Wall-mounted sectional type movable joint supporting rod anchoring system
By using a segmented, hinged strut anchoring system attached to the mountainside, the floating body is stably anchored by utilizing the articulated structure between the mountainside and the floating body. This solves the safety and maintenance problems of the anchoring system under changes in water level and achieves automatic adjustment and efficient anchoring.
Patent Information
- Application Number
- CN202520104794.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-01-16
AI Technical Summary
Existing technologies have poor safety for anchoring systems when water level changes due to seasonal variations, cannot achieve automatic adjustment without power, and are inconvenient to inspect and maintain.
The system employs a wall-mounted segmented hinged strut anchoring system. At least two struts are connected to the mountain and the floating body via a hinged structure. The floating body is stably anchored using the sidewall of the mountain. The struts are connected to the floating body and the mountain via a lateral hinge, which automatically adjusts for changes in water level.
It improves anchoring efficiency and safety, is easy to inspect and maintain, the strut structure automatically adjusts to water level changes, requires no power unit, extends service life, and improves connection strength.
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Figure CN223574629U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of anchoring technology, especially relates to a sectional type articulated stay rod anchoring system for wall mounting. BACKGROUND
[0002] The floating body is floated on the water surface, usually connected with the anchor body at the end of the rope, and the floating platform is fixed after anchoring. However, due to seasonal factors and the influence of ebb and flow factors, the height of the water surface and the water bottom will change, and the rope has a fixed length. When the water surface rises, the rope will be tight, and when the amplitude is too large, the rope is prone to breakage, which poses a safety hazard. When the water surface falls, the rope will be loose, resulting in poor fixing effect of the floating platform.
[0003] At present, in the large reservoir scene where the water surface height changes due to seasonal changes, the conventional rope anchoring safety is poor, and it is impossible to realize automatic anchoring tension adjustment without power. The anchoring system is set below the water surface, and the convenience of checking and maintaining the anchoring system is poor. The reservoir generally has a mountain on the side. If the mountain can be used as a connection point to realize sectional anchoring of the floating body, the anchoring efficiency will be greatly improved. Since the anchoring system is transversely arranged and connected with the mountain, it is convenient to check and maintain, safe and efficient. However, there is no public technology related to this kind of anchoring system connected with the mountain and capable of realizing automatic adjustment of the floating body without power. Therefore, the present scheme proposes a sectional type articulated stay rod anchoring system for wall mounting. UTILITY MODEL CONTENTS
[0004] The utility model provides a sectional type articulated stay rod anchoring system for wall mounting, which is composed of at least two sections of stay rods connected by a first hinged structure, a mountain fixing piece fixedly installed on the side wall of the mountain and a movable stable floating body slidingly installed on the stay rod. The stay rod and the floating body are connected by a second hinged structure, and the stay rod and the mountain are connected by a third hinged structure. The sectional stay rod hinged structure is relatively easy to check and maintain, safe and efficient, and does not need to design a power device for anchoring adjustment. It can automatically realize stable anchoring when the water surface height changes. The above problems in the background technology are solved.
[0005] To solve the above technical problems, the utility model is realized by the following technical scheme:
[0006] The utility model relates to a sectional type articulated stay rod anchoring system for wall mounting, which is used for sectional articulated anchoring between the floating body and the mountain, and is composed of at least two sections of stay rods connected by a first hinged structure, a mountain fixing piece fixedly installed on the side wall of the mountain and a movable stable floating body slidingly installed on the stay rod.
[0007] Wherein, the end of the support rod near the floating body is connected with the floating body through the second hinge structure, and the end of the support rod near the mountain is connected with the mountain through the third hinge structure.
[0008] Further, the first hinge structure comprises a first H-shaped connector arranged at one end of a support rod and a first plug-in block arranged at the other end of the support rod, the first plug-in block is plugged into the first H-shaped connector and connected through the bolt.
[0009] Further, the second hinge structure comprises a second H-shaped connector arranged at one side of the floating body or arranged at the end of the adjacent support rod, and a second plug-in block arranged at the end of the adjacent support rod or arranged at one side of the floating body, the second plug-in block is plugged into the second H-shaped connector and connected through the bolt.
[0010] Further, the third hinge structure comprises a third H-shaped connector arranged at one side of the mountain fixing member or arranged at the end of the adjacent support rod, and a third plug-in block arranged at the end of the adjacent support rod or arranged at one side of the mountain fixing member, the third plug-in block is plugged into the third H-shaped connector and connected through the bolt.
[0011] Further, the mountain fixing member is fixedly installed on the side wall of the mountain through the first fixing bolt.
[0012] Further, the first anchor rope connector is fixedly installed on the side wall of the mountain through the second fixing bolt.
[0013] Further, the first anchor rope connector is fixedly installed on the side wall of the mountain through the second fixing bolt.
[0014] Further, the mobile stable floating body is provided with a pipe ring matched with the support rod, and the pipe ring is fixedly connected with the top of the mobile stable floating body through the elastic connecting member.
[0015] Further, the support rod adopts a hollow rod capable of floating and having water-tight sealing property.
[0016] Compared with the prior art, the utility model has the following beneficial effects:
[0017] (1) good use: make full use of the side wall of the mountain, realize the stable connection of the floating body and the mountain through the transversely arranged support rod connected by the first hinge structure, instead of the ordinary anchoring system based on the bottom of the floating body, make full use of the mountain resources of the specific scene, and improve the efficiency;
[0018] (2) structure is ingenious and anchoring efficiency is high: the transverse arrangement and hinged cooperation between the struts, the hinged cooperation between the struts and the floating body and the side wall of the mountain, the structure of the segmented strut hinged connection is relatively underwater anchoring system, since the transverse structure is more ingenious, it is easier to check and maintain, the safety is good, and the anchoring efficiency is higher;
[0019] (3) power-free design: since the transverse hinged structure is adopted, automatic adjustment can be realized when the water level changes, and the anchoring adjustment can be automatically realized without designing power device, and stable anchoring can be realized automatically when the water level changes;
[0020] (4) longer service life: the struts adopt sealed hollow rod structure, and the movable stable floating body is sleeved on the struts, the struts and the connecting structure can provide buoyancy, reduce the weight of the struts, increase the supporting force of the struts, and protect the stability of the floating body; and when the water level is at normal water level or falling water level, i.e. in non-rising water level, the struts are above the horizontal plane, and do not need to be immersed in water, so that the service life is longer;
[0021] (5) higher structural stability and strength: the anchor rope is connected through the floating body and the anchor rope connecting piece on the mountain, and the both ends of the anchor rope are connected with the bolts of the first hinged structure, so that the safety and stability of the strut connection are further improved, and the connecting strength of the whole anchoring system is ensured.
[0022] Of course, any product implementing the present application does not necessarily need to achieve all the advantages described above. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creating laborious work.
[0024] Figure 1 It is a structure side view of the wall-mounted segmented hinged strut anchoring system in normal water level in the specific embodiment of the present application.
[0025] Figure 2 It is a structure side view of the wall-mounted segmented hinged strut anchoring system in falling water level in the specific embodiment of the present application.
[0026] Figure 3 It is a structure side view of the wall-mounted segmented hinged strut anchoring system in rising water level in the specific embodiment of the present application.
[0027] Figure 4The utility model discloses a sectional type wall -hanging articulated stay rod anchoring system, and belongs to the field of anchoring system.
[0028] In the drawings, the component list represented by each sign is as follows:
[0029] 1-float, 11-second character-shaped connecting piece, 12-second anchor rope connecting piece, 2-first stay rod, 21-second plug-in block, 3-mobile stable float, 31-tube ring, 4-second stay rod, 41-first character-shaped connecting piece, 42-third plug-in block, 5-fixing piece, 51-third character-shaped connecting piece, 52-first fixed bolt, 6-stable anchor rope, 7-first anchor rope connecting piece, 71-second fixed bolt, A-horizontal plane, B-mountain. DETAILED DESCRIPTION
[0030] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0031] In the description of the utility model, it is understood that the terms "side wall", "one side", "end", "heavy armor", "top", "two sides" and the like indicate the orientation or position relationship, only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the indicated component or element must have a particular orientation, be constructed and operated in a particular orientation, therefore, it can not be understood as the limitation of the utility model.
[0032] Please refer to Figures 1-4 The utility model discloses a sectional type wall -hanging articulated stay rod anchoring system, and belongs to the field of anchoring system.
[0033] The anchoring system is used for realizing sectional articulated anchoring between the float 1 and the mountain B, and comprises at least two sections of stay rods connected through first hinged structures, mountain fixing pieces 5 fixedly installed on the side wall of the mountain B and mobile stable floats 3 slidingly installed on the stay rods.
[0034] Wherein, the end of the support rod near the floating body 1, i.e. the first support rod 2, is connected with the floating body 1 through the second hinge structure; the end of the support rod near the mountain B, i.e. the second support rod 4, is connected with the mountain B through the third hinge structure.
[0035] Wherein, the first hinge structure comprises a first H-shaped connecting piece 41 arranged at the end of one support rod and a first plug-in block 22 arranged at the end of the other support rod, the first plug-in block 22 is plugged into the middle of the first H-shaped connecting piece 41 and connected through the bolt; there is no specific requirement for which support rod is arranged with the first plug-in block 22 or the first H-shaped connecting piece 41, as long as the hinge structure can realize the angle adjustment of the two support rods.
[0036] Wherein, the second hinge structure comprises a second H-shaped connecting piece 11 arranged at the side of the floating body 1 or arranged at the end of the adjacent support rod, and a second plug-in block 21 arranged at the end of the adjacent support rod or arranged at the side of the floating body 1, the second plug-in block 21 is plugged into the middle of the second H-shaped connecting piece 11 and connected through the bolt; there is no specific requirement for which support rod is arranged with the second plug-in block 21 or the second H-shaped connecting piece 11, as long as the hinge structure can realize the angle adjustment between the support rod and the connection position of the floating body.
[0037] Wherein, the third hinge structure comprises a third H-shaped connecting piece 51 arranged at the side of the mountain fixing member 5 or arranged at the end of the adjacent support rod, and a third plug-in block 42 arranged at the end of the adjacent support rod or arranged at the side of the mountain fixing member 5, the third plug-in block 42 is plugged into the middle of the third H-shaped connecting piece 51 and connected through the bolt; there is no specific requirement for which support rod is arranged with the third plug-in block 42 or the third H-shaped connecting piece 51, as long as the hinge structure can realize the angle adjustment between the support rod and the connection position of the mountain fixing member 5.
[0038] As shown in Figures 1-4 The first hinge structure, the second hinge structure and the third hinge structure are all hinge structures capable of realizing vertical angle adjustment.
[0039] Wherein, the mountain fixing member 5 is fixedly installed on the side wall of the mountain B through the first fixing bolt 52; the mountain fixing member 5 adopts a fixing block with a fixing hole, and is fixed on the side wall of the mountain B through the first fixing bolt 52 penetrating the fixing block.
[0040] As shown in Figure 4 The first anchor rope connecting piece 7 is also installed on the side wall of the mountain B on both sides of the third hinge structure, and the second anchor rope connecting piece 12 is also arranged on the side wall of the floating body 1 on both sides of the second hinge structure; the first anchor rope connecting piece 7 and the second anchor rope connecting piece 12 are respectively connected with the two sides of the bolt on the first hinge structure through the stable anchor rope 6.
[0041] Wherein, the first anchor rope connecting piece 7 is fixedly installed on the side wall of the mountain B through the second fixing bolt 71; the first anchor rope connecting piece 7 is a fixed plate, and a fixed mounting hole matched with the second fixing bolt 71 is arranged on the fixed plate; the second anchor rope connecting piece 12 and the first anchor rope connecting piece 7 are both provided with a connecting ring for staking the anchor rope.
[0042] Wherein, the movable stable floating body 3 is provided with a pipe ring 31 matched with the support rod sleeve, and the pipe ring 31 is fixedly connected with the top of the movable stable floating body 3 through an elastic connecting piece.
[0043] The support rod is a hollow rod capable of floating and having water-tight sealing property.
[0044] The working principle of the technical solution is as shown in Figures 1-3
[0045] As shown in Figure 1 , it is a structure side view of the wall-mounted sectional articulated support rod anchoring system at normal water level, at this time, the two support rods are kept horizontal, the floating body 1 and the fixing piece 5 of the side of the mountain B are kept horizontal, and the support rod can be supported by the floating force provided by the movable stable floating body 3, so that the floating body is kept stable on the water surface; and in combination with Figure 4 , the stable anchor rope 6 provides further structural reinforcement, further improves the safety and stability of the support rod connection, and ensures the connection strength of the overall anchoring system;
[0046] As shown in Figure 2 , it is a structure side view of the wall-mounted sectional articulated support rod anchoring system at falling water level; on the basis of Figure 1 , when the water level falls, the floating body is pulled by the hingedly connected support rod, and based on the hinge, the support rod forms a V-shaped adjustment angle, and the floating body is kept in a stable state, the support rod can be supported by the floating force provided by the movable stable floating body 3, due to the emergence of the angle, the stable floating body 3 can be moved to a suitable position to provide floating force under the action of the pipe ring 31, in order to overcome the deviation of the angle, the elastic connecting piece provides the deviation of the inclination angle, so that the stable floating body 3 can be kept stable;
[0047] As shown in Figure 3 , it is a structure side view of the wall-mounted sectional articulated support rod anchoring system at rising water level; on the basis of Figure 1 , when the water level rises, the floating body is pulled by the hingedly connected support rod, and based on the hinge, the support rod forms a cable-stayed line, and the floating body is kept in a stable state, the support rod can be supported by the floating force provided by the movable stable floating body 3 and the hollow structure itself, due to the emergence of the angle, the stable floating body 3 can be moved to a suitable position to provide floating force under the action of the pipe ring 31, in order to overcome the deviation of the angle, the elastic connecting piece provides the deviation of the inclination angle, so that the stable floating body 3 can be kept stable.
[0048] The utility model make full use of mountain side wall, through the by at least two section through first hinged structure hinged connection support rod of horizontal arrangement, realize stable connection of floating body and mountain, not based on ordinary anchoring system of floating body bottom, make full use of mountain resources of this specific scene, improve efficiency, support rod is arranged transversely and hinged cooperation, support rod and floating body and mountain side wall between are all hinged cooperation, this sectional support rod hinged connection structure is relative underwater anchoring system, because adopt horizontal arrangement structure more ingenious, more easily check and maintain, safety is good, and anchoring efficiency is higher, because adopt horizontal hinged structure, can automatically adjust when water level changes, this need not design power device can automatically carry out anchoring adjustment, realize stable anchoring automatically when the height of water surface changes, support rod adopts sealed hollow rod structure, and support rod is equipped with movable stable floating body, can provide buoyancy to support rod and connecting structure itself, reduce the self weight of support rod, increase the support of support rod, protect the stability of floating body, and when water level is normal water level or falling water level, namely in non rising water level, support rod is located above horizontal plane, need not immerse in water, service life is longer, through the anchor rope of floating body and mountain top anchor rope connecting piece connection anchor rope, anchor rope and bolt two ends of first hinged structure are connected, can further improve the safety and stability of support rod connection, guarantee the connecting strength of whole anchoring system.
[0049] The above disclosed preferred embodiments of the utility model are only used for helping to set forth the utility model. The preferred embodiments do not describe all the details, and also do not limit the utility model to the specific implementation mode. Apparently, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments, in order to better explain the principle and practical application of the utility model, so that the person skilled in the art can well understand and utilize the utility model. The utility model is limited by the claims and the whole scope and equivalent thereof.
Claims
1. A wall-mounted sectional articulated shore pole anchoring system for achieving sectional articulated anchoring between a floating body (1) and a mountain mass (B), characterized in that: The support rod comprises at least two sections connected by a first hinged structure, a mountain fixing member (5) fixedly installed on the side wall of the mountain (B), and a movable stable floating body (3) slidably installed on the support rod. The end of the support rod close to the floating body (1) is connected to the floating body (1) by a second hinged structure, and the end of the support rod close to the mountain (B) is connected to the mountain (B) by a third hinged structure.
2. A wall-mounted sectional hinged brace rod anchoring system according to claim 1, characterized in that, The first hinged structure comprises a first H-shaped connecting member (41) arranged at one end of the support rod and a first plug-in block (22) arranged at the other end of the support rod, the first plug-in block (22) being plugged into the middle of the first H-shaped connecting member (41) and being connected by a bolt.
3. A wall-anchored sectionalized hinged brace system according to claim 1, wherein, The second hinged structure comprises a second H-shaped connecting member (11) arranged at one side of the floating body (1) or at the end of the adjacent support rod, and a second plug-in block (21) arranged at the end of the adjacent support rod or at one side of the floating body (1), the second plug-in block (21) being plugged into the middle of the second H-shaped connecting member (11) and being connected by a bolt.
4. A wall-anchored sectionalized hinged brace system according to claim 1, wherein, The third hinged structure comprises a third H-shaped connecting member (51) arranged at one side of the mountain fixing member (5) or at the end of the adjacent support rod, and a third plug-in block (42) arranged at the end of the adjacent support rod or at one side of the mountain fixing member (5), the third plug-in block (42) being plugged into the middle of the third H-shaped connecting member (51) and being connected by a bolt.
5. A wall-anchored sectionalized hinged brace system according to claim 1, wherein, The mountain fixing member (5) is fixedly installed on the side wall of the mountain (B) by a first fixing bolt (52).
6. A wall-anchored sectionalized hinged brace system according to claim 1, wherein, First anchor rope connecting members (7) are arranged on the side wall of the mountain (B) on both sides of the third hinged structure, and second anchor rope connecting members (12) are arranged on the side wall of the floating body (1) on both sides of the second hinged structure, the first and second anchor rope connecting members (7, 12) being respectively connected to the stable anchor rope (6) and the bolt on the first hinged structure.
7. A wall-anchored sectionalized hinged brace system according to claim 6, wherein, The first anchor rope connecting member (7) is fixedly installed on the side wall of the mountain (B) by a second fixing bolt (71).
8. A wall-anchored sectionalized hinged brace system according to claim 1, wherein, A pipe ring (31) is arranged on the movable stable floating body (3) and is sleeved with the support rod, and the pipe ring (31) is fixedly connected to the top of the movable stable floating body (3) by an elastic connecting member.
9. A wall-anchored sectionalized hinged brace system according to claim 1, wherein, The support rod is a hollow rod capable of floating and having water-tight sealing property.