Combined marker post for building wall building
By combining a ring rail with a slip ring, along with a limiting mechanism and a rotating wheel, the limitations of existing benchmark devices in angle adjustment are solved, achieving greater flexibility and stability, improving construction efficiency and adaptability, ensuring convenience and suitability for different construction scenarios.
Patent Information
- Application Number
- CN202520436706.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-03-12
AI Technical Summary
Existing bricklaying marker devices require dismantling and reinstallation when adjusting angles, making them inflexible for adjustments in different directions, especially limiting their ability to adjust angles in the front and rear directions.
The design employs a ring rail and slip ring combination, and through the combination of a limiting mechanism and a rotating wheel, the benchmark mechanism can be flexibly adjusted. The support assembly has a rotatable hinged frame to adjust the height, the limiting mechanism achieves angle adjustment through a pull-out plate and a limiting screw, the rotation of the slip ring achieves direction adjustment, and the spirit level assists construction personnel in observing the horizontal level.
It enables flexible combination and installation of benchmark devices and precise adjustment of height and angle, improving the convenience and adaptability of construction and ensuring construction quality and efficiency.
Smart Images

Figure CN223769525U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building construction technology, and specifically relates to a combined marker for building masonry. Background Technology
[0002] In the field of building construction, bricklaying markers, also known as bricklaying gauges, are key tools for ensuring the quality of wall construction. They are mostly made of wood or aluminum alloy and are made into straight bars. The bars are marked with detailed information on the thickness of each course of bricks and the mortar joints. They also clearly indicate the elevation and position of key components such as door and window openings, lintels, and ring beams. During bricklaying, bricklaying gauges are usually set up at important nodes such as wall corners and the junction of interior and exterior walls. Construction workers rely on the markings on the bricklaying gauges to strictly control the horizontality and verticality of each course of bricks, ensuring that the position of each component of the wall is accurate and that the overall quality and dimensional accuracy of the wall meet the design requirements, thus laying a solid foundation for subsequent construction procedures.
[0003] For example, the surveying pole for building construction disclosed in Chinese Patent No. CN214200120U, by setting a support plate at the bottom of the movable plate and equipping it with a second insert, can be inserted into the ground to form a stable triangular support force when dealing with complex terrain on construction sites or building sites. This effectively solves the problem that traditional cylindrical poles require personnel to hold them for a long time, which can easily lead to hand pain and affect the measurement results, thus significantly improving the ease of use.
[0004] However, existing marker devices of this type have obvious shortcomings. Once the post is installed, the device is fixed to the ground. If the ground is tilted and the direction of the marker needs to be adjusted, the device often needs to be disassembled and reinstalled. It can be seen that the angle adjustment of the device is limited to the two sides. When the angle adjustment in the front and back directions is required, the entire device needs to be disassembled and reassembled. It can be seen that its overall use is not flexible and adaptable. Therefore, the existing technology needs to be improved and designed. Utility Model Content
[0005] In view of the problems mentioned in the background art, the purpose of this utility model is to provide a combined marker for building masonry, so as to solve the problem of inconvenient and inflexible adjustment during the use of the prior art.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0007] A modular marker for building bricklaying includes a ring rail, with support components fixedly connected to the bottom of the ring rail in a ring-shaped arrangement at equal intervals. A sliding ring is movably connected inside the ring rail, and a limiting mechanism is fixedly installed on one side of the top of the sliding ring. The sliding ring is engaged with the ring rail through the limiting mechanism, and a marker mechanism is fixedly installed on the inner side of the ring rail.
[0008] The benchmark mechanism includes a horizontal plate, which is fixedly installed on the inner side of the slip ring. A base frame is fixedly installed in the middle of the horizontal plate. A rotating wheel is rotatably connected to the inner side of the base frame. A benchmark assembly is fixedly connected to the top of the rotating wheel. A limit screw is threaded to the upper back of the base frame, and the end of the limit screw passes through the base frame.
[0009] As a preferred technical solution, the back of the rotating wheel is provided with limit holes at equal intervals, and the end of the limit screw is inserted into the limit hole.
[0010] As a preferred technical solution, the limiting mechanism includes a base plate and a locking hole. The locking holes are arranged in a ring at equal intervals on the top of the ring rail. The base plate is fixedly connected to the middle of the rear side inside the slip ring. A frame is fixedly installed on the top of the base plate. A limiting spring is fixedly installed on the top of the frame. A movable block is fixedly installed on the bottom of the limiting spring. A limiting frame is fixedly connected to the back of the movable block. The bottom of the limiting frame is inserted into the inside of the locking hole.
[0011] As a preferred technical solution, a connecting shaft is fixedly connected to the top of the substrate, and a pull-out plate is fixedly connected to the top of the connecting shaft through the frame.
[0012] As a preferred technical solution, the marker assembly includes a square frame, which is fixedly connected to the top center of the rotating wheel. A marker sleeve is inserted inside the square frame, and a marker body is inserted inside the marker sleeve. Scale lines are linearly arranged at equal intervals on the front of the marker body and the front of the marker sleeve. A fixing screw is threaded to the upper end of the back of the marker sleeve, and the end of the fixing screw passes through the marker sleeve. A fixing screw is also threaded to the back of the square frame, and the end of the fixing screw on the square frame passes through the square frame and is threadedly connected to the marker sleeve.
[0013] As a preferred technical solution, a fixing frame is fixedly connected to the top of the marker body, and a spirit level is fixedly connected inside the fixing frame.
[0014] As a preferred technical solution, the support assembly includes a hinge frame, which is fixedly connected to the bottom of the ring rail in a ring-shaped arrangement with equal intervals. A support sleeve is hinged inside the hinge frame, and the maximum rotation angle of the support sleeve is 130 degrees. A support slide rod is slidably connected inside the support sleeve, and an anti-slip cone is fixedly connected to the bottom of the support slide rod. A locking screw is threaded to the lower end of one side of the support sleeve, and the end of the locking screw penetrates through the support sleeve. Locking holes are linearly arranged with equal intervals on one side of the support slide rod, and the end of the locking screw is inserted into the lock holes.
[0015] In summary, the present invention has the following main advantages:
[0016] First, the support components of this device are ingeniously designed. In actual construction, the support sleeve on the hinged frame can be rotated to unfold outwards in a V-shape. By sliding the support rod inside the support sleeve, the combined length of the two can be flexibly adjusted, and the height of the device can be precisely adjusted. After adjustment, the locking screw can be twisted to insert into the lock hole to secure the support sleeve and the rod, meeting the height requirements of different scenarios and ensuring the stability of the device. In addition, the sharp anti-slip cone at the outer end of the support rod can be firmly inserted into the ground, further enhancing the overall stability of the device and providing a reliable foundation for construction.
[0017] Secondly, by setting a limiting mechanism, the rotating wheel inside the base frame can be rotated during the installation and use of the marker assembly, causing the top square frame to tilt. This allows for flexible adjustment of the square frame angle to accommodate marker mechanisms with different angles. After the angle is adjusted, the marker sleeve is inserted into the square frame, and the fixing screw is tightened to secure it. Then, the marker body is inserted, and the screw is tightened again to secure it. This design allows the marker assembly to be flexibly combined and installed. It also allows the position of the marker body inside the sleeve to be adjusted according to construction needs, thus controlling the height of the assembly. The level bubble at the top of the marker body makes it easy for construction personnel to observe the level, facilitating precise construction and improving construction efficiency and quality.
[0018] Third, this device innovatively utilizes a ring rail and slip ring. After installation, if it is necessary to adjust the tilt direction of the marker mechanism, pull the pull plate to move the connecting shaft and movable block upwards, causing the limit frame to disengage from the locking hole and releasing the slip ring limit. At this time, the construction personnel can easily change the tilt direction of the marker mechanism by rotating the slip ring. After adjustment, release the pull plate, the limit spring returns to its original position, the limit frame inserts into the limit hole, and the slip ring is fixed. This design allows for quick adjustment of the marker direction without disassembling the device, greatly improving ease of use and adaptability, and facilitating operation by construction personnel in complex environments. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0020] Figure 2 This is a bottom view structural diagram of this utility model;
[0021] Figure 3 This is a schematic diagram of the disassembled structure of this utility model;
[0022] Figure 4 This is a utility model Figure 3 A magnified structural diagram at point A.
[0023] Reference numerals: 1. Circular rail; 2. Support assembly; 21. Hinge frame; 22. Support sleeve; 23. Support slide bar; 24. Anti-slip cone; 25. Locking screw; 26. Locking hole; 3. Limiting mechanism; 31. Base plate; 32. Locking hole; 33. Frame; 34. Limiting spring; 35. Movable block; 36. Limiting frame; 37. Coupling shaft; 38. Pull-out plate; 4. Slip ring; 5. Marker mechanism; 51. Horizontal plate; 52. Base frame; 53. Rotating wheel; 54. Limiting screw; 55. Limiting hole; 56. Marker assembly; 561. Square frame; 562. Marker sleeve; 563. Marker body; 564. Scale line; 565. Fixing screw; 566. Fixing frame; 567. Spirit bubble. Detailed Implementation
[0024] Example
[0025] refer to Figures 1 to 4 This embodiment of a building wall construction composite marker includes a ring rail 1. The bottom of the ring rail 1 is fixedly connected with a support component 2 arranged in a ring at equal intervals. The inside of the ring rail 1 is movably connected with a sliding ring 4. A limiting mechanism 3 is fixedly installed on one side of the top of the sliding ring 4. The sliding ring 4 is engaged with the ring rail 1 through the limiting mechanism 3. A marker mechanism 5 is fixedly installed on the inner side of the ring rail 1.
[0026] The benchmark mechanism 5 includes a horizontal plate 51, which is fixedly installed inside the slip ring 4. A base frame 52 is fixedly installed in the middle of the horizontal plate 51. A rotating wheel 53 is rotatably connected to the inner side of the base frame 52. A benchmark assembly 56 is fixedly connected to the top of the rotating wheel 53. A limit screw 54 is threadedly connected to the upper back of the base frame 52. The end of the limit screw 54 passes through the base frame 52. When the combined benchmark is used for masonry work, the support assembly 2 provides a support foundation for the device. Its bottom is fixed to the annular rail 1. The support sleeve 22 on the rotating hinge frame 21 is extended outward in a V-shape. The support height can be adjusted by sliding the support slide rod 23. After adjustment, it is fixed with the locking screw 25 to ensure the stability of the device. To adjust the tilt direction of the marker mechanism 5, pull the pull plate 38, which will move the connecting shaft 37 and the movable block 35 upward, causing the limit frame 36 to disengage from the locking hole 32. The slip ring 4 can then rotate within the annular rail 1 to adjust the tilt direction of the marker mechanism 5. After adjustment, release the pull plate 38, the limit spring 34 will reset, the limit frame 36 will be inserted into the limit hole 55, and the slip ring 4 will be fixed. Inside the marker mechanism 5, rotating the rotating wheel 53 in the base frame 52 will tilt the marker assembly 56 connected to the top to adapt to different angle requirements. By adjusting the limit screw 54, the position of the rotating wheel 53 can be restricted to stabilize the angle of the adjusted marker assembly 56, thereby achieving the precise function of the bricklaying marker.
[0027] refer to Figures 1-3The back of the rotating wheel 53 has equally spaced limit holes 55. The end of the limit screw 54 is inserted into the limit hole 55. The limit mechanism 3 includes a base plate 31 and a locking hole 32. The locking holes 32 are arranged in a ring at equal intervals on the top of the ring rail 1. The base plate 31 is fixedly connected to the middle of the rear side of the slip ring 4. A frame 33 is fixedly installed on the top of the base plate 31. A limit spring 34 is fixedly installed on the top of the frame 33. A movable block 35 is fixedly installed on the bottom of the limit spring 34. A limit frame 36 is fixedly connected to the back of the movable block 35. The bottom of the limit frame 36 is inserted into the locking hole 32. A connecting shaft 37 is fixedly connected to the top of the base plate 31. A pull plate 38 is fixedly connected to the top of the connecting shaft 37 through the frame 33. In this combined marker for building masonry, the limit mechanism 3 and the limit setting of the rotating wheel 53 work together. When it is necessary to adjust the tilt angle of the marker mechanism 5, the pull plate 38 is pulled, and the connecting shaft 37 drives the movable block 35 to overcome the limit. The spring 34 moves upward, causing the limiting frame 36 to disengage from the locking hole 32 at the top of the annular rail 1. At this time, the slip ring 4 is released from its limit and can rotate freely within the annular rail 1, driving the connected marker mechanism 5 to adjust its tilt direction. When the angle is adjusted to the correct position, the pull plate 38 is released, the limiting spring 34 returns to its original position, and the movable block 35 and the limiting frame 36 move downward. The limiting frame 36 re-inserts into the corresponding locking hole 32, fixing the slip ring 4 and ensuring the stability of the marker mechanism 5. Within the marker mechanism 5, rotating the rotating wheel 53 inside the base frame 52 can change the tilt angle of the marker assembly 56. The limiting holes 55 evenly spaced on the back of the rotating wheel 53 cooperate with the limiting screw 54 threaded to the upper end of the back of the base frame 52. Rotating the limiting screw 54 so that its end is inserted into different limiting holes 55 can limit the rotation angle of the rotating wheel 53, ensuring that the marker assembly 56 maintains a fixed angle after adjustment, meeting the requirements for precise adjustment and stability of the marker angle during masonry construction.
[0028] refer to Figures 1-3The marker assembly 56 includes a frame 561, which is fixedly connected to the top center of the rotating wheel 53. A marker sleeve 562 is inserted inside the frame 561, and a marker body 563 is inserted inside the marker sleeve 562. Scale lines 564 are linearly arranged at equal intervals on the front of both the marker body 563 and the marker sleeve 562. A fixing screw 565 is threaded to the upper back of the marker sleeve 562, with the end of the fixing screw 565 penetrating through the marker sleeve 562. A fixing screw 565 is also threaded to the back of the frame 561, with the end of the fixing screw 565 on the frame 561 threaded through the frame 561 and the marker sleeve 562. The marker body 56... The top of the support assembly 3 is fixedly connected to a fixing bracket 566, and a spirit level 567 is fixedly connected inside the fixing bracket 566. The support assembly 2 includes a hinge bracket 21, which is fixedly connected to the bottom of the ring rail 1 in a ring-shaped arrangement at equal intervals. A support sleeve 22 is hinged inside the hinge bracket 21. The maximum rotation angle of the support sleeve 22 is 130 degrees. A support slide rod 23 is slidably connected inside the support sleeve 22. An anti-slip cone 24 is fixedly connected to the bottom of the support slide rod 23. A locking screw 25 is threaded to the lower end of one side of the support sleeve 22. The end of the locking screw 25 passes through the support sleeve 22. Locking holes 26 are linearly arranged at equal intervals on one side of the support slide rod 23. The end of rod 25 is inserted into the lock hole 26. In the support assembly 2, the hinge frame 21 is fixed to the bottom of the annular rail 1. The support sleeve 22 can rotate within the hinge frame 21, with a maximum rotation angle of 130 degrees, unfolding into an outward V-shape. By sliding the position of the support slide rod 23 within the support sleeve 22, the support height can be flexibly adjusted to meet the needs of different construction scenarios. After adjustment, the locking screw 25 is turned to pass through the support sleeve 22 and insert into the lock hole 26 on one side of the support slide rod 23, fixing the support slide rod 23. The anti-slip cone 24 is then firmly inserted into the ground to enhance overall stability. Regarding the marker assembly 56, rotating the wheel 53 inside the base frame 52 drives the top square frame 561. The device is tilted to accommodate different construction angle requirements. After inserting the marker sleeve 562 into the square frame 561, the fixing screw 565 on the back of the square frame 561 is twisted to make it threaded through the square frame 561 and connect with the marker sleeve 562 for fixation. Then, the marker body 563 is inserted into the marker sleeve 562 and fixed by the fixing screw 565 on the back of the marker sleeve 562. The scale line 564 on the front of the marker body 563 and the marker sleeve 562 facilitates measurement. The level bubble 567 in the top fixing frame 566 can help construction personnel judge whether the device is level. Through the coordinated work of various components, the accurate function of the masonry marker is achieved, ensuring the accuracy and stability of the masonry construction.
[0029] Operating Principle and Advantages: The carefully designed support component 2 of this device effectively enhances flexibility and stability during use. In practical applications, the support sleeve 22 on the hinge frame 21 can be rotated to unfold into an outward V-shape. By adjusting the sliding of the support slide rod 23 inside the support sleeve 22, the combined length of the support sleeve 22 and support slide rod 23 can be flexibly extended or shortened, thereby precisely controlling the operating height of the device. After the height is adjusted to the desired position, the locking screw 25 is turned to move it towards the locking hole 26 and insert it into it, locking the device. The end of the fixed screw 25 is firmly inserted into the locking hole 26, effectively fixing the adjusted support sleeve 22 and support slide rod 23. This design not only allows the support assembly 2 to flexibly adjust its overall length to meet the diverse needs of device height in different construction scenarios, but also ensures good stability of the device after adjustment. In addition, the anti-slip cone 24 equipped at the outer end of the support slide rod 23, due to its sharp structure, can be smoothly and firmly inserted into the ground, so that the device can be firmly placed on the ground, which greatly enhances the overall stability of the device during use.
[0030] The limiting mechanism 3 equipped in this device plays a crucial role in the installation and use of the marker assembly 56. In actual operation, by adjusting the rotation of the rotating wheel 53 inside the base frame 52, the top square frame 561 can be tilted. Utilizing this characteristic, the tilt angle of the square frame 561 can be flexibly adjusted to accommodate marker mechanisms 5 at different angles. After the angle of the marker mechanism 5 is adjusted, the marker sleeve 562 is inserted into the inside of the square frame 561. Then, the fixing screw 565 on the square frame 561 is turned to securely fix the marker sleeve 562. After completing the above installation steps, the marker body 563 is inserted into the marker sleeve 562, and the marker sleeve 562 is turned again. The fixing screw 565 on 62 ensures stable fixation of the entire marker sleeve 562 and marker body 563. This design allows for flexible combination and installation of the marker assembly 56. Furthermore, the sliding position of the marker body 563 inside the marker sleeve 562 can be adjusted according to specific construction needs, thereby flexibly controlling the height of the marker assembly 56. This significantly improves the adaptability of the device. Notably, a spirit level 567 is installed on the top of the marker body 563 via a fixing bracket 566. During use, construction personnel can visually observe the level of the device using the spirit level 567, facilitating precise construction and effectively improving construction efficiency and quality.
[0031] This device innovatively employs a design that combines a ring rail 1 with a slip ring 4, providing an efficient solution for adjusting the tilt direction of the benchmark mechanism 5. After installation, when adjustment of the tilt direction of the benchmark mechanism 5 is required, first operate the pull plate 38, causing it to move the connecting shaft 37 upwards. The upward movement of the connecting shaft 37 then causes the movable block 35 to move upwards simultaneously. The upward movement of the movable block 35 causes the end of the limiting frame 36 to disengage from the locking hole 32. Once the limiting frame 36 disengages from the locking hole 32, the slip ring 4 inside the ring rail 1 is released from its limiting constraint. At this point, construction personnel can easily adjust the entire benchmark mechanism by adjusting the rotation of the slip ring 4 within the ring rail 1. After adjusting the tilt direction of the structure 5, the pull plate 38 is released, the limit spring 34 is reset, and the movable block 35 moves downward, pushing the limit frame 36 down and inserting it into the limit hole 55. Through the mutual limiting action between the limit frame 36 and the limit hole 55, the slip ring 4 is snapped into place, ensuring that the slip ring 4 maintains good stability in the adjusted position. This design allows the benchmark mechanism 5 to quickly adjust its tilt direction without disassembling the entire device, effectively improving the convenience and adaptability of the device during use, and providing effective convenience for construction personnel in complex construction environments.
Claims
1. A modular sign post for building walls comprising a circular track, characterised in that: The bottom of the annular track is fixedly connected with support assemblies at equal intervals in annular arrangement, the inside of the annular track is movably connected with a sliding ring, the top side of the sliding ring is fixedly installed with a limiting mechanism, the sliding ring is clamped with the annular track through the limiting mechanism, the inside of the annular track is fixedly installed with a marker mechanism; The marker mechanism comprises a horizontal plate, the horizontal plate is fixedly installed on the inside of the sliding ring, the middle of the horizontal plate is fixedly installed with a base, the inside of the base is rotatably connected with a rotating wheel, the top of the rotating wheel is fixedly connected with a marker assembly, the back upper end of the base is threadedly connected with a limiting screw rod, the end of the limiting screw rod penetrates through the base.
2. The modular sign post of claim 1, wherein: The back of the rotating wheel is provided with limiting holes at equal intervals, and the end of the limiting screw rod is inserted into the inside of the limiting hole.
3. The modular sign post of claim 1, wherein: The limiting mechanism comprises a base plate and a clamping hole, the clamping hole is provided at equal intervals in annular arrangement on the top of the annular track, the middle of the back of the sliding ring is fixedly connected with the base plate, the top of the base plate is fixedly installed with a frame, the top of the frame is fixedly installed with a limiting spring, the bottom of the limiting spring is fixedly installed with a movable block, the back of the movable block is fixedly connected with a limiting frame, and the bottom of the limiting frame is inserted into the inside of the clamping hole.
4. The modular sign post of claim 3, wherein: The top of the base plate is fixedly connected with a connecting shaft, and the top of the connecting shaft is fixedly connected with a pull plate penetrating through the frame.
5. The modular sign post of claim 1, wherein: The marker assembly comprises a square box, the square box is fixedly connected to the middle of the top of the rotating wheel, a marker sleeve is inserted into the inside of the square box, a marker body is inserted into the inside of the marker sleeve, scale lines are linearly arranged at equal intervals on the front of the marker body and the front of the marker sleeve, a fixing screw rod is threadedly connected to the upper end of the back of the marker sleeve, the end of the fixing screw rod penetrates through the marker sleeve, and the back of the square box is also threadedly connected with a fixing screw rod, the end of the fixing screw rod on the square box penetrates through the square box and the marker sleeve and is threadedly connected.
6. A modular sign post for building walls according to claim 5, wherein: The top of the marker body is fixedly connected with a fixing frame, and the inside of the fixing frame is fixedly connected with a bubble level.
7. The modular sign post of claim 1, wherein: The support assembly comprises a hinged frame, the hinged frame is fixedly connected to the bottom of the annular track at equal intervals in annular arrangement, the inside of the hinged frame is hingedly connected with a support sleeve, the maximum rotation angle of the support sleeve is 60 degrees, the inside of the support sleeve is slidably connected with a support slide rod, the bottom of the support slide rod is fixedly connected with an anti-skid cone, the lower end of one side of the support sleeve is threadedly connected with a locking screw rod, the end of the locking screw rod penetrates through the support sleeve, and the end of the locking screw rod is inserted into the inside of a lock hole linearly arranged at equal intervals on one side of the support slide rod.
Citation Information
Patent Citations
Mark post for building construction measurement
CN214200120U