CN210751249U - Climbing frame structure of multifunctional large amusement equipment - Google Patents

Climbing frame structure of multifunctional large amusement equipment Download PDF

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Publication number
CN210751249U
CN210751249U CN201921375966.8U CN201921375966U CN210751249U CN 210751249 U CN210751249 U CN 210751249U CN 201921375966 U CN201921375966 U CN 201921375966U CN 210751249 U CN210751249 U CN 210751249U
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climbing
frame
climbing frame
group
spherical
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刘晓军
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NANJING CHEER AMUSEMENT EQUIPMENT CO LTD
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NANJING CHEER AMUSEMENT EQUIPMENT CO LTD
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Abstract

A climbing frame structure of multifunctional large amusement equipment comprises a first-layer climbing rope net structure, a second-layer climbing rope net structure and a third-layer climbing rope net structure; the one-layer climbing rope net structure, the two-layer climbing rope net structure and the three-layer climbing rope net structure comprise a group of climbing frame connecting square steel, a group of climbing frame stand columns, a group of multi-surface type climbing frame and a group of spherical climbing frame, and the spherical climbing frame comprises a spherical climbing frame stand column, a spherical frame and a spherical outer housing. Climbing frame belong to air adventure class amusement facilities, be fit for each age bracket crowd's use, the user passes through each project along the track in proper order under the prerequisite of tying the safety belt, reachs another platform from a platform, experiences the sensation of walking in the air at the in-process of travelling, temper courage's challenge oneself, increased holistic interest, temper teenagers and adult's will power simultaneously, increase the courage of challenge oneself.

Description

Climbing frame structure of multifunctional large amusement equipment
Technical Field
The utility model belongs to the technical field of amusement equipment, specifically, relate to a climbing frame structure of multi-functional big amusement equipment.
Background
Along with the continuous improvement of the living standard of the materials of people, the mental demand of the people is also continuously improved, and the amusement park is taken as a place for relaxing the body and mind of the people and is deeply loved by teenagers all the time. At present, entertainment projects in an amusement park are various, a plurality of outdoor large and small amusement devices are arranged, a plurality of amusement devices for children to play are arranged in indoor shopping malls, the outdoor large amusement devices comprise tornadoes, magic bowls, wave making pools, torrent marching, roller coasters, pirate boats, ferris wheels and the like, the entertainment projects are all thrilling and stimulating, and the amusement projects can bring nervous and stimulating experience to people. The indoor is mainly an air fort, a slide, an ocean ball pool, a trampoline and the like.
However, the above projects have a long history, belong to the traditional project, many people have repeatedly tried the projects, and no longer have a fresh feeling, so with the continuous development of society, a new type of amusement equipment needs to be designed, and more fun can be brought to people in the playing process.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: the utility model aims at providing a climbing frame structure of multi-functional big amusement equipment has solved amusement equipment project singleness, and children lose the problem of interest easily, provides a mechanism complicacy, can supply each a plurality of age bracket children to play and the amusement equipment of adventure.
The technical scheme is as follows: the utility model provides a climbing frame structure of a multifunctional big amusement device, which comprises a one-layer climbing rope net structure, a two-layer climbing rope net structure and a three-layer climbing rope net structure, wherein the two-layer climbing rope net structure is arranged on the one-layer climbing rope net structure, the three-layer climbing rope net structure is arranged on the two-layer climbing rope net structure, and steps are arranged in front of the two-layer climbing rope net structure and the three-layer climbing rope net structure; wherein the one-layer climbing rope net structure, the two-layer climbing rope net structure and the three-layer climbing rope net structure comprise a group of climbing frame connecting square steels, a group of climbing frame upright columns, a group of polyhedral type climbing frames and a group of spherical climbing frames, the lower end parts of the group of climbing frame upright columns, the group of polyhedral type climbing frames and the group of spherical climbing frames are all fixed on the ground through bolts, the group of climbing frame upright columns and the group of polyhedral type climbing frames are connected through the climbing frame connecting square steels, the group of climbing frame upright columns and the group of polyhedral type climbing frames are connected through the spherical climbing frame connecting square steels, the spherical climbing frames comprise spherical climbing frame upright columns, spherical frames and spherical outer housings, the climbing frame upright columns are cylindrical, the spherical frames and the spherical outer housings are spherical, and the spherical frames are arranged on the outer walls of the lower end parts of the climbing frame upright columns, the spherical outer housing is covered on the spherical frame, a group of circular openings are arranged on the spherical outer housing, adapter flanges are arranged on the spherical frame at positions corresponding to the circular openings, and the spherical outer housing is connected with the adapter flanges.
Furthermore, foretell multi-functional big amusement equipment's climbing frame structure, be equipped with the hexagonal keysets on the ball-type climbing frame stand, the hexagonal keysets includes upper junction plate, lower connecting plate and a set of intermediate junction board, a set of intermediate junction board sets up between upper junction plate and the lower connecting plate, be equipped with a set of convex part on upper junction plate and the lower connecting plate, a set of convex part sets up with annular array's mode, be equipped with the recess between a set of convex part, the intermediate junction board is located the position department that the recess is counterpointed between upper junction plate and the lower connecting plate, climbing frame connection square steel's one end passes through the bolt fastening and sets up on the convex part of upper junction plate and the convex part.
Furthermore, foretell multi-functional big amusement equipment's climbing frame structure, be equipped with a set of polygon climbing platform on the ball-type climbing frame stand, polygon climbing platform is located ball-type frame top.
Furthermore, in the climbing frame structure of the multifunctional large amusement equipment, a group of rescue platforms are arranged on the spherical climbing frame stand columns, and the rescue platforms are positioned above the spherical frame.
Furthermore, foretell multi-functional big amusement equipment's climbing frame structure, the polyhedral type climbing frame includes polyhedral type climbing frame stand, multiaspect type frame and rail, the multiaspect type climbing frame stand is cylindricly, the cross-section of multiaspect type frame is regular multilateral type, the multiaspect type frame is connected with the outer wall of multiaspect type climbing frame stand, the rail sets up on multiaspect type frame.
Furthermore, according to the climbing frame structure of the multifunctional large amusement equipment, the hexagonal adapter plate is arranged on the polyhedral climbing frame column.
Further, in the climbing frame structure of the multifunctional large amusement device, a group of polygonal climbing platforms and a group of rescue platforms are arranged on the polygonal climbing frame stand column, and the polygonal climbing platforms and the rescue platforms are located above the polygonal frame.
Furthermore, in the climbing frame structure of the multifunctional large amusement equipment, the upper ends of the spherical climbing frame upright post and the polyhedral climbing frame upright post are provided with the safety rescue belt.
Furthermore, foretell multi-functional big amusement equipment's climbing frame structure, the upper end of climbing frame stand is equipped with the hexagonal keysets.
Above-mentioned technical scheme can find out, the utility model discloses following beneficial effect has: multi-functional climbing frame structure of amusement equipment greatly, structural design is reasonable, the function is various, interesting strong, has following advantage:
(1) the climbing frame belongs to an air adventure amusement facility and is suitable for people of all age groups to use, a user sequentially passes through all projects along a rail through stairs on the premise of fastening a safety belt and arrives at another platform from one platform, the feeling of walking in the air is experienced in the amusement process, and the user can exercise the courtesy and challenge himself;
(2) climbing and different software projects can be arranged between adjacent platforms, such as walking a single-log bridge, passing through a roller and the like, a plurality of different projects can be arranged, the overall interestingness is increased, the willpower of teenagers and adults is exercised at the same time, and the courage for challenging oneself is improved.
Drawings
Fig. 1 is a schematic structural view of the multifunctional tower of the present invention;
fig. 2 is a schematic structural diagram of a central tower according to the present invention;
fig. 3 is a schematic structural diagram of a central tower according to the present invention;
fig. 4 is a schematic structural diagram of a central tower according to the present invention;
fig. 5 is a schematic structural diagram of the jump tower of the present invention;
fig. 6 is a first schematic structural view of the climbing frame according to the present invention;
fig. 7 is a schematic structural view of one layer of the climbing frame of the present invention;
fig. 8 is a schematic structural view of two or three layers of the climbing frame of the present invention;
fig. 9 is a first schematic structural view of the ball-type climbing stand according to the present invention;
FIG. 10 is a schematic structural view of a second ball-type climbing stand according to the present invention;
fig. 11 is a first schematic structural view of the multi-surface climbing frame according to the present invention;
fig. 12 is a second schematic structural view of the multi-surface climbing stand according to the present invention;
fig. 13 is a schematic structural view of the hexagonal connecting plate of the present invention;
fig. 14 is a schematic structural view of the hexagonal connecting plate according to the present invention;
fig. 15 is a schematic structural view of the rail sliding trolley of the present invention;
fig. 16 is a second schematic structural view of the rail sliding trolley of the present invention;
fig. 17 is a bottom view of the rail sliding trolley of the present invention;
fig. 18 is a main view of the track-sliding trolley of the present invention;
fig. 19 is a schematic structural view of the frame of the rail-mounted trolley according to the present invention;
fig. 20 is a partial enlarged view of the sky glide track of the present invention.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and to simplify the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, unless otherwise specified, "a plurality" means two or more unless explicitly defined otherwise.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In the present disclosure, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may comprise direct contact between the first and second features, or may comprise contact between the first and second features not directly. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
Examples
The multifunctional tower as shown in fig. 1 comprises a central tower 100 and a climbing frame 200, wherein the climbing frame 200 is connected with the central tower 100;
wherein, the central tower 100 shown in fig. 2-5 comprises a sky glide track 201, a jump tower 202, a central tower body 203, a central tower straight glide 204, a central tower rotation glide 205, a sky glide platform 206 and a rail glide cart 207, the sky glide track 201 is disposed in a curved inclined manner, the sky glide platform 206 is connected to a lower end portion of the central tower body 203, one end of the sky glide track 201 is fixed to an upper end portion of the central tower body 203, and the other end of the sky glide track 201 can pass through the sky glide platform 206 to be disposed on a lower end portion of the central tower body 203, the jump tower 202 is disposed on an upper end portion of the central tower body 203, the upper end portions of the central tower straight glide 204 and the central tower rotation glide 205 are both connected to the central tower body 203, and the other ends of the central tower straight glide 204 and the central tower rotation glide 205 are disposed on the ground, the rail sliding trolley 207 is arranged on the sky gliding rail 201, and the rail sliding trolley 207 can slide along the sky gliding rail 201; the sky glide rail 201 is supported by a support frame of steel structure, a structure built for steel pipes, not shown in the figure. The central tower body 203 comprises a central tower frame 208, a central tower first platform 209, a central tower second platform 210 and a central tower third platform 211, wherein the central tower first platform 209, the central tower second platform 210 and the central tower third platform 211 are sequentially arranged on the central tower frame 208 from top to bottom, one end of the sky gliding platform 206 is connected with the edge of the central tower third platform 211, the hopping tower 202 is arranged on the central tower first platform 209, and the central tower straight sliding board 204 and the central tower rotary sliding board 205 are connected with the central tower third platform 211. The central tower frame 208 includes a central tower middle support column 212, a set of square connecting tubes 213, a set of central tower inner support columns 214 and a set of central tower outer support columns 215, the central tower middle support column 212 and the set of central tower inner support columns 214, the central tower middle support column 212 and the set of central tower outer support columns 215 are connected by a set of square connecting tubes 213, the set of central tower inner support columns 214 is disposed on a circumference centered on the central tower middle support column 212, the set of central tower outer support columns 215 is disposed on a circumference centered on the central tower middle support column 212, and the set of central tower inner support columns 214 and the set of central tower outer support columns 215 are disposed in an annular array. Center tower first platform 209, center tower second platform 210 and center tower third platform 211 include center tower platform mesa 216, a set of support side's pipe 217 and a set of arc connecting pipe 218, the intermediate position of center tower platform mesa 216 is equipped with first through-hole 219, first through-hole 219 uses center tower middle strut 212 as the center, connect through a set of arc connecting pipe 218 between a set of center tower inlayer support column 214, connect through a set of support side's pipe 217 and a set of arc connecting pipe 218 between a set of center tower outer support column 215, center tower platform mesa 216 covers and establishes on a set of support side's pipe 217 and a set of arc connecting pipe 218. Sky glide platform 206 includes sky glide platform mesa 220, sky glide platform support column 221 and sky glide frame 222, the upper end of sky glide platform support column 221 is connected with sky glide frame 222, the one end and the third platform 211 of center tower of sky glide frame 222 are connected, sky glide platform mesa 220 covers establishes on sky glide frame 222. The interface of central tower platform deck 216 is an equilateral triangle, and the corners of central tower platform deck 216 are all rounded. The jump tower 202 comprises a jump tower frame 223, a jump tower supporting beam 224 and a speed reducer 225 (the speed reducer is also a slow speed reducer and is a mature product available on the market), one end of the jump tower supporting beam 224 is fixed on the top of the jump tower frame 223, the other end of the jump tower supporting beam 224 extends out of the jump tower frame 223, the speed reducer 225 is arranged on the end of the jump tower supporting beam 224 extending out of the jump tower frame 223, a safety belt is arranged on the speed reducer 225, and the jump tower frame 223 is fixed on the table top of the first platform 209 of the central tower through bolts. The tower jumping frame 223 comprises a group of tower jumping frame support columns 226, a group of tower jumping frame connecting square pipes 227 and a fence 228, the lower end parts of the group of tower jumping frame support columns 226 are fixedly arranged on the table top of the first central tower platform 209, the upper end parts of the group of tower jumping frame support columns 226 are connected through the group of tower jumping frame connecting square pipes 227, the fence 228 is arranged between the group of tower jumping frame support columns 226, and a safety door is arranged on the fence 228. The tower jump supporting beam 224 is inclined at 2 °, and the tower jump supporting beam 224 is inclined toward the speed reducer 225. An anchor ear 229 is arranged on the tower jump frame connecting square tube 227, and the anchor ear 229 is sleeved on the outer layer support column 215 of the central tower.
The climbing frame 200 shown in fig. 6-14 comprises a one-layer climbing rope net structure, a two-layer climbing rope net structure and a three-layer climbing rope net structure, wherein the two-layer climbing rope net structure is arranged on the one-layer climbing rope net structure, the three-layer climbing rope net structure is arranged on the two-layer climbing rope net structure, and a step 10 is arranged in front of the two-layer climbing rope net structure and the three-layer climbing rope net structure; wherein the structure of the one-layer climbing rope net structure, the two-layer climbing rope net structure and the three-layer climbing rope net structure comprises a group of climbing frame connecting square steels 101, a group of climbing frame upright columns 102, a group of multi-face type climbing frames 103 and a group of spherical climbing frames 104, the lower end parts of the group of climbing frame upright columns 102, the group of multi-face type climbing frames 103 and the group of spherical climbing frames 104 are all fixed on the ground through bolts, the group of climbing frame upright columns 102 and the group of multi-face type climbing frames 103 are connected through the climbing frame connecting square steels 101, the group of climbing frame upright columns 102 and the group of spherical climbing frames 104 are connected through the climbing frame connecting square steels 101, the spherical climbing frames 104 comprise spherical climbing frame upright columns 105, spherical frames 106 and spherical outer housings 107, the spherical climbing frame upright columns 105 are cylindrical, the spherical frames 106 and the spherical outer housings 107 are spherical housings, the spherical frame 106 is arranged on the outer wall of the lower end part of the spherical climbing frame upright post 105, the spherical outer housing 107 is covered on the spherical frame 106, a group of circular openings 108 are arranged on the spherical outer housing 107, adapter flanges 109 are arranged on the spherical frame 106 at positions corresponding to the circular openings 108, and the spherical outer housing 107 is connected with the adapter flanges 109. The climbing frame is classified according to different heights and item levels of people of different ages, and intelligent exercise is performed on children by climbing through the rope net at one layer; the two-layer climbing project aims at the teenagers to exercise the strength and the balance ability of the teenagers; the three-tier climbing project addresses the difficult self-challenge of adults. Be equipped with hexagonal keysets 110 on ball-type climbing frame stand 105, hexagonal keysets 110 includes upper junction plate 111, lower connecting plate 112 and a set of middle connecting plate 113, a set of middle connecting plate 113 sets up between upper junction plate 111 and lower connecting plate 112, be equipped with a set of convex part 114 on upper junction plate 111 and the lower connecting plate 112, a set of convex part 114 sets up with annular array's mode, be equipped with recess 115 between a set of convex part 114, middle connecting plate 113 is located the recess 115 position department of being counterpointed between upper junction plate 111 and the lower connecting plate 112, the one end of climbing frame connecting square steel 101 is passed through the bolt fastening and is set up on convex part 114 at upper junction plate 111 and the convex part 114 of lower connecting plate 112. A group of polygonal climbing platforms 116 are arranged on the spherical climbing frame upright posts 105, and the polygonal climbing platforms 116 are positioned above the spherical frame 106. A group of rescue platforms 117 are arranged on the spherical climbing frame upright 105, and the rescue platforms 117 are positioned above the spherical frame 106. The multi-face type climbing frame 103 comprises a multi-face type climbing frame upright 118, a multi-face type frame 119 and a rail 120, wherein the multi-face type climbing frame upright 118 is cylindrical, the cross section of the multi-face type frame 119 is a regular multi-face type, the multi-face type frame 119 is connected with the outer wall of the multi-face type climbing frame upright 118, and the rail 120 is arranged on the multi-face type frame 119. The hexagonal adapter plate 110 is arranged on the multi-surface climbing frame upright 118. A group of polygonal climbing platforms 116 and a group of rescue platforms 117 are arranged on the polygonal climbing frame upright 118, and the polygonal climbing platforms 116 and the rescue platforms 117 are positioned above the polygonal frame 119. The upper ends of the spherical climbing stand column 105 and the polygonal climbing stand column 118 are provided with a safety rescue belt 121. The upper end of the climbing frame column 102 is provided with a hexagonal adapter plate 110.
The railway running carriage 207 as shown in figures 15-19 comprises a running carriage frame 401, a set of first compression limiting wheels 402, a set of second compression limiting wheels 403, a set of first running wheels 404, a set of second running wheels 405 and a shackle 406, the upper end of the running carriage frame 401 is provided with a first opening 407, the set of first compression limiting wheels 402 and the set of second compression limiting wheels 403 are provided on both end faces of the running carriage frame 401 at the first opening 407 through adapter plates, and the first compression limiting wheels 402 and the second compression limiting wheels 403 are symmetrically arranged, the set of first running wheels 404 is provided on the end face of the running carriage frame 401 at the first opening 407, and the set of first running wheels 404 is on the same side as the set of first compression limiting wheels 402, the set of second running wheels 405 is provided on the end face of the running carriage frame 401 at the first opening 407, and the set of second compression limiting wheels 405 is on the same side as the set of second compression limiting wheels 403, the shackle 406 is disposed on the other end of the scooter frame 401 opposite to the first opening 407, and the set of first compression limiting wheels 402, the set of second compression limiting wheels 403, the set of first sliding wheels 404 and the set of second sliding wheels 405 may all abut against the track. The scooter frame 401 includes a first fixed mounting plate 408, a second fixed mounting plate 409, a shackle mounting plate 410 and a set of connecting plate 411, the cross-section of the first fixed mounting plate 408 and the second fixed mounting plate 409 is circular ring shape, and is equipped with a first opening 407 on the first fixed mounting plate 408 and the second fixed mounting plate 409, a set of connecting plate 411 is disposed between the first fixed mounting plate 408 and the second fixed mounting plate 409, the shackle mounting plate 410 is disposed on a set of connecting plate 411, and the shackle mounting plate 410 is located at an intermediate position between the first fixed mounting plate 408 and the second fixed mounting plate 409, the shackle 406 is disposed on the shackle mounting plate 410. The axis of the first fixed mounting plate 408 and the axis of the second fixed mounting plate 409 are on the same axis, and the set of connecting plates 411 is arranged in the radial direction of the first fixed mounting plate 408. A compression limiting wheel mounting seat 412 is arranged on the connecting plate 411 close to the first opening 407 in the group of connecting plates 411, and the compression limiting wheel mounting seat 412 is horizontally arranged. The set of first compression limiting wheels 402 and the set of second compression limiting wheels 403 are respectively arranged on the compression limiting wheel mounting seat 412. A group of first sliding wheels 404 and a group of second sliding wheels 405 are respectively arranged on the connecting plates 411 at two sides of the first opening 407 on the group of connecting plates 411, the group of first sliding wheels 404 are respectively arranged at two sides of the group of first compression limiting wheels 402, and the group of second sliding wheels 405 are respectively arranged at two sides of the group of second compression limiting wheels 403. The number of the group of connecting plates 411 is 4, the number of the group of first compression limiting wheels 402 and the number of the group of second compression limiting wheels 403 are respectively 1, the number of the first sliding wheels 404 on the connecting plates 411 is respectively 2, the number of the second sliding wheels 405 on the connecting plates 411 is respectively 2, the connecting plates 411 are provided with the first sliding wheels 404 and the second sliding wheels 405 on the same axial section, and the first sliding wheels 404 and the second sliding wheels 405 on the same axial section of the connecting plates 411 are positioned on the same circumference. The first and second pinch limit wheels 402, 403 are located at an intermediate position between the first and second fixed mounting plates 408, 409. Hexagonal bolts 413 are arranged on the connecting plate 411 and the compression limiting wheel mounting seat 412, deep groove ball bearings 414 are arranged on the group of first compression limiting wheels 402, the group of second compression limiting wheels 403, the group of first sliding wheels 404 and the group of second sliding wheels 405, the group of first compression limiting wheels 402, the group of second compression limiting wheels 403, the group of first sliding wheels 404 and the group of second sliding wheels 405 are connected with the hexagonal bolts 413 through the deep groove ball bearings 414, and locking nuts 415 are arranged on the hexagonal bolts 413. The set of first compression limiting wheels 402, the set of second compression limiting wheels 403, the set of first runner wheels 404 and the set of second runner wheels 405 are polyurethane wheels.
As shown in fig. 20, the sky glide rail 201 applied to the rail glide vehicle of the present application is shown, the first compression limiting wheel 402 and the set of second compression limiting wheel 403 are compressed on the vertical surface 2011 from both sides, the set of first glide wheel 404 and the set of second glide wheel 405 are compressed on the arc surface 2012, the sky glide rail 201 is an inclined structure, the safety hanger is arranged on the shackle 406, and after a person wears the hanger, the rail glide vehicle glides along the inclined sky glide rail 201 to experience the flying feeling, thereby increasing the interest.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications can be made without departing from the principles of the present invention, and these modifications should also be regarded as the protection scope of the present invention.

Claims (9)

1. The utility model provides a climbing frame structure of multi-functional big amusement equipment which characterized in that: the climbing rope net structure comprises a first-layer climbing rope net structure, a second-layer climbing rope net structure and a third-layer climbing rope net structure, wherein the second-layer climbing rope net structure is arranged on the first-layer climbing rope net structure, the third-layer climbing rope net structure is arranged on the second-layer climbing rope net structure, and a step (10) is arranged in front of the second-layer climbing rope net structure and the third-layer climbing rope net structure; wherein the one-layer climbing rope net structure, the two-layer climbing rope net structure and the three-layer climbing rope net structure comprise a group of climbing frame connecting square steel (101), a group of climbing frame upright columns (102), a group of multi-face type climbing frame (103) and a group of spherical climbing frame (104), the lower end parts of the group of climbing frame upright columns (102), the group of multi-face type climbing frame (103) and the group of spherical climbing frame (104) are all fixed on the ground through bolts, the group of climbing frame upright columns (102) and the group of multi-face type climbing frame (103) are connected through the climbing frame connecting square steel (101), the group of multi-face type climbing frame (103) and the group of spherical climbing frame (104) are connected through the climbing frame connecting square steel (101), and the spherical climbing frame (104) comprises a spherical climbing frame upright column (105), a spherical frame (106) and a spherical outer cover shell (107), ball-type climbing frame stand (105) are cylindric, ball-type frame (106) and ball-type housing (107) are the ball shape, ball-type frame (106) set up on the outer wall of ball-type climbing frame stand (105) lower tip, ball-type housing (107) cover is established on ball-type frame (106), be equipped with a set of circular opening (108) on ball-type housing (107), ball-type frame (106) are gone up and are corresponded position department with circular opening (108) and be equipped with adapter flange (109), ball-type housing (107) are connected with adapter flange (109).
2. The climbing frame structure of multi-functional amusement ride according to claim 1, wherein: the column (105) of the spherical climbing frame is provided with a hexagonal adapter plate (110), the hexagonal adapter plate (110) comprises an upper connecting plate (111), a lower connecting plate (112) and a group of middle connecting plates (113), the group of middle connecting plates (113) is arranged between the upper connecting plate (111) and the lower connecting plate (112), a group of convex parts (114) are arranged on the upper connecting plate (111) and the lower connecting plate (112), the set of protrusions (114) are arranged in an annular array, a groove (115) is arranged between the set of protrusions (114), the middle connecting plate (113) is positioned at the position of the groove (115) between the upper connecting plate (111) and the lower connecting plate (112), one end of the climbing frame connecting square steel (101) is fixedly arranged on the convex part (114) of the upper connecting plate (111) and the convex part (114) of the lower connecting plate (112) through bolts.
3. The climbing frame structure of multi-functional amusement ride according to claim 2, wherein: the spherical climbing frame is characterized in that a group of polygonal climbing platforms (116) are arranged on the spherical climbing frame upright columns (105), and the polygonal climbing platforms (116) are located above the spherical frame (106).
4. The multi-functional amusement ride climbing frame structure of claim 2 or 3, wherein: a group of rescue platforms (117) are arranged on the spherical climbing frame upright post (105), and the rescue platforms (117) are positioned above the spherical frame (106).
5. The climbing frame structure of multi-functional amusement ride according to claim 2, wherein: the multi-face type climbing frame (103) comprises a multi-face type climbing frame upright post (118), a multi-face type frame (119) and a fence (120), wherein the multi-face type climbing frame upright post (118) is cylindrical, the cross section of the multi-face type frame (119) is of a regular multi-face type, the multi-face type frame (119) is connected with the outer wall of the multi-face type climbing frame upright post (118), and the fence (120) is arranged on the multi-face type frame (119).
6. The multi-functional amusement ride climbing frame structure of claim 5, wherein: the multi-surface climbing frame upright post (118) is provided with a hexagonal adapter plate (110).
7. The multi-functional amusement ride climbing frame structure of claim 6, wherein: a group of polygonal climbing platforms (116) and a group of rescue platforms (117) are arranged on the polygonal climbing frame upright columns (118), and the polygonal climbing platforms (116) and the rescue platforms (117) are located above the polygonal frame (119).
8. The multi-functional amusement ride climbing frame structure of claim 7, wherein: the upper ends of the spherical climbing frame upright post (105) and the multi-surface climbing frame upright post (118) are provided with safety rescue belts (121).
9. The climbing frame structure of multi-functional amusement ride according to claim 2, wherein: the upper end part of the climbing frame upright post (102) is provided with a hexagonal adapter plate (110).
CN201921375966.8U 2019-08-23 2019-08-23 Climbing frame structure of multifunctional large amusement equipment Active CN210751249U (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102354301B1 (en) * 2021-10-28 2022-01-24 (주)신흥이앤지 Experience facility platform structure with excellent installation freedom

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102354301B1 (en) * 2021-10-28 2022-01-24 (주)신흥이앤지 Experience facility platform structure with excellent installation freedom

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