Suspension device
By using a suspension device to move the monitoring instrument around the building, the problem of single monitoring points is solved, and comprehensive and efficient automated monitoring is achieved.
Patent Information
- Application Number
- CN202520714280.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-16
AI Technical Summary
In existing technologies, monitoring instruments are directly fixed to buildings, resulting in a single monitoring point and insufficient monitoring data.
The system provides a suspension device, including connectors, suspension rings, and moving parts. The suspension rings can move around the circumference of the building, carry monitoring instruments for comprehensive monitoring, and have adjustable installation height and level.
It enables comprehensive monitoring of the building's perimeter, with adjustable installation height and level, high degree of automation, and high work efficiency.
Smart Images

Figure CN223925748U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of engineering monitoring, in particular to a suspension device for the field of engineering monitoring. BACKGROUND
[0002] In the related art, when monitoring a building (such as an observation tower), the monitoring instrument is directly fixed on the building, and the monitoring point is single, and the monitoring data is not comprehensive. SUMMARY
[0003] In view of the above-mentioned shortcomings of the prior art, the purpose of the present disclosure is to provide a suspension device, so that the monitoring instrument can comprehensively monitor the building at a predetermined height.
[0004] The present disclosure provides a suspension device, comprising: a connecting member connected to the top of a building to be monitored, and having a plurality of suspension portions arranged at intervals in the circumferential direction of the building to be monitored; a suspension ring connected to the plurality of suspension portions to be suspended on the outer circumferential side of the building to be monitored; and a moving member movably coupled with the suspension ring in the circumferential direction of the suspension ring, for carrying a monitoring instrument to monitor the building to be monitored.
[0005] According to some embodiments of the present disclosure, the installation height and / or installation levelness of the suspension ring is adjustably arranged.
[0006] According to some embodiments of the present disclosure, further comprising: a threaded member threadedly fitted inside the suspension portion through the suspension ring.
[0007] According to some embodiments of the present disclosure, the suspension ring is provided with a slack gap, and the slack gap is provided with opposite first and second locking segments.
[0008] The suspension device further comprises a threaded slack member and a threaded sleeve, which are threaded through the first locking segment and threaded out of the second locking segment, the threaded sleeve is threadedly fitted on the threaded out portion of the threaded slack member, and abuts against the second locking segment, so that the inner side wall of the suspension ring tightly abuts against the outer side wall of the building to be monitored.
[0009] According to some embodiments of the present disclosure, the suspension ring is provided with a rack portion extending in the circumferential direction of the suspension ring, and is in sliding cooperation with the moving member; the suspension device further comprises a walking gear engaged with the rack portion; and a motor fixed on the moving member and connected with the walking gear, for driving the walking gear to walk along the rack portion, so as to drive the moving member to slide along the circumferential direction of the suspension ring.
[0010] According to some embodiments of the present disclosure, the suspension ring is provided with a sliding guide portion extending in the circumferential direction of the suspension ring, and the moving member is provided with a sliding portion in sliding cooperation with the sliding guide portion.
[0011] According to some embodiments of the present disclosure, the connecting piece further comprises a plurality of connecting portions, one end of each of the plurality of connecting portions is close to each other and connected to the center of the top of the building to be measured, the other end of each of the plurality of connecting portions is away from each other and arranged along the circumference of the building to be measured, and each of the plurality of connecting portions is connected to one of the plurality of suspension portions correspondingly.
[0012] According to some embodiments of the present disclosure, the connecting piece further comprises a sleeve portion connected to the plurality of connecting portions and sleeved outside the protrusion at the center of the top of the building to be measured.
[0013] According to some embodiments of the present disclosure, the suspension ring further comprises at least one level detection piece.
[0014] According to some embodiments of the present disclosure, the suspension ring further comprises a plurality of level detection pieces arranged along the circumference of the suspension ring.
[0015] Advantages:
[0016] (1) The suspension device of the present disclosure enables the monitoring instrument to monitor comprehensively along the circumference of the building to be measured.
[0017] (2) The suspension device of the present disclosure can adjust the installation height and level of the suspension ring, so as to ensure the installation height and level of the suspension ring during installation.
[0018] (3) The suspension device of the present disclosure can automatically drive the monitoring instrument, so as to improve the working efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a working state schematic diagram of the suspension device of the embodiment of the present disclosure.
[0020] Figure 2 is a structure schematic diagram of the suspension device of the embodiment of the present disclosure at an angle.
[0021] Figure 3 is a structure schematic diagram of the suspension device of the embodiment of the present disclosure at another angle. Figure 2 is an enlarged schematic diagram of part A in
[0022] Figure 4 is a structure schematic diagram of the suspension device of the embodiment of the present disclosure at another angle.
[0023] REFERENCE SIGNS:
[0024] 11, connecting piece; 111, suspension portion; 112, connecting portion; 113, sleeve portion; 114, threaded member;
[0025] 12, suspension ring; 121, slack gap; 122, first locking section; 123, second locking section; 124, rack portion; 125, sliding guide portion;
[0026] 13. moving part; 131. sliding part;
[0027] 14. threaded tensioning part;
[0028] 15. threaded sleeve;
[0029] 16. walking gear;
[0030] 17. motor;
[0031] 18. level detection part;
[0032] 800. monitor;
[0033] 900. building to be measured. DETAILED DESCRIPTION
[0034] The advantages and effects of the present disclosure can be easily understood by those skilled in the art from the messages disclosed in the present disclosure. The present disclosure can also be implemented or applied by other different embodiments or modules, and the details in the present disclosure can be modified or changed in different views and applications without departing from the spirit of the present disclosure. It should be noted that the embodiments in the present disclosure and the features in the embodiments can be combined with each other without conflict.
[0035] The embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings, so that those skilled in the art can easily implement the present disclosure. The present disclosure can be embodied in various different forms, and is not limited to the embodiments described herein.
[0036] In the description of the present disclosure, the expressions of "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like mean that the specific features, structures, materials or characteristics represented in conjunction with the embodiment or example are included in at least one embodiment or example of the present disclosure. Moreover, the specific features, structures, materials or characteristics represented can be combined in any one or a group of embodiments or examples in a suitable manner. In addition, the skilled in the art can combine and combine the different embodiments or examples and the features of the different embodiments or examples represented in the present disclosure without conflict.
[0037] In addition, the terms "first", "second" are only used for the purpose of representation, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present disclosure, the meaning of "a group" is two or more, unless otherwise specifically limited.
[0038] For the sake of clearness of the present disclosure, devices irrelevant to the description are omitted, and the same reference numerals are assigned to the same or similar constituent elements throughout the specification.
[0039] Throughout the specification, when it is said that a certain device is "connected" to another device, this includes not only the case of "direct connection" but also the case of "indirect connection" in which other elements are interposed therebetween. In addition, when it is said that a certain device "includes" a certain constituent element, other constituent elements are not excluded unless specifically stated to the contrary, but it means that other constituent elements can be further included.
[0040] Although the terms first, second, etc. are used herein to refer to various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from another. For example, a first interface and a second interface, etc. are denoted. Also, as used herein, the singular forms "a," "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises," "comprising," "includes" and / or "including," when used herein, specify the presence of stated features, steps, operations, elements, modules, items, components, and / or groups thereof, but do not preclude the presence or addition of one or more other features, steps, operations, elements, modules, items, components, and / or groups thereof. As used herein, the terms "or" and "and / or" are construed to be inclusive, or mean one and / or any combination. Therefore, "A, B, or C" or "A, B, and / or C" means "any of the following: A; B; C; A and B; A and C; B and C; A, B, and C." Exceptions to this definition are only present when items, components, or steps are inherently mutually exclusive between some versions.
[0041] The professional terms used herein are used only to refer to specific embodiments, and are not intended to limit the present disclosure. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. The meaning of "include," as used in the specification, is to encompass a specific feature, region, integer, step, operation, element, and / or component, but not to exclude the existence or addition of other features, regions, integers, steps, operations, elements, and / or components.
[0042] Although not differently defined, technical and scientific terms used herein include the technical terms and scientific terms used herein, all terms have the same meaning as the meaning generally understood by those skilled in the art to which the present disclosure belongs. The terms defined in a commonly used dictionary are additionally interpreted to have the meaning consistent with the related technical literature and the currently prompted message, unless defined, and should not be over-interpreted as ideal or very formal meanings.
[0043] In the related art, when monitoring a building, a monitor is usually fixedly arranged on the building. For example, when the building is an observation tower, the observation tower is usually a cylindrical and slender building. When monitoring the inclination of the observation tower to prevent a safety accident caused by sudden collapse of the observation tower, a monitoring instrument (for example, an electronic level) for monitoring the observation tower is directly fixed at a position of the building, which is inconvenient for comprehensive monitoring of the building.
[0044] In view of this, the present disclosure provides a suspension device for suspending a movable monitor, so that the monitor can comprehensively monitor the periphery of the building to be monitored at a predetermined height.
[0045] Figure 1 FIG. 1 is a schematic diagram of a working state of a suspension device according to an embodiment of the present disclosure. Figure 2 FIG. 2 is a schematic diagram of a structure of the suspension device at an angle according to an embodiment of the present disclosure. Referring to Figure 1 and Figure 2 The suspension device according to the present disclosure includes a connecting member 11, a suspension ring 12, and a moving member 13.
[0046] The connecting member 11 is connected to the top of the building to be monitored 900, and the connecting member 11 has a plurality of suspension portions 111 arranged at intervals in the circumferential direction of the building to be monitored 900. The suspension ring 12 is connected to the plurality of suspension portions 111 to be suspended on the outer periphery of the building to be monitored 900. For example, the building to be monitored 900 can be the observation tower described above. Of course, it can be understood that the building to be monitored 900 according to the present disclosure includes but is not limited to this, and can also be other buildings.
[0047] Optionally, the connecting member 11 further includes a plurality of connecting portions 112. One end of the plurality of connecting portions 112 is close to each other and connected to the center of the top of the building to be monitored 900, and the other end is away from each other and arranged at intervals in the circumferential direction of the building to be monitored 900, and one by one corresponds to the plurality of suspension portions 111. For example, the connecting portion 112 and the suspension portion 111 are three, one end of the three connecting portions 112 is connected to each other at an interval of about 120 degrees, and the other end is connected to the three suspension portions 111 one by one, and the three suspension portions 111 are connected to the three connecting portions 112. The suspension ring 12 is arranged at intervals in the circumferential direction. Thus, when the suspension ring 12 is suspended, the plurality of suspension portions 111 are uniformly stressed, and the suspension ring 12 is uniformly stressed at multiple positions in the circumferential direction, and the structure is stable. However, it can be understood that the number of the connecting portion 112 and the suspension portion 111 includes but is not limited to this, and the number of the connecting portion 112 and the suspension portion 111 can be adjusted as needed.
[0048] Optionally, the connecting member 11 further comprises a collar portion 113. The collar portion 113 is connected with the plurality of connecting portions 112 and is sleeved outside the protrusion on the top center of the building 900 to be measured. Thus, the connecting member 11 is convenient to be connected to the top of the building 900 to be measured. Specifically, when the building 900 to be measured is an observation pier, the protrusion can be a centering column on the top center of the observation pier. Of course, when the building 900 to be measured is other building, the protrusion can be a protrusion temporarily built or already existed on the top center of the other building.
[0049] Optionally, the installation height of the suspension ring 12 is adjustably arranged. And / or the installation levelness of the suspension ring 12 is adjustably arranged. Thus, by adjusting the installation height of the suspension ring 12, the installation height of the monitoring instrument 800 is also adjusted, thereby facilitating to ensure that the monitoring instrument 800 has a proper installation height when installed. By adjusting the installation levelness of the suspension ring 12, it is facilitated to ensure that the suspension ring 12 is not too inclined to affect the monitoring of the monitoring instrument 800.
[0050] Figure 3 is Figure 2 is an enlarged schematic view of part A in FIG. 8. Referring to Figure 3 The connecting member 11 further comprises a threaded member 114. The threaded member 114 extends vertically and is threadedly fitted inside the suspension portion 111 through the suspension ring 12. For example, the threaded member 114 comprises a connecting bolt. The connecting bolt extends vertically and is threadedly fitted inside the suspension portion 111 through the suspension ring 12. Thus, by adjusting the length of the threaded member 114 extending into the suspension portion 111, the installation height and levelness of the suspension ring 12 can be adjusted. For example, when the lengths of the plurality of threaded members 114 extending into the suspension portion 111 are all relatively long, the installation height of the suspension ring 12 is relatively high. When the lengths of the plurality of threaded members 114 extending into the suspension portion 111 are all relatively short, the installation height of the suspension ring 12 is relatively low. When the lengths of the plurality of threaded members 114 extending into the suspension portion 111 are not equal, the bottom surface or the top surface of the suspension ring 12 is easily inclined to the horizontal plane. At this time, by adjusting the lengths of some of the plurality of threaded members 114 extending into the suspension portion 111, the levelness of the suspension ring 12 is adjusted, thereby facilitating to ensure that the suspension ring 12 can remain horizontal during the monitoring process or after installation, ensuring the consistency of the heights of the plurality of monitoring points of the suspension ring 12 in the circumferential direction, and facilitating to ensure that the monitoring results will not be adversely affected by the different factors of height difference.
[0051] The moving part 13 is movably connected with the hanging ring 12 along the circumference of the hanging ring 12, so as to monitor the building 900 to be monitored by the monitoring instrument 800. Thus, by the hanging device, the monitoring instrument 800 can monitor multiple points along the circumference of the building 900 to be monitored at a predetermined height, which is conducive to the comprehensive monitoring data of the monitoring instrument 800.
[0052] In addition, it is worth mentioning that the hanging device of the present disclosure is mainly used to assist the monitoring instrument 800 to obtain more comprehensive monitoring data, but the type and monitoring content of the monitoring instrument 800 are not specifically limited in the present disclosure, which can be adaptively changed according to the needs. For example, the monitoring content can be the inclination of the building 900 to be monitored, the settlement of the building 900 to be monitored, the horizontal displacement, etc., and even for the same monitoring content, the monitoring instrument 800 can be of multiple types. For example, taking the inclination of the building 900 to be monitored as the monitoring content, the monitoring instrument 800 can be a range finder, such as a laser range finder, to determine the inclination of the building 900 to be monitored based on the height change of the range finder from the ground at a predetermined point. Thus, at a predetermined point along the circumference of the building 900 to be monitored, when the height of the laser range finder from the ground at the predetermined point does not change, the predetermined point does not incline. When the height of the laser range finder from the ground at the predetermined point decreases, the predetermined point inclines, and the smaller the height, the greater the inclination. For example, when the height of the building 900 to be monitored is too long, the size change in the height direction caused by inclination is relatively small compared to the overall height of the building 900 to be monitored, which makes the above monitoring less sensitive. In order to better ensure the sensitivity of the monitoring, a measuring scale (such as a bar code scale or a scale) can be arranged along the circumference of the building 900 to be monitored on the ground, the measuring scale extends along the radial direction of the building 900 to be monitored, and a plurality of size identifiers (scales or bar codes) for representing the size are arranged on the measuring scale along the extension direction. The monitoring instrument 800 is arranged above the measuring scale and is configured to have a reader capable of reading the size identifiers on the measuring scale, so as to determine the inclination of the building 900 to be monitored based on the size data read from the measuring scale. Thus, at a predetermined point along the circumference of the building 900 to be monitored, when the horizontal distance between the size identifier monitored by the monitoring instrument 800 and the center of the building 900 to be monitored does not change, and the size value read by the monitoring instrument 800 is a predetermined value, the predetermined point does not incline. When the horizontal distance between the size identifier monitored by the monitoring instrument 800 and the center of the building 900 to be monitored increases, and the size value read by the monitoring instrument 800 increases or decreases relative to the predetermined value, the predetermined point inclines, and the greater the change in the size value, the greater the inclination of the building 900 to be monitored.
[0053] Figure 4 is a structural schematic view of the suspension device of the embodiment of the present disclosure in another angle. Referring to Figure 4 , the suspension ring 12 is provided with a slack gap 121, and the slack gap 121 is provided with opposite first locking segments 122 and second locking segments 123. The suspension device further comprises a threaded slack member 14 and a threaded sleeve 15. The threaded slack member 14 passes through the first locking segments 122 and passes out of the second locking segments 123. The threaded sleeve 15 is threadedly sleeved on the passing-out portion of the threaded slack member 14 and abuts against the second locking segments 123, so that the inner side wall of the suspension ring 12 tightly abuts against the outer side wall of the building to be tested 900. For example, the threaded slack member 14 can be a slack bolt, and the threaded sleeve 15 is a fastening cap matched with the slack bolt. Thus, when the threaded slack member 14 and the threaded sleeve 15 are not installed to the first locking segments 122 and the second locking segments 123, the inner diameter of the suspension ring 12 is slightly large, so that the suspension ring 12 is easily sleeved to the outside of the building to be tested 900. After being sleeved, when the threaded slack member 14 and the threaded sleeve 15 are installed to the first locking segments 122 and the second locking segments 123, the inner diameter of the suspension ring 12 can be slightly reduced, so that the inner side wall of the suspension ring 12 can tightly abut against the outer side wall of the building to be tested 900, thereby increasing the friction between the suspension ring 12 and the building to be tested 900, reducing the shaking risk of the suspension ring 12, and facilitating the installation of the suspension ring 12 and improving the stability of the suspension ring 12 after being installed.
[0054] Optionally, referring to Figure 2 , the suspension ring 12 is provided with a rack portion 124 extending along the circumference of the suspension ring 12 and is in sliding fit with the moving member 13. The suspension device further comprises a walking gear 16 and a motor 17. The walking gear 16 is in engagement with the rack portion 124. The motor 17 is fixed to the moving member 13 and is connected with the walking gear 16, for driving the walking gear 16 to walk along the rack portion 124, so as to drive the moving member 13 to slide along the circumference of the suspension ring 12. Thus, the moving member 13 can realize the movement action of moving along the circumference of the suspension ring 12, and has high working efficiency and reliability and high automation degree.
[0055] Optionally, the suspension ring 12 is provided with a sliding guide portion 125 extending along the circumference of the suspension ring 12, and the moving member 13 is provided with a sliding portion 131 in sliding fit with the sliding guide portion 125. Thus, the sliding fit between the suspension ring 12 and the moving member 13 is realized, and the moving member 13 has high stability and reliability when moving along the circumference of the suspension ring 12.
[0056] Optionally, referring to Figure 2The suspension device further comprises a levelness detecting member 18. The levelness detecting member 18 is arranged on the suspension ring 12 and is used to detect the levelness of the suspension ring 12. Thus, when the suspension ring 12 is installed or in operation, the relevant personnel can be aware of the non-levelness of the suspension ring 12 in time, so as to make the suspension ring 12 level, and avoid affecting the monitoring effect of the monitoring instrument 800 due to the non-levelness of the suspension ring 12.
[0057] Optionally, the levelness detecting member 18 is a plurality of. The plurality of levelness detecting members 18 are arranged at intervals around the circumference of the suspension ring 12, which is conducive to ensuring that multiple positions of the suspension ring 12 are in a horizontal state. Specifically, the levelness detecting member 18 comprises one or more of a bubble level or an electronic level. The bubble level is filled with liquid and bubbles. When the bubble level is installed on the suspension ring 12, the position of the bubbles in the bubble level can represent the levelness of the installation position. The electronic level can detect the levelness (inclination angle) of the installation position through the internal electronic sensor and display the result in digital form.
[0058] The above embodiments are only illustrative of the principles and effects of the present disclosure, and are not intended to limit the present disclosure. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present disclosure. Therefore, all equivalent modifications or changes made by those skilled in the art without departing from the spirit and technical ideas disclosed by the present disclosure shall still be covered by the protection scope of the present disclosure.
Claims
1. A suspension device, characterized by The suspension device comprises: a connecting member connected to the top of a building to be measured, and having a plurality of suspension portions arranged at intervals in the circumferential direction of the building to be measured; a suspension ring connected to the plurality of suspension portions to be suspended on the outer circumferential side of the building to be measured; and a moving member movably connected to the suspension ring in the circumferential direction of the suspension ring, for carrying a monitoring instrument to monitor the outer circumferential side of the building to be measured. The installation height and / or installation levelness of the suspension ring is adjustably arranged.
2. The suspension device of claim 1, wherein The suspension device further comprises:
3. The suspension device of claim 1, wherein a threaded member threadedly arranged inside the suspension portion through the suspension ring. The suspension ring is provided with a slack gap, and the slack gap is provided with opposite first and second locking sections; 4. The suspension device of claim 1, wherein The suspension device further comprises a threaded slack member and a threaded sleeve, which are arranged through the first locking section and out of the second locking section, the threaded sleeve is threadedly arranged on the outcoming portion of the threaded slack member and abuts against the second locking section, so that the inner side wall of the suspension ring tightly abuts against the outer side wall of the building to be measured. The suspension ring is provided with a rack portion extending in the circumferential direction of the suspension ring and slidably connected to the moving member.
5. The suspension device of claim 1, wherein The suspension device further comprises: a walking gear engaged with the rack portion; a motor fixed to the moving member and connected to the walking gear, for driving the walking gear to walk along the rack portion, so as to drive the moving member to slide along the circumferential direction of the suspension ring. The suspension ring is provided with a sliding guide portion extending in the circumferential direction of the suspension ring, and the moving member is provided with a sliding portion slidably connected to the sliding guide portion.
6. The suspension device of claim 5, wherein The connecting member further comprises a plurality of connecting portions, one end of each of the plurality of connecting portions is close to each other and connected to the center of the top of the building to be measured, the other end of each of the plurality of connecting portions is away from each other and arranged at intervals in the circumferential direction of the building to be measured, and each of the plurality of connecting portions is connected to one of the plurality of suspension portions.
7. The suspension device of claim 1, wherein The connecting member further comprises a sleeve ring portion connected to the plurality of connecting portions and sleeved outside the protruding portion in the center of the top of the building to be measured.
8. The suspension device of claim 7, wherein, The suspension device further comprises:
9. The suspension device of claim 1, wherein at least one levelness detection member arranged on the suspension ring. The suspension device further comprises:
10. The suspension device of claim 1, wherein a plurality of levelness detection members arranged at intervals in the circumferential direction of the suspension ring.