Cross transporter amusement equipment
By designing a cross-transportation amusement equipment, which utilizes rotating columns and linkage mechanisms to achieve cross-transportation of toys, the problem of children's sense of loss caused by the excessive stimulation of existing amusement equipment is solved, thereby enhancing children's play enjoyment and physical and mental health.
Patent Information
- Application Number
- CN202423195099.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing amusement park rides are too stimulating, causing children to feel disappointed or lonely after playing, which is detrimental to their physical and mental health.
Design a cross-transportation amusement device that uses at least two rotating columns and linkage mechanisms to achieve cross-transportation of toys, thereby improving children's hand-eye coordination and fostering teamwork skills.
During the process of moving toys back and forth, children can find fun in the game, enhance their sense of accomplishment, and at the same time exercise their hand-eye coordination and develop their ability to cooperate with each other, which is conducive to children's physical and mental health.
Smart Images

Figure CN223846225U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of amusement park amusement equipment technical field, in particular to a kind of cross carrier amusement equipment. BACKGROUND
[0002] Most of the existing amusement equipment is to provide pure play function for children, and the play function is more and more stimulating, in fact, the stronger the stimulating amusement equipment brings to children after the end of the amusement, the stronger the sense of loss or desolation, so the continuously pursuit of stimulating amusement equipment will not be conducive to the physical and mental health of children.
[0003] The applicant wants to develop a new amusement equipment with strong sense of mission, which can not only make children happy and play, but also be conducive to the physical and mental health of children and improve the ability of children in many aspects. CONTENT OF UTILITY MODEL
[0004] The main purpose of the utility model is to provide a kind of cross carrier amusement equipment, which can exercise the hand-eye coordination of children, cultivate the mutual cooperation ability between children, and the sense of achievement is conducive to the physical and mental health of children.
[0005] Other purposes and advantages of the utility model can be further understood from the technical features disclosed in the utility model.
[0006] To achieve the above purpose, the utility model adopts the following technical scheme: a kind of cross carrier amusement equipment includes support, first rotating column, second rotating column, first connecting rod mechanism and second connecting rod mechanism. The first rotating column and the second rotating column are vertically fixed to the support and keep parallel and spaced apart to form a carrying space, and the first rotating column and the second rotating column are provided with a slot and a plurality of pin holes. The first connecting rod mechanism and the second connecting rod mechanism are rotatably mounted to the first rotating column and the second rotating column respectively, and the first connecting rod mechanism and the second connecting rod mechanism each include a plurality of forks and connecting rods. The plurality of forks are rotatably connected to the connecting rods and pivotally connected to the corresponding first rotating column or second rotating column. Each fork includes a plurality of tines, a pivot hole and a connecting portion. The tines are located at one end of the fork, the connecting portion is located at the other end of the fork, and the pivot hole is located between the tines and the connecting portion. When installing, the fork passes through the corresponding slot, the pivot hole of the fork is aligned with the corresponding pin hole, and the pin shaft is inserted into the pin hole and transversely through the slot and the pivot hole to rotatably fix the fork to the corresponding first rotating column or second rotating column.
[0007] In one of the embodiments, the slot extends vertically along the axial direction of the corresponding first rotating column or the second rotating column. The pin hole is uniformly arranged along the axial direction of the corresponding first rotating column or the second rotating column and is in communication with the corresponding slot for the pin shaft to pass through.
[0008] In one of the embodiments, the plurality of prongs are arranged in sequence along the direction from bottom to top on the corresponding first rotating column or the second rotating column and are uniformly spaced.
[0009] In one of the embodiments, the lowermost prong of the first linkage mechanism and the second linkage mechanism is used as a driving rod, and an extension section is arranged on the driving rod and extends away from the tine from the connecting portion.
[0010] In one of the embodiments, a control seat is arranged on the extension section for the player to operate and provide power.
[0011] In one of the embodiments, the prong further comprises a blocking wall at the root of the tine.
[0012] In one of the embodiments, the blocking wall is a fence wall or a solid baffle.
[0013] In one of the embodiments, the slot of the first rotating column is lower than the slot of the second rotating column, and the installation height of the first linkage mechanism is lower than the installation height of the second linkage mechanism.
[0014] In one of the embodiments, the number of tines of each prong of the first linkage mechanism is different from the number of tines of each prong of the second linkage mechanism.
[0015] In one of the embodiments, the support comprises a lower chassis and an upper fixing frame for mounting the first rotating column and the second rotating column to the playground.
[0016] Compared with the prior art, the cross carrier amusement device successfully realizes the cross carrying of the toy by arranging at least two rotating columns and at least two linkage mechanisms. In the cross carrying (i.e. in the toy transfer process), children not only find game fun and bring a sense of achievement, but also exercise their own hand-eye coordination and cultivate the mutual cooperation ability among children. The cross carrier amusement device is more conducive to the physical and mental health of children. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a layout schematic view of the cross carrier amusement device of one of the embodiments of the utility model;
[0018] Figure 2Structure schematic view of a fork rod of one of the embodiments of the present utility model;
[0019] Figure 3 Layout schematic view of the cross carrier amusement device of another embodiment of the present utility model.
[0020] The reference signs in the above-mentioned drawings are explained as follows:
[0021] Cross carrier amusement device 1
[0022] Lower chassis 11 upper fixing frame 12
[0023] First rotating column 20 slot 21, 31
[0024] Pin hole 22, 32 pin shaft 23
[0025] Second rotating column 30 first connecting rod mechanism 40, 40a
[0026] Fork rod 41, 41a, 51 connecting rod 42
[0027] Tine 410, 410a, 510 hinged hole 411
[0028] Connecting part 412 driving rod 43
[0029] Extension section 430 control seat 431
[0030] Blocking wall 44, 44a second connecting rod mechanism 50 DETAILED DESCRIPTION
[0031] The following description of the embodiments is made with reference to the additional drawings, which are used to illustrate specific embodiments that can be implemented by the present utility model. The directions mentioned in the present utility model, such as "up", "down", "front", "back", "left", "right", "top", "bottom", etc. are only the directions of the additional drawings. Therefore, the directions used are used to explain and understand the present utility model, and are not used to limit the present utility model.
[0032] The cross carrier amusement device of the present utility model mainly allows two players (such as children) to operate together to jointly carry toys from the ground (or the bottom) to the upper side (or to a designated area). Since the cross carrier amusement device of the present utility model needs one of the players to pick up or fork up the toys from the ground, then the other player operates to carry away (or transfer) the toys, and then one of the players carries away the toys, and the operation of transferring the toys is performed in turn, not only can the hand-eye coordination ability of the players be exercised, but also their mutual cooperation ability can be cultivated in the carrying process. When all the toys are successfully carried away from the original place, a sense of achievement will also arise spontaneously, and the feelings between children and the emotional quotient of children will be improved.
[0033] Please refer to the example below. Figure 1 As shown, the cross transport machine amusement equipment 1 includes a support frame 10, a first rotating column 20, a second rotating column 30, a first linkage mechanism 40, and a second linkage mechanism 50.
[0034] like Figure 1 As shown, the support frame 10 includes a lower base 11 and an upper fixing frame 12, used to install the cross-transporter amusement equipment 1 onto the amusement field (not shown). Specifically, the support frame 10 can fix the first rotating column 20 and the second rotating column 30 at designated positions on the amusement field to prevent them from tipping over. The lower base 11 is fixed to the ground, and the upper fixing frame 12 is fixed to a side wall of the amusement field (not shown). This side wall can be the side wall of a building within the amusement field or the side wall of other adjacent amusement equipment. In this embodiment, the lower base 11 consists of two spaced discs, on which the bottom ends of the first rotating column 20 and the second rotating column 30 are respectively fitted. The upper fixing frame 12 consists of two fixedly connected L-shaped fixing rods to improve the stability of the upper fixing frame 12, and on which the top ends of the first rotating column 20 and the second rotating column 30 are respectively fitted. It should be noted that the lower chassis 11 and the upper fixing frame 12 can be connected as a single component (i.e., the disc and the L-shaped fixing rod are connected together), with the rotating columns 20 and 30 fitted onto the upper part of the lower chassis 11 and the lower part of the upper fixing frame 12. Alternatively, the lower chassis 11 and the upper fixing frame 12 can be two separate components (i.e., the disc and the L-shaped fixing rod are set separately), which respectively restrict the bottom and top ends of the rotating columns 20 and 30, thus ensuring that the rotating columns 20 and 30 will not tip over while rotating.
[0035] like Figure 1 As shown, the first rotating column 20 and the second rotating column 30 are rotatably and vertically fixed to the bracket 10, and are parallel to each other and spaced apart to form a transport space. In this embodiment, the first rotating column 20 and the second rotating column 30 rotate independently. The so-called rotation means that they can rotate in the left and right direction, that is, they can rotate along the horizontal circumference of the first rotating column 20 and the second rotating column 30.
[0036] like Figure 1 As shown, each rotating column (e.g., the first rotating column 20) is provided with a slot 21 and a plurality of pin holes 22. The slot 21 extends vertically along the axial direction of the rotating column 20; the plurality of pin holes 22 are evenly arranged along the axial direction of the rotating column 20 and are all connected to the slot 21, for a plurality of pins 23 to pass through them one by one. In one embodiment, the slot 21 is a vertical elongated slot; while in other embodiments, the slot 21 is a plurality of short slots arranged along the axial direction of the first rotating column 20.
[0037] like Figure 1As shown, the first linkage mechanism 40 and the second linkage mechanism 50 are rotatably mounted to the first rotating column 20 and the second rotating column 30, respectively. In one embodiment, each linkage mechanism (e.g., the first linkage mechanism 40) includes a plurality of forks 41 and links 42. The plurality of forks 41 are rotatably connected to the links 42.
[0038] The following will take the first linkage mechanism 40 and the first rotating column 20 as examples to explain in detail the cooperation structure and working principle of the cross transport machine amusement equipment 1 of this application.
[0039] like Figure 1 As shown, the multiple forks 41 of the first linkage mechanism 40 are all parallel to each other and pivotally connected to the first rotating column 20. Among them, as... Figure 2 As shown, each fork 41 includes multiple fork teeth 410, a pivot hole 411, and a connecting portion 412. The fork teeth 410 are located at one end of the fork 41. The connecting portion 412 is located at the other end of the fork 41. Figure 2 In the embodiment shown, the connecting part 412 is a circular hole, but... Figure 1 In the embodiments described, the connecting portion 412 can be an elongated hole, so this application does not limit the shape of the connecting portion 412, as long as it allows the connecting rod 42 to pass through or connect to the connecting rod 42. The pivot hole 411 is located between the fork tooth 410 and the connecting portion 412, and can be located in the middle of the fork 41 or near the connecting portion 412. It should be noted here that the fork 41 is rotatable, meaning that it can rotate or swing up and down in the vertical direction, that is, the fork tooth 410 of the fork 41 can be raised or lowered.
[0040] More specifically, when installing the fork 41 onto the first rotating column 20, the fork 41 passes through the slot 21 of the first rotating column 20, and the pivot hole 411 of the fork 41 is aligned with the corresponding pin hole 22. A pin 23 is inserted radially into the pin hole 22 along the first rotating column 20, and passes through the slot 21 and the pivot hole 411 of the fork 41, thereby fixing the fork 41 to the first rotating column 20 in a way that allows it to rotate vertically. Simultaneously, the pin 23 is fixed to the first rotating column 20 and can also serve as the pivot of the fork 41.
[0041] In one embodiment, the connecting rod 42 connects to multiple forks 41, which can drive the multiple forks 41 to rotate together. Specifically, the connecting portions 412 of the multiple forks 41 are rotatably fixed to the connecting rod 42, thereby forming a linkage mechanism. At this time, one end of the fork 41 (i.e., the fork tooth 410) extends out from one side of the first rotating column 20 and is located in the transport space between the two rotating columns 20 and 30, while the other end of the fork 41 (i.e., the connecting portion 412) and the connecting rod 42 are located on the other side of the first rotating column 20, ready to be connected side by side to the connecting rod 42.
[0042] In one embodiment, multiple forks 41 are arranged sequentially from bottom to top on the first rotating column 20 and are evenly spaced. The lowest fork 41 can serve as the drive lever 43, and an extension 430 is provided on the drive lever 43, extending from the connecting part 412 away from the fork teeth 410. A control seat 431 can be provided on the extension 430, allowing the player to sit on it and provide power to the fork teeth 410 to move the toy. Of course, the control seat 431 can also be used as a handle, allowing the player to operate it with their hands to provide power. That is to say, the control seat 431 is used to provide power for player operation, and it is not necessarily required for the player to sit on it or operate it with their hands.
[0043] The player sits on the lowest fork 41 (i.e., the drive lever 43), controlling the drive lever 43 to rotate up and down, and also controlling the first rotating column 20 to rotate left and right, using the fork teeth 410 to lift the toy they want to move. At the same time, the drive lever 43 will drive the connecting rod 42 to move up and down, and drive the other forks 41 to move up and down together.
[0044] Similarly, the second linkage mechanism 50 has a structure similar to that of the first linkage mechanism 40. The fork tooth 510 of the second linkage mechanism 50 can be moved by the cooperation of the second linkage mechanism 50 and the second rotating column 30.
[0045] Simply put, such as Figure 1 As shown, the design principle of the cross-transfer amusement equipment 1 of this application is as follows: when the fork tooth 410 of one of the forks 41 of the first linkage mechanism 40 lifts the toy, the toy can be moved away from the first linkage mechanism 40 by the fork tooth 510 of the corresponding fork 51 of the second linkage mechanism 50; then, the toy can be moved away from the second linkage mechanism 50 by the fork tooth 410 of the other fork 41 of the first linkage mechanism 40, and so on, to realize the cross-transfer mode.
[0046] In detail, the specific method of using the cross-transporter amusement equipment 1 of this application is as follows:
[0047] Step 1: Initial Stage - Picking up the Toy. For example, the first player operates the first linkage mechanism 40 and the first rotating column 20. By rotating the first linkage mechanism 40 and the first rotating column 20, the player uses the fork 410 (hereinafter referred to as the first bottom fork 410) of the lowest fork 41 (i.e., the active lever 43) of the first linkage mechanism 40 to pick up (or lift or raise) the toy they want to move. More specifically, the first player uses the first bottom fork 410 of the first linkage mechanism 40 to pick up the toy from the ground; in other embodiments, picking up the toy in the initial stage can also be: directly placing the toy on the first bottom fork 410 of the first linkage mechanism 40.
[0048] Second step: First transfer of the toy. For example: the second player is responsible for operating the second linkage mechanism 50 and the second rotating column 30, by rotating the second linkage mechanism 50 and the second rotating column 30, the toy is transferred from the first linkage mechanism 40 to the second linkage mechanism 50 by aligning the gap between the second lowermost prong tooth 510 of the second linkage mechanism 50 and the first lowermost prong tooth 410 of the first linkage mechanism 40, that is, the toy is transferred from the first lowermost prong tooth 410 of the first linkage mechanism 40 to the second lowermost prong tooth 510 of the second linkage mechanism 50. The so-called alignment can be from below or directly from the front, as long as the prong tooth 410 of one linkage mechanism 40 is aligned with the gap of the prong tooth 510 of the other linkage mechanism 50, the toy transfer work can be completed.
[0049] Third step: Second transfer of the toy. For example: the first player is responsible for operating the first linkage mechanism 40 and the first rotating column 20, by rotating the first linkage mechanism 40, the toy is transferred from the second linkage mechanism 50 to the first linkage mechanism 40 by aligning the gap between the upper prong tooth 410 adjacent to the first lowermost prong tooth 410 of the first linkage mechanism 40 and the second lowermost prong tooth 510 of the second linkage mechanism 50, that is, the toy is transferred from the second lowermost prong tooth 510 of the second linkage mechanism 50 to the upper prong tooth 410 of the first linkage mechanism 40.
[0050] According to the above method (or by analogy), after the toy is transferred multiple times by two players controlling the first rotating column 20, the second rotating column 30, the first linkage mechanism 40 and the second linkage mechanism 50 respectively, the toy can be transferred to the uppermost prong tooth 410, 510 of the first linkage mechanism 40 or the second linkage mechanism 50, at this time the toy transfer work is completed. In fact, when the toy reaches the uppermost prong tooth 410, 510 of the first linkage mechanism 40 or the second linkage mechanism 50, the player can unload (or throw) the toy to the designated toy area of the playground by rotating the rotating column 20, 30. The so-called designated toy area can refer to the ground around the rotating column 20, 30, or other playground equipment area around the rotating column 20, 30.
[0051] It should be noted that in one embodiment, the first rotating column 20 and the second rotating column 30 are substantially the same in structure, and the first linkage mechanism 40 and the second linkage mechanism 50 are substantially the same in structure.
[0052] The differences between the first rotating column 20 and the second rotating column 30, and the differences between the first linkage mechanism 40 and the second linkage mechanism 50 in one embodiment will be described in detail below.
[0053] As Figure 1As shown, the position of the slot 21 on the first rotating column 20 can be slightly lower than the position of the slot 31 on the second rotating column 30, so the installation height of the first linkage mechanism 40 is slightly lower than the installation height of the second linkage mechanism 50, thereby facilitating the cooperation of the two linkage mechanisms to complete the toy transfer. More specifically, the height of the lowermost pin hole 22 on the first rotating column 20 is lower than the height of the lowermost pin hole 32 on the second rotating column 30, so the installation position (i.e. the pivot position) of the lowermost fork lever 41 of the first linkage mechanism 40 is lower than the installation position of the lowermost fork lever 51 of the second linkage mechanism 50.
[0054] Furthermore, the first linkage mechanism 40 and the second linkage mechanism 50 also have some differences, for example: the number of tines 410 of each fork lever 41 of the first linkage mechanism 40 is different from the number of tines 510 of each fork lever 51 of the second linkage mechanism 50, for example, the number of tines 410 of each fork lever 41 of the first linkage mechanism 40 can be three, and the number of tines 510 of each fork lever 51 of the second linkage mechanism 50 can be four. Setting different numbers of tines can facilitate the cross handling of the opposite tines 410, 510.
[0055] In one embodiment, as shown in Figure 1 A blocking wall 44 is also provided on each fork lever 41 of each linkage mechanism (such as the first linkage mechanism 40), and the blocking wall 44 is located at the root of the tine 410, which can facilitate the tine 410 to smoothly pick up, handle and transfer the toy, at least preventing the toy from falling off at the root of the tine 410. Figure 1 The blocking wall 44 shown is a fence wall.
[0056] In another embodiment, as shown in Figure 3 A blocking wall 44a is also provided on each fork lever 41a of each linkage mechanism (such as the first linkage mechanism 40a), and the blocking wall 44a is a solid baffle to prevent the toy from falling off at the root of the tine 410a.
[0057] In summary, the cross handling machine playground equipment 1 of the present application successfully realizes the cross handling of the toy by setting at least two rotating columns 20, 30 and at least two linkage mechanisms 40, 50. In the cross handling (i.e. during the toy transfer process), children not only find game fun and bring a sense of achievement, but also exercise their own hand-eye coordination and cultivate the mutual cooperation ability among children, and the cross handling machine playground equipment 1 of the present application is more conducive to the physical and mental health of children.
Claims
1. A cross conveyer amusement apparatus characterized by, The first rotating column and the second rotating column are rotatably and vertically fixed to the support and kept parallel to each other to form a carrying space; wherein the first rotating column and the second rotating column are provided with a slot and a plurality of pin holes; The first connecting rod mechanism and the second connecting rod mechanism are rotatably installed on the first rotating column and the second rotating column respectively; The first connecting rod mechanism and the second connecting rod mechanism each include a plurality of fork rods and a connecting rod; the plurality of fork rods are rotatably connected to the connecting rod and pivotally connected to the corresponding first rotating column or second rotating column; each fork rod includes a plurality of tines, a pivot hole and a connecting portion; the tines are located at one end of the fork rod; the connecting portion is located at the other end of the fork rod; the pivot hole is located between the tines and the connecting portion; During installation, the fork rod passes through the corresponding slot, the pivot hole of the fork rod is aligned with the corresponding pin hole, and a pin shaft is inserted into the pin hole and transversely through the slot and the pivot hole to rotatably fix the fork rod to the corresponding first rotating column or second rotating column.
2. The cross carrier amusement device of claim 1, wherein: The slot vertically extends along the axial direction of the corresponding first rotating column or second rotating column; The pin holes are uniformly arranged along the axial direction of the corresponding first rotating column or second rotating column and communicate with the corresponding slot for the pin shaft to pass through.
3. The cross carrier amusement device of claim 1, wherein: A plurality of fork rods are arranged in sequence along the downward direction on the corresponding first rotating column or second rotating column and are uniformly and spaced apart.
4. The cross carrier amusement device of claim 3, wherein: The lowest fork rod of the first connecting rod mechanism and the second connecting rod mechanism is used as a driving rod, and an extension section is arranged on the driving rod, which extends from the connecting portion away from the tines.
5. The cross carrier amusement device of claim 4, wherein: A control seat is arranged on the extension section for a player to operate and provide power.
6. The cross carrier amusement device of claim 1, wherein: The fork rod further includes a blocking wall located at the root of the tines.
7. The cross carrier amusement device of claim 6, wherein: The blocking wall is a fence wall or a solid baffle.
8. The cross carrier amusement device of claim 1, wherein: The slot of the first rotating column is lower than the slot of the second rotating column; The installation height of the first connecting rod mechanism is lower than the installation height of the second connecting rod mechanism.
9. The cross carrier amusement device of claim 1, wherein: The number of tines of each fork rod of the first connecting rod mechanism is different from the number of tines of each fork rod of the second connecting rod mechanism. 10. The cross conveyor amusement ride of claim 1, wherein: the support includes a lower chassis and an upper mount to mount the first rotating column and the second rotating column to an amusement park site.