3D dynamic landscape

By designing a system of landscape components, track components, and drive components, the problems of fixing the stream micro-landscape and the impact of traction ropes on aesthetics were solved, achieving dynamic display and aesthetics, and adapting to changes in water level.

CN223657911UActive Publication Date: 2025-12-12中徽生态环境有限公司
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Patent Information

Application Number
CN202520448833.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-12-12
Estimated Expiration
2035-03-14

AI Technical Summary

Technical Problem

The existing stream micro-landscapes are fixed in one location, lack mobility, and the horizontal placement of the guide ropes affects the aesthetics.

Method used

Design a system comprising landscape components, track components, and drive components. The landscape components are moved along a stream using the track components and traction ropes. Friction is reduced by rollers and drive belts, and the landscape is dynamically displayed by motor drive. The track and traction ropes are concealed to maintain aesthetics.

Benefits of technology

It enables dynamic display of micro-landscapes in streams, reduces friction and resistance, maintains the aesthetics and dynamic effects of the landscape, and adapts to changes in water level.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a 3D dynamic landscape which comprises a landscape assembly, a track assembly and a driving assembly, the landscape assembly comprises a landscape body floating in a stream and a contour lamp strip arranged on the landscape body, and the track assembly is arranged on a stream riverbed and comprises a track body and a moving pair moving along the track body. The moving pair is driven by a driving assembly, a traction rope is arranged between the moving pair and the landscape body, and the traction rope has tension so that the buoyancy of the landscape assembly can be larger than the borne gravity. The 3D outline of the landscape body is reflected through the outline lamp strip, the landscape body can move along the stream and show the dynamic effect, the landscape body is controlled to move back and forth through the track assembly and the traction rope, the track assembly and the traction rope are hidden, the landscape body can be highlighted, specifically, the track assembly can be hidden at the bottom of the stream through decoration, and the landscape body can be conveniently displayed. The pulling rope generates tension, so that the pulling rope cannot be excessively transversely arranged, and the landscape body is used for shielding the pulling rope.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of landscape, concretely relates to a 3D dynamic landscape. BACKGROUND

[0002] The construction of the homestay landscape generally needs to integrate multiple colors and 3D structures, in the construction of the stream micro-landscape, the common construction method is to set some static lights to form an atmosphere, or to set a dynamic landscape, fixed in a certain part to repeat a certain action, such as waterwheel model, animal model, etc., and further increase the light belt on the landscape contour to show the 3D effect.

[0003] The stream micro-landscape has the defects that it is generally fixed in a certain position and cannot move along the stream, lacks the moving ability, if the landscape is pulled back and forth in the stream by setting the traction rope, the traction rope is transversely arranged outside the landscape, which affects the beauty of the landscape and destroys the atmosphere of the landscape model. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the above problems and provides a stream 3D micro-landscape that can dynamically display.

[0005] The utility model realizes the above-mentioned purposes through the following technical solutions:

[0006] A kind of D dynamic landscape, including landscape assembly, track assembly and drive assembly, wherein, the landscape assembly includes landscape body floating in stream and contour light belt arranged on landscape body, the track assembly is arranged on stream riverbed, including track body, moving pair moving along track body, the moving pair is driven by drive assembly, traction rope with tension is arranged between the moving pair and landscape body.

[0007] As a further optimization scheme of the utility model, the moving pair includes shaft and roller rotatably connected at both ends of the shaft, the traction rope is connected with the shaft, and the scheme further proposes a structure of the moving pair, which is rolled along the track body by the roller, thereby reducing the friction.

[0008] As a further optimization scheme of the utility model, the track body is internally provided with a wheel groove accommodating the roller, and a through groove is further provided on the upper surface of the track body for the movement of the traction rope, and the scheme specifically provides the wheel groove and the through groove on the track body for the cooperative movement of the roller and the traction rope.

[0009] As a further optimization scheme of the utility model, the surface of the roller is provided with a groove, and the surface of the wheel groove is provided with a limiting strip, the groove is rolled along the limiting strip to be limited, and the scheme is to prevent the roller from derailing or tilting due to uneven force direction of the shaft, and the limiting strip is arranged to keep the advancing direction of the roller fixed.

[0010] As a further optimization scheme of the utility model, the driving assembly includes a driving wheel arranged at one end of the track body and a driven wheel at the other end, a driving belt is sleeved between the driving wheel and the driven wheel, and the moving pair is fixedly connected to a point on the driving belt. The scheme specifically proposes a driving assembly, which moves the moving pair by arranging the driving belt, so as to drive the landscape body to move back and forth against the stream.

[0011] As a further optimization scheme of the utility model, the driving wheel is driven by a motor arranged on the track body, and a shaft coupling is further arranged between the output shaft end of the motor and the driving wheel. The shaft coupling is arranged to cut off the power connection with the motor, so as to reduce the resistance of the landscape body when it floats with the stream.

[0012] The utility model has the advantages that:

[0013] The utility model shows the 3D contour of the landscape body through the contour lamp belt, and the contour lamp belt can move along the stream to show a dynamic effect. The contour lamp belt moves back and forth through the track assembly and the traction rope, and the track assembly and the traction rope are hidden, which is beneficial to highlight the display of the landscape body. Specifically, the track assembly can be hidden at the bottom of the stream through decoration, and the traction rope does not excessively lie horizontally through the generation of tension, and the landscape body is used to shield the traction rope. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the overall structure schematic view of the utility model.

[0015] Figure 2 It is the overall structure schematic view of the utility model Figure 1 It is the enlarged view of the structure of part A in the utility model.

[0016] Figure 3 It is the top view of the track assembly of the utility model.

[0017] Figure 4 It is the side view of the track assembly of the utility model.

[0018] In the drawing: 1, landscape assembly; 11, landscape body; 12, contour lamp belt; 13, winding device; 14, water pressure sensor; 2, track assembly; 21, track body; 22, wheel groove; 23, roller; 24, shaft; 25, traction rope; 26, through groove; 27, limiting strip; 28, groove; 3, driving assembly; 31, motor; 32, shaft coupling; 33, driving wheel; 34, driven wheel; 35, driving belt. DETAILED DESCRIPTION

[0019] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content.

[0020] Example 1

[0021] like Figures 1-4 As shown, a 3D dynamic landscape includes a landscape component 1, a track component 2, and a drive component 3. The landscape component 1 includes a landscape body 11 floating in a stream and a contour light strip 12 set on the landscape body 11. The track component 2 is set on the riverbed of the stream and includes a track body 21 and a moving pair that moves along the track body 21. The moving pair is driven by the drive component 3. A tensioned traction rope 25 is set between the moving pair and the landscape body 11. The tensioned traction rope 25 is such that the buoyancy of the landscape component 1 is greater than its weight.

[0022] In this embodiment, the landscape body 11 is set as a model of a cruise ship. The 3D outline of the landscape body 11 is shown by the outline light strip 12, and it can move along the stream to show a dynamic effect. It is controlled to move back and forth by the track component 2 and the traction rope 25. The track component 2 and the traction rope 25 are hidden, which helps to highlight the landscape body 11. Specifically, the track component 2 can be hidden at the bottom of the stream, hidden by aquatic plants or decorated with textured stickers. The traction rope 25 generates tension so that the traction rope 25 pulls the landscape body 11. The traction rope 25 will not be too horizontal, and the landscape body 11 will cover the traction rope 25.

[0023] The sliding pair includes a shaft 24 and rollers 23 rotatably connected at both ends of the shaft 24. The traction rope 25 is connected to the shaft 24. This solution further proposes a structure for the sliding pair, in which the rollers 23 roll along the track body 21, which helps to reduce friction.

[0024] The track body 21 has a wheel groove 22 inside to accommodate the roller 23, and the upper surface of the track body 21 also has a through groove 26 for the traction rope 25 to move. In this solution, the wheel groove 22 and the through groove 26 are set on the track body 21 so that the roller 23 and the traction rope 25 can move together.

[0025] The surface of the roller 23 is provided with a groove 28, and the surface of the groove 22 is provided with a limiting strip 27. The groove 28 rolls along the limiting strip 27 to limit the movement. This solution is to prevent the roller 23 from derailing or tilting due to uneven force on the shaft 24. The limiting strip 27 is set to keep the forward direction of the roller 23 fixed.

[0026] The driving assembly 3 comprises a driving wheel 33 arranged at one end of the track body 21 and a driven wheel 34 arranged at the other end, a driving belt 35 is sleeved between the driving wheel 33 and the driven wheel 34, and a moving pair is fixedly connected to a point on the driving belt 35. The present scheme specifically provides a driving assembly 3, which drives the moving pair to move through the arrangement of the driving belt 35, so as to drive the landscape body 11 to move against the stream.

[0027] The driving wheel 33 is driven by the motor 31 arranged on the track body 21, and a shaft coupling 32 is further arranged between the output shaft end of the motor 31 and the driving wheel 33. The shaft coupling 32 is arranged to cut off the power connection with the motor 31, so that the landscape body 11 is not affected by the resistance of the motor 31 when it is floating with the stream, which is helpful to reduce the resistance.

[0028] In order to adapt to the water level depth, a winding device 13 and a water pressure sensor 14 can also be arranged below the landscape body 11, and the winding device 13 and the water pressure sensor 14 are electrically connected. The winding device 13 is used to control the length of the traction rope 25 according to the water pressure, and the water pressure sensor 14 is used to obtain the water pressure data at the bottom of the landscape body 11 to determine the water level height. When the reading of the water pressure sensor 14 exceeds the preset safety range, the length of the traction rope 25 is adjusted to adapt to the change of the water level. For example, after the water level rises, the traction rope 25 pulls the landscape body 11 against the stream, so that the landscape body 11 sinks excessively, and the reading of the water pressure sensor 14 exceeds the range. At this time, the traction rope is unwound to make the water pressure reading return to the safety range. Conversely, when the water level decreases, the traction rope 25 does not have traction force and vertically upward. If the water level decreases and causes the traction rope 25 to have no tension, the landscape body 11 will float, and if the water pressure decreases and exceeds the preset range, the traction rope 25 will be wound.

[0029] The specific implementation is that when the shaft coupling 32 is disconnected, the driving wheel 33 and the driven wheel 34 rotate freely, the landscape body 11 is pushed downstream by the water flow and pulls the sliding roller 23 to slide along the track body 21. When the landscape body 11 reaches the most downstream of the track body 21, the shaft coupling 32 and the motor 31 are started to drive the driving belt 35 to move, thereby pulling the shaft rod 24 and making the traction rope 25 pull the landscape body 11 to return. Since the traction rope 25 has tension, the buoyancy of the landscape assembly 1 is greater than the gravity, and when the traction rope 25 receives a transverse pulling force and is inclined, the landscape body 11 will be further pulled downward, increasing the buoyancy of the landscape body 11, which helps to prevent the traction rope 25 from being excessively transversely placed, so that the traction rope 25 is always closer to the vertical angle, and the preferred angle is 30°. The landscape body 11 can be used to shield the traction rope 25.

[0030] The above-described embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but can not therefore be understood as the limitation of the utility model patent range. It should be pointed out that for ordinary skilled person in the art, without departing from the utility model concept, several deformations and improvements can be made, which belong to the protection range of the utility model.

Claims

1. A 3D dynamic landscape characterized in that: The application relates to a landscape track driving device, which comprises a landscape component (1), a track component (2) and a driving component (3), wherein the landscape component (1) comprises a landscape body (11) floating in a stream and a contour lamp strip (12) arranged on the landscape body (11); the track component (2) is arranged on a stream bed and comprises a track body (21) and a moving vice moving along the track body (21); the moving vice is driven by the driving component (3); and a traction rope (25) with tension is arranged between the moving vice and the landscape body (11).

2. A 3D dynamic landscape according to claim 1, characterized in that: The moving vice comprises a shaft rod (24) and a roller (23) rotatably connected to two ends of the shaft rod (24); and the traction rope (25) is connected with the shaft rod (24).

3. A 3D dynamic landscape according to claim 2, wherein: The track body (21) is internally provided with a roller groove (22) for accommodating the roller (23); and the upper surface of the track body (21) is further provided with a through groove (26) for moving the traction rope (25).

4. A 3D dynamic landscape according to claim 3, wherein: The surface of the roller (23) is provided with a groove (28); the surface of the roller groove (22) is provided with a limiting strip (27); and the groove (28) rolls along the limiting strip (27) to be limited.

5. The 3D dynamic landscape of claim 1, wherein: The driving component (3) comprises a driving wheel (33) arranged at one end of the track body (21) and a driven wheel (34) arranged at the other end; a driving belt (35) is sleeved between the driving wheel (33) and the driven wheel (34); and the moving vice is fixedly connected with a point on the driving belt (35).

6. A 3D dynamic landscape according to claim 5, wherein: The driving wheel (33) is driven by a motor (31) arranged on the track body (21); and a shaft coupling (32) is further arranged between the output shaft end of the motor (31) and the driving wheel (33).