Candy stick toy

By introducing a rotating platform component and a ball bearing structure into the candy bar toy, the dynamic rotation and extension of the head shape can be achieved, solving the problem of insufficient interactivity in existing toys and enhancing the toy's fun and market competitiveness.

CN223799210UActive Publication Date: 2026-01-16SHANTOU DINGXIANGDA PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202522664309.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-16
Publication Date
2026-01-16
Estimated Expiration
2035-12-16

AI Technical Summary

Technical Problem

Existing candy bar toys have a simple doll connection structure that cannot achieve rotation or sliding movements, resulting in insufficient interactivity and fun, and failing to meet consumers' needs for diversity and entertainment.

Method used

It adopts a rotating platform assembly and a ball bearing structure. The ball bearing is driven by external force to rotate, which in turn drives the rotating platform assembly to move, so as to achieve the dynamic effect of rotation and extension of the head shape. The soft rubber layer enhances the contact friction and power transmission.

Benefits of technology

It significantly enhances the fun and entertainment diversity of candy stick toys, providing a good user experience and strong product market competitiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a candy bar toy. The candy bar toy comprises a bar body, a rotating table assembly, a head modeling body and balls. The rod body is provided with a cavity, a top opening and an operation opening. The rotating table assembly is arranged in the cavity, part of the rotating table assembly is exposed out of the top opening, the rotating table assembly can rotate around the center line of the rod body, and the rotating table assembly can stretch out of or retract into the cavity from the top opening. The head modeling body is located outside the rod body and connected to the rotating table assembly. The ball is partially located in the cavity, partially extends out of the operation opening and makes contact with the rotating table assembly. Under the action of external force, the balls rotate to drive the rotating table assembly to move so as to drive the head modeling body to move. According to the candy bar toy, the balls are matched with the rotating table assembly, the rotating table assembly can be driven to move by driving the balls to rotate through external force, and the dynamic effect of rotating and stretching of the head modeling body is achieved. The operation is convenient and fast, the interactivity is strong, the interestingness and entertainment diversity of the candy bar toy are obviously improved, the use experience of a user is good, and the market competitiveness of the product is strong.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a toy technical field, concretely relates to a candy bar toy. BACKGROUND

[0002] The existing candy bar toy is usually composed of a rod body, a candy body and a doll assembled on the rod body. The rod body has a cavity, and the candy body is accommodated in the cavity. The connection mode of the doll and the rod body usually adopts a single plug-in fitting structure, that is, a plug-in head is arranged at the bottom of the doll, and a plug-in slot is arranged at the corresponding position of the rod body, so that the plug-in head and the plug-in slot are plugged in and out to realize the assembly and replacement of the doll. Although this traditional structure can meet the basic modeling replacement requirement and provide limited personalized selection for the user, it has obvious deficiencies in interactivity and interesting design.

[0003] Specifically, the doll of the existing candy bar toy can only maintain a fixed and stationary state after assembly. Due to the limitation of the connection structure, the doll cannot rotate around the rod body or slide along the axis of the rod body, resulting in a lack of dynamic interactive effect of the candy bar toy. During use, the user can only change the toy shape by manually disassembling and replacing the doll, and the interactive form is single and mechanical, which is difficult to stimulate the exploration desire and participation of the user (especially children). At the same time, the static and fixed structure design makes the entertainment and freshness of the toy last for a short time, which cannot meet the higher demand of consumers for interactive experience, variety of play and interestingness of the toy, thereby limiting the product competitiveness and market expansion space of the candy bar toy.

[0004] Therefore, the utility model is provided. UTILITY MODEL CONTENT

[0005] The utility model provides a candy bar toy.

[0006] The application provides the following technical scheme:

[0007] A candy bar toy comprises:

[0008] A rod body has a cavity, a top opening and an operating opening, and the top opening and the operating opening are both in communication with the cavity;

[0009] A rotating table assembly is arranged in the cavity and partially exposed to the top opening, the rotating table assembly can rotate around the center line of the rod body, and the rotating table assembly can be extended out of or retracted into the cavity from the top opening;

[0010] A head modeling body is located outside the rod body and connected to the rotating table assembly;

[0011] A plurality of balls are partially located in the cavity and partially extended out of the operating opening, and the balls are in contact with the rotating table assembly.

[0012] Under the action of external force, the ball rotates to drive the rotation table assembly to move, thereby driving the head modeling body to move.

[0013] Optionally, the circumferential surface of the rotation table assembly is covered with a soft rubber layer.

[0014] The ball and the soft rubber layer are in elastic contact.

[0015] Optionally, the rotation table assembly comprises a first rotary table and a second rotary table.

[0016] The first rotary table is rotatably arranged in the cavity.

[0017] The second rotary table is rotatably arranged in the cavity, and a part of the second rotary table is exposed from the top opening. One end of the second rotary table in the cavity is provided with a limiting part, and the limiting part limits the second rotary table from sliding out of the top opening.

[0018] The first rotary table and the second rotary table are drivingly connected, and the first rotary table and the second rotary table rotate synchronously.

[0019] The circumferential surface of the first rotary table is provided with the soft rubber layer.

[0020] Optionally, the first rotary table comprises a first outer cylinder, a first end plate and a synchronous shaft.

[0021] The first end plate is arranged at one end of the first outer cylinder, the synchronous shaft is connected to the first end plate perpendicularly, and the synchronous shaft is connected to the second rotary table.

[0022] The outer diameter of the first end plate is greater than the outer diameter of the first outer cylinder.

[0023] The circumferential surface of the first outer cylinder is covered with the soft rubber layer.

[0024] Optionally, the first rotary table comprises a first inner cylinder, the first inner cylinder is located inside the first outer cylinder, and is connected to the first end plate.

[0025] The first rotary table has a through groove, and the through groove penetrates the first inner cylinder, the first end plate and the synchronous shaft.

[0026] The rod body is provided with a guide shaft, and the guide shaft is arranged in the through groove.

[0027] The first rotary table can rotate around the guide shaft to drive the second rotary table to rotate.

[0028] Optionally, the second rotary table comprises a second outer cylinder and a second end plate.

[0029] The second end plate is connected to one end of the second outer cylinder;

[0030] An inner surface of the second end plate is provided with a second inner cylinder;

[0031] The synchronous shaft is inserted into the second inner cylinder;

[0032] A limiting part is arranged on a side of the second outer cylinder away from the second end plate;

[0033] The second end plate is exposed to the top opening, and the head-shaped body is connected to the second end plate.

[0034] Optionally, the rod body comprises a holding rod and a mounting rod;

[0035] The mounting rod and the holding rod are in clamping engagement;

[0036] The mounting rod has the cavity, the top opening and the operation opening.

[0037] Optionally, the mounting rod comprises a main shell and a cover shell;

[0038] The main shell comprises a first side shell and a second side shell, the guiding shaft is arranged on the first side shell, and the operation opening is arranged on the second side shell;

[0039] The first side shell and the second side shell are in fastening engagement;

[0040] The cover shell is arranged on the top of the main shell, and the cover shell has the top opening.

[0041] Optionally, a plurality of clamping protrusions are arranged on a side of the mounting rod away from the top opening;

[0042] An inner protrusion ring is arranged on an inner wall of a port of the holding rod, and a notch part is arranged on the inner protrusion ring;

[0043] The clamping protrusions of the mounting rod can pass through the notch part and be in clamping engagement with the holding rod in rotation.

[0044] Optionally, an annular inner boss is arranged on a side of an inner wall of the operation opening close to an outer part of the rod body;

[0045] The annular inner boss and the ball are in limiting engagement, so as to limit the ball from being separated from the operation opening.

[0046] By adopting the above technical scheme, the present application has the following beneficial effects:

[0047] The candy bar toy of the present application is matched with the rotating table assembly through the ball, and the rotation of the ball driven by external force can drive the rotating table assembly to move, so as to realize the dynamic effect of the rotation and extension of the head modeling body. The operation is convenient and the interaction is strong, which significantly improves the interesting and entertainment diversity of the candy bar toy, the user has good use experience, and the product has strong market competitiveness. BRIEF DESCRIPTION OF DRAWINGS

[0048] The accompanying drawings, which are part of the present application, serve to provide a further understanding of the present application, and the schematic embodiments of the present application and the description thereof serve to explain the present application, but do not constitute an improper limitation on the present application. Obviously, the drawings described below are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.

[0049] Figure 1 The structure schematic view of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0050] Figure 2 The exploded view of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0051] Figure 3 The structure schematic view of the first rotating table of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0052] Figure 4 The structure schematic view of the second rotating table of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0053] Figure 5 The structure schematic view of the first side shell of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0054] Figure 6 The structure schematic view of the second side shell of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0055] Figure 7 The local structure schematic view of the holding bar of the candy bar toy provided for the embodiment of the present application is shown in the figure.

[0056] In the figure: the stick body 1, the holding stick 11, the inner convex ring 111, the notch part 1111, the lower convex part 1112, the mounting stick 12, the main shell 121, the first side shell 1211, the guide shaft 1211a, the clamping convex 1211b, the embedding groove 1211b1, the second side shell 1212, the operation port 1212a, the annular inner convex platform 1212b, the cover shell 122, the top port 1221, the rotating table assembly 2, the first rotating table 21, the first outer cylinder 211, the first end plate 212, the synchronous shaft 213, the first inner cylinder 214, the through groove a, the second rotating table 22, the second outer cylinder 221, the limiting part 2211, the second end plate 222, the insertion shaft 2221, the second inner cylinder 223, the head modeling body 3, the ball 4. DETAILED DESCRIPTION

[0057] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments will be described clearly and completely below with reference to the drawings in the embodiments of the present application. The following embodiments are used to explain the present application, but are not used to limit the scope of the present application.

[0058] In the description of the present application, it should be noted that the positions or location relationships indicated by the terms “upper”, “lower”, “inner”, “outer” and the like are based on the positions or location relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply 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 on the present application.

[0059] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms “mounting” and “connection” should be understood broadly, for example, can be fixedly connected, or can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0060] Reference is made to Figures 1 to 7As shown, the candy bar toy provided by the embodiment of the present application comprises a bar body 1, a rotating platform assembly 2, a head modeling body 3 and a ball 4. The bar body 1 has a cavity, a top opening 1221 and an operation opening 1212a, both of which are in communication with the cavity. The rotating platform assembly 2 is arranged in the cavity and partially exposed from the top opening 1221. The rotating platform assembly 2 can rotate around the center line of the bar body 1 and can be extended from or retracted into the cavity through the top opening 1221. The head modeling body 3 is located outside the bar body 1 and connected to the rotating platform assembly 2. The ball 4 is partially located in the cavity and partially extended from the operation opening 1212a. The ball 4 is in contact with the rotating platform assembly 2. Under the action of external force, the ball 4 rotates to drive the rotating platform assembly 2 to move, thereby driving the head modeling body 3 to move. The candy bar toy of the present application realizes the dynamic effect of rotation and extension of the head modeling body 3 by cooperation of the ball 4 and the rotating platform assembly 2. The candy bar toy is convenient to operate and has strong interaction, which significantly improves the interestingness and entertainment diversity of the candy bar toy, and the user experience is good, and the product has strong market competitiveness.

[0061] In a possible implementation, the circumferential surface of the rotating platform assembly 2 is covered with a soft rubber layer, and the ball 4 is in elastic contact with the soft rubber layer. The rotating platform assembly 2 is usually a plastic base, and a soft rubber layer made of rubber or silicone material is directly coated on the circumferential surface of the rotating platform assembly 2, so that the ball 4 is in elastic contact with the soft rubber layer. The soft rubber layer increases the friction force with the ball 4 by virtue of its softness, so that when the ball 4 is driven by external force, the power can be efficiently and stably transmitted to the rotating platform assembly 2, thereby ensuring smooth and reliable rotation and extension of the head modeling body 3, and significantly improving the stability of dynamic interaction and the operation feeling of the toy.

[0062] As Figure 2As shown, the rotating table assembly 2 comprises a first rotating table 21 and a second rotating table 22, the first rotating table 21 is rotatably arranged in the cavity, the second rotating table 22 is rotatably arranged in the cavity and partially exposed from the top opening 1221, one end of the second rotating table 22 arranged in the cavity is provided with a limiting part 2211, the limiting part 2211 limits the second rotating table 22 from sliding out of the top opening 1221, the first rotating table 21 and the second rotating table 22 are drivingly connected, the first rotating table 21 and the second rotating table 22 rotate synchronously, and the periphery of the first rotating table 21 is provided with the soft rubber layer. The limiting part 2211 can effectively limit the second rotating table 22 from sliding out of the top opening 1221, avoid the second rotating table 22 from falling off during use, ensure the stability and reliability of the structure connection of the candy bar toy, and ensure the smooth realization of the dynamic action of the head modeling body 3.

[0063] In a possible implementation, as shown in Figure 2 and Figure 3 , the first rotating table 21 comprises a first outer cylinder 211, a first end plate 212 and a synchronous shaft 213, the first end plate 212 is arranged at one end of the first outer cylinder 211, the synchronous shaft 213 is connected to the first end plate 212 perpendicularly, and the synchronous shaft 213 is connected to the second rotating table 22, the outer diameter of the first end plate 212 is larger than that of the first outer cylinder 211, and the periphery of the first outer cylinder 211 is covered with the soft rubber layer. The synchronous shaft 213 is precisely inserted into the second inner cylinder 223, and the connection mode of the insertion facilitates assembly. When the ball 4 drives the first outer cylinder 211 (covered with the soft rubber layer) to rotate, the first rotating table 21 precisely transmits power to the second rotating table 22 through the synchronous shaft 213, ensures synchronous and stable rotation of the two, guarantees smooth linkage of the dynamic action of the head modeling body 3. The outer diameter of the first end plate 212 is larger than that of the first outer cylinder 211, which provides sufficient space for the covering of the soft rubber layer on the periphery of the first outer cylinder 211, avoids interference between the soft rubber layer and the first end plate 212 during covering, ensures close adhesion and regular shaping of the soft rubber layer, and further ensures stable contact and efficient power transmission between the soft rubber layer and the ball 4, and improves the reliability and assembly convenience of the structure transmission of the candy bar toy.

[0064] As shown in Figure 2 , Figure 3 and Figure 4As shown, the first rotary table 21 comprises a first inner cylinder 214 located inside the first outer cylinder 211 and connected to the first end plate 212, and has a through groove a penetrating through the first inner cylinder 214, the first end plate 212 and the synchronous shaft 213. The rod body 1 is internally provided with a guide shaft 1211a penetrating through the through groove a, and the first rotary table 21 can rotate around the guide shaft 1211a to drive the second rotary table 22 to rotate. The guide shaft 1211a provides stable rotary support for the first rotary table 21, ensuring that the first rotary table 21 can rotate accurately and smoothly around the guide shaft 1211a, and that the first rotary table 21 can only rotate along the guide shaft 1211a or move position along the length direction of the guide shaft 1211a, and reliably drive the second rotary table 22 to synchronously operate through the synchronous shaft 213, thereby ensuring the stable realization of the dynamic action of the head modeling body 3 and improving the transmission accuracy and operation reliability of the overall structure of the toy.

[0065] As shown in Figure 1 , Figure 2 and Figure 4 , the second rotary table 22 has a second outer cylinder 221 and a second end plate 222 connected to one end of the second outer cylinder 221, and the inner surface of the second end plate 222 is provided with a second inner cylinder 223, and the synchronous shaft 213 is inserted into the second inner cylinder 223, and a limiting portion 2211 is arranged on the side of the second outer cylinder 221 away from the second end plate 222, and the second end plate 222 is exposed to the top opening 1221, and the head modeling body 3 is connected to the second end plate 222. The cross section of the synchronous shaft 213 is quadrilateral, and the cross section of the second inner cylinder 223 is quadrilateral, and the synchronous shaft 213 is accurately inserted into the second inner cylinder 223 to synchronously drive the second rotary table 22 to rotate or move position. The head modeling body 3 is detachably connected to the second end plate 222, and the side of the second end plate 222 away from the second inner cylinder 223 is provided with an insertion shaft 2221, and one end of the head modeling body 3 is provided with an insertion slot (not shown), and the insertion shaft 2221 is inserted into the insertion slot. The structure of the insertion facilitates the assembly of the head modeling body 3 and improves the assembly efficiency.

[0066] In one possible implementation, as shown in Figure 1 and Figure 2 , the rod body 1 comprises a holding rod 11 and a mounting rod 12, and the mounting rod 12 and the holding rod 11 are connected in a clamping manner. The mounting rod 12 has the cavity, the top opening 1221 and the operation opening 1212a. The holding rod 11 has an accommodating cavity which can be used to accommodate candies. The rotary table assembly 2 is arranged in the cavity.

[0067] like Figure 1 and Figure 2 As shown, the mounting rod 12 includes a main shell 121 and a cover shell 122. The main shell 121 includes a first side shell 1211 and a second side shell 1212. The first side shell 1211 is provided with the guide shaft 1211a, and the second side shell 1212 is provided with the operating port 1212a. The first side shell 1211 and the second side shell 1212 are fastened together. The cover shell 122 is placed on the top of the main shell 121 and has the top opening 1221. During assembly, the rotary table assembly 2 can be placed in the first side shell 1211 first, then the second side shell 1212 is fastened together, and finally the cover shell 122 is closed. This facilitates the precise positioning and rapid assembly of the rotary table assembly 2, avoids interference, simplifies the assembly process, and improves assembly efficiency.

[0068] In one possible implementation, such as Figure 5 and Figure 7 As shown, the mounting rod 12 has several locking protrusions 1211b on its periphery at one end away from the top opening 1221. The inner wall of the port of the gripping rod 11 has an inner protruding ring 111 with a notch 1111 on the inner protruding ring 111. The locking protrusions 1211b of the mounting rod 12 can pass through the notch 1111 and be rotated and locked onto the gripping rod 11. The locking protrusion 1211b is disposed on the first side shell 1211. The locking protrusion 1211b has a groove 1211b1. The inner protruding ring 111 has a lower protrusion 1112 at one end away from the notch 1111. The locking protrusion 1211b of the mounting rod 12 can pass through the notch 1111 and rotate to the lower protrusion 1112. The lower protrusion 1112 is embedded in the groove 1211b1 to achieve locking. This structure realizes the quick and accurate fixing of the mounting rod 12 and the gripping rod 11. The connection is stable and reliable, effectively preventing the mounting rod 12 and the gripping rod 11 from loosening and separating during use. Moreover, it can be easily disengaged by rotating in the opposite direction, taking into account both the convenience of assembly and the flexibility of disassembly and maintenance.

[0069] In one possible implementation, such as Figure 1 , Figure 2 and Figure 6As shown, the inner wall of the operation port 1212a is provided with an annular inner boss 1212b close to one side of the outer part of the stick body 1, the annular inner boss 1212b is limited to cooperate with the ball 4, and the ball 4 is limited to be separated from the operation port 1212a. The inner diameter of the annular inner boss 1212b is smaller than the outer diameter of the ball 4, and through the limiting cooperation between the annular inner boss 1212b and the ball 4, the ball 4 can be effectively prevented from being separated from the operation port 1212a, so as to ensure that the ball 4 always stably contacts the rotating table assembly 2, guarantee the continuity and reliability of power transmission, avoid the dynamic function of the toy from being invalid due to the falling of the ball 4, and improve the use stability.

[0070] The preferred embodiments disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details and limit the application to the specific embodiments described. Obviously, many modifications and changes can be made according to the content of the present application. The present application selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present application, so that those skilled in the art can well understand and utilize the present application. The present application is limited by the claims and their entire scope and equivalents.

Claims

1. A lolly stick toy characterised in that, The application relates to a hair styling device, which comprises a rod body with a cavity, a top opening and an operating opening, a rotating table assembly arranged in the cavity and partially exposed to the top opening, the rotating table assembly being rotatable around the center line of the rod body and being capable of being extended or retracted into the cavity through the top opening, a head styling body located outside the rod body and connected to the rotating table assembly, and a ball partially located in the cavity and partially extended out of the operating opening, the ball being in contact with the rotating table assembly, wherein the ball is rotatable under the action of external force to drive the rotating table assembly to move and in turn drive the head styling body to move. The peripheral surface of the rotating table assembly is covered with a soft rubber layer. The ball is in elastic contact with the soft rubber layer. The rotating table assembly comprises a first rotating table and a second rotating table. The first rotating table is rotatably arranged in the cavity. The second rotating table is rotatably arranged in the cavity and partially exposed to the top opening, one end of the second rotating table in the cavity is provided with a limiting part for limiting the second rotating table from sliding out of the top opening.

2. The lollipop toy of claim 1, wherein The first rotating table and the second rotating table are in driving connection and synchronously rotatable. The peripheral surface of the first rotating table is provided with the soft rubber layer.

3. The lollipop toy of claim 2, wherein The first rotating table comprises a first outer cylinder, a first end plate and a synchronous shaft. The first end plate is arranged at one end of the first outer cylinder, the synchronous shaft is perpendicularly connected to the first end plate, and the synchronous shaft is connected to the second rotating table. The outer diameter of the first end plate is larger than that of the first outer cylinder. The peripheral surface of the first outer cylinder is covered with the soft rubber layer. The first rotating table comprises a first inner cylinder which is located inside the first outer cylinder and connected to the first end plate.

4. The lollipop toy of claim 3, wherein The first rotating table is provided with a through groove which penetrates through the first inner cylinder, the first end plate and the synchronous shaft. A guide shaft is arranged in the rod body and penetrates through the through groove. The first rotating table is rotatable around the guide shaft to drive the second rotating table to rotate. The second rotating table comprises a second outer cylinder and a second end plate.

5. The lollipop toy of claim 4, wherein The second end plate is connected to one end of the second outer cylinder. The inner surface of the second end plate is provided with a second inner cylinder. The synchronous shaft is inserted into the second inner cylinder. A limiting part is arranged on the side of the second outer cylinder away from the second end plate.

6. A lollipop toy according to claim 5, wherein The second end plate is exposed to the top opening, and the head styling body is connected to the second end plate. The rod body comprises a holding rod and a mounting rod. The mounting rod and the holding rod are in clamping connection. The mounting rod is provided with the cavity, the top opening and the operating opening. The mounting rod comprises a main shell and a cover shell. The main shell comprises a first side shell and a second side shell, the guide shaft is arranged on the first side shell, and the operating opening is arranged on the second side shell.

7. A lollipop toy according to claim 6, wherein The first side shell and the second side shell are in buckling connection. The cover shell is arranged on the top of the main shell and is provided with the top opening. A plurality of clamping protrusions are arranged on the peripheral surface of one end of the mounting rod away from the top opening.

8. A lollipop toy according to claim 7, wherein ​ ​ ​ ​ 9. The lollipop toy of claim 8, wherein, ​ The inner wall of the port of the holding rod is provided with an inner convex ring, and the inner convex ring is provided with a notch part; The clamping convex part of the mounting rod can pass through the notch part and be clamped and rotated on the holding rod.

10. A lollipop toy according to any one of claims 1-9, characterized in that The inner wall of the operation port is provided with an annular inner convex platform near one side of the outer part of the rod body; The annular inner convex platform and the ball are limited in cooperation, and the ball is limited to be separated from the operation port.