A multifunctional climbing frame
Patent Information
- Application Number
- CN202410640672.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-22
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2044-05-22
AI Technical Summary
[0005]本申请提供了一种多功能攀爬架,以解决上述技术问题中的由于场地的局限性需要进行个性化定制以适应不同场地的安装需求,导致从设计、生产到运输以及后期的维修等成本增加;采用个性化定制所使用的非标件较多导致的加工制造复杂,结构复杂以及成本增加的技术问题
1.一种多功能攀爬架,包括爬架主体,所述爬架主体包括多个横杆与多个竖杆交叉连接形成的多层框架结构;所述多层框架结构的顶部形成具有搭载游乐设施的搭载区域,所述搭载区域能够搭载任意一种或多种游乐设施。
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Figure CN118356611B_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of children's amusement toys technology, specifically relating to a multifunctional climbing frame. Background Technology
[0002] Swinging, sliding, and crossing balance beams are all popular recreational activities for children. To satisfy children's interests and enrich their entertainment life, communities, squares, and theme parks have set up related recreational facilities.
[0003] Amusement facilities, as carriers of tourist entertainment, occupy land area. When multiple amusement facilities are needed to meet diverse interests, the area occupied will increase accordingly, making the space requirements very high. Especially in places where amusement facilities were not initially planned, the space limitations mean that different amusement facilities with different functions can only be placed separately. Even if a site is planned to provide amusement facilities with multiple functions, the different layouts of each site and the limitations on installation space and land use will lead to certain restrictions. In such cases, the installation of amusement facilities requires personalized customization.
[0004] Customized amusement rides require designers to conduct on-site measurements of the target site, adjust for compatibility with the surrounding environment, and then create a personalized design based on the site survey results to meet requirements such as space, cost, and adaptability. Compared to amusement rides built on fixed sites and with fixed assembly methods, customized rides involve significantly higher costs in terms of initial design, assembly, transportation, and installation upon arrival at the target site. Furthermore, customized rides involve more non-standard components, increasing the difficulty and cost of manufacturing and making the assembly structure more complex. Summary of the Invention
[0005] This application provides a multifunctional climbing frame to solve the technical problems mentioned above, such as the need for personalized customization to adapt to the installation requirements of different sites due to site limitations, which leads to increased costs from design, production to transportation and subsequent maintenance; and the complexity of processing and manufacturing, complex structure and increased costs caused by the large number of non-standard parts used in personalized customization.
[0006] The technical solution adopted in this application is as follows: A multifunctional climbing frame includes a climbing frame body, which comprises a multi-layer frame structure formed by multiple horizontal bars and multiple vertical bars intersecting and connecting; the top of the multi-layer frame structure forms a mounting area for mounting amusement facilities, which can mount any one or more amusement facilities.
[0007] The multifunctional climbing frame of this application also has the following additional technical features: The multi-layer frame structure includes a supporting base frame formed by multiple horizontal bars and a column base frame formed by multiple vertical bars. The supporting base frame includes a supporting base body and a supporting frame body connected to the outside of the supporting base body; the column base frame includes a base frame body and a base frame body connected to the outside of the base frame body. The supporting base and the base frame are connected to form a multi-layered interlocking structure that is staggered vertically; the supporting frame and the base frame are connected around the periphery of the multi-layered interlocking structure.
[0008] A horizontal bar connects two adjacent vertical bars in the interlocking structure; the horizontal bar has a protruding end that is connected through one of the vertical bars and a connecting end that is not connected through the other vertical bar via a joint assembly; the two adjacent horizontal bars on the same horizontal plane form a T-shaped distribution.
[0009] The connector assembly includes a locking head and a locking bolt; the vertical rod in the base frame has a connecting portion protruding from the circumferential surface, and the connecting end of the horizontal rod has a constricted portion for nesting the connecting portion; the locking head is used to nest on the outside of the constricted portion; the locking bolt is used to pass through the locking head to lock the connecting portion and the constricted portion together.
[0010] A short rod is provided in the extension direction of the connecting end of the crossbar, which can connect the vertical rod of the base frame to the vertical rod of the base frame; the protruding end of the crossbar extends along the length direction of the crossbar to be connected to the vertical rod in the base frame through a locking assembly; the locking assembly is configured such that by adjusting multiple locking assemblies, the top surface of the support base can be limited to the same horizontal plane.
[0011] The locking assembly includes a wire plate and a connector; the vertical rod in the base frame has a through hole for inserting the protruding end of the horizontal rod, and the protruding end of the horizontal rod has a slot for receiving the wire plate; the connector can extend from one side of the through hole into the slot and connect with the wire plate to lock the protruding end of the horizontal rod to the vertical rod in the base frame.
[0012] The multi-functional modular climbing frame also includes a platform attachment, which includes multiple flat plates connected to the main body of the climbing frame to form a shuttle channel for climbing; the flat plates have multiple joints on both sides, and the joints have a snap-fit surface that engages with the outer peripheral surface of the horizontal bar or the vertical bar.
[0013] The climbing frame body is also connected to a water spraying device. The interior of the flat plate has a hollow cavity for water storage. The bottom of the flat plate is provided with multiple flow holes that communicate with the hollow cavity. The water spraying device can be connected to the flow holes so that the water in the hollow cavity flows out through the water spraying device to form a waterfall.
[0014] The amusement facility includes at least one of a swing attachment, a floating bridge attachment, a slide attachment, a flat ladder attachment, and a hanging ring attachment; wherein the swing attachment, the floating bridge attachment, and the flat ladder attachment are connected to the mounting area of the climbing frame body via a connecting component.
[0015] The adapter assembly includes fasteners and mating parts. The swing attachment, the floating bridge attachment, and the flat ladder attachment have fastener mounting positions for installing the fasteners. The mounting area of the climbing frame body has an overlapping mounting position that mates with the fastener mounting position. The mating part can extend through the overlapping mounting position into the fastener mounting position and be securely connected to the fastener.
[0016] The swing accessories include a swing frame, a support frame, and a rotating frame; the swing frame has a mating end with fastener mounting positions and a connecting end that connects the support frame and the rotating frame via an installation component.
[0017] The installation components include: A covering member having a cylindrical segmented arc-shaped thin wall and an annular thin wall at a certain angle along the circumference; the covering member is inserted into the outside of the connecting end from one side of the annular thin wall, and the rotating frame is nested in the connecting end of the swing frame from one side of the arc-shaped thin wall along the axial direction; A connecting member is connected to the top of the support frame and has an arc-shaped inner abutment surface in the shape of a cylindrical segment; the inner abutment surface is nested on the outside of the continuation end of the swing frame and abuts against the inner abutment surface to form a cylindrical thin-walled structure with an internal mounting cavity; A locking element is capable of being fitted onto the cover member and the connecting member.
[0018] Due to the adoption of the above technical solution, the beneficial effects achieved by this application are as follows: 1. A multifunctional climbing frame, comprising a climbing frame body, the climbing frame body comprising a multi-layer frame structure formed by multiple horizontal bars and multiple vertical bars intersecting and connecting; the top of the multi-layer frame structure forms a mounting area for mounting amusement facilities, the mounting area being capable of mounting any one or more amusement facilities.
[0019] By setting the climbing frame as the base structure of the climbing frame, it can support a variety of amusement facilities with different functions. The climbing frame has a mounting area that can accommodate amusement facilities with different functions, so that amusement facilities with different functions can be installed in the climbing frame without personalized customization. You only need to select one or more amusement facilities with different functions according to the space of the site, transport them to the site, and install them directly on the climbing frame. It is more suitable for various spaces and saves the design, manufacturing, transportation, installation and maintenance costs of personalized customization. By adopting standardized installation, it can be quickly assembled and disassembled, avoiding the use of non-standard parts in personalized amusement facilities and avoiding the structural complexity of producing non-standard parts, thereby further reducing the overall cost.
[0020] 2. In a preferred embodiment of this application, the multi-layer frame structure includes a support base frame formed by multiple horizontal bars and a column base frame formed by multiple vertical bars. The support base frame includes a support base body and a support frame body connected to the outside of the support base body. The column base frame includes a base frame body and a base frame body connected to the outside of the base frame body. The support base body and the base frame body are connected to form a multi-layer interlocking structure that is vertically staggered. The support frame body and the base frame body are connected around the periphery of the multi-layer interlocking structure.
[0021] The supporting base frame, acting as a horizontal structure, and the column base frame, acting as a vertical structure, form a multi-layered structure. The multi-layer frame structure consists of a supporting base frame (including a supporting base body and a supporting frame body) and a column base frame (including a base frame body and a base frame body). The supporting base body and the base frame body are connected to form the central frame of the multi-layer frame structure. The central frame body provides central support for the entire multi-layer frame structure. Multiple interlocking structures are staggered along the vertical direction of the central frame body. By setting up interlocking structures, the central frame body formed by the supporting base body and the base frame body can be locked, ensuring that each layer of the central frame body is on the same plane and ensuring the flatness of each layer of the central frame body, thereby enhancing the structural strength and connection stability of the overall multi-layer frame structure. The supporting frame body is connected to the base frame body to form the outer frame of the multi-layer frame structure, providing edge support for the multi-layer frame structure.
[0022] 3. In a preferred embodiment of this application, a horizontal bar is connected between two adjacent vertical bars in the interlocking structure; the horizontal bar has an extended end that is connected through one of the vertical bars and a connecting end that is not connected through the other vertical bar via a joint assembly; the two adjacent horizontal bars on the same horizontal plane form a T-shaped distribution.
[0023] In the interlocking structure, a horizontal bar connects two adjacent vertical bars. The extended end of the horizontal bar can pass through one of the two vertical bars, while the connecting end of the horizontal bar does not pass through the other of the two adjacent vertical bars. Since the two adjacent horizontal bars are all connected to the same vertical bar, they form a T-shape. The extended end of one of the two adjacent horizontal bars passes through the vertical bar, and the connecting end of the other horizontal bar is connected to the vertical bar. This allows for the adjustment of the position of the vertical bar connected to the extended end of any horizontal bar, the vertical bar connected to the connecting end of the horizontal bar, and the other horizontal bar adjacent to the connecting end of the horizontal bar. This achieves a ripple effect, further enhancing the overall integrity and stability of the structure, improving connection strength, and ensuring the flatness of the working surfaces formed by multiple horizontal bars and vertical bars. Furthermore, by adjusting the extended end of one horizontal bar, multiple horizontal bars and multiple vertical bars can be adjusted, making operation simpler, improving user experience, and enabling quick assembly and disassembly.
[0024] 4. In a preferred embodiment of this application, the connector assembly includes a locking head and a locking bolt; the vertical rod in the base frame has a connecting portion protruding from the circumferential surface, and the connecting end of the horizontal rod has a constricted portion for nesting the connecting portion; the locking head is used to nest on the outside of the constricted portion; the locking bolt is used to pass through the locking head to lock the connecting portion and the constricted portion together.
[0025] During installation, the locking head is nested inside the constricted section, and the constricted section is nested inside the connecting section. A locking bolt is then passed through the locking head to securely connect the connecting section within the constricted section and the locking head, thus fixing the vertical and horizontal bars. The connector assembly further ensures the connection strength between the horizontal and vertical bars and allows for the seamless assembly of multiple horizontal and vertical bars. This enables standardized assembly in a fixed location according to site requirements, eliminating the need for customization. Only the required number of horizontal and vertical bars are needed for quick assembly using the connector assembly; this avoids the use of non-standard parts and reduces the overall manufacturing and installation costs of the amusement ride.
[0026] 5. In a preferred embodiment of this application, the adapter assembly includes fasteners and mating parts, the swing attachment, the floating bridge attachment and the flat ladder attachment have fastener mounting positions for installing the fasteners, the mounting area of the climbing frame body has an overlapping mounting position that mates with the fastener mounting position, and the mating part can extend through the overlapping mounting position into the fastener mounting position and be securely connected to the fastener.
[0027] By setting up transition components, different amusement facilities with different functions can be freely assembled according to the spatial layout of the site, thereby completing the construction of the overall amusement platform. Various amusement facilities with different functions can be freely assembled between the mounting area and the main climbing frame, achieving freedom, integration, and large-scale construction. This not only enables the construction of large-scale, multi-functional amusement platforms but also allows for on-site assembly, avoiding the problems of traditional integrated structures that occupy a large area, cannot be disassembled, cannot be freely adjusted according to the time and space usage of the site, have complex manufacturing processes, increased transportation, installation, and maintenance costs, and require complete repair, disassembly, and transportation when one part is damaged. The platform can adaptively adjust the positions of various amusement facilities with different functions according to different site layouts, allowing for arbitrary combinations of these facilities to form a multi-functional amusement platform. Attached Figure Description
[0028] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings: Figure 1 This is an embodiment of the overall structure of a multifunctional climbing frame according to this application. A side view diagram; Figure 2 This is a side view schematic diagram of a multi-layer frame structure of a multi-functional climbing frame according to one embodiment of this application; Figure 3 This is a test schematic diagram of a multi-layer interlocking structure of a multi-functional climbing frame according to one embodiment of this application; Figure 4 yes Figure 2 The enlarged view of section B is a structural schematic diagram of a joint assembly of a multifunctional climbing frame according to one embodiment of this application; Figure 5 yes Figure 1 The enlarged view of part A is a structural schematic diagram of the locking assembly of a multifunctional climbing frame according to one embodiment of this application; Figure 6 This is a schematic diagram of the structure of a multi-functional climbing frame adapter assembly according to one embodiment of this application; Figure 7 This is a schematic diagram of the installation assembly of a multifunctional climbing frame according to one embodiment of this application; Figure 8 This is a schematic diagram of the structure of a flat plate of a multifunctional climbing frame according to one embodiment of this application; In the picture, 1. Main body of the climbing scaffold; 2. Support frame, 21. Support base, 22. Support frame; 3. Column base frame; 31. Base frame body; 32. Base frame body; 4. Extended end; 5. Connecting end; 6 connector assembly, 61 locking head, 62 locking bolt; 7 short rods, 8 connecting parts; 9. Platform accessories, 10. Tablet, 11. Knuckles; 12 Swing accessories, 121 Swing frame, 122 Support frame, 123 Rotating frame; 13. Floating bridge accessories; 14. Slide accessories; 15. Flat ladder accessories; 16. Hanging ring accessories; 17 Adapter assembly, 171 Fastener, 172 Connecting parts; 18. Mounting components; 181. Covering components; 182. Connecting components; 183. Locking components; 19 convex strips. Detailed Implementation
[0029] To more clearly illustrate the overall concept of this application, a detailed explanation is provided below with reference to the accompanying drawings.
[0030] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of this application is not limited to the specific embodiments disclosed below.
[0031] Furthermore, it should be understood in the description of this application that the terms "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0032] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a communication connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0033] In this application, unless otherwise expressly specified and limited, the "above" or "below" of the second feature can mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. In the description of this specification, references to terms such as "implementation," "example," "a particular embodiment," "example," or "specific example," etc., indicate that the specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described can be combined in any suitable manner in one or more embodiments or examples.
[0034] This application relates to a multi-functional climbing frame, such as Figure 1-7 As shown, the climbing frame body 1 includes a multi-layer frame structure formed by multiple horizontal bars and multiple vertical bars intersecting and connecting; the top of the multi-layer frame structure forms a mounting area for mounting amusement facilities, and the mounting area can mount any one or more amusement facilities.
[0035] By setting the climbing frame main body 1 as the base structure of the climbing frame, it can support a variety of amusement facilities with different functions. The climbing frame main body 1 has a mounting area that can accommodate amusement facilities with different functions, so that amusement facilities with different functions can be installed in the climbing frame main body 1 without personalized customization. It is only necessary to select one or more amusement facilities with different functions according to the space of the site, transport them to the site, and install them directly on the climbing frame main body 1. It is more suitable for various spaces, saving the design, manufacturing, transportation, installation and maintenance costs of personalized customization. By adopting standardized installation, it can be quickly assembled and disassembled, avoiding the use of non-standard parts in personalized amusement facilities and avoiding the structural complexity of producing non-standard parts, thereby further reducing the overall cost.
[0036] In a preferred embodiment, the multi-layer frame structure includes a support base frame 2 formed by multiple horizontal bars and a column base frame 3 formed by multiple vertical bars. The support base frame 2 includes a support base 21 and a support frame body 22 connected to the outside of the support base 21. The column base frame 3 includes a base frame base 31 and a base frame body 32 connected to the outside of the base frame base 31. The supporting base 21 and the base frame 31 are connected to form a multi-layered interlocking structure that is vertically staggered; the supporting frame 22 and the base frame 32 are connected around the periphery of the multi-layered interlocking structure.
[0037] The supporting base frame 2, acting as a horizontal frame, and the column base frame 3, acting as a vertical frame, form a multi-layered frame structure. The supporting base frame 2 includes a supporting base 21 and a supporting frame 22, while the column base frame 3 includes a base frame 31 and a base frame 32. The supporting base 21 and the base frame 31 are connected to form the central frame of the multi-layered frame structure. The central frame provides central support for the entire multi-layered frame structure. Multiple interlocking structures are staggered along the vertical direction of the central frame. By setting the interlocking structures, the central frame formed by the supporting base 21 and the base frame 31 can be locked, ensuring that each layer of the central frame is on the same plane and guaranteeing the flatness of each layer, thereby enhancing the structural strength and connection stability of the overall multi-layered frame structure. The supporting frame 22 and the base frame 32 are connected to form the outer frame of the multi-layered frame structure, providing edge support for the multi-layered frame structure.
[0038] It is worth noting that the supporting frame 22 and the column base frame can be designed with various structural shapes, including but not limited to quadrilateral, triangular, or other polygonal structures. For example... Figure 1 As shown, the supporting frame 22 and the column base frame in this application adopt a quadrilateral structure. The multi-layer frame structure formed by the supporting frame 22 and the column base frame is cubic in shape.
[0039] This application does not impose specific limitations on the structure of the supporting frame 22, and any of the following implementation methods can be adopted: Implementation method one: such as Figure 2 As shown, multiple support frames 22 are distributed vertically, such as... Figure 2 As shown, the top support frame 22 has a quadrilateral structure, which can be formed by four horizontal bars. The length of the horizontal bars in the support frame 22 is greater than the length of the horizontal bars in the support base 21, so as to surround the support base 21. The four horizontal bars in the support frame 22 pass through multiple vertical bars on the same side, and the horizontal bars are inserted into the vertical bars and fastened to both sides of each vertical bar in the radial direction by connector assembly 6. The middle support frame 22 has the same structure as the top support frame 22; the bottom support frame 22 can adopt a semi-enclosed structure, with connecting horizontal bars connecting two adjacent vertical bars at both ends of each side. It is worth noting that the length of the connecting horizontal bars is shorter than the length of the horizontal bars.
[0040] Implementation Method 2: The top support frame 22, the middle support frame 22 and the bottom support frame 22 all adopt the same structure; each has four horizontal bars surrounding to form a quadrilateral structure, and each horizontal bar is located on one side of the quadrilateral, passing through the vertical bar on the same side and connected to each vertical bar through the joint assembly 6.
[0041] As a preferred implementation method, such as Figure 3As shown, a horizontal bar connects two adjacent vertical bars in the interlocking structure; the horizontal bar has an extended end 4 that is connected through one of the vertical bars and a connecting end 5 that is not connected through the other vertical bar via a joint assembly 6; the two adjacent horizontal bars on the same horizontal plane form a T-shaped distribution.
[0042] In the interlocking structure, a horizontal bar connects two adjacent vertical bars. The protruding end 4 of the horizontal bar can pass through one of the two vertical bars, while the connecting end 5 of the horizontal bar does not pass through the other of the two adjacent vertical bars. Since the two adjacent horizontal bars are connected to the same vertical bar, they form a T-shape. The protruding end 4 of one of the two adjacent horizontal bars passes through the vertical bar, and the connecting end 5 of the other horizontal bar is connected to the vertical bar. Thus, adjusting the protruding end 4 of any horizontal bar will correspondingly adjust the positions of the vertical bar connected to the protruding end 4, the vertical bar connected to the connecting end 5 of the horizontal bar, and the other horizontal bar adjacent to the connecting end 5 of the horizontal bar. This achieves a ripple effect, further enhancing the overall integrity and stability of the structure, improving connection strength, and ensuring the flatness of the working surfaces formed by multiple horizontal bars and vertical bars. Furthermore, by adjusting the protruding end 4 of one horizontal bar, multiple horizontal bars and multiple vertical bars can be adjusted, making operation simpler, improving user experience, and enabling quick assembly and disassembly.
[0043] like Figure 3 As shown, in the upper interlocking structure, four horizontal bars form a quadrilateral structure, with a vertical bar connecting each pair of adjacent horizontal bars, such as... Figure 3 As shown, the four horizontal bars in the support base 21 and the four vertical bars in the base frame base 31 intersect to form a U-shaped structure. The orientation shown in the figure is described in detail. The right end 4 of the first horizontal bar at the front protrudes through the right vertical bar at the front, and the left end 5 of the first horizontal bar is connected to the left vertical bar at the front via a connector assembly 6. The right end 5 of the second horizontal bar at the right end is connected to the right vertical bar at the front via a connector assembly 6, and the protruding end 4 of the second horizontal bar protrudes through the right vertical bar at the rear, and so on. This results in the horizontal bar connection ends 5 being spaced apart around the outer periphery of the interlocking structure, thus creating a locking mechanism between the horizontal and vertical bars. Adjusting one horizontal bar will affect the adjustment of the other horizontal and vertical bars, thereby achieving a tight connection of the entire interlocking structure, increasing connection strength, and making the entire climbing frame body 1 more firmly connected. The lower interlocking structure rotates 180 degrees relative to the upper interlocking structure, forming a multi-layered interlocking structure that is staggered vertically, further enhancing the structural stability of the multi-layered frame structure.
[0044] As a preferred implementation method, such as Figure 4As shown, the connector assembly 6 includes a locking head 61 and a locking bolt 62; the vertical rod in the base frame 31 has a connecting portion protruding from the circumferential surface, and the connecting end 5 of the horizontal rod has a constricted portion for nesting the connecting portion; the locking head 61 is used to nest on the outside of the constricted portion; the locking bolt 62 is used to pass through the locking head 61 to lock the connecting portion and the constricted portion together.
[0045] During installation, the locking head 61 is nested inside the constricted portion, the constricted portion is nested inside the connecting portion, and the locking bolt 62 is passed through the locking head 61 to securely connect the connecting portion, the constricted portion, and the locking head 61, thus fixing the vertical and horizontal bars. The connector assembly 6 further ensures the connection strength between the horizontal and vertical bars, and allows for the seamless assembly of multiple horizontal and vertical bars. This enables standardized assembly in a fixed location according to site requirements, eliminating the need for customization. Only the required number of horizontal and vertical bars are needed for quick assembly via the connector assembly 6, avoiding the use of non-standard parts and reducing the overall manufacturing and installation costs of the amusement facility.
[0046] In a preferred embodiment, a short rod 7 is provided in the extension direction of the connecting end 5 of the crossbar, the short rod 7 being able to connect the vertical rod of the base frame 31 to the vertical rod of the base frame 32; the protruding end 4 of the crossbar extends along the length direction of the crossbar to be connected to the vertical rod in the base frame 32 through a locking assembly; the locking assembly is configured such that by adjusting multiple locking assemblies, the top surface of the support base 21 can be limited to the same horizontal plane.
[0047] Between the base frame 31 and the base frame 32, since the protruding end 4 of the crossbar in the support base 21 can extend to the outside of the support base 21 and connect with the base frame 32 through the locking assembly, and the connecting end 5 of the crossbar in the support base 21 does not penetrate the vertical bar in the base frame 31 but is connected to the vertical bar through the connector assembly 6, a blank area is formed between the other side of the vertical bar in the radial direction and the vertical bar of the base frame 32. Therefore, in order to avoid the blank area, the vertical bar of the base frame 31 and the vertical bar of the base frame 32 in the blank area are connected by a short bar 7. One end of the short bar 7 is connected to the vertical bar in the base frame 31 through the connector assembly 6, and the other end of the short bar 7 is connected to the vertical bar in the base frame 32 through the connector assembly 6.
[0048] Since the extended end 4 of the crossbar extends through the support base 21 and into the base frame 32, and the extended end 4 of the crossbar is connected to the base frame 32 by a locking assembly, the connection between the extended end 4 of the crossbar and the vertical bar of the base frame 32 can be adjusted by adjusting the locking assembly. For example, when the extended end 4 of the crossbar has different lengths due to manufacturing errors, the connection depth between the locking assembly and the extended end 4 of the crossbar can be adjusted to achieve a balanced connection between the support base 21 and the support frame 22. Furthermore, due to the adjustment of the locking assembly, the top surface of the support base 21 can be locked on the same plane. If the extended end 4 of a certain crossbar is not on the same horizontal plane as the extended end 4 of other crossbars, it can be locked at the same height on the vertical bar of the corresponding base frame 32 by the locking assembly. This can be adjusted to ensure that the support base 21 is always on the same horizontal plane, thereby ensuring the flatness of the connection between the entire multi-layer support frame and the corresponding base frame 32, avoiding processing errors, having a certain adjustment range, and ensuring the stable installation of the entire multi-layer frame structure.
[0049] As a preferred implementation method, such as Figure 5 As shown, the locking assembly includes a wire plate and a connector 8; the vertical rod in the base frame 32 has a through hole for the protruding end 4 of the horizontal rod to pass through, and the protruding end 4 of the horizontal rod has a slot for accommodating the wire plate; the connector 8 can extend from one side of the through hole into the slot to connect with the wire plate so that the protruding end 4 of the horizontal rod is locked to the vertical rod in the base frame 32.
[0050] like Figure 5 As shown, the screw plate of the locking assembly is set in the slot of the extended end 4 of the crossbar, and can be detachably connected or welded; the screw plate has screw holes in the axial direction, which can be threadedly connected to the connector 8.
[0051] The structure of connector 8 is not specifically limited in this application, and any of the following embodiments can be adopted: Implementation method 1: The connector 8 includes a screw rod and a connecting plate. The connecting plate is vertically connected to the end of the screw rod. In use, the protruding end 4 of the crossbar passes through the through hole in the vertical rod in the base frame 32. The screw rod is inserted from the other side of the protruding end 4 of the crossbar through the through hole into the screw hole of the threaded plate and is threadedly connected to the threaded plate. The area of the connecting plate is larger than the area of the through hole. After the screw rod passes through the through hole, the connecting plate can be snapped onto the outer edge of the through hole of the vertical rod.
[0052] It is worth noting that the connecting plate can be a horizontally oriented arc-shaped structure that fits against the outer circumference of the vertical rod, providing a good wrapping effect and enhancing the connection strength between the locking assembly and the vertical rod; the connecting plate can also be an arc-shaped plate oriented vertically, which can fit against the outer circumference of the vertical rod vertically.
[0053] It is worth noting that the through hole can be a cylindrical hole or an elongated hole distributed vertically, as long as it can accommodate the protruding end 4 of the crossbar. By setting an elongated hole, the vertical position of the locking assembly can be adjusted appropriately, further enabling the adjustment of the plane height of the support base 21 within a certain range, thereby ensuring that the support base 21 is on the same horizontal plane.
[0054] Implementation Method 2: The connector 8 includes a screw rod and a cap. The screw rod is the same as the screw rod in Implementation Method 1. The cap is threaded to the screw rod. In use, the protruding end 4 of the crossbar is passed through the through hole in the vertical rod in the base frame 32. The screw rod is then inserted from the other side of the protruding end 4 of the crossbar through the through hole into the screw hole of the screw plate and threaded to the screw plate. The cap is then screwed onto the other end of the screw rod until it is securely connected to the outer edge of the through hole of the vertical rod.
[0055] As a preferred embodiment, the multifunctional modular climbing frame also includes a platform attachment 9, which includes multiple flat plates 10 connected to the climbing frame body 1 to form a shuttle channel for climbing; the flat plates 10 have multiple knuckles 11 on both sides, and the knuckles 11 have a snap-fit surface that engages with the outer peripheral surface of the horizontal bar or the vertical bar.
[0056] like Figure 8 As shown, the plate 10 has a quadrilateral structure, and multiple spaced finger joints 11 are arranged around the four sides of the plate 10. One side of the plate 10 has multiple strip-shaped protrusions 19, which are designed to increase the friction on one side of the plate 10, preventing children from slipping when crawling on the plate 10. The other side of the plate 10, as a non-crawling surface, can be connected to a vertical or horizontal bar by multiple finger joints 11. Multiple plates 10 can be arbitrarily spliced in a multi-layer frame structure to form a shuttle channel. The finger joints 11 are cylindrical segmented arc plates, with the inner arc surface facing the non-crawling surface of the plate 10. The inner arc surface has a locking surface that can engage with the horizontal or vertical bar. The purpose of the locking surface is to allow the plate 10 to be installed in the horizontal or vertical bar by the finger joints 11, so that the plate 10 is connected to the multi-layer frame structure.
[0057] like Figure 1As shown, multiple flat plates 10 are spliced together in a multi-layer frame structure, forming a shuttle channel for crawling between the multiple flat plates 10. They are directly snapped onto the corresponding horizontal or vertical bars through snap-fit surfaces, enabling standardized installation. The channel structure can be designed arbitrarily according to user needs, and the corresponding flat plates 10 can be directly snapped into the multi-layer frame structure, improving the degree of versatility. At the same time, disassembly is convenient. For example, if one of the flat plates 10 is damaged, it can be directly disassembled, which facilitates maintenance and saves costs.
[0058] In a preferred embodiment, the climbing frame body 1 is also connected to a water spraying device. The interior of the plate 10 has a hollow cavity for water storage. The bottom of the plate 10 is provided with multiple flow holes that communicate with the hollow cavity. The water spraying device can be connected to the flow holes so that the water in the hollow cavity flows out through the water spraying device to form a waterfall.
[0059] In this application, a waterfall landscape is also set in the main body 1 of the climbing frame. In order to enhance the viewing experience and interest of users, the water spraying device includes a water spray pipe, a nozzle, a connecting pipe and a water tank. The connecting pipe is connected to the water tank. For aesthetic purposes, the water tank is set below the ground. The water tank is connected to the plate 10 through the connecting pipe. The plate 10 is also connected to the water spray pipe. The spraying end of the water spray pipe is connected to the nozzle.
[0060] It is worth noting that the structure of the horizontally distributed flat plate 10 at the bottom of the climbing frame body 1 is hollow, so that the interior of the flat plate 10 forms a hollow cavity. On one side of the bottom of the flat plate 10, there are multiple flow holes connected to the hollow cavity. The water spray pipe is connected to the flow holes to spray water from the hollow cavity. A connecting hole is opened on one side of the flat plate 10, which can be connected to a connecting pipe. The connecting pipe is connected to a water tank. A water pump is set between the connecting pipe and the water tank, which can pump water from the water tank into the hollow cavity through the connecting pipe. In practical applications, the water flow formed by the waterfall can be recycled. Correspondingly, a water tank can be set up under the ground. There are multiple collection holes on the ground connected to the water tank, which can collect the water flowing from the waterfall and return it to the water tank. Then, the water flows into the hollow cavity through the connecting pipe and spray nozzles to form the waterfall.
[0061] In a preferred embodiment, the amusement facility includes at least one of a swing attachment 12, a floating bridge attachment 13, a slide attachment 14, a flat ladder attachment 15, and a hanging ring attachment 16; wherein the swing attachment 12, the floating bridge attachment 13, and the flat ladder attachment 15 are connected to the mounting area of the climbing frame body 1 via a connecting assembly 17.
[0062] like Figure 1As shown, the swing attachment 12, the floating bridge attachment 13, the slide attachment 14, the flat ladder attachment 15, and the hanging ring attachment 16 are respectively connected to the main body 1 of the climbing frame, as follows: Figure 1 The diagram only illustrates one possible installation layout. In practice, the installation location of the amusement ride can be adapted to the size and layout of the actual application site without the need for special customization. Instead, the finished product can be directly assembled, which can save costs in design, processing, transportation, and maintenance. Furthermore, customization involves a variety of non-standard parts with relatively fixed connection positions, making processing and assembly more difficult. The climbing frame involved in this application can enable the amusement ride with one or more functions to be directly assembled with standard parts at any position on the mounting area of the climbing frame body 1, facilitating rapid on-site assembly and improving the adaptability of the climbing frame.
[0063] As a preferred implementation method, such as Figure 6 As shown, the adapter assembly 17 includes a fastener 171 and a docking piece 172. The swing attachment 12, the floating bridge attachment 13, and the flat ladder attachment 15 have fastener 171 mounting positions for mounting the fastener 171. The mounting area of the climbing frame body 1 has an overlapping mounting position that mates with the fastener 171 mounting position. The docking piece 172 can extend through the overlapping mounting position into the fastener 171 mounting position and be securely connected to the fastener 171.
[0064] By setting the adapter component 17, different amusement facilities with different functions can be selected and assembled freely according to the spatial layout of the site, thereby completing the construction of the overall amusement platform. Various amusement facilities with different functions can be freely assembled between the main body of the climbing frame 1 in the carrying area, realizing freedom, integration, and large-scale construction. Not only can it realize the construction of a large amusement platform with multiple functions, but it can also be assembled on-site. This avoids the problems of traditional integrated structures that occupy a large area, cannot be disassembled, cannot be adjusted according to the time and space of the site, have complex manufacturing processes, increased transportation, installation, and maintenance costs, and require overall repair when a part is damaged, making disassembly, assembly, and transportation complex. It can adaptively adjust the position of various amusement facilities with different functions according to different spatial layouts of the site, so that various amusement facilities with different functions can be arbitrarily combined to form a multi-functional amusement platform.
[0065] As a preferred implementation method, such as Figure 7 As shown, the swing accessory 12 includes a swing frame 121, a support frame 122, and a rotating frame 123; the swing frame 121 has a mating end with the mounting position of the fastener 171 and a connecting end that connects the support frame 122 and the rotating frame 123 through the mounting assembly 18.
[0066] The support frame 122 and rotating frame 123 can be infinitely extended by the installation component 18, realizing the standardization of the installation parts. They can be added at will according to the actual site requirements. The finished products can be directly assembled. When a certain part is damaged, the part of the structure can be directly removed, realizing quick installation and disassembly.
[0067] Preferably, such as Figure 7 As shown, the mounting component 18 includes: The covering member 181 has a cylindrical segmented arc-shaped thin wall and an annular thin wall at a certain angle along the circumference; the covering member 181 is inserted into the outside of the connecting end from one side of the annular thin wall, and the rotating frame 123 is nested in the connecting end of the swing frame 121 from one side of the arc-shaped thin wall along the axial direction. The connecting member 182 is connected to the top of the support frame 122 and has an arc-shaped inner abutment surface in the shape of a cylindrical segment; the inner abutment surface is nested on the outside of the continuation end of the swing frame 121 and abuts against the inner abutment surface to form a cylindrical thin-walled structure with an internal mounting cavity; The locking member 183 can be fitted onto the covering member 181 and the connecting member 182.
[0068] Covering member 181 comprises two parts forming an integrated structure, such as Figure 7 As shown, the covering member 181 has a hollow cylindrical structure. On one side of the left end, a thin annular wall is formed at a certain angle around the axis. A strip groove is provided in this part of the covering member 181 along the axial direction. This strip groove creates a certain gap between the covering member 181 and the swing frame 121 in the radial direction, facilitating easy rotation and adjustment of the docking position when the covering member 181 is nested outside the swing frame 121. A notch is provided on one side of the right end, forming an arc-shaped thin wall on the right side of the covering member 181. This arc-shaped thin wall and the connecting member 182 can be radially aligned to form a cylindrical structure. The upward-facing side of the covering member 181... The surface has multiple threaded holes for easy connection with the locking member 183; the connecting member 182 is connected to the top of the support frame 122, enabling the support frame 122 to be connected to the bottom of the swing frame 121. The connecting member 182 has an arc-shaped plate structure, and the inner arc surface of the connecting member 182 is provided facing upward to form a cylindrical structure by mating with the side of the cover member 181 with a notch. The connecting member 182 has mating holes corresponding to the threaded holes of the cover member 181; the locking member 183 includes a bolt and a nut. The bolt can pass through the connecting member 182 and the cover member 181, and the nut is located on the cover member 181 and is fastened to the bolt.
[0069] It is worth noting that the end of the rotating frame 123 facing the swing frame 121 is provided with a constricted end that can be nested inside the continuation end of the swing frame 121. The constricted end of the rotating frame 123 and the continuation end of the swing frame 121 are respectively provided with bolt holes that can be used to connect the locking member 183.
[0070] In use, firstly, the annular thin wall side of the covering member 181 is nested outside the continuation end of the swing frame 121, with the arc-shaped thin wall extending at least beyond the continuation end. Then, the constricted end of the rotating frame 123 is inserted into the continuation end of the swing frame 121, with the arc-shaped thin wall completely covering the constricted end of the rotating frame 123. Then, the connecting member 182, which is connected to the support frame 122, is butt-connected to the side of the covering member 181 with the notch, completing the butt connection with the arc-shaped thin wall of the covering member 181. Then, the locking member 183 passes through the bolt holes of the continuation end, the bolt holes of the constricted end, and the threaded holes of the annular thin wall of the swing frame 121 from below the connecting member 182 and is locked by a nut, thereby completing the butt connection between the rotating frame 123, the support frame 122, and the swing frame 121.
[0071] For any parts not mentioned in this application, existing technologies may be used or referenced.
[0072] The various embodiments in this specification are described in a progressive manner. The same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on describing the differences from other embodiments.
[0073] The above description is merely an embodiment of this application and is not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.
Claims
1. A multifunctional climbing frame, characterized in that, The device includes a climbing frame body, which comprises a multi-layered frame structure formed by the intersecting connection of multiple horizontal and vertical bars. The top of the multi-layered frame structure forms a mounting area for amusement rides, capable of mounting any one or more amusement rides. The multi-layered frame structure includes a supporting base frame formed by multiple horizontal bars and a column base frame formed by multiple vertical bars. The supporting base frame includes a supporting body and a supporting frame connected to the outside of the supporting base. The column base frame includes a base frame body and a base frame body connected to the outside of the base frame body. The supporting body and the base frame body are connected to form a multi-layered interlocking structure arranged vertically. The supporting frame body and the base frame body are connected around the periphery of the multi-layered interlocking structure. A horizontal bar connects two adjacent vertical bars in the interlocking structure. The horizontal bar has a protruding end that penetrates one of the vertical bars and a connecting end that does not penetrate the other vertical bar through a joint assembly. Two adjacent horizontal bars on the same horizontal plane form a T-shaped distribution.
2. The multifunctional climbing frame as described in claim 1, characterized in that, The connector assembly includes a locking head and a locking bolt; the vertical rod in the base frame has a connecting portion protruding from the circumferential surface, and the connecting end of the horizontal rod has a constricted portion for nesting the connecting portion; the locking head is used to nest on the outside of the constricted portion; the locking bolt is used to pass through the locking head to lock the connecting portion and the constricted portion together.
3. A multifunctional climbing frame as described in claim 1, characterized in that, A short rod is provided in the extension direction of the connecting end of the crossbar, which can connect the vertical rod of the base frame to the vertical rod of the base frame; the protruding end of the crossbar extends along the length direction of the crossbar to be connected to the vertical rod in the base frame through a locking assembly; the locking assembly is configured such that by adjusting multiple locking assemblies, the top surface of the support base can be limited to the same horizontal plane.
4. A multifunctional climbing frame as described in claim 3, characterized in that, The locking assembly includes a wire plate and a connector; the vertical rod in the base frame has a through hole for inserting the protruding end of the horizontal rod, and the protruding end of the horizontal rod has a slot for receiving the wire plate; the connector can extend from one side of the through hole into the slot and connect with the wire plate to lock the protruding end of the horizontal rod to the vertical rod in the base frame.
5. A multifunctional climbing frame as described in claim 1, characterized in that, It also includes platform accessories, which include multiple flat plates connected to the climbing frame body to form a shuttle channel for climbing; the flat plates have multiple joints on both sides, and the joints have engaging surfaces that engage with the outer peripheral surfaces of the crossbars or the vertical bars.
6. A multifunctional climbing frame as described in claim 5, characterized in that, The climbing frame body is also connected to a water spraying device. The interior of the flat plate has a hollow cavity for water storage. The bottom of the flat plate is provided with multiple flow holes that communicate with the hollow cavity. The water spraying device can be connected to the flow holes so that the water in the hollow cavity flows out through the water spraying device to form a waterfall.
7. A multifunctional climbing frame as described in claim 1, characterized in that, The amusement facility includes at least one of a swing attachment, a floating bridge attachment, a slide attachment, a flat ladder attachment, and a hanging ring attachment; wherein the swing attachment, the floating bridge attachment, and the flat ladder attachment are connected to the mounting area of the climbing frame body via a connecting component.
8. A multifunctional climbing frame as described in claim 7, characterized in that, The adapter assembly includes fasteners and mating parts. The swing attachment, the floating bridge attachment, and the flat ladder attachment have fastener mounting positions for installing the fasteners. The mounting area of the climbing frame body has an overlapping mounting position that mates with the fastener mounting position. The mating part can extend through the overlapping mounting position into the fastener mounting position and be securely connected to the fastener.
9. A multifunctional climbing frame as described in claim 8, characterized in that, The swing accessories include a swing frame, a support frame, and a rotating frame; the swing frame has a mating end with fastener mounting positions and a connecting end that connects the support frame and the rotating frame via an installation component.
10. A multifunctional climbing frame as described in claim 9, characterized in that, The installation components include: A covering member having a cylindrical segmented arc-shaped thin wall and an annular thin wall at a certain angle along the circumference; the covering member is inserted into the outside of the connecting end from one side of the annular thin wall, and the rotating frame is nested in the connecting end of the swing frame from one side of the arc-shaped thin wall along the axial direction; A connecting member is connected to the top of the support frame and has an arc-shaped inner abutment surface in the shape of a cylindrical segment; the inner abutment surface is nested on the outside of the continuation end of the swing frame and abuts against the inner abutment surface to form a cylindrical thin-walled structure with an internal mounting cavity; A locking element is capable of being fitted onto the cover member and the connecting member.
Citation Information
Patent Citations
Jungle Gym Joint And Jungle Gym
CN106474660A