A zipline for amusement tracks that allows the human body to slide towards a stable amusement track without drifting sideways
The inner and outer arc track design and the non-fixed connection sliding human body support device solve the side slip problem when the track zipline turns, achieves stability and safety during the sliding process, and ensures that the human body does not drift sideways during the sliding process.
Patent Information
- Application Number
- CN202311580379.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-24
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2043-11-24
AI Technical Summary
When the existing track zipline turns, the slider and the seat suspension are in a linked state, causing the slider to generate lateral tensile force, causing the suspended seat to slide sideways, and the human body to be in a tilted floating state, posing a safety hazard.
The inner arc track and outer arc track design are adopted. The sliding device and the human body support device are not fixedly connected. The inner and outer arc tracks are stably connected by a column and connecting rod structure. When the sliding device turns, the tilting side sliding force is not transmitted to the human body support device. Combined with the limit device and lubrication measures, the stability is improved.
Stability and safety are achieved during the sliding process. The sliding device does not drift sideways when turning, and the human body support device is controlled by gravity to turn smoothly, avoiding side-slip accidents and improving operational stability and safety.
Smart Images

Figure CN117427346B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of large-scale amusement equipment, and particularly relates to a zipline with a stable amusement track where a human body does not drift sideways and slides along it. Background Art
[0002] The track zipline, also known as the steel rail zipline, utilizes the potential energy of the height difference of the object. With the help of tracks and sliders, tourists are suspended on the track through sling seats and slide down from a high place to a low place. They pass the platform at a high speed, slide to the highest point of dynamic potential energy through an upward track, and then return to a higher track, and slide down to the lowest point of the track again. After swinging back and forth many times, it reaches the final low-speed entry into the station and stops at the next station. However, this kind of amusement equipment is in a linked state with the seat suspension when turning. The slider will generate lateral tensile force, causing the suspended seat to slide sideways, causing the human body to be in a tilted floating state, which is prone to safety accidents. How to prevent the human body from sliding sideways during sliding and the stability of sliding are the objects of study for technical personnel in this field. Summary of the Invention
[0003] The invention provides an amusement track zipline with stable sliding, in which a sliding device and a human body supporting device are non-fixedly connected to each other and a human body does not drift sideways and slides stably.
[0004] An amusement track zipline that allows a human body to slide stably without drifting sideways comprises a track zipline, a pipe constituting the track zipline and a flagboard, and a pulley assembly installed thereon. The track zipline comprises an initial track located at a departure platform, a running track consisting of an inner arc track and an outer arc track with gradually decreasing heights, and an end track located at a terminal platform. The pulley assembly comprises a sliding device and a human body support device, the sliding device and the human body support device being non-fixedly connected to each other, and the human body support device does not drift sideways when the sliding device turns or slides sideways. This amusement track zipline uses an inner arc track and an outer arc track to achieve a basically uniform descending process of the pulley assembly, and cooperates with the end track to achieve the technical performance of entering the terminal platform at a basically zero speed. The sliding device and the human body support device are non-fixedly connected to each other, and when the sliding device turns or slides sideways, the tilting or sliding force is not transmitted to the human body support device, so that the human body support device does not drift sideways when turning and is only controlled by gravity to smoothly turn.
[0005] There are more than two columns connected between the inner arc track and the outer arc track, and each column is provided with a first connecting device connected to the inner arc track and a second connecting device connected to the outer arc track; the first connecting device includes a first connecting assembly and a second connecting assembly with an angle of 60 to 90 degrees between each other, the first connecting assembly includes a first hanging ear integrated with the flag plate, the first hanging ear is connected to one end of the first horizontal connecting rod, the rod body of the first horizontal connecting rod is connected to one end of the first oblique rod, the other end of the first horizontal connecting rod and the other end of the first oblique rod are connected to the column up and down, the second connecting assembly includes a second hanging ear integrated with the flag plate, the second hanging ear is connected to one end of the second horizontal connecting rod, the rod body of the second horizontal connecting rod is connected to one end of the first oblique rod The first and second connecting devices are fixed to the same column by the first, second, third, and fourth connecting components of the multi-link structure, which are fixed to the same column to achieve stable connection performance for the inner and outer arc tracks, thereby preventing shaking during the sliding of the pulley assembly and improving operational stability.
[0006] The inner arc track and the outer arc track are both elliptical structures when viewed from above, and the track length of the outer arc track is greater than that of the inner arc track.
[0007] The sliding device comprises two walking wheel frames, the tops of the two walking wheel frames are connected by a top plate, the middle sides of the two walking wheel frames are connected by an upper connecting rod and a lower connecting rod, and the two lower connecting rods are connected by a U-shaped connecting piece, and the two side surfaces of the U-shaped connecting piece are provided with flanges that symmetrically fit the inner sides of the walking wheel frames, and the two walking wheel frames and the flanges are commonly connected to a first connecting shaft, the outer periphery of the first connecting shaft is sleeved with a copper sleeve, the outer periphery of the copper sleeve is sleeved with a connecting pipe, and the outer periphery of the connecting pipe is rotatably sleeved with the manned hanger of the human body support device, and the outer sides of the two walking wheel frames are each installed with two inclined outer sliding wheels, and the two outer sliding wheels are respectively located on both sides of the flag plate and fit the pipe, and a gap limiting device is provided between the two walking wheel frames, and the gap limiting device comprises An upper limit device and a lower limit device surround the outer circumference of the pipeline, the upper limit device includes a first limit roller group and a second limit roller group horizontally above and below the top plate, the first limit roller group and the second limit roller group are respectively located on both sides of the upper part of the pipeline, the first limit roller group and the second limit roller group each include two horizontal rollers, and the two horizontal rollers are clamped and connected to the two walking wheel frames by two upper and lower limit plates; the lower limit device includes a third limit roller group and a fourth limit roller group with the same inclination angle as the corresponding outer sliding wheel, the third limit roller group and the fourth limit roller group are respectively located on both sides of the lower part of the pipeline, the third limit roller group and the fourth limit roller group each include two inclined rollers, and the two inclined rollers are connected to the two walking wheel frames through the limit wheel frame. The sliding device of the present invention uses the outer sliding wheels on the outer sides of the two running wheel frames to directly contact the pipe of the track cable for sliding, so that the outer sliding wheels on both sides have a longer spacing and better stability than the traditional inner sliding wheels. The gap limiting device is located as a whole between the two running wheel frames, and uses the upper limit device and the lower limit device to realize the gap control between the pipe and the sliding device in two different directions in the same space, which effectively adjusts the gap between the local wheel body and the pipe caused by the slight side drift of the outer sliding wheel during the turning process, making the turning of the sliding device more stable. The sliding device is connected to the human body support device through a connecting pipe. The tilting force generated by the sliding device during the turning process can only be transmitted to the connecting pipe, but the tilting force on the connecting pipe will not cause the human body support device to swing and drift, which greatly improves the stability of the human body support device during the sliding process.
[0008] The first limiting roller group and the second limiting roller group each include two horizontal rollers, and the same gap is set between the four horizontal rollers and the pipe. The third limiting roller group and the fourth limiting roller group each include two inclined rollers, and the same gap is set between the four inclined rollers and the pipe.
[0009] The human body support device includes a seat that fits the human body, the seat is connected to a U-shaped padlock through a steel buckle, the U-shaped padlock is connected to two manned hangers, a nylon pressure block for crimping a steel pipe handle is installed between the two manned hangers, the nylon pressure block is connected to a pressure plate through a first screw and a second screw respectively, and the pressure plate and the two manned hangers are an integrated structure; the first screw passes through the through hole in the middle of the steel pipe handle to fix the steel pipe handle to the pressure plate.
[0010] The side of the connecting pipe is connected to an oil nozzle, which lubricates the copper sleeves on both sides of the oil groove and the first connecting shaft through the oil groove, thereby improving the lubrication performance between the connecting pipe and the first connecting shaft and avoiding wear.
[0011] Both sides of the two manned hangers are connected to rope loops through second connecting shafts, and the rope loops are connected to seats through rope belts.
[0012] The horizontal roller is connected to the upper and lower limiting plates via a third connecting shaft, and a bearing is provided between the horizontal roller and the third connecting shaft.
[0013] The present invention provides a zipline for amusement tracks on which a human body can slide stably without drifting sideways, which has the following beneficial effects:
[0014] (1) The amusement track zipline uses an inner arc track and an outer arc track to achieve a basically uniform speed descent process of the pulley assembly, and cooperates with the end track to achieve the technical performance of basically zero speed entry into the station platform.
[0015] (2) The sliding device and the human body support device are not fixedly connected to each other. When the sliding device turns and slides sideways, the tilting and sliding force will not be transmitted to the human body support device, so that the human body support device does not drift sideways when turning and is only controlled by gravity to turn smoothly. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present invention will be further described below with reference to the accompanying drawings:
[0017] Figure 1 This is a schematic diagram of the main structure of the amusement track zipline of the present invention, in which a human body does not drift sideways and slides toward a stable amusement track;
[0018] Figure 2 It is a side view of the structure of the amusement track zipline of the present invention in which a human body does not drift sideways and slides toward a stable state;
[0019] Figure 3 This is a schematic diagram of the structure of a zipline on an amusement track in which a human body does not drift sideways and slides toward a stable state according to the present invention;
[0020] Figure 4 Schematic diagram of the initial track structure in the present invention;
[0021] Figure 5 Schematic diagram of the end track structure in the present invention;
[0022] Figure 6 It is a schematic diagram of the three-dimensional structure of the sliding device in the present invention;
[0023] Figure 7 It is a side view structural diagram of the sliding device in the present invention;
[0024] Figure 8 This is a schematic diagram of the installation structure of the sliding device in the present invention;
[0025] Figure 9 This is a schematic diagram of the installation structure of the sliding device in the present invention when viewed from above;
[0026] Figure 10 for Figure 9 Schematic diagram of the cross-section structure at the middle BB;
[0027] Figure 11 for Figure 8 Schematic diagram of the cross-section structure at CC in the middle;
[0028] Figure 12 for Figure 7 Schematic diagram of the cross-sectional structure at DD in the middle;
[0029] Figure 13 for Figure 7 Schematic diagram of the cross-sectional structure at EE in the middle;
[0030] Figure 14 for Figure 8 Schematic diagram of the cross-sectional structure at FF in the middle;
[0031] Figure 15 for Figure 14 Schematic diagram of the cross-sectional structure at AA in the middle;
[0032] Figure 16 It is a schematic diagram of the sliding structure for human body riding in the invention. DETAILED DESCRIPTION
[0033] The following is combined with Figure 1-16 The specific implementation method further describes the technical solution of this patent in detail.
[0034] A stable amusement track zipline that allows a human body to slide sideways without drifting includes a track zipline. A pipe 38 and a flag plate 37 constituting the track zipline are cooperated with a pulley assembly 1 installed thereon. The track zipline includes an initial track 12 located on a departure platform 2, a running track consisting of an inner arc track 11 and an outer arc track 4 with gradually decreasing heights, and an end track 22 located on a terminal platform 3. The pulley assembly 1 includes a sliding device and a human body support device. The sliding device and the human body support device are non-fixedly connected to each other. When the sliding device turns and slides sideways, the human body support device turns without drifting sideways.
[0035] As a preferred structure, more than two columns 8 are connected between the inner arc track 11 and the outer arc track 4, and each column 8 is provided with a first connecting device for connecting the inner arc track 11 and a second connecting device for connecting the outer arc track 4; the first connecting device includes a first connecting component and a second connecting component with an angle of 60 to 90 degrees between each other, the first connecting component includes a first hanging ear 17 integrated with the flag plate 37, the first hanging ear 17 is connected to one end of the first horizontal connecting rod 18, the rod body of the first horizontal connecting rod 18 is connected to one end of the first oblique rod 16, the other end of the first horizontal connecting rod 18 and the other end of the first oblique rod 16 are connected to the column 8 up and down, the second connecting component includes a second hanging ear 14 integrated with the flag plate 37, the second hanging ear 14 is connected to one end of the second horizontal connecting rod 9, and the second horizontal connecting rod 9 is connected to the column 8 up and down. The rod body is connected to one end of the second diagonal rod 10, the other end of the second horizontal connecting rod 9 and the other end of the second diagonal rod 10 are connected to the column 8 up and down; the second connecting device includes a third connecting component and a fourth connecting component with an angle of 60 to 90 degrees between each other, the third connecting component includes a third hanging ear 6 integrated with the flag plate 37, the third hanging ear 6 is connected to one end of the third horizontal connecting rod 5, the rod body of the third horizontal connecting rod 5 is connected to one end of the third diagonal rod 7, the other end of the third horizontal connecting rod 5 and the other end of the third diagonal rod 7 are connected to the column 8 up and down, the fourth connecting component includes a fourth hanging ear 19 integrated with the flag plate 37, the fourth hanging ear 19 is connected to one end of the fourth horizontal connecting rod 20, the rod body of the fourth horizontal connecting rod 20 is connected to one end of the fourth diagonal rod 21, the other end of the fourth horizontal connecting rod 20 and the other end of the fourth diagonal rod 21 are connected to the column 8 up and down.
[0036] The inner arc track 11 and the outer arc track 4 are both elliptical structures when viewed from above, and the track length of the outer arc track 4 is greater than that of the inner arc track 11 .
[0037] In order to improve the stability and safety of sliding, the sliding device includes two walking wheel frames 27. The tops of the two walking wheel frames 27 are connected by a top plate 25. The middle sides of the two walking wheel frames 27 are connected by an upper connecting rod 35 and a lower connecting rod 28. The two lower connecting rods 28 are connected by a U-shaped connecting piece 39. The two side surfaces of the U-shaped connecting piece 39 are provided with flanges 63 that symmetrically fit the inner side surfaces of the walking wheel frames 27. The two walking wheel frames 27 and the flanges 63 are commonly connected to a first connecting shaft 47. The outer periphery of the first connecting shaft 47 is sleeved with a copper sleeve 48. The outer periphery of the copper sleeve 48 is sleeved with a connecting pipe 50. The outer periphery of the connecting pipe 50 is rotatably sleeved with a manned hanger 57 of the human body support device. Two inclined outer sliding wheels are installed on the outer sides of the two walking wheel frames 27. The two outer sliding wheels are respectively located on both sides of the flag plate 37 and fit the pipe 38. There is an interval between the two walking wheel frames 27. The gap limiting device includes an upper limiting device and a lower limiting device surrounding the outer circumference of the pipe 38. The upper limiting device includes a first limiting roller group 23 and a second limiting roller group that are horizontal to the top plate 25. The first limiting roller group 23 and the second limiting roller group are respectively located on both sides of the upper part of the pipe 38. The first limiting roller group and the second limiting roller group each include two horizontal rollers 24. The two horizontal rollers 24 are clamped and connected to the two walking wheel frames 27 through two upper and lower limiting plates 40; the lower limiting device includes a third limiting roller group and a fourth limiting roller group with the same inclination angle as the corresponding outer sliding wheel. The third limiting roller group and the fourth limiting roller group are respectively located on both sides of the lower part of the pipe 38. The third limiting roller group and the fourth limiting roller group each include two inclined rollers 33. The two inclined rollers 33 are connected to the two walking wheel frames 27 through the limiting wheel frames 34. The horizontal roller 24 is connected to the upper and lower limiting plates 40 via a third connecting shaft 42 . A bearing 43 is provided between the horizontal roller 24 and the third connecting shaft 42 to improve the smooth rotation performance of the horizontal roller 24 .
[0038] The first and second limiting roller groups each include two horizontal rollers 24, with the same clearance between the four horizontal rollers 24 and the pipe 38. The third and fourth limiting roller groups each include two inclined rollers 33, with the same clearance between the four inclined rollers 33 and the pipe 38. This ensures that the horizontal rollers 24 limit the horizontal position of the flagboard-direction sliding device, while the inclined rollers 33 limit the inclined position of the pipe-direction sliding device.
[0039] The preferred structural support device includes a seat 60 that fits a human body 61. The seat 60 is connected to a U-shaped padlock 68 via a steel buckle. The U-shaped padlock 68 connects to two man-carrying hangers 57. A nylon pressure block 58, which is pressed against a steel pipe handle 30, is installed between the two man-carrying hangers 57. The nylon pressure block 58 is connected to a pressure plate 31 via a first screw 51 and a second screw 45, respectively. The pressure plate 31 and the two man-carrying hangers 57 are integrally structured. The first screw 51 passes through a through hole in the center of the steel pipe handle 30, securing the steel pipe handle 30 to the pressure plate 31. Both sides of the two man-carrying hangers 57 are connected to a rope loop 29 via a second connecting shaft 44. The rope loop 29 is connected to the seat 60 via a rope strap, enhancing the reliability of the seat connection.
[0040] In order to increase the service life, an oil nozzle 46 is connected to the side of the connecting pipe 50. The oil nozzle 46 lubricates the copper sleeves 48 on both sides of the oil groove 49 and the first connecting shaft 47 through the oil groove 49.
[0041] The above describes in detail the preferred embodiments of this patent, but this patent is not limited to the above embodiments. Various changes can be made within the knowledge of ordinary technicians in this field without departing from the purpose of this patent.
Claims
1. A gliding track for amusement that allows a human body to slide stably without drifting sideways, comprising a gliding track, a pipe (38) and a flag plate (37) constituting the gliding track, and a pulley assembly (1) mounted thereon, characterized in that: The track cableway comprises an initial track (12) located at a departure platform (2), a running track consisting of an inner arc track (11) and an outer arc track (4) with gradually decreasing heights, and a terminal track (22) located at a terminal platform (3); the pulley assembly (1) comprises a sliding device and a human body support device, the sliding device and the human body support device are non-fixedly connected to each other, and the human body support device does not drift sideways when the sliding device turns and slides sideways; more than two columns (8) are connected between the inner arc track (11) and the outer arc track (4), each of which is connected to a vertical column (8). The columns (8) are respectively provided with a first connecting device connected to the inner arc track (11) and a second connecting device connected to the outer arc track (4); the first connecting device includes a first connecting assembly and a second connecting assembly with an angle of 60 to 90 degrees between each other, the first connecting assembly includes a first hanging ear (17) integrated with the flag plate (37), the first hanging ear (17) is connected to one end of the first horizontal connecting rod (18), the rod body of the first horizontal connecting rod (18) is connected to one end of the first oblique rod (16), the other end of the first horizontal connecting rod (18) and the other end of the first oblique rod (16) are connected to each other. The second connecting assembly includes a second hanging ear (14) integrated with the flag plate (37), the second hanging ear (14) is connected to one end of the second horizontal connecting rod (9), the rod body of the second horizontal connecting rod (9) is connected to one end of the second oblique rod (10), the other end of the second horizontal connecting rod (9) and the other end of the second oblique rod (10) are connected to the column (8) up and down; the second connecting device includes a third connecting assembly and a fourth connecting assembly with an angle of 60 to 90 degrees between each other, the third connecting assembly includes a third hanging ear (6) integrated with the flag plate (37), the third hanging ear (6) connecting one end of the third horizontal connecting rod (5), the rod body of the third horizontal connecting rod (5) is connected to one end of the third diagonal rod (7), the other end of the third horizontal connecting rod (5) and the other end of the third diagonal rod (7) are connected to the column (8) up and down, the fourth connecting assembly includes a fourth hanging ear (19) integrated with the flag plate (37), the fourth hanging ear (19) is connected to one end of the fourth horizontal connecting rod (20), the rod body of the fourth horizontal connecting rod (20) is connected to one end of the fourth diagonal rod (21), the other end of the fourth horizontal connecting rod (20) and the other end of the fourth diagonal rod (21) are connected to the column (8) up and down;The sliding device comprises two walking wheel frames (27), the tops of the two walking wheel frames (27) are connected by a top plate (25), the middle sides of the two walking wheel frames (27) are connected by an upper connecting rod (35) and a lower connecting rod (28), the two lower connecting rods (28) are connected by a U-shaped connecting piece (39), the two sides of the U-shaped connecting piece (39) are provided with flanges (63) symmetrically fitting the inner side of the walking wheel frame (27), the two walking wheel frames (27) and the flanges (63) are connected to a first connecting shaft (47), the outer periphery of the first connecting shaft (47) is sleeved with a copper sleeve (48), and the outer periphery of the copper sleeve (48) is sleeved with a connecting pipe ( 50), the outer periphery of the connecting pipe (50) is rotatably sleeved with the manned hanger (57) of the human body support device, the outer side surfaces of the two walking wheel frames (27) are both equipped with two inclined outer sliding wheels, the two outer sliding wheels are respectively located on both sides of the flag plate (37) and fit the pipe (38), a gap limiting device is provided between the two walking wheel frames (27), the gap limiting device includes an upper limit device and a lower limit device surrounding the outer periphery of the pipe (38), the upper limit device includes a first limit roller group and a second limit roller group horizontal to the top plate (25), the first limit roller group and the second limit roller group are respectively located on the pipe ( 38) on both sides of the upper part, the first limiting roller group and the second limiting roller group each include two horizontal rollers (24), and the two horizontal rollers (24) are clamped and connected to the two walking wheel frames (27) through the upper and lower limiting plates (40); the lower limiting device includes a third limiting roller group and a fourth limiting roller group with the same inclination angle as the corresponding outer sliding wheel, and the third limiting roller group and the fourth limiting roller group are respectively located on both sides of the lower part of the pipe (38), and the third limiting roller group and the fourth limiting roller group each include two inclined rollers (33), and the two inclined rollers (33) are connected to the two walking wheel frames (27) through the limiting wheel frame (34); the The human body support device includes a seat (60) that fits a human body (61), the seat (60) is connected to a U-shaped padlock (68) through a steel buckle, the U-shaped padlock (68) is connected to two manned hangers (57), a nylon pressing block (58) for pressing a steel pipe handle (30) is installed between the two manned hangers (57), the nylon pressing block (58) is connected to a pressing plate (31) through a first screw (51) and a second screw (45), and the pressing plate (31) and the two manned hangers (57) are an integral structure; the first screw (51) passes through a through hole in the middle of the steel pipe handle (30), so that the steel pipe handle (30) is fixedly connected to the pressing plate (31).
2. The amusement track zipline according to claim 1, wherein the amusement track zipline is stable and does not allow the human body to drift sideways, and is characterized in that: The inner arc track (11) and the outer arc track (4) are both elliptical structures when viewed from above, and the track length of the outer arc track (4) is greater than that of the inner arc track (11).
3. The amusement track zipline according to claim 1, wherein the amusement track zipline is stable and does not allow the human body to drift sideways, and is characterized in that: The first limiting roller group and the second limiting roller group each include two horizontal rollers (24), and the same gap is set between the four horizontal rollers (24) and the pipe (38). The third limiting roller group and the fourth limiting roller group each include two inclined rollers (33), and the same gap is set between the four inclined rollers (33) and the pipe (38).
4. The amusement track zipline according to claim 1, wherein the amusement track zipline is stable and does not allow the human body to drift sideways, and is characterized in that: The connecting pipe (50) is connected to a side thereof with an oil nozzle (46), and the oil nozzle (46) lubricates the copper sleeves (48) on both sides of the oil groove (49) and the first connecting shaft (47) through the oil groove (49).
5. The amusement track zipline according to claim 1, wherein the amusement track zipline is stable and does not allow the human body to drift sideways, and is characterized in that: Both sides of the two manned hangers (57) are connected to the rope loop (29) via the second connecting shaft (44), and the rope loop (29) is connected to the seat (60) via a rope belt.
6. The amusement track zipline according to claim 1, wherein the amusement track zipline is stable and does not allow the human body to drift sideways, and is characterized in that: The horizontal roller (24) is connected to the upper and lower limiting plates (40) via a third connecting shaft (42), and a bearing (43) is provided between the horizontal roller (24) and the third connecting shaft (42).
Citation Information
Patent Citations
Smooth guide tracked bottom plate heavy-duty pipe clamp
CN201554958U
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CN206823154U
Tackle device sliding along rigid track
CN210044836U
BR0302030A