Safety protection structure for building
By integrating pressure sensors and solar-powered warning lights into the building safety net, the shortcomings of the net's robustness and alarm function have been solved, enabling safety protection and timely cleanup at the construction site and preventing damage to the net.
Patent Information
- Application Number
- CN202520005416.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Existing construction safety nets are not very sturdy when used on construction sites and lack alarm functions, failing to promptly alert to the accumulation of stones, making the safety nets easily damaged and posing safety hazards.
A safety protection structure for buildings was designed, which uses multiple sets of installation components to be fixed to the side wall of the building. The support rod is equipped with a fixing ring and a branch pipe. The bracket is equipped with a groove and a pressure sensor. The pressure plate is installed on the protective net. The pressure sensor senses the pressure of the stone and activates the solar warning light to prompt cleaning. At the same time, the connector and connecting collar enable quick installation and stabilization.
The protective netting was installed securely, and personnel were promptly alerted to remove stones, preventing damage to the netting and ensuring safety at the construction site.
Smart Images

Figure CN223952292U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building safety protection technical field, concretely is a building safety protection structure. BACKGROUND
[0002] At present, the direct meaning of engineering cost is the construction price of engineering, and the three elements of engineering pricing are quantity, price and cost, and the general engineering cost covers construction engineering cost (civil engineering and installation engineering), highway engineering cost, water transportation engineering cost, railway engineering cost, water conservancy engineering cost, electric power engineering cost, communication engineering cost, aerospace engineering cost, etc.
[0003] Among them, the building protection net, also known as building safety net, is mainly used for preventing high building materials and construction personnel from falling and avoiding casualties, which can be classified according to different weaving methods and purposes.
[0004] However, when the protection net is used on the construction site in the market, it is only simply laid, and the firmness is weak, and there is no alarm effect, when a large amount of stones are accumulated on the protection net, the protection is easily damaged, therefore, the building safety protection structure is proposed, which not only has a strong stable effect of the protection net, but also has an alarm effect of the accumulated quantitative stones on the protection net, reminding the operator to clean the stones in time. UTILITY MODEL CONTENT
[0005] The utility model aims at providing a building safety protection structure, which solves the problems in the background art.
[0006] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme: a building safety protection structure, comprising a mounting piece, the mounting piece is provided with multiple groups, multiple groups of mounting pieces are equidistantly distributed and installed on the side wall of a building body, each group of mounting pieces is fixedly installed with a support rod on the side wall, and the other end of the multiple groups of support rods is installed with a safety protection mechanism.
[0007] The safety protection mechanism comprises a fixing ring fixedly installed at the other end of the support rod, a tapping pipe welded in the fixing ring, a bracket installed at one end of the tapping pipe, a groove opened in the middle of the bracket, a pressure sensor fixedly installed on one side of the inner wall of the groove, a pressing plate embeddedly installed in the groove, and a protection net fixedly installed at the bottom of the pressing plate.
[0008] Optionally, the two adjacent groups of tapping pipes can be spliced with each other, and the two ends of each group of protection nets are fixedly installed with the bottom of the pressing plate of the adjacent two groups.
[0009] Optionally, each group of the mounting members is an L-shaped mounting member, mounting holes are formed on two sides of each group of the mounting members, expansion bolts are movably installed in each group of the mounting holes, and each group of the expansion bolts is fixedly installed on the side wall of the building.
[0010] By adopting the above technical scheme, each group of mounting members can be firmly and fixedly installed on the building.
[0011] Optionally, each group of the tapping pipes is fixedly installed with a connecting head at one end, and is fixedly installed with a connecting sleeve ring at the other end, and the connecting sleeve ring and the connecting head correspond to each other.
[0012] By adopting the above technical scheme, adjacent two groups of the tapping pipes can be conveniently installed and dismounted.
[0013] Optionally, each group of the tapping pipes is provided with a mounting groove at one end, and a plurality of groups of the mounting grooves are threadedly installed at one end of each group of the brackets.
[0014] By adopting the above technical scheme, the operator can conveniently install the bracket.
[0015] Optionally, each group of the brackets is fixedly installed with a solar warning light at the other end, and each group of the solar warning lights is connected with an adjacent pressure sensor through a wire.
[0016] By adopting the above technical scheme, the operator can be warned.
[0017] Compared with the prior art, the technical scheme of the present application has the following beneficial effects:
[0018] After a plurality of groups of the tapping pipes are distributed in a ring shape on the outside of the building, the operator installs the bracket and the pressing plate on the tapping pipes in a ring shape, ensures that each group of the pressing plates is embedded in the groove in the middle of the corresponding bracket, and finally installs the two sides of the plurality of groups of the protective nets on the bottom of the adjacent two groups of the pressing plates, so that the plurality of groups of the protective nets are distributed in a ring shape on the outside of the building, the objects falling from the building are protected, the falling stones in the construction process are prevented from hitting the pedestrians on the road, after the stones with a larger volume fall into the protective net, the protective net drives the two sides of the pressing plate to press the pressure sensor, the pressure sensor receiving the pressure transmits the signal to the control processor, turns on the corresponding solar warning light, warns the operator, and cleans the stones on the protective net in time, avoids long-time pressing and causes damage to the protective net, and thus hits the pedestrians on the road.
[0019] The connecting head and the connecting head sleeve ring at the two ends of each group of branch pipes are matched, when the operator installs a large number of mounting pieces on the side wall of the building body in sequence, the two adjacent groups of branch pipes can be quickly connected, and a large number of branch pipes can be installed two by two and stably distributed in a ring type on the outside of the building body, further increasing the stability and firmness of the installed multiple groups of protective nets. BRIEF DESCRIPTION OF DRAWINGS
[0020] Other features, objects and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments, read in conjunction with the accompanying drawings:
[0021] Fig. 1 It is a whole structure schematic view of the safety protection structure for building of the present application;
[0022] Fig. 2 It is a branch pipe structure schematic view of the safety protection structure for building of the present application;
[0023] Fig. 3 It is a recess distribution structure schematic view of the safety protection structure for building of the present application.
[0024] In the figure: 1, building body; 11, mounting piece; 12, expansion bolt; 13, supporting rod; 14, fixed ring; 2, branch pipe; 21, bracket; 22, recess; 23, pressure sensor; 24, pressing plate; 25, protective net; 3, connecting head; 31, connecting sleeve ring; 32, mounting groove; 33, solar warning light. DETAILED DESCRIPTION
[0025] Please refer to Figs. 1-3 The present application provides a technical scheme: a safety protection structure for building, comprising a mounting piece 11, the mounting piece 11 is provided with multiple groups, the multiple groups of mounting pieces 11 are equidistantly distributed and installed on the side wall of the building body 1, the side wall of each group of mounting pieces 11 is fixedly installed with a supporting rod 13, and the other end of the multiple groups of supporting rods 13 is installed with a safety protection mechanism;
[0026] The safety protection mechanism comprises a fixed ring 14 fixedly installed at the other end of the supporting rod 13, a branch pipe 2 welded in the fixed ring 14, a bracket 21 installed at one end of the branch pipe 2, a recess 22 formed in the middle of the bracket 21, a pressure sensor 23 fixedly installed on one side of the inner wall of the recess 22, a pressing plate 24 embeddedly installed in the recess 22, and a protective net 25 fixedly installed at the bottom of the pressing plate 24, and the two adjacent groups of branch pipes 2 can be spliced with each other, and the two ends of each group of protective nets 25 are fixedly installed with the bottom of the pressing plate 24 of the adjacent two groups.
[0027] After the multi-component branch pipes 2 are distributed in a ring shape outside the building 1, the operator installs the brackets 21 and the pressing plates 24 on the ring-shaped branch pipes 2, and ensures that each group of pressing plates 24 is embedded in the grooves 22 in the middle of the corresponding brackets 21, and finally installs the multi-group protective nets 25 on the bottom of the adjacent two groups of pressing plates 24 respectively, so that the multi-group protective nets 25 are distributed in a ring shape outside the building 1, and the objects falling from the building 1 are prevented, so as to avoid that the falling stones hit the pedestrians on the road during the construction process. After the stones with large volume fall into the protective nets 25, the protective nets 25 drive the two sides of the pressing plates 24 to press the pressure sensors 23, the pressure sensors 23 under the pressure transmit signals to the control processor, and the corresponding solar warning lights 33 are turned on to warn the operators and clean the stones on the protective nets 25 in time, so as to avoid that the stones damage the protective nets 25 for a long time and hit the pedestrians on the road.
[0028] In this technical scheme, each group of branch pipes 2 is fixedly installed with a connecting head 3 at one end, and is fixedly installed with a connecting sleeve ring 31 at the other end, and the connecting sleeve ring 31 corresponds to the connecting head 3.
[0029] When the operator installs a large number of mounting pieces 11 on the side wall of the building 1, the connecting head 3 at one end of each group of branch pipes 2 is matched with the connecting head 3 sleeve ring at the other end, so that the adjacent two groups of branch pipes 2 can be quickly connected, a large number of branch pipes 2 can be installed two by two and distributed in a ring shape on the outside of the building 1, and the stability and firmness of the multi-group protective nets 25 after installation are further increased.
[0030] In this technical scheme, each group of branch pipes 2 is provided with an installation groove 32 at one end, and a plurality of installation grooves 32 are respectively screwed at one end of each group of brackets 21.
[0031] After the multi-group branch pipes 2 are distributed in a ring shape outside the building 1, the operator can directly screw a plurality of supports with the installation grooves 32 on each group of branch pipes 2, and quickly install the plurality of supports on the plurality of branch pipes 2.
[0032] In this technical scheme, each group of brackets 21 is fixedly installed with a solar warning light 33 at the other end, and each group of solar warning lights 33 is connected with the adjacent pressure sensor 23 through a wire.
[0033] By turning on the corresponding solar warning light 33, the operator is warned to clean the stones on the protective nets 25 in time, so as to avoid that the stones damage the protective nets 25 for a long time and hit the pedestrians on the road.
[0034] In this technical scheme, each group of mounting pieces 11 is an L-shaped mounting piece 11, each group of mounting pieces 11 is provided with a mounting hole at both sides, each group of mounting holes is movably installed with an expansion bolt 12, and each group of expansion bolts 12 is fixedly installed on the side wall of the building 1.
[0035] By installing a plurality of groups of equidistant distribution of mounting member 11 on the side wall of the building 1, cooperate with the expansion bolt 12 to firmly fixed mounting member 11.
[0036] In use, first by installing a plurality of groups of equidistant distribution of mounting member 11 on the side wall of the building 1, cooperate with the expansion bolt 12 to firmly fixed mounting member 11, then in turn in each group of mounting member 11 outside installation of support rod 13, fixed ring 14 and tapping pipe 2, so that a plurality of groups of tapping pipe 2 in the form of ring distribution in the outside of the building 1, at the same time the operator in the form of ring-shaped tapping pipe 2 installation bracket 21 and pressing plate 24, and ensure that each group of pressing plate 24 are embedded in the corresponding recess 22 in the middle of the bracket 21, finally the two sides of the plurality of protective nets 25 are installed in the bottom of the adjacent two groups of pressing plate 24, so that the plurality of protective nets 25 in the form of circular distribution in the outside of the building 1, to protect the objects falling from the building 1, to avoid falling stone in the construction process to the road pedestrians, waiting for the volume of the stone falling in the protective net 25, the protective net 25 will drive the two sides of the pressing plate 24 to extrude the pressure sensor 23, the pressure sensor 23 will be received by the pressure signal to the control processor, open the corresponding solar warning light 33, warning the operator, and timely cleaning the stone on the protective net 25, to avoid long time under pressure, cause the protective net 25 damage, so as to hit the road pedestrians, at the same time through each group of tapping pipe 2 one end is fixedly installed with the connector 3, and the other end of each group of tapping pipe 2 is fixedly installed with the connecting sleeve ring 31, when the operator in turn a large number of mounting member 11 installed in the side wall of the building 1, cooperate with the connector 3 and the connector 3 sleeve ring in both ends of each group of tapping pipe 2, can make the adjacent two groups of tapping pipe 2 fast connection, ensure that a large number of tapping pipe 2 can be installed two by two, and in the form of ring type stable distribution in the outside of the building 1, further increase the stability and firmness of a plurality of protective nets 25 after installation.
Claims
1. A safety protection structure for buildings, comprising a mounting element (11), characterized in that: The mounting piece (11) is provided with multiple groups, multiple groups of the mounting piece (11) are equidistantly distributed and installed on the side wall of the building body (1), the side wall of each group of the mounting piece (11) is fixedly installed with a supporting rod (13), and the other end of the multiple groups of the supporting rod (13) is installed with a safety protection mechanism; The safety protection mechanism comprises a fixed ring (14) fixedly installed at the other end of the supporting rod (13), a tapping pipe (2) welded in the fixed ring (14), a bracket (21) installed at one end of the tapping pipe (2), a groove (22) formed in the middle of the bracket (21), a pressure sensor (23) fixedly installed on one side of the inner wall of the groove (22), a pressing plate (24) embeddedly installed in the groove (22), and a protective net (25) fixedly installed at the bottom of the pressing plate (24), the other end of each group of the bracket (21) is fixedly installed with a solar warning light (33), and each group of the solar warning light (33) is connected with an adjacent pressure sensor (23) through a wire.
2. A safety shield structure for construction according to claim 1, wherein: The two adjacent groups of the tapping pipe (2) can be spliced with each other, and the two ends of each group of the protective net (25) are fixedly installed with the bottom of the two adjacent groups of the pressing plate (24), respectively.
3. A safety shield structure for construction according to claim 1, wherein: Each group of the mounting piece (11) is an L-shaped mounting piece (11), the two sides of each group of the mounting piece (11) are provided with mounting holes, each group of the mounting hole is movably installed with an expansion bolt (12), and each group of the expansion bolt (12) is fixedly installed on the side wall of the building body (1).
4. The safety shield structure for building according to claim 1, wherein: One end of each group of the tapping pipe (2) is fixedly installed with a connecting head (3), and the other end of each group of the tapping pipe (2) is fixedly installed with a connecting sleeve ring (31), and the connecting sleeve ring (31) and the connecting head (3) correspond to each other.
5. The safety shield structure for building according to claim 1, wherein: One end of each group of the tapping pipe (2) is provided with a mounting groove (32), and multiple groups of the mounting groove (32) are respectively and threadedly installed with one end of each group of the bracket (21).