Self-luminous marker post for engineering surveying technology
The design of the internal and external benchmark structures and the self-cleaning mechanism solves the problems of non-adjustable length of engineering measurement benchmarks and difficulty in cleaning soil, achieving accurate measurement and convenient carrying in low-light environments.
Patent Information
- Application Number
- CN202422732194.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-11
AI Technical Summary
The length of the existing engineering surveying pole is fixed and cannot be adjusted. It is inconvenient to carry and difficult to clean the mud after use.
It adopts an internal and external benchmark structure, the internal benchmark is telescopic and adjustable, combined with fluorescent scale lines and LED light strips for lighting, and is equipped with a self-cleaning mechanism, including a vertical guide adjustment and fixing mechanism and a cleaning mechanism, which uses magnets and Velcro to achieve automatic wiping.
It achieves accurate measurement in low-light environments, has adjustable length, is easy to carry, and automatically cleans up dirt after use, improving operational efficiency.
Smart Images

Figure CN223400396U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of engineering measurement, in particular to a self-luminous benchmark used in engineering measurement technology. Background Art
[0002] Engineering surveying refers to the various surveying tasks performed during the survey, design, construction, and management stages of engineering construction. These tasks directly serve a series of engineering processes, including surveying, design, construction, installation, completion, monitoring, and operational management of various construction projects. Benchmarks are commonly used tools in engineering surveying. Prior art benchmarks typically lack LED lights and fluorescent paint, making it difficult to perform surveying in poor lighting conditions and resulting in low work efficiency. Furthermore, they lack a shoulder strap and a retractable bottom cone, making them difficult to carry. Therefore, application No. 201621125767.8 discloses a self-luminous benchmark for engineering surveying, comprising a rod body, a housing, a battery, and a bottom cone. A fixing cap and a positioning buckle are mounted on the left end of the rod body, and the rod body is connected to the fixing cap via the positioning buckle. A clip is fixed to the upper end of the rod body, and the housing is connected to the rod body. An LED light and a fluorescent number mark are fixed below the scale mark, with an LED light located to the left of the fluorescent number mark. The battery is electrically connected to a processor. An operating button is embedded on the surface of the housing, and the bottom cone is connected to the housing via a rotator. The self-luminous benchmark used for engineering measurement is equipped with LED lights and fluorescent paint to cooperate with each other. It can also be used for measurement in poor lighting environments. It has high work efficiency and strong practicality. It is equipped with a shoulder strap and a retractable bottom cone. It is convenient to use and easy to carry during actual operation, so that it can better serve the engineering measurement profession and measure more accurate and effective data.
[0003] The self-luminous benchmark for engineering measurement disclosed in the above patent can achieve the effect of self-luminescence by combining LED lights and fluorescent data. It is suitable for environments with poor lighting, and is easy for people to carry through the shoulder strap and the retractable bottom cone; however, the above patent still has the following shortcomings when used: 1. The total length of its rod body is fixed and cannot be telescopically adjusted according to the needs of use. When measuring higher positions, a longer rod body is required. The longer rod body is larger in size when carried, which is still inconvenient; 2. There is a lack of structure for wiping and cleaning the dirt on the rod body after use. After the rod body is inserted into the soil for use, dirt will be attached to it. When carrying it, people need to wipe it separately with an external wipe. When the wipe is forgotten to be brought, it cannot be wiped, which affects the next use; Based on the above situation, the present application proposes a self-luminous benchmark for engineering measurement technology. Utility Model Content
[0004] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a self-luminous benchmark for engineering measurement technology.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] A self-luminous benchmark used in engineering surveying technology includes an inner benchmark, the bottom end of the inner benchmark is set as a conical structure, the inner benchmark is sleeved with an outer benchmark tube, the front sides of the inner benchmark and the outer benchmark are both provided with fluorescent scale lines, the front sides of the inner benchmark and the outer benchmark are both fixedly connected with LED light strips matching the corresponding fluorescent scale lines, the top of the outer benchmark is fixedly connected with a power storage control mechanism electrically connected to the two LED light strips, the power storage control mechanism supplies power to the LED light strips, a vertical guide adjustment fixing mechanism for adjusting the outer benchmark is installed between the right top of the inner benchmark and the right inner wall of the outer benchmark, a first cleaning mechanism for cleaning the outside of the outer benchmark is fixedly connected between the left side of the bottom of the outer benchmark and the left side of the power storage control mechanism, and a second cleaning mechanism sleeved on the inner benchmark for cleaning the outside of the inner benchmark is fixedly installed in the outer benchmark.
[0007] Preferably, the power storage control mechanism includes a battery fixedly mounted on the top of the external standard tube, and two control switches are fixed and electrically connected to the top of the battery. The two control switches are electrically connected to the corresponding LED light strips respectively, and the two LED light strips are electrically connected to the battery. The control switch can control the corresponding LED light strip to turn on, and the battery can power the two LED light strips.
[0008] Preferably, the vertical guide adjustment fixing mechanism includes a moving block fixedly connected to the top right side of the inner mark rod, a mounting hole is opened on the right inner wall of the outer mark tube, a guide rod is fixedly connected between the top inner wall and the bottom inner wall of the mounting hole, the right side of the moving block passes through the mounting hole and extends to the right side of the outer mark tube, the moving block is slidably sleeved on the guide rod, the moving block and the guide rod cooperate to play a vertical guiding effect on the inner mark rod, and the inner mark rod can be driven to move vertically by pushing the moving block, the right side of the guide rod is embedded and fixed with a hard rubber, and the right top of the hard rubber is in close contact with a T-shaped compression bolt, the moving block is threadedly sleeved on the T-shaped compression bolt, and the inner mark rod can be fixed under the action of the friction between the T-shaped compression bolt and the hard rubber.
[0009] Preferably, the first cleaning mechanism includes two magnet blocks, which are respectively fixed to the left bottom of the battery and the left bottom of the outer standard tube, and a positioning rod is fixedly connected between the sides of the two magnet blocks close to each other, and a semi-arc iron plate is sleeved on the outer standard tube, and the semi-arc iron plate is slidably sleeved on the positioning rod, and the positioning rod has a vertical guiding effect on the semi-arc iron plate, and the top of the semi-arc iron plate is adsorbed on the bottom of the upper magnet block, and an elastic wiping cotton is bonded and fixed to the inner side of the semi-arc iron plate, and the elastic wiping cotton is in active contact with the outer side of the outer side of the outer standard tube and the outer side of the corresponding LED light bar, and the elastic wiping cotton is used to wipe and clean the dirt on the outer side of the outer standard tube and the outer side of the corresponding LED light bar, and at the same time, the elastic wiping cotton itself is used to make the elastic wiping cotton effectively fit the outer side of the outer standard tube and the outer side of the LED light bar, and a pull ring is fixedly connected to the left side of the semi-arc iron plate.
[0010] Preferably, the second cleaning mechanism includes a support ring fixedly mounted in the outer mark tube, an elastic wiping sleeve is bonded and fixed to the inner side of the support ring, the inner side of the elastic wiping sleeve is set as a conical structure, the elastic wiping sleeve is mounted on the lower outer side of the inner mark rod, and the elastic wiping sleeve is used to wipe and clean the dirt on the outer side of the inner mark rod and the outer side of the LED light strip thereon, and the elastic wiping sleeve uses its own elastic force to make the inner side of the elastic wiping sleeve and the outer side of the inner mark rod and the outer side of the LED light strip effectively fit together.
[0011] Preferably, a first male Velcro is bonded and fixed to the inner side of the semi-arc iron plate, and a first female Velcro is bonded and fixed to the outer side of the elastic wiping cotton. The first male Velcro and the first female Velcro are adhered to each other, and the elastic wiping cotton is fixed by the first female Velcro and the first male Velcro, which makes it convenient to remove it for cleaning or replacement later.
[0012] Preferably, a second male Velcro is bonded and fixed to the inner side of the support ring, and a second female Velcro is bonded and fixed to the outer side of the elastic wiping sleeve. The second male Velcro and the second female Velcro are adhered to each other, and the elastic wiping sleeve is fixed by the second male Velcro and the second female Velcro, which makes it convenient to remove it for cleaning or replacement later.
[0013] Preferably, two connecting rings are fixedly connected to the right side of the external standard tube, and the same shoulder strap is fastened to the two connecting rings, so that the entire device can be carried by the shoulder strap. Both connecting rings are located at the rear side of the mounting hole.
[0014] Compared with the existing technology, the beneficial effects of the utility model are:
[0015] 1. Through the coordination of the external standard tube, internal standard rod, fluorescent scale, LED light bar and power storage control mechanism, the LED light bar illuminates the corresponding fluorescent scale, making the fluorescent scale glow. The glowing fluorescent scale cooperates with the illumination of the LED light bar, so that the entire device can perform measurement work in a poor light environment;
[0016] 2. The vertical guide adjustment fixing mechanism and the external standard tube cooperate to adjust the measurable length of the entire device according to the needs of use, and the total volume of the entire device can be reduced after use. At the same time, the setting of the shoulder strap makes it easy to carry the entire device. In addition, the tapered structure on the inner standard rod is directly protected by the external standard tube, and there is no need to store the tapered structure separately, which is convenient for personnel to operate.
[0017] 3. The first cleaning mechanism and the second cleaning mechanism cooperate to wipe and clean the dirt on the outer standard tube, inner standard rod and the outside of the LED lamp after use. This self-contained wiping structure does not require the use of a portable wiping cloth for wiping, and is convenient for personnel to operate;
[0018] Through the arrangement of a series of structures, the utility model can make the entire device suitable for measurement environments with poor lighting by means of self-luminescence, can adjust the measurable length of the entire device according to measurement needs, and can reduce the total volume of the entire device after use, making it convenient to carry. In addition, after use, the dirt on the outer standard tube, inner standard rod and the outer side of the LED lamp can be directly wiped and cleaned through the built-in wiping structure, without the need to carry a wiping cloth separately, which is convenient for personnel to operate. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the structure of a self-luminous benchmark used in engineering measurement technology proposed by the utility model;
[0020] Figure 2 for Figure 1 Schematic diagram of the right view structure;
[0021] Figure 3 This is a schematic diagram of the main cross-sectional structure of a self-luminous benchmark used in engineering measurement technology proposed by the present invention;
[0022] Figure 4 for Figure 3 A schematic diagram of the enlarged cross-sectional structure of part A;
[0023] Figure 5 This is a structural schematic diagram of a self-luminous benchmark used in engineering measurement technology proposed by the present invention in a state where the inner benchmark is removed.
[0024] In the figure: 1. Inner mark rod; 101. Fluorescent scale line; 102. LED light bar; 2. Outer mark tube; 3. Battery; 4. Control switch; 5. Vertical guide adjustment and fixing mechanism; 501. Mounting hole; 502. Moving block; 503. Guide rod; 504. Hard rubber; 505. T-shaped pressing bolt; 6. First cleaning mechanism; 601. Semi-arc iron plate; 602. Magnet block; 603. Positioning rod; 604. Elastic wiping cotton; 605. First female Velcro; 7. Second cleaning mechanism; 701. Support ring; 702. Elastic wiping sleeve. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0026] like Figure 1 As shown:
[0027] A self-luminous benchmark used in engineering measurement technology comprises an inner benchmark 1, wherein the bottom end of the inner benchmark 1 is set as a cone structure.
[0028] In this embodiment: In order to solve the technical problems existing in this prior art, as disclosed in the background technology above, "a self-luminous benchmark for engineering measurement disclosed in application number 201621125767.8 still has the following deficiencies when used: 1. The total length of its rod body is fixed and cannot be telescopically adjusted according to the needs of use. When measuring a higher position, a longer rod body is required. The longer rod body is larger in size when carried and is still relatively inconvenient; 2. There is a lack of structure for wiping and cleaning the dirt on the rod body after use. After the rod body is inserted into the soil for use, dirt will be attached to it. When carrying it, personnel need to wipe it separately with the help of an external wipe. When the wipe is forgotten to be brought, it cannot be wiped, which affects the next use". In terms of combined use, this problem is obviously a real problem that exists and is relatively difficult to solve.
[0029] More specifically:
[0030] Reference Figure 1-5, an outer standard tube 2 is sleeved on the inner standard rod 1, and the front sides of the inner standard rod 1 and the outer standard tube 2 are both provided with fluorescent scale lines 101, and the front sides of the inner standard rod 1 and the outer standard tube 2 are both fixedly connected with LED light strips 102 that match the corresponding fluorescent scale lines 101, and the top of the outer standard tube 2 is fixedly connected with a power storage control mechanism electrically connected to the two LED light strips 102, and the power storage control mechanism includes a battery 3 fixedly mounted on the top of the outer standard tube 2, and the top of the battery 3 is fixed and electrically connected to two control switches 4, and the two control switches 4 are respectively electrically connected to the corresponding LED light strips 102, and the two LED light strips 102 are both electrically connected to the battery 3, and the control switch 4 can control the corresponding LED light strip 102 to turn on, and the battery 3 can power the two LED light strips 102;
[0031] A vertical guide adjustment fixing mechanism 5 for adjusting the outer standard tube 2 is installed between the right top of the inner standard rod 1 and the right inner wall of the outer standard tube 2. The vertical guide adjustment fixing mechanism 5 includes a moving block 502 fixedly connected to the right top of the inner standard rod 1, a mounting hole 501 is provided on the right inner wall of the outer standard tube 2, a guide rod 503 is fixedly connected between the top inner wall and the bottom inner wall of the mounting hole 501, the right side of the moving block 502 passes through the mounting hole 501 and extends to the right side of the outer standard tube 2, the moving block 502 is slidably sleeved on the guide rod 503, wherein the top of the moving block 502 is provided with a guide hole that slides with the outer side of the guide rod 503, and the moving block 502 Cooperating with the guide rod 503, it plays a vertical guiding role for the inner mark rod 1, and the inner mark rod 1 can be driven to move vertically by pushing the moving block 502. A hard rubber 504 is embedded and fixed on the right side of the guide rod 503. The top right side of the hard rubber 504 is in close contact with a T-shaped pressure fixing bolt 505. The moving block 502 is threadedly sleeved on the T-shaped pressure fixing bolt 505. A bolt hole threadedly connected to the T-shaped pressure fixing bolt 505 is opened on the right inner wall of the guide hole. The T-shaped pressure fixing bolt 505 rotates in the bolt hole and moves laterally at the same time. Under the action of the friction between the T-shaped pressure fixing bolt 505 and the hard rubber 504, the inner mark rod 1 can be fixed;
[0032] A first cleaning mechanism 6 for cleaning the outside of the outer standard tube 2 is fixedly connected between the left side of the bottom of the outer standard tube 2 and the left side of the battery 3. The first cleaning mechanism 6 includes two magnet blocks 602, which are respectively fixed to the left bottom of the left side of the battery 3 and the left side of the bottom of the outer standard tube 2. A positioning rod 603 is fixedly connected between the sides of the two magnet blocks 602 close to each other. A semi-arc iron plate 601 is sleeved on the outer standard tube 2, and the semi-arc iron plate 601 is slidably sleeved on the positioning rod 603, wherein a positioning hole is provided on the left side of the top of the semi-arc iron plate 601 for sliding sleeve with the outer side of the positioning rod 603, and the positioning rod 603 plays a vertical guiding effect on the semi-arc iron plate 601. The top of the semi-arc iron plate 601 is adsorbed with the bottom of the upper magnet block 602, and the semi-arc iron plate 601 is fixed by the adsorption force. An elastic wiping cotton 604 is bonded and fixed to the inside, wherein a first male Velcro is bonded and fixed to the inside of the semi-arc iron plate 601, and a first female Velcro 605 is bonded and fixed to the outside of the elastic wiping cotton 604. The first male Velcro is adhered to the first female Velcro 605, and the elastic wiping cotton 604 is fixed by the first female Velcro 605 and the first male Velcro, which is convenient for subsequent removal for cleaning or replacement. The elastic wiping cotton 604 is in active contact with the outside of the outer standard tube 2 and the outside of the corresponding LED light bar 102. The elastic wiping cotton 604 is used to wipe and clean the dirt on the outside of the outer standard tube 2 and the outside of the corresponding LED light bar 102. At the same time, the elastic force of the elastic wiping cotton 604 itself is utilized to effectively fit the elastic wiping cotton 604 to the outside of the outer standard tube 2 and the outside of the LED light bar 102. A pull ring is fixedly connected to the left side of the semi-arc iron plate 601;
[0033] The outer standard tube 2 is fixedly installed with a second cleaning mechanism 7 which is sleeved on the inner standard rod 1 and is used to clean the outer side of the inner standard rod 1. The second cleaning mechanism 7 includes a support ring 701 which is fixedly sleeved in the outer standard tube 2. The inner side of the support ring 701 is bonded and fixed with an elastic wiping sleeve 702. The inner side of the support ring 701 is bonded and fixed with a second male Velcro, and the outer side of the elastic wiping sleeve 702 is bonded and fixed with a second female Velcro. The second male Velcro is adhered to the second female Velcro, and the elastic wiping sleeve 702 is bonded and fixed with a second male Velcro. The way the Velcro is fixed with the second female Velcro makes it easy to remove it for cleaning or replacement. The inner side of the elastic wiping sleeve 702 is set as a conical structure. The elastic wiping sleeve 702 is sleeved on the lower part of the outer side of the inner mark rod 1. The elastic wiping sleeve 702 is used to wipe and clean the dirt on the outer side of the inner mark rod 1 and the outer side of the LED light bar 102 thereon, and the elastic force of the elastic wiping sleeve 702 itself is used to effectively fit the inner side of the elastic wiping sleeve 702 and the outer side of the inner mark rod 1 and the outer side of the LED light bar 102.
[0034] Two connecting rings are fixedly connected to the right side of the outer standard tube 2, and the same shoulder strap is fastened to the two connecting rings, and the entire device can be carried by the shoulder strap, and the two connecting rings are both located on the rear side of the mounting hole 501; the utility model, through a series of structural settings, can make the entire device suitable for measurement environments with poor lighting by self-luminescence, can adjust the measurable length of the entire device according to measurement needs, and reduce the total volume of the entire device after use, making it easy to carry. In addition, after use, the dirt on the outside of the outer standard tube 2, the inner standard rod 1 and the LED lamp 102 can be directly wiped and cleaned through the built-in wiping structure, without the need to carry a wiping cloth separately, which is convenient for personnel to operate.
[0035] Working principle: At this time, the inner standard rod 1 is located in the outer standard tube 2, the total volume is small, and the outer standard tube 2 can directly block the tapered structure of the inner standard rod 1, so that the entire device can be directly carried by the strap;
[0036] When measuring, if the entire measurable length needs to be adjusted, first rotate the T-shaped compression bolt 505 in the opposite direction. While the T-shaped compression bolt 505 rotates, it separates from the hard rubber 504 to the right, releasing the fixation of the inner standard rod 1. At this time, you can directly push the moving block 502 downward. The moving block 502 slides downward on the guide rod 503, and the moving block 502 drives the inner standard rod 1 downward and out of the outer standard tube 2. As the inner standard rod 1 moves out, its measurable length increases. When the required measuring length is adjusted according to measurement needs, stop moving the moving block 502 and rotate the T-shaped compression bolt 505 forward. While the T-shaped compression bolt 505 rotates, it separates from the hard rubber 504 to the left, releasing the fixation of the inner standard rod 1. 04 is in close contact with the right side, and the inner mark rod 1 can be fixed under the friction between the T-shaped compression bolt 505 and the hard rubber 504. At this time, the conical structure of the inner mark rod 1 can be directly inserted into the soil for fixation, and the measurement work can be carried out. During measurement, the two LED light bars 102 are powered by the battery 3, and the two LED light bars 102 can be turned on by two control switches 4. The LED light bars 102 illuminate the corresponding fluorescent scale lines 101. Under the illumination of the light, the fluorescent scale lines 101 glow. The illuminated fluorescent scale lines 101 cooperate with the illumination of the LED light bars 102, which is convenient for measurement work in a poor light environment.
[0037] After the measurement, it is necessary to wipe and clean the dirt on the outside of the outer standard tube 2 and the outside of the inner standard rod 1. When wiping and cleaning the dirt on the outside of the outer standard tube 2, the semi-arc iron plate 601 can be directly pushed downward by the pull ring to separate it from the upper magnet block 602. The semi-arc iron plate 601 slides downward on the positioning rod 603. The semi-arc iron plate 601 drives the elastic wiping cotton 604 to move downward through the first male Velcro and the first female Velcro 605 in turn. The elastic wiping cotton 604 moves downward. While moving, it rubs against the outside of the outer standard tube 2 and the LED light bar 102 thereon. Under the friction force, the dirt attached to the outer standard tube 2 and the LED light bar 102 can be rubbed and cleaned. When the semi-arc iron plate 601 moves downward to contact and adsorb with the magnet block 602 below, the semi-arc iron plate 601 can be stopped from moving. When the outer standard tube 2 and the LED light bar 102 thereon are still not wiped clean after one friction, the semi-arc iron plate 601 can be moved for multiple wiping and cleaning.
[0038] After the outer standard tube 2 is cleaned, the T-shaped compression bolt 505 can be rotated in the opposite direction again to release the fixation of the inner standard rod 1. At this time, the inner standard rod 1 can be pushed upward. As the inner standard rod 1 moves upward, its outer side and the LED light bar 102 thereon will rub against the inner side of the elastic wiping sleeve 702. Under the friction force, the dirt on the outer side of the inner standard rod 1 and the outer side of the LED light bar 102 thereon can be wiped and cleaned. By wiping and cleaning the dirt, the subsequent measurement lighting will not be affected.
[0039] As the inner rod 1 moves upward, the total length of the entire device changes. When the inner rod 1 is completely moved into the outer tube 2, the T-shaped compression bolt 505 can be rotated forward to lock the inner rod 1 again. At this time, the total volume of the entire device is reduced, and the outer tube 2 directly protects the tapered structure on the inner rod 1. There is no need to store the tapered structure separately, making it convenient for people to carry the entire device with a shoulder strap.
[0040] In addition, during the wiping process, the elastic wiping cotton 604 and the elastic wiping sleeve 702 can use their own elastic force to effectively contact the outer side of the outer standard tube 2, the inner standard rod 1 and the LED light strip 102, thereby improving the wiping stability. After use once, the elastic wiping cotton 604 and the elastic wiping sleeve 702 can be removed and cleaned or replaced respectively through the first male Velcro, the first female Velcro 605, the second male Velcro and the second female Velcro, without affecting the next wiping and cleaning work.
[0041] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A self-luminous benchmark for engineering measurement technology, comprising an inner benchmark (1), wherein the bottom end of the inner benchmark (1) is configured as a conical structure, characterized in that: The inner standard rod (1) is sleeved with an outer standard tube (2), the front sides of the inner standard rod (1) and the front sides of the outer standard tube (2) are both provided with fluorescent scale lines (101), the front sides of the inner standard rod (1) and the front sides of the outer standard tube (2) are both fixedly connected with LED light strips (102) that match the corresponding fluorescent scale lines (101), the top of the outer standard tube (2) is fixedly connected with a power storage control mechanism that is electrically connected to the two LED light strips (102), a vertical guide adjustment fixing mechanism (5) for adjusting the outer standard tube (2) is installed between the right top of the inner standard rod (1) and the right inner wall of the outer standard tube (2), a first cleaning mechanism (6) for cleaning the outer side of the outer standard tube (2) is fixedly connected between the left side of the bottom of the outer standard tube (2) and the left side of the power storage control mechanism, and a second cleaning mechanism (7) sleeved on the inner standard rod (1) for cleaning the outer side of the inner standard rod (1) is fixedly installed inside the outer standard tube (2).
2. The self-luminous benchmark for engineering measurement technology according to claim 1, characterized in that: The power storage control mechanism comprises a battery (3) fixedly mounted on the top of the external standard tube (2); two control switches (4) are fixed and electrically connected to the top of the battery (3); the two control switches (4) are electrically connected to corresponding LED light strips (102) respectively; and the two LED light strips (102) are both electrically connected to the battery (3).
3. The self-luminous pole for engineering measurement technology according to claim 1, characterized in that: The vertical guide adjustment fixing mechanism (5) comprises a moving block (502) fixedly connected to the top right side of the inner standard rod (1); a mounting hole (501) is provided on the right inner wall of the outer standard tube (2); a guide rod (503) is fixedly connected between the top inner wall and the bottom inner wall of the mounting hole (501); the right side of the moving block (502) passes through the mounting hole (501) and extends to the right side of the outer standard tube (2); the moving block (502) is slidably sleeved on the guide rod (503); a hard rubber (504) is embedded and fixed on the right side of the guide rod (503); the top right side of the hard rubber (504) is in close contact with a T-shaped compression bolt (505); and the moving block (502) is threadedly sleeved on the T-shaped compression bolt (505).
4. The self-luminous pole for engineering measurement technology according to claim 2, characterized in that: The first cleaning mechanism (6) comprises two magnet blocks (602), the two magnet blocks (602) being fixed to the left bottom of the battery (3) and the left bottom of the external standard tube (2) respectively; a positioning rod (603) being fixedly connected between the two magnet blocks (602) on the sides close to each other; a semi-arc iron plate (601) being sleeved on the external standard tube (2); the semi-arc iron plate (601) being slidably sleeved on the positioning rod (603); the top of the semi-arc iron plate (601) being attracted to the bottom of the upper magnet block (602); an elastic wiping cotton (604) being bonded and fixed to the inner side of the semi-arc iron plate (601); the elastic wiping cotton (604) being in active contact with the outer side of the external standard tube (2) and the outer side of the corresponding LED light bar (102); and a pull ring being fixedly connected to the left side of the semi-arc iron plate (601).
5. The self-luminous pole for engineering measurement technology according to claim 1, characterized in that: The second cleaning mechanism (7) comprises a support ring (701) fixedly sleeved inside the outer standard tube (2), an elastic wiping sleeve (702) being bonded and fixed to the inner side of the support ring (701), the inner side of the elastic wiping sleeve (702) being configured as a conical structure, and the elastic wiping sleeve (702) being sleeved on the outer lower part of the inner standard rod (1).
6. The self-luminous pole for engineering measurement technology according to claim 4, characterized in that: A first male Velcro is bonded and fixed to the inner side of the semi-arc iron plate (601), and a first female Velcro (605) is bonded and fixed to the outer side of the elastic wiping cotton (604), and the first male Velcro and the first female Velcro (605) are bonded to each other.
7. The self-luminous pole for engineering measurement technology according to claim 5, characterized in that: A second male Velcro is bonded and fixed to the inner side of the support ring (701), and a second female Velcro is bonded and fixed to the outer side of the elastic wiping sleeve (702), and the second male Velcro is bonded to the second female Velcro.
8. The self-luminous pole for engineering measurement technology according to claim 3, characterized in that: The right side of the external standard tube (2) is fixedly connected to two connecting rings, and the same shoulder strap is fastened to the two connecting rings. Both connecting rings are located at the rear side of the mounting hole (501).
Citation Information
Patent Citations
Self -luminous sighting rod that engineering survey was used
CN206161010U