CN213481346U - Be used for metal casing building to measure auxiliary platform - Google Patents
Be used for metal casing building to measure auxiliary platform Download PDFInfo
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- CN213481346U CN213481346U CN202022830747.3U CN202022830747U CN213481346U CN 213481346 U CN213481346 U CN 213481346U CN 202022830747 U CN202022830747 U CN 202022830747U CN 213481346 U CN213481346 U CN 213481346U
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Abstract
The utility model discloses a be used for metal casing building to measure auxiliary platform, including base, fixed part, support portion and electro-magnet, be equipped with power and measuring tank on the base, the one end of base with the fixed part is connected, the other end with the support portion is connected, the support portion with the fixed part is connected, support portion, base and fixed part connect gradually and form frame column structure, the electro-magnet is fixed in on the fixed part, the electro-magnet with the power links to each other, the electro-magnet can adsorb on the metal casing of building after the circular telegram. The utility model provides a can carry on all kinds of measuring device's general type measurement auxiliary platform carries out automated monitoring to the stability of metal casing building high-efficiently in real time, and the platform is fixed in on the metal outer wall of building through the electro-magnet, when needing the removal monitoring position, dismantles the transfer convenience.
Description
Technical Field
The utility model belongs to building safety monitoring equipment field, concretely relates to be used for metal casing building to measure auxiliary platform.
Background
At present, in infrastructure construction, there is a considerable portion of metal exterior structure buildings, and the surrounding environmental factors such as strong wind, vibration, etc. have a great influence on the structural stability of the buildings. If the stability of the building structure is not monitored timely, protective measures can be improperly taken, even the building deforms or collapses, so that economic loss is caused, and the life safety of people is harmed. At present, most of monitoring modes for metal external structure buildings are manual fixed-point monitoring, but the manual monitoring needs to consume a large amount of manpower and material resources, the manual monitoring frequency is limited, the fixed-point monitoring representativeness is poor, the flexibility is low, the measuring efficiency is low, and the building condition cannot be easily reflected timely and comprehensively.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to the proposition of above problem, and research and design one kind is used for metal casing building to measure auxiliary platform, solves traditional method and detects the shortcoming that the frequency is limited, the monitoring representativeness is poor, the flexibility is low. The utility model discloses a technical means as follows:
the utility model provides a be used for metal casing building to measure auxiliary platform, includes base, fixed part, support portion and electro-magnet, be equipped with the power on the base and measure the groove, the one end of base with the fixed part is connected, the other end with the support portion is connected, the support portion with the fixed part is connected, support portion, base and fixed part connect gradually and form frame column structure, the electro-magnet is fixed in on the fixed part, the electro-magnet with the power links to each other, can adsorb on the metal casing of building after the electro-magnet circular telegram.
Preferably, the support structure further comprises a support, one end of the support is connected with the fixing portion, the other end of the support is connected with the base, and the support, the fixing portion and the base are connected to form a triangular structure.
Preferably, the electromagnet comprises a magnet protrusion and a support plate, the magnet protrusion is connected with the support plate, the fixing portion is provided with a through hole matched with the magnet protrusion, the support plate is arranged on the inner side of the frame-shaped structure, and the magnet protrusion can penetrate through the through hole and extend out of the frame-shaped structure.
Preferably, a solar panel is arranged on the supporting part and connected with the power supply.
Preferably, the supporting portion includes a top cover and a side cover, one end of the top cover is connected to the fixing portion, the other end of the top cover is connected to the side cover, and the side cover is connected to the base.
Preferably, the fixing device further comprises a fixing plate, the fixing plate is L-shaped, the top cover is connected with the fixing part through the fixing plate, one side of the fixing plate is attached to the top cover and connected with the top cover through a screw, and the other side of the fixing plate is attached to the fixing part and connected with the fixing part through a screw; the side cover passes through the fixed plate with the base is connected, one side of fixed plate laminate in the side cover, and through the screw with the side cover is connected, the opposite side of fixed plate laminate in the base, and through the screw with the base is connected.
Compared with the prior art, a beneficial effect for metal casing building measurement auxiliary platform do: the utility model provides a general auxiliary measuring platform capable of carrying measuring devices, which can carry various measuring instruments and monitor the stability of the metal shell building in real time and efficiently; the solar cell panel is loaded on the platform and can supply power to a power supply, so that long-time automatic real-time monitoring is realized; and the platform is fixed in the metal outer wall of building through electromagnetic contactor, along with the difference of required monitoring position, the outage removes to the position that needs to continue monitoring at any time can, dismantles and shifts the convenience.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a front view structure diagram of the present invention.
Fig. 3 is a schematic structural diagram of the middle electromagnet of the present invention.
In the figure, 1, a base; 2. a fixed part; 3. a support portion; 4. an electromagnet; 5. supporting; 6. a fixing plate; 7. a screw; 11. a measuring tank; 12. a power source; 31. a top cover; 32. a side cover; 41. a magnet bulge; 42. a support plate.
Detailed Description
As shown in fig. 1 to 3, an auxiliary measuring platform for a metal-shell building comprises a base 1, a fixing part 2, a supporting part 3 and an electromagnet 4. The base 1 is provided with a power supply 12 and a measuring tank 11, and a measuring instrument can be arranged in the measuring tank 11 and used for monitoring the metal shell building. One end of the base 1 is connected with the fixing part 2, the other end is connected with the supporting part 3, and the supporting part 3 is connected with the fixing part 2, so that the base 1, the fixing part 2 and the supporting part 3 are connected to form a frame-shaped structure. The electromagnet 4 is connected with the power supply 12 through a lead, the power supply 12 can supply power to the electromagnet 4 and the measuring instrument, and the electromagnet 4 can be adsorbed on a metal shell of a building after being electrified so as to integrally fix the measuring auxiliary platform on the building.
The support structure further comprises a support 5, one end of the support 5 is connected with the fixing portion 2, the other end of the support 5 is connected with the base 1, and the support 5, the fixing portion 2 and the base 1 are connected to form a triangular structure. In this embodiment, the two sides of the base 1 and the fixing portion 2 are both provided with the supports 5, so that the stability between the base 1 and the fixing portion 2 is further improved.
The electromagnet 4 comprises a magnet protrusion 41 and a support plate 42, the magnet protrusion 41 is connected with the support plate 42, the support plate 42 is connected with the power supply 12 through a lead, the support plate 42 can conduct current to the magnet protrusion 41, and the magnet protrusion 41 can generate magnetism after being electrified. The fixing part 2 is provided with a through hole matched with the magnet bulge 41, and in practical application, the support plate 42 is arranged on the inner side of the frame-shaped structure, and the magnet bulge 41 penetrates through the through hole on the fixing part 2 and extends out of the frame-shaped structure. After the magnet protrusion 41 is electrified to generate magnetism, one end of the magnet protrusion extending out of the frame-shaped structure can be adsorbed and fixed with a metal shell of a building, and then the whole measurement auxiliary platform is fixed through the support plate 42. The electromagnet 4 is arranged in the form of the magnet protrusion 41 and the supporting plate 42, so that the electromagnet 4 and the fixing plate 6 are convenient to assemble, and the electromagnet 4 and the fixing plate 6 are convenient to maintain, disassemble and replace due to the split design of the electromagnet 4 and the fixing plate 6.
The supporting part 3 is provided with a solar cell panel, the solar cell panel is connected with the power supply 12 through a wire, the solar cell panel can charge for the power supply 12 to continue the journey, and the working time of the measuring platform is prolonged.
The support portion 3 includes a top cover 31 and a side cover 32, one end of the top cover 31 is connected to the fixing portion 2, the other end is connected to the side cover 32, and the side cover 32 is connected to the base 1. The top cover 31, the side cover 32, the base 1 and the fixing part 2 are connected to form a square structure, a larger installation space can be provided for a measuring instrument on the base 1, meanwhile, the square structure can be better attached to the appearance of the measuring instrument, and the space is fully utilized.
The fixing plate is characterized by further comprising a fixing plate 6, wherein the fixing plate 6 is L-shaped, and the top cover 31 is connected with the fixing part 2 through the fixing plate 6. Specifically, one side of the fixing plate 6 is attached to the top cover 31 and connected to the top cover 31 through the screw 7, and the other side of the fixing plate 6 is attached to the fixing part 2 and connected to the fixing part 2 through the screw 7; the side cover 32 is connected with the base 1 through the fixing plate 6, one side of the fixing plate 6 is attached to the side cover 32 and connected with the side cover 32 through the screw 7, and the other side of the fixing plate 6 is attached to the base 1 and connected with the base 1 through the screw 7. The supporting part 3 can be connected and fixed with the fixing part 2 and the base 1 through the fixing plate 6 and the screws 7, the assembly is convenient, and the installation time is saved.
The utility model discloses a theory of operation does: firstly, connecting and combining the end parts of the base 1 and the fixing part 2, connecting one end of a support 5 with the base 1 through a screw 7, connecting the other end of the support 5 with the fixing part 2 through the screw 7, and reinforcing the base 1 and the fixing part 2 through the supports 5 on two sides of the base 1 and the fixing part 2; fixing a power supply 12 on the base 1, and connecting the electromagnet 4 with the power supply 12 through a lead, wherein a magnet bulge 41 extends out of the wall-attaching side of the fixing part 2 and is used for being in adsorption connection with a metal shell of a building; a measuring instrument (a vibration measuring device and the like) is fixed on the platform base 1 through a measuring groove 11 and is connected with a storage battery power supply 12 through a lead, so that electric energy supplement is obtained, and the measuring time of the measuring instrument is prolonged; the top cover 31 and the side cover 32 of the mounting platform fix the solar panel on the top cover 31, so that the solar panel can receive sufficient illumination, and the solar panel is connected with the power supply 12 through a wire to continuously supply power to the power supply 12, thereby prolonging the single service life of the solar panel; after the measuring platform is assembled, the power supply 12 is turned on to electrify the electromagnet 4, so that the platform integral platform is fixed on the outer surface of the building to be monitored; and then the power supply 12 of the measuring instrument is switched on, so that the measuring instrument and the solar panel work normally, and monitoring data is exported periodically through the measuring instrument or is read at any time through a remote communication means.
During practical application, a building needing to be monitored is selected firstly, the mounting position of the auxiliary measuring platform is selected, the base 1 and the fixing part 2 of the auxiliary measuring platform are assembled, then the measuring instrument is connected to the storage battery power supply 12 after being fixed through the measuring groove 11, the platform top cover 31 and the side cover 32 are assembled, the power supply 12 is switched on, the platform is fixed to the metal outer wall face through the electromagnetic contact principle of the electromagnet 4, the switch of the measuring instrument is switched on for monitoring, the charging wire of the solar cell panel of the top cover 31 is connected with the storage battery power supply 12, the measuring device is powered on, automatic monitoring is started, monitoring data can be read from the data storage card regularly, the measuring data can be transmitted in real time by utilizing the remote data transmission function of the measuring instrument, and finally plastic cloth is laid on two sides of the platform for rain prevention. The specific monitoring position can be adjusted at any time according to the situation, and the platform electromagnet 4 is only required to be disconnected from the power supply 12 and moved to a target position for installation, so that the use is very convenient.
The above-mentioned embodiments are only for describing the preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and various modifications and improvements made by those skilled in the art without departing from the design spirit of the present invention should fall into the protection scope defined by the claims of the present invention.
Claims (6)
1. A be used for metal casing building to measure auxiliary platform which characterized in that: including base (1), fixed part (2), support portion (3) and electro-magnet (4), be equipped with power (12) and measurement groove (11) on base (1), the one end of base (1) with fixed part (2) are connected, the other end with support portion (3) are connected, support portion (3) with fixed part (2) are connected, support portion (3), base (1) and fixed part (2) connect gradually and form frame column structure, electro-magnet (4) are fixed in on fixed part (2), electro-magnet (4) with power (12) link to each other.
2. A building measuring aid platform for metal shells according to claim 1, wherein: still including strutting (5), the one end of strutting (5) with fixed part (2) are connected, the other end with base (1) are connected, strut (5), fixed part (2) and base (1) and connect and form the triangle-shaped structure.
3. A building measuring aid platform for metal shells according to claim 1, wherein: the electromagnet (4) comprises a magnet protrusion (41) and a supporting plate (42), the magnet protrusion (41) is connected with the supporting plate (42), a through hole matched with the magnet protrusion (41) is formed in the fixing part (2), the supporting plate (42) is arranged on the inner side of the frame-shaped structure, and the magnet protrusion (41) can penetrate through the through hole and extend out of the frame-shaped structure.
4. A building measuring aid platform for metal shells according to claim 1, wherein: and a solar cell panel is arranged on the supporting part (3) and is connected with the power supply (12).
5. A building measuring aid platform for metal enclosures according to any of claims 1-4, wherein: the supporting part (3) comprises a top cover (31) and a side cover (32), one end of the top cover (31) is connected with the fixing part (2), the other end of the top cover is connected with the side cover (32), and the side cover (32) is connected with the base (1).
6. A building measuring aid platform for metal shells according to claim 5, wherein: the fixing plate is characterized by further comprising a fixing plate (6), the fixing plate (6) is L-shaped, the top cover (31) is connected with the fixing part (2) through the fixing plate (6), one side of the fixing plate (6) is attached to the top cover (31) and connected with the top cover (31) through a screw (7), and the other side of the fixing plate (6) is attached to the fixing part (2) and connected with the fixing part (2) through the screw (7); the side cover (32) is connected with the base (1) through the fixing plate (6), one side of the fixing plate (6) is attached to the side cover (32) and connected with the side cover (32) through a screw (7), and the other side of the fixing plate (6) is attached to the base (1) and connected with the base (1) through the screw (7).
Priority Applications (1)
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CN202022830747.3U CN213481346U (en) | 2020-11-30 | 2020-11-30 | Be used for metal casing building to measure auxiliary platform |
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CN202022830747.3U CN213481346U (en) | 2020-11-30 | 2020-11-30 | Be used for metal casing building to measure auxiliary platform |
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CN213481346U true CN213481346U (en) | 2021-06-18 |
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CN202022830747.3U Active CN213481346U (en) | 2020-11-30 | 2020-11-30 | Be used for metal casing building to measure auxiliary platform |
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2020
- 2020-11-30 CN CN202022830747.3U patent/CN213481346U/en active Active
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