CN113758406B - Land collection measuring equipment and use method thereof - Google Patents
Land collection measuring equipment and use method thereof Download PDFInfo
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- CN113758406B CN113758406B CN202111075982.7A CN202111075982A CN113758406B CN 113758406 B CN113758406 B CN 113758406B CN 202111075982 A CN202111075982 A CN 202111075982A CN 113758406 B CN113758406 B CN 113758406B
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01B—MEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
- G01B5/00—Measuring arrangements characterised by the use of mechanical techniques
- G01B5/26—Measuring arrangements characterised by the use of mechanical techniques for measuring areas, e.g. planimeters
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01C—MEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
- G01C15/00—Surveying instruments or accessories not provided for in groups G01C1/00 - G01C13/00
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- Engineering & Computer Science (AREA)
- Radar, Positioning & Navigation (AREA)
- Remote Sensing (AREA)
- Tape Measures (AREA)
Abstract
The invention relates to the technical field of land measurement, in particular to a land collection measuring device and a use method thereof. According to the invention, the bevel gear I is fixedly sleeved on the side surface of the loop bar, the loop bar can be rotated to enable the bevel gear I to be in transmission connection with the tape measure module II, so that when the measuring equipment continuously moves through turning, the supporting wheel can enable the tape measure module II to roll up the tape measure through the bevel gear I, the tape measure module I can discharge the tape measure to measure, the measuring equipment can stay at the corner for a short time, the measurement of the mu measuring instrument cannot be affected, and the two ways of measurement can be simultaneously carried out, thereby being beneficial to saving time and being convenient to use.
Description
Technical Field
The invention relates to the technical field of land measurement, in particular to land collection measurement equipment and a use method thereof.
Background
When public facilities such as railways are built, all the land of an individual needs to be collected as national land, meanwhile, the individual needs to be compensated according to the area of the collected land, therefore, before collection, the area of the land needs to be measured by using measuring equipment, and when the land is measured, the area of the land can be measured by adopting an acre measuring instrument or a tape and the like, the measuring personnel can measure the area of the land by holding the acre measuring instrument for one circle along the edge of the land, and meanwhile, the length and the width of the land can be directly measured by the tape, so that the land area is calculated.
When measuring the land area, in order to guarantee the degree of accuracy of measurement, can adopt the dual mode to measure sometimes, this makes when measuring, need to use different modes to measure once and once, comparatively wastes time, is unfavorable for the measurement to go on.
Disclosure of Invention
In order to overcome the technical problems, the invention aims to provide the measuring equipment for land collection and the using method thereof, wherein the bevel gear I is fixedly sleeved on the side surface of the loop bar, the loop bar can be rotated to enable the bevel gear I to be in transmission connection with the tape measure module II, so that when the measuring equipment continuously moves through turning, the supporting wheel can enable the tape measure module II to roll up the tape measure through the bevel gear I, the tape measure module I can release the tape measure to measure, the measuring equipment can stay at a corner for a short time, the measurement of an mu measuring instrument is not influenced, and the two ways of measurement can be simultaneously carried out, thereby being beneficial to saving time and being convenient to use.
The aim of the invention can be achieved by the following technical scheme:
the utility model provides a land is collected and is used measuring equipment, includes backup pad and adjustment module, backup pad top surface fixedly connected with places the module, can place the survey mu appearance on placing the module, then promotes measuring equipment along land edge soil, makes survey mu appearance carry out the land measurement, and the backup pad top is provided with the connecting plate, four equal fixed distances in corner of connecting plate bottom surface have with backup pad fixed connection's fixed block, the adjacent both sides in backup pad top are provided with tape module one and tape module two of the same structure respectively, adjustment module includes adjustment mechanism, connecting plate top surface and adjustment mechanism fixed connection, adjustment mechanism bottom fixedly connected with passes the round bar of backup pad, round bar bottom fixedly connected with supporting seat, the supporting seat medial surface rotates and is connected with the supporting wheel, round bar lateral wall fixedly connected with rectangular piece, the side surface of the rectangular block is rotationally connected with a rotating rod, the side surface of the rotating rod is provided with a loop bar, the side surface of the loop bar is fixedly sleeved with a bevel gear I which is in transmission connection with a tape measure module I, the side wall of the rotating rod is in transmission connection with a transmission mechanism which is in transmission connection with a supporting wheel, when measuring equipment moves, the tape measure module II can release a tape measure to measure the edge of the soil, and when the measuring equipment continues to move through a corner, the position of the bevel gear I can be adjusted to ensure that the bevel gear I is in transmission connection with the tape measure module II, at the moment, the tape measure module I is released through the tape measure module I, meanwhile, the supporting wheel can enable the rotating rod to rotate through the transmission mechanism, and the rotating rod can drive the tape measure module II through the loop bar and the bevel gear I, so that when the measuring equipment moves, the mu measuring instrument does not stay for a long time at the corner of the soil as much as possible, therefore, the tape can be prevented from being manually rolled and released at the corner, the stop is long, the measurement condition of the mu measuring instrument is affected, the measurement in two modes can be simultaneously carried out, the tape does not need to be manually rolled, the time is saved, the use is convenient, and the length and the width of the soil edge can be measured twice after the tape is rolled, so that the measurement accuracy is improved.
The method is further characterized in that: the four corners of backup pad bottom surface all fixedly connected with carrier bar, the carrier bar bottom surface rotates and is connected with the universal wheel, and the universal wheel conveniently removes, the backup pad top surface deviates from the corner fixedly connected with pulling frame of tape measure module one and tape measure module two, can remove measuring equipment through the pulling frame.
The method is further characterized in that: the utility model provides a module is placed to pole setting, pole setting bottom and backup pad top surface fixed connection, the buffer tank has been seted up to the pole setting top surface, buffer tank medial surface sliding connection has the buffer rod, buffer rod top fixedly connected with places the box, buffer rod bottom fixedly connected with and buffer tank sliding connection's buffer block, equal fixedly connected with in buffer block top surface and bottom surface and buffer tank medial surface fixed connection's buffer spring can place the survey mu appearance in placing the box, and two buffer springs can carry out the bradyseism to survey mu appearance this moment.
The method is further characterized in that: the utility model discloses a flexible rule, including loop bar, handle, angle bar, handle, angle bar medial surface fixedly connected with and handle sliding connection's rectangular pole, the handle can drive the loop bar through rectangular pole and rotate, loop bar medial surface fixedly connected with and handle fixed connection's reset spring one, under reset spring one's effect, can keep the position of bevel gear one, make bevel gear one keep the state of being connected with tape measure module one transmission, loop bar lateral surface fixedly connected with keeps off the ring, the side that keeps off ring deviates from handle one side is provided with the slip ring with loop bar sliding connection, slip ring lateral wall top fixedly connected with pull rod can drive the slip ring through the slip ring and remove to make the loop bar remove, drive bevel gear one and tape measure module one break away from, conveniently rotate the position of adjustment bevel gear one, make bevel gear one and tape measure module two transmission connection.
The method is further characterized in that: the adjusting mechanism comprises a fixed ring, four supporting rods fixedly connected with the bottom surface of the fixed ring at equal intervals are fixedly connected with the top surface of the connecting plate, the supporting rods can support the fixed ring, a rotating plate is rotationally connected with the inner side surface of the fixed ring, the bottom surface of the rotating plate is fixedly connected with the top end of the round rod, the rotating plate can support the round rod, the top of the side wall of the pull rod is slidably connected with the inner side surface of the rotating plate, four clamping grooves are annularly formed in the inner side surface of the bottom of the fixed ring at equal intervals, the side surface of the pull rod is slidably connected with the inner side surface of one clamping groove, under the action of a first return spring, the pull rod can be clamped in the clamping grooves, the clamping grooves can limit the position of the pull rod, so that the first bevel gear is prevented from rotating to a position separated from the first tape module and the second tape module, and then the position of the pull rod is clamped through the clamping grooves.
The method is further characterized in that: the transmission mechanism comprises a fixed shell, the rectangular block and the side face of the supporting seat are fixedly connected with the side face of the fixed shell, the side face of the fixed shell is rotationally connected with the side wall of the rotating rod, the top and the bottom of the side face of the inner side face of the fixed shell are respectively provided with a belt pulley I, the side wall of the rotating rod is fixedly sleeved with a belt pulley I positioned at the top, the bottom of the side face of the inner side face of the fixed shell is rotationally connected with a transmission rod I which is in transmission connection with a supporting wheel, the side wall of the transmission rod II is fixedly sleeved with a belt pulley I positioned at the bottom, the two belt pulleys I are in transmission connection with each other through belts, the transmission rod I and the two side faces of the transmission rod II are fixedly sleeved with driving gears, the two driving gears are in meshed transmission, the supporting wheel I can drive the transmission rod II to rotate through the two belt pulleys I, and the transmission rod II can drive the transmission rod II to rotate through the two belt pulleys I, and thus the supporting wheels can drive the transmission rod to rotate through the transmission mechanism when the supporting wheels roll on the ground.
The method is further characterized in that: the tape measure module I comprises a side rod I and a side rod II, a winding rod is rotatably connected to the bottoms of two opposite surfaces of the side rod I and the side rod II, a tape roll in contact with the side rod II is wound on the side wall of the winding rod, when the measuring equipment moves, the tape roll can roll out the tape on the ground, the top of one side surface of the side rod I is rotatably connected with a connecting rod which is rotatably connected with a fixing block on the same side, the top of the two side surface of the side rod I is rotatably connected with a fixing rod which is fixedly connected with the fixing block on the same side, the fixing rod is rotatably connected with the connecting rod, the fixing rod can limit the position of the side rod II, a bevel gear II which is meshed with a bevel gear I is fixedly sleeved on the side surface of the connecting rod I, two pulleys II are connected through belt transmission, and the first bevel gear can drive the connecting rod to rotate through the bevel gear II, so that the tape roll out the tape roll.
The method is further characterized in that: the top of the two side surfaces of the side rod is fixedly connected with a lantern ring which is rotationally connected with the adjacent fixed block, a torsion spring I is arranged between the inner side surface of the lantern ring and the side wall of the fixed rod, and under the action of the torsion spring I, the tape roll can be stuck on the ground, so that the tape roll can roll on the ground.
The method is further characterized in that: the side lever one side fixedly connected with and tape reel side contact's butt plate, when the tape is rolled up, butt plate can block tape reel side, comb the tape, the sliding tray has been seted up to side that side lever two is located side lever one side, sliding tray medial surface sliding connection has the sliding block, sliding block side rotation is connected with the extrusion stem with tape reel contact, sliding block side fixedly connected with and sliding tray fixed connection's reset spring two, under reset spring two's effect, can make the extrusion stem press on the tape reel, like this when tape reel rolls up the tape, the extrusion stem can comb the tape, guarantees that the tape can be rolled up smoothly.
The method is further characterized in that: the side face fixedly connected with circle block that side lever two deviates from side lever one, backup pad bottom surface fixedly connected with screens module, screens module includes the connecting block, two medial surface equal sliding connection of connecting block have screens pole, circle block and the circular block of tape module two all with the arc side contact of the screens pole bottom of same side, can upwards remove tape module, circle block can extrude the screens pole, make screens pole to the connecting block remove, after the circular block removes screens pole top, screens pole removes to original position back, can block the circular block, make tape module a constant holding angle, so can make tape roll break away from with ground, avoid tape roll when rolling up tape, tape roll and bottom surface friction, screens pole side fixedly connected with and connecting block medial surface sliding connection's toothed bar, the connecting block medial surface rotates and is connected with the swivel ring, swivel ring lateral wall fixed transmission gear, two the toothed bar all with the transmission with the drive gear, two toothed bars can keep synchronous removal through the drive gear to the connecting block, can make two side blocks rotate simultaneously at the same time, can be close to two sides of the swivel blocks, can make tape roll down the inside the measuring tape to the side face of the measuring block, can make tape roll up simultaneously, can rotate the inside the side face of the measuring block, can be rotated simultaneously, can make two side face side blocks rotate the side face fixed with the side face of the measuring tape module, can be rotated simultaneously, can make tape roll down through the side face fixed to the measuring block, can be rotated simultaneously, can make the inside the measuring tape is rotated, simultaneously, can be used for measuring the side down, and is convenient for the side down one side to be adjusted to the measuring block, simultaneously, can be used to rotate, and is used to be adjusted to be used to be moved to the measuring block, simultaneously to be to the measuring. After the round block does not squeeze the clamping rod any more, under the action of the torsion spring II, the transmission gear can be rotated to the original position, so that the clamping rod can be moved to the original position, the operation is convenient, the tape measure module I or the tape measure module II can be lifted by feet, and the pull rod is moved by hands, so that the operation is performed by combining hands and feet, the operation time is reduced, and the use is convenient.
The method for using the land collection measuring equipment comprises the following specific using and operating steps:
step one: placing the mu measuring instrument in a placing box, rotating the tape measure module I upwards to enable the tape measure roll to be separated from the ground, blocking the round block by the clamping rod to enable the tape measure roll to be kept in a state separated from the ground, pushing the measuring equipment along the edge of the ground to enable the mu measuring instrument to start measuring, and enabling the tape measure roll of the tape measure module II to roll on the ground to discharge the tape measure for measuring;
step two: after the angle reaches the corner, observing the tape measure released by the tape measure module II, recording the length of one side of the land, and then rotating the tape measure module II upwards through the foot part, wherein the round block of the tape measure module II can enable the clamping rod to move, and under the action of the torsion spring I, the tape measure module can be rotated downwards to enable the tape measure roll to be in contact with the ground, and meanwhile, the clamping rod can block the round block of the tape measure module II, so that the tape measure roll of the tape measure module II is kept in a state separated from the bottom surface;
step three: the pull rod can be pulled by a hand, the pull rod can separate the bevel gear I from the bevel gear II, then the rotating plate can be rotated by the pull rod, the moving direction of the supporting wheel can be adjusted, and meanwhile, the bevel gear I is meshed with the bevel gear II of the tape measure module II;
step four: the measuring instrument can continuously move along the adjacent side of the land, so that the mu measuring instrument can continuously record the edge of the land, meanwhile, the tape can be continuously measured by paying out the tape, meanwhile, the supporting wheel can roll on the ground, and the supporting wheel enables the winding rod to rotate, so that the tape of the tape measure module II can be reeled up again;
step five: after walking around the edge of the land for one circle, recording the land area measured by the mu measuring instrument, and multiplying the length and the width of the land measured by the tape to obtain the land area.
The invention has the beneficial effects that:
1. the bevel gear I connected with the tape measure module I in a transmission way is fixedly sleeved on the side face of the loop bar, so that the mu measuring instrument can be placed on the placement module, when the measuring equipment is moved, the tape measure module II can emit the tape to measure one side of the land, after the measuring equipment reaches the corner, the loop bar can be rotated, so that the bevel gear I is in transmission connection with the tape measure module II, when the measuring equipment turns, the tape measure module I can enable the tape measure module II to roll up the tape measure through the bevel gear I, and the tape measure module I emits the tape to measure, when the measuring equipment moves, the measuring equipment can stay for a short time at the corner without influencing the measurement of the mu measuring instrument, and therefore, the two modes of measurement can be simultaneously carried out, the time is saved, and the measuring equipment is convenient to use;
2. the first torsion spring is arranged between the inner side surface of the sleeve ring and the side wall of the fixed rod, the tape roll can always keep contact with the ground under the action of the first torsion spring, so that the tape roll can roll on the ground to discharge the tape, the use is convenient, the first tape module can be rotated upwards through the second torsion spring arranged between the side surface of the positioning block and the inner side surface of the rotating ring, the clamping rod can block the round block, the tape roll is separated from the ground, friction between the tape roll and the bottom surface when the tape is discharged through the second tape module is avoided, the two clamping rods can be contracted when the second tape module is rotated upwards, the first tape module can be rotated downwards under the action of the first torsion spring, the second tape module can be clamped by the clamping rod, the operation is simple, the time is saved, and the influence on the measurement of an mu measuring instrument is avoided;
3. through the contact of extrusion rod and tape reel, under reset spring's effect, can make the extrusion rod keep with tape reel contact, when the roll-up tape, the extrusion rod can comb the tape like this, guarantees smooth rolling of tape.
Drawings
The invention is further described below with reference to the accompanying drawings.
FIG. 1 is a schematic view of the overall structure of a land collection measuring device and a method of using the same according to the present invention;
FIG. 2 is a top view of the apparatus of the present invention;
FIG. 3 is a front view of a placement module in the present invention;
FIG. 4 is a front view of an adjustment module of the present invention;
FIG. 5 is a schematic view of an adjusting mechanism in the present invention;
FIG. 6 is a schematic view of the round bar structure of the present invention;
FIG. 7 is an inside elevational view of the loop bar of the present invention;
FIG. 8 is a front view of the transmission of the present invention;
FIG. 9 is a schematic view of the bottom structure of the retaining ring of the present invention;
FIG. 10 is a schematic view of a first tape module and a second tape module according to the present invention;
FIG. 11 is a schematic view of a tape measure module according to the present invention;
FIG. 12 is an inside elevational view of the side bar of the present invention;
FIG. 13 is a side bar two interior elevation view of the present invention;
FIG. 14 is a schematic view of a latch module according to the present invention;
FIG. 15 is a top view of the interior of the connection block of the present invention;
fig. 16 is a schematic view of a rotating ring structure in accordance with the present invention.
In the figure: 100. a support plate; 110. a universal wheel; 120. pulling the frame; 130. a connecting plate; 140. a fixed block; 200. placing a module; 210. placing a box; 220. a buffer rod; 230. a buffer block; 240. a vertical rod; 250. a buffer spring; 300. an adjustment module; 310. an adjusting mechanism; 311. a rotating plate; 312. a support rod; 313. a clamping groove; 314. a fixing ring; 320. a round bar; 330. a rectangular block; 340. a transmission mechanism; 341. a fixed case; 342. a transmission rod I; 343. a transmission rod II; 350. a loop bar; 351. bevel gears I; 352. a rectangular rod; 353. a slip ring; 354. a baffle ring; 355. a first reset spring; 360. a pull rod; 370. a support base; 380. a rotating lever; 400. a tape measure module I; 410. a side lever I; 411. a retaining plate; 420. a side lever II; 421. round blocks; 422. a collar; 423. an extrusion rod; 424. a sliding groove; 425. a sliding block; 426. a second reset spring; 430. a connecting rod; 431. bevel gears II; 440. a winding rod; 450. tape reel; 460. a fixed rod; 470. a torsion spring I; 500. a clamping module; 510. a connecting block; 520. a clamping rod; 530. a toothed bar; 540. a positioning block; 550. a transmission gear; 560. a rotating ring; 570. a torsion spring II; 600. and a tape measure module II.
Detailed Description
The technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention, and it is apparent that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-16, a measuring device for collecting soil includes a supporting plate 100 and an adjusting module 300, wherein a placement module 200 is fixedly connected to the top surface of the supporting plate 100, a measuring instrument can be placed on the placement module 200, and then the measuring device is pushed along the soil edge to measure the soil, the top of the supporting plate 100 is provided with a connecting plate 130, four corners of the bottom surface of the connecting plate 130 are respectively fixed with a fixed block 140 fixedly connected with the supporting plate 100, two sides adjacent to the top of the supporting plate 100 are respectively provided with a first tape module 400 and a second tape module 600 with the same structure, the adjusting module 300 includes an adjusting mechanism 310, the top surface of the connecting plate 130 is fixedly connected with the adjusting mechanism 310, a round rod 320 penetrating through the supporting plate 100 is fixedly connected to the bottom of the adjusting mechanism 310, a supporting seat 370 is fixedly connected to the bottom end of the round rod 320, a supporting wheel is rotatably connected to the inner side of the supporting seat 370, the side wall of the round bar 320 is fixedly connected with a rectangular block 330, the side surface of the rectangular block 330 is rotationally connected with a rotating bar 380, the side surface of the rotating bar 380 is provided with a sleeve bar 350, the side surface of the sleeve bar 350 is fixedly sleeved with a bevel gear I351 which is in transmission connection with a tape measure module I400, the side wall of the rotating bar 380 is in transmission connection with a transmission mechanism 340 which is in transmission connection with a supporting wheel, when the measuring equipment moves, the tape measure module II 600 can discharge a tape measure to measure the edge of the land, and when the measuring equipment moves continuously through a corner, the position of the bevel gear I351 can be adjusted, the bevel gear I351 is in transmission connection with the tape measure module II 600, at the moment, the tape measure module I400 discharges the edge length of the land, meanwhile, the supporting wheel can rotate the rotating bar 380 through the sleeve bar 350 and the bevel gear I351 to drive the tape measure module II 600 to roll up the tape measure the edge, because survey mu appearance should not stop longer time as far as possible in land corner, can avoid the tape that the manual roll-up of corner was released like this for stay longer, influence survey the measuring condition of mu appearance, thereby can carry out the measurement of two modes simultaneously, and need not manual roll-up tape and be favorable to saving time, facilitate the use, after the roll-up tape, can carry out twice to the length and the width at land edge simultaneously, be favorable to improving the degree of accuracy of measurement.
Four corners of the bottom surface of the supporting plate 100 are fixedly connected with bearing rods, the bottom surface of each bearing rod is rotationally connected with a universal wheel 110, the universal wheels 110 are convenient to move, the top surface of the supporting plate 100 deviates from the corner fixedly connected with a pulling frame 120 of the first tape measure module 400 and the second tape measure module 600, and measuring equipment can be moved through the pulling frame 120. Place module 200 includes pole setting 240, pole setting 240 bottom and backup pad 100 top surface fixed connection, the buffer tank has been seted up to pole setting 240 top surface, buffer tank medial surface sliding connection has buffer rod 220, buffer rod 220 top fixedly connected with places box 210, buffer rod 220 bottom fixedly connected with and buffer tank sliding connection's buffer block 230, buffer block 230 top surface and the equal fixedly connected with of bottom surface and buffer tank medial surface fixed connection's buffer spring 250, can place the survey mu appearance in placing box 210, at this moment two buffer springs 250 can carry out the bradyseism to survey mu appearance.
The inner side surface of the loop bar 350 is fixedly connected with a rectangular bar 352 which is in sliding connection with a rotating bar 380, the rotating bar 380 can drive the loop bar 350 to rotate through the rectangular bar 352, the inner side surface of the loop bar 350 is fixedly connected with a first return spring 355 which is fixedly connected with the rotating bar 380, under the action of the first return spring 355, the position of the first bevel gear 351 can be kept, the first bevel gear 351 is kept in a state of being in transmission connection with the first tape module 400, the outer side surface of the loop bar 350 is fixedly connected with a baffle ring 354, the side surface of the baffle ring 354, which is away from one side of the rotating bar 380, is provided with a sliding ring 353 which is in sliding connection with the loop bar 350, the top of the side wall of the sliding ring 353 is fixedly connected with a pull rod 360, and the pull rod 360 can drive the baffle ring 354 to move through the sliding ring 353, so that the loop bar 350 can drive the first bevel gear 351 to be separated from the first tape module 400, the position of the first bevel gear 351 can be conveniently rotated and adjusted, and the first bevel gear 600 is in transmission connection with the second tape module 600.
The adjusting mechanism 310 comprises a fixed ring 314, four supporting rods 312 fixedly connected with the top surface of the connecting plate 130 at equal intervals are annularly and fixedly connected to the bottom surface of the fixed ring 314, the supporting rods 312 can support the fixed ring 314, a rotating plate 311 is rotatably connected to the inner side surface of the fixed ring 314, the bottom surface of the rotating plate 311 is fixedly connected with the top end of the round rod 320, the rotating plate 311 can support the round rod 320, the top of the side wall of the pull rod 360 is slidably connected with the inner side surface of the rotating plate 311, four clamping grooves 313 are annularly and equidistantly formed in the inner side surface of the bottom of the fixed ring 314, the side surface of the pull rod 360 is slidably connected with the inner side surface of one clamping groove 313, under the action of a first return spring 355, the pull rod 360 can be clamped in the clamping grooves 313, the clamping grooves 313 can limit the position of the pull rod 360, so that the position of the sleeve rod 350 is limited, the rotation of the first bevel gear 351 is avoided, after the end, the first bevel gear 351 can be rotated to a position separated from the first tape module 400 and the second tape module 600, and then the position of the pull rod 360 is clamped through the clamping grooves 313.
The transmission mechanism 340 includes a fixed shell 341, a rectangular block 330 and a support seat 370 side are fixedly connected with the fixed shell 341 side, and the fixed shell 341 side is rotatably connected with a rotating rod 380 side wall, the top and the bottom of the inner side of the fixed shell 341 are respectively provided with a first belt pulley, and the rotating rod 380 side wall is fixedly sleeved with a first belt pulley positioned at the top, the bottom of the inner side of the fixed shell 341 is rotatably connected with a first transmission rod 342 in transmission connection with a support wheel, and the second transmission rod 343 side wall is fixedly sleeved with a first belt pulley positioned at the bottom, the first belt pulleys are in transmission connection with a second transmission rod 343 through belts, the first transmission rod 342 and the second transmission rod 343 side are fixedly sleeved with driving gears, the two driving gears are meshed for transmission, the first transmission rod 342 can drive the second transmission rod 343 to rotate through the two driving gears, and the second transmission rod 343 can drive the rotating rod 380 to rotate through the two first belt pulleys, so that when the support wheels roll on the ground, the first transmission rod 380 can be driven through the transmission mechanism 340.
The tape measure module 400 comprises a first side rod 410 and a second side rod 420, a winding rod 440 is rotatably connected to the bottom of the opposite surface of the first side rod 410 and the second side rod 420, a tape roll 450 contacted with the second side rod 420 is wound on the side wall of the winding rod 440, when the measuring equipment moves, the tape roll 450 can roll and discharge the tape on the ground, a connecting rod 430 rotatably connected with the same side fixing block 140 is rotatably connected to the top of the side surface of the first side rod 410, a fixing rod 460 fixedly connected with the same side fixing block 140 is rotatably connected to the top of the side surface of the second side rod 420, the fixing rod 460 is rotatably connected with the connecting rod 430, the position of the second side rod 420 can be limited, a bevel gear 431 meshed with a bevel gear 351 is fixedly sleeved on the side surface of the connecting rod 430, two pulleys two are fixedly sleeved on the side surfaces of the connecting rod 430 and the winding rod 440, the two pulleys are connected through belt transmission, the bevel gear 351 can drive the connecting rod 430 to rotate through the bevel gear 431, and the connecting rod 430 can drive the winding rod 440 to rotate through the pulley two pulleys so that the tape roll 450 can wind up the released tape.
The top of the side surface of the second side rod 420 is fixedly connected with a lantern ring 422 which is rotationally connected with the adjacent fixed block 140, a first torsion spring 470 is arranged between the inner side surface of the lantern ring 422 and the side wall of the fixed rod 460, and under the action of the first torsion spring 470, the tape roll 450 can be stuck on the ground, so that the tape roll 450 can roll on the ground. The side of the side lever I410 is fixedly connected with the retaining plate 411 contacted with the side surface of the tape roll 450, when the tape is rolled up, the retaining plate 411 can retain the side surface of the tape roll 450, the tape is combed, the side surface of the side lever II 420 positioned on one side of the side lever I410 is provided with the sliding groove 424, the inner side surface of the sliding groove 424 is slidably connected with the sliding block 425, the side surface of the sliding block 425 is rotationally connected with the extrusion rod 423 contacted with the tape roll 450, the side surface of the sliding block 425 is fixedly connected with the reset spring II 426 fixedly connected with the sliding groove 424, and under the action of the reset spring II 426, the extrusion rod 423 can be pressed on the tape roll 450, so when the tape roll 450 is rolled up, the extrusion rod 423 can comb the tape, and the tape can be smoothly rolled up.
The side surface of the side rod two 420, which is away from the side rod one 410, is fixedly connected with a round block 421, the bottom surface of the supporting plate 100 is fixedly connected with a clamping module 500, the clamping module 500 comprises a connecting block 510, two inner side surfaces of the connecting block 510 are both connected with clamping rods 520 in a sliding manner, the round block 421 and the round block 421 of the tape module two 600 are both contacted with the arc-shaped side surface of the bottom of the clamping rod 520 on the same side, the tape module one 400 can be moved upwards, the round block 421 can squeeze the clamping rod 520 to enable the clamping rod 520 to move towards the connecting block 510, after the round block 421 moves to the upper side of the clamping rod 520, the clamping rod 520 can block the round block 421 after moving to the original position, so that the tape module one 400 keeps the angle unchanged, thus the tape roll 450 can be separated from the ground, the tape roll 450 is prevented from rubbing with the bottom surface when the tape is rolled up, the side surface of the clamping rod 520 is fixedly connected with a toothed rod 530 which is connected with the inner side surface of the connecting block 510 in a sliding manner, the inner side surface of the connecting block 510 is rotationally connected with a rotating ring 560, the outer side wall of the rotating ring 560 is fixedly sleeved with a transmission gear 550, the two toothed bars 530 are meshed with the transmission gear 550 for transmission, the two toothed bars 530 can synchronously move through the transmission gear 550, so that the two clamping bars 520 can simultaneously move close to or far away from the connecting block 510, when the tape measure module II 600 is rotated upwards, the round block 421 of the tape measure module II 600 can squeeze the clamping bars 520 to simultaneously retract the two clamping bars 520, at the moment, under the action of the torsion spring II 470, the tape measure module I400 can be rotated downwards, so that the tape measure module I400 can be contacted with the ground at the corner, thereby measuring by paying out the tape measure through the tape measure module I400, and simultaneously, by rolling up the tape measure module II 600, the operation is simple, the time is convenient to save, the inside locating piece 540 that is provided with connecting block 510 medial surface fixed connection of swivel ring 560, locating piece 540 side and swivel ring 560 medial surface are provided with torsion spring two 570, after the rotary block 421 no longer extrudees screens pole 520, under the effect of torsion spring two 570, can make drive gear 550 rotate to original position, thereby make screens pole 520 remove original position, be convenient for operate, and can lift tape measure module one 400 or tape measure module two 600 through the foot, and operate through hand movement pull rod 360, be favorable to reducing operating time through the hand and foot combination like this, convenient to use.
The method for using the land collection measuring equipment comprises the following specific using and operating steps:
step one: placing the mu measuring instrument in the placing box 210, rotating the tape measure module I400 upwards to separate the tape measure roll 450 from the ground, wherein the clamping rod 520 can block the round block 421 to keep the tape measure roll 450 separated from the ground, and pushing the measuring equipment along the edge of the ground to start measuring the mu measuring instrument, and simultaneously, rolling the tape measure roll 450 of the tape measure module II 600 on the ground to discharge the tape measure for measurement;
step two: after reaching the corner, observing the tape measure released by the second tape measure module 600, recording the length of one side of the land, and then rotating the second tape measure module 600 upwards through the foot, wherein the round block 421 of the second tape measure module 600 can enable the clamping rod 520 to move, and under the action of the first torsion spring 470, the first tape measure module 400 can be rotated downwards to enable the tape measure roll 450 to be in contact with the ground, and meanwhile, the clamping rod 520 can block the round block 421 of the second tape measure module 600, so that the tape measure roll 450 of the second tape measure module 600 is kept in a state separated from the bottom surface;
step three: the pull rod 360 can be pulled by a hand, the pull rod 360 can separate the bevel gear one 351 from the bevel gear two 431, then the rotating plate 311 can be rotated by the pull rod 360 to adjust the moving direction of the supporting wheel, and meanwhile, the bevel gear one 351 is meshed with the bevel gear two 431 of the tape measure module two 600;
step four: the tape measure device can continuously move along the adjacent side of the land, so that the mu measuring instrument can continuously record the edge of the land, meanwhile, the tape roll 450 can continuously measure the released tape, meanwhile, the supporting wheel can roll on the ground, and the supporting wheel enables the winding rod 440 to rotate, so that the tape roll 450 of the tape measure module II 600 can re-wind the released tape;
step five: after walking around the edge of the land for one circle, recording the land area measured by the mu measuring instrument, and multiplying the length and the width of the land measured by the tape to obtain the land area.
Working principle: when the measuring instrument is used, the mu meter is placed in the placing box 210, the first measuring tape module 400 is rotated upwards, at the moment, the round block 421 can extrude the clamping rod 520, after the round block 421 moves to the position above the clamping rod 520, the tape roll 450 can be separated from the ground, meanwhile, under the action of the second torsion spring 570, the transmission gear 550 can rotate to the original position, the transmission gear 550 can enable the clamping rod 520 to move to the original position through the toothed bar 530, the clamping rod 520 can block the round block 421, the tape roll 450 can keep a state of separating from the ground, then the measuring equipment can be pushed along the edge of the ground, so that the measuring instrument starts to measure, and meanwhile, under the action of the torsion spring 470 of the first measuring tape module 600, the tape roll 450 of the second measuring tape module 600 can be attached to the ground, and the tape roll 450 of the second measuring tape module 600 can roll on the ground to release the tape;
after one side of the land is finished and reaches the corner, observing the tape measure discharged by the tape measure module II 600, recording the length of one side of the land, then rotating the tape measure module II 600 upwards through the foot, enabling the round block 421 of the tape measure module II 600 to move the clamping rods 520, enabling the two clamping rods 520 to simultaneously move towards the connecting block 510 through the transmission gear 550, enabling the tape measure module I400 to rotate downwards under the action of the torsion spring I470 to enable the tape measure roll 450 to be in contact with the ground, enabling the clamping rods 520 to move to the original position to block the round block 421 of the tape measure module II 600 under the action of the torsion spring II 570 after the round block 421 of the tape measure module II 600 moves to the top of the clamping rods 520, and enabling the tape measure roll 450 of the tape measure module II 600 to keep a state separated from the bottom surface;
when the positions of the first tape measure module 400 and the second tape measure module 600 are adjusted, the pull rod 360 can be pulled by hands to separate the pull rod 360 from the clamping groove 313, the pull rod 360 can drive the baffle ring 354 to move through the sliding ring 353, so that the sleeve rod 350 can drive the first bevel gear 351 to move towards the rotating rod 380, the first bevel gear 351 can be separated from the second bevel gear 431, then the rotating plate 311 can be rotated through the pull rod 360, the rotating plate 311 can drive the supporting wheel to rotate through the round rod 320 and the supporting seat 370, the moving direction of the supporting wheel is adjusted, meanwhile, the first bevel gear 351 can be rotated towards the second tape measure module 600, when the first bevel gear 351 is opposite to the second bevel gear 431 of the second tape measure module 600, the pull rod 360 can be opposite to the clamping groove 313 on one side of the second tape measure module 600, at the moment, under the action of the reset spring 355, the sleeve rod 350 can drive the pull rod 360 to move through the baffle ring 354, so that the pull rod 360 is clamped in the clamping groove 313, and meanwhile, the first bevel gear 351 can be moved towards the second bevel gear 600, so that the first bevel gear 351 is meshed with the second bevel gear 431 of the second tape measure module 600;
after the adjustment is completed, the measuring instrument can move along the adjacent side of the land, the measuring instrument can continuously record the edge of the land, meanwhile, the tape roll 450 can discharge the tape for measurement, meanwhile, the supporting wheel can roll on the ground, the supporting wheel can drive the rotating rod 380 to rotate through the transmission mechanism 340, the rotating rod 380 can drive the sleeve rod 350 to rotate through the rectangular rod 352, the sleeve rod 350 can drive the connecting rod 430 of the tape measure module II 600 to rotate through the bevel gear 351 and the bevel gear II 431, the connecting rod 430 can drive the winding rod 440 to rotate through the two pulleys II, the tape roll 450 of the tape measure module II 600 can rotate, the discharged tape can be rewound, after reaching the next corner, the position of the measuring equipment can be adjusted, the tape measure module II 600 is positioned at the rear part in the measuring travelling direction, the measurement is carried out through the tape measure module II 600, and the tape measure module II 400 is wound.
In the description of the present specification, the descriptions of the terms "one embodiment," "example," "specific example," and the like, mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The foregoing is merely illustrative and explanatory of the invention, as various modifications and additions may be made to the particular embodiments described, or in a similar manner, by those skilled in the art, without departing from the scope of the invention or exceeding the scope of the invention as defined in the claims.
Claims (5)
1. The measuring equipment for land collection is characterized by comprising a supporting plate (100) and an adjusting module (300), wherein the top surface of the supporting plate (100) is fixedly connected with a placement module (200), the top of the supporting plate (100) is provided with a connecting plate (130), four corners of the bottom surface of the connecting plate (130) are fixedly connected with fixed blocks (140) fixedly connected with the supporting plate (100), two adjacent sides of the top of the supporting plate (100) are respectively provided with a tape measure module I (400) and a tape measure module II (600) with the same structure, the adjusting module (300) comprises an adjusting mechanism (310), the top surface of the connecting plate (130) is fixedly connected with the adjusting mechanism (310), the bottom of the adjusting mechanism (310) is fixedly connected with a round rod (320) penetrating through the supporting plate (100), the bottom end of the round rod (320) is fixedly connected with a supporting seat (370), the inner side surface of the supporting seat (370) is rotationally connected with a supporting wheel, the side surface of the round rod (320) is fixedly connected with a rectangular block (330), the side surface of the rectangular block (330) is rotationally connected with a rotating rod (380), the side surface of the rotating rod (380) is provided with a bevel gear (350), the sleeve rod (350) is connected with the side surface of the bevel gear (351), the side wall of the rotating rod (380) is in transmission connection with a transmission mechanism (340) in transmission connection with the supporting wheel;
the placement module (200) comprises a vertical rod (240), the bottom end of the vertical rod (240) is fixedly connected with the top surface of the supporting plate (100), a buffer groove is formed in the top surface of the vertical rod (240), a buffer rod (220) is slidably connected to the inner side surface of the buffer groove, a placement box (210) is fixedly connected to the top end of the buffer rod (220), a buffer block (230) is fixedly connected to the bottom end of the buffer rod (220) and is slidably connected with the buffer groove, and buffer springs (250) are fixedly connected to the top surface and the bottom surface of the buffer block (230) and are fixedly connected with the inner side surface of the buffer groove;
the inner side surface of the loop bar (350) is fixedly connected with a rectangular bar (352) which is in sliding connection with the rotating bar (380), the inner side surface of the loop bar (350) is fixedly connected with a first reset spring (355) which is fixedly connected with the rotating bar (380), the outer side surface of the loop bar (350) is fixedly connected with a baffle ring (354), the side surface of one side of the baffle ring (354) deviating from the rotating bar (380) is provided with a sliding ring (353) which is in sliding connection with the loop bar (350), and the top of the side wall of the sliding ring (353) is fixedly connected with a pull bar (360);
the adjusting mechanism (310) comprises a fixed ring (314), four supporting rods (312) fixedly connected with the top surface of the connecting plate (130) at equal intervals are fixedly connected to the bottom surface of the fixed ring (314), a rotating plate (311) is rotationally connected to the inner side surface of the fixed ring (314), the bottom surface of the rotating plate (311) is fixedly connected with the top end of the round rod (320), the top of the side wall of the pull rod (360) is slidingly connected with the inner side surface of the rotating plate (311), four clamping grooves (313) are annularly formed in the inner side surface of the bottom of the fixed ring (314) at equal intervals, and the side surface of the pull rod (360) is slidingly connected with the inner side surface of one clamping groove (313);
the transmission mechanism (340) comprises a fixed shell (341), the side surfaces of the rectangular block (330) and the supporting seat (370) are fixedly connected with the side surfaces of the fixed shell (341), the side surfaces of the fixed shell (341) are rotationally connected with the side walls of the rotating rod (380), the top and the bottom of the inner side surface of the fixed shell (341) are respectively provided with a belt pulley I, the side walls of the rotating rod (380) are fixedly sleeved with the belt pulley I positioned at the top, the bottom of the inner side surface of the fixed shell (341) is rotationally connected with a transmission rod I (342) in transmission connection with a supporting wheel, the inner side surface of the fixed shell (341) is rotationally connected with a transmission rod II (343), the side walls of the transmission rod II (343) are fixedly sleeved with the belt pulley I positioned at the bottom, the two belt pulleys I are in transmission connection through belts, the transmission rod I (342) and the side surfaces of the transmission rod II (343) are fixedly sleeved with driving gears, and the two driving gears are in meshed transmission;
the tape measure module I (400) comprises a side rod I (410) and a side rod II (420), a winding rod (440) is rotatably connected to the bottom of the opposite surface of the side rod I (410) and the side rod II (420), a tape roll (450) in contact with the side rod II (420) is wound on the side wall of the winding rod (440), a connecting rod (430) in rotary connection with the same side fixing block (140) is rotatably connected to the top of the side surface of the side rod I (410), a fixing rod (460) in rotary connection with the same side fixing block (140) is rotatably connected to the top of the side rod II (420), a bevel gear II (431) in meshed transmission with the bevel gear I (351) is fixedly sleeved on the side surface of the connecting rod (430), a belt pulley II is fixedly sleeved on the side surface of the inside of the side rod I (410), and the two belt pulleys II are connected through belt transmission.
2. The measuring device for land collection as claimed in claim 1, wherein four corners of the bottom surface of the supporting plate (100) are fixedly connected with bearing rods, universal wheels (110) are rotatably connected to the bottom surfaces of the bearing rods, and pulling frames (120) are fixedly connected to corners of the top surface of the supporting plate (100) away from the first tape measure module (400) and the second tape measure module (600).
3. The soil collection measuring device according to claim 1, wherein a collar (422) rotationally connected with the adjacent fixed block (140) is fixedly connected to the top of the side face of the side bar two (420), and a torsion spring one (470) is arranged between the inner side face of the collar (422) and the side wall of the fixed bar (460).
4. The measuring device for land collection as claimed in claim 1, wherein the side of the side lever one (410) is fixedly connected with a retaining plate (411) contacted with the side of the tape roll (450), the side of the side lever two (420) positioned on one side of the side lever one (410) is provided with a sliding groove (424), the inner side of the sliding groove (424) is slidingly connected with a sliding block (425), the side of the sliding block (425) is rotationally connected with an extrusion rod (423) contacted with the tape roll (450), and the side of the sliding block (425) is fixedly connected with a return spring two (426) fixedly connected with the sliding groove (424).
5. A method of using a soil assessment measuring apparatus according to claim 3, wherein the specific steps of using the apparatus are:
step one: placing the mu measuring instrument in a placing box (210), rotating the tape measure module I (400) upwards to separate the tape measure roll (450) from the ground, blocking the round block (421) by the clamping rod (520) to keep the tape measure roll (450) in a state separated from the ground, pushing the measuring equipment along the edge of the ground to start measuring the mu measuring instrument, and simultaneously rolling the tape measure roll (450) of the tape measure module II (600) on the ground to discharge the tape measure for measurement;
step two: after reaching the corner, observing the tape measure released by the second tape measure module (600), recording the length of one side of the land, then rotating the second tape measure module (600) upwards through the foot, enabling the round block (421) of the second tape measure module (600) to enable the clamping rod (520) to move, enabling the first tape measure module (400) to rotate downwards under the action of the first torsion spring (470) to enable the tape measure roll (450) to be in contact with the ground, and enabling the clamping rod (520) to block the round block (421) of the second tape measure module (600), so that the tape measure roll (450) of the second tape measure module (600) is kept in a state separated from the bottom surface;
step three: pulling the pull rod (360) by hand, wherein the pull rod (360) can separate the bevel gear I (351) from the bevel gear II (431), then, the pull rod (360) rotates the rotating plate (311) to adjust the moving direction of the supporting wheel, and simultaneously, the bevel gear I (351) is meshed with the bevel gear II (431) of the tape measure module II (600);
step four: the tape measure instrument continuously records the edge of the land along the adjacent side of the land, simultaneously the tape is continuously measured by the tape reel (450), and simultaneously the supporting wheel rolls on the ground, so that the winding rod (440) is rotated by the supporting wheel, and the tape reel (450) of the tape measure module II (600) re-winds the released tape;
step five: after walking around the edge of the land for one circle, recording the land area measured by the mu measuring instrument, and multiplying the length and the width of the land measured by the tape to obtain the land area.
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CN114251996A (en) * | 2021-12-15 | 2022-03-29 | 徐庆光 | Land classification area measuring and calculating device for land management |
CN114413715B (en) * | 2022-01-11 | 2024-06-11 | 孙华英 | Land mapping device |
CN115560656B (en) * | 2022-10-25 | 2023-07-14 | 山东省地质测绘院 | Multi-functional area measurement and calculation device for land management |
CN116878376A (en) * | 2023-09-07 | 2023-10-13 | 莱芜金诚土地估价有限责任公司 | Land classification area measuring and calculating equipment and method |
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JP2001343238A (en) * | 2000-06-02 | 2001-12-14 | Topcon Corp | Position-measuring device and method |
CN211503981U (en) * | 2020-03-25 | 2020-09-15 | 李珊 | Land area management device for urban and rural planning |
CN211876996U (en) * | 2020-05-10 | 2020-11-06 | 司淑姣 | Area measuring device for land planning |
CN112923833A (en) * | 2021-03-02 | 2021-06-08 | 韦江和 | Land area measuring device |
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JP2001343238A (en) * | 2000-06-02 | 2001-12-14 | Topcon Corp | Position-measuring device and method |
CN211503981U (en) * | 2020-03-25 | 2020-09-15 | 李珊 | Land area management device for urban and rural planning |
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CN112923833A (en) * | 2021-03-02 | 2021-06-08 | 韦江和 | Land area measuring device |
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