CN222560967U - Building engineering elevation chi - Google Patents
Building engineering elevation chi Download PDFInfo
- Publication number
- CN222560967U CN222560967U CN202421110694.XU CN202421110694U CN222560967U CN 222560967 U CN222560967 U CN 222560967U CN 202421110694 U CN202421110694 U CN 202421110694U CN 222560967 U CN222560967 U CN 222560967U
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- sliding
- plate
- fixedly connected
- post body
- connecting rod
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- Conveying And Assembling Of Building Elements In Situ (AREA)
- Length-Measuring Instruments Using Mechanical Means (AREA)
Abstract
The utility model belongs to the technical field of constructional engineering, in particular to a building engineering elevation ruler, which comprises a pole body and a connecting rod, wherein two adjusting rods corresponding to a sliding groove are connected on a fixing ring in a threaded manner, a sliding block is connected on the inner wall of the sliding groove in a sliding manner, a transverse plate is fixedly connected on the fixing ring, a vertical rod is fixedly connected on the top end of the transverse plate, a sliding ring is connected on the vertical rod in a sliding manner, a fixing plate is fixedly connected on the outer wall of the sliding ring, one end of the fixing plate is connected with an abutting plate in a sliding manner, the pole body can rotate on a measuring point through the pole body, the fixing ring which is connected with the outer wall of the pole body in a sliding manner can do circular motion around the pole body and the connecting rod while keeping the vertical rod horizontal with the pole body and the connecting rod under the action of the adjusting rod and the sliding block, the vertical rod can be adjusted to a position which is prevented from being blocked by a steel bar framework, and the elevation number is determined through the sliding ring, the fixing plate and the abutting plate.
Description
Technical Field
The utility model belongs to the technical field of constructional engineering, and particularly relates to a constructional engineering elevation ruler.
Background
The building engineering elevation ruler is a tool for measuring the height of a building or a terrain. In general, the building engineering elevation ruler is mainly used for determining the heights of all parts of a building so as to ensure that the building meets design requirements in the building process;
When carrying out elevation measurement work to building floor pouring board, need to observe the scale of support on the building board face through optical measurement instrument frame flat back, scale through scale on the scale is measured, and current scale is when using, when measuring the position fixed, optical instrument erects the position and receives the reinforcing bar skeleton between and shelter from the back, the scale mark on the scale is difficult to directly observe to fixed measuring point position is difficult to carry out the displacement to the scale, and optical measurement instrument erects the back and be inconvenient for carrying out the position again and move, thereby be unfavorable for the staff to the measurement work of elevation.
Disclosure of utility model
The utility model provides a building engineering elevation ruler, which has the characteristics of solving the problem that the elevation ruler is easily blocked by a reinforcement cage when an elevation is measured on a concrete pouring surface, and is not beneficial to the measurement work of workers on the elevation.
The novel marker post comprises a marker post body and a connecting rod, wherein a fixing ring is connected onto the marker post body in a sliding manner, sliding grooves are formed in the outer walls of the marker post body and the connecting rod, two adjusting rods corresponding to the sliding grooves are connected onto the fixing ring in a threaded manner, a sliding block is connected onto the inner wall of the sliding grooves in a sliding manner, a slot which is connected with one end of the adjusting rod in a sliding manner is formed in one end of the sliding block, a transverse plate is fixedly connected onto the fixing ring, an upright rod is fixedly connected onto the top end of the transverse plate, a sliding ring is connected onto the upright rod in a sliding manner, a fixing plate is fixedly connected onto the outer wall of the sliding ring, and an abutting plate is connected onto one end of the fixing plate in a sliding manner.
The positioning grooves are formed in the marker post body and the connecting rod, the sliding plate is connected to the fixing ring in a sliding mode, the mounting plate is fixedly connected to one end of the sliding plate, and the spring is fixedly connected between the mounting plate and the outer wall of the fixing ring.
The bottom of the marker post body is fixedly connected with a bottom plate, and the bottom of the bottom plate is connected with a supporting seat.
One end of the adjusting rod is magnetically connected with the sliding block, and the sliding plate is matched with the positioning groove.
The rotary groove is formed in the top of the supporting seat, and the rotary rod matched with the rotary groove is fixedly connected to the bottom end of the bottom plate.
The utility model has the beneficial effects that the fixing ring which is connected with the outer wall of the marker post body in a sliding way can keep the pole setting horizontal with the marker post body and the connecting rod under the action of the adjusting rod and the sliding block through the marker post body and can do circular motion around the marker post body and the connecting rod, so that the pole setting can be adjusted to a position which is prevented from being blocked by the reinforcement cage, and then the number of the elevations is determined through the sliding ring, the fixing plate and the butt joint plate, thereby preventing the elevation from being inconvenient to directly measure after the reinforcement cage is blocked during the measurement of the elevation point.
None of the parts of the device are the same as or can be implemented using prior art.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of the movement of the connecting rod and the fixing ring according to the present utility model;
FIG. 3 is a schematic perspective view of the bottom plate and the supporting base of the present utility model;
Fig. 4 is an enlarged schematic view of fig. 1a according to the present utility model.
In the figure, 1, a marker post body, 11, a connecting rod, 12, a sliding groove, 13, a locating groove, 14, a bottom plate, 141, a rotating rod, 15, a supporting seat, 151, a rotating groove, 2, a fixing ring, 21, an adjusting rod, 22, a sliding block, 23, a slot, 24, a transverse plate, 25, a vertical rod, 26, a sliding ring, 27, a fixing plate, 271, an abutting plate, 3, a sliding plate, 31, a mounting plate, 32 and a spring.
Detailed Description
Referring to fig. 1-4, the present utility model provides the following technical scheme, including a post body 1 and a connecting rod 11, wherein a fixing ring 2 is slidingly connected to the post body 1, sliding grooves 12 are formed on the outer walls of the post body 1 and the connecting rod 11, two adjusting rods 21 corresponding to the sliding grooves 12 are screwed on the fixing ring 2, a sliding block 22 is slidingly connected to the inner wall of the sliding grooves 12, a slot 23 is formed at one end of the sliding block 22 and slidingly connected to one end of the adjusting rod 21, a transverse plate 24 is fixedly connected to the fixing ring 2, a vertical rod 25 is fixedly connected to the top end of the transverse plate 24, a sliding ring 26 is slidingly connected to the vertical rod 25, a fixing plate 27 is fixedly connected to the outer wall of the sliding ring 26, and an abutting plate 271 is slidingly connected to one end of the fixing plate 27.
In this embodiment: the marker post body 1 and the connecting rod 11 are used for carrying out elevation measurement in building construction, when in use, the bottom end of the marker post body 1 is supported on the ground, so that the elevation measurement is carried out by measuring the bottom end supporting position of the marker post body 1 and the observed height of optical measuring equipment such as a level meter, when the measuring point position such as the ground needs to be fixed, when the elevation measurement is carried out on a building construction floor plate, the optical measuring instrument erection position is fixed, when the point position of the ground position needs to be measured, the marker post body 1 needs to be vertically placed on the measuring point, the marker post body 1 corresponds to the marker post body 1 through an optical measuring instrument observation mirror, so that the scale mark on the marker post body 1 is observed, meanwhile, the connecting rod 11 in sliding connection with the marker post body 1 can be vertically contracted at the top of the marker post body 1, so that the whole length of the marker post body 1 and the connecting rod 11 can be prolonged, so as to be convenient for the elevation book setting work of different heights, and on the construction surface of the building, because the reinforced bars which are tied and fixed in advance on the concrete slab are set up on the concrete ground when the concrete slab is poured, and the optical measuring instrument is generally erected at the position which cannot be higher than the extending part of the wall column reinforced bar framework, when the elevation measurement is carried out on the fixed point, the straight line spacing between the erection position of the marker post body 1 and the optical measuring instrument is easy to be blocked by the vertical reinforced bars, the optical instrument is erected again, the leveling is needed to be carried out again, the elevation measurement work is needed to be carried out again, thus the elevation measurement work on the floor surface of the building is not facilitated, and if the measuring point is moved so as to facilitate the measuring instrument to observe the scale marks thereof, the position of the displacement position and the elevation point height are not ensured to be the same, thereby be unfavorable for carrying out accurate measurement to the elevation, can be through the spout 12 of being seted up at the outer wall of target body 1 and connecting rod 11 this moment, make spout 12 inner wall sliding connection's slider 22 can be when rotating fixed ring 2 on threaded connection's regulation pole 21, can make regulation pole 21 one end support in slot 23, make slider 22 support at spout 12 inner wall, make it closely laminate, spout 12 through being seted up at the left and right sides of target body 1 receives symmetrical slider 22 support, make fixed ring 2 can slide and make it adjust to suitable height back at target body 1 and connecting rod 11 outer wall, ensure that it is fixed at target body 1 and connecting rod 11 outer wall, make fixed ring 2 on fixed connection's diaphragm 24 can be with target body 1 and connecting rod 11 level, and target body 1 can be in the elevation point on the rotation, make pole 25 make circular motion around the elevation point, make it adjust to the optical instrument can avoid receiving the position that the reinforcement cage blocks, thereby through sliding ring 26 from top to bottom, adjust it to the height that the measuring instrument was reached, and then through outwards pulling the external pair 271 of fixed plate 27 makes it shelter from each other to the height that the measuring instrument, thereby can not guarantee that the elevation is convenient for measuring device is to be measured to the elevation with the corresponding to the connecting rod 1 or the connecting rod 11, thereby high-speed measuring device is convenient for be measured to the elevation.
The positioning grooves 13 are formed in the marker post body 1 and the connecting rod 11, the sliding plates 3 are connected onto the fixed ring 2 in a sliding manner, one end of each sliding plate 3 is fixedly connected with the mounting plate 31, a spring 32 is fixedly connected between the mounting plate 31 and the outer wall of the fixed ring 2, the positioning grooves 13 formed in the marker post body 1 and the connecting rod 11 are used for being in butt joint with the sliding plates 3 which are connected onto the fixed ring 2 in a sliding manner, so that the two sliding plates 3 are clamped and can be supported in the positioning grooves 13 on the front side and the rear side by the sliding blocks 22 through the adjusting rods 21, the deviation of the sliding plates can be avoided, the marker post body 1 and the connecting rod 11 have a certain size difference, the marker post body 1 and the connecting rod 11 are located at the center of the fixed ring 2, and the spring 32 can provide tension for the mounting plate 31, and the sliding plates 3 are supported in the positioning grooves 13.
The bottom of the marker post body 1 is fixedly connected with a bottom plate 14, the bottom of the bottom plate 14 is connected with a supporting seat 15 in a rotating mode, the bottom plate 14 fixedly connected with the bottom end of the marker post body 1 is connected with the supporting seat 15, the supporting seat 15 is used for being supported on a measuring point position, the bottom plate 14 is rotationally connected with the supporting seat 15, the marker post body 1 and the connecting rod 11 can synchronously rotate, and the marker post body 1 and the connecting rod 11 can drive the vertical rod 25 to be adjusted to a position convenient for a measuring instrument to observe.
One end of the adjusting rod 21 is magnetically connected with the sliding block 22, the sliding plate 3 is matched with the positioning groove 13, and one end of the adjusting rod 21 is magnetically connected with the sliding block 22, so that when the sliding block 22 is not supported and limited in the sliding groove 12 by the adjusting rod 21, the sliding block 22 can be effectively prevented from being separated from one end of the adjusting rod 21, and the rotating of the adjusting rod 21 is not influenced to push the sliding block into the sliding groove 12.
The top of the supporting seat 15 is provided with a rotating groove 151, the bottom end of the bottom plate 14 is fixedly connected with a rotating rod 141 matched with the rotating groove 151, and the rotating groove 151 arranged at the top of the supporting seat 15 is used for being spliced with the rotating rod 141 fixedly connected with the bottom end of the bottom plate 14 so that the bottom plate 14 rotates on the supporting seat 15.
When the space between the erection position of the marker post body 1 and the straight line distance between the optical measuring instruments is blocked by the vertical steel bars, the slot 23 formed at one end of the sliding block 22 can be supported by rotating the adjusting rod 21, the sliding block 22 is limited in the sliding groove 12, the fixing ring 2 is slid up and down on the marker post body 1 and the connecting rod 11 under the limit of the sliding groove 12 and the sliding block 22 through sliding, after the fixing ring 2 is regulated to a proper height, the sliding block 22 is supported on the marker post body 1 or the connecting rod 11 through rotating the adjusting rod 21, the marker post body 1 can be rotated on an elevation point, the upright rod 25 moves circumferentially around the elevation point to be regulated to a position where the optical instrument can avoid being blocked by a steel bar framework, the sliding ring 26 is regulated to the height observed by the measuring instruments through sliding up and down, and then the abutting plate 271 outside the fixing plate 27 is pulled outwards, the abutting plate 271 corresponds to the scale mark line on the marker post body 1 or the connecting rod 11, the elevation is measured, the device can be ensured to be rotated on the elevation point, the measurement of the device can be prevented from being blocked by the steel bar framework, and the work can be prevented from being directly and conveniently measured.
Claims (5)
1. The utility model provides a building engineering elevation chi, includes mark post body (1) and connecting rod (11), its characterized in that, fixedly connected with solid fixed ring (2) on mark post body (1), mark post body (1) with spout (12) have all been seted up to connecting rod (11) outer wall, threaded connection has two with spout (12) corresponding regulation pole (21) on solid fixed ring (2), spout (12) inner wall sliding connection has slider (22), slot (23) with regulation pole (21) one end sliding connection have been seted up to slider (22) one end, fixedly connected with diaphragm (24) on solid fixed ring (2), diaphragm (24) top fixedly connected with pole setting (25), fixedly connected with slip ring (26) on pole setting (25), slip ring (26) outer wall fixedly connected with fixed plate (27), fixed plate (27) one end sliding connection has butt plate (271).
2. The building engineering elevation ruler of claim 1 is characterized in that positioning grooves (13) are formed in the marker post body (1) and the connecting rod (11), a sliding plate (3) is connected to the fixed ring (2) in a sliding mode, one end of the sliding plate (3) is fixedly connected with a mounting plate (31), and a spring (32) is fixedly connected between the mounting plate (31) and the outer wall of the fixed ring (2).
3. The building engineering elevation ruler of claim 1, wherein a bottom plate (14) is fixedly connected to the bottom end of the marker post body (1), and a supporting seat (15) is rotatably connected to the bottom of the bottom plate (14).
4. The construction engineering elevation ruler according to claim 2 is characterized in that one end of the adjusting rod (21) is magnetically connected with the sliding block (22), and the sliding plate (3) is matched with the positioning groove (13).
5. The construction engineering elevation ruler of claim 3, wherein a rotary groove (151) is formed in the top of the supporting seat (15), and a rotating rod (141) matched with the rotary groove (151) is fixedly connected to the bottom end of the bottom plate (14).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202421110694.XU CN222560967U (en) | 2024-05-21 | 2024-05-21 | Building engineering elevation chi |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202421110694.XU CN222560967U (en) | 2024-05-21 | 2024-05-21 | Building engineering elevation chi |
Publications (1)
Publication Number | Publication Date |
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CN222560967U true CN222560967U (en) | 2025-03-04 |
Family
ID=94762369
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202421110694.XU Active CN222560967U (en) | 2024-05-21 | 2024-05-21 | Building engineering elevation chi |
Country Status (1)
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CN (1) | CN222560967U (en) |
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2024
- 2024-05-21 CN CN202421110694.XU patent/CN222560967U/en active Active
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