A sliding protection device for a non-powered amusement facility
By designing a sliding protection device for unpowered amusement facilities, the coordination of the toggle block, elastic telescopic rod and rope can achieve automatic adjustment and horizontal displacement of the bearing structure, solving the problems of uneven landing of tourists and front-and-back collisions in the existing devices, and improving the buffering effect and safety of the sliding protection device.
Patent Information
- Application Number
- CN202011002226.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-09-22
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2040-09-22
AI Technical Summary
The existing sliding protection device cannot automatically adjust the bearing structure when sliding and falling, resulting in tourists being unable to evenly landing in the center of the bearing structure, affecting the buffering effect, and prone to safety accidents in which front and back tourists collided.
A sliding protection device for unpowered amusement facilities is designed, including a base, slide structure, bearing structure, shock absorption structure and adjustment structure. Through the coordination of the toggle block, elastic telescopic rod and rope, the automatic adjustment and horizontal displacement of the bearing structure are achieved, ensuring that tourists fall evenly in the middle position, and blocking and lifting the gear lever to avoid collision between front and rear tourists.
The buffering effect and safety of the sliding protection device are improved, ensuring that tourists fall evenly in the middle of the bearing structure, and avoiding safety accidents of front and rear tourists colliding.
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Figure CN112121442B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of amusement facilities, and more specifically, particularly relates to a sliding protection device for non-powered amusement facilities. Background Art
[0002] With the improvement of living standards, more and more people like to go to amusement parks for entertainment and relaxation. There are multiple sliding projects in amusement parks, such as slides and slides, etc. Protective devices are essential when performing sliding amusement projects.
[0003] Patent CN201811250328.3 discloses an amusement water slide with a protective function, including a slide, and also including a plurality of slides distributed in parallel along the width direction of the slide, and a protective device is distributed below the starting end of the slide to block the slide to prevent tourists from accidentally sliding down when they are not ready. The present invention drives the installation shaft to rotate by cooperating with the first and second swing arms through a hydraulic cylinder, so that the baffle is ready and opened when the tourists are ready, preventing tourists from accidentally falling due to the slippery slide, and no electrical equipment is required to prevent accidental leakage and endanger the safety of tourists and staff. The present invention manufactures water curtains and dazzling effects by cooperating with nozzles and LED lights, improving the entertainment and excitement of the project and meeting the needs of the majority of tourists. The present invention reduces the speed of tourists falling from the slide by a deceleration plate, preventing accidents and ensuring the safety of tourists.
[0004] The sliding protection device similar to the above application still has the following shortcomings:
[0005] 1. The existing device cannot automatically adjust the receiving structure according to factors such as the height and weight of different tourists when sliding down, so it cannot ensure that all tourists can fall into the center of the receiving structure, thereby affecting the buffering effect; 2. When the existing device is in use, it is easy for the previous tourist to fall down before leaving the receiving structure, which may cause the tourists to collide with each other and cause safety accidents.
[0006] Therefore, in view of this, the existing structure and defects are studied and improved, and a non-powered amusement facility sliding protection device is provided, in order to achieve the purpose of having more practical value. Summary of the invention
[0007] The object of the present invention is to provide a sliding protection device for a non-powered amusement facility to solve the above-mentioned problems in the prior art.
[0008] To achieve the above-mentioned purpose, the present invention provides a non-powered amusement facility sliding protection device, comprising a base and a slide structure; the base is fixed on the ground, and a receiving structure is slidably connected to the base, and two shock-absorbing structures are installed on the receiving structure; the slide structure is fixed on the ground, and an adjustment structure is installed on the slide structure, and a rope is connected between the slide structure and the adjustment structure; a riding board is placed in the slide structure; the receiving structure comprises a toggle block, and the two toggle blocks are symmetrically welded to the bottom end surface of the receiving seat, and the head ends of the two toggle blocks are connected to the bottom end surface of the receiving seat. The toggle block is in contact with the head ends of the two elastic telescopic rods, and the head ends of the two elastic telescopic rods are both arc-shaped structures; the head end of the rope is connected to the toggle rod B, and the tail end of the rope is connected to the lever, and the rope passes through the pulley; when the riding board slides to the lowest position of the slide body, the riding board is in a limited state, and the toggle rod B is also in a limited state at this time; when the toggle rod B is limited by the riding board, the rope is in a relaxed state, and the lever is in a blocked state at this time; when the riding board is taken out from the slide body, the return rope of the toggle rod B is stretched, and the lever is in a raised state at this time.
[0009] Furthermore, the base includes a support seat A and a sliding rod A, the support seat A is welded to the top surface of the base, and the sliding rod A is welded on the support seat A; the receiving structure includes a sliding seat, a sliding rod B, a receiving seat and an elastic member, the sliding seat is slidably connected to the sliding rod A, and a sliding rod B is welded to the four corners of the top surface of the sliding seat; a receiving seat is slidably connected to the four sliding rods B, and the receiving seat is composed of a frame and a receiving net; an elastic member is sleeved on the four sliding rods B, and the four elastic members together constitute an elastic reset structure of the receiving seat.
[0010] Furthermore, the shock-absorbing structure includes a support seat B and an elastic telescopic rod. There are two support seats B in total, and the two support seats B are fixedly connected to the sliding seat by bolts; each support seat B is fixedly connected to an elastic telescopic rod by bolts, and the two elastic telescopic rods are arranged in a mirror image.
[0011] Furthermore, the slide structure includes a slide body, support columns, a rotating connection seat A, a gear lever, a rotating shaft A and a pulley. Four support columns are welded to the bottom end surface of the slide body, and the four support columns are fixedly connected to the ground, and a riding board is slidably connected inside the slide body; the rotating shaft A is rotatably connected to the slide body, and a pulley is installed on the rotating shaft A; a rotating connection seat A is welded to the slide body, and a gear lever is rotatably connected to the rotating connection seat A, and the gear lever constitutes a shielding structure of the slide body.
[0012] Furthermore, the adjustment structure includes a rotating connecting seat B, a rotating shaft B and a toggle rod A. The rotating connecting seat B is fixedly connected to the slide body by bolts, and the rotating connecting seat B is rotatably connected to the rotating shaft B; a toggle rod A is welded to the rotating shaft B, and the toggle rod A is in contact with the sliding seat.
[0013] Furthermore, the adjusting structure further includes a toggle lever B, which is welded to the rotating shaft B and passes through the slide body. When the riding board slides to the lowest position of the slide body, the riding board contacts the toggle lever B, and at this time, the toggle lever B and the rotating shaft B are in a rotating state.
[0014] Furthermore, the adjusting structure further includes a counterweight, which is installed on the toggle lever B, and when the toggle lever B is impacted, the counterweight forms an inertia increasing structure of the toggle lever B.
[0015] Furthermore, the base further includes elastic damping telescopic rods. There are two elastic damping telescopic rods in total, and both of the two elastic damping telescopic rods are welded to the support base A. The head ends of the two elastic damping telescopic rods are both in contact with the sliding seat.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] The receiving structure is improved. Through the improvement, double shock absorption of the receiving structure can be realized, thereby improving the buffering effect. Moreover, after the shock absorption structure is improved, the friction force is smaller and the shock absorption effect is more obvious. Specifically as follows: First, since a receiving seat is slidably connected to four sliding rods B, and the receiving seat is composed of a frame and a receiving net; an elastic member is sleeved on each of the four sliding rods B, and the four elastic members together form an elastic reset structure of the receiving seat, so that the buffering of the receiving seat can be realized. Second, since there are two toggle blocks in total, and the two toggle blocks are symmetrically welded to the bottom end surface of the receiving seat, and the head ends of the two toggle blocks are both in a pointed structure; the head ends of the toggle blocks are in contact with the head ends of the two elastic telescopic rods, and the head ends of the two elastic telescopic rods are both in an arc structure. Thus, on the one hand, when the toggle blocks move downward following the receiving seat, the two elastic telescopic rods are in a state of being forcefully squeezed, and thus the elastic shock absorption of the receiving seat can be realized. On the other hand, the elastic telescopic rods with arc-shaped head ends can reduce the frictional resistance with the toggle blocks.
[0018] Through the coordinated arrangement of the supporting structure, the shock-absorbing structure, the slide structure, the adjusting structure, the rope and the riding board, on the one hand, the moving distance of the supporting structure can be changed by the magnitude of the sliding impact force between the riding board and the adjusting structure, and through the coordination of the elastic damping telescopic rod, it can be achieved that all tourists can fall into the middle position of the supporting structure, thereby improving safety; on the other hand, when the riding board is not taken out of the slide body, the gear lever is in an intercepting state, thereby avoiding the phenomenon that the second tourist slides down before the first tourist leaves the supporting structure and causes a safety accident, which is specifically as follows: first, because the rotating connecting seat B is fixedly connected to the slide body by bolts, and the rotating connecting seat B is rotatably connected with a rotating shaft B; a toggle rod A is welded to the rotating shaft B, and the toggle rod A is in contact with the sliding seat, so that when the rotating shaft B and the toggle rod A rotate, the sliding seat is in a moving state; second, because the toggle rod B is welded to the rotating shaft B, and the toggle rod B passes through the slide body; when the riding board slides to the lowest position of the slide body, the riding board contacts the toggle rod B, and at this time the toggle rod B and the rotating shaft B are in a rotating state, so that the rotation of the rotating shaft B and the toggle rod A can be realized, and then the horizontal displacement of the receiving structure can be realized, and finally the receiving structure after the position change is realized; thirdly, because the head end of the rope is connected with the toggle rod B, and the tail end of the rope is connected with the gear bar, and the rope passes through the pulley; when the riding board slides to the lowest position of the slide body, the riding board is in a limited state, and at this time the toggle rod B is also in a limited state; when the toggle rod B is limited by the riding board, the rope is in a relaxed state, and at this time the gear bar is in a blocked state; when the riding board is taken out from the slide body, the toggle rod B return rope is stretched, and at this time the gear bar is in a raised state, thereby avoiding the first tourist from leaving the receiving structure before the second tourist slides down to cause a safety accident BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is an axial structural schematic diagram of the present invention.
[0020] Figure 2 It is a schematic diagram of the enlarged structure of point A of the present invention.
[0021] Figure 3 The present invention Figure 1 Schematic diagram of the axial structure in another direction.
[0022] Figure 4 It is a schematic diagram of the axial structure during use of the present invention.
[0023] Figure 5 The present invention Figure 4 Schematic diagram of the enlarged structure at B.
[0024] Figure 6 It is an axially enlarged structural schematic diagram of the receiving structure and the adjusting structure of the present invention.
[0025] Figure 7The present invention Figure 6 Schematic diagram of the adjusted axis view structure.
[0026] Figure 8 It is an axially enlarged structural schematic diagram of the regulating structure and the riding board of the present invention.
[0027] Description of reference numerals:
[0028] 1. Base; 101. Support seat A; 102. Sliding rod A; 103. Elastic damping telescopic rod; 2. Supporting structure; 201. Sliding seat; 202. Sliding rod B; 203. Supporting seat; 204. Elastic member; 205. Toggle block; 3. Shock absorption structure; 301. Support seat B; 302. Elastic telescopic rod; 4. Slide structure; 401. Slide body; 402. Support column; 403. Rotating connecting seat A; 404. Shift lever; 405. Rotating shaft A; 406. Pulley; 5. Adjusting structure; 501. Rotating connecting seat B; 502. Rotating shaft B; 503. Toggle rod A; 504. Toggle rod B; 505. Counterweight; 6. Rope; 7. Riding board. DETAILED DESCRIPTION
[0029] The following embodiments of the present invention are described in further detail in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0030] In the description of the present invention, unless otherwise specified, "plurality" means two or more than two; the orientations or positional relationships indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0031] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0032] Embodiment 1:
[0033] As attached Figure 1 To Attachment Figure 8As shown in the figure, the sliding protection device of the non-powered amusement facility of the present invention includes a base 1 and a slide structure 4. The base 1 is fixed on the ground, and a receiving structure 2 is slidably connected to the base 1, and two shock-absorbing structures 3 are installed on the receiving structure 2. The slide structure 4 is fixed on the ground, and an adjusting structure 5 is installed on the slide structure 4, and a rope 6 is connected between the slide structure 4 and the adjusting structure 5. A seating board 7 is placed inside the slide structure 4. Refer to Figure 6 , the receiving structure 2 includes two toggle blocks 205. There are two toggle blocks 205 in total, and the two toggle blocks 205 are symmetrically welded to the bottom end surface of the receiving seat 203, and the head ends of the two toggle blocks 205 are both pointed structures; the head ends of the toggle blocks 205 are in contact with the head ends of the two elastic telescopic rods 302, and the head ends of the two elastic telescopic rods 302 are both arc-shaped structures. Thus, on the one hand, when the toggle blocks 205 move downward following the receiving seat 203, the two elastic telescopic rods 302 are in a state of being squeezed, and thus the elastic shock absorption of the receiving seat 203 can be realized. On the other hand, the elastic telescopic rod 302 with an arc-shaped head end can reduce the frictional resistance with the toggle block 205. Refer to Figure 1 , the head end of the rope 6 is connected to the toggle rod B504, and the tail end of the rope 6 is connected to the stop rod 404, and the rope 6 passes through the pulley 406. When the seating board 7 slides to the lowest position of the slide main body 401, the seating board 7 is in a limited state, and at this time the toggle rod B504 is also in a limited state. When the toggle rod B504 is limited by the seating board 7, the rope 6 is in a relaxed state, and at this time the stop rod 404 is in a blocking state. When the seating board 7 is taken out from the slide main body 401, the toggle rod B504 returns and the rope 6 is stretched, and at this time the stop rod 404 is in a raised state, thereby avoiding the phenomenon of a safety accident caused by the second tourist sliding down before the first tourist has left the receiving structure 2.
[0034] Refer to Figure 6 , the base 1 includes a support seat A101 and a sliding rod A102. The support seat A101 is welded to the top end surface of the base 1, and a sliding rod A102 is welded to the support seat A101; the receiving structure 2 includes a sliding seat 201, a sliding rod B202, a receiving seat 203 and an elastic member 204. The sliding seat 201 is slidably connected to the sliding rod A102, and a sliding rod B202 is welded at each of the four corner positions of the top end surface of the sliding seat 201; a receiving seat 203 is slidably connected to the four sliding rods B202, and the receiving seat 203 is composed of a frame and a receiving net; an elastic member 204 is sleeved on each of the four sliding rods B202, and the four elastic members 204 together form an elastic reset structure of the receiving seat 203, thereby realizing the buffering of the receiving seat 203.
[0035] Refer to Figure 6The shock absorbing structure 3 includes a support seat B301 and an elastic telescopic rod 302. There are two support seats B301 in total, and the two support seats B301 are fixedly connected to the sliding seat 201 by bolts; each support seat B301 is fixedly connected to an elastic telescopic rod 302 by bolts, and the two elastic telescopic rods 302 are arranged in a mirror image.
[0036] References Figure 1 The slide structure 4 includes a slide body 401, support columns 402, a rotating connection seat A403, a lever 404, a rotating shaft A405 and a pulley 406. Four support columns 402 are welded to the bottom end surface of the slide body 401, and the four support columns 402 are fixedly connected to the ground, and a riding board 7 is slidably connected inside the slide body 401; the rotating shaft A405 is rotatably connected to the slide body 401, and a pulley 406 is installed on the rotating shaft A405; a rotating connection seat A403 is welded to the slide body 401, and a lever 404 is rotatably connected to the rotating connection seat A403, and the lever 404 constitutes a shielding structure of the slide body 401.
[0037] Embodiment 2:
[0038] References Figure 6 The adjustment structure 5 includes a rotating connecting seat B501, a rotating shaft B502 and a toggle rod A503. The rotating connecting seat B501 is fixedly connected to the slide body 401 by bolts, and the rotating connecting seat B501 is rotatably connected with the rotating shaft B502; a toggle rod A503 is welded to the rotating shaft B502, and the toggle rod A503 is in contact with the sliding seat 201, so that when the rotating shaft B502 and the toggle rod A503 rotate, the sliding seat 201 is in a moving state.
[0039] References Figure 6 The adjustment structure 5 also includes a toggle rod B504, which is welded on the rotating shaft B502 and passes through the slide body 401; when the riding board 7 slides to the lowest position of the slide body 401, the riding board 7 contacts the toggle rod B504, and at this time the toggle rod B504 and the rotating shaft B502 are in a rotating state, thereby realizing the rotation of the rotating shaft B502 and the toggle rod A503, and then realizing the horizontal displacement of the receiving structure 2, and finally realizing the receiving of the receiving structure 2 after changing its position.
[0040] References Figure 6The adjustment structure 5 also includes a counterweight 505, which is installed on the toggle rod B504, and when the toggle rod B504 is hit, the counterweight 505 constitutes an inertia increasing structure of the toggle rod B504, thereby realizing the inertial toggle of the sliding seat 201 by the impact of the riding board 7, and then realizing the inertial sliding of the sliding seat 201. Finally, under different impacts, the sliding seat 201 can achieve different degrees of displacement, thereby realizing the accurate reception of tourists of different weights.
[0041] Embodiment 3:
[0042] References Figure 6 The base 1 also includes an elastic damping telescopic rod 103, of which there are two, and both are welded to the support seat A101; the head ends of the two elastic damping telescopic rods 103 are in contact with the sliding seat 201, so that the elastic damping telescopic rod 103 can realize the slow return of the sliding seat 201 after being moved, thereby avoiding the phenomenon that the supporting structure 2 has returned to its position before the tourist falls on the supporting structure 2.
[0043] Embodiment 4:
[0044] When the non-powered amusement facility sliding protection device of the present invention is used, when a tourist rides on the riding board 7 and slides downward, firstly, because the rotating connecting seat B501 is fixedly connected to the slide body 401 by bolts, and the rotating connecting seat B501 is rotatably connected with the rotating shaft B502; a toggle rod A503 is welded to the rotating shaft B502, and the toggle rod A503 contacts the sliding seat 201, so that when the rotating shaft B502 and the toggle rod A503 rotate, the sliding seat 201 is in a moving state; secondly, because the toggle rod B504 is welded to the rotating shaft B502, and the toggle rod B504 passes through the slide body 401; when the riding board 7 slides to the lowest position of the slide body 401, the riding board 7 contacts the toggle rod B504, and at this time the toggle rod B504 and the rotating shaft B502 are in a rotating state, so that the rotating shaft B502 can be realized. 02 and the rotation of the toggle rod A503, thereby realizing the horizontal displacement of the receiving structure 2, and finally realizing the receiving after the receiving structure 2 changes its position; thirdly, because the head end of the rope 6 is connected to the toggle rod B504, and the tail end of the rope 6 is connected to the gear lever 404, and the rope 6 passes through the pulley 406; when the riding board 7 slides to the lowest position of the slide body 401, the riding board 7 is in a limited state, and at this time the toggle rod B504 is also in a limited state; when the toggle rod B504 is limited by the riding board 7, the rope 6 is in a relaxed state, and at this time the gear lever 404 is in a blocked state; when the riding board 7 is taken out from the slide body 401, the toggle rod B504 return rope 6 is stretched, and at this time the gear lever 404 is in a lifted state, thereby avoiding the first tourist from sliding down before the second tourist leaves the receiving structure 2, causing a safety accident.
[0045] When a tourist falls on the receiving structure 2, firstly, there is a receiving seat 203 slidably connected to the four sliding rods B202, and the receiving seat 203 is composed of a frame and a receiving net; an elastic member 204 is sleeved on each of the four sliding rods B202, and the four elastic members 204 together form an elastic reset structure of the receiving seat 203, thereby achieving buffering of the receiving seat 203; secondly, there are two toggle blocks 205, and the two toggle blocks 205 are symmetrically welded on the bottom end surface of the receiving seat 203. , and the head ends of the two toggle blocks 205 are both pointed structures; the head end of the toggle block 205 contacts the head ends of the two elastic telescopic rods 302, and the head ends of the two elastic telescopic rods 302 are both arc-shaped structures, so that on the one hand, when the toggle block 205 moves downward following the receiving seat 203, the two elastic telescopic rods 302 are in a force-extruded state, thereby realizing elastic shock absorption of the receiving seat 203; on the other hand, the elastic telescopic rods 302 with arc-shaped head ends can reduce the friction resistance between the toggle block 205.
[0046] The embodiments of the present invention are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.
Claims
1. A sliding protection device for a non-powered amusement facility, characterized in that: The invention comprises a base (1) and a slide structure (4); the base (1) is fixed on the ground, and a receiving structure (2) is slidably connected to the base (1), and two shock absorbing structures (3) are installed on the receiving structure (2); the slide structure (4) is fixed on the ground, and an adjustment structure (5) is installed on the slide structure (4), and a rope (6) is connected between the slide structure (4) and the adjustment structure (5); a riding board (7) is placed in the slide structure (4); the receiving structure (2) comprises a toggle block (205), and the toggle blocks (205) are provided with two in total, and the two toggle blocks (205) are symmetrically welded to the bottom end surface of the receiving seat (203), and the head ends of the two toggle blocks (205) are both pointed structures; the head ends of the toggle blocks (205) are connected to the two elastic extensions. The head ends of the retractable rods (302) are in contact with each other, and the head ends of the two elastic telescopic rods (302) are both arc-shaped structures; the head end of the rope (6) is connected to the toggle rod B (504), and the tail end of the rope (6) is connected to the gear lever (404), and the rope (6) passes through the pulley (406); when the riding board (7) slides to the lowest position of the slide body (401), the riding board (7) is in a limited position state, and at this time the toggle rod B (504) is also in a limited position state; when the toggle rod B (504) is limited by the riding board (7), the rope (6) is in a relaxed state, and at this time the gear lever (404) is in a blocked state; when the riding board (7) is removed from the slide body (401), the return rope (6) of the toggle rod B (504) is stretched, and at this time the gear lever (404) is in a raised state, The base (1) comprises a support seat A (101) and a sliding rod A (102), wherein the support seat A (101) is welded to the top surface of the base (1), and the sliding rod A (102) is welded to the support seat A (101); the receiving structure (2) comprises a sliding seat (201), a sliding rod B (202), a receiving seat (203) and an elastic member (204), wherein the sliding seat (201) is slidably connected to the sliding rod A (102), and a sliding rod B (202) is welded to each of the four corners of the top surface of the sliding seat (201); a receiving seat (203) is slidably connected to each of the four sliding rods B (202), and the receiving seat (203) is composed of a frame and a receiving net; an elastic member (204) is sleeved on each of the four sliding rods B (202), and the four elastic members (204) together form an elastic reset structure of the receiving seat (203). The adjustment structure (5) comprises a rotating connection seat B (501), a rotating shaft B (502) and a toggle rod A (503); the rotating connection seat B (501) is fixedly connected to the slide body (401) by bolts, and the rotating connection seat B (501) is rotatably connected to the rotating shaft B (502); a toggle rod A (503) is welded to the rotating shaft B (502), and the toggle rod A (503) is in contact with the sliding seat (201).
2. The sliding protection device for a non-powered amusement facility according to claim 1, characterized in that: The shock absorbing structure (3) comprises a support seat B (301) and an elastic telescopic rod (302); two support seats B (301) are provided, and the two support seats B (301) are fixedly connected to the sliding seat (201) by means of bolts; each support seat B (301) is fixedly connected to an elastic telescopic rod (302) by means of bolts, and the two elastic telescopic rods (302) are arranged in a mirror image.
3. The sliding protection device for a non-powered amusement facility according to claim 2, characterized in that: The slide structure (4) comprises a slide body (401), support columns (402), a rotatable connection seat A (403), a lever (404), a rotating shaft A (405) and a pulley (406); four support columns (402) are welded to the bottom end surface of the slide body (401), and the four support columns (402) are fixedly connected to the ground; a riding board (7) is slidably connected inside the slide body (401); the rotating shaft A (405) is rotatably connected to the slide body (401), and a pulley (406) is installed on the rotating shaft A (405); a rotatable connection seat A (403) is welded to the slide body (401), and a lever (404) is rotatably connected to the rotatable connection seat A (403), and the lever (404) constitutes a shielding structure of the slide body (401).
4. The sliding protection device for a non-powered amusement facility according to claim 3, characterized in that: The adjustment structure (5) further comprises a toggle rod B (504), the toggle rod B (504) being welded to the rotating shaft B (502), and the toggle rod B (504) passing through the slide body (401); when the riding board (7) slides to the lowest position of the slide body (401), the riding board (7) contacts the toggle rod B (504), and at this time, the toggle rod B (504) and the rotating shaft B (502) are in a rotating state.
5. The sliding protection device for a non-powered amusement facility according to claim 4, characterized in that: The adjustment structure (5) further comprises a counterweight (505), wherein the counterweight (505) is mounted on the toggle rod B (504), and when the toggle rod B (504) is struck, the counterweight (505) constitutes an inertia increasing structure of the toggle rod B (504).
6. The sliding protection device for a non-powered amusement facility according to claim 5, characterized in that: The base (1) further comprises an elastic damping telescopic rod (103), two of which are provided, and both are welded to the support seat A (101); the head ends of the two elastic damping telescopic rods (103) are in contact with the sliding seat (201).
Citation Information
Patent Citations
Recreational water slide with protective function
CN109224464A
Adventure slippery slide
CN108744530A
Anti-falling device for slide
CN111318029A