CN219890430U - Building slope alarm for building monitoring - Google Patents

Building slope alarm for building monitoring Download PDF

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Publication number
CN219890430U
CN219890430U CN202321713536.9U CN202321713536U CN219890430U CN 219890430 U CN219890430 U CN 219890430U CN 202321713536 U CN202321713536 U CN 202321713536U CN 219890430 U CN219890430 U CN 219890430U
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China
Prior art keywords
shell
circular
conductive
plate
balance
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CN202321713536.9U
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Chinese (zh)
Inventor
黄伟得
王玉成
张桓瑞
刘小虎
张元生
刘利
杨岚星
魏奇
高亮
何涛
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Shenzhen Bangdi Engineering Consulting Co ltd
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Shenzhen Bangdi Engineering Consulting Co ltd
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Priority to CN202321713536.9U priority Critical patent/CN219890430U/en
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Abstract

The utility model relates to a building inclination warning device for building monitoring, which comprises a shell, a ball seat, a round balance conducting plate, a spherical connecting piece and a warning device. The ball seat is arranged in the shell, the ball seat is fixedly connected with the bottom surface of the shell, the ball seat is fixedly connected with the ball seat through the spherical connecting piece, the spherical shell is fixedly connected with the spherical shell through the circular balance conductive plate, the spherical shell is arranged at the gravity center position of the circular balance conductive plate, the spherical connecting piece is connected through smooth rotation of the spherical shell, and the circular balance conductive plate can rotate around the spherical connecting piece to any direction. The warning device comprises a power supply, a conductive circular plate, a bell, a switch and a connecting rod piece. The connecting rod piece is connected with the upper surface of the shell, the conductive circular plate is coaxially and oppositely arranged with the round balance conductive plate at intervals through the connecting rod piece, the power supply is arranged outside the shell, and the conductive circular plate is connected with the positive electrode of the power supply through a wire; the conductive balance circular plate is connected with the negative electrode of the power supply through a wire, and the bell is electrically connected to a loop between the positive electrode and the negative electrode of the power supply. The utility model reduces the operations required to monitor ground levelness.

Description

Building slope alarm for building monitoring
Technical Field
The utility model relates to the field of building monitoring equipment, in particular to a building inclination warning device for building monitoring.
Background
In the process of building, in order to avoid the ground to be inclined after construction, whether the ground is horizontal or not needs to be detected, the levelness of the ground is ensured to meet a specified value, and the ground is usually horizontally measured through a horizontal measuring device so as to carry out cement paving on the ground in the concave position.
The ground level measuring device for the existing building construction is placed on the building construction ground, and whether the levelness in the measuring direction meets a specified value or not can be accurately judged. However, since the ground may be inclined in various directions, it is necessary to measure the horizontal values in various directions when judging the levelness of the ground.
The measuring device is adjusted on the same ground for multiple times to measure, so that the operation is complicated, and more manpower is required to be consumed.
Disclosure of Invention
In order to reduce the operation required for monitoring the ground levelness, whether the ground levelness in all directions meets a specified value can be judged through one-time measurement.
The utility model provides a building inclination warning device for building monitoring, which adopts the following technical scheme:
the utility model provides a building slope alarm for building monitoring, includes casing, ball seat, circular balanced current conducting plate, spherical connecting piece and warning device, the ball seat is located in the casing, the one end of ball seat with the casing bottom surface fixed connection, spherical connecting piece fixed connection in the ball seat other end, circular balanced current conducting plate is close to the one end fixedly connected with spherical shell of spherical connecting piece, the spherical shell is located circular balanced current conducting plate's focus position, spherical shell smooth rotation connects spherical connecting piece is in deviating from the one end of ball seat, circular balanced current conducting plate passes through the spherical shell can be around spherical connecting piece rotates to arbitrary direction;
the warning device comprises a power supply, a conductive circular plate, a bell, a switch and a connecting rod piece, wherein one end of the connecting rod piece is connected to the upper surface of the shell, the conductive circular plate is arranged at the other end of the connecting rod piece and is coaxially and oppositely arranged with the circular balance conductive plate at intervals, the power supply is arranged outside the shell, and the conductive circular plate is connected with the positive electrode of the power supply through a wire; the circular balance conductive plate is connected with the negative electrode of the power supply through a wire, the bell is electrically connected to a loop between the positive electrode and the negative electrode of the power supply, the switch is used for controlling the on-off state of the loop where the bell is located, and when the circular balance conductive plate rotates beyond a preset angle, the circular balance conductive plate can touch the edge of the conductive circular plate, so that the conductive circular plate, the circular balance conductive plate, the bell and the power supply form a closed conductive loop through the wire, and the bell gives an alarm.
Through adopting above-mentioned technical scheme, set up the focus of circular balanced current-conducting plate in spherical shell department, through being connected spherical shell and spherical connecting piece, make circular balanced current-conducting plate keep the horizontality, before monitoring ground levelness, open the switch, make the circuit that the bell is located keep breaking off, when monitoring ground levelness, laminate the casing bottom surface subaerial to survey, if the ground slope, the casing inclines along with the ground this moment, the conductive circular plate also inclines along with it, circular balanced current-conducting plate can rotate with getting back to the horizontality around spherical connecting piece through the spherical shell, switch closure this moment, when ground inclination exceeds preset angle, circular balanced current-conducting plate will touch conductive circular plate at the incline direction, at this moment, conductive loop will communicate, the bell circular telegram is thereby sent out the alarm. When the ground levelness is monitored, whether the ground is level can be judged only by one monitoring operation, so that the operation required for monitoring the ground levelness is reduced.
Optionally, the distance between the circular balance conductive plate and the conductive circular plate is adjustable.
By adopting the technical scheme, the preset value of the ground levelness of the alarm sent by the bell can be adjusted.
Optionally, the connecting rod piece includes dead lever, slide bar, lead screw and adjust knob, dead lever one end is fixed the inboard upper surface of casing, the dead lever is kept away from the one end of casing upper surface has been seted up logical groove, slide bar one end sliding connection logical groove, electrically conductive plectane is connected the other end of slide bar, the slide bar is located the one end in logical inslot sets up to the nut shape, the lead screw thread end passes the casing sets up logical inslot, the lead screw with slide bar nut shape end meshing, adjust knob connects the lead screw is located the one end outside the casing, adjust knob laminating the casing.
Through adopting above-mentioned technical scheme, twist adjust knob, drive the lead screw pole and rotate for the slide bar reciprocates in logical inslot, thereby drives electrically conductive plectane and reciprocates, and then realizes adjusting the distance between circular balanced current-conducting plate and the electrically conductive plectane.
Optionally, the side wall of the adjusting knob is provided with an angle indicating rod, and the shell around the adjusting knob is marked with angle scales.
By adopting the technical scheme, the angle scales are marked according to the ground levelness preset angle corresponding to the rotation angle of the adjusting knob, so that the preset angle of the ground levelness is accurately adjusted by adjusting the rotation angle of the adjusting knob.
Optionally, the angle scale both ends all are provided with the stopper, the stopper with casing fixed connection, the angle indication pole set up in between the stopper.
By adopting the technical scheme, the rotating range of the angle indicating rod is limited between the limiting blocks, so that the situation that the preset value of the set ground inclination angle cannot be accurately judged because the angle indicating rod rotates for more than one circle is avoided.
Optionally, the caliber of the opening of the spherical shell is smaller than the diameter of the largest cross-section circle of the spherical connecting piece.
By adopting the technical scheme, the probability that the round balance conductive plate is separated from the spherical connecting piece during rotation is reduced.
Optionally, a weighting ring is arranged on the peripheral wall of the circular balance conductive plate, and the gravity center of the weighting ring is located at the junction of the spherical shell and the circular balance conductive plate.
By adopting the technical scheme, the overall inertia of the circular balance conductive plate is increased by the weighting ring, so that the balance state of the circular balance conductive plate is not easy to change.
Optionally, a plurality of indicator lamps are connected in parallel to two ends of the bell through wires, and the indicator lamps are arranged on each surface of the shell.
Through adopting above-mentioned technical scheme, when the service environment is too noisy, the sound of ringing is unobvious, can judge the levelness on ground through observing the pilot lamp. The indicator lamps are arranged on the surfaces of the shell, so that the conditions of the indicator lamps can be observed from all directions, and the application range of the building inclination warning device for building monitoring is widened.
In summary, the present utility model includes at least one of the following beneficial technical effects:
1. before monitoring ground levelness, the switch is opened to enable a circuit where the bell is located to be kept disconnected, when monitoring the ground levelness, the bottom surface of the shell is attached to the ground to be measured, the shell and the shell are connected with the conductive circular plate to incline along with the ground, the circular balance conductive plate is kept horizontal under the action of gravity, the circular balance conductive plate rotates around the spherical connecting piece through the spherical shell, when the ground inclines in any direction to exceed a preset angle, the circular balance conductive plate can touch the circular conductive plate, the switch is closed at the moment, a circuit loop where the bell is located is connected, and the bell is enabled to give an alarm. The ground level can be judged by only carrying out one-time monitoring operation, so that the operation required for monitoring the ground level is reduced;
2. before the ground levelness is monitored, the preset value of the ground levelness can be adjusted by rotating the threaded knob, so that the application range of the building inclination warning device for building monitoring is enlarged;
3. the caliber of the opening of the spherical shell is smaller than the diameter of the largest cross-section circle of the spherical connecting piece, so that the probability that the circular balance conductive plate falls off from the spherical connecting piece is reduced.
Drawings
Fig. 1 is a schematic view of the external structure of the present utility model.
Fig. 2 is a schematic view of the internal structure of the present utility model.
Fig. 3 is an enlarged schematic view of portion a of fig. 2.
Fig. 4 is a schematic view of an adjustment knob according to the present utility model.
In the figure: 1. a housing; 2. a ball seat; 3. a circular balance conductive plate; 4. a spherical connector; 5. a warning device; 51. a power supply 52, a conductive circular plate; 53. ringing; 54. a switch; 55. a connecting rod piece; 551. a fixed rod; 5511. a through groove; 552. a slide bar; 553. a screw rod; 554. an adjustment knob; 555. an angle indication rod; 556. an angle scale; 557. a limiting block; 6. a spherical shell; 7. a weighted ring; 8. an indicator light.
Detailed Description
The utility model is described in further detail below with reference to fig. 1-4.
The embodiment of the utility model discloses a building inclination warning device for building monitoring. Referring to fig. 1 and 2, a building inclination warning device for building monitoring includes a housing 1, a ball seat 2, a circular balance conductive plate 3, a spherical connector 4, and a warning device 5. The ball seat 2 is located in the shell 1, and one end of the ball seat 2 is fixedly connected with the bottom surface of the shell 1. The spherical connecting piece 4 is fixedly connected to the other end of the ball seat 2, one end, close to the spherical connecting piece 4, of the circular balance conducting plate 3 is fixedly connected with a spherical shell 6, the spherical shell 6 is connected to one end, deviating from the ball seat 2, of the spherical connecting piece 4 in a smooth rotating mode, and the spherical shell 6 is located at the gravity center position of the circular balance conducting plate 3. The caliber of the opening of the spherical shell 6 is smaller than the diameter of the largest cross-section circle of the spherical connecting piece 4, so that the probability that the circular balance conductive plate 3 is separated from the spherical connecting piece 4 when rotating is reduced.
The circular balance conductive plate 3 is provided with the weighting ring 7 on the peripheral wall, the gravity center of the weighting ring 7 is positioned at the junction of the spherical shell 6 and the circular balance conductive plate 3, and the weighting ring 7 increases the integral inertia of the circular balance conductive plate 3, so that the balance state of the circular balance conductive plate 3 is not easy to change. The circular balance conductive plate 3 can rotate around the spherical connecting piece 4 in any direction through the spherical shell 6.
The warning device 5 includes a power source 51, a conductive circular plate 52, a bell 53, a switch 54, and a connection rod 55.
The power supply 51 is disposed outside the casing 1, and the conductive disk 52 is connected to the positive electrode of the power supply 51 via a wire. The circular balance conductive plate 3 is connected with the negative electrode of the power supply 51 through a wire, and the bell 53 is electrically connected to a loop between the positive electrode and the negative electrode of the power supply 51. The switch 54 is used to control the on-off state of the loop in which the bell 53 is located.
One end of the connection rod 55 is connected to the upper surface of the housing 1, and the conductive circular plate 52 is disposed at the other end of the connection rod 55 and is disposed opposite to the circular balance conductive plate 3 at a coaxial interval. The connection rod 55 can adjust the distance between the conductive circular plate 52 and the circular balance conductive plate 3.
The circular balance conductive plate 3 can be touched with the edge of the conductive circular plate 52 when rotated beyond a preset angle, so that the conductive circular plate 52, the circular balance conductive plate 3, the bell 53 and the power supply 51 form a closed conductive loop through wires, and the bell 53 is made to sound an alarm.
The center of gravity of the circular balance conductive plate 3 is arranged at the spherical shell 6, the spherical shell 6 is connected with the spherical connecting piece 4, the circular balance conductive plate 3 is kept in a horizontal state, before the ground levelness is monitored, the distance between the conductive circular plate 52 and the circular balance conductive plate 3 is adjusted, the conductive circular plate 52 is attached to the circular balance conductive plate 3, and a switch 54 is turned on, so that a circuit where the bell 53 is located is kept to be disconnected.
When the ground levelness is monitored, the bottom surface of the shell 1 is attached to the ground to be measured, and if the ground is inclined, the shell 1 is inclined along with the ground, the conductive circular plate 52 is also inclined along with the ground, and the conductive circular plate 52 forces the circular balance conductive plate 3 to incline. Then, the distance between the conductive circular plate 52 and the circular balance conductive plate 3 is adjusted to reach the distance corresponding to the preset angle, at this time, the circular balance conductive plate 3 and the conductive circular plate 52 are separated, the circular balance conductive plate 3 rotates around the spherical connecting piece 4 to the horizontal direction through the spherical shell 6 under the action of gravity, and when the circular balance conductive plate 3 returns to the horizontal position, the included angle between the conductive circular plate 52 and the circular balance conductive plate 3 is the inclination angle of the ground. At this time, when the switch 54 is closed and the ground inclination exceeds the preset angle, the circular balance conductive plate 3 touches the conductive circular plate 52 in the inclination direction, at this time, the conductive loop is connected, and the bell 53 is powered on to give an alarm. When the ground inclination angle does not exceed the preset angle, the bell 53 does not sound an alarm. When the building inclination warning device for building monitoring monitors the ground levelness, the ground can be judged whether to be horizontal or not only by one monitoring operation, and the operation required for monitoring the ground levelness is reduced.
Referring to fig. 3, the connection rod 55 includes a fixed rod 551, a sliding rod 552, a screw 553, and an adjustment knob 554. One end of the fixed rod 551 is fixed on the upper surface of the inner side of the shell 1, one end of the fixed rod 551, which is far away from the upper surface of the shell 1, is provided with a through groove 5511, one end of the sliding rod 552 is connected with the through groove 5511 in a sliding manner, and the through groove 5511 enables the sliding rod 552 to slide up and down in the fixed rod 551. The conductive circular plate 52 is connected to the other end of the sliding rod 552, one end of the sliding rod 552 located in the through groove 5511 is provided in a nut shape, a threaded end of the screw rod 553 is provided in the through groove 5511 through the housing 1, and the screw rod 553 is engaged with the nut-shaped end of the sliding rod 552. The screw rod 553 rotates to move the nut-shaped end of the sliding rod 552 up and down in the fixed rod 551, thereby driving the conductive circular plate 52 to move up and down, and thus adjusting the distance between the conductive circular plate 52 and the circular balance conductive plate 3. An adjusting knob 554 is fixed to one end of the screw rod 553 located outside the shell 1, and the adjusting knob 554 is attached to the shell 1. The adjusting knob 554 is fixedly connected with the screw rod 553, and the screw rod 553 can be rotated by rotating the adjusting knob 554, so that the distance between the conductive circular plate 52 and the circular balance conductive plate 3 is adjusted.
Referring to fig. 4, an angle indicating rod 555 is provided on the side wall of the adjusting knob 554, and an angle scale 556 is provided on the housing 1 around the adjusting knob 554. Both ends of the angle scale 556 are provided with limiting blocks 557, the limiting blocks 557 are fixedly connected with the shell 1, and the angle indicating rod 555 is arranged between the limiting blocks 557.
The angle scale 556 pointed by the angle indicating rod 555 on the adjusting knob 554 corresponds to the angle required by the round balance conductive plate 3 to touch the conductive circular plate 52 one by one. By rotating the adjustment knob 554, a preset value of the ground inclination angle can be set more accurately. The limiting block 557 limits the rotating range of the angle indicating rod 555, and the situation that the preset value of the set ground inclination angle cannot be accurately judged because the angle indicating rod 555 rotates more than one circle is avoided.
Referring to fig. 1, a plurality of indicator lamps 8 are connected in parallel to both ends of the bell 53 through wires, and the indicator lamps 8 are arranged on each surface of the housing 1. When the construction environment on the construction site is too noisy and the sound emitted by the bell 53 is not obvious enough, the indicator lamp 8 can be observed to judge whether the inclination of the ground meets the standard. The application range of the building inclination warning device for building monitoring is enlarged.
The application range of the building inclination warning device for building monitoring provided by the embodiment of the utility model is implemented by the following principles: before the ground levelness is monitored, the conductive circular plate 52 is attached to the circular balance conductive plate 3. The circuit in which the bell 53 is located remains open. When the ground levelness is monitored, the bottom surface of the shell 1 is attached to the ground to be measured, then the adjusting knob 554 is rotated again, the angle scale 556 pointed by the angle indicating rod 555 is observed, and the preset value of the ground inclination angle is set. And then the switch 54 is closed again, if the ground inclination angle is larger than the preset value, the circular balance conductive plate 3 is contacted with the conductive circular plate 52 from the direction that the inclination angle exceeds the preset value of the ground inclination angle, and the circuit loop where the bell 53 and the indicator lamp 8 are positioned is conducted, so that the bell 53 gives an alarm and the indicator lamp 8 is lighted. If the ground inclination angle does not exceed the preset angle, the bell 53 does not sound an alarm, and the indicator lamp 8 is not on. Compared with the prior art, the ground levelness monitoring device can judge whether the ground is level or not only by one monitoring operation when the ground levelness is monitored, and reduces the operations required for monitoring the ground levelness.
The above embodiments are not intended to limit the scope of the present utility model, so: all equivalent changes in structure, shape and principle of the utility model should be covered in the scope of protection of the utility model.

Claims (8)

1. Building slope alarm for building monitoring, its characterized in that: the ball seat (2) is located in the shell (1), one end of the ball seat (2) is fixedly connected with the bottom surface of the shell (1), the ball connecting piece (4) is fixedly connected with the other end of the ball seat (2), the ball shell (6) is fixedly connected with one end of the ball connecting piece (4) close to the round balance conducting plate (3), the ball shell (6) is located at the gravity center position of the round balance conducting plate (3), the ball shell (6) is smoothly connected to one end of the ball connecting piece (4) deviating from the ball seat (2), and the round balance conducting plate (3) can rotate around the ball connecting piece (4) to any direction through the ball shell (6).
The warning device (5) comprises a power supply (51), a conductive circular plate (52), a bell (53), a switch (54) and a connecting rod piece (55), one end of the connecting rod piece (55) is connected to the upper surface of the shell (1), the conductive circular plate (52) is arranged at the other end of the connecting rod piece (55) and is coaxially arranged opposite to the circular balance conductive plate (3) at intervals, the power supply (51) is arranged outside the shell (1), and the conductive circular plate (52) is connected with the positive electrode of the power supply (51) through a wire; the circular balance conductive plate (3) is connected with the negative electrode of the power supply (51) through a wire, the bell (53) is electrically connected to a loop between the positive electrode and the negative electrode of the power supply (51), the switch (54) is used for controlling the on-off state of the loop where the bell (53) is located, when the circular balance conductive plate (3) rotates to exceed a preset angle, the circular balance conductive plate (3) can be contacted with the edge of the conductive circular plate (52), so that the conductive circular plate (52), the circular balance conductive plate (3), the bell (53) and the power supply (51) form a closed conductive loop through the wire, and the bell (53) gives an alarm.
2. A building inclination warning device for building monitoring according to claim 1, characterized in that: the distance between the conductive circular plate (52) and the circular balance conductive plate (3) is adjustable.
3. A building inclination warning device for building monitoring according to claim 2, characterized in that: connecting rod piece (55) are in including dead lever (551), slide bar (552), lead screw (553) and adjust knob (554), dead lever (551) one end is fixed in the inboard upper surface of casing (1), dead lever (551) are kept away from logical groove (5511) have been seted up to the one end of casing (1) upper surface, slide bar (552) one end sliding connection logical groove (5511), electrically conductive plectane (52) are connected the other end of slide bar (552), slide bar (552) are located the one end in logical groove (5511) sets up the nut shape, lead screw (553) threaded end passes casing (1) are in logical inslot (5511), lead screw (553) with slide bar (552) nut shape end meshing, adjust knob (554) are connected lead screw (553) are located the one end outside casing (1), adjust knob (554) laminating casing (1).
4. A building inclination warning device for building monitoring according to claim 3, wherein: the side wall of the adjusting knob (554) is provided with an angle indicating rod (555), and angle scales (556) are marked on the surface of the shell (1) around the adjusting knob (554).
5. The building inclination warning device for building monitoring according to claim 4, wherein: both ends of the angle scale (556) are provided with limiting blocks (557), the limiting blocks (557) are fixedly connected with the shell (1), and the angle indicating rod (555) is arranged between the limiting blocks (557).
6. A building inclination warning device for building monitoring according to claim 1, characterized in that: the caliber of the opening of the spherical shell (6) is smaller than the diameter of the largest cross-section circle of the spherical connecting piece (4).
7. A building inclination warning device for building monitoring according to claim 1, characterized in that: the circular balance conductive plate (3) is characterized in that a weighting ring (7) is arranged on the peripheral wall of the circular balance conductive plate (3), and the gravity center of the weighting ring (7) is located at the junction of the spherical shell (6) and the circular balance conductive plate (3).
8. A building inclination warning device for building monitoring according to claim 1, characterized in that: the two ends of the bell (53) are connected with a plurality of indicator lamps (8) in parallel through wires, and the indicator lamps (8) are arranged on the surfaces of the shell (1).
CN202321713536.9U 2023-06-30 2023-06-30 Building slope alarm for building monitoring Active CN219890430U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321713536.9U CN219890430U (en) 2023-06-30 2023-06-30 Building slope alarm for building monitoring

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321713536.9U CN219890430U (en) 2023-06-30 2023-06-30 Building slope alarm for building monitoring

Publications (1)

Publication Number Publication Date
CN219890430U true CN219890430U (en) 2023-10-24

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ID=88402545

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321713536.9U Active CN219890430U (en) 2023-06-30 2023-06-30 Building slope alarm for building monitoring

Country Status (1)

Country Link
CN (1) CN219890430U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117232442A (en) * 2023-11-10 2023-12-15 济南临港建设集团有限公司 Construction site engineering quality detection device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117232442A (en) * 2023-11-10 2023-12-15 济南临港建设集团有限公司 Construction site engineering quality detection device
CN117232442B (en) * 2023-11-10 2024-01-26 济南临港建设集团有限公司 Construction site engineering quality detection device

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