CN217236764U - Measuring device for building convenient to adjust - Google Patents

Measuring device for building convenient to adjust Download PDF

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Publication number
CN217236764U
CN217236764U CN202220079545.6U CN202220079545U CN217236764U CN 217236764 U CN217236764 U CN 217236764U CN 202220079545 U CN202220079545 U CN 202220079545U CN 217236764 U CN217236764 U CN 217236764U
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measuring
wall
room
plate
telescopic rod
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CN202220079545.6U
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Chinese (zh)
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孙浩
郑超
倪冰
聂茂良
毕水明
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Hongsheng Construction Investment Group Co ltd
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Hongsheng Construction Investment Group Co ltd
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Abstract

The utility model discloses a measuring device for building convenient to adjust belongs to architectural survey technical field, including room ground, room wall, measurement board, gyro wheel A, there is room wall room ground both ends, and room ground surface both ends are close to the room wall outside and have placed the measurement board, and the gyro wheel A is installed to the measurement board bottom, and measurement board bottom both ends all are provided with the recess, all install the slide rail through electric telescopic handle B between two measurement boards, and are connected through the pivot between electric telescopic handle B and the slide rail. The utility model discloses a set up wall flatness and detect the structure, through making the cooperation use between damping telescopic link, wall measuring block, the LED lamp area, can detect the flatness of room wall, can more obviously audio-visual observation room wall's uneven department through opening the LED lamp area simultaneously, improved the efficiency and the speed that detect.

Description

Measuring device for building convenient to adjust
Technical Field
The utility model belongs to the technical field of the architectural survey, specifically be a measuring device for building convenient to adjust.
Background
Before the building is put into construction comprehensively, a series of indexes of the building need to be detected, and the construction work of the building can be further carried out after the detection is over, wherein the detection work comprises the measurement work of the flatness of the ground and the wall surface in a room, so that the measuring device for the building, which is convenient to adjust, is needed.
The novel inclination measuring device for the building engineering, disclosed by the patent number CN201920518356.2, comprises a measuring base, wherein a measuring rod rotating groove is formed in the upper surface of the measuring base, the inner side wall of the measuring rod rotating groove is movably connected with a rotating shaft, a measuring film is fixedly connected to one side, close to the measuring rod rotating groove, of the outer surface of the rotating shaft, and the measuring rod is fixedly connected to the upper surface of the measuring film; wherein, the deficiency points are as follows:
research and analysis show that the measuring device can not carry out rapid and visual detection and measurement on the flatness of the ground in a room, so that the detection item of the device is too single, the detection efficiency is low, and the device is not provided with a structure capable of leveling the measuring device on the inclined ground, so that the device can be inclined and efficient measurement can be carried out on the inclined ground, the measurement accuracy is improved, and the device is not provided with a device capable of measuring the inclination of the wall surface.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: in order to solve the problems, a measuring device for buildings is provided, which is convenient to adjust.
The utility model adopts the technical scheme as follows: a measuring device for buildings convenient to adjust comprises a room floor, a room wall surface, a measuring plate and a roller A, the two ends of the room floor are provided with room wall surfaces, the two ends of the room floor surface close to the outer sides of the room wall surfaces are provided with measuring plates, the bottom of the measuring plate is provided with a roller A, both ends of the bottom of the measuring plate are provided with grooves, a sliding rail is arranged between the two measuring plates through an electric telescopic rod B, the electric telescopic rod B is installed through a bolt and is connected with the slide rail through a rotating shaft, the outer side of the slide rail is provided with an electric drive slide block in a matching way, the top of the bottom plate of the measuring plate and the top of the electric drive slide block are both provided with gradienters, the bottom of the measuring plate is provided with a horizontal adjusting structure, the outer side of the measuring plate is provided with a wall surface flatness detecting structure, and a ground flatness detecting structure is arranged below the measuring plate;
the horizontal adjusting structure comprises an electric telescopic rod A and a brake trundle, wherein the brake trundle is installed inside the groove through the electric telescopic rod A, the electric telescopic rod A is connected with the brake trundle through a rotating shaft, and the measuring plate is L-shaped.
The wall flatness detection structure comprises a damping telescopic rod, a wall measuring block and an LED lamp strip, wherein the wall measuring block is installed at one end of the outer side of the measuring plate through the damping telescopic rod, and the LED lamp strip is installed at the outer side of one end of the wall measuring block.
Wherein, the quantity of damping telescopic link, wall measuring block and LED lamp area is a plurality of, and is from top to bottom setting side by side between the plurality of damping telescopic link, and just two millimeters apart between per two adjacent wall measuring blocks.
Wherein, ground flatness detects structure includes siren, spring telescopic link, gyro wheel B, bracing piece, triggers board, mounting bracket, micro-gap switch A, micro-gap switch B, wherein, gyro wheel B is installed through the spring telescopic link in electric drive slider bottom, the bracing piece is installed through the backup pad in the gyro wheel B outside, the bracing piece top is installed and is triggered the board, the mounting bracket is installed to spring telescopic link one end, mounting bracket one end is close to trigger the board top and installs micro-gap switch A, the mounting bracket other end is close to and triggers the board below and installs micro-gap switch B, there is the siren in electric drive slider one end through the support mounting.
The alarms are connected in series with the microswitch A and the microswitch B.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
1. the utility model discloses in, through setting up the level (l) ing structure, through making the cooperation use between electric telescopic handle A, brake truckle and the spirit level, can be to adjusting parallelly between device and the horizontal plane, the convenience is develoied follow-up measurement work.
2. The utility model discloses in, detect the structure through setting up the wall flatness, use through making the cooperation between damping telescopic link, wall measuring block, the LED lamp area, can detect the flatness of room wall, can more obviously audio-visual observation room wall's uneven department through opening the LED lamp area simultaneously, improved the efficiency and the speed that detect.
3. The utility model discloses in, through setting up ground flatness and detecting the structure, through making between siren, spring telescopic link, gyro wheel B, bracing piece, the trigger plate, mounting bracket, micro-gap switch A, the micro-gap switch B cooperation use, can all detect the arch and the sunken of ground, improved efficiency and speed to ground flatness detection.
Drawings
FIG. 1 is a schematic diagram of the front overall structure of the present invention;
FIG. 2 is a schematic diagram of an enlarged structure at A in FIG. 1 according to the present invention;
FIG. 3 is an enlarged schematic diagram of the structure of the utility model at B in FIG. 1;
fig. 4 is the utility model discloses a three-dimensional structure of LED lamp area department schematically shows the sketch.
The labels in the figure are: 1. a room floor; 2. a wall surface of a room; 3. measuring a plate; 301. a roller A; 302. a groove; 3021. an electric telescopic rod A; 3022. braking a caster; 4. an electric telescopic rod B; 401. a slide rail; 402. Electrically driving the slide block; 403. an alarm; 5. damping telescopic rods; 501. a wall surface measuring block; 502. an LED light strip; 6. a spring telescopic rod; 601. a roller B; 7. a support bar; 701. a trigger plate; 8. a mounting frame; 801. A microswitch A; 802. a microswitch B; 9. a level gauge.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model discloses in:
referring to fig. 1-4, a measuring device for building convenient to adjust comprises a room floor 1, room walls 2, measuring plates 3 and rollers a301, wherein the room walls 2 are arranged at two ends of the room floor 1, the measuring plates 3 are arranged at two ends of the surface of the room floor 1 close to the outer sides of the room walls 2, the rollers a301 are arranged at the bottoms of the measuring plates 3, grooves 302 are arranged at two ends of the bottoms of the measuring plates 3, a sliding rail 401 is arranged between the two measuring plates 3 through an electric telescopic rod B4, the electric telescopic rod B4 is arranged through bolts, the electric telescopic rod B4 is connected with the sliding rail 401 through a rotating shaft, an electric driving sliding block 402 is arranged outside the sliding rail 401 in a matching way, a level gauge 9 is arranged at the top of a bottom plate of the measuring plate 3 and the top of the electric driving sliding block 402, a horizontal adjusting structure is arranged at the bottom of the measuring plate 3, and a wall surface flatness detecting structure is arranged outside the measuring plate 3, a ground flatness detection structure is arranged below the measurement plate 3;
the horizontal adjusting structure comprises an electric telescopic rod A3021 and a brake caster 3022, wherein the brake caster 3022 is installed inside the groove 302 through the electric telescopic rod A3021, the electric telescopic rod A3021 is connected with the brake caster 3022 through a rotating shaft, and the measuring plate 3 is L-shaped;
move measuring board 3 to room ground 1 and room wall 2's contained angle department through gyro wheel A301, through opening the spirit level 9 at 3 bottom plate tops of measuring board and control the electric telescopic handle A3021 of 3 bottoms of measuring board and drive the extension of brake truckle 3022, then the bottom plate that will measure board 3 through the pivot is parallel with the horizontal plane adjustment, then move measuring board 3 under the effect of brake truckle 3022, make 3 one end of measuring board touch with room wall 2, after measuring board 3 leveling, rethread is through opening the spirit level 9 at electric drive slider 402 top and control electric telescopic handle B4 extension, under the effect of pivot with leveling between slide rail 401 and the horizontal plane.
Referring to fig. 1 and 2, further, the wall flatness detection structure includes damping telescopic rod 5, wall measurement block 501, LED lamp area 502, wherein, wall measurement block 501 is installed through damping telescopic rod 5 to 3 outside one ends of measurement board, and LED lamp area 502 is installed in the wall measurement block 501 one end outside.
Referring to fig. 1 and 2, further, the number of the damping telescopic rods 5, the number of the wall surface measuring blocks 501 and the number of the LED strips 502 are all a plurality, the damping telescopic rods 5 are arranged side by side up and down, a distance between every two adjacent wall surface measuring blocks 501 is two millimeters, and a width of each LED strip 502 is one millimeter;
remove measuring board 3 through gyro wheel A301 to make wall measuring block 501 and the touching of room wall 2, if the extension appears after single wall measuring block 501 and the touching of room wall 2 or when retracting the condition, represent this local unevenness of room wall 2, and make LED lamp area 502 luminous through opening LED lamp area 502 before detecting, can come the concrete position of more obvious audio-visual judgement room wall 2's unevenness department through the straightness of the straight line lamp area that all LED lamp areas 502 connect into.
Refer to fig. 1, 3, it is further, ground flatness detects structure includes siren 403, spring telescopic link 6, gyro wheel B601, bracing piece 7, trigger plate 701, mounting bracket 8, micro-gap switch a801, micro-gap switch B802, wherein, gyro wheel B601 is installed through spring telescopic link 6 in electric drive slider 402 bottom, bracing piece 7 is installed through the backup pad in the gyro wheel B601 outside, trigger plate 701 is installed at bracing piece 7 top, mounting bracket 8 is installed to 6 one end of spring telescopic link, 8 one end of mounting bracket is close to and triggers that plate 701 top installs micro-gap switch a801, the micro-gap switch B802 is installed near triggering plate 701 below to the 8 other end of mounting bracket, there is siren 403 in electric drive slider 402 one end through the support mounting.
Referring to fig. 1 and 3, further, the alarms 403 are connected in series between the micro switch a801 and the micro switch B802;
drive gyro wheel B601 through the installation of spring telescopic link 6 through controlling electric drive slider 402 and move on room ground 1, during the removal, if through the sunken department on ground, can make spring telescopic link 6 extend, thereby drive the trigger plate 701 downstream of bracing piece 7 through the spring telescopic link 6 of extension, thereby make trigger plate 701 trigger micro-gap switch B802, arouse siren 403 to send out the police dispatch newspaper, when the protruding department through ground, can make spring telescopic link 6 retract, thereby drive the trigger plate 701 rebound of bracing piece 7 through the spring telescopic link 6 of extension, thereby make trigger plate 701 trigger micro-gap switch A801, arouse siren 403 to send out the police dispatch newspaper.
Referring to fig. 1-4, further, the electric telescopic rod a3021, the electric telescopic rod B4, the electric driving slider 402, the LED light strip 502, the micro switch a801 and the micro switch B802 are all electrically connected to an external power source through switches, and the alarm 403 is electrically connected to the micro switch a801 and the micro switch B802.
The working principle is as follows: firstly, a worker moves a measuring plate 3 to the included angle between a room ground 1 and a room wall surface 2 through a roller A301, a level gauge 9 at the top of a bottom plate of the measuring plate 3 is opened, an electric telescopic rod A3021 at the bottom of the measuring plate 3 is controlled to drive a brake caster 3022 to extend, then the bottom plate of the measuring plate 3 is adjusted to be parallel to a horizontal plane through a rotating shaft, then the measuring plate 3 is moved under the action of the brake caster 3022, so that one end of the measuring plate 3 is contacted with the room wall surface 2, after the contact, if the wall surface measuring block 501 is contacted with the room wall surface 2 and then extends or retracts, the room wall surface 2 is not vertical to the horizontal plane, and the LED lamp belts 502 are opened before the detection to enable the LED lamp belts 502 to emit light, the specific position of the uneven part of the room wall surface 2 can be judged more obviously and intuitively by observing the straightness of the linear lamp belts formed by connecting all the LED lamp belts 502, when the flatness of the room ground 1 needs to be measured, firstly, parts at the tops of an electric telescopic rod B4 and an electric telescopic rod B4 are installed on a bottom plate of a measuring plate 3 through bolts, then a level gauge 9 at the top of an electric driving slide block 402 is opened and an electric telescopic rod B4 is controlled to extend, a sliding rail 401 and a horizontal plane are leveled under the action of a rotating shaft, the flatness of the ground can be measured after leveling, at the moment, the electric driving slide block 402 is controlled to drive a roller B601 installed through a spring telescopic rod 6 to move on the floor 1 of a room, when moving, if the electric telescopic rod B4 passes through a concave part of the ground, the spring telescopic rod 6 is extended, so that the extended spring telescopic rod 6 drives a trigger plate 701 of a support rod 7 to move downwards, the trigger plate 701 triggers a micro switch B802, an alarm 403 sends an alarm, when the electric telescopic rod 6 passes through the convex part of the ground, the spring telescopic rod 6 retracts, and the extended spring telescopic rod 6 drives the trigger plate 701 of the support rod 7 to move upwards, thereby causing the trigger plate 701 to trigger the microswitch a801, causing the alarm 403 to give an alarm, thereby detecting whether the floor is flat or not.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (5)

1. A measuring device convenient to adjust for buildings comprises a room ground (1), room walls (2), measuring plates (3) and rollers A (301), wherein the room walls (2) are arranged at two ends of the room ground (1), the measuring plates (3) are placed at two ends of the surface of the room ground (1) close to the outer sides of the room walls (2), the rollers A (301) are installed at the bottoms of the measuring plates (3), the measuring device is characterized in that grooves (302) are formed in two ends of the bottom of each measuring plate (3), a sliding rail (401) is installed between the two measuring plates (3) through an electric telescopic rod B (4), the electric telescopic rods B (4) are installed through bolts, the electric telescopic rods B (4) are connected with the sliding rails (401) through rotating shafts, an electric driving sliding block (402) is arranged on the outer sides of the sliding rails (401), and spirit levels (9) are installed at the tops of bottom plates of the measuring plates (3) and the tops of the electric driving sliding blocks (402), a horizontal adjusting structure is arranged at the bottom of the measuring plate (3), a wall surface flatness detecting structure is arranged on the outer side of the measuring plate (3), and a ground flatness detecting structure is arranged below the measuring plate (3);
the horizontal adjusting structure comprises an electric telescopic rod A (3021) and a brake caster (3022), wherein the brake caster (3022) is installed inside the groove (302) through the electric telescopic rod A (3021), the electric telescopic rod A (3021) and the brake caster (3022) are connected through a rotating shaft, and the measuring plate (3) is L-shaped.
2. An adjustable architectural measuring device, as defined in claim 1, wherein: wall flatness detects structure includes damping telescopic link (5), wall measuring block (501), LED lamp area (502), wherein, wall measuring block (501) are installed through damping telescopic link (5) to measuring board (3) outside one end, LED lamp area (502) are installed in wall measuring block (501) one end outside.
3. An adjustable architectural measuring device as defined in claim 2, wherein: the quantity of damping telescopic link (5), wall measuring block (501) and LED lamp area (502) is a plurality of, and sets up side by side from top to bottom between a plurality of damping telescopic link (5), and every two adjacent wall measuring block (501) apart from two millimeters.
4. An adjustable architectural measuring device as defined in claim 1, wherein: the ground flatness detection structure comprises an alarm (403), a spring telescopic rod (6), a roller B (601), a support rod (7), a trigger plate (701), a mounting rack (8), a microswitch A (801) and a microswitch B (802), wherein the bottom of the electric drive sliding block (402) is provided with a roller B (601) through a spring telescopic rod (6), a support rod (7) is arranged at the outer side of the roller B (601) through a support plate, a trigger plate (701) is installed at the top of the supporting rod (7), an installation frame (8) is installed at one end of the spring telescopic rod (6), a microswitch A (801) is arranged at one end of the mounting rack (8) close to the upper part of the trigger plate (701), a microswitch B (802) is arranged at the other end of the mounting rack (8) close to the lower part of the trigger plate (701), and one end of the electric drive sliding block (402) is provided with an alarm (403) through a bracket.
5. An adjustable architectural measuring device according to claim 4, wherein: the alarms (403) are connected in series with the micro switch A (801) and the micro switch B (802).
CN202220079545.6U 2022-01-12 2022-01-12 Measuring device for building convenient to adjust Active CN217236764U (en)

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Application Number Priority Date Filing Date Title
CN202220079545.6U CN217236764U (en) 2022-01-12 2022-01-12 Measuring device for building convenient to adjust

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Application Number Priority Date Filing Date Title
CN202220079545.6U CN217236764U (en) 2022-01-12 2022-01-12 Measuring device for building convenient to adjust

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117804318A (en) * 2024-01-31 2024-04-02 山东越辉建筑装饰有限公司 Multidirectional measuring device for indoor design decoration

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117804318A (en) * 2024-01-31 2024-04-02 山东越辉建筑装饰有限公司 Multidirectional measuring device for indoor design decoration

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