part 3 to deform and recover, so that the clamping part 4 is opened, and the guide column 74 moves to the last end of the guide groove 61, so that the gyro clamping plate is suddenly stopped from moving forward, and the gyro continues to be shot forward and rotates forward along the sliding groove due to inertia and the loss of clamping of the clamping part 4, and finally falls off the gyro launcher, realizing the rotary launching of the gyro.

[0059] In the description of the present specification, the description of the terms "embodiment", "example" and the like means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0060] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A gyro clamping plate member comprising a receiving portion, a resilient portion, a clamping portion and a positioning portion, characterized in that: the receiving portion, the clamping portion, the positioning portion and the resilient portion are collectively configured on a one-time injection molded plate member; the plate member has a first plate body portion, a second plate body portion and a third plate body portion; the first plate body portion is located at the front of the plate member; the front end of the second plate body portion is integrally connected with the rear end of the first plate body portion, and the two side ends of the second plate body portion respectively extend in the left and right directions relative to the first plate body portion; the third plate body portion is integrally connected to the rear end of the second plate body portion and extends rearward; the receiving portion is configured as a recessed position located at the front end surface of the first plate body portion; the resilient portion is configured as two plate strips extending forward from the two side ends of the second plate body portion, each of the plate strips forms a gap with the side surface of the first plate body portion on the same side, and the front end of the plate strip exceeds the front end of the first plate body portion; the clamping portion is configured as two protrusions symmetrically arranged and located at the front end of the two plate strips; and the positioning portion is configured as a hook portion located on the third plate body portion.

2. The gyro clamping plate member of claim 1 wherein, the clamping portion comprises a clamping protrusion and a pressure receiving protrusion; the clamping protrusion is a protruding portion of the protrusion extending in the left and right directions to the middle position of the first plate body portion, and the two protruding portions and the receiving portion collectively configure a receiving position for the shaft portion of the gyro to be embedded; the pressure receiving protrusion is a protruding portion of the protrusion extending in the left and right directions away from the two sides of the first plate body portion, and the pressure receiving protrusion drives the resilient portion to deform when subjected to pressure, so that the two clamping protrusions are relatively closed to clamp the shaft portion of the gyro.

3. The gyro clamping plate member of claim 2 wherein, the clamping portion further comprises a spreading protrusion integrally arranged at the front end of the protrusion, and the spreading protrusion has a spreading surface extending obliquely forward and outward from the front end surface of the protrusion.

4. The gyro clamping plate member of claim 1 wherein, the front end portion of the first plate body portion extends upward and / or downward to configure that the thickness of the front end portion of the first plate body portion in the up and down directions is greater than other parts of the first plate body portion, and the receiving portion corresponds to a recessed position that penetrates the front end portion in the up and down directions and is recessed in the direction of the rear end of the first plate body portion.

5. The gyro clamping plate member of claim 1 wherein, the third plate body portion has a groove with a bottom and two side portions, and the groove penetrates the front and rear ends of the third plate body portion in the length direction; the positioning portion is arranged in the groove and is relatively away from the rear end of the third plate body portion.

6. The gyro clamping plate member of claim 1 wherein, a guide portion for guiding the moving direction and distance of the plate member is further included, and the guide portion is arranged on the first plate body portion and / or the second plate body portion.

7. The gyro clamping plate member of claim 6 wherein, the guide portion is a guide groove arranged in the middle of the first plate body portion and the second plate body portion and penetrating the plate member in the up and down directions; or the guide portion comprises the guide groove and two guide plates arranged at the two side ends of the second plate body portion and extending forward, and the guide plates are located outside the plate strips and form gaps with the plate strips.

8. A gyro launcher characterized by, The gyro clamping plate member as claimed in any one of claims 1-7, further comprising a launcher housing, a driving mechanism and a launching mechanism, the gyro clamping plate member being movably mounted on the launcher housing, the driving mechanism being arranged on the launcher housing at a position on one side of the third plate body portion, and the launching mechanism being mounted on the launcher housing at a position on the rear end of the third plate body portion.

9. The gyro launcher of claim 8, wherein, The launcher housing comprises a mounting position, a guide plate, a reset plate and a guide column; The gyro clamping plate member is arranged in the mounting position and is movable in the mounting position in the front-rear direction; The guide plate comprises two guide plates respectively arranged on both sides of the mounting position, and the relative distance between the front half of the two guide plates is greater than the relative distance between the rear half of the two guide plates, so that when the pressed convex portion of the clamping portion is located in the front half of the guide plate, the pressed convex portion is not in contact with the guide plate, and when the pressed convex portion of the clamping portion is located in the rear half of the guide plate, the pressed convex portion is extruded by the guide plate to cause the elastic portion to deform; The reset plate is arranged at the front end of the mounting position, and when the gyro clamping plate member moves forward to the point where the opening convex portion of the clamping portion is in contact with the reset plate, the opening surface of the opening convex portion cooperates with the reset plate to cause the elastic portion to deform and recover; The guide column is arranged at the middle of the mounting position and extends into the guide groove of the guide portion.

10. The gyro launcher of claim 8, wherein, The launcher housing is designed in the shape of a sword, a knife, a dagger or a gun.