Throwing toy pen
By incorporating a spinning mechanism into the toy pen and utilizing inertia and eccentric drive design, the problem of existing toy pens lacking playability and fun is solved, thereby enhancing both playability and stress relief.
Patent Information
- Application Number
- CN202422656055.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing toy pens lack playability and fun, and have poor stress-relieving effects.
A swing mechanism is set on the pen body, including a swing base, a swing linkage, and a swing flywheel. By swinging the pen body, the inertia is used to make the swing flywheel swing out or swing into the swing base. Combined with the eccentric drive and arc-shaped acceleration gear design, the swing linkage and flywheel are made playable and operable.
It improves the playability and operability of the toy pen, provides a good stress-relieving effect, and increases entertainment and fun.
Smart Images

Figure CN223574088U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a toy technical field, especially a kind of whirling toy pen. BACKGROUND
[0002] Pen is a kind of writing tool in daily life, usually only have writing function, lack of entertainment and interesting. User can only play through rotating pen in addition to writing. Therefore, some manufacturers develop some new toy pen on the basis of pen, for example, setting a doll at the top of pen barrel, reach the purpose of providing interesting by the unique, lovely shape of doll, but because doll is usually static, or simply design the head of doll as rotatable dynamic, lead to this kind of toy pen lack of playability and interesting, and the effect of stress relief is also poor. SUMMARY
[0003] Therefore, the utility model aims at overcoming the defects of prior art, provides a kind of whirling toy pen, by whirling pen body can utilize inertia and whirling flywheel on whirling connecting rod is thrown out or thrown into whirling base, and the operability and playability are higher, both can improve the interesting of toy and can play a good role in stress relief.
[0004] In order to realize the above-mentioned purpose, the utility model employs the technical scheme that:
[0005] A kind of whirling toy pen, including pen body, whirling mechanism, the whirling mechanism includes whirling base, whirling connecting rod, whirling flywheel, the whirling base is arranged at one end of the pen body, one end of the whirling connecting rod is rotatably arranged in the whirling base, and the other end of the whirling connecting rod rotatably provided with the whirling flywheel, and one end of the whirling connecting rod provided with the whirling flywheel can be thrown into the inside of the whirling base or thrown out of the whirling base.
[0006] Therefore, the whirling toy pen of the utility model embodiment, by setting whirling mechanism on pen body, specifically make one end of whirling connecting rod rotatably arranged on whirling base, the other end of whirling connecting rod rotatably provided with whirling flywheel, in this way, user can make whirling connecting rod under the action of inertia by quickly whirling pen body, one end of whirling connecting rod provided with whirling flywheel is thrown out of whirling base, and whirling flywheel also rotates simultaneously;That is to say, user can make whirling flywheel throw out and rotate by whirling action of pen body, can improve the playability and operability of whirling toy pen, and user can also play a certain stress relief effect by whirling action of pen body;In addition, user can also throw back whirling connecting rod and whirling flywheel into whirling base by reverse whirling pen body, in this way, user can repeatedly whirling pen body back and forth, so that whirling flywheel is thrown out or thrown into constantly, more interesting and entertaining.
[0007] As an implementation form, the whirling base is provided with a gap for the whirling connecting rod and the whirling flywheel to whirl out.
[0008] As an implementation form, the whirling connecting rod is provided with a rotating sleeve at one end away from the whirling flywheel. The rotating sleeve is a tubular structure with two open ends. The whirling base is provided with a connecting rod base shaft. The rotating sleeve is rotatably sleeved on the connecting rod base shaft.
[0009] As an implementation form, one end surface of the rotating sleeve is coaxially provided with a sleeve gear. The whirling base is rotatably provided with a driving gear. The driving gear is in meshing connection with the sleeve gear. An eccentric driving shaft is arranged on the end surface of the driving gear. The pen body is telescopically provided with a driving connecting rod along the length direction. One end of the driving connecting rod extends into the whirling base. A driving connecting block is arranged at the end of the driving connecting rod extending into the whirling base. The driving connecting block is provided with a driving sliding groove. The eccentric driving shaft is arranged in the driving sliding groove. The driving connecting rod is used to drive the driving connecting block to slide along the length direction of the pen body, so that the driving sliding groove on the driving connecting block drives the eccentric driving shaft to rotate circumferentially, and then the driving gear drives the sleeve gear to rotate.
[0010] As an implementation form, the driving connecting rod is provided with a push block at a part of the pen body. The pen body is provided with a limiting sliding groove along the length direction for the push block to slide. The push block is slidably arranged in the limiting sliding groove, and the push block protrudes out of the pen body.
[0011] As an implementation form, one end of the whirling connecting rod provided with the whirling flywheel is provided with a flywheel sleeve. A flywheel rotating shaft is coaxially arranged on the whirling flywheel. The flywheel rotating shaft is rotatably arranged in the flywheel sleeve.
[0012] As an implementation form, the whirling base is provided with an arc-shaped guide rod. The arc-shaped guide rod is coaxially arranged with the connecting rod base shaft. The inner arc surface of the arc-shaped guide rod is provided with arc-shaped acceleration teeth. The flywheel rotating shaft is rigidly provided with flywheel acceleration teeth coaxially. The flywheel acceleration teeth are in meshing connection with the arc-shaped acceleration teeth.
[0013] As an implementation form, the bottom of the whirling base is provided with a plug-in sleeve. The plug-in sleeve is plug-pullably arranged at one end of the pen body.
[0014] As an implementation form, one end of the pen body away from the whirling base is provided with a pen opening. The pen body is telescopically provided with a pen core along the length direction. The pen core can be extended out of the pen opening or retracted into the pen body.
[0015] For better understanding and implementation, the utility model is explained in detail below in combination with the drawings. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is whole structure schematic diagram of the utility model spinning toy pen;
[0017] Figure 2 It is whole structure schematic diagram of the utility model spinning toy pen;
[0018] Figure 3 It is whole structure schematic diagram of the utility model spinning toy pen;
[0019] Figure 4 It is exploded schematic view of the utility model spinning toy pen;
[0020] Figure 5 It is exploded schematic view of the utility model spinning toy pen;
[0021] Figure 6 It is internal structure schematic diagram of the utility model spinning toy pen;
[0022] Figure 7 It is internal structure schematic diagram of the utility model spinning toy pen.
[0023] BRIEF DESCRIPTION OF DRAWINGS
[0024] 10, pen body;11, drive connecting rod;12, drive connecting block;13, drive sliding slot;14, push block;20, spinning mechanism;21, spinning base;22, drive gear;23, plug-in sleeve;24, notch;25, arc-shaped guide rod;26, arc-shaped acceleration tooth;27, eccentric drive shaft;30, spinning connecting rod;31, rotating sleeve;32, sleeve gear;33, flywheel sleeve;40, spinning flywheel;41, flywheel rotating shaft;42, flywheel acceleration tooth. DETAILED DESCRIPTION
[0025] For further illustrating each embodiment, the utility model provides with the drawing. These drawings are part of the utility model disclosure, mainly used to illustrate the embodiment, and can cooperate with the relevant description of the specification to explain the operation principle of the embodiment. With reference to these contents, the ordinary skilled in the art should understand other possible implementation modes and the advantages of the utility model.
[0026] The pen is a writing tool in daily life, usually only has a writing function, lacks entertainment and interest. The user can only play by rotating the pen after writing. Thus, some manufacturers develop some new toy pens on the basis of the pen, for example, setting a doll at the top of the pen barrel, and providing the interest by virtue of the unique and lovely shape of the doll. However, since the doll is usually static or the head of the doll is designed to be rotatable, the toy pen lacks playability and interest, and the stress relieving effect is poor.
[0027] In view of this, the utility model provides a whirling toy pen, according to the whirling toy pen of the utility model embodiment, through whirling the pen body 10, the whirling flywheel 40 on the whirling connecting rod 30 can be whirled out or whirled in the whirling base 21 by inertia, the operability and playability are higher, the interest of the toy can be improved, and a better stress relieving effect can be achieved.
[0028] Please refer to Figures 1 to 7 The utility model embodiment provides a whirling toy pen, including pen body 10, whirling mechanism 20, whirling mechanism 20 includes whirling base 21, whirling connecting rod 30, whirling flywheel 40, whirling base 21 is set in one end of pen body 10, and one end of whirling connecting rod 30 is rotatably arranged in whirling base 21, and the other end of whirling connecting rod 30 rotatably is provided with whirling flywheel 40, and one end of whirling connecting rod 30 provided with whirling flywheel 40 can be whirled into the inside of whirling base 21 or whirled out of whirling base 21.
[0029] Thus, the whirling toy pen of the utility model embodiment, by setting whirling mechanism 20 on pen body 10, specifically make one end of whirling connecting rod 30 rotatably arranged on whirling base 21, the other end of whirling connecting rod 30 rotatably is provided with whirling flywheel 40, in this way, the user whirling pen body 10 quickly can make whirling connecting rod 30 under the action of inertia, one end of whirling connecting rod 30 provided with whirling flywheel 40 whirled out of whirling base 21, and whirling flywheel 40 also rotates simultaneously;That is to say, the user whirling pen body 10 can make whirling flywheel 40 whirled out and rotate, can improve the playability and operability of whirling toy pen, and the user whirling pen body 10 can also play a certain stress relieving effect;In addition, the user can also whirling pen body 10 in reverse to make whirling connecting rod 30 and whirling flywheel 40 whirled back into whirling base 21, in this way, the user can repeatedly whirling pen body 10 back and forth, so that whirling flywheel 40 whirled out or whirled in constantly, more interesting and entertaining.
[0030] In some embodiments of the utility model, the whirling base 21 is provided with a gap 24 for the whirling connecting rod 30 and the whirling flywheel 40 to whirl out. Specifically, the whirling connecting rod 30 is provided with a rotating sleeve 31 at one end away from the whirling flywheel 40, the rotating sleeve 31 is a tubular structure with two open ends, the whirling base 21 is provided with a connecting rod base shaft, and the rotating sleeve 31 is rotatably sleeved on the connecting rod base shaft.
[0031] In the above embodiments, one end surface of the rotating sleeve 31 is coaxially provided with a sleeve gear 32, and the whirling base 21 is rotatably provided with a driving gear 22, and the driving gear 22 is in meshing connection with the sleeve gear 32. It can be understood that in these embodiments, the meshing connection between the driving gear 22 and the sleeve gear 32 makes the rotation of the whirling connecting rod 30 more stable and smooth.
[0032] In some embodiments of the utility model, the end surface of the driving gear 22 is provided with an eccentric driving shaft 27, the pen body 10 is telescopically provided with a driving connecting rod 11 along the length direction, one end of the driving connecting rod 11 extends into the whirling base 21, and the end of the driving connecting rod 11 extending into the whirling base 21 is provided with a driving connecting block 12, the driving connecting block 12 is provided with a driving sliding groove 13, and the eccentric driving shaft 27 is arranged in the driving sliding groove 13; the driving connecting rod 11 is used for driving the driving connecting block 12 to slide along the length direction of the pen body 10, so that the driving sliding groove 13 on the driving connecting block 12 drives the eccentric driving shaft 27 to rotate circumferentially, and then the driving gear 22 drives the sleeve gear 32 to rotate. In addition, the part of the driving connecting rod 11 located on the pen body 10 is provided with a push block 14, the pen body 10 is provided with a limiting sliding groove for the push block 14 to slide along the length direction, the push block 14 is slidably arranged in the limiting sliding groove, and the push block 14 protrudes out of the pen body 10.
[0033] It can be understood that, in these embodiments, the driving link 11 is slidably arranged on the pen body 10, and the end of the driving link 11 extending into the whirling base 21 is provided with the driving link block 12, and the driving sliding groove 13 for driving the eccentric driving shaft 27 to rotate circumferentially is arranged on the driving link block 12, so that the eccentric driving shaft 27 can drive the driving gear 22 to rotate synchronously while rotating circumferentially, and then drive the sleeve gear 32 to rotate, and finally drive the whirling link 30 to rotate, so that the whirling flywheel 40 can whirl out of the whirling base 21 or whirl into the whirling base 21. That is, by adopting such a structure design, the user can drive the push block 14 to slide in the limiting sliding groove, so that the driving link 11 drives the driving link block 12 to slide along the length direction of the pen body 10, so that the eccentric driving shaft 27 on the driving gear 22 is eccentrically designed, and the eccentric driving shaft 27 is arranged in the driving sliding groove 13 of the driving link block 12, so that the driving link block 12 can drive the eccentric driving shaft 27 to rotate circumferentially, and then drive the driving gear 22 and the sleeve gear 32 to rotate, and finally make the whirling link 30 and the whirling flywheel 40 rotate. When the push block 14 is slid back and forth, the whirling link 30 and the whirling flywheel 40 on the whirling link 30 can repeatedly whirl out of the whirling base 21 and whirl into the whirling base 21.
[0034] In some embodiments of the utility model, the whirling link 30 is provided with the flywheel sleeve 33 at one end of the whirling flywheel 40, the flywheel rotating shaft 41 is coaxially arranged on the whirling flywheel 40, and the flywheel rotating shaft 41 is rotatably arranged in the flywheel sleeve 33. Further, in these embodiments, the arc-shaped guide rod 25 is arranged on the whirling base 21, the arc-shaped guide rod 25 is coaxially arranged with the link base shaft, the inner arc surface of the arc-shaped guide rod 25 is provided with the arc-shaped acceleration tooth 26, the flywheel acceleration tooth 42 is rigidly arranged coaxially on the flywheel rotating shaft 41, and the flywheel acceleration tooth 42 is meshingly connected with the arc-shaped acceleration tooth 26. It can be understood that, in these embodiments, the arc-shaped guide rod 25 is arranged in the whirling base 21, the arc-shaped acceleration tooth 26 is arranged on the inner arc surface of the arc-shaped guide rod 25, and the flywheel acceleration tooth 42 on the whirling flywheel 40 is meshingly arranged on the arc-shaped acceleration tooth 26, so that the flywheel acceleration tooth 42 can rotate under the action of the arc-shaped acceleration tooth 26 during the rotation of the whirling link 30, so that the rotation speed of the whirling flywheel 40 is further improved.
[0035] In some embodiments of this utility model, a plug-in sleeve 23 is provided at the bottom of the swing base 21, and the plug-in sleeve 23 is detachably disposed at one end of the pen body 10. It can be understood that in these embodiments, the plug-in sleeve is inserted into the pen body 10 in an interference fit manner to facilitate the assembly between the swing base 21 and the pen body 10, and at the same time improve the connection stability between the swing base 21 and the pen body 10, preventing the swing base 21 from easily detaching from the pen body 10 during the user's swinging of the pen body 10.
[0036] In some embodiments of this utility model, as one implementation method, a pen opening is provided at one end of the pen body 10 away from the swing base 21, and a pen core is provided on the pen body 10 in a retractable manner along its length direction. The pen core can extend out of the pen opening or retract into the pen body 10.
[0037] The following is for reference. Figures 1 to 7 The following is a detailed description of an optional embodiment of the toy pen according to the present invention. It is worth understanding that the following description is merely illustrative and should not be construed as limiting the present invention.
[0038] like Figures 1 to 7 As shown, the spinning toy pen of this embodiment includes a pen body 10 and a spinning mechanism 20. The spinning mechanism 20 includes a spinning base 21, a spinning connecting rod 30, and a spinning flywheel 40. The bottom of the spinning base 21 is provided with a plug-in sleeve 23, which is interference-fitted into one end of the pen body 10. The top of the spinning base 21 is provided with a notch 24. One end of the spinning connecting rod 30 is rotatably disposed in the spinning base 21, and the other end of the spinning connecting rod 30 is rotatably provided with the spinning flywheel 40. The end of the spinning connecting rod 30 with the spinning flywheel 40 can be thrown into the interior of the spinning base 21 or thrown out of the notch 24 of the spinning base 21.
[0039] Specifically, in this embodiment, a rotating sleeve 31 is provided at the end of the swing connecting rod 30 away from the swing flywheel 40. The rotating sleeve 31 is a cylindrical structure with open ends. A connecting rod base shaft is provided in the swing base 21, and the rotating sleeve 31 is rotatably sleeved on the connecting rod base shaft. In order to make the rotation of the swing connecting rod 30 more stable and smooth, in this embodiment, a sleeve gear 32 is coaxially provided on one end face of the rotating sleeve 31, and a drive gear 22 is rotatably provided in the swing base 21. The drive gear 22 is meshed with the sleeve gear 32.
[0040] Furthermore, in this embodiment, the swing linkage 30 is provided with a flywheel sleeve 33 at one end of the swing flywheel 40, and a flywheel shaft 41 is coaxially provided on the swing flywheel 40, which is rotatably disposed in the flywheel sleeve 33. The swing base 21 is provided with an arc-shaped guide rod 25, which is coaxially arranged with the linkage base shaft. An arc-shaped acceleration tooth 26 is provided on the inner arc surface of the arc-shaped guide rod 25. A flywheel acceleration tooth 42 is rigidly coaxially provided on the flywheel shaft 41, and the flywheel acceleration tooth 42 meshes with the arc-shaped acceleration tooth 26.
[0041] In actual use, the user can hold the pen body 10 and quickly swing the pen body 10 in the direction of the swing linkage 30. In this way, the swing linkage 30 will be thrown outward of the swing base 21 under the action of inertia. At the same time, the flywheel acceleration tooth 42 on the swing flywheel 40 will rotate rapidly under the action of the arc acceleration tooth 26 until the swing linkage 30 is thrown out of the notch 24. At this time, the swing flywheel 40 is in a state of high-speed rotation, while the swing linkage 30 is against one end of the notch 24. Then, the user can swing the pen body 10 in the opposite direction to make the spinning flywheel 40 and the spinning linkage 30 return to the spinning base 21, and then swing the pen body 10 quickly and forcefully in the direction of the spinning linkage 30 to throw the spinning linkage 30 and the spinning flywheel 40 out again to play. Repeating the back and forth swinging of the pen body 10 many times can make the spinning linkage 30 and the spinning flywheel 40 swing in and out continuously. In this process, it can have a good stress-relieving effect on the user, and the entertainment and fun are also high.
[0042] In other words, according to this embodiment of the spinning toy pen, by setting a spinning mechanism 20 on the pen body 10, specifically, one end of the spinning linkage 30 is rotatably mounted on the spinning base 21, and the other end of the spinning linkage 30 is rotatably mounted with a spinning flywheel 40. In this way, by quickly spinning the pen body 10, the user can cause the spinning linkage 30, under the action of inertia, to swing the end of the spinning linkage 30 with the spinning flywheel 40 out of the spinning base 21, and at the same time, the spinning flywheel 40 will also rotate; that is to say... By swinging the pen body 10, the user can cause the spinning flywheel 40 to swing out and rotate, which can improve the playability and operability of the spinning toy pen. In addition, the user can also relieve some stress by swinging the pen body 10. Furthermore, the user can swing the pen body 10 in the opposite direction to make the spinning linkage 30 and the spinning flywheel 40 swing back into the spinning base 21. In this way, the user can repeat the back-and-forth swinging of the pen body 10 many times, so that the spinning flywheel 40 is continuously swinging out and in, making it more fun and entertaining.
[0043] The following is for reference. Figures 1 to 7 The following is a detailed description of an optional embodiment of the toy pen according to the present invention. It is worth understanding that the following description is merely illustrative and should not be construed as limiting the present invention.
[0044] As Figures 1 to 7 shown, the spinning toy pen of the embodiment comprises a pen body 10, a spinning mechanism 20, the spinning mechanism 20 comprising a spinning base 21, a spinning connecting rod 30, a spinning flywheel 40, the bottom of the spinning base 21 being provided with a plug-in sleeve 23, the plug-in sleeve 23 being plug-in fitted at one end of the pen body 10, the top of the spinning base 21 being provided with a notch 24, one end of the spinning connecting rod 30 being rotatably arranged in the spinning base 21, and the other end of the spinning connecting rod 30 being rotatably provided with the spinning flywheel 40, and the end of the spinning connecting rod 30 provided with the spinning flywheel 40 being capable of spinning into the interior of the spinning base 21 or spinning out of the notch 24 of the spinning base 21.
[0045] The end of the spinning connecting rod 30 of the embodiment away from the spinning flywheel 40 is provided with a rotating sleeve 31, the rotating sleeve 31 being a tubular structure with both ends open, the spinning base 21 being provided with a connecting rod base shaft, and the rotating sleeve 31 being rotatably sleeved on the connecting rod base shaft. In order to make the rotation of the spinning connecting rod 30 more stable and smooth, in the embodiment, one end face of the rotating sleeve 31 is coaxially provided with a sleeve gear 32, the spinning base 21 is rotatably provided with a driving gear 22, the driving gear 22 is in meshing connection with the sleeve gear 32; further, an eccentric driving shaft 27 is arranged on the end face of the driving gear 22, the pen body 10 is telescopically provided with a driving connecting rod 11 along the length direction thereof, one end of the driving connecting rod 11 extends into the spinning base 21, and the end of the driving connecting rod 11 extending into the spinning base 21 is provided with a driving connecting block 12, the driving connecting block 12 is provided with a driving sliding groove 13, and the eccentric driving shaft 27 is arranged in the driving sliding groove 13; the driving connecting rod 11 is used to drive the driving connecting block 12 to slide along the length direction of the pen body 10, so that the driving sliding groove 13 on the driving connecting block 12 drives the eccentric driving shaft 27 to rotate circumferentially, and further drives the driving gear 22 to rotate the sleeve gear 32. In addition, the part of the driving connecting rod 11 located at the pen body 10 is provided with a push block 14, the pen body 10 is provided with a limiting sliding groove along the length direction thereof for the push block 14 to slide, the push block 14 is slidably arranged in the limiting sliding groove, and the push block 14 protrudes out of the pen body 10.
[0046] Further, the end of the spinning connecting rod 30 of the embodiment provided with the spinning flywheel 40 is provided with a flywheel sleeve 33, the spinning flywheel 40 is coaxially provided with a flywheel rotating shaft 41, and the flywheel rotating shaft 41 is rotatably arranged in the flywheel sleeve 33. Among them, the spinning base 21 is provided with an arc-shaped guide rod 25, the arc-shaped guide rod 25 is coaxially arranged with the connecting rod base shaft, the inner arc face of the arc-shaped guide rod 25 is provided with an arc-shaped acceleration tooth 26, the flywheel rotating shaft 41 is rigidly provided with a flywheel acceleration tooth 42 coaxially, and the flywheel acceleration tooth 42 is in meshing connection with the arc-shaped acceleration tooth 26.
[0047] In use, the user can hold the pen body 10 and push the push block 14 in one direction with the thumb to drive the driving link 11 and the driving link 12 to slide, in the sliding process of the driving link 12, the driving sliding groove 13 drives the eccentric driving shaft 27 to rotate synchronously, and the driving gear 22 rotates synchronously, and the sleeve gear 32 rotates, thereby driving the swinging link 30 to swing out of the notch of the swinging base 21; in the swinging process of the swinging link 30, the flywheel accelerating tooth 42 on the swinging flywheel 40 rotates rapidly under the action of the arc-shaped accelerating tooth 26 until the swinging link 30 swings out of the notch 24, at this time, the swinging flywheel 40 is in a high-speed rotating state, and the swinging link 30 abuts against one end of the notch 24. When the user drives the push block 14 to slide reversely, the eccentric driving shaft 27 is reversely rotated through the driving link 11 and the driving link 12, thereby reversely rotating the swinging link 30 and swinging back into the swinging base 21. That is to say, in the embodiment, the user can drive the swinging link 30 and the swinging flywheel 40 on the swinging link 30 to swing out of and into the swinging base 21 repeatedly by sliding the push block 14 back and forth.
[0048] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "left", "right", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential" and the like are 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 device or element 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.
[0049] The above embodiments only express several embodiments of the present application, and the description is relatively specific and detailed, but it cannot be understood as limiting the scope of the swinging toy pen of the present application. It should be pointed out that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application.
Claims
1. A spinning toy pen, characterized in that: comprising a pen body, a spinning mechanism, the spinning mechanism comprising a spinning base, a spinning connecting rod and a spinning flywheel, the spinning base is arranged at one end of the pen body, one end of the spinning connecting rod is rotatably arranged in the spinning base, the other end of the spinning connecting rod is rotatably arranged with the spinning flywheel, and the end of the spinning connecting rod arranged with the spinning flywheel can spin into or out of the inside of the spinning base.
2. The spinning toy pen according to claim 1, characterized in that: the spinning base is provided with a gap for the spinning of the spinning connecting rod and the spinning flywheel.
3. The spinning toy pen according to claim 1, characterized in that: the end of the spinning connecting rod away from the spinning flywheel is provided with a rotating sleeve, the rotating sleeve is a tubular structure with two open ends, the spinning base is provided with a connecting rod base shaft, and the rotating sleeve is rotatably sleeved on the connecting rod base shaft.
4. The spinning toy pen according to claim 3, characterized in that: one end surface of the rotating sleeve is coaxially provided with a sleeve gear, the spinning base is rotatably provided with a driving gear, the driving gear is in meshing connection with the sleeve gear, the end surface of the driving gear is provided with an eccentric driving shaft, the pen body is telescopically provided with a driving connecting rod along the length direction thereof, one end of the driving connecting rod extends into the spinning base, the end of the driving connecting rod extending into the spinning base is provided with a driving connecting block, the driving connecting block is provided with a driving sliding groove, and the eccentric driving shaft is arranged in the driving sliding groove.
5. The spinning toy pen according to claim 4, characterized in that: the part of the driving connecting rod located in the pen body is provided with a push block, the pen body is provided with a limiting sliding groove for the sliding of the push block along the length direction thereof, the push block is slidably arranged in the limiting sliding groove, and the push block protrudes out of the pen body.
6. The spinning toy pen according to claim 3, characterized in that: the end of the spinning connecting rod arranged with the spinning flywheel is provided with a flywheel sleeve, the spinning flywheel is coaxially provided with a flywheel rotating shaft, and the flywheel rotating shaft is rotatably arranged in the flywheel sleeve.
7. The spinning toy pen according to claim 6, characterized in that: the spinning base is provided with an arc-shaped guide rod, the arc-shaped guide rod is coaxially arranged with the connecting rod base shaft, the inner arc surface of the arc-shaped guide rod is provided with arc-shaped acceleration teeth, the flywheel rotating shaft is rigidly provided with flywheel acceleration teeth coaxially, and the flywheel acceleration teeth are in meshing connection with the arc-shaped acceleration teeth.
8. The spinning toy pen according to claim 1, characterized in that: the bottom of the spinning base is provided with a plug-in sleeve, and the plug-in sleeve is plug-in arranged at one end of the pen body. 9. The spinning toy pen according to claim 1, wherein: an end of the pen body away from the spinning base is provided with a pen opening, and the pen body is telescopically provided with a pen core along the length direction of the pen body, the pen core being capable of being extended out of the pen opening or retracted into the pen body.