Surveying and mapping tool box for engineering metering

By setting up a buffer mechanism and foam sliding design in the surveying and mapping tool box, the problem of lack of buffer protection in the prior art is solved, effective protection of precision instruments is achieved, and the accuracy of measurement data and the stability of project progress are improved.

CN120482536APending Publication Date: 2025-08-15陈文理
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Patent Information

Application Number
CN202510776952.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The existing engineering surveying and mapping toolbox lacks effective buffer protection during transportation or use, resulting in loosening of precision instrument components, misalignment or damage to calibration, affecting the accuracy of measurement data and increasing maintenance costs.

Method used

The buffer mechanism is installed in the surveying and mapping box, including hinge blocks, hinge rods, springs and protective plates. Through the cooperation of the hinge rods and springs, external impact forces are absorbed and dispersed, and combined with the sliding design of foam and slide chutes, multi-layer cushioning protection is achieved.

Benefits of technology

It effectively reduces vibration and collision of tools during transportation or drop, reduces the risk of damage to precision instruments, ensures the accuracy of measurement data, reduces maintenance costs, and ensures smooth progress of the project.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a surveying and mapping tool box for engineering surveying and mapping, which relates to the field of engineering surveying and mapping and is characterized in that a surveying and mapping cover is mounted on a surveying and mapping box, foam is slidably mounted in the surveying and mapping box and the surveying and mapping cover respectively, a buffer mechanism is mounted in the surveying and mapping box, and the buffer mechanism comprises a plurality of hinge blocks. And a pair of hinge rods is hinged between the pair of hinge blocks. The device has the advantages that by arranging corresponding mechanisms, external impact force can be effectively absorbed and dispersed, vibration and collision of tools during transportation or falling are greatly reduced, the risks of part loosening, calibration misalignment or damage of precise instruments are remarkably reduced, meanwhile, deformation caused by violent impact can be avoided through the enhanced box body structure, and the service life of the precise instruments is prolonged. Long-term stable storage of surveying and mapping tools is ensured, accuracy of measured data is improved, maintenance cost is reduced, smooth progress of a project is guaranteed, and high practical value and economical efficiency are achieved.
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Description

Technical Field

[0001] The present invention relates to the field of engineering surveying and mapping, and in particular to a surveying and mapping tool box for engineering measurement. Background Art

[0002] The engineering surveying and mapping toolbox is a portable equipment integration designed for field measurement, construction and engineering surveys. It is usually made of high-strength engineering plastics or aluminum alloy, and is waterproof and corrosion-resistant. The box has dedicated slots for storing precision instruments such as total stations, levels, GNSS receivers, and is equipped with fixed buckles for auxiliary tools such as prism poles, centering poles, and measuring rulers. It also integrates small accessory compartments such as bubble levels, laser pens, and data cables. Some high-end models have built-in desiccant tanks and buffer linings to ensure the stability and moisture-proofness of the instrument during transportation, greatly improving field work efficiency and equipment safety. It is suitable for the surveying and mapping needs of multiple engineering scenarios such as civil engineering, water conservancy, and mining.

[0003] Currently, surveying tools are often used when measuring sites in projects. However, the surveying boxes used to hold surveying tools in the existing technology usually do not have an effective cushioning function and only rely on simple cushioning foam for shock absorption and protection. This design has obvious defects. When the tool box accidentally falls during transportation or use, the surveying tools inside will be subjected to a large impact force, which can easily cause the parts of precision instruments to loosen, miscalibrate, or even be directly damaged. In addition, severe vibrations may also cause the box structure to deform, further reducing its protection performance for the tools, thereby affecting the accuracy of measurement data, increasing maintenance costs, and even delaying the progress of the project. Summary of the Invention

[0004] The purpose of the present invention is to provide a surveying and mapping tool box for engineering measurement, which solves the problem in the prior art that when the surveying and mapping box falls, there is no convenient protection and buffering for the surveying and mapping tools.

[0005] In order to achieve the above-mentioned object of the invention, the technical solution adopted by the present invention is:

[0006] A surveying cover is installed on the surveying box, and foam is slidably installed in the surveying box and the surveying cover respectively;

[0007] A buffer mechanism is installed in the surveying box, and the buffer mechanism includes a plurality of hinge blocks, a pair of hinged rods are hingedly installed between a pair of the hinged blocks, a mounting block is hingedly installed between the pair of hinged rods, and a first spring is installed between the pair of mounting blocks;

[0008] The installation of the hinge block facilitates the hinged installation of the hinged rod. Therefore, when the hinged rod is pushed by the foam, the hinged rod receives the thrust and uses the shock absorber and the third spring to achieve buffering. The cooperation of the installation block and the first spring makes it easy to drive the hinged rod to rebound to its original position.

[0009] The surveying and mapping box is equipped with an anti-impact mechanism, which includes a plurality of protective plates, and a plurality of protective pads are installed on the protective plates.

[0010] The installation of the protective plate can protect the surveying box, so that the protective pad can have a certain buffering effect.

[0011] As an improvement, sliders are installed on both sides of the foam, and sliding grooves matching the sliders are respectively opened on the surveying and mapping cover and the surveying and mapping box.

[0012] By installing the slider, the foam can drive the slider to slide on the first slide rod when it is subjected to impact force, so the second spring can play a buffering role.

[0013] As an improvement, a first sliding rod is fixedly installed in the sliding groove in the surveying box, the sliding block is slidably installed on the first sliding rod, and a second spring is provided on the outer sleeve of the first sliding rod.

[0014] The installation of the first slide bar and the second spring facilitates the preliminary buffering of the slide block.

[0015] As an improvement, a shock absorber is installed between the surveying box and the foam, and the shock absorber outer shell is provided with a third spring.

[0016] The installation of the shock absorber and the third spring is conducive to achieving a buffering effect.

[0017] As an improvement, a second sliding rod is installed in the surveying box, a sliding cylinder is installed in the foam, and the second sliding rod is slidably installed in the sliding cylinder.

[0018] The installation of the second sliding rod and the sliding cylinder has an auxiliary effect, thereby ensuring the stability of the foam installation in the surveying box while also having a buffering effect.

[0019] As an improvement, a plurality of third sliding rods are installed on the protective plate, and holes matching the third sliding rods are drilled on the surveying box.

[0020] The installation of the third slide bar and the fourth spring facilitates buffering of the impact force generated by the outside world, thereby avoiding damage to the surveying and mapping box.

[0021] As an improvement, the outer cover of the third slide rod is provided with a fourth spring, and a plurality of fifth springs are installed between the foam and the surveying and mapping cover.

[0022] The beneficial effects of the present invention are: through the setting of corresponding mechanisms, it can effectively absorb and disperse external impact forces, greatly reduce the vibration and collision of tools during transportation or dropping, thereby significantly reducing the risks of loosening, miscalibration or damage of parts of precision instruments. At the same time, the enhanced box structure can avoid deformation caused by severe impact, ensure the long-term and stable storage of surveying and mapping tools, improve the accuracy of measurement data, reduce maintenance costs, and ensure the smooth progress of the project, with high practical value and economy. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 The present invention provides an exploded view of the main section of a surveying and mapping tool box for engineering measurement.

[0024] Figure 2 for Figure 1 Schematic diagram of the structure at point A in the middle.

[0025] Figure 3 The present invention is a three-dimensional diagram of a surveying and mapping tool box for engineering measurement.

[0026] In the figure: 1. Surveying box; 101. Surveying cover; 102. Foam; 2. Buffer mechanism; 201. Hinge block; 202. Hinge rod; 203. Mounting block; 204. First spring; 205. Slider; 206. First slide bar; 207. Second spring; 208. Shock absorber; 209. Third spring; 210. Second slide bar; 211. Slide cylinder; 3. Anti-impact mechanism; 301. Protective plate; 302. Protective pad; 303. Third slide bar; 304. Fourth spring; 305. Fifth spring. DETAILED DESCRIPTION

[0027] To make the contents of the present invention more clearly understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Identical parts are denoted by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, and the terms "inward" and "outward" refer to directions toward or away from the geometric center of a particular component, respectively.

[0028] like Figure 1 and Figure 2 As shown, a surveying cover 101 is installed on the surveying box 1, and foam 102 is slidably installed in the surveying box 1 and the surveying cover 101 respectively;

[0029] A buffer mechanism 2 is installed in the surveying box 1. The buffer mechanism 2 includes a plurality of hinge blocks 201. A pair of hinge rods 202 are hingedly installed between a pair of hinge blocks 201. A mounting block 203 is hingedly installed between the pair of hinge rods 202. A first spring 204 is installed between the pair of mounting blocks 203.

[0030] The installation of the hinge block 201 facilitates the hinged installation of the hinge rod 202. Therefore, when the hinge rod 202 is pushed by the foam 102, the hinge rod 202 receives the thrust and uses the shock absorber 208 and the third spring 209 to achieve buffering. The cooperation of the mounting block 203 and the first spring 204 facilitates the hinge rod 202 to rebound to its original position.

[0031] like Figure 2 and Figure 3 As shown, an anti-impact mechanism 3 is installed on the surveying and mapping box 1. The anti-impact mechanism 3 includes a plurality of protective plates 301. A plurality of protective pads 302 are installed on the protective plates 301.

[0032] The installation of the protective plate 301 has the function of protecting the surveying and mapping box 1, so that the protective pad 302 can have a certain buffering effect.

[0033] Slide blocks 205 are installed on both sides of the foam 102 , and sliding grooves matching the slide blocks 205 are respectively opened on the surveying and mapping cover 101 and the surveying and mapping box 1 .

[0034] By installing the slider 205 , the foam 102 can drive the slider 205 to slide on the first slide bar 206 when subjected to an impact force, so the second spring 207 can play a buffering role.

[0035] In addition, a first slide bar 206 is fixedly installed in the slide groove in the surveying box 1 , the slider 205 is slidably installed on the first slide bar 206 , and a second spring 207 is provided on the outer sleeve of the first slide bar 206 .

[0036] The installation of the first slide bar 206 and the second spring 207 facilitates the preliminary buffering of the slider 205 .

[0037] In addition, a shock absorber 208 is installed between the surveying box 1 and the foam 102 , and a third spring 209 is provided on the outer cover of the shock absorber 208 .

[0038] The installation of the shock absorber 208 and the third spring 209 is conducive to achieving a buffering effect.

[0039] A second slide bar 210 is installed in the surveying box 1 , a slide cylinder 211 is installed in the foam 102 , and the second slide bar 210 is slidably installed in the slide cylinder 211 .

[0040] The installation of the second sliding rod 210 and the sliding cylinder 211 has an auxiliary effect, thereby ensuring the installation stability of the foam 102 in the surveying box 1 while also having a buffering effect.

[0041] In addition, a plurality of third sliding bars 303 are installed on the protective plate 301 , and holes matching the third sliding bars 303 are drilled on the surveying and mapping box 1 .

[0042] The installation of the third slide bar 303 and the fourth spring 304 can buffer the impact force generated by the outside world, thereby avoiding damage to the surveying and mapping box 1.

[0043] In addition, a fourth spring 304 is disposed on the outer cover of the third sliding rod 303 , and a plurality of fifth springs 305 are installed between the foam 102 and the surveying and mapping cover 101 .

[0044] During use, the surveying and mapping tool is placed between a pair of foams 102. If it is subjected to external impact, the protective pad 302 has a protective effect, so that the protective plate 301 will push the third slide bar 303 to achieve a buffering effect through the fourth spring 304. If the entire tool falls, the surveying and mapping tool in the foam 102 will be subjected to impact force, and the slider 205 will slide on the first slide bar 206. At the same time, the foam 102 in the surveying and mapping cover 101 will also slide therein, and the fifth spring 305 is used for buffering. At the same time, the hinged motion shock absorber 208 of the hinged rod 202, the third spring 209 and the second slide bar 210 can reduce the impact force on the surveying and mapping tool by buffering at the same time, thereby effectively protecting the surveying and mapping tool from damage.

[0045] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.

Claims

1. A surveying and mapping toolbox for engineering measurement, characterized in that: include: A surveying and mapping box (1), wherein a surveying and mapping cover (101) is installed on the surveying and mapping box (1), and foam (102) is slidably installed in the surveying and mapping box (1) and the surveying and mapping cover (101); A buffer mechanism (2) is installed in the surveying and mapping box (1), the buffer mechanism (2) comprising a plurality of hinge blocks (201), a pair of hinge rods (202) hingedly installed between a pair of the hinge blocks (201), a mounting block (203) hingedly installed between a pair of the hinge rods (202), and a first spring (204) installed between the pair of mounting blocks (203); An anti-impact mechanism (3) is installed on the surveying and mapping box (1). The anti-impact mechanism (3) includes a plurality of protective plates (301), and a plurality of protective pads (302) are installed on the protective plates (301).

2. The surveying and mapping tool box for engineering measurement according to claim 1, characterized in that: Slide blocks (205) are installed on both sides of the foam (102), and the surveying cover (101) and the surveying box (1) are respectively provided with sliding grooves matching the slide blocks (205).

3. The surveying and mapping tool box for engineering measurement according to claim 2, characterized in that: A first slide bar (206) is fixedly installed in the slide groove in the surveying box (1), the slider (205) is slidably installed on the first slide bar (206), and a second spring (207) is provided on the outer sleeve of the first slide bar (206).

4. The surveying and mapping tool box for engineering measurement according to claim 3, characterized in that: A shock absorber (208) is installed between the surveying box (1) and the foam (102), and a third spring (209) is provided on the outer cover of the shock absorber (208).

5. The surveying and mapping tool box for engineering measurement according to claim 4, characterized in that: A second slide bar (210) is installed in the surveying box (1), a slide cylinder (211) is installed in the foam (102), and the second slide bar (210) is slidably installed in the slide cylinder (211).

6. The surveying and mapping tool box for engineering measurement according to claim 1, characterized in that: A plurality of third sliding bars (303) are mounted on the protective plate (301), and holes matching the third sliding bars (303) are bored on the surveying box (1).

7. The surveying and mapping tool box for engineering measurement according to claim 6, characterized in that: The outer cover of the third slide bar (303) is provided with a fourth spring (304), and a plurality of fifth springs (305) are installed between the foam (102) and the surveying and mapping cover (101).