Toy pen
By using a sliding drive to move the doll's transforming parts and the armor's transforming parts in opposite directions, the problem of the toy pen lacking playability and fun is solved, achieving dynamic transformation and stress reduction effects.
Patent Information
- Application Number
- CN202423298617.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing toy pens lack playability and fun, and their static doll design results in poor stress relief.
The sliding drive mechanism causes the first and second sliding parts to slide in opposite directions, causing the doll and armor to transform and move respectively. The dynamic transformation of the doll and armor is achieved by using a reverse gear and guide groove structure.
This improves the playability and fun of the toy pen, enhances its entertainment value, and also has a certain stress-relieving effect.
Smart Images

Figure CN223934431U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toy pen technology, and in particular to a toy pen. Background Technology
[0002] A common pen is a writing tool used in daily life, usually only for writing and lacking entertainment and fun. Users can only play with it by spinning it when they're not writing. As a result, some manufacturers have developed new toy pens based on the standard pen, such as attaching a doll to the top of the pen barrel. The doll's unique and cute shape is used to provide fun, but because the doll is usually designed to be static, these toy pens lack playability and fun, and their stress-relieving effect is also poor. Utility Model Content
[0003] Based on this, the purpose of this utility model is to overcome the shortcomings of the prior art and provide a toy pen that can drive the first sliding member and the second sliding member to slide in opposite directions through a sliding drive slider, so that the doll transformation member and the armor transformation member can move and transform respectively, which can effectively improve the playability and fun of the toy pen, and can also play a certain role in stress relief.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0005] A toy pen includes a pen body, a sliding base, a first slider, a second slider, a doll-shaped component, an armor-shaped component, and a drive slider;
[0006] The sliding base is coaxially disposed at one end of the pen body. The first sliding member and the second sliding member are slidably disposed on the sliding base, and the first sliding member and the second sliding member are in reverse linkage engagement. The doll transformation member is connected to the first sliding member, the armor transformation member is connected to the second sliding member, and the doll transformation member and the armor transformation member are in guiding engagement. The driving slide member is slidably disposed on the pen body, and the driving slide member is connected to the first sliding member.
[0007] The driving slider is used to drive the first slider and the second slider to slide in opposite directions on the sliding base, so as to drive the doll transforming part and the armor transforming part to slide in opposite directions and cause the doll transforming part and the armor transforming part to move and deform respectively.
[0008] In one embodiment, a reverse gear is rotatably provided in the sliding base, a first rack is provided on the first sliding member, and a second rack is provided on the second sliding member. Both the first rack and the second rack mesh with the reverse gear, and the first rack and the second rack are respectively located on both sides of the reverse gear.
[0009] The driving slider is used to drive the first slider to slide, so that the first rack on the first slider drives the reverse gear to rotate, and then the reverse gear drives the second rack and the second slider to slide in the opposite direction of the first slider.
[0010] In one embodiment, the doll transforming component includes a doll body and two legs that are rotatably disposed at the bottom of the doll body. The doll body is connected to the first sliding member, and the two legs are respectively provided with a first guide portion. The armor transforming component includes an armor portion, which is connected to the second sliding member. The armor portion has a receiving groove extending through it along its sliding direction, and the receiving groove is respectively provided with a second guide portion that guides and cooperates with the two first guide portions.
[0011] When the armor part slides in the opposite direction to the doll body and its two legs, the first guide part and the second guide part cooperate to guide the two legs to rotate.
[0012] In one embodiment, the first guide portion is a first guide post, the second guide portion is a first guide groove, and the first guide post is slidably disposed in the first guide groove.
[0013] In one embodiment, the armor section has freely rotatable arm sections on both sides, and the arm sections are provided with first arc-shaped blocks; the sliding base is provided with second arc-shaped blocks, and the second arc-shaped blocks are located on the sliding path of the first arc-shaped blocks;
[0014] When the second slider causes the armor and the arm to slide, the first arc-shaped block can cooperate with the second arc-shaped block to make the arm rotate.
[0015] In one embodiment, a cover plate is provided on the side of the armor portion away from the second sliding member, allowing it to rotatably.
[0016] In one embodiment, a breastplate is rotatably provided on the armor section, a second guide groove is provided on the breastplate, and a second guide post is provided on the doll body that guides and cooperates with the second guide groove, the second guide post being limited and slidably in the second guide groove;
[0017] When the armor part slides in the opposite direction to the doll body, the second guide post and the second guide groove cooperate to guide the chest armor part to rotate.
[0018] In one embodiment, a rotating arm is rotatably provided on the chest armor, a third guide post is provided on the rotating arm, and a third guide groove adapted to the third guide post is provided on the armor, with the third guide post being limited and slidably disposed in the third guide groove.
[0019] When the armor part slides in the opposite direction to the doll body, the second guide post and the second guide groove cooperate to guide the chest armor part to rotate, and at the same time, the third guide groove on the armor part cooperates with the third guide post to guide the rotating arm part to rotate.
[0020] In one embodiment, the pen body includes a pen barrel and a pen refill. The pen refill is disposed in the pen barrel, and the writing end of the pen refill extends toward the end of the pen barrel away from the sliding base. The driving slider is slidably disposed in the pen barrel. A limiting notch is formed on the outer side wall of the pen barrel along its length direction. A pushing part is formed on the driving slider that extends out of the limiting notch, and the pushing part is slidably disposed in the limiting notch.
[0021] In one embodiment, the pen barrel is provided with a telescopic locking mechanism. The end of the driving slider away from the first sliding member cooperates with the telescopic locking mechanism. The driving slider drives the writing end of the pen core to extend or retract toward the end of the pen barrel away from the sliding base through the telescopic locking mechanism.
[0022] Compared with traditional technologies, the advantages of the toy pen described in this utility model are:
[0023] The toy pen of this embodiment, in addition to having basic writing functions, can drive a first sliding member and a second sliding member to slide in opposite directions via a driving slider. During this sliding process, the first sliding member guides the doll-shaped transforming member and the armor-shaped transforming member on the second sliding member to cooperate, so that the doll-shaped transforming member and the armor-shaped transforming member cooperate and trigger an action transformation. When the doll-shaped transforming member and the armor-shaped transforming member slide in opposite directions, the two legs of the doll-shaped transforming member rotate under the guidance of the armor part. At the same time, when the armor part slides away from the two legs, the two legs of the doll-shaped transforming member are exposed. Furthermore, during this process, the chest armor on the armor section rotates under the guidance of the doll transformation component, and in conjunction with the armor section, the rotating arm on the chest armor section can further rotate; in addition, the two arms on the armor section can rotate under the abutment of the second arc-shaped block of the sliding base; thus, the toy pen of this embodiment, through the cooperation of the sliding base, the first slider, the second slider, the doll transformation component, the armor transformation component, and the driving slider, can effectively improve the playability and dynamic effect of the toy pen, thereby further enhancing the fun and entertainment of the toy pen, and providing a certain stress-relieving effect. Moreover, the driving slider of this embodiment can not only be used as the driving mechanism for the first slider, but also as the driving mechanism for the telescopic locking mechanism. In this way, the user can not only drive the doll transformation component and the armor transformation component to transform by sliding the driving slider, but also drive the pen tip to extend or retract by sliding the driving slider.
[0024] To better understand and implement this invention, the following detailed description is provided in conjunction with the accompanying drawings. Attached Figure Description
[0025] Figure 1 This is one of the structural schematic diagrams of the toy pen according to Embodiment 1 of this utility model;
[0026] Figure 2 This is the second structural schematic diagram of the toy pen according to Embodiment 1 of this utility model;
[0027] Figure 3 This is the third structural schematic diagram of the toy pen according to Embodiment 1 of this utility model;
[0028] Figure 4 This is the fourth structural schematic diagram of the toy pen according to Embodiment 1 of this utility model;
[0029] Figure 5 This is one of the exploded view diagrams of the toy pen according to Embodiment 1 of this utility model;
[0030] Figure 6 This is the second exploded view of the toy pen according to Embodiment 1 of this utility model;
[0031] Figure 7This is the third exploded view of the toy pen according to Embodiment 1 of this utility model;
[0032] Figure 8 This is one of the structural schematic diagrams of the toy pen according to Embodiment 2 of this utility model;
[0033] Figure 9 This is the second structural schematic diagram of the toy pen according to Embodiment 2 of this utility model;
[0034] Figure 10 This is one of the exploded view diagrams of the toy pen according to Embodiment 2 of this utility model;
[0035] Figure 11 This is the second exploded view of the toy pen according to Embodiment 2 of this utility model;
[0036] Figure 12 This is one of the structural schematic diagrams of the toy pen doll transformation part and armor transformation part in Embodiment 2 of this utility model;
[0037] Figure 13 for Figure 12 The diagram shows the exploded view of the doll's transforming parts and the armor's transforming parts;
[0038] Figure 14 This is the second structural schematic diagram of the toy pen doll transformation part and armor transformation part in Embodiment 2 of this utility model;
[0039] Figure 15 for Figure 14 The diagram shows the exploded view of the doll's transforming parts and the armor's transforming parts.
[0040] Explanation of reference numerals in the attached figures:
[0041] 10. Pen body; 11. Pen barrel; 12. Pen refill; 13. Telescopic locking mechanism; 14. Limiting notch; 20. Sliding base; 21. Reverse gear; 22. Second arc-shaped block; 30. First sliding member; 31. First rack; 40. Second sliding member; 41. Second rack; 50. Doll transformation part; 51. Doll body; 52. Leg; 53. First guide post; 54. Second guide post; 60. Armor transformation part; 61. Armor part; 62. First guide groove; 63. Arm part; 64. First arc-shaped block; 65. Cover plate; 66. Chest armor part; 67. Second guide groove; 68. Rotating arm part; 69. Third guide post; 70. Drive slider; 71. Pushing part. Detailed Implementation
[0042] To further illustrate the various embodiments, the present invention provides accompanying drawings. These drawings are part of the disclosure of the present invention and are mainly used to illustrate the embodiments, and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these drawings, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention.
[0043] A common pen is a writing tool used in daily life, usually only for writing and lacking entertainment and fun. Users can only play with it by spinning it when they're not writing. As a result, some manufacturers have developed new toy pens based on the standard pen, such as attaching a doll to the top of the pen barrel. The doll's unique and cute shape is used to provide fun, but because the doll is usually designed to be static, these toy pens lack playability and fun, and their stress-relieving effect is also poor.
[0044] In view of this, the present invention provides a toy pen. According to an embodiment of the present invention, the toy pen, through a sliding drive slider, can cause the first slider and the second slider to slide in opposite directions, causing the doll-shaped part and the armor-shaped part to transform and move respectively, which can effectively improve the playability and fun of the toy pen, and also play a certain role in stress relief.
[0045] Example 1
[0046] Please see Figures 1 to 7 This utility model embodiment provides a toy pen, including a pen body 10, a sliding base 20, a first sliding member 30, a second sliding member 40, a doll-shaped transforming member 50, an armor-shaped transforming member 60, and a driving sliding member 70. The sliding base 20 is coaxially disposed at one end of the pen body 10. The first sliding member 30 and the second sliding member 40 are slidably disposed on the sliding base 20, and the first sliding member 30 and the second sliding member 40 are in reverse linkage. The doll-shaped transforming member 50 is connected to the first sliding member 30, and the armor-shaped transforming member 60... The first slider 30 is connected to the second slider 40, and the doll transforming part 50 is guided and engaged with the armor transforming part 60; the driving slider 70 is slidably disposed on the pen body 10, and the driving slider 70 is connected to the first slider 30; the driving slider 70 is used to drive the first slider 30 and the second slider 40 to slide in opposite directions on the sliding base 20, so as to drive the doll transforming part 50 and the armor transforming part 60 to slide in opposite directions and cause the doll transforming part 50 and the armor transforming part 60 to deform respectively.
[0047] Specifically, in this embodiment of the invention, a reverse gear 21 is rotatably provided in the sliding base 20, a first rack 31 is provided on the first sliding member 30, and a second rack 41 is provided on the second sliding member 40. Both the first rack 31 and the second rack 41 mesh with the reverse gear 21, and the first rack 31 and the second rack 41 are respectively located on both sides of the reverse gear 21. The driving slide member 70 is used to drive the first sliding member 30 to slide, so that the first rack 31 on the first sliding member 30 drives the reverse gear 21 to rotate, and then the reverse gear 21 drives the second rack 41 and the second sliding member 40 to slide in the opposite direction of the first sliding member 30.
[0048] To ensure smooth connection between the first sliding member 30, the second sliding member 40, and the reverse gear 21, in this embodiment of the invention, the sliding base 20 is provided with a first limiting groove for the first sliding member 30 to slide; the sliding base 20 is provided with a second limiting groove for the second sliding member 40 to slide; the reverse gear 21 is a double-layer gear structure with unequal diameters, and the two ends of the shaft of the reverse gear 21 are rotatably disposed in the sliding base 20, wherein the first sliding member 30 meshes with the smaller diameter gear of the reverse gear 21, and the second sliding member 40 meshes with the larger diameter gear of the reverse gear 21, and the first sliding member 30 and the second sliding member 40 are respectively located on both sides of the reverse gear 21, so as to ensure that when the first sliding member 30 drives the reverse gear 21 to rotate during the sliding process, the reverse gear 21 can drive the second sliding member 40 to slide in the opposite direction to the sliding direction of the first sliding member 30.
[0049] In this embodiment of the invention, the doll transforming component 50 includes a doll body 51 and two legs 52 rotatably disposed at the bottom of the doll body 51. The doll body 51 is connected to the first sliding component 30. Each of the two legs 52 is provided with a first guide portion. The armor transforming component 60 includes an armor portion 61, which is connected to the second sliding component 40. The armor portion 61 has a receiving groove extending through it along its sliding direction. Each receiving groove is provided with a second guide portion that guides and cooperates with the two first guide portions. Thus, when the armor portion 61 slides in the opposite direction to the doll body 51 and its two legs 52, the first guide portion and the second guide portion cooperate to guide the two legs 52 to rotate.
[0050] In this embodiment, the first guide part is a first guide post 53, and the second guide part is a first guide groove 62. The first guide post 53 is slidably positioned within the first guide groove 62. It can be understood that, in this embodiment, the first guide groove 62 can be an inclined groove structure, an arc-shaped groove structure, or a groove structure consisting of a straight line and a curve. Utilizing the structural characteristics of the first guide groove 62, when the first guide groove 62 and the first guide post 53 slide in opposite directions, the first guide post 53 can slide along the direction of the first guide groove 62, thereby causing the legs 52 to rotate relative to the doll body 51, simulating the dynamic effect of the two legs 52 opening or closing. It is worth noting that, in this embodiment, the rotational connection between the legs 52 and the doll body 51 can adopt a conventional rotating structure of a rotating shaft and sleeve, which will not be elaborated further here.
[0051] Furthermore, in this embodiment of the invention, the armor portion 61 is provided with freely rotatable arm portions 63 on both sides, and the arm portions 63 are provided with first arc-shaped blocks 64; the sliding base 20 is provided with second arc-shaped blocks 22, and the second arc-shaped blocks 22 are located on the sliding path of the first arc-shaped blocks 64; in this way, when the second sliding member 40 drives the armor portion 61 and the arm portions 63 to slide, the first arc-shaped blocks 64 can cooperate with the second arc-shaped blocks 22 to make the arm portions 63 rotate.
[0052] This can be understood as follows: when the second slider 40 drives the armor part 61 to slide on the sliding base 20, the first arc-shaped block 64 on the arm part 63 can pass through the second arc-shaped block 22 and rotate under the contact of the second arc-shaped block 22, thereby driving the arm part 63 to rotate, thus simulating the dynamic effect of the two arms 63 opening or closing. In other words, when the doll body 51 and the armor part 61 slide in opposite directions, the two legs 52 of the doll body 51 can rotate, and the two arms 63 on the armor part 61 can rotate, so that both the doll transforming part 50 and the armor transforming part 60 can have a dynamic effect of motion deformation when sliding in opposite directions.
[0053] Furthermore, a cover plate 65 is rotatably provided on the side of the armor section 61 away from the second sliding member 40. The cover plate 65 can be rotatably mounted on the armor section 61 through a pivot structure, so that the cover plate 65 can be rotated by flicking it with a finger, further enriching the movement and deformation effects of the armor section 61.
[0054] In this embodiment of the invention, the pen body 10 includes a pen barrel 11 and a pen core 12. The pen core 12 is disposed in the pen barrel 11, and the writing end of the pen core 12 extends toward the end of the pen barrel 11 away from the sliding base 20. The driving slider 70 is slidably disposed in the pen barrel 11. A limiting notch 14 is formed on the outer side wall of the pen barrel 11 along its length direction. The driving slider 70 is provided with a pushing part 71 extending out of the limiting notch 14, and the pushing part 71 is slidably disposed in the limiting notch 14. It can be understood that the user can push the pushing part 71 back and forth with his / her finger to make the driving slider 70 slide back and forth on the pen barrel 11, which facilitates the user's operation of the driving slider 70.
[0055] Optionally, in some embodiments of this utility model, a telescopic locking mechanism 13 is provided inside the pen barrel 11. The end of the driving slider 70 away from the first sliding member 30 cooperates with the telescopic locking mechanism 13. The driving slider 70 drives the writing end of the pen tip 12 to extend or retract toward the end of the pen barrel 11 away from the sliding base 20 through the telescopic locking mechanism 13. It is worth understanding that in these embodiments, the telescopic locking mechanism 13 is a conventional pressing structure in the art, mainly used to control the extension or retraction of the pen tip 12, and will not be described in detail here.
[0056] Furthermore, in some embodiments of this invention, a pen tip may be threaded onto the pen barrel 11 to facilitate the fixing and replacement of the pen refill 12. Adding a pen cap prevents the pen refill 12 from being easily damaged due to its inability to retract into the pen barrel 11. This type of pen body structure 10 is a conventional pen structure in the art and will not be described in detail here.
[0057] Therefore, the toy pen of this embodiment, in addition to having basic writing functions, can drive the first slider 30 and the second slider 40 to slide in opposite directions via the drive slider 70. During the sliding process, the first slider 30 guides the doll transformation piece 50 and the armor transformation piece 60 on the second slider 40 to cooperate, so that the doll transformation piece 50 and the armor transformation piece 60 cooperate with each other and trigger action transformation. When the doll transformation piece 50 and the armor transformation piece 60 slide in opposite directions, the two legs 52 of the doll transformation piece 50 rotate under the guidance of the armor part 61, and at the same time, the armor... When the armor portion 61 slides away from the two legs 52, the two legs 52 of the doll transformation piece 50 are exposed. During this process, the two arms 63 on the armor portion 61 can rotate under the abutment of the second arc-shaped block 22 of the sliding base 20. Thus, the toy pen of this embodiment, through the cooperation of the sliding base 20, the first slider 30, the second slider 40, the doll transformation piece 50, the armor transformation piece 60, and the driving slider 70, can effectively improve the playability and dynamic effects of the toy pen, further enhancing its fun and entertainment value, and providing a certain stress-relieving effect. Furthermore, the driving slider 70 of this embodiment can not only be used as the driving mechanism for the first slider 30, but also as the driving mechanism for the telescopic locking mechanism 13. In this way, the user can not only drive the doll transformation piece 50 and the armor transformation piece 60 to transform by sliding the driving slider 70, but also extend or retract the pen core 12 by sliding the driving slider 70.
[0058] Example 2
[0059] Please see Figures 8 to 15 This utility model embodiment provides a toy pen, including a pen body 10, a sliding base 20, a first sliding member 30, a second sliding member 40, a doll-shaped transforming member 50, an armor-shaped transforming member 60, and a driving sliding member 70. The sliding base 20 is coaxially disposed at one end of the pen body 10. The first sliding member 30 and the second sliding member 40 are slidably disposed on the sliding base 20, and the first sliding member 30 and the second sliding member 40 are in reverse linkage. The doll-shaped transforming member 50 is connected to the first sliding member 30, and the armor-shaped transforming member 60... The first slider 30 is connected to the second slider 40, and the doll transforming part 50 is guided and engaged with the armor transforming part 60; the driving slider 70 is slidably disposed on the pen body 10, and the driving slider 70 is connected to the first slider 30; the driving slider 70 is used to drive the first slider 30 and the second slider 40 to slide in opposite directions on the sliding base 20, so as to drive the doll transforming part 50 and the armor transforming part 60 to slide in opposite directions and cause the doll transforming part 50 and the armor transforming part 60 to deform respectively.
[0060] Specifically, in this embodiment of the invention, a reverse gear 21 is rotatably provided in the sliding base 20, a first rack 31 is provided on the first sliding member 30, and a second rack 41 is provided on the second sliding member 40. Both the first rack 31 and the second rack 41 mesh with the reverse gear 21, and the first rack 31 and the second rack 41 are respectively located on both sides of the reverse gear 21. The driving slide member 70 is used to drive the first sliding member 30 to slide, so that the first rack 31 on the first sliding member 30 drives the reverse gear 21 to rotate, and then the reverse gear 21 drives the second rack 41 and the second sliding member 40 to slide in the opposite direction of the first sliding member 30.
[0061] To ensure smooth connection between the first sliding member 30, the second sliding member 40, and the reverse gear 21, in this embodiment of the invention, the sliding base 20 is provided with a first limiting groove for the first sliding member 30 to slide; the sliding base 20 is provided with a second limiting groove for the second sliding member 40 to slide; the reverse gear 21 is a double-layer gear structure with unequal diameters, and the two ends of the shaft of the reverse gear 21 are rotatably disposed in the sliding base 20, wherein the first sliding member 30 meshes with the smaller diameter gear of the reverse gear 21, and the second sliding member 40 meshes with the larger diameter gear of the reverse gear 21, and the first sliding member 30 and the second sliding member 40 are respectively located on both sides of the reverse gear 21, so as to ensure that when the first sliding member 30 drives the reverse gear 21 to rotate during the sliding process, the reverse gear 21 can drive the second sliding member 40 to slide in the opposite direction to the sliding direction of the first sliding member 30.
[0062] In this embodiment of the invention, the doll transforming component 50 includes a doll body 51 and two legs 52 rotatably disposed at the bottom of the doll body 51. The doll body 51 is connected to the first sliding component 30. Each of the two legs 52 is provided with a first guide portion. The armor transforming component 60 includes an armor portion 61, which is connected to the second sliding component 40. The armor portion 61 has a receiving groove extending through it along its sliding direction. Each receiving groove is provided with a second guide portion that guides and cooperates with the two first guide portions. Thus, when the armor portion 61 slides in the opposite direction to the doll body 51 and its two legs 52, the first guide portion and the second guide portion cooperate to guide the two legs 52 to rotate.
[0063] In this embodiment, the first guide part is a first guide post 53, and the second guide part is a first guide groove 62. The first guide post 53 is slidably positioned within the first guide groove 62. It can be understood that, in this embodiment, the first guide groove 62 can be an inclined groove structure, an arc-shaped groove structure, or a groove structure consisting of a straight line and a curve. Utilizing the structural characteristics of the first guide groove 62, when the first guide groove 62 and the first guide post 53 slide in opposite directions, the first guide post 53 can slide along the direction of the first guide groove 62, thereby causing the legs 52 to rotate relative to the doll body 51, simulating the dynamic effect of the two legs 52 opening or closing. It is worth noting that, in this embodiment, the rotational connection between the legs 52 and the doll body 51 can adopt a conventional rotating structure of a rotating shaft and sleeve, which will not be elaborated further here.
[0064] Furthermore, in this embodiment of the invention, a chest plate portion 66 is rotatably provided on the armor portion 61, and a second guide groove 67 is provided on the chest plate portion 66. A second guide post 54 is provided on the doll body 51 to guide and cooperate with the second guide groove 67, and the second guide post 54 is limited to slide within the second guide groove 67. In this way, when the armor portion 61 and the doll body 51 slide in opposite directions, the second guide post 54 cooperates with the second guide groove 67 to guide the chest plate portion 66 to rotate.
[0065] Furthermore, in this embodiment of the present invention, a rotating arm 68 is rotatably provided on the chest armor 66, a third guide post 69 is provided on the rotating arm 68, and a third guide groove adapted to the third guide post 69 is provided on the armor 61. The third guide post 69 is limited and slidably disposed in the third guide groove. Thus, when the armor 61 slides in the opposite direction to the doll body 51, the second guide post 54 and the second guide groove 67 cooperate to guide the chest armor 66 to rotate, while the third guide groove on the armor 61 and the third guide post 69 cooperate to guide the rotating arm 68 to rotate.
[0066] This can be understood as follows: when the armor part 61 slides in the opposite direction to the doll body 51, the second guide post 54 slides linearly along with the doll body 51. As a result, the second guide groove 67, guided by the second guide post 54, causes the chest armor part 66 to rotate relative to the armor part 61. Furthermore, during the rotation of the chest armor part 66 and the sliding of the armor part 61, the third guide post 69 on the rotating arm part 68 also guides the third guide groove of the armor part 61, causing the third guide post 69 to slide along the third guide groove, thereby causing the rotating arm part 68 to rotate as well. In other words, during the reverse sliding between the armor part 61 and the doll body 51, the two legs 52 of the doll body 51 can rotate, and simultaneously, the chest armor part 66 and the rotating arm part 68 can rotate. This allows both the doll transformation part 50 and the armor transformation part 60 to exhibit dynamic deformation effects during the reverse sliding.
[0067] In addition, in this embodiment of the present invention, the pen body 10 includes a pen barrel 11 and a pen core 12. The pen core 12 is disposed in the pen barrel 11, and the writing end of the pen core 12 extends toward the end of the pen barrel 11 away from the sliding base 20. The driving slider 70 is slidably disposed in the pen barrel 11. A limiting notch 14 is formed on the outer side wall of the pen barrel 11 along its length direction. The driving slider 70 is provided with a pushing part 71 extending out of the limiting notch 14. The pushing part 71 is slidably disposed in the limiting notch 14. It can be understood that the user can push the pushing part 71 back and forth with his / her finger to make the driving slider 70 slide back and forth on the pen barrel 11, which facilitates the user's operation of the driving slider 70.
[0068] Optionally, in some embodiments of this utility model, a telescopic locking mechanism 13 is provided inside the pen barrel 11. The end of the driving slider 70 away from the first sliding member 30 cooperates with the telescopic locking mechanism 13. The driving slider 70 drives the writing end of the pen tip 12 to extend or retract toward the end of the pen barrel 11 away from the sliding base 20 through the telescopic locking mechanism 13. It is worth understanding that in these embodiments, the telescopic locking mechanism 13 is a conventional pressing structure in the art, mainly used to control the extension or retraction of the pen tip 12, and will not be described in detail here.
[0069] Furthermore, in some embodiments of this invention, a pen tip may be threaded onto the pen barrel 11 to facilitate the fixing and replacement of the pen refill 12. Adding a pen cap prevents the pen refill 12 from being easily damaged due to its inability to retract into the pen barrel 11. This type of pen body structure 10 is a conventional pen structure in the art and will not be described in detail here.
[0070] Therefore, the toy pen of this embodiment, in addition to having basic writing functions, can drive the first slider 30 and the second slider 40 to slide in opposite directions via the drive slider 70. During the sliding process, the first slider 30 guides the doll transformation piece 50 and the armor transformation piece 60 on the second slider 40 to cooperate, so that the doll transformation piece 50 and the armor transformation piece 60 cooperate with each other and trigger the transformation action. When the doll transformation piece 50 and the armor transformation piece 60 slide in opposite directions, the two legs 52 of the doll transformation piece 50 rotate under the guidance of the armor part 61, while the armor part 61 moves away from the two legs. When the part 52 slides in the direction of the doll transformation part 50, the two legs 52 of the doll transformation part 50 can be exposed. In this process, the chest armor part 66 on the armor part 61 rotates under the guidance of the doll transformation part 50. In addition, the rotating arm part 68 on the chest armor part 66 can be rotated further by the armor part 61. In this way, the toy pen of this utility model embodiment can effectively improve the playability and dynamic effect of the toy pen through the cooperation of the sliding base 20, the first sliding part 30, the second sliding part 40, the doll transformation part 50, the armor transformation part 60, and the driving slide 70, so as to further enhance the fun and entertainment of the toy pen and play a certain role in stress relief. In addition, the driving slide 70 of this utility model embodiment can not only be used as the driving mechanism of the first sliding part 30, but also as the driving mechanism of the telescopic locking mechanism 13. In this way, the user can not only drive the doll transformation part 50 and the armor transformation part 60 to transform by sliding the driving slide 70, but also drive the pen core 12 to extend or retract by sliding the driving slide 70.
[0071] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "left", "right", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on this utility model.
[0072] The above-described embodiments are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the toy pen. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these modifications and improvements all fall within the protection scope of this utility model.
Claims
1. A toy pen, characterized in that: It includes the pen body, sliding base, first slider, second slider, doll transformation part, armor transformation part, and drive slider; The sliding base is coaxially disposed at one end of the pen body. The first sliding member and the second sliding member are slidably disposed on the sliding base, and the first sliding member and the second sliding member are linked and engaged in opposite directions. The doll transformation member is connected to the first sliding member, the armor transformation member is connected to the second sliding member, and the doll transformation member and the armor transformation member are guided and engaged. The driving slider is slidably disposed on the pen body, and the driving slider is connected to the first slider; The driving slider is used to drive the first slider and the second slider to slide in opposite directions on the sliding base, so as to drive the doll transforming part and the armor transforming part to slide in opposite directions and cause the doll transforming part and the armor transforming part to move and deform respectively.
2. The toy pen according to claim 1, characterized in that: A reverse gear is rotatably provided in the sliding base. A first rack is provided on the first sliding member, and a second rack is provided on the second sliding member. Both the first rack and the second rack mesh with the reverse gear, and the first rack and the second rack are respectively located on both sides of the reverse gear. The driving slider is used to drive the first slider to slide, so that the first rack on the first slider drives the reverse gear to rotate, and then the reverse gear drives the second rack and the second slider to slide in the opposite direction of the first slider.
3. The toy pen according to claim 1, characterized in that: The doll transforming component includes a doll body and two legs that can be freely rotated and disposed at the bottom of the doll body. The doll body is connected to the first sliding component, and the two legs are respectively provided with a first guide portion. The armor transforming component includes an armor portion, which is connected to the second sliding component. The armor portion has a receiving groove extending through it along its sliding direction, and the receiving groove is respectively provided with a second guide portion that guides and cooperates with the two first guide portions. When the armor part slides in the opposite direction to the doll body and its two legs, the first guide part and the second guide part cooperate to guide the two legs to rotate.
4. The toy pen according to claim 3, characterized in that: The first guide part is a first guide post, and the second guide part is a first guide groove. The first guide post is slidably positioned in the first guide groove.
5. The toy pen according to claim 3, characterized in that: The armor section has freely rotatable arm sections on both sides, and each arm section has a first arc-shaped block; the sliding base has a second arc-shaped block, and the second arc-shaped block is located on the sliding path of the first arc-shaped block; When the second slider causes the armor and the arm to slide, the first arc-shaped block can cooperate with the second arc-shaped block to make the arm rotate.
6. The toy pen according to claim 5, characterized in that: A cover plate is rotatably provided on the side of the armor portion away from the second sliding member.
7. The toy pen according to claim 3, characterized in that: The armor section is rotatably provided with a chest plate section, the chest plate section is provided with a second guide groove, and the doll body is provided with a second guide post that guides and cooperates with the second guide groove. The second guide post is limited and slides in the second guide groove. When the armor part slides in the opposite direction to the doll body, the second guide post and the second guide groove cooperate to guide the chest armor part to rotate.
8. The toy pen according to claim 7, characterized in that: The chest armor is provided with a rotating arm that can be rotatably mounted. The rotating arm is provided with a third guide post. The armor is provided with a third guide groove that is adapted to the third guide post. The third guide post is slidably mounted in the third guide groove. When the armor part slides in the opposite direction to the doll body, the second guide post and the second guide groove cooperate to guide the chest armor part to rotate, and at the same time, the third guide groove on the armor part cooperates with the third guide post to guide the rotating arm part to rotate.
9. The toy pen according to claim 1, characterized in that: The pen body includes a pen barrel and a pen refill. The pen refill is disposed in the pen barrel, and the writing end of the pen refill extends toward the end of the pen barrel away from the sliding base. The driving slider is slidably disposed in the pen barrel. A limiting notch is formed on the outer side wall of the pen barrel along its length direction. A pushing part is formed on the driving slider that extends out of the limiting notch. The pushing part is slidably disposed in the limiting notch.
10. The toy pen according to claim 9, characterized in that: The pen barrel is equipped with a telescopic locking mechanism. The end of the driving slider away from the first sliding member cooperates with the telescopic locking mechanism. The driving slider drives the writing end of the pen core to extend or retract toward the end of the pen barrel away from the sliding base through the telescopic locking mechanism.