CN213041247U - Building engineering is with straightness detection device that hangs down that has location structure - Google Patents

Building engineering is with straightness detection device that hangs down that has location structure Download PDF

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Publication number
CN213041247U
CN213041247U CN202022546633.6U CN202022546633U CN213041247U CN 213041247 U CN213041247 U CN 213041247U CN 202022546633 U CN202022546633 U CN 202022546633U CN 213041247 U CN213041247 U CN 213041247U
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China
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rod
gear roller
connecting block
rod body
extension
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CN202022546633.6U
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Chinese (zh)
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陈娜
宋一飞
尚芳
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Hubei Fushite Construction Engineering Quality Testing Co ltd
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Beijing Jianqi Power Technology Engineering Co Ltd
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Abstract

The utility model discloses a building engineering is with straightness detection device that hangs down that has location structure, including the body of rod and connecting block, body of rod outer wall is fixed with the connection mound, and is provided with the gear roller at the inside middle part of the body of rod, the gear roller outer end is connected with first commentaries on classics handle, and is connected with first extension board on the left of the gear roller, first extension board lower extreme is provided with first plush copper. This building engineering is with straightness detection device that hangs down that has location structure is provided with the gag lever post, connect two gag lever posts of rope accessible and carry out spacing processing to it, and elasticity through the spring is fixed with its centre gripping, in order to guarantee to connect the rope and be in the measuring tape axis department and carry out the measurement of hanging down, guaranteed that the awl pulls to connect the rope and be in accurate position and carry out measurement processing, make the angle that the measuring tape that connects the rope can be accurate demonstrate the skew, thereby make things convenient for the operation personnel to observe the judgement, the operation process is simple and convenient high-efficient, can read fast and judge whether the straightness that hangs down meets the requirements.

Description

Building engineering is with straightness detection device that hangs down that has location structure
Technical Field
The utility model relates to a building engineering technical field specifically is a building engineering is with straightness detection device that hangs down that has location structure.
Background
The perpendicularity detection device with the positioning structure for the building engineering is an important work for testing foundations, building materials, construction processes and building structures related to buildings in the whole construction process, and a guiding rule is required to be attached to a wall surface for measurement in the process of detecting the perpendicularity of the wall surface.
At present, when the perpendicularity of the wall surface is detected, the line cone is usually used for manual measurement, the precision of the measurement process is low, and whether the inclination angle of the wall surface meets the requirement or not can not be judged.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a building engineering is with straightness detection device that hangs down that has location structure to provide general novel straightness detection device that hangs down in solving above-mentioned background art, use the line awl to carry out manual measurement usually during its detection, the relatively poor efficiency of its measurement process precision is lower, and can't judge whether the inclination of wall meets the problem of requirement.
In order to achieve the above object, the utility model provides a following technical scheme: a verticality detection device with a positioning structure for construction engineering comprises a rod body and a connecting block, wherein a connecting pier is fixed on the outer wall of the rod body, and the middle part in the rod body is provided with a gear roller, the outer end of the gear roller is connected with a first rotating handle, the left side of the gear roller is connected with a first extending plate, the lower end of the first extension plate is provided with a first raised head, the right side of the gear roller is connected with a second extension plate, and the upper end of the second extending plate is provided with a second raised head, the connecting block is arranged on the right side of the rod body, a rolling wheel is arranged inside the connecting block, the upper end of the rolling wheel is connected with a second rotating handle, the right end of the connecting block is provided with an extending rod, and the outer wall of the extension rod is provided with a chute, a spring is arranged in the chute, the tail end of the spring is connected with a limit rod, the outer wall of the winding wheel is connected with a connecting rope, the tail end of the connecting rope is provided with a hanging cone, and the lower end of the connecting block is fixed with an angle measuring ruler.
Preferably, the first extension plate is in meshed connection with the gear roller, and the first extension plate passes through a movable structure formed between the gear roller and the rod body.
Preferably, the first raised head and the leftmost side of the connecting pier are positioned on the same vertical line, and the connecting piers are symmetrically distributed about the perpendicular bisector of the rod body.
Preferably, the winding wheel forms a rotating structure through the second rotating handle and the connecting block, and a welding integrated structure is formed between the connecting block and the extension rod.
Preferably, the limiting rod forms an elastic structure through the spring and the extension rod, and the extension rod and the rod body are vertically distributed.
Preferably, the vertical central line of extension rod coincides with the vertical central line of protractor, and the lower surface of extension rod closely laminates with the upper surface of protractor.
Compared with the prior art, the beneficial effects of the utility model are that: the novel verticality detection device with the positioning structure for the building engineering is provided with the limiting rods, the connecting rope can be limited by the two limiting rods and is clamped and fixed by the elasticity of the spring, so that the connecting rope is ensured to be positioned at the central axis of the angle protractor for hanging measurement, the hanging cone is ensured to pull the connecting rope to be positioned at an accurate point position for measurement, the connecting rope can accurately display an offset angle through the angle protractor, the observation and judgment of operating personnel are facilitated, the operation process is simple, convenient and efficient, and whether the verticality meets the requirement or not can be quickly read and judged;
the novel verticality detection device with the positioning structure for the building engineering is provided with the winding wheel, the winding wheel is convenient to wind the connecting rope by rotating the second rotating handle, so that the influence on the use effect caused by the disordered distribution of the connecting rope is prevented, the wound hanging cone can be placed in the connecting block for storage, and the device is convenient to carry and store after being integrally reset and is very convenient;
this novel building engineering is with straightness detection device that hangs down that has location structure is provided with the gear roller, the first rotation of handle of gear roller accessible to drive the first extension board and the second extension board that its left and right sides meshing is connected and stretch out from the body of rod is inside, and then effectively prolong the length of the body of rod, the body of rod after the extension can improve the laminating scope with the wall body, thereby makes the detection effect accurate.
Drawings
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is a schematic side view of the present invention;
fig. 3 is an enlarged schematic view of a portion a in fig. 1 according to the present invention.
In the figure: 1. a rod body; 2. connecting piers; 3. a gear roll; 4. a first rotating handle; 5. a first extension plate; 6. A first nose; 7. a second extension plate; 8. a second nose; 9. connecting blocks; 10. a winding wheel; 11. a second rotating handle; 12. an extension rod; 13. a chute; 14. a spring; 15. a limiting rod; 16. connecting ropes; 17. Hanging a cone; 18. an angle measuring ruler.
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.
Referring to fig. 1-3, the present invention provides a technical solution: a verticality detection device with a positioning structure for construction engineering comprises a rod body 1 and a connecting block 9, wherein a connecting pier 2 is fixed on the outer wall of the rod body 1, a gear roller 3 is arranged in the middle of the inside of the rod body 1, the outer end of the gear roller 3 is connected with a first rotating handle 4, the left side of the gear roller 3 is connected with a first extending plate 5, the lower end of the first extending plate 5 is provided with a first raised head 6, the right side of the gear roller 3 is connected with a second extending plate 7, the upper end of the second extending plate 7 is provided with a second raised head 8, the first extending plate 5 is connected with the gear roller 3 in a meshing manner, the first extending plate 5 forms a movable structure with the rod body 1 through the gear roller 3, the first raised head 6 and the leftmost side of the connecting pier 2 are positioned on the same vertical line, the connecting piers 2 are symmetrically distributed relative to the perpendicular bisector of the rod body 1, the rod body 1 can, the gear roller 3 can drive the first extension plate 5 and the second extension plate 7 which are meshed and connected with the left side and the right side of the gear roller 3 to extend out of the rod body 1 through the rotation of the first rotating handle 4, so that the length of the rod body 1 is effectively prolonged, the extended rod body 1 can improve the attaching range with a wall body, and the detection effect is accurate;
the connecting block 9 is arranged on the right side of the rod body 1, a winding wheel 10 is arranged inside the connecting block 9, the upper end of the winding wheel 10 is connected with a second rotating handle 11, the right end of the connecting block 9 is provided with an extension rod 12, the outer wall of the extension rod 12 is provided with a sliding groove 13, a spring 14 is arranged inside the sliding groove 13, the tail end of the spring 14 is connected with a limiting rod 15, the outer wall of the winding wheel 10 is connected with a connecting rope 16, the tail end of the connecting rope 16 is provided with a hanging cone 17, the lower end of the connecting block 9 is fixed with a protractor 18, the winding wheel 10 forms a rotating structure through the second rotating handle 11 and the connecting block 9, a welding integrated structure is formed between the connecting block 9 and the extension rod 12, the limiting rod 15 forms an elastic structure through the spring 14 and the extension rod 12, the extension rod 12 and the rod body 1 are vertically distributed, the vertical central line of the extension rod 12 coincides with the vertical, the winding wheel 10 is convenient to set, the second rotating handle 11 is rotated to wind the connecting rope 16, so that the use effect is prevented from being influenced due to disordered distribution, the wound hanging cone 17 can be placed in the connecting block 9 for storage, the device is convenient to carry and store after being reset integrally, and is very convenient to use, the connecting rope 16 can be limited by the two limiting rods 15 and is clamped and fixed by the elasticity of the spring 14, so that the connecting rope 16 is ensured to be hung and measured at the central axis of the protractor 18, the hanging cone 17 is ensured to pull the connecting rope 16 to be measured at an accurate point position, the connecting rope 16 can accurately display an offset angle through the protractor 18, the observation and judgment of operators are facilitated, the operation process is simple, convenient and efficient, and the verticality can be quickly read to judge whether the verticality meets the requirement or not;
the working principle is as follows: when the verticality detection device with the positioning structure for the building engineering is used, firstly, the rod body 1 can be close to and attached to the surface of a wall body, then the gear roller 3 is driven to rotate through the first rotating handle 4, so that the first extending plate 5 and the second extending plate 7 which are meshed and connected with the left side and the right side of the rod body can extend out of the inner part of the rod body 1, the length of the rod body 1 is effectively prolonged, the extended rod body 1 can be extended to be attached to the wall body in a wider range, the detection effect is accurate, then the second rotating handle 11 is rotated to roll or extend the connecting rope 16, the wound hanging cone 17 can be placed in the connecting block 9 for storage, the device is convenient to carry and store after being integrally reset, the extended connecting rope 16 can be limited through the two limiting rods 15 and clamped and fixed through the elasticity of the spring 14, so that the connecting rope 16 is positioned at the central axis of the vertical measuring square 18 for hanging measurement, the hanging cone 17 is guaranteed to drag the connecting rope 16 to be located at an accurate point position for measurement, and finally the connecting rope 16 can accurately display the offset angle through the angle square 18, so that operators can conveniently observe and judge, the operation process is simple, convenient and efficient, and whether the verticality meets the requirement can be quickly read and judged.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a building engineering is with straightness detection device that hangs down that has location structure, includes body of rod (1) and connecting block (9), its characterized in that: the outer wall of the rod body (1) is fixed with a connecting pier (2), the middle inside the rod body (1) is provided with a gear roller (3), the outer end of the gear roller (3) is connected with a first rotating handle (4), the left side of the gear roller (3) is connected with a first extending plate (5), the lower end of the first extending plate (5) is provided with a first raised head (6), the right side of the gear roller (3) is connected with a second extending plate (7), the upper end of the second extending plate (7) is provided with a second raised head (8), the connecting block (9) is arranged on the right side of the rod body (1), the connecting block (9) is internally provided with a winding wheel (10), the upper end of the winding wheel (10) is connected with a second rotating handle (11), the right end of the connecting block (9) is provided with an extending rod (12), the outer wall of the extending rod (12) is provided with a sliding groove (13), and the tail end of the spring (14) is connected with a limiting rod (15), the outer wall of the winding wheel (10) is connected with a connecting rope (16), the tail end of the connecting rope (16) is provided with a hanging cone (17), and the lower end of the connecting block (9) is fixed with a protractor (18).
2. The perpendicularity detecting device with the positioning structure for construction engineering according to claim 1, wherein: the first extension plate (5) is connected with the gear roller (3) in a meshed mode, and the first extension plate (5) forms a movable structure with the rod body (1) through the gear roller (3).
3. The perpendicularity detecting device with the positioning structure for construction engineering according to claim 1, wherein: the first raised head (6) and the left side of the connecting pier (2) are located on the same vertical line, and the connecting piers (2) are symmetrically distributed about the perpendicular bisector of the rod body (1).
4. The perpendicularity detecting device with the positioning structure for construction engineering according to claim 1, wherein: the winding wheel (10) forms a rotating structure between the second rotating handle (11) and the connecting block (9), and forms a welding integrated structure between the connecting block (9) and the extension rod (12).
5. The perpendicularity detecting device with the positioning structure for construction engineering according to claim 1, wherein: the limiting rod (15) forms an elastic structure with the extension rod (12) through the spring (14), and the extension rod (12) and the rod body (1) are vertically distributed.
6. The perpendicularity detecting device with the positioning structure for construction engineering according to claim 1, wherein: the vertical center line of the extension rod (12) coincides with the vertical center line of the angle measuring ruler (18), and the lower surface of the extension rod (12) is tightly attached to the upper surface of the angle measuring ruler (18).
CN202022546633.6U 2020-11-06 2020-11-06 Building engineering is with straightness detection device that hangs down that has location structure Active CN213041247U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022546633.6U CN213041247U (en) 2020-11-06 2020-11-06 Building engineering is with straightness detection device that hangs down that has location structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022546633.6U CN213041247U (en) 2020-11-06 2020-11-06 Building engineering is with straightness detection device that hangs down that has location structure

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CN213041247U true CN213041247U (en) 2021-04-23

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115143891A (en) * 2022-09-06 2022-10-04 广州立雅展示科技有限公司 High-precision spacing positioning measurer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115143891A (en) * 2022-09-06 2022-10-04 广州立雅展示科技有限公司 High-precision spacing positioning measurer

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Effective date of registration: 20230824

Address after: No. 13-1, Building 13, Huading Industrial Park, Shangkong, East Side of Chuangye Avenue, Gedian Development Zone, Ezhou City, Hubei Province, 436000

Patentee after: Hubei Fushite Construction Engineering Quality Testing Co.,Ltd.

Address before: 101149 room 01-3769, 3rd floor, 99 Shuixian West Road, Tongzhou District, Beijing

Patentee before: Beijing Jianqi Power Technology Engineering Co.,Ltd.

TR01 Transfer of patent right