CN113728841B - A three-dimensional display device of flowers for landscape garden - Google Patents

A three-dimensional display device of flowers for landscape garden Download PDF

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Publication number
CN113728841B
CN113728841B CN202111165168.4A CN202111165168A CN113728841B CN 113728841 B CN113728841 B CN 113728841B CN 202111165168 A CN202111165168 A CN 202111165168A CN 113728841 B CN113728841 B CN 113728841B
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mounting base
hole
groove
supporting rod
transmission rod
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CN113728841A (en
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谭雪红
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Xuzhou University of Technology
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Xuzhou University of Technology
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/02Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers

Abstract

The invention belongs to the technical field of landscape garden display equipment, and relates to a flower three-dimensional display device for landscape gardens, which comprises an installation base, a display plate, a through hole and a transmission rod, wherein the installation base is provided with a plurality of through holes; the cultivating basin is arranged at the position, close to the through hole, of the upper part of the display board; the supporting rod is vertically arranged between the mounting base and the display plate, the upper end of the supporting rod penetrates through the through hole and then is connected to the lower part of the cultivating pot, and the lower end of the supporting rod is connected with the mounting base; and the rotary lifting reciprocating mechanism is arranged between the mounting base and the display board and is used for driving the supporting rod to rotate around the transmission rod and move up and down in a reciprocating manner. According to the flower cultivation pot, the rotary lifting mechanism is arranged, so that the flowers in the cultivation pot enclosure rotate around the transmission rod and move up and down in a reciprocating mode, all the flowers can be appreciated at different angles, one of the flowers can be appreciated at different angles independently, and the ornamental effect is better.

Description

A three-dimensional display device of flowers for landscape garden
Technical Field
The invention belongs to the technical field of landscape garden display equipment, and relates to a flower three-dimensional display device for landscape gardens.
Background
Landscape gardens are an ancient and young discipline. As an important carrier of human civilization, gardens, landscapes and landscapes continue to exist for thousands of years; as a modern subject, the landscape gardens can trace back to the end of the 19 th century and the beginning of the 20 th century, and the landscape garden is a new subject paradigm established by a scientific revolution mode on the basis of classical garden building and landscape garden building. From traditional landscaping to modern landscape gardens, the trend can be described by 3 expansions: firstly, in the aspect of service objects, the service is expanded from the service for a few people to the service for human beings and the ecosystems where the human beings inhabit; secondly, in the aspect of value, the orientation of a single recreation aesthetic value is expanded into the orientation of an ecological and cultural comprehensive value; third, the practical scale extends from the micro scale to the full scale of the landscape in the world, small to courtyard.
However, the existing flower three-dimensional display device for landscape architecture has the following defects: a three-dimensional display device of flowers that is used for landscape architecture among the prior art is carrying out the show in-process of flowers, and flowers are in static state, and the sight can not treat that show flowers carry out comprehensive sight.
Disclosure of Invention
The invention aims to provide a flower three-dimensional display device for landscape architecture, which aims to solve the technical problem that an existing flower three-dimensional display device is in a static state, and an observer cannot comprehensively observe flowers.
In order to achieve the purpose, the invention discloses a flower three-dimensional display device for landscape architecture, which has the following specific technical scheme:
a flower stereoscopic display device for landscape architecture comprises:
installing a base;
the display board is horizontally arranged on the upper part of the mounting base, and at least one through hole is formed in the surface of the display board along the circumferential direction;
the transmission rod is vertically arranged between the mounting base and the display board, the upper end of the transmission rod is fixedly connected to the display board, and the lower end of the transmission rod is movably connected to the mounting base;
the cultivating basin is arranged at the position, close to the through hole, of the upper part of the display board;
the supporting rod is vertically arranged between the mounting base and the display plate, the upper end of the supporting rod penetrates through the through hole and then is connected to the lower part of the cultivating pot, and the lower end of the supporting rod is connected with the mounting base;
and the rotary lifting reciprocating mechanism is arranged between the mounting base and the display board and is used for driving the supporting rod to rotate around the transmission rod and move up and down in a reciprocating manner.
The present invention is also characterized in that,
wherein rotatory lift reciprocating mechanism includes the motor, the motor sets up on installation base upper portion, the cover is equipped with first gear on the output shaft of motor, the cover is equipped with the second gear on the transfer line, the second gear is connected with first gear engagement, the ring channel has been seted up to installation base upper surface, the ring channel is located the through-hole under, the upper end fixed connection of transfer line is in the lower part intermediate position of show board, the lower extreme of transfer line is located the centre of a circle department of ring channel and passes through the bearing with the installation base and be connected, the lower extreme of bracing piece is located the ring channel, the bottom of ring channel is from low to high inclined plane to low again.
Wherein the lower end of the supporting rod is provided with a universal wheel, and the bottom of the universal wheel is contacted with the bottom of the annular groove.
Wherein, a rotation mechanism is arranged in the through hole and used for driving the support rod to rotate.
Wherein rotation mechanism includes two sliders, spacing hole has been seted up to relative position difference level on the through-hole inner wall, two sliders are located two spacing downtheholes respectively, each slider with correspond and be provided with the second elastic component between the spacing hole, the one end fixed connection of second elastic component is on the slider, the other end fixed connection of second elastic component is on spacing downthehole wall, the bracing piece is close to the position of through-hole and has been seted up reciprocal helicla flute, two sliders are located reciprocal helicla flute, the cover is equipped with the fixed plate on the bracing piece, the fixed plate passes through the bearing with the bracing piece and is connected, the lower part that lies in the fixed plate on the bracing piece is provided with the stopper, be provided with first elastic component between fixed plate and the show board, first elastic component cover is established on the bracing piece, the lower extreme and the fixed plate fixed connection of first elastic component.
Wherein reciprocal helicla flute comprises two perpendicular grooves and two helicla flutes, and two perpendicular grooves are vertical setting respectively in two sides that the bracing piece is relative, and two helicla flutes set up respectively that two sides that the bracing piece is relative are located two and erect between the groove, each the upper end of helicla flute is connected with the upper end side of a perpendicular groove, and the lower extreme of each helicla flute is connected with the lower extreme of another perpendicular groove and the lower extreme of helicla flute is located the below of erecting the groove, and two perpendicular grooves communicate with the junction of two helicla flutes each other, and the upper end degree of depth in each perpendicular groove is greater than the upper end degree of depth rather than the helicla flute of being connected, and the lower extreme degree of depth in each perpendicular groove is less than the lower extreme degree of depth rather than the helicla flute of being connected.
Wherein the fixed plate lower part has seted up the round spout, and the stopper upper portion is close to the position of spout and evenly is provided with a plurality of archs, and a plurality of archs are located the spout.
Wherein the position of installation base upper surface around the ring channel outside evenly is provided with a plurality of show light, each show light is towards one of them through-hole.
The flower three-dimensional display device for landscape gardens has the following advantages: obtain the setting through rotatory elevating system, make the flowers of cultivating in the basin encloses do up-and-down motion around the transfer line pivoted, can not only carry out the sight of different angles to all flowers, can also carry out the sight of different angles to one of them flowers alone, it is better to make ornamental effect, simultaneously through the setting of rotation mechanism, make rotation mechanism and rotatory elevating system cooperate, make the flowers of cultivating in the basin rotate around the transfer line and do up-and-down motion with self and can also carry out the rotation simultaneously, further improve ornamental angle, guarantee that the sight does not have the dead angle to the angle that the flowers were observed, further improve ornamental effect.
Drawings
Fig. 1 is a schematic view showing the overall structure of a flower three-dimensional display device for landscape architecture and garden according to the present invention;
FIG. 2 is a schematic top view showing the structure of a display board of the flower three-dimensional display device for landscape architecture according to the present invention;
FIG. 3 is a schematic top view of a mounting base of the flower three-dimensional display device for landscape architecture of the present invention;
FIG. 4 is an enlarged view of a portion A of FIG. 1 of a flower three-dimensional display device for landscape architecture according to the present invention;
FIG. 5 is an enlarged view of the part B of FIG. 1 of the flower three-dimensional display device for landscape architecture according to the present invention;
FIG. 6 is a schematic view showing the structure of a reciprocating spiral groove in the flower three-dimensional display device for landscape architecture according to the present invention;
reference numerals:
1. installing a base; 2. a motor; 3. a transmission rod; 4. a display board; 5. cultivating pots; 6. a support bar; 7. a reciprocating spiral groove; 71. a vertical slot; 72. a helical groove; 8. a slider; 9. a first elastic member; 10. an annular groove; 11. a universal wheel; 12. a fixing plate; 13. a limiting block; 14. a through hole; 15. a first gear; 16. a second gear; 17. a display lamp; 18. a protrusion; 19. a chute; 20. a limiting hole; 21. a second elastic member.
Detailed Description
In order to better understand the purpose, structure and function of the present invention, the flower three-dimensional display device for landscape architecture and garden of the present invention will be described in further detail with reference to the accompanying drawings.
As shown in figure 1, the invention relates to a flower three-dimensional display device for landscape architecture, which comprises a mounting base 1, wherein the upper part of the mounting base 1 is horizontally provided with a display plate 4, the surface of the display plate 4 is provided with at least six through holes 14 along the circumferential direction, a transmission rod 3 is vertically arranged between the mounting base 1 and the display plate 4, the upper end of the transmission rod 3 is fixedly connected at the middle position of the lower part of the display plate 4, the lower end of the transmission rod 3 is movably connected on the mounting base 1, the upper part of the display plate 4 is respectively provided with a cultivating pot 5 at the position close to each through hole 14, six support rods 6 are vertically arranged between the mounting base 1 and the display plate 4, the upper end of each support rod 6 is connected at the lower part of the corresponding cultivating pot 5 after passing through the through hole 14, the lower end of each support rod 6 is connected with the mounting base 1, a rotary lifting mechanism is arranged between the mounting base 1 and the display plate 4, for driving the support rod 6 to reciprocate up and down while rotating around the transmission rod 3.
As shown in fig. 1, 2, and 3, the rotary lifting mechanism includes a motor 2, the motor 2 is disposed on the upper portion of the mounting base 1, a first gear 15 is sleeved on an output shaft of the motor 2, a second gear 16 is sleeved on the transmission rod 3, the second gear 16 is meshed with the first gear 15 and is connected with the first gear, an annular groove 10 is disposed on the upper surface of the mounting base 1, the annular groove 10 is located right below the through hole 14, the upper end of the transmission rod 3 is fixedly connected to the middle position of the lower portion of the display board 4, the lower end of the transmission rod 3 is located at the center of the annular groove 10 and is connected with the mounting base 1 through a bearing, the lower end of the support rod 6 is located in the annular groove 10 and can freely slide in the annular groove 10, and the bottom of the annular groove 10 is an inclined plane from low to high and then to low. The supporting rod 6 goes from the lowest point to the highest point at the bottom of the annular groove 10, the height of the supporting rod 6 is gradually increased, so that the height of the cultivating pots 5 is gradually increased until the highest point is reached, then the height of the supporting rod 6 is gradually reduced from the highest point to the lowest point at the bottom of the annular groove 10, so that the height of the cultivating pots 5 is gradually reduced until the lowest point is reached again, and the reciprocating is performed, so that the flowers in each cultivating pot 5 go from the lowest point to the highest point, and are completely contrasted with the flowers in other cultivating pots 5 when the highest point is reached, not only can all the flowers be viewed at different angles, but also the flowers in each cultivating pot 5 can be viewed at different angles independently, and the viewing effect is better.
The lower extreme of bracing piece 6 is provided with universal wheel 11, and the bottom of universal wheel 11 contacts with the bottom of ring channel 10, reduces the frictional force of bracing piece 6 when the bottom of ring channel 10 slides, makes the bracing piece 6 more convenient laborsaving when sliding.
Further, as shown in fig. 1, a rotation mechanism is arranged in the through hole 14 for driving the support rod 6 to rotate, so that the flowers in the cultivation pot 5 do up-and-down reciprocating motion while rotating around the transmission rod 3, and can rotate, thereby further improving the viewing angle, ensuring that the viewing angle of the viewer has no dead angle, and further improving the viewing effect.
As shown in fig. 4, the rotation mechanism includes two sliders 8, the opposite positions on the inner wall of the through hole 14 are respectively horizontally provided with a limiting hole 20, the two sliders 8 are respectively located in the two limiting holes 20, a second elastic member 21 is arranged between each slider 8 and the corresponding limiting hole 20, one end of the second elastic member 21 is fixedly connected to the slider 8, the other end of the second elastic member 21 is fixedly connected to the inner wall of the limiting hole 20, the portion of the support rod 6 near the through hole 14 is provided with a reciprocating spiral groove 7, the two sliders 8 are located in the reciprocating spiral groove 7 and can freely slide in the reciprocating spiral groove 7, the support rod 6 is sleeved with a fixing plate 12, the fixing plate 12 is connected to the support rod 6 through a bearing, the lower portion of the support rod 6 on the fixing plate 12 is sleeved with a limiting block 13 for limiting the position of the fixing plate 12 and stopping downward movement, a first elastic member 9 is arranged between the fixing plate 12 and the display plate 4, the first elastic member 9 is sleeved on the support rod 6, and the lower end of the first elastic member 9 is fixedly connected with the fixing plate 12.
As shown in fig. 6, the reciprocating spiral groove 7 is composed of two vertical grooves 71 and two spiral grooves 72, the two vertical grooves 71 are respectively vertically disposed on two opposite side surfaces of the support rod 6, the two spiral grooves 72 are respectively disposed on two opposite side surfaces of the support rod 6 and located between the two vertical grooves 71, the upper end of each spiral groove 72 is connected with the upper end side surface of one vertical groove 71, the lower end of each spiral groove 72 is connected with the lower end of the other vertical groove 71, the lower end of the spiral groove 72 is located below the vertical groove 71, the connection positions of the two vertical grooves 71 and the two spiral grooves 72 are communicated with each other, the depth of the upper end of each vertical groove 71 is greater than that of the spiral groove 72 connected with the vertical groove, so that the slider 8 can directly slide into the upper end of the vertical groove 71 from the upper end of the spiral groove 72, and the depth of the lower end of each vertical groove 71 is less than that the spiral groove 72, thereby preventing the slider 8 from entering the lower end of the vertical groove 71 from the lower end of the spiral groove 72 when sliding along the spiral groove 72. When the universal wheel 11 at the lower end of the support rod 6 is located at the lowest point of the bottom of the annular groove 10, the two sliding blocks 8 are respectively located at the highest points of the upper ends of the two vertical grooves 71, when the universal wheel 11 at the lower end of the support rod 6 slides to the highest point of the bottom of the annular groove 10, the support rod 6 moves upwards relative to the through hole 14, the first elastic member 9 is compressed by the pressure of the fixing plate 12, the two sliding blocks 8 respectively slide downwards along the two vertical grooves 71, when the lower end of the support rod 6 slides to the highest point of the bottom of the annular groove 10, the two sliding blocks 8 respectively reach the lowest points of the lower ends of the two vertical grooves 71 and respectively enter the lowest points of the lower ends of the two spiral grooves 72, then the lower end of the support rod 6 continuously slides to the lowest point of the bottom of the annular groove 10, at this time, the support rod 6 moves downwards relative to the through hole 14 under the action of the first elastic member 9, and the two sliding blocks 8 respectively slide upwards from the lowest points of the lower ends of the two spiral grooves 72, the supporting rod 6 is driven to rotate by the rotating force generated by the supporting rod 6 until the two sliding blocks 8 respectively reach the highest point of the upper ends of the two spiral grooves 72 and respectively enter the highest points of the upper ends of the two vertical grooves 71, at the moment, the supporting rod 6 is positioned at the lowest point of the bottom of the annular groove 10, the supporting rod 6 completes half-turn rotation, the cultivating pot 5 is half-turn rotation, and accordingly reciprocating is realized, and the supporting rod 6 is enabled to always keep intermittent rotation while rotating around the transmission rod 3.
As shown in fig. 5, a circle of sliding groove 19 is formed in the lower portion of the fixing plate 12, 2 protrusions 18 are uniformly arranged at positions, close to the sliding groove 19, on the upper portion of the limiting block 13, the 2 protrusions 18 are located in the sliding groove 19, the 2 protrusions 18 can freely slide in the sliding groove 19 and do circular motion relative to the sliding groove 19, friction between the fixing plate 12 and the limiting block 13 is reduced, and when the limiting block 13 rotates along with the supporting rod 6, the fixing plate 12 can keep a relatively static rotating state and cannot rotate along with the rotation of the supporting rod 6.
As shown in fig. 3, the positions of the upper surface of the mounting base 1 around the outer side of the annular groove 10 are uniformly provided with 6 display lamps 17, each display lamp 17 is located below one of the through holes 14 and faces the through hole 14, so that the light can illuminate the cultivating pot 5 through the through hole 14, and along with the rotation of the display plate 4, the light of the display lamps 17 is in a dim state on the cultivating pot 5, and the atmosphere and effect for viewing at night are further improved.
The working principle is as follows: when the flower cultivating device is used, the same or different flowers are planted in 6 cultivating pots 5 respectively, then the motor 2 is started, the motor 2 drives the first gear 15 to rotate, the first gear 15 drives the transmission rod 3 to rotate through the second gear 16, the transmission rod 3 drives the display board 4 to rotate, the display board 4 drives the 6 cultivating pots 5 to rotate through driving the 6 support rods 6, the lower universal wheels 11 of the 6 support rods 6 move along the annular groove 11 from the lowest point to the highest point in the annular groove 11 to the lowest point, at the moment, when the universal wheel 11 at the lower end of one support rod 6 is located at the lowest point at the bottom of the annular groove 10, the two sliding blocks 8 are respectively located at the upper ends of the two vertical grooves 71, when the lower universal wheel 11 at the lower end of the support rod 6 slides to the highest point at the bottom of the annular groove 10, the support rod 6 moves upwards relative to the through hole 14, and the first elastic piece 9 is compressed under the pressure of the fixing plate 12, the two sliding blocks 8 respectively slide downwards along the two vertical grooves 71, when the lower end of the supporting rod 6 slides to the highest point of the bottom of the annular groove 10, the two sliding blocks 8 respectively reach the lowest point of the lower ends of the two vertical grooves 71 and respectively enter the lowest points of the lower ends of the two spiral grooves 72, then the lower end of the supporting rod 6 continuously slides to the lowest point of the bottom of the annular groove 10, at this time, under the action of the first elastic element 9, the supporting rod 6 moves downwards relative to the through hole 14, the two sliding blocks 8 respectively slide upwards from the lowest points of the lower ends of the two spiral grooves 72, so that the supporting rod 6 is driven to rotate by the rotating force generated by the supporting rod 6 until the two sliding blocks 8 respectively reach the highest points of the upper ends of the two spiral grooves 72 and respectively enter the highest points of the upper ends of the two vertical grooves 71, at this time, the supporting rod 6 is at the lowest point of the bottom of the annular groove 10, the supporting rod 6 completes a half turn, so that the cultivation basin 5 rotates by a half turn, the support rod 6 can rotate around the transmission rod 3 and keep intermittent rotation all the time, so that an observer can observe flowers in an all-around and dead-angle-free mode, and the ornamental effect is improved to the maximum extent.
According to the flower three-dimensional display device for landscape architecture, the rotary lifting mechanism is arranged, so that flowers in the cultivation pot enclosure can reciprocate up and down while rotating around the transmission rod, not only can all flowers be viewed at different angles, but also one of the flowers can be viewed at different angles independently, the viewing effect is better, meanwhile, through the arrangement of the rotation mechanism, the rotation mechanism is matched with the rotary lifting mechanism, so that the flowers in the cultivation pot can rotate up and down while rotating around the transmission rod and reciprocating with the flowers, the rotation can be carried out, the viewing angle is further improved, the condition that a viewer has no dead angle in the flower viewing angle is ensured, and the viewing effect is further improved.
It is to be understood that the present invention has been described with reference to certain embodiments, and that various changes in the features and embodiments, or equivalent substitutions may be made therein by those skilled in the art without departing from the spirit and scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed, but that the invention will include all embodiments falling within the scope of the appended claims.

Claims (4)

1. A flowers stereoscopic display device for landscape architecture, characterized by that includes:
a mounting base (1);
the display board (4) is horizontally arranged on the upper part of the mounting base (1), and at least one through hole (14) is formed in the surface of the display board along the circumferential direction;
the transmission rod (3) is vertically arranged between the mounting base (1) and the display board (4), the upper end of the transmission rod is fixedly connected to the display board (4), and the lower end of the transmission rod is movably connected to the mounting base (1);
the cultivating basin (5) is arranged at the position, close to the through hole (14), of the upper part of the display board (4);
the supporting rod (6) is vertically arranged between the mounting base (1) and the display board (4), the upper end of the supporting rod penetrates through the through hole (14) and then is connected to the lower part of the cultivating pot (5), and the lower end of the supporting rod is connected with the mounting base (1);
the rotary lifting mechanism is arranged between the mounting base (1) and the display board (4) and is used for driving the support rod (6) to rotate around the transmission rod (3) and move up and down in a reciprocating manner;
the rotary lifting mechanism comprises a motor (2), the motor (2) is arranged at the upper part of the mounting base (1), a first gear (15) is sleeved on an output shaft of the motor (2), a second gear (16) is sleeved on the transmission rod (3), the second gear (16) is meshed with the first gear (15), the upper surface of the mounting base (1) is provided with an annular groove (10), the annular groove (10) is positioned right below the through hole (14), the upper end of the transmission rod (3) is fixedly connected with the middle position of the lower part of the display board (4), the lower end of the transmission rod (3) is positioned at the circle center of the annular groove (10) and is connected with the mounting base (1) through a bearing, the lower end of the supporting rod (6) is positioned in an annular groove (10), and the bottom of the annular groove (10) is an inclined plane from low to high and then low;
an autorotation mechanism is arranged in the through hole (14) and is used for driving the support rod (6) to autorotate;
the rotation mechanism comprises two sliding blocks (8), the opposite positions on the inner wall of the through hole (14) are respectively horizontally provided with a limiting hole (20), the two sliding blocks (8) are respectively positioned in the two limiting holes (20), a second elastic part (21) is arranged between each sliding block (8) and the corresponding limiting hole (20), one end of each second elastic part (21) is fixedly connected onto the corresponding sliding block (8), the other end of each second elastic part (21) is fixedly connected onto the inner wall of the corresponding limiting hole (20), a reciprocating spiral groove (7) is arranged at the position, close to the through hole (14), of the support rod (6), the two sliding blocks (8) are positioned in the reciprocating spiral groove (7), the support rod (6) is sleeved with a fixing plate (12), the fixing plate (12) is connected with the support rod (6) through a bearing, and a limiting block (13) is sleeved on the lower portion, positioned on the fixing plate (12), of the support rod (6), a first elastic piece (9) is arranged between the fixing plate (12) and the display plate (4), the first elastic piece (9) is sleeved on the supporting rod (6), and the lower end of the first elastic piece (9) is fixedly connected with the fixing plate (12);
reciprocal helicla flute (7) comprise two perpendicular grooves (71) and two helicla flutes (72), two perpendicular groove (71) is vertical respectively to be set up in two sides that bracing piece (6) is relative, two helicla flute (72) set up respectively that bracing piece (6) is relative two sides and lie in between two perpendicular grooves (71), each the upper end of helicla flute (72) is connected with the upper end side of a perpendicular groove (71), each the lower extreme of helicla flute (72) is connected with the lower extreme of another perpendicular groove (71) and the lower extreme of helicla flute (72) is located the below of perpendicular groove (71), and two perpendicular grooves (71) communicate with each other with the junction of two helicla flutes (72), each the upper end degree of depth of perpendicular groove (71) is greater than the upper end degree of depth rather than the helicla flute (72) of being connected, each the lower extreme degree of depth of perpendicular groove (71) is less than the lower extreme degree of depth of helical flute (72).
2. A flower stereoscopic display device for landscape architecture according to claim 1, wherein the lower end of the supporting rod (6) is provided with a universal wheel (11), and the bottom of the universal wheel (11) is in contact with the bottom of the annular groove (10).
3. A flower stereoscopic display device for landscape architecture according to claim 1, wherein a circle of sliding groove (19) is opened at the lower part of the fixing plate (12), a plurality of protrusions (18) are uniformly arranged at the upper part of the limiting block (13) near the sliding groove (19), and the plurality of protrusions (18) are positioned in the sliding groove (19).
4. A flower stereoscopic display device for landscape architecture according to claim 1, wherein a plurality of display lamps (17) are uniformly arranged on the upper surface of the mounting base (1) at positions around the outside of the annular groove (10), each display lamp (17) facing one of the through holes (14).
CN202111165168.4A 2021-09-30 2021-09-30 A three-dimensional display device of flowers for landscape garden Active CN113728841B (en)

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