Pavilion hurdle
By designing detachable pavilion railing connection components and reinforcement components, the problem of inconvenience in construction of the ring pavilion corridor is solved, rapid installation and reuse of materials are achieved, and construction efficiency and structural stability are improved.
Patent Information
- Application Number
- CN202422145587.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-02
AI Technical Summary
The fixed fence design of the existing ring pavilion corridor leads to problems such as inconvenience in construction, waste of materials and long construction cycles.
The inner and outer pavilion frames are arranged concentrically, and the detachable connection between the first column and the second column is achieved through the connecting assembly and the reinforcement assembly, and the rapid installation is achieved using the connecting sleeve, connecting rod and locking structure, and structural stability is improved through the reinforcement rod.
The construction process is simplified, construction efficiency is improved, construction time is shortened, material waste is reduced, and structural stability and wind resistance are enhanced.
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Figure CN223177259U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of garden architecture, and particularly relates to a pavilion railing. Background Art
[0002] In places such as parks and scenic spots, pavilions are generally built for people to relax and entertain. There is a kind of circular pavilion corridor, which includes two concentric fences with different diameters and a covering board installed on the two fences.
[0003] However, at present, the fences of the circular pavilion corridor are all fixed. If it is necessary to rebuild, the disassembly and assembly are relatively inconvenient, the construction is more troublesome, the construction period is long, and the materials cannot be reused, which is easy to cause waste. Utility Model Content
[0004] In order to improve the defect of inconvenient construction of the circular pavilion corridor, the present application provides a pavilion railing.
[0005] The present application provides a pavilion railing, adopting the following technical solution:
[0006] A pavilion railing includes a concentric inner pavilion frame and an outer pavilion frame. The inner pavilion frame includes first columns arranged in a circumferential array. The outer pavilion frame includes second columns arranged in a circumferential array. The second columns are arranged in one-to-one correspondence with the first columns. A connecting component is connected between the first column and the corresponding second column. The connecting component includes a connecting sleeve slidably connected to the first column in the vertical direction and a connecting rod movably connected between the connecting sleeve and the second column. A locking structure is arranged between the connecting sleeve and the first column for locking the movement of the connecting sleeve.
[0007] By adopting the above technical solution, before construction, the second column, the connecting rod and the connecting sleeve can be pre-installed first. During construction, only need to sleeved the connecting sleeve on the first column, then fix the first column and the second column to the ground correspondingly, and then fix the connecting sleeve through the locking structure to connect the first column and the second column together. The construction is simple, effectively improving the construction efficiency and shortening the construction time. Moreover, because one end of the connecting rod is slidably and rotatably connected to the first column and the other end is rotatably connected to the second column, the connecting rod can adjust to adapt to different distances between the first column and the second column to meet different construction requirements.
[0008] Optionally, the first column includes a sleeved section and a supporting section coaxially connected up and down in the vertical direction. The cross-sectional dimension of the sleeved section is larger than that of the supporting section. The connecting sleeve is sleeved on the sleeved section in a matching manner.
[0009] By adopting the above technical solution, after the first upright post and the second upright post are installed, the connecting sleeve sleeved with the sleeved section is restricted from moving; the first upright post is divided into a sleeved section and a supporting section with different sizes, which can play a limiting role on the connecting sleeve during construction, avoid the connecting sleeve from sliding down too far, so as to facilitate the adjustment and adaptation of construction workers and improve the convenience of operation.
[0010] Optionally, the locking structure includes an external thread provided on the outer surface of the sleeved section and an internal thread provided on the inner surface of the connecting sleeve and threadedly connected to the external thread.
[0011] By adopting the above technical solution, the sleeved section and the connecting sleeve connected by threads can not only improve the connection strength, but also further achieve self-locking, improve the strength of the whole structure, and the operation is also convenient and fast.
[0012] Optionally, an annular movable groove is formed in the circumferential direction on the outer surface of the connecting sleeve, a slider is slidably connected in the movable groove in the circumferential direction, and one end of the connecting rod away from the second upright post is hinged to the slider.
[0013] By adopting the above technical solution, the connecting rod is hinged to the slider and then slidably connected to the connecting sleeve, so that when the connecting sleeve rotates to adjust the height position relative to the first upright post, the connecting rod does not need to be rotated and there will be no interference, further improving the convenience of construction.
[0014] Optionally, a strengthening component is connected between two adjacent first upright posts. The strengthening component includes a strengthening rod. The strengthening rod includes a rod body and connecting plates provided at both ends along the length direction of the rod body. The connecting plates are slidably connected to the first upright post in the vertical direction, and a fastener for locking the movement of the connecting plates is connected between the connecting plates and the first upright post.
[0015] By adopting the above technical solution, the strengthening rod can further improve the structural stability and wind resistance of the first upright post, and the strengthening rod can be slidably connected up and down between the two upright posts, which is not only convenient for installation and disassembly, but also can adapt to the connection requirements of upright posts with different heights, improving the applicability of construction materials and meeting different construction requirements.
[0016] Optionally, both ends of the rod body are respectively hinged to the two connecting plates.
[0017] By adopting the above technical solution, the rod body is hinged to the connecting plate, so that the rod body can be inclined between two adjacent connecting columns, and thus can adapt to the first upright posts with different spacings, further improving the scope of use.
[0018] Optionally, the strengthening component further includes an adjusting sleeve sleeved on the first upright post. The connecting plate is arc-shaped and abuts against the adjusting sleeve. The adjusting sleeve is circumferentially and arrayedly provided with threaded holes, and the connecting plate is provided with connecting holes. One end of the fastener passes through the connecting hole and is threadedly connected into the threaded hole.
[0019] By adopting the above technical solution, during construction, first sleeve the adjusting sleeve on the first upright post and then fixedly install the first upright post. Then, the strengthening rod can be slid down vertically between two adjacent upright posts and abutted against the two adjusting sleeves. Finally, when locking the fastener, the fastener passes through the connecting plate, is threadedly connected through the adjusting sleeve, and then abuts tightly against the first upright post. The fastener can simultaneously fix the strengthening rod on the adjusting sleeve and abut the adjusting sleeve tightly on the first upright post, making the construction simpler and more convenient and further improving the construction efficiency.
[0020] Optionally, a strengthening component is also connected between two adjacent second upright posts. The adjusting sleeve is sleeved on the second upright post. A strengthening rod is connected between the adjusting sleeves on two adjacent second upright posts and is locked and connected through the fastener.
[0021] By adopting the above technical solution, a strengthening component is also connected between two second upright posts to further improve the structural strength and wind resistance of the entire pavilion railing. Moreover, the strengthening rod can be connected to upright posts with different spacings. Therefore, the same strengthening component can be used to strengthen the connection between the first upright post and the second upright post without replacing different materials, making the construction more convenient and efficient.
[0022] In summary, the present application includes at least one of the following beneficial effects:
[0023] 1. Before construction, the second upright post, the connecting rod and the connecting sleeve can be pre-installed. During construction, only need to sleeve the connecting sleeve on the first upright post, then fix the first upright post and the second upright post on the ground correspondingly, and then fix and connect the connecting sleeve through the locking structure to connect the first upright post and the second upright post together. The strengthening rod is correspondingly installed between the first upright post or the second upright post. The construction is simple, effectively improving the construction efficiency and shortening the construction time.
[0024] 2. The connecting component can be adjusted to adapt to different spacings between the first upright post and the second upright post, and the strengthening component can also adapt to different spacings between the first upright posts or the second upright posts to meet different construction requirements without replacing the connecting materials, further improving the construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a schematic structural diagram of the pavilion railing in the embodiment of the present application;
[0026] Figure 2 is a schematic structural diagram of the installation of the connecting component in the embodiment of the present application;
[0027] Figure 3 is a cross-sectional view of the installation of the connection component in the embodiment of the present application;
[0028] Figure 4 is a schematic structural diagram of the installation of the strengthening component in the embodiment of the present application;
[0029] Figure 5 is a schematic structural diagram of another installation method of the strengthening component of the pavilion railing in the embodiment of the present application.
[0030] Explanation of reference numerals: 1, inner pavilion frame; 2, outer pavilion frame; 3, first upright column; 31, socket section; 32, support section; 4, second upright column; 5, connection component; 51, connection sleeve; 511, movable groove; 512, limit groove; 52, connecting rod; 53, slider; 531, limiting part; 54, locking structure; 541, internal thread; 542, external thread; 6, strengthening component; 61, strengthening rod; 611, rod body; 612, connecting plate; 62, fastener; 63, adjusting sleeve; 631, threaded hole. Detailed implementation manners
[0031] The following further elaborates on the present application in conjunction with the attached Figures 1-5 drawings.
[0032] Refer to Figure 1 , an embodiment of the present application discloses a pavilion railing, which includes a concentrically arranged inner pavilion frame 1 and an outer pavilion frame 2. The inner pavilion frame 1 includes first upright columns 3 arranged in a circumferential array, and the outer pavilion frame 2 includes second upright columns 4 arranged in a circumferential array. The second upright columns 4 are arranged in one-to-one correspondence with the first upright columns 3. A connection component 5 is connected between the first upright column 3 and the corresponding second upright column 4. The connection component 5 includes a connection sleeve 51 slidably connected to the first upright column 3 in the vertical direction and a connecting rod 52 movably connected between the connection sleeve 51 and the second upright column 4. A locking structure 54 for locking the movement of the connection sleeve 51 is provided between the connection sleeve 51 and the first upright column 3. Before construction, first pre-assemble the second upright column 4, the connecting rod 52 and the connection sleeve 51. During construction, only need to sleeve the connection sleeve 51 on the first upright column 3, then fix the first upright column 3 and the second upright column 4 on the ground correspondingly, and then fix the connection sleeve 51 through the locking structure 54. The construction is simple, the construction efficiency is improved, and the construction time is shortened.
[0033] In other embodiments, the first upright column 3 can be set as a cylinder or a polygonal column.
[0034] In this embodiment, in order to further improve the convenience of construction, refer to Figure 1 and Figure 2, the first upright column 3 includes a socket section 31 and a support section 32 that are coaxially connected up and down in the vertical direction. The cross-sectional dimension of the socket section 31 is larger than that of the support section 32. The connecting sleeve 51 is fitted over the socket section 31, that is, the internal dimension of the connecting sleeve 51 is consistent with the external dimension of the socket section 31. The support section 32 of the first upright column 3 and the second upright column 4 are preferably of the same size structure, and the support section 32 and the second upright column 4 are made of the same material. The support section 32 can be a cylindrical or polygonal column. During construction, first, the connecting sleeve 51 is put on the socket section 31. The support section 32 with a larger size can limit the connecting sleeve 51, preventing the connecting sleeve 51 from sliding down too far, which is convenient for construction workers to adjust and adapt, improving the convenience of operation. After the first upright column 3 and the second upright column 4 are installed, the connecting sleeve 51 fitted over the socket section 31 is restricted from moving, thus completing the installation; the locking structure 54 can further improve the connection stability between the connecting component 5 and the first upright column 3.
[0035] Specifically, referring to Figure 2 , a hinge seat is convexly provided above the second upright column 4, and the connecting rod 52 is rotatably connected to the hinge seat through a rotating shaft, and the connecting rod 52 can rotate within a vertical plane. In an embodiment, the connecting sleeve 51 and the socket section 31 are arranged to be slidably connected, and the locking structure 54 is a bolt. The bolt is threadedly connected and passes through the connecting sleeve 51 and then abuts against the socket section 31; in this embodiment, the locking structure 54 includes an external thread 542 provided on the outer surface of the socket section 31 and an internal thread 541 provided on the inner surface of the connecting sleeve 51 and threadedly connected to the external thread 542. At this time, the socket section 31 needs to be a cylinder, that is, the connecting sleeve 51 and the socket section 31 are arranged to be threadedly connected. While improving the connection strength, it can further achieve self-locking, improve the strength of the entire structure, and the operation is also convenient and fast.
[0036] Correspondingly, because the connecting sleeve 51 and the socket section 31 are threadedly rotatably connected, in order to avoid the connecting rod 52 also rotating, which causes inconvenience, referring to Figure 2 and Figure 3 , an annular movable groove 511 is formed in the circumferential direction on the outer surface of the connecting sleeve 51. A slider 53 is slidably connected in the circumferential direction in the movable groove 511. An arc-shaped limiting portion 531 is provided on the slider 53. A limiting groove 512 for the limiting portion 531 to slide is formed at the bottom of the movable groove 511 to prevent the slider 53 from detaching from the connecting sleeve 51. One end of the connecting rod 52 far from the second upright column 4 is hinged to the slider 53 through a rotating shaft. Thus, when the connecting sleeve 51 rotates to adjust the height position relative to the first upright column 3, the connecting rod 52 does not need to rotate and there will be no interference, further improving the convenience of construction.
[0037] Referring to Figure 4, To further improve the structural strength, a strengthening component 6 is connected between two adjacent first columns 3. The strengthening component 6 includes a strengthening rod 61. The strengthening rod 61 includes a rod body 611 and connecting plates 612 arranged at both ends along the length direction of the rod body 611. The connecting plates 612 are slidably connected to the supporting section 32 of the first column 3 in the vertical direction, and a fastener 62 for locking the movement of the connecting plates 612 is connected between the connecting plates 612 and the supporting section 32. The strengthening rod 61 can further improve the structural stability and wind resistance of the first column 3. Moreover, the strengthening rod 61 can be slidably connected up and down between two columns, which is not only convenient for installation and disassembly, but also can adapt to the connection requirements of columns with different heights, improving the applicability of construction materials and meeting different construction needs.
[0038] In other embodiments, the connecting plate 612 and the rod body 611 are fixedly connected, and the length of the strengthening rod 61 is equal to the distance between two adjacent first columns 3.
[0039] In this embodiment, in order to be able to adapt to different construction requirements, the strengthening component 6 further includes an adjusting sleeve 63 sleeved on the supporting section 32. Both ends of the rod body 611 are hinged to the two connecting plates 612 respectively. In this embodiment, the supporting section 32 is set to be cylindrical, and correspondingly, the adjusting sleeve 63 is also circular. The inner diameter of the connecting sleeve 51 is consistent with the outer diameter of the supporting section 32. The connecting plate 612 is arc-shaped and abuts against the adjusting sleeve 63. The adjusting sleeve 63 is provided with threaded holes 631 arrayed along the circumferential direction. The connecting plate 612 is provided with connecting holes, and the number of connecting holes is at least two. The fastener 62 is set as a bolt. During construction, first, the adjusting sleeve 63 is sleeved on the supporting section 32, and then the first column 3 is fixedly installed on the ground. Then, the strengthening rod 61 can be slid down vertically from between two adjacent columns and abutted against the two adjusting sleeves 63. The rod body 611 can be inclined and adjusted between two adjacent connecting columns, so as to be able to adapt to the first columns 3 with different spacings, further improving the scope of use. Finally, when locking the fastener 62, the fastener 62 passes through the connecting plate 612 and is threadedly connected through the adjusting sleeve 63 and then abuts tightly against the supporting section 32. The fastener 62 can fix the strengthening rod 61 on the adjusting sleeve 63 and abut and fix the adjusting sleeve 63 on the first column 3 at the same time, making the construction simpler and more convenient and further improving the construction efficiency.
[0040] Furthermore, a strengthening component 6 is also connected between two adjacent second columns 4. The adjusting sleeve 63 is sleeved on the second column 4. A strengthening rod 61 is connected between the adjusting sleeves 63 on two adjacent second columns 4 and is locked and connected through a fastener 62. Because the strengthening rod 61 can be inclined and adjusted, the same strengthening component 6 can be used to strengthen the connection between the first column 3 and the second column 4 without replacing different materials, making the construction more convenient and efficient.
[0041] When the length of the reinforcing rod 61 is greater than the spacing between two adjacent first columns 3 or two adjacent second columns 4, referring to Figure 4 , the inclination directions of all rod bodies 611 can be set to be the same. At this time, two adjusting sleeves 63 need to be sleeved on one support section 32; referring to Figure 5 , the inclination angles of two adjacent rod bodies 611 can also be set to incline upward or downward in different directions. At this time, only one adjusting sleeve 63 is required on one support section 32, further improving the construction convenience.
[0042] The implementation principle of a pavilion railing in an embodiment of the present application is as follows:
[0043] Before construction, the connection assembly 5 is pre-assembled in the factory, and the connecting rod 52 is hinged to the second column 4; during construction, only the adjusting sleeve 63 needs to be sleeved on the support section 32 of the first column 3 and the second column 4 respectively, and the connecting sleeve 51 is sleeved on the socket section 31 of the first column 3. Then, the first column 3 and the second column 4 are fixed to the ground correspondingly. At the same time, the inclination angle of the connecting rod 52 is adjusted by rotating the connecting sleeve 51 to adapt to the spacing between the first column 3 and the second column 4, and the connecting sleeve 51 and the socket section 31 can achieve self-locking; then the reinforcing rod 61 is connected between two adjacent adjusting sleeves 63. The construction is simple, effectively improving the construction efficiency and shortening the construction time.
[0044] The above are all preferred embodiments of the present application. Without limiting the protection scope of the present application accordingly, therefore: all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A pavilion railing, characterized in that: It includes a concentrically arranged inner kiosk frame (1) and an outer kiosk frame (2). The inner kiosk frame (1) includes first columns (3) arranged in a circumferential array. The outer kiosk frame (2) includes second columns (4) arranged in a circumferential array. The second columns (4) are arranged in one-to-one correspondence with the first columns (3). A connecting component (5) is connected between the first column (3) and the corresponding second column (4). The connecting component (5) includes a connecting sleeve (51) slidably connected vertically to the first column (3) and a connecting rod (52) movably connected between the connecting sleeve (51) and the second column (4). A locking structure (54) for locking the movement of the connecting sleeve (51) is provided between the connecting sleeve (51) and the first column (3).
2. A pavilion railing according to claim 1, characterized in that: The first column (3) includes a socket section (31) and a support section (32) coaxially connected vertically. The cross-sectional dimension of the socket section (31) is larger than that of the support section (32). The connecting sleeve (51) is fitted and sleeved on the socket section (31).
3. The pavilion railing according to claim 2, wherein: The locking structure (54) includes an external thread (542) provided on the outer surface of the socket section (31) and an internal thread (541) provided on the inner surface of the connecting sleeve (51) and threadedly connected to the external thread (542).
4. A pavilion railing according to claim 3, characterized in that: An annular moving groove (511) is circumferentially formed on the outer surface of the connecting sleeve (51). A slider (53) is slidably connected circumferentially in the moving groove (511). One end of the connecting rod (52) away from the second column (4) is hinged to the slider (53).
5. A pavilion railing according to claim 1, characterized in that: A strengthening component (6) is connected between two adjacent first columns (3). The strengthening component (6) includes a strengthening rod (61). The strengthening rod (61) includes a rod body (611) and connecting plates (612) provided at both ends along the length direction of the rod body (611). The connecting plates (612) are slidably connected vertically to the first column (3). A fastener (62) for locking the movement of the connecting plate (612) is connected between the connecting plate (612) and the first column (3).
6. The pavilion railing according to claim 5, wherein: Both ends of the rod body (611) are respectively hinged to the two connecting plates (612).
7. A pavilion railing according to claim 6, characterized in that: The strengthening component (6) further includes an adjusting sleeve (63) sleeved on the first column (3). The connecting plate (612) is arc-shaped and abuts against the adjusting sleeve (63). Thread holes (631) are circumferentially formed in the adjusting sleeve (63). A connecting hole is formed in the connecting plate (612). One end of the fastener (62) passes through the connecting hole and is threadedly connected to the thread hole (631).
8. A pavilion railing according to claim 7, characterized in that: A strengthening component (6) is also connected between two adjacent second columns (4). The adjusting sleeve (63) is sleeved on the second column (4). The strengthening rod (61) is connected between the adjusting sleeves (63) on two adjacent second columns (4) and is locked and connected by the fastener (62).