Measuring device for natural resource planning and capable of rapidly adjusting height
By using components such as motors, worm gears, and worm wheels, the distance measuring instrument can be quickly leveled and its height adjusted, solving the problems of insufficient leveling function and non-adjustable height in existing technologies. This also helps to clean dust from the display screen and improves measurement accuracy and ease of use.
Patent Information
- Application Number
- CN202511460859.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-14
- Publication Date
- 2026-01-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing distance measuring instruments suffer from problems such as insufficient leveling function, difficulty in disassembly and maintenance, easy accumulation of dust on the display screen, and non-adjustable measurement height, which affect measurement accuracy and efficiency.
The device utilizes a combination of components such as a motor, worm gear, worm wheel, rotating shaft, and bevel gear to achieve rapid leveling and height adjustment; the display screen is cleaned by wiping the components; and an electro-hydraulic rod and clamping plate structure are designed to facilitate the fixing and disassembly of the measuring instrument.
It enables rapid leveling of measuring instruments, avoids measurement result deviations, cleans dust from the display screen, facilitates maintenance and height adjustment, and improves measurement accuracy and ease of use.
Smart Images

Figure CN121297775A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a distance measuring instrument, and more particularly to a highly adjustable measuring device for natural resource planning. Background Technology
[0002] Distance measuring instruments are used to measure distances from one location to another and are widely used in transportation, steelmaking, warehousing, construction, docks and other fields.
[0003] Currently, distance measuring instruments still have some defects and shortcomings in use. The specific areas that need improvement are as follows:
[0004] 1. Most existing distance measuring instruments do not have a leveling function during use. When the device is tilted during use, it will affect the measurement results and cause deviations in the measurement results.
[0005] 2. Existing distance measuring instruments are difficult to disassemble during use, making it difficult to repair them when they are damaged, thus affecting their use.
[0006] 3. Existing distance measuring instruments accumulate a lot of dust on their displays after prolonged use, which can affect the operator's viewing experience.
[0007] 4. Existing distance measuring instruments have the problem that the measured height cannot be adjusted during use, requiring operators to find a specific height and position, which wastes time and limits the use of the device.
[0008] 5. Existing distance measuring instruments have relatively limited functions and cannot meet the distance measurement needs in different scenarios. Summary of the Invention
[0009] The purpose of this invention is to provide a highly adjustable measuring device for natural resource planning, in order to solve the problem mentioned in the background art that most existing distance measuring instruments do not have a leveling function during use, and that when the device is tilted during use, it will affect the measurement results and cause deviations in the measurement results.
[0010] To achieve the above objectives, the present invention provides the following technical solution: a highly rapidly adjustable measuring device for natural resource planning, comprising a base plate, a motor fixedly connected to the upper surface of the base plate, the output shaft of the motor fixedly connected to the left end of a worm gear, the worm gear meshing with a worm wheel, the worm wheel fixedly connected to the lower side of a rotating shaft, a bevel gear fixedly connected to the rotating shaft, the bevel gear meshing with the relatively close ends of three pushing components, the lower ends of the three pushing components fixedly connected to the upper end of the base plate, pushing plates overlapping the lower sides of the relatively far ends of the three pushing components, pushing rods fixedly connected to the lower ends of the three pushing plates, and three pushing rods movably connected to the same base plate having three circular holes inside, the lower ends of the three pushing rods fixedly connected to... A circular base is provided. The upper end of the rotating shaft passes through a through hole in the interior of a circular support plate and is located on the upper side of the circular support plate. The rotating shaft is movably connected to the lower side of a reciprocating assembly via guide blocks located at both ends of its upper side. The upper end of the reciprocating assembly is fixedly connected to the lower end of a circular mounting plate. A wiping assembly is fixedly connected to the upper end of the circular mounting plate. The lower left and right sides of the wiping assembly pass through two hollow conduits and are fixedly connected to the lower side of the reciprocating assembly. The left and right sides of the wiping assembly overlap the upper ends of two clamping plates. The left and right sides of the wiping assembly are movably connected to two L-shaped rods. The lower ends of the two L-shaped rods are fixedly connected to the upper ends of the two clamping plates. The measuring instrument body is held between the two clamping plates, and the measuring instrument body overlaps the upper end of the circular mounting plate.
[0011] As a preferred embodiment of the present invention, a display screen is provided at the upper end of the measuring instrument body, a limiting plate is attached to the rear end of the measuring instrument body, the lower end of the limiting plate is fixedly connected to the upper end of the circular mounting plate, two sliders are fixedly connected to the lower ends of the two clamping plates, the four sliders are respectively movably connected to the interior of the four sliding grooves opened on the upper surface of the circular mounting plate, an electric hydraulic rod is fixedly connected to the relatively far ends of the two clamping plates, a fixing plate is fixedly connected to the relatively far ends of the two electric hydraulic rods, the lower ends of the two fixing plates are fixedly connected to the upper end of the circular mounting plate, and the two hollow guide tubes are fixedly connected to the same circular mounting plate with two circular holes opened inside.
[0012] As a preferred embodiment of the present invention, a support base is movably connected to the right end of the worm gear, the lower end of the support base is fixedly connected to the upper end of the base plate, the lower end of the rotating shaft is movably connected to the upper end of the base plate, and fixed posts are fixedly connected to both the left and right sides of the upper surface of the base plate. The upper ends of the two fixed posts are fixedly connected to the lower end of the circular support plate. Springs are sleeved on the three push rods, the upper ends of the three springs are fixedly connected to the lower ends of the three push plates, and the lower ends of the three springs are fixedly connected to the upper end of the base plate.
[0013] In a preferred embodiment of the present invention, the pushing assembly includes a second support base. The lower end of the second support base is fixedly connected to the upper end of the base plate. A second rotating shaft is movably connected to the upper side of the second support base. Two guide blocks are fixedly connected to the side of the second rotating shaft away from the first rotating shaft. A second bevel gear is fixedly connected to the end of the second rotating shaft near the first rotating shaft. The second bevel gear meshes with the first bevel gear for transmission. Two limiting rods are fixedly connected to the side of the second support base away from the first rotating shaft. The ends of the two limiting rods away from the first rotating shaft are fixedly connected to the third support base. Two L-shaped support seats are fixedly connected to the upper side of the third support base. The two L-shaped support seats are movably connected to the same third rotating shaft through circular holes opened inside them. A second worm gear is fixedly connected to the middle position of the third rotating shaft. The second worm gear meshes with a second worm for transmission. The second worm is movably connected to the third support base with a circular hole at its upper end. The axis of the second worm is aligned with the axis of the second rotating shaft.
[0014] As a preferred embodiment of the present invention, two cams are fixedly connected to the rotating shaft three, and the lower ends of the two cams are both attached to the upper end of the same push plate. The lower end of the support seat three is fixedly connected to the upper end of the base plate. The worm gear two is movably connected to a sliding sleeve one with two guide grooves inside through two guide blocks two arranged on its side near the rotating shaft one. The sliding sleeve one is adapted to the rotating shaft two with two guide blocks three arranged on it through the two guide grooves inside it. The sliding sleeve one is movably connected to a support plate with a circular hole at its upper end. The support plate is movably connected to two limiting rods respectively through two limiting holes opened inside it. An electric hydraulic rod three is fixedly connected to the end of the support plate near the rotating shaft one. The end of the electric hydraulic rod three near the rotating shaft one is fixedly connected to the support seat two.
[0015] As a preferred embodiment of the present invention, the reciprocating assembly includes a second sliding sleeve, the upper end of which is movably connected to the lower end of a circular mounting plate. The second sliding sleeve is movably connected to a rotating shaft with two guide blocks on its upper side via two guide grooves inside. A second cam is fixedly connected to the second sliding sleeve, and a movable plate is attached to the front end of the second cam. Bolt blocks are fixedly connected to the left and right sides of the lower end of the movable plate, and the rear ends of the two bolt blocks are fixedly connected to the left and right sides of the lower end of the wiping assembly, respectively.
[0016] As a preferred embodiment of the present invention, the movable plate 1 is movably connected to two L-shaped rods 2 through circular holes opened on both its left and right sides. The upper ends of the two L-shaped rods 2 are fixedly connected to the lower end of the circular mounting plate. The front ends of the two L-shaped rods 2 are fixedly connected to circular blocks 1. Springs 2 are sleeved on the two L-shaped rods 2. The rear ends of the two springs 2 are fixedly connected to the front ends of the movable plate 1. The front ends of the two springs 2 are respectively fixedly connected to the rear ends of the two circular blocks 1.
[0017] As a preferred embodiment of the present invention, the wiping assembly includes a movable plate two. Pull ropes are fixedly connected to the left and right sides of the rear end of the movable plate two. The front ends of the two pull ropes pass through two hollow guide tubes and are fixedly connected to two bolt blocks respectively. The movable plate two is movably connected to two T-shaped rods one through circular holes opened inside its left and right sides. The rear ends of the two T-shaped rods one are fixedly connected to the front ends of the two fixed plates two. The lower ends of the two fixed plates two are fixedly connected to the upper end of the circular mounting plate. Springs three are sleeved on the two T-shaped rods one. The rear ends of the two springs three are fixedly connected to the front ends of the movable plate two. The front ends of the two springs two are fixedly connected to the front side of the two T-shaped rods one.
[0018] As a preferred embodiment of the present invention, L-shaped rods three are fixedly connected to the left and right sides of the front end of the movable plate two. The two L-shaped rods three are respectively movably connected to two limiting blocks. The front ends of the two limiting blocks are fixedly connected to the rear end of the horizontal plate. A brush plate is provided at the lower end of the horizontal plate, and the lower end of the brush plate is on the same horizontal plane as the display screen provided at the upper end of the measuring instrument body. T-shaped rods two are fixedly connected to the left and right sides of the front end of the horizontal plate. The two T-shaped rods two are respectively movably connected to two hinge rods with connecting holes in their upper ends. The two hinge rods are respectively movably connected to the upper ends of two sliding blocks through hinge seats provided at their lower ends. The two sliding blocks are respectively movably connected to two L-shaped rods one through circular holes opened in their interiors. The lower ends of the two sliding blocks overlap the upper ends of two clamping plates. Circular stop blocks two are fixedly connected to the lower ends of the two L-shaped rods three.
[0019] As a preferred embodiment of the present invention, a circular stop block three is fixedly connected to the front ends of each of the two L-shaped rods one; an electric hydraulic rod two is fixedly connected to the left and right sides of the upper surface of the circular support plate; the upper ends of the two electric hydraulic rod two are fixedly connected to the lower end of the circular mounting plate; a limiting sleeve is fixedly connected to the front and rear sides of the lower surface of the circular mounting plate; the lower ends of the two limiting sleeves are fixedly connected to the upper end of the circular support plate; a level is provided on the upper surface of the base plate; a storage battery is provided on the upper surface of the circular support plate; a control panel is provided on the upper surface of the circular mounting plate; the input end of the control panel is electrically connected to the output end of the storage battery; and the output end of the control panel is electrically connected to the input ends of the motor, the electric hydraulic rod one, the electric hydraulic rod two, and the electric hydraulic rod three.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] 1. This invention utilizes the interaction of a motor, worm gear 1, worm wheel 1, rotating shaft 1, bevel gear 1, and bevel gear 2 to drive rotating shaft 2. Then, the interaction of an electric hydraulic rod 3, sliding sleeve 1, guide block 1, guide block 2, worm gear 2, worm wheel 2, and rotating shaft 3 drives two corresponding cams 1 to rotate. Finally, the interaction of a push plate, push rod, and spring 1 drives the corresponding circular base to move vertically. By sequentially adjusting the height of the three circular bases, the device can be leveled, preventing it from tilting during measurement and thus affecting the measurement results.
[0022] 2. The present invention, through the cooperation of the rotating shaft, guide block, sliding sleeve, cam, L-shaped rod, and spring, can drive the movable plate and the bolt block to move in the front-back direction during the leveling process of the device. Then, through the cooperation of the pull rope, hollow guide tube, T-shaped rod, and spring, the movable plate can be driven to reciprocate in the front-back direction. The L-shaped rod can limit the movement direction of the movable plate, and the cooperation of the fixed plate and T-shaped rod can limit the movement direction of the movable plate.
[0023] 3. The present invention, through the cooperation between the L-shaped rod three and the limiting block, can drive the horizontal plate, hinge rod, T-shaped rod two and sliding block to move together during the movement of the movable plate two. At this time, under the action of the brush plate set at the lower end of the horizontal plate, the dust on the surface of the display screen set at the upper end of the measuring instrument body can be wiped, so as to avoid too much dust adhering to the display screen and thus affecting the operator's viewing.
[0024] 4. The present invention uses an electric hydraulic rod II to move a circular mounting plate vertically, which in turn moves the measuring instrument body vertically. This allows the device to adjust the height of the measuring instrument body according to the measurement requirements during the measurement process. The cooperation between the electric hydraulic rod I, the fixing plate I, and the clamping plate enables the rapid fixing and installation of the measuring instrument body. Furthermore, the measuring instrument body can be easily removed from the device when maintenance is required. The interaction between the slider and the slide groove restricts the movement direction of the clamping plate, and the limiting plate restricts the placement position of the measuring instrument body.
[0025] 5. This invention, through the cooperation of the L-shaped rod, sliding block, hinge rod, and T-shaped rod, can drive the horizontal plate downward as the two clamping plates approach each other, until the lower end of the brush plate on the lower end of the horizontal plate is on the same horizontal plane as the display screen on the main body of the measuring instrument, facilitating the subsequent wiping process of the display screen surface. When the two clamping plates move away from each other, the cooperation of the L-shaped rod, sliding block, hinge rod, and T-shaped rod can drive the horizontal plate upward, thereby driving the brush plate upward, avoiding affecting the removal process of the main body of the measuring instrument. The cooperation of the L-shaped rod and the limiting block can restrict the movement direction of the horizontal plate, and the cooperation of the clamping plates and the L-shaped rod can restrict the movement direction of the sliding block. Attached Figure Description
[0026] Figure 1 This is a front-view three-dimensional structural schematic diagram of the present invention;
[0027] Figure 2 This is a schematic diagram of the left-side stereoscopic structure of the present invention;
[0028] Figure 3 This is a rear-view three-dimensional structural diagram of the present invention;
[0029] Figure 4 This is a front-view three-dimensional structural diagram of the base plate of the present invention;
[0030] Figure 5 This is a front-view perspective three-dimensional structural diagram of the reciprocating component of the present invention;
[0031] Figure 6 This is a front-view perspective view of the wiping assembly of the present invention.
[0032] Figure 7 This is a left-side perspective view of the three-dimensional structure of the wiping assembly of the present invention;
[0033] Figure 8This is a left-side stereoscopic view of the driving component of the present invention.
[0034] In the diagram: 1. Base plate, 2. Push plate, 3. Push rod, 4. Spring 1, 5. Circular base, 6. Push assembly, 61. Support seat 2, 62. Bevel gear 2, 63. Rotating shaft 2, 64. Limiting rod, 65. Electro-hydraulic rod 3, 66. Guide block 3, 67. Guide block 2, 68. Sliding sleeve 1, 69. Support plate, 610. Support seat 3, 611. L-shaped support seat, 612. Worm gear 2, 613. Worm wheel 2, 614. Rotating shaft 3, 615. Cam 1, 7. Reciprocating assembly, 71. Circular stop 1, 72. Spring 2, 73. L-shaped rod 2, 74. Bolted block, 75. Movable plate 1, 76. Sliding sleeve 2, 77. Cam 2, 8. Wiping assembly, 81. Movable plate 2, 82. Spring 3, 83. L-shaped rod 3, 84. T-shaped rod 1, 85. Fixed plate 2, 86. Horizontal plate, 87. 88 T-shaped rod II, 89 Hinged rod, 810 Sliding block, 811 Pull rope, 812 Restricting block, 813 Circular stop block II, 9 Level, 10 Support base I, 11 Worm gear I, 12 Rotating shaft I, 13 Circular support plate, 14 Battery, 15 Restricting sleeve, 16 Electro-hydraulic rod II, 17 Circular mounting plate, 18 Control panel, 19 Slide groove, 20 Fixing plate I, 21 Electro-hydraulic rod I, 22 Clamping plate, 23 Circular stop block III, 24 L-shaped rod I, 25 Measuring instrument body, 26 Hollow guide tube, 27 Motor, 28 Worm gear I, 29 Fixing column, 30 Guide block I, 31 Slider, 32 Limiting plate, 33 Bevel gear I. Detailed Implementation
[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0036] like Figure 1-8As shown, the present invention provides a technical solution: a highly rapidly adjustable measuring device for natural resource planning, comprising a base plate 1, a motor 27 fixedly connected to the upper surface of the base plate 1, the output shaft of the motor 27 fixedly connected to the left end of a worm gear 28, the worm gear 28 meshing with a worm wheel 11 for transmission, the worm wheel 11 fixedly connected to the lower side of a rotating shaft 12, a bevel gear 33 fixedly connected to the rotating shaft 12, the bevel gear 33 meshing with the relatively close ends of three pushing components 6 respectively, the lower ends of the three pushing components 6 fixedly connected to the upper end of the base plate 1, and a pushing plate 2 overlapping the lower side of the relatively far ends of the three pushing components 6, the lower ends of the three pushing plates 2 fixedly connected to a pushing rod 3, and the three pushing rods 3 all connecting to the same base plate 1 which has three circular holes inside. The three push rods 3 are connected in an active manner. The lower ends of each push rod 3 are fixedly connected to a circular base 5. The rotation of the output shaft of motor 27 drives the worm gear 28 to rotate. The worm gear 28 meshes with the worm wheel 11, which in turn drives the rotating shaft 12 to rotate. The rotation of the rotating shaft 12, under the action of the bevel gear 33 and the corresponding push assembly 6, drives the corresponding push plate 2 downwards. This, in turn, drives the corresponding circular base 5 downwards under the action of the push rods 3. By individually adjusting the three circular bases 5, leveling can be achieved during the use of the device. The upper end of the rotating shaft 12 passes through a through hole inside the circular support plate 13 and is located on the upper side of the circular support plate 13. Shaft 12 is movably connected to the lower side of reciprocating assembly 7 via guide blocks 30 provided at both its upper left and right ends. The upper end of reciprocating assembly 7 is fixedly connected to the lower end of circular mounting plate 17. Wiping assembly 8 is fixedly connected to the upper end of circular mounting plate 17. The lower left and right sides of wiping assembly 8 pass through two hollow guide tubes 26 and are fixedly connected to the lower side of reciprocating assembly 7. The left and right sides of wiping assembly 8 overlap the upper ends of two clamping plates 22. The left and right sides of wiping assembly 8 are movably connected to two L-shaped rods 24. The lower ends of the two L-shaped rods 24 are fixedly connected to the upper ends of the two clamping plates 22. The measuring instrument body 25 is clamped between the two clamping plates 22. The measuring instrument body 25 overlaps the upper end of circular mounting plate 17. The upper end of measuring instrument body 25... Equipped with a display screen, the surface of the display screen on the measuring instrument body 25 can be wiped by the rotation of the rotating shaft 12 under the action of the guide block 30, the reciprocating assembly 7, and the wiping assembly 8, thus avoiding obstruction of the operator's view. The clamping plate 22 can fix the L-shaped rod 24. The interaction between the L-shaped rod 24 and the clamping plate 22 can limit the movement direction of the wiping assembly 8. The circular mounting plate 17 can support the wiping assembly 8 and the reciprocating assembly 7. The rear end of the measuring instrument body 25 is connected to the limiting plate 32, and the lower end of the limiting plate 32 is fixedly connected to the upper end of the circular mounting plate 17. Two sliders 31 are fixedly connected to the lower ends of both clamping plates 22.Four sliders 31 are movably connected to the interiors of four grooves 19 formed on the upper surface of the circular mounting plate 17. Electro-hydraulic rods 21 are fixedly connected to the relatively distant ends of the two clamping plates 22. Fixing plates 20 are fixedly connected to the relatively distant ends of the two electro-hydraulic rods 21. The lower ends of the two fixing plates 20 are fixedly connected to the upper ends of the circular mounting plate 17. Two hollow guide tubes 26 are fixedly connected to the circular mounting plate 17, which has two circular holes inside. The fixing plates 20 provide support for the electro-hydraulic rods 21. By activating the two electro-hydraulic rods 21, the two clamping plates 22 are brought closer together, thereby achieving a clamping and fixing effect on the measuring instrument body 25, increasing the durability of the measuring instrument body 25 during use. The system ensures stability during operation and allows for easy removal and repair of the measuring instrument body 25 if it is damaged. The circular mounting plate 17 secures the hollow guide tube 26, and the limiting plate 32 restricts the placement of the measuring instrument body 25. The measuring instrument body 25 measures distances and displays the results on a screen. The interaction between the slider 31 and the slide groove 19 restricts the movement direction of the clamping plate 22. A support base 10 is movably connected to the right end of the worm gear 28, with its lower end fixed to the upper end of the base plate 1. The lower end of the rotating shaft 12 is movably connected to... The base plate 1 is attached to the upper end of the base plate 1. Fixing posts 29 are fixedly connected to both sides of the upper surface of the base plate 1. The upper ends of the two fixing posts 29 are fixedly connected to the lower end of the circular support plate 13. Springs 4 are fitted onto the three push rods 3. The support seat 10 provides support for the worm gear 28, and the fixing posts 29 fix the circular support plate 13. The push assembly 6 includes a support seat 2 61, the lower end of which is fixedly connected to the upper end of the base plate 1. A rotating shaft 2 63 is movably connected to the upper side of the support seat 2 61. Two guide blocks 3 66 are fixedly connected to the side of the rotating shaft 2 63 away from the rotating shaft 1 12. A bevel gear 2 62 is fixedly connected to the end of the rotating shaft 2 63 closest to the rotating shaft 1 12. The bevel gear 2 62 and the bevel gear 2 62... The gear 1-33 meshes and drives the transmission. Two limiting rods 64 are fixedly connected to the side of support base 2 61 away from the rotating shaft 12. The ends of both limiting rods 64 away from the rotating shaft 12 are fixedly connected to support base 3 610. Two L-shaped support seats 611 are fixedly connected to the upper side of support base 3 610. Each L-shaped support seat 611 is movably connected to the same rotating shaft 3 614 through a circular hole inside. A worm gear 2 613 is fixedly connected to the middle of rotating shaft 3 614. The worm gear 2 613 meshes and drives the worm 2 612. The worm 2 612 is movably connected to support base 3 610, which has a circular hole at its upper end. Two cams 1 615 are fixedly connected to rotating shaft 3 614. The lower ends of both cams 1 615 overlap the upper end of the same push plate 2.The second support seat 61 supports the second rotating shaft 63. The first bevel gear 33 meshes with the second bevel gear 62, driving the second rotating shaft 63 to rotate. The third support seat 610 fixes the L-shaped support seat 611, which in turn supports the third rotating shaft 614. The rotation of the second worm gear 612 drives the second worm wheel 613, which in turn drives the third rotating shaft 614 to rotate. The rotation of the third rotating shaft 614, under the action of the first cam 615, causes the corresponding push plate 2 to move downwards. The third support seat 610 supports the second worm gear 612. The lower end of the third support seat 610 is fixedly connected to the upper end of the base plate 1. The second worm gear 612 is movably connected to a sliding sleeve 68 with two guide grooves inside through two guide blocks 67 located near the first rotating shaft 12. The sliding sleeve 68 is adapted to the rotating shaft 63, which has two guide grooves inside, and is equipped with two guide blocks 66. The sliding sleeve 68 is movably connected to the support plate 69, which has a circular hole at its upper end. The support plate 69 is movably connected to two limiting rods 64 through two limiting holes inside. An electric hydraulic rod 65 is fixedly connected to the end of the support plate 69 near the rotating shaft 12. The end of the electric hydraulic rod 65 near the rotating shaft 12 is fixedly connected to the support base 61. The mutual cooperation between the support base 61 and the support base 610 can fix the limiting rods 64. The limiting rods 64 can fix the support plate 63. The movement direction of 9 is restricted. The support plate 69 supports the sliding sleeve 68. By activating the electric hydraulic rod 65, the sliding sleeve 68 moves towards the rotating shaft 63 until it is engaged with the rotating shaft 63. At this time, the rotation of the rotating shaft 63, under the action of the guide block 66, drives the sliding sleeve 68, which has two guide grooves, to rotate. The rotation of the sliding sleeve 68, under the action of the guide block 67, drives the worm gear 612 to rotate. The guide blocks 67 and 66 support the sliding sleeve. The movement direction of component 68 is limited. Support base 61 supports the electro-hydraulic rod 65. The reciprocating assembly 7 includes a sliding sleeve 76, the upper end of which is movably connected to the lower end of the circular mounting plate 17. The sliding sleeve 76 is movably connected to a rotating shaft 12 with two guide blocks 30 on its upper side via two guide grooves inside. A cam 77 is fixedly connected to the sliding sleeve 76. A movable plate 75 is attached to the front end of the cam 77. Bolt blocks 74 are fixedly connected to the left and right sides of the lower end of the movable plate 75. The rear ends of the two bolt blocks 74 are fixedly connected to the left and right sides of the lower end of the wiping assembly 8, respectively.The movable plate 75 is movably connected to two L-shaped rods 73 via circular holes on its left and right sides. The upper ends of the two L-shaped rods 73 are fixedly connected to the lower ends of the circular mounting plate 17. A circular stop block 71 is fixedly connected to the front end of each L-shaped rod 73. A spring 72 is sleeved on each L-shaped rod 73. The rotation of the pivot 12, under the action of the two guide blocks 30, drives the sliding sleeve 76 to rotate. The rotation of the sliding sleeve 76, through the interaction of the cam 77, the L-shaped rods 73, and the springs 72, drives the movable plate 75 to move forward and backward. The circular stop blocks 71 limit the range of motion of the movable plate 75. The wiping assembly 8 includes a movable plate 81, with pull ropes 810 fixedly connected to the left and right sides of its rear end. The front ends of the two pull ropes 810 pass through two hollow guide tubes 26 and are fixedly connected to two bolted blocks 74. The movable plate 81 is movably connected to two T-shaped rods 84 through circular holes on its left and right sides. The rear ends of the two T-shaped rods 84 are fixedly connected to the front ends of two fixed plates 85. The lower ends of the two fixed plates 85 are fixedly connected to the upper ends of the circular mounting plate 17. Springs 82 are sleeved on both T-shaped rods 84. L-shaped rods 83 are fixedly connected to the left and right sides of the front end of the movable plate 81. Each L-shaped rod 83 is movably connected to two limiting blocks 811. The front ends of the two limiting blocks 811 are fixedly connected to the rear end of the horizontal plate 86. A brush plate is provided at the lower end of the horizontal plate 86. T-shaped rods 87 are fixedly connected to the left and right sides of the front end of the horizontal plate 86. The two T-shaped rods 87 are movably connected to two hinge rods 88. The lower ends of the two hinge rods 88 are movably connected to the upper ends of two sliding blocks 89. The two sliding blocks 89 are movably connected to two L-shaped rods 24 through circular holes opened inside them. The lower ends of the two sliding blocks 89 overlap the upper ends of the two clamping plates 22. Circular stop blocks 812 are fixedly connected to the lower ends of the two L-shaped rods 83. Circular stop blocks 23 are fixedly connected to the front ends of the two L-shaped rods 24. The movement of movable plate 75, in conjunction with the bolted block 74, pull rope 810, and spring 82, drives movable plate 81 to move in the forward and backward direction. The movement of movable plate 81, in conjunction with the L-shaped rod 83 and limiting block 811, drives the horizontal plate 86, hinge rod 88, and sliding block 89 to move accordingly. The brush plate at the lower end of the horizontal plate 86 then wipes the display screen on the measuring instrument body 25, preventing excessive dust from adhering to the body and affecting the operator's viewing. The movement of movable plate 81 is restricted by the interaction between fixed plate 85 and T-shaped rod 84.The interaction between clamping plate 22 and L-shaped rod 24 restricts the movement direction of sliding block 89. When the two clamping plates 22 approach each other, the interaction between L-shaped rod 24, sliding block 89, hinge rod 88, and T-shaped rod 87 moves the horizontal plate 86 downward until the lower end of the brush plate at the lower end of the horizontal plate 86 is on the same horizontal plane as the display screen at the upper end of the measuring instrument body. When the two clamping plates 22 move away from each other, the interaction between L-shaped rod 24, sliding block 89, hinge rod 88, and T-shaped rod 87 moves the horizontal plate 86 upward, thus avoiding affecting the process of removing the measuring instrument body 25 from the device. Electric hydraulic rods 16 are fixedly connected to both sides of the upper surface of the circular support plate 13. The upper ends of the two electric hydraulic rods 16 are fixedly connected to... At the lower end of the circular mounting plate 17, limiting sleeves 15 are fixedly connected to both the front and rear sides of the lower surface of the circular mounting plate 17. The lower ends of the two limiting sleeves 15 are fixedly connected to the upper end of the circular support plate 13. A level 9 is provided on the upper surface of the base plate 1. The electric hydraulic rod 16 can drive the circular mounting plate 17 to move up and down, thereby driving the measuring instrument body 25 to move up and down, thus realizing the adjustment of the height of the measuring instrument body 25 during the measurement process. The limiting sleeves 15 can increase the stability of the circular mounting plate 17 during movement. The level 9 can determine whether the device is level during use, preventing the device from tilting. A battery 14 is provided on the upper surface of the circular support plate 13, and a control panel 18 is provided on the upper surface of the circular mounting plate 17.
[0037] The operation steps of this invention are as follows:
[0038] When using this device for measurement, firstly, the level 9 is used to check if the device is tilted. When the device is tilted, the electric hydraulic rod 65 on the corresponding push assembly 6 is activated to move the corresponding support plate 69 and sliding sleeve 68 toward the direction of the rotating shaft 2 until the corresponding rotating shaft 63 is sleeved inside the sliding sleeve 68. Then, the motor 27 is activated. The rotation of the output shaft of the motor 27 can drive the worm gear 28 to rotate. The worm gear 28 meshes with the worm wheel 11, which in turn drives the rotating shaft 12 to rotate. The rotation of the rotating shaft 12 can drive the bevel gear 33 to rotate. The bevel gear 33 meshes with the bevel gear 62, which in turn drives the rotating shaft 63 to rotate.
[0039] The rotation of the rotating shaft 63, in conjunction with the guide block 66, guide block 67, sliding sleeve 68, worm gear 612, worm wheel 613, and rotating shaft 614, drives the two corresponding cams 615 to rotate. At this time, in conjunction with the push plate 2 and push rod 3, the corresponding circular base 5 can move up and down. By repeating the above operation steps, the position of the other two circular bases 5 can be adjusted, thereby achieving the leveling process of the device. After leveling, the measuring instrument body 25 can be started to achieve the distance measurement process.
[0040] During the leveling process of the device, the rotation of the rotating shaft 12, under the action of the guide block 30, can drive the sliding sleeve 76 to rotate. The rotation of the sliding sleeve 76, under the cooperation of the cam 77, spring 72 and L-shaped rod 73, can drive the movable plate 75 and the bolt block 74 to reciprocate in the front and back direction. Then, under the cooperation of the pull rope 810, hollow guide tube 24, spring 82 and T-shaped rod 84, the movable plate 81 can move in the front and back direction. Then, under the action of the L-shaped rod 83 and the limiting block 811, the horizontal plate 86 can move in the front and back direction. At this time, under the action of the brush plate at the lower end of the horizontal plate 86, the dust on the display screen on the measuring instrument body 25 can be cleaned.
[0041] When the measurement process requires adjustment of the height of the measuring instrument body 25 according to the actual situation, the activation of the hydraulic rod 16 can drive the circular mounting plate 17 to move up and down, thereby driving the measuring instrument body 25 to move up and down, thus realizing the adjustment of the height of the measuring instrument body 25 during use.
[0042] When the measuring instrument body 25 needs to be removed from the device for maintenance, the two electric hydraulic rods 21 are activated to move the two clamping plates 22 away from each other. At this time, the two clamping plates 22 no longer fix the measuring instrument body 25. During the process of the two clamping plates 22 moving away from each other, the horizontal plate 86 can be moved upward by the cooperation of the sliding block 89, L-shaped rod 24, hinge rod 88 and T-shaped rod 87, thus avoiding affecting the removal process of the measuring instrument body 25. At this time, the measuring instrument body 25 can be easily removed from the device for maintenance.
[0043] In the description of this invention, it should be understood that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this invention and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.
[0044] In this invention, unless otherwise explicitly specified and limited, for example, it can be a fixed connection, a detachable connection, or an integral part; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two elements or an interaction between two elements. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0045] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A highly rapidly adjustable measuring device for natural resource planning, comprising a base plate (1), characterized in that: A motor (27) is fixedly connected to the upper surface of the base plate (1). The output shaft of the motor (27) is fixedly connected to the left end of the worm gear (28). The worm gear (28) meshes with the worm wheel (11) for transmission. The worm wheel (11) is fixedly connected to the lower side of the rotating shaft (12). A bevel gear (33) is fixedly connected to the rotating shaft (12). The bevel gear (33) meshes with the relatively close ends of the three push assemblies (6) for transmission. The lower ends of the components (6) are all fixedly connected to the upper end of the base plate (1). The lower sides of the three pushing components (6) that are relatively far apart are all connected to the pushing plates (2). The lower ends of the three pushing plates (2) are all fixedly connected to the pushing rods (3). The three pushing rods (3) are all movably connected to the base plate (1) which has three circular holes in the same interior. The lower ends of the three pushing rods (3) are all fixedly connected to the circular base (5). The upper end of the rotating shaft (12) passes through the circular support plate (13). An internal through-hole is provided on the upper side of the circular support plate (13). The rotating shaft (12) is movably connected to the lower side of the reciprocating assembly (7) through guide blocks (30) provided on both the left and right ends of its upper side. The upper end of the reciprocating assembly (7) is fixedly connected to the lower end of the circular mounting plate (17). The upper end of the circular mounting plate (17) is fixedly connected to a wiping assembly (8). The lower left and right sides of the wiping assembly (8) are respectively connected to two hollow conduits (26). The wiping assembly (8) is attached to the lower side of the reciprocating assembly (7). The left and right sides of the wiping assembly (8) are respectively attached to the upper ends of the two clamping plates (22). The left and right sides of the wiping assembly (8) are respectively movably connected to the two L-shaped rods (24). The lower ends of the two L-shaped rods (24) are respectively fixedly connected to the upper ends of the two clamping plates (22). The measuring instrument body (25) is held between the two clamping plates (22). The measuring instrument body (25) is attached to the upper end of the circular mounting plate (17).
2. The highly rapidly adjustable measuring device for natural resource planning according to claim 1, characterized in that: The upper end of the measuring instrument body (25) is provided with a display screen. The rear end of the measuring instrument body (25) is connected to a limiting plate (32). The lower end of the limiting plate (32) is fixedly connected to the upper end of the circular mounting plate (17). The lower ends of the two clamping plates (22) are fixedly connected to two sliders (31). The four sliders (31) are respectively movably connected to the interior of the four sliding grooves (19) opened on the upper surface of the circular mounting plate (17). The relatively far ends of the two clamping plates (22) are fixedly connected to an electric hydraulic rod (21). The relatively far ends of the two electric hydraulic rods (21) are fixedly connected to a fixing plate (20). The lower ends of the two fixing plates (20) are fixedly connected to the upper end of the circular mounting plate (17). The two hollow guide tubes (26) are fixedly connected to the circular mounting plate (17) with two circular holes opened in the same interior.
3. The highly rapidly adjustable measuring device for natural resource planning according to claim 1, characterized in that: The right end of the worm gear (28) is movably connected to the support seat (10). The lower end of the support seat (10) is fixedly connected to the upper end of the base plate (1). The lower end of the rotating shaft (12) is movably connected to the upper end of the base plate (1). The left and right sides of the upper surface of the base plate (1) are fixedly connected to the fixing columns (29). The upper ends of the two fixing columns (29) are fixedly connected to the lower end of the circular support plate (13). The three push rods (3) are all fitted with springs (4).
4. The highly rapidly adjustable measuring device for natural resource planning according to claim 1, characterized in that: The pushing component (6) includes a second support base (61), the lower end of which is fixedly connected to the upper end of the base plate (1). A second rotating shaft (63) is movably connected to the upper side of the second support base (61), and two guide blocks (66) are fixedly connected to the side of the second rotating shaft (63) away from the first rotating shaft (12). A second bevel gear (62) is fixedly connected to the end of the second rotating shaft (63) near the first rotating shaft (12), and the second bevel gear (62) meshes with the first bevel gear (33). Two limiting rods (64) are fixedly connected to the side of the second support base (61) away from the first rotating shaft (12). The ends of the two limiting rods (64) away from the first rotating shaft (12) are fixedly connected to the third support base (610). The upper side of the third support base (610) is fixedly connected to two L-shaped support bases (611). The two L-shaped support bases (611) are movably connected to the same third rotating shaft (614) through circular holes opened inside them. The second worm gear (613) is fixedly connected in the middle position of the third rotating shaft (614). The second worm gear (613) meshes with the second worm (612) for transmission. The second worm (612) is movably connected to the third support base (610) with a circular hole opened at the upper end.
5. A highly rapidly adjustable measuring device for natural resource planning according to claim 1, characterized in that: Two cams (615) are fixedly connected to the rotating shaft (614). The lower ends of the two cams (615) overlap the upper end of the same push plate (2). The lower end of the support seat (610) is fixedly connected to the upper end of the base plate (1). The worm gear (612) is movably connected to the sliding sleeve (68) with two guide blocks (67) provided on its side near the rotating shaft (12). The sliding sleeve (68) is connected to the sliding sleeve (68) with two guide grooves inside through the two guide grooves inside. The sliding sleeve (68) is adapted to the rotating shaft (63) with two guide blocks (66) on it. The sliding sleeve (68) is movably connected to the support plate (69) with a circular hole at the upper end. The support plate (69) is movably connected to two limiting rods (64) through two limiting holes opened inside it. The end of the support plate (69) near the rotating shaft (12) is fixedly connected to the electric hydraulic rod (65). The end of the electric hydraulic rod (65) near the rotating shaft (12) is fixedly connected to the support seat (61).
6. The highly rapidly adjustable measuring device for natural resource planning according to claim 1, characterized in that: The reciprocating assembly (7) includes a sliding sleeve (76), the upper end of which is movably connected to the lower end of a circular mounting plate (17). The sliding sleeve (76) is movably connected to a rotating shaft (12) with two guide blocks (30) on its upper side through two guide grooves (2) inside it. A cam (77) is fixedly connected to the sliding sleeve (76). A movable plate (75) is attached to the front end of the cam (77). A bolt block (74) is fixedly connected to the lower left and right sides of the movable plate (75). The rear ends of the two bolt blocks (74) are fixedly connected to the lower left and right sides of the wiping assembly (8).
7. A highly rapidly adjustable measuring device for natural resource planning according to claim 6, characterized in that: The movable plate 1 (75) is movably connected to two L-shaped rods 2 (73) through circular holes on its left and right sides respectively. The upper ends of the two L-shaped rods 2 (73) are fixedly connected to the lower end of the circular mounting plate (17). The front ends of the two L-shaped rods 2 (73) are fixedly connected to a circular stop block 1 (71). A spring 2 (72) is sleeved on the two L-shaped rods 2 (73).
8. A highly rapidly adjustable measuring device for natural resource planning according to claim 6, characterized in that: The wiping assembly (8) includes a movable plate two (81). Pull ropes (810) are fixedly connected to the left and right sides of the rear end of the movable plate two (81). The front ends of the two pull ropes (810) pass through two hollow conduits (26) and are fixedly connected to two bolt blocks (74). The movable plate two (81) is movably connected to two T-shaped rods one (84) through circular holes opened on its left and right sides. The rear ends of the two T-shaped rods one (84) are fixedly connected to the front ends of two fixed plates two (85). The lower ends of the two fixed plates two (85) are fixedly connected to the upper end of the circular mounting plate (17). Spring three (82) is sleeved on the two T-shaped rods one (84).
9. A highly rapidly adjustable measuring device for natural resource planning according to claim 8, characterized in that: The front end of the movable plate 2 (81) is fixedly connected to the left and right sides of the L-shaped rod 3 (83). The two L-shaped rod 3 (83) are respectively movably connected to the two limiting blocks (811). The front ends of the two limiting blocks (811) are fixedly connected to the rear end of the horizontal plate (86). The lower end of the horizontal plate (86) is provided with a brush plate. The front end of the horizontal plate (86) is fixedly connected to the left and right sides of the horizontal plate (86). The two T-shaped rod 2 (87) are respectively movably connected to the two hinge rods (88). The lower ends of the two hinge rods (88) are respectively movably connected to the upper ends of the two sliding blocks (89). The two sliding blocks (89) are respectively movably connected to the two L-shaped rod 1 (24) through the circular holes opened inside them. The lower ends of the two sliding blocks (89) overlap the upper ends of the two clamping plates (22). The lower ends of the two L-shaped rod 3 (83) are respectively fixedly connected to the circular stop block 2 (812).
10. A highly rapidly adjustable measuring device for natural resource planning according to claim 1, characterized in that: The front ends of the two L-shaped rods (24) are fixedly connected to circular stop blocks (23). The upper surface of the circular support plate (13) is fixedly connected to electric hydraulic rods (16) on both sides. The upper ends of the two electric hydraulic rods (16) are fixedly connected to the lower end of the circular mounting plate (17). The lower surface of the circular mounting plate (17) is fixedly connected to the front and rear sides of the front and rear sides. The lower ends of the two limiting sleeves (15) are fixedly connected to the upper end of the circular support plate (13). The upper surface of the base plate (1) is provided with a level (9). The upper surface of the circular support plate (13) is provided with a battery (14). The upper surface of the circular mounting plate (17) is provided with a control panel (18).