A measuring device for architectural landscape design

By employing a dual-measuring wheel design and automated functions, the problems of inaccurate measurements and insufficient area marking in wheeled surveying instruments on narrow corners and complex terrains have been solved, enabling efficient and accurate architectural landscape surveying.

CN121163340BActive Publication Date: 2026-05-08HONGYI CONSTR ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HONGYI CONSTR ENG CO LTD
Filing Date
2025-10-14
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing wheeled surveying instruments are inaccurate in narrow corners and have limited functionality. They are unable to mark and manage areas in complex terrain, resulting in large measurement errors and scattered data.

Method used

It adopts a dual measuring wheel design, combined with hydraulic push rods, automatic application of reflective strips and tape, intelligent roller pressure adjustment, and cleaning and automatic cutting functions to achieve continuous distance measurement and area marking.

Benefits of technology

To improve the stability and accuracy of measurements in complex terrain, reduce human error, enhance automation, and ensure clear visualization of the measurement area and standardized construction practices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of architectural design, in particular to a measuring device for architectural landscape design, which comprises a protective shell, a handle is fixedly installed at the top end of the protective shell, a plurality of symmetrical rollers are rotatably installed at the bottom end of the protective shell, a counter is fixedly installed on one side of the protective shell, a first measuring wheel is rotatably installed at the end of the counter away from the protective shell, and a pointer is installed on the rotating shaft at the center of the first measuring wheel. The measuring stability and precision under complex terrain are remarkably improved through the functions of double-measuring-wheel design, automatic light-reflecting strip pasting, intelligent roller pressing adjustment, cleaning and automatic cutting, the display mode of automatic pasting and continuous light strip boundary makes the measuring area more intuitive and clear, the traditional manual operation error is avoided, the efficiency and safety are taken into account, and the reliability and intelligent level of the architectural and landscape measuring work are improved as a whole.
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Description

Technical Field

[0001] This invention relates to the field of architectural design technology, and more particularly to a measuring device for architectural landscape design. Background Technology

[0002] In the early stages of architectural landscape design, designers often need to first define the boundaries of the site, such as the four boundaries of residential areas, parks, or commercial land. To efficiently obtain the length information of these boundaries, a common method is to conduct on-site measurements using a wheeled measuring instrument. Wheeled measuring instruments are simple in structure and easy to use; simply pushing its measuring wheel along the ground records the number of rotations via an internal counting device, thus calculating the corresponding distance. Therefore, they have wide applications in architectural planning, landscape layout, and construction setting-out.

[0003] However, existing wheeled measuring instruments still have significant shortcomings in practical use: on the one hand, in narrow corners of a site, such as building corners or equipment room corners, the measuring wheel often cannot fully contact the ground and roll smoothly, leading to measurement interruptions or errors and affecting overall accuracy; on the other hand, traditional wheeled measuring instruments have limited functionality, only capable of measuring linear distances, and cannot divide, mark, or record the measured area. This can easily lead to data dispersion and unclear positioning in subsequent planning and design. Therefore, there is an urgent need for a new device that can accommodate measurements in confined spaces and has area marking and management functions to overcome the shortcomings of existing technologies. Summary of the Invention

[0004] The purpose of this invention is to solve the aforementioned problems existing in the prior art, and to propose a measuring device for architectural landscape design.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a measuring device for architectural landscape design, comprising a protective housing, a handle fixedly installed at the top of the protective housing, a plurality of symmetrically arranged rollers rotatably installed at the bottom of the protective housing, a counter fixedly installed on one side of the protective housing, a first measuring wheel rotatably installed at the end of the counter away from the protective housing, and a pointer installed on the rotating shaft at the center of the first measuring wheel;

[0006] Inside the protective housing, a tape is wound up at the front. A mounting frame and a fixing frame are arranged in sequence at the rear of the wound tape. The lower end of the mounting frame is provided with a third limiting roller, a first pressing roller, and a second pressing roller in sequence from front to back. The fixing frame is provided with a punching mechanism, a compaction mechanism, and a cutting device in sequence from front to back. One end of the tape passes under the third limiting roller, the first pressing roller, the second pressing roller, the punching mechanism, the compaction mechanism, and the cutting device in sequence, and extends to the outside of the protective housing.

[0007] Preferably, a roller is rotatably mounted on the other side of the protective housing, and the roller has the same diameter as the first measuring roller.

[0008] Preferably, a hydraulic push rod is fixedly installed on the side wall of the protective housing below the counter. The telescopic end of the hydraulic push rod faces the direction of overall movement of the device. A second measuring wheel is rotatably installed at the end of the telescopic end of the hydraulic push rod. The second measuring wheel is connected to the counter via wireless communication technology. The second measuring wheel is used to measure positions that the first measuring wheel cannot measure.

[0009] Preferably, the third limiting roller, the first pressing roller, and the second pressing roller are all rotatably mounted below the mounting frame. Both ends of the first pressing roller and the second pressing roller are rotatably mounted with L-shaped connecting rods. The upper part of the L-shaped connecting rod has a cavity, and a spring is installed below the cavity. The upper part of the L-shaped connecting rod is provided with a first electric telescopic rod fixedly mounted on the bottom wall of the mounting frame. The telescopic end of the first electric telescopic rod is slidably inserted into the cavity inside the L-shaped connecting rod and fixedly connected to the spring.

[0010] Preferably, the surface of the first pressing roller is evenly distributed with rubber bumps, with square bumps at the center of the surface and round bumps at the two side edges.

[0011] Preferably, the punching mechanism includes a plurality of second electric telescopic rods symmetrically fixedly installed on the bottom wall of the fixed frame. The telescopic ends of the plurality of second electric telescopic rods are jointly fixedly connected to a mounting frame. Needles are evenly distributed on the bottom wall of the mounting frame. A limiting strip is provided on one side below the mounting frame and fixedly connected to the bottom wall of the protective housing.

[0012] Preferably, a second take-up shaft is rotatably mounted on one side of the fixed frame, and a reflective strip is wound on the second take-up shaft. A first limiting roller is rotatably mounted between the fixed frame and the second take-up shaft. A take-up roller is rotatably mounted on the other side of the fixed frame. The take-up roller is driven by a first motor. A second limiting roller is rotatably mounted between the take-up roller and the fixed frame. The end of the reflective strip away from the second take-up shaft is wound onto the take-up roller after passing under the first limiting roller, between the needle and the limiting strip, and under the second limiting roller in sequence.

[0013] Preferably, the compaction mechanism includes a lead screw rotatably mounted inside the fixed frame, the lead screw being driven by a stepper motor fixedly mounted on the fixed frame, a sliding block being mounted on the lead screw, and two fourth electric telescopic rods symmetrically arranged being fixedly mounted at the lower end of the sliding block, and a third pressing roller being rotatably mounted between the telescopic ends of the two fourth electric telescopic rods, the third pressing roller being located inside the mounting frame and in contact with the upper surface of the reflective strip.

[0014] Preferably, a third electric telescopic rod is fixedly installed between the cutting device and the lower rear side of the sliding block, and the third electric telescopic rod is used to adjust the height of the cutting device.

[0015] Preferably, two symmetrically arranged cleaning brushes are rotatably mounted on the bottom front of the protective housing. The two cleaning brushes rotate in opposite directions, and both cleaning brushes are driven by a second motor fixedly mounted on the bottom wall of the protective housing.

[0016] Compared with existing technologies, the advantages of this invention are:

[0017] 1. This invention employs a dual-measuring-wheel design, which effectively disperses pressure on common gravel, potholes, or uneven surfaces, maintaining stability during the measurement process. It avoids wheel offset and jumping caused by uneven force on a single wheel, thereby reducing measurement errors. In corners or narrow areas, a hydraulic push rod drives the second measuring wheel to extend the measurement, achieving continuous distance measurement without the need for manual estimation or segmented processing. This effectively reduces errors caused by human operation, making the measurement results more accurate and reliable, and meeting the measurement needs of complex terrains such as buildings and landscapes.

[0018] 2. During the measurement process, the present invention can automatically attach the reflective strip to the tape through the mounting frame and pressing roller mechanism, avoiding the inefficiency and instability caused by repeated manual pasting, and ensuring that the reflective strip is evenly attached to the tape surface. During the tape laying process, the first pressing roller or the second pressing roller can be automatically selected for rolling according to the ground conditions, which can ensure smooth pasting on flat ground and enhance friction and adhesion on rugged or soft ground, effectively improving the tape fixing effect and the clarity of the measurement area boundary.

[0019] 3. In the tape pressing process, the first pressing roller of this invention is equipped with two types of rubber protrusions, square and round. By combining the high extrusion pressure of the square protrusions with the smoothness of the round protrusions, a uniform and stable rolling effect is achieved, effectively avoiding local stress concentration and ensuring the tight adhesion between the tape and the ground. At the same time, the rolling assembly, together with the spring buffer structure, can flexibly adapt to the undulations of the ground and improve the smoothness of the rolling. During the rolling of the first measuring wheel, this device can automatically lay the tape and reflective strips to form a continuous light strip boundary, clearly marking the measurement range and enhancing the visibility at key points.

[0020] 4. The cleaning brush at the bottom of the device automatically cleans the path before the tape is laid, removing dust, gravel, and other debris to provide a clean base for the tape, ensuring adhesion and firmness. When the tape needs to be cut, the cutting device can achieve automated cutting driven by the electric telescopic rod and lead screw, avoiding manual bending and hand tool operation, reducing labor intensity and safety hazards. Through automatic cleaning and cutting functions, the device not only improves the automation level of measurement operations, but also further ensures the standardization and efficiency of the construction process, significantly improving the shortcomings of traditional measurement methods.

[0021] In summary, this invention significantly improves measurement stability and accuracy in complex terrains through its dual measuring wheel design, automatic reflective strip application, intelligent roller pressure adjustment, cleaning, and automatic cutting functions. Furthermore, the automated application and continuous light strip boundary display make the measurement area more intuitive and clear, avoiding errors associated with traditional manual operations. Balancing efficiency and safety, this invention overall enhances the reliability and intelligence of architectural and landscape surveying work. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of a measuring device for architectural landscape design proposed in this invention. Figure 1 ;

[0023] Figure 2 This is a schematic diagram of the overall structure of a measuring device for architectural landscape design proposed in this invention. Figure 2 ;

[0024] Figure 3 This is a schematic diagram of the internal structure of a measuring device for architectural landscape design proposed in this invention;

[0025] Figure 4 This is a bottom view of a measuring device for architectural landscape design proposed in this invention;

[0026] Figure 5 This is a full sectional side view of a measuring device for architectural landscape design proposed in this invention;

[0027] Figure 6 for Figure 5 A magnified view of the details at point A;

[0028] Figure 7 This is a full sectional front view of a measuring device for architectural landscape design proposed in this invention;

[0029] Figure 8 This is a schematic diagram of the structure of the first pressing roller of a measuring device for architectural landscape design proposed in this invention.

[0030] Figure 9 This is a schematic diagram of the cutting device of a measuring device for architectural landscape design proposed in this invention.

[0031] Figure 10 This is a schematic diagram of the structure of the third pressing roller of a measuring device for architectural landscape design proposed in this invention;

[0032] Figure 11 This is a full sectional view of the L-shaped connecting rod of a measuring device for architectural landscape design proposed in this invention.

[0033] In the diagram: 1. Handle; 2. First measuring wheel; 3. Counter; 4. Hydraulic push rod; 5. Protective housing; 6. Adhesive tape; 7. Pointer; 8. Second measuring wheel; 9. Reflective strip; 10. First limiting roller; 11. Second limiting roller; 12. First motor; 13. Take-up roller; 14. Mounting frame; 15. Cutting device; 16. Fixing frame; 17. Third limiting roller; 18. First pressing roller; 19. Second pressing roller; 20. Roller; 21. Second motor; 22. Third pressing roller; 23. Cleaning brush; 24. Needle; 25. First electric telescopic rod; 26. L-shaped connecting rod; 27. Mounting frame; 28. Second electric telescopic rod; 29. ​​Third electric telescopic rod; 30. Fourth electric telescopic rod; 31. Sliding block; 32. Lead screw; 33. Spring; 34. Square protrusion; 35. Circular protrusion; 36. Limiting strip. Detailed Implementation

[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0035] Reference Figures 1 to 11 A measuring device for architectural landscape design includes a protective housing 5. A handle 1 is fixedly installed at the top of the protective housing 5, and multiple symmetrically arranged rollers 20 are rotatably installed at the bottom of the protective housing 5. The operator pushes the device forward by using the handle 1. A counter 3 is fixedly installed on one side of the protective housing 5. The counter 3 is existing technology, and its specific structural design will not be described here. A first measuring wheel 2 is rotatably installed at the end of the counter 3 away from the protective housing 5. A pointer 7 is installed on the central shaft of the first measuring wheel 2. The counter 3 is used to record the number of rotations of the first measuring wheel 2 and finally calculate the distance moved by the first measuring wheel 2. A rolling wheel is rotatably installed on the other side of the protective housing 5. The rolling wheel can be the first measuring wheel 2 or other rolling wheels with the same diameter as the first measuring wheel 2. By using the first measuring wheel 2 and the rolling wheel in cooperation, compared with the single wheel design in the prior art, the double wheel can better resist lateral forces and avoid wheel offset or jumping caused by ground protrusions or depressions, thereby reducing vibration and errors during the measurement process.

[0036] Below the counter 3, there is a hydraulic push rod 4 fixedly installed on the side wall of the protective housing 5. The telescopic end of the hydraulic push rod 4 faces the side of the overall forward direction of the device. The end of the telescopic end of the hydraulic push rod 4 is rotatably mounted with a second measuring wheel 8. The second measuring wheel 8 is connected to the counter 3 through wireless communication technology. The second measuring wheel 8 is used to measure the position that the first measuring wheel 2 cannot measure, and plays an auxiliary measurement role.

[0037] A first take-up shaft is rotatably connected to the front of the interior of the protective housing 5. The first take-up shaft winds up the tape 6. A fixing frame 16 is fixedly installed on the bottom wall of the inner wall of the protective housing 5 at the rear of the first take-up shaft. A mounting frame 27 is fixedly installed on the side wall of the protective housing 5 between the first take-up shaft and the fixing frame 16. The lower end of the mounting frame 27 is provided with a third limiting roller 17, a first pressing roller 18 and a second pressing roller 19 in sequence from front to back. The fixing frame 16 is provided with a punching mechanism, a compaction mechanism and a cutting device 15 in sequence from front to back. A through groove is opened on the bottom wall of the protective housing 5 for the third limiting roller 17, the first pressing roller 18 and the second pressing roller 19, the punching mechanism, the compaction mechanism and the cutting device 15 to work. One end of the tape 6 passes under the third limiting roller 17, the first pressing roller 18 and the second pressing roller 19, the punching mechanism, the compaction mechanism and the cutting device 15 in sequence and extends to the outside of the protective housing 5.

[0038] The third limiting roller 17 is rotatably mounted below the mounting frame 27 at a fixed height. The first pressing roller 18 and the second pressing roller 19 are rotatably mounted below the mounting frame 27 at adjustable heights. Specifically, L-shaped connecting rods 26 are rotatably mounted at both ends of the first pressing roller 18 and the second pressing roller 19. The upper part of the L-shaped connecting rod 26 has a cavity, and a spring 33 is installed below the cavity. The upper part of the L-shaped connecting rod 26 has a first electric telescopic rod 25 fixedly mounted on the bottom wall of the mounting frame 27. The telescopic end of the first electric telescopic rod 25 is slidably inserted into the cavity inside the L-shaped connecting rod 26 and fixedly connected to the spring 33. This allows the spring 33 to adapt well to the undulations of the ground while ensuring the first pressing roller 18 and the second pressing roller 19 are pressed, thus ensuring the smooth completion of the pressing.

[0039] The surface of the first pressing roller 18 is evenly distributed with rubber protrusions. The middle position of the surface of the first pressing roller 18 is equipped with square protrusions 34, while the two side edges are equipped with round protrusions 35. The angular design of the square protrusions 34 can increase the compression strength of the tape 6 and better press the tape 6 onto the ground. The round protrusions 35 on both sides have good smoothness, which can reduce the local stress concentration between the tape 6 and the first pressing roller 18, making the rolling process smoother. The combination of the two can achieve a more uniform and stable rolling effect.

[0040] The punching mechanism includes multiple second electric telescopic rods 28 symmetrically fixedly installed on the bottom wall of the fixed frame 16. The telescopic ends of the multiple second electric telescopic rods 28 are fixedly connected to the mounting frame 14. Needles 24 are evenly distributed on the bottom wall of the mounting frame 14. The needles 24 are used to punch holes in the reflective strip 9 when they descend with the mounting frame 14. A limiting strip 36 is fixedly connected to the bottom wall of the protective housing 5 on one side below the mounting frame 14.

[0041] A second take-up shaft is rotatably mounted on one side of the fixed frame 16, and a reflective strip 9 is wound on the second take-up shaft. A first limiting roller 10 is rotatably mounted between the fixed frame 16 and the second take-up shaft. The first limiting roller 10 is in rotatable contact with the upper surface of the reflective strip 9. A take-up roller 13 is rotatably mounted on the other side of the fixed frame 16. The take-up roller 13 is driven by a first motor 12. A second limiting roller 11 is rotatably mounted between the take-up roller 13 and the fixed frame 16. The second limiting roller 11 is in rotatable contact with the upper surface of the reflective strip 9. The end of the reflective strip 9 away from the second take-up shaft is wound onto the take-up roller 13 after passing under the first limiting roller 10, between the needle 24 and the limiting strip 36, and under the second limiting roller 11 in sequence.

[0042] The compaction mechanism includes a lead screw 32 rotatably mounted inside the fixed frame 16. The lead screw 32 is driven by a stepper motor fixedly mounted on the fixed frame 16. A sliding block 31 is mounted on the lead screw 32, so that the stepper motor can drive the sliding block 31 to move back and forth inside the fixed frame 16 when running. Two fourth electric telescopic rods 30 are fixedly mounted on the lower end of the sliding block 31 in a symmetrical arrangement. A third pressing roller 22 is rotatably mounted between the telescopic ends of the two fourth electric telescopic rods 30. The third pressing roller 22 is located inside the mounting frame 14 and contacts the upper surface of the reflective strip 9.

[0043] A third electric telescopic rod 29 is fixedly installed between the cutting device 15 and the lower rear side of the sliding block 31. The third electric telescopic rod 29 is used to adjust the height of the cutting device 15. The cutting device 15 moves with the sliding block 31 and automatically cuts the tape 6 during the movement.

[0044] Two symmetrically arranged cleaning brushes 23 are rotatably mounted on the bottom front of the protective housing 5. The two cleaning brushes 23 rotate in opposite directions and are both driven by a second motor 21 fixedly mounted on the bottom wall of the protective housing 5.

[0045] In use, before measurement, the counter 3 is first reset to zero, and the pointer 7 is aligned with the selected measurement starting point on the ground. The user then holds the handle 1 and rotates the first measuring wheel 2. The counter 3 records the number of rotations of the first measuring wheel 2, and the measurement distance is calculated. In architectural landscape surveying, facing common obstacles such as gravel, potholes, or other obstacles on the ground, this device, with its design of a first measuring wheel 2 and another rolling wheel, can distribute pressure, allowing the device to maintain a more stable posture on gravel or uneven ground. Compared to a single-wheel design, the dual-wheel design better resists lateral forces, avoiding wheel offset or bouncing caused by ground protrusions or depressions, thereby reducing vibration and errors during the measurement process.

[0046] When encountering corners or narrow spaces during measurement, slowly push the first measuring wheel 2 until it is blocked and cannot rotate. Stop pushing the first measuring wheel 2, then activate the hydraulic push rod 4 to move the second measuring wheel 8 forward. At the same time, the counter 3 starts recording the number of rotations of the second measuring wheel 8. The distance traveled by the second measuring wheel 8 is then calculated, and the radius of the first measuring wheel 2 is subtracted to obtain the length of the unmeasurable position. Traditional wheel measuring instruments require manual estimation or segmented measurement at corners, resulting in large errors. This device uses the first measuring wheel 2 for positioning and the second measuring wheel 8 for extended measurement, making operation simple and requiring no interruption of the measurement process.

[0047] When using this device, first remove the tape 6 from the outer shell of the protective housing 5, and place the end of the tape 6 on the selected measurement starting point on the ground. Then, extend the second electric telescopic rod 28 to move the mounting frame 14 downward. Since the limiting strip 36 is fixedly installed on the bottom wall of the protective housing 5, the limiting strip 36 will restrict the movement of the reflective strip 9 during the downward movement of the mounting frame 14. During the downward movement of the mounting frame 14, the needle 24 on the mounting frame 14 will pierce the reflective strip 9, forming continuous small holes on the surface of the reflective strip 9, providing a breaking point for the subsequent separation of the reflective strip 9. Then, the lead screw 32 is activated to drive the sliding block 31 to move left and right. The third pressing roller 22 is fixedly connected to the sliding block 31 via the fourth electric telescopic rod 30. While the sliding block 31 moves, the fourth electric telescopic rod 30 also drives the third pressing roller 22 to move downward. During this process, the third pressing roller 22 presses and separates the reflective strip 9 inside the mounting frame 14 from the overall reflective strip 9. After separation, the reflective strip 9 is adhered to the surface of the tape 6 under the pressure of the third pressing roller 22, thus completing the fixation of the reflective strip 9 to the tape 6. Then, the first motor 12 is activated to drive the winding roller 13 to wind up the cut reflective strip 9 until the bottom of the third pressing roller 22 is a complete reflective strip 9, preparing for the next application of the reflective strip 9.

[0048] After the reflective strip 9 is fixed, the first measuring wheel 2 is pushed to perform the measurement. During the measurement process, since one end of the tape 6 is fixed, as the entire device moves, the tape 6 is automatically laid on the path the device passes through under the limiting action of the third limiting roller 17, which can visually show the boundary of the measurement area. During the laying of the tape 6, if the ground is relatively flat and smooth, the second pressing roller 19 is mainly used to roll the laid tape 6. The second pressing roller 19 is a silicone roller, which can adapt to the slight unevenness of the ground during the rolling process, increasing the contact area between the tape 6 and the ground. When the ground is uneven or muddy, the first pressing roller 18 is lowered by the first electric telescopic rod 25. The first pressing roller 18 is used to press the tape 6. The first pressing roller 18 has several rubber bumps, which can effectively press the tape 6 into the gaps or soft soil, increase the contact area between the tape 6 and the ground, and increase the friction between the tape 6 and the ground, thereby enhancing the fixing effect of the tape 6. After the tape 6 has been pressed into the ground, the smooth second pressing roller 19 is used to flatten the surface of the tape 6, remove the wrinkles or unevenness caused by pressing the tape 6 into the ground, and make the tape 6 adhere to the ground better.

[0049] The rubber bumps on the first pressing roller 18 have square bumps 34 in the central area and round bumps 35 on both sides. The angular design of the square bumps 34 increases the compression strength of the tape 6, better pressing the tape onto the ground. The round bumps 35 on both sides have good smoothness, which can reduce local stress concentration between the tape 6 and the first pressing roller 18, making the rolling process smoother. The combination of the two can achieve a more uniform and stable rolling effect. In addition, both the first pressing roller 18 and the second pressing roller 19 are fixedly connected to the mounting frame 27 through the first electric telescopic rod 25. The first electric telescopic rod 25 is internally slidably connected to the L-shaped connecting rod 26. The end of the first electric telescopic rod 25 is connected to the L-shaped connecting rod 26 through the spring 33. The spring 33 can ensure that the first pressing roller 18 and the second pressing roller 19 can adapt well to the undulations of the ground during rolling, ensuring the smooth completion of the rolling process. This device automatically attaches reflective strips 9 and lays adhesive tape 6 during the rolling of the first measuring wheel 2. The adhesive tape 6 forms a closed path, which can intuitively show the boundary of the measurement area and more clearly show the area range than discrete markers. The reflective strips 9 are attached to the surface of the adhesive tape 6 at fixed intervals to prevent the tape 6 from lifting due to ground undulations, wind, or human touch. At key locations such as inflection points, obstacle edges, and elevation change points, two reflective strips 9 can be attached in parallel to form a continuous light band, significantly improving visibility.

[0050] In addition, a cleaning brush 23 is installed at the bottom of the protective housing 5. Before laying the tape 6, the second motor 21 drives the two cleaning brushes 23 to rotate in opposite directions. The two cleaning brushes 23 trap the central debris between the bristles. As the bristles rotate, the debris is carried to the outside of the direction of the bristle movement, thus moving the central dust and gravel to both sides, providing a clean and flat base for laying the tape 6. When it is necessary to cut the tape 6, the third pressing roller 22 is first lifted by the fourth electric telescopic rod 30, and then the cutting device 15 is lowered by the third electric telescopic rod 29. Then, the screw 32 is activated to drive the sliding block 31 to move left and right, thereby driving the cutting device 15 to automatically cut the tape 6. The entire cutting process does not require manual operation of the cutting tool, and the operator does not need to bend down and approach the tape to operate.

[0051] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A measuring device for architectural landscape design, comprising a protective housing (5), wherein a handle (1) is fixedly installed at the top of the protective housing (5), and a plurality of symmetrically arranged rollers (20) are rotatably installed at the bottom of the protective housing (5), characterized in that, A counter (3) is fixedly installed on one side of the protective housing (5). A first measuring wheel (2) is rotatably installed on the end of the counter (3) away from the protective housing (5). A pointer (7) is installed on the rotating shaft at the center of the first measuring wheel (2). The protective housing (5) has a tape (6) wound up at the front inside. The tape (6) is provided with a mounting frame (27) and a fixing frame (16) in sequence at the rear side. The mounting frame (27) is provided with a third limiting roller (17), a first pressing roller (18) and a second pressing roller (19) in sequence from front to back. The fixing frame (16) is provided with a punching mechanism, a compaction mechanism and a cutting device (15) in sequence from front to back. One end of the tape (6) passes under the third limiting roller (17), the first pressing roller (18), the second pressing roller (19), the punching mechanism, the compaction mechanism and the cutting device (15) in sequence and extends to the outside of the protective housing (5). The punching mechanism includes multiple second electric telescopic rods (28) symmetrically fixedly installed on the bottom wall of the fixed frame (16). The telescopic ends of the multiple second electric telescopic rods (28) are fixedly connected to the mounting frame (14). The bottom wall of the mounting frame (14) is evenly distributed with needles (24). A limiting strip (36) fixedly connected to the bottom wall of the protective shell (5) is provided on one side below the mounting frame (14). A second take-up shaft is rotatably mounted on one side of the fixed frame (16), and a reflective strip (9) is wound on the second take-up shaft. A first limiting roller (10) is rotatably mounted between the fixed frame (16) and the second take-up shaft. A take-up roller (13) is rotatably mounted on the other side of the fixed frame (16). The take-up roller (13) is driven by a first motor (12). A second limiting roller (11) is rotatably mounted between the take-up roller (13) and the fixed frame (16). The end of the reflective strip (9) away from the second take-up shaft is wound onto the take-up roller (13) after passing under the first limiting roller (10), between the needle (24) and the limiting strip (36), and under the second limiting roller (11).

2. The measuring device for architectural landscape design according to claim 1, characterized in that, A rolling wheel is rotatably mounted on the other side of the protective housing (5), and the rolling wheel has the same diameter as the first measuring wheel (2).

3. The measuring device for architectural landscape design according to claim 1, characterized in that, Below the counter (3) is a hydraulic push rod (4) fixedly installed on the side wall of the protective housing (5). The telescopic end of the hydraulic push rod (4) faces the side of the overall forward direction of the device. The end of the telescopic end of the hydraulic push rod (4) is rotatably mounted with a second measuring wheel (8). The second measuring wheel (8) is connected to the counter (3) through wireless communication technology. The second measuring wheel (8) is used to measure the position that the first measuring wheel (2) cannot measure.

4. The measuring device for architectural landscape design according to claim 1, characterized in that, The third limiting roller (17), the first pressing roller (18) and the second pressing roller (19) are all rotatably installed below the mounting frame (27). Both ends of the first pressing roller (18) and the second pressing roller (19) are rotatably installed with L-shaped connecting rods (26). The upper part of the L-shaped connecting rod (26) is provided with a cavity, and a spring (33) is installed below the cavity. The upper part of the L-shaped connecting rod (26) is provided with a first electric telescopic rod (25) fixedly installed on the bottom wall of the mounting frame (27). The telescopic end of the first electric telescopic rod (25) is slidably inserted into the cavity inside the L-shaped connecting rod (26) and fixedly connected to the spring (33).

5. The measuring device for architectural landscape design according to claim 1, characterized in that, The surface of the first pressing roller (18) is uniformly distributed with rubber bumps. The middle position of the surface of the first pressing roller (18) is provided with square bumps (34), while the two side edges are provided with round bumps (35).

6. The measuring device for architectural landscape design according to claim 1, characterized in that, The compaction mechanism includes a lead screw (32) rotatably mounted inside the fixed frame (16). The lead screw (32) is driven by a stepper motor fixedly mounted on the fixed frame (16). A sliding block (31) is mounted on the lead screw (32). Two fourth electric telescopic rods (30) are symmetrically arranged and fixedly mounted at the lower end of the sliding block (31). A third pressing roller (22) is rotatably mounted between the telescopic ends of the two fourth electric telescopic rods (30). The third pressing roller (22) is located inside the mounting frame (14) and contacts the upper surface of the reflective strip (9).

7. The measuring device for architectural landscape design according to claim 6, characterized in that, A third electric telescopic rod (29) is fixedly installed between the cutting device (15) and the lower rear side of the sliding block (31). The third electric telescopic rod (29) is used to adjust the height of the cutting device (15).

8. The measuring device for architectural landscape design according to claim 1, characterized in that, Two cleaning brushes (23) are symmetrically arranged and rotatably mounted on the bottom front of the protective housing (5). The two cleaning brushes (23) rotate in opposite directions and are both driven by a second motor (21) fixedly mounted on the bottom wall of the protective housing (5).

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