Magnetic suspension floating self-leveling elevation auxiliary measuring tool
By using the magnetic levitation floating self-leveling elevation auxiliary measurement tool and utilizing magnetic levitation technology and nano-anti-fouling materials, the problem of inaccurate elevation measurement during self-leveling construction is solved, and the flatness of the ground material finish and the improvement of construction quality are achieved.
Patent Information
- Application Number
- CN202422991714.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Self-leveling construction cannot accurately measure elevations. Conventional measuring tools have inaccurate dimensions due to the consistency of the self-leveling and cannot guarantee the smoothness of the material's finish.
The magnetic levitation self-leveling height auxiliary measurement tool is used. Utilizing magnetic levitation technology and nano-anti-fouling materials, frictionless measurement is achieved through the principle of like poles repelling each other. Combined with a one-meter line or the adjacent ground elevation as a reference, the self-leveling height can be accurately obtained.
It achieves high-precision measurement of ground construction, ensures the flatness of material edges, avoids dimensional inaccuracies caused by consistency problems of traditional tools, and improves the quality of ground construction.
Smart Images

Figure CN223449156U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of auxiliary measuring tool design, especially relates to a magnetic suspension float self-leveling elevation auxiliary measuring tool mainly used for the self-leveling construction of floor, carpet, PVC and other material base layers. BACKGROUND
[0002] Whether the self-leveling construction is accurate is a decisive factor for guaranteeing the flatness of floor, carpet, PVC and other ground materials. The control of the self-leveling construction on the construction site is relatively weak. Due to its own characteristics, although it has good fluidity, the consistency is still relatively high, and it cannot completely reach the state of flowing flat like water. After manual dragging and scraping, local higher phenomenon still occurs. Using the conventional traditional measuring tool such as tape measure, due to the consistency problem of the self-leveling itself, a notch is formed between the self-leveling and the tape measure, resulting in inaccurate size and unable to accurately measure the height. Therefore, the utility model designs a tool that can accurately measure the height of the self-leveling to solve the above problems. CONTENT OF THE UTILITY MODEL
[0003] In view of the deficiencies in the prior art, the utility model provides a magnetic suspension float self-leveling elevation auxiliary measuring tool, solves the problem that the self-leveling construction cannot accurately measure the elevation, and through one meter line or adjacent ground elevation as a reference, the flatness of the two material closing can be effectively guaranteed. Through the magnetic suspension technology combined with the nano anti-fouling material, the height of the self-leveling itself is accurately obtained under the action of the buoyancy of the self-leveling, and the problem that the conventional tape measure directly measures the notch between the self-leveling and the tape measure due to the consistency problem of the self-leveling itself, resulting in inaccurate size, is avoided.
[0004] The utility model achieves the above technical purpose through the following technical means.
[0005] A magnetic suspension float self-leveling elevation auxiliary measuring tool, comprising a cap, the cap is connected with a same-grade magnetic force pipe ruler at the bottom, the surface of the same-grade magnetic force pipe ruler is provided with a scale, and the bottom of the same-grade magnetic force pipe ruler is connected with a bottom support; a same-grade magnetic ring is arranged on the periphery of the same-grade magnetic force pipe ruler, a plurality of nano floating buoys are connected to the same-grade magnetic ring through a plurality of carbon fiber connecting rods around the same-grade magnetic ring, and the upper opening height of the same-grade magnetic ring is consistent with that of the nano floating buoys; based on the principle that same poles repel each other, there is no friction force between the same-grade magnetic ring and the same-grade magnetic force pipe ruler.
[0006] Further, the cap and the bottom support are both made of resin material to reduce the influence on the magnetic force.
[0007] Further, the thickness of the bottom support is less than the thickness of the conventional self-leveling to ensure that the bottom support is completely immersed in the self-leveling when the auxiliary measuring tool is used.
[0008] Further, the same-grade magnetic force pipe ruler is a hollow magnet pipe, and the same-grade magnetic ring is made according to the same principle as the same-grade magnetic force pipe ruler.
[0009] The utility model has the following beneficial effects:
[0010] It can be assembled instantly, and the overall structure is compact, light and easy to carry;
[0011] The nanometer characteristics of the float and the clever setting of the scale point height allow it to be used several times without cleaning, reflecting the tool's convenient, fast and accurate use characteristics;
[0012] It solves the existing problems of difficult height control and poor accuracy in self-leveling construction, improves the flatness of the ground, and ensures the flatness of the interface between flooring, carpets, PVC and other ground materials;
[0013] The utility model can greatly improve the flatness of ground construction and avoid the situation where the self-leveling flatness is insufficient and secondary grinding is required; the height can be accurately unified at the joint with other materials, avoiding the situation where the surface material warps higher than the finished surface at the joint, thereby greatly improving the quality of ground construction.
[0014] The utility model solves the problem that the elevation cannot be accurately measured during self-leveling construction. By using a one-meter line or the elevation of the adjacent ground as a reference, the flatness of the joints of the two materials can be effectively guaranteed. By combining magnetic levitation technology with nano-anti-fouling materials, the height of the self-leveling can be accurately obtained under the buoyancy of the self-leveling itself, avoiding the problem of inaccurate dimensions caused by the conventional direct measurement with a tape measure due to the consistency problem of the self-leveling itself, which forms a notch between the tape measure and the surface. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the structure of the magnetic levitation self-leveling elevation auxiliary measurement tool described in the present invention.
[0016] In the picture: 1-resin cap; 2-same-level magnetic ruler; 3-same-level magnetic ring; 4-carbon fiber connecting rod; 5-nano float; 6-resin base. DETAILED DESCRIPTION
[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but the protection scope of the present invention is not limited thereto.
[0018] like Figure 1 As shown, the magnetic levitation float self-leveling elevation auxiliary measurement tool of the present invention includes a resin cap 1, a resin base 6, a same-level magnetic tube ruler 2, a same-level magnetic ring 3, a carbon fiber connecting rod 4, and a nano float 5.
[0019] like Figure 1As shown, the resin cap 1 is connected with the same level magnetic pipe ruler 2 at the bottom, the surface of the same level magnetic pipe ruler 2 is provided with a scale, and the bottom of the same level magnetic pipe ruler 2 is connected with a resin bottom support 6. Because the conventional self-leveling thickness is 3mm-5mm, the thickness of the resin bottom support 6 in the embodiment is preferably 1mm, so that the resin bottom support 6 can be completely immersed in the self-leveling in actual use. The same level magnetic ring 3 is arranged outside the same level magnetic pipe ruler 2, and a plurality of nano floats 5 are connected to the same level magnetic ring 3 through a plurality of carbon fiber connecting rods 4 around the same level magnetic ring 3. The upper opening of the same level magnetic ring 3 is consistent with the upper opening height of the nano float 5, which is a scale for subsequent reading of the scale. Based on the principle of repulsion between the same poles, the same level magnetic ring 3 and the same level magnetic pipe ruler 2 are guaranteed to have no friction force between them, and can quickly respond to the buoyancy of the nano float 5 in actual use.
[0020] As shown in Figure 1 , the resin cap 1 and the resin bottom support 6 are made of resin material, which can reduce the influence on the magnetic force; the design thickness of the resin cap 1 is 5mm, and the length of the combination of the same level magnetic pipe ruler 2 and the resin cap 1 is 100mm.
[0021] As shown in Figure 1 , the same level magnetic pipe ruler 2 adopts a hollow magnetic pipe, which can quickly respond to the buoyancy of the nano float 5; the same level magnetic ring 3 has the same principle as the same level magnetic pipe ruler 2, and is connected with the nano float 5 through the carbon fiber connecting rod 4. The nano float 5 utilizes the lightness of nano material and the anti-fouling ability of the nano coating on its surface, and will not stick to the mud of the self-leveling after use, avoiding the influence of weight on accuracy and facilitating multi-point measurement; in the embodiment, preferably, the thickness of the nano float 5 is 10mm.
[0022] Referring to Figure 1 , the actual use method of the magnetic suspension float self-leveling elevation auxiliary measuring tool is as follows:
[0023] In the space of the intersection of stone and wood floor, after the completion of stone paving, the wood floor area starts to pour self-leveling, and the self-leveling needs to be controlled to be lower than the finished surface of stone by 16mm, so as to ensure that the height of 15mm wood floor + 1mm paving pad is consistent with the finished surface of stone. During the pouring process of self-leveling, in order to ensure the flatness of self-leveling, the magnetic suspension float self-leveling height auxiliary measuring tool is placed in the region, the nano float 5 is lifted to a certain scale position by the buoyancy of self-leveling, the height of the laser line from the stone ground is first output by the infrared line projector, and then the height of the laser line from the upper opening of the nano float 5 + the thickness of the nano float 5 10mm (or the size of the laser line from the upper opening of the resin cap 1 + the scale size + the thickness of the nano float 5 10mm) is measured, so that the height of the self-leveling can be accurately obtained, whether it meets the height difference of 16mm, and the thickness of the self-leveling is adjusted accordingly. Due to the non-stick property of the nano float 5, and the scale reading position is higher than the self-leveling, the nano float 5 will not be contaminated by the mortar, and it does not need to be wiped and cleaned, so it can be transferred to the multiple points of the room for testing, which is convenient, fast and accurate.
[0024] The embodiment is a preferred implementation manner of the utility model, but the utility model is not limited to the above-mentioned implementation manner, any obvious improvement, replacement or modification made by the person skilled in the art without departing from the essential content of the utility model belongs to the protection scope of the utility model.
Claims
1. A magnetic levitation self-leveling elevation auxiliary measurement tool, characterized in that: The invention comprises a cap, the bottom of the cap is connected to a magnetic ruler (2) of the same level, the surface of the magnetic ruler (2) of the same level is provided with a scale, and the bottom of the magnetic ruler (2) of the same level is connected to a bottom support; a magnetic ring (3) of the same level is arranged on the periphery of the magnetic ruler (2) of the same level, and a plurality of nano floats (5) are connected to the four sides of the magnetic ring (3) of the same level through a plurality of carbon fiber connecting rods (4), and the upper opening of the magnetic ring (3) of the same level is kept in the same height as the upper opening of the nano float (5); based on the principle of like poles repelling each other, there is no friction between the magnetic ring (3) and the magnetic ruler (2) of the same level.
2. The magnetic levitation self-leveling elevation auxiliary measurement tool according to claim 1 is characterized in that: The cap and the base are both made of resin material to reduce the influence on the magnetic force.
3. The magnetic levitation self-leveling elevation auxiliary measurement tool according to claim 1 is characterized in that: The thickness of the base is smaller than that of conventional self-leveling materials, so as to ensure that the base is completely immersed in the self-leveling materials when the auxiliary testing tool is in use.
4. The magnetic levitation self-leveling elevation auxiliary measurement tool according to claim 1 is characterized in that: The same-level magnetic tube ruler (2) adopts a hollow magnet tube, and the same-level magnetic ring (3) is manufactured on the same principle as the same-level magnetic tube ruler (2).