Watering type flower placement showing stand
By designing a water-sprinkling flower display rack, the support pipes and rotating components enable all-around display of flowers. Combined with the drip pipes of the watering components to form a water curtain, the problem of low aesthetic appeal of flower display racks is solved, realizing both dynamic and static viewing modes, and improving the aesthetics of flower display and resource utilization efficiency.
Patent Information
- Application Number
- CN202520622982.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Existing flower display racks cannot achieve full-range dynamic display, resulting in poor viewing effect, and the flowers are fixed in position, making them less attractive.
Design a watering-type flower display rack, including a rack assembly, support tubes, watering assembly, rotating assembly, linkage components, and flower pot placement assembly. The support tubes and rotating assembly enable all-around display of flower pots, and the drip pipes of the watering assembly form a water curtain, providing dynamic and static viewing modes.
It enables a full-range dynamic display of flowers, enhancing the viewing experience. The watering components recycle water resources, and the equipment has a simple structure, is flexible in use, and produces a beautiful visual effect.
Smart Images

Figure CN223773456U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to landscape equipment field relates to flower display stand, especially a kind of watering formula flower placement display stand. BACKGROUND
[0002] With the development of society, people pay more and more attention to the influence of environment on life, more and more people begin to pay attention to the planting and display of flowers, to improve the comfort of living environment.
[0003] Ordinary family is planted in flowerpot when planting flowers, it is single when admiring flowers, part of family is placed on display stand and is displayed, and flower position is fixed immovably, it is inconvenient for people to admire in all directions, and the effect of flower display activity is not ideal. UTILITY MODEL CONTENT
[0004] The utility model aims at the above-mentioned problems existing in prior art, and provides a watering formula flower placement display stand, which solves the technical problems of how to display flowers in all directions and dynamically and improve the viewing effect.
[0005] The utility model can be realized by the following technical schemes:
[0006] A watering formula flower placement display stand, comprising a placement rack assembly, a support pipe, a watering assembly, a plurality of rotating assemblies, a plurality of linkage components and a plurality of flowerpot placement assemblies;
[0007] The placement rack assembly comprises a fixed seat and a water collecting box, the fixed seat is fixed in the water collecting box, a cavity is arranged in the fixed seat, and a water pumping component is arranged in the cavity;
[0008] The bottom of the support pipe is inserted into the cavity of the fixed seat and connected with the water outlet end of the water pumping component, and the top water outlet end of the support pipe is connected with the water inlet end of the watering assembly;
[0009] The watering assembly is located above the water collecting box;
[0010] The rotating assembly is sleeved on the outer periphery of the support pipe, and a plurality of rotating assemblies are arranged from top to bottom, a through hole is formed in the middle of the rotating assembly for the support pipe to pass through, and a plurality of flowerpot placement assemblies are mounted on each rotating assembly;
[0011] One linkage component is arranged between adjacent two rotating assemblies to form a transmission pair, and the lower surface of the lowermost rotating disc is in pressing and sliding contact with the upper surface of the fixed seat.
[0012] Further, the water pumping component comprises a water pump and a water inlet pipe; the fixing seat is a downwardly open cylinder, the top of the fixing seat is provided with a threaded hole, and the lower end of the supporting pipe is screwed into the threaded hole to form a sealing connection mechanism; the lower end of the supporting pipe extends into the cavity and is connected with the water outlet end of the water pump; the water outlet end of the water inlet pipe is connected with the water inlet end of the water pump, and the water inlet end of the water inlet pipe extends into the water collecting box through the fixing seat.
[0013] Further, the fixing seat is located in the middle of the water collecting box; the bottom of the water collecting box is concave and arc-shaped or curved downward, and the middle of the water collecting box is the lowest position.
[0014] Further, the watering assembly comprises a connecting cylinder, a water outlet pipe and a plurality of water dripping pipes; the connecting cylinder is a downwardly open cylinder, and two mounting holes are formed in the circumferential surface of the connecting cylinder; two water outlet pipes are arranged, the end portions of the water outlet pipes are inserted or screwed into the mounting holes to form a sealing connection structure, and the two water outlet pipes are arranged in a straight line; a plurality of water dripping pipes are arranged on each water outlet pipe, the water outlets of the water dripping pipes are downwardly arranged above the water collecting box; the top of the supporting pipe is inserted or screwed into the bottom opening of the connecting cylinder to form a sealing connection structure.
[0015] Further, the plurality of water dripping pipes are arranged at equal intervals.
[0016] Further, the rotating assembly comprises a rotating disc; the top of the fixing seat is provided with an annular groove one, and a plurality of balls are arranged in the annular groove one; the lower surface of the rotating disc located at the lowest position is pressed against the spherical surface of the plurality of balls to form a sliding mechanism.
[0017] Further, a plurality of insertion grooves are formed in the circumferential surface of the rotating disc, a plurality of positioning holes are formed in the rotating disc, and the plurality of positioning holes respectively pass through the plurality of insertion grooves; the flowerpot placing assembly comprises an insertion plate, a placing box and a positioning pin; one end of the insertion plate is provided with a strip-shaped hole, and the end portion is inserted into the insertion groove in a matched manner; the other end of the insertion plate is connected with the placing box; the positioning pin passes through the positioning hole and the strip-shaped hole to connect the insertion plate and the rotating disc; the lengths of the plurality of insertion plates are different.
[0018] Further, the two sides of the rotating disc are provided with annular grooves two, and fixed teeth are arranged in the annular grooves two; the linkage component comprises a positioning sleeve, a linkage part and a supporting part, the positioning sleeve is fixedly arranged on the outer periphery of the supporting pipe by key connection, and the upper and lower ends of the positioning sleeve abut against the surfaces of the two adjacent rotating discs without pressure; the linkage part comprises a fixed shaft one, a rolling bearing one and a gear, one end of the fixed shaft one is fixed to the peripheral surface of the positioning sleeve, the other end of the fixed shaft one is provided with the rolling bearing one, the outer peripheral surface of the rolling bearing one is fixed with the gear, and the gear is engaged with the fixed teeth to form a transmission mechanism; the supporting part comprises a fixed shaft two, a rolling bearing two and a supporting wheel, one end of the fixed shaft two is fixed to the peripheral surface of the positioning sleeve, the other end of the fixed shaft two is provided with the rolling bearing two, the outer peripheral surface of the rolling bearing two is fixed with the supporting wheel, and the peripheral surface of the supporting wheel is in sliding and pressure contact with the surfaces of the two adjacent rotating discs to form a sliding supporting mechanism; wherein the number of the linkage part and the supporting part is the same, and at least two of each are arranged.
[0019] Further, the plurality of linkage parts and supporting parts are uniformly distributed on the outer periphery of the positioning sleeve, and the linkage parts and the supporting parts are alternately arranged.
[0020] Further, the positioning assembly comprises a pressing disc, a supporting leg and a pressing wheel, the pressing disc is sleeved on the outer periphery of the supporting pipe and is threadedly connected with the supporting pipe; the supporting leg is provided with at least three, the top of the supporting leg is connected with the pressing disc, and the pressing wheel is fixed at the bottom of the supporting leg; the peripheral surface of the pressing wheel is in pressure contact with the upper surface of the uppermost rotating disc.
[0021] Compared with the prior art, the water pouring type flower placing and displaying rack has the following advantages:
[0022] The utility model discloses, have flower watering mode, flower's dynamic viewing mode and water curtain's static viewing mode, can flexible adjustment multiple flowerpot placing assembly's installation position, simple equipment structure, use flexible.
[0023] In the utility model, the rotating assembly is rotatably arranged with the supporting pipe as the rotating shaft, in the use process, the person who appreciates can directly drive the flowerpot placing assembly to rotate, and then the flowers are placed on the flowerpot placing assembly to carry out all -round display, in the rotating process of the flowerpot placing assembly, the watering action can be carried out, the plurality of rotating assemblies are arranged from top to bottom, and one linkage component is arranged between the adjacent two rotating assemblies to constitute a transmission pair, so that when any one rotating assembly rotates, the remaining rotating assemblies can be linked, therefore, under the condition that one flowerpot placing assembly is driven, all flowerpot placing assemblies are moved, the effect that all flowers are moved at the same time is realized, and it is convenient to appreciate, wherein, the rotating directions of the adjacent two rotating discs are opposite, so as to produce the beauty of dazzling eyes.
[0024] In this invention, the water from the watering component falls into a collection box for recycling, preventing resource waste. Furthermore, the water droplets from the watering component form a water curtain, which is more aesthetically pleasing.
[0025] In this invention, the top of the fixed base forms rolling and sliding friction with the lower surface of the rotating disk, reducing frictional resistance and ensuring the normal rotation of the rotating disk. Simultaneously, the fixed base provides excellent support for the entire equipment. The annular groove and multiple ball bearings ensure the force balance of the rotating disk, preventing tilting and ensuring normal operation of the equipment. The upper and lower ends of the positioning sleeve abut against the surfaces of the two adjacent rotating disks without pressure; that is, the diameter of the support wheel is equal to the height of the positioning sleeve, reducing friction between the end face of the positioning sleeve and the rotating disk. The number of linkage parts and support parts is the same, with at least two of each, to ensure optimal linkage and stability of the multiple rotating disks. The two adjacent rotating disks press against the circumference of the support wheel, allowing the support wheel to roll along with the rotating disk, reducing friction on the rotating disk. The rotating disk provides excellent support to the upper rotating disk, ensuring optimal stability during equipment movement. Attached Figure Description
[0026] Figure 1 This is a three-dimensional schematic diagram of the present invention.
[0027] Figure 2 This is a schematic diagram showing the connection of the watering component, support pipe, and placement rack component in this utility model.
[0028] Figure 3 This is a cross-sectional view of the watering component in this utility model.
[0029] Figure 4 This is an exploded view of the rotating component, the linkage component, and the flowerpot placement component in this utility model.
[0030] Figure 5 This is a schematic diagram of the installation of the rotating component and linkage parts in this utility model.
[0031] Figure 6 This is a schematic diagram of the positioning component in this utility model.
[0032] Figure 7 This is a schematic diagram of the flowerpot placement component in this utility model.
[0033] Figure 8 This is a front view of one state of this utility model.
[0034] Figure 9 yes Figure 8 Top view.
[0035] In the diagram, 1. Placement rack assembly; 10. Fixing base; 101. Water pump; 102. Water inlet pipe; 103. Ball bearing; 10a. Cavity; 10b. Annular groove one; 11. Water collection box; 2. Support pipe; 3. Watering assembly; 31. Connecting cylinder; 31a. Mounting hole; 32. Water outlet pipe; 33. Drip pipe; 4. Rotating assembly; 41. Rotating disc; 41a. Slot; 41b. Positioning hole; 41c. Annular groove two; 42. Fixing 5. Gear; 51. Linkage component; 52. Positioning sleeve; 52. Linkage part; 521. Fixed shaft one; 522. Rolling bearing one; 523. Gear; 53. Support part; 531. Fixed shaft two; 532. Rolling bearing two; 533. Support wheel; 6. Positioning assembly; 61. Pressure plate; 62. Support leg; 63. Pressure wheel; 7. Flower pot placement assembly; 71. Insert plate; 71a. Strip hole; 72. Placement box; 73. Positioning pin. Detailed Implementation
[0036] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0037] like Figures 1-9 As shown, this embodiment provides a watering flower display rack, including a rack assembly 1, a support tube 2, a watering assembly 3, multiple rotating assemblies 4, multiple linkage components 5, and multiple flower pot placement assemblies 7;
[0038] The placement rack assembly 1 includes a fixing base 10 and a water collection box 11. The fixing base 10 is fixed inside the water collection box 11. A cavity 10a is provided inside the fixing base 10, and a water pumping component is provided inside the cavity 10a.
[0039] The bottom of the support pipe 2 is inserted into the cavity 10a of the fixed base 10 and connected to the water outlet of the pumping component. The top water outlet of the support pipe 2 is connected to the water inlet of the watering component 3.
[0040] The watering component 3 is located above the water collection box 11;
[0041] Rotating component 4 is sleeved on the outer periphery of support tube 2. Multiple rotating components 4 are arranged from top to bottom. A through hole for support tube 2 to pass through is opened in the middle of rotating component 4. Multiple flower pot placement components 7 are installed on each rotating component 4.
[0042] A linkage component 5 is provided between two adjacent rotating components 4 to form a transmission pair. The lower surface of the bottom rotating disk 41 is pressed and slidably contacted with the upper surface of the fixed seat 10.
[0043] In this utility model, the rotating component 4 is rotatably arranged with the support tube 2 as the rotating axis. During use, the viewer can directly rotate the flowerpot placement component 7 to display the flowers (placed on the flowerpot placement component 7) from all angles. When the flowerpot placement component 7 is rotating, watering can also be performed when the flower is directly below the watering component 3. The watering component 3 can be parallel to the water collection box 11 and arranged in a straight line.
[0044] In this invention, multiple rotating components 4 are arranged from top to bottom, and a linkage component 5 is set between two adjacent rotating components 4 to form a transmission pair. This allows the other rotating components 4 to move in tandem when any one rotating component 4 rotates. Thus, when one flowerpot placement component 7 is moved, all flowerpot placement components 7 move with it, achieving the effect of all flowers moving simultaneously, which is convenient for viewing. In other words, the device achieves a dynamic viewing mode for the flowers while rotating, making it more aesthetically pleasing.
[0045] In this invention, multiple flowerpot placement components 7 are fixed one by one on the rotating component 4 to ensure that the multiple flowerpot placement components 7 are located in multiple vertical planes. That is, at a certain angle of rotation, all the flowers are located in different positions to achieve a more aesthetically pleasing effect.
[0046] In this invention, the water from the watering component 3 falls into the water collection box 11 for recycling, preventing resource waste. Simultaneously, the water droplets from the watering component 3 form a water curtain, which is more aesthetically pleasing.
[0047] The pumping components include a water pump 101 and an inlet pipe 102;
[0048] The fixing seat 10 is a cylindrical shape with the opening facing downward. The top of the fixing seat 10 is provided with a threaded hole and the lower end of the support tube 2 is screwed into the threaded hole to form a sealing connection mechanism. The lower end of the support tube 2 extends into the cavity 10a and is connected to the outlet end of the water pump 101.
[0049] The outlet end of the inlet pipe 102 is connected to the inlet end of the water pump 101, and the inlet end of the inlet pipe 102 passes through the fixed base 10 to extend into the water collection box 11.
[0050] Multiple inlet pipes 102 are installed.
[0051] In this invention, the water inlet pipe 102 extracts water from the water collection box 11 to achieve the effect of recycling; the water is then transported to the watering assembly 3 by the water pump 101 to further achieve the watering effect on the flowers.
[0052] In this utility model, the water pump 101 is placed in the cavity 10a. The water pump 101 can be fixed on the inner wall of the fixing seat 10 or the bottom of the water collection box 11. The water pump 101 is a submersible pump or a water pump. Multiple water inlet pipes 102 are provided to improve the pumping efficiency.
[0053] The fixing base 10 is located in the middle of the water collection box 11;
[0054] The bottom of the water collection box 11 is a downward-concave arc or curved surface, and the middle part of the water collection box 11 is the lowest position.
[0055] In this invention, the bottom of the water collection box 11 is a downward-concave arc or curved surface, which facilitates the water inlet pipe 102 to draw water from the source.
[0056] The watering assembly 3 includes a connecting cylinder 31, a water outlet pipe 32, and multiple drip pipes 33. The connecting cylinder 31 is a cylindrical shape with its opening facing downwards, and two mounting holes 31a are provided on the circumference of the connecting cylinder 31.
[0057] Two water outlet pipes 32 are provided. The ends of the water outlet pipes 32 are inserted into or screwed into the mounting holes 31a to form a sealed connection structure. The two water outlet pipes 32 are arranged in a straight line.
[0058] Multiple drip pipes 33 are installed on each water outlet pipe 32, with the water outlet of the drip pipe 33 facing downwards and located directly above the water collection box 11;
[0059] The top of the support tube 2 is inserted into or screwed into the bottom opening of the connecting tube 31 to form a sealed connection structure.
[0060] In this invention, water is pumped by a water pump 101, passes through a support pipe 2, and enters a connecting cylinder 31, an outlet pipe 32, and multiple drip pipes 33, and finally drips from the drip pipes 33. During operation, the flowerpot placement component 7 is rotated to a position below the drip pipes 33 to water the flower.
[0061] This embodiment includes several flower watering modes, as follows:
[0062] Watering mode one, such as Figure 8 , Figure 9 The image shows the initial state one:
[0063] Multiple flower pot placement components 7 are installed below the drip pipe 33, that is, only two flower pot placement components 7 are installed on each rotating component 4, and the two flower pot placement components 7 are arranged in a straight line; the multiple flower pot placement components 7 from top to bottom are located in the same vertical plane.
[0064] Therefore, under the initial state one, it is possible to water multiple flowers simultaneously.
[0065] Watering mode two, such as Figure 1The image shows initial state two:
[0066] Multiple flower pot placement components 7 are installed and distributed in a dispersed manner. That is, each rotating component 4 does not limit the number of flower pot placement components 7, but it is necessary to ensure that multiple flower pot placement components 7 are located in different vertical planes. When watering is required, one flower pot placement component 7 is slowly moved so that each flower pot placement component 7 moves in turn to the area below the drip pipe 33 to achieve watering.
[0067] Watering Mode 3:
[0068] Based on watering mode two, the flower pot placement component 7 is rotated at a constant speed to a fixed time. During this time, the time that each flower pot placement component 7 passes under the drip pipe 33 is consistent, thus achieving the effect of consistent watering volume. This method is only applicable to the same planting conditions.
[0069] In this invention, the end of the water outlet pipe 32 is inserted into or screwed into the mounting hole 31a to form a sealed connection structure, and the top of the support pipe 2 is inserted into or screwed into the bottom opening of the connecting cylinder 31 to form a sealed connection structure, thereby preventing the equipment from leaking water.
[0070] In this invention, multiple drip pipes 33 are arranged at equal intervals to ensure more even watering and a more aesthetically pleasing water curtain.
[0071] It should be noted that in this utility model, the static viewing mode of the water curtain can be adjusted in conjunction with the second watering mode, as follows:
[0072] Based on watering mode two, ensure that in a certain state, none of the multiple flower pot placement components 7 are located below the drip pipes 33, and the water flow from the multiple drip pipes 33 falls directly into the water collection box 11 without obstruction. Under this static condition, the water flow from the multiple drip pipes 33 forms a water curtain, which is more beautiful.
[0073] In summary, this utility model allows for flexible adjustment of the installation positions of multiple flowerpot placement components 7, enabling various watering modes, including dynamic viewing modes for flowers and static viewing modes for water curtains. The equipment has a simple structure and is flexible in use.
[0074] Rotating assembly 4 includes a rotating disk 41;
[0075] An annular groove 10b is formed on the top of the fixed base 10, and multiple balls 103 are arranged inside the annular groove 10b.
[0076] The lower surface of the rotating disk 41 at the bottom presses against the spherical surface of multiple balls 103 to form a sliding mechanism.
[0077] In this invention, the top of the fixed base 10 forms rolling and sliding friction with the lower surface of the rotating disk 41, reducing frictional resistance and ensuring the normal rotation of the rotating disk 41. At the same time, the fixed base 10 provides good support for the entire equipment. The annular groove 10b and multiple balls 103 can ensure the force balance of the rotating disk 41, prevent the rotating disk 41 from tilting, and ensure the normal operation of the equipment.
[0078] Multiple slots 41a are provided on the circumferential surface of the rotating disk 41, and multiple positioning holes 41b are provided on the rotating disk 41, with the multiple positioning holes 41b corresponding to and passing through the multiple slots 41a respectively.
[0079] The flowerpot placement assembly 7 includes a insert plate 71, a placement box 72 and a positioning pin 73. One end of the insert plate 71 has a strip hole 71a and this end is inserted into the slot 41a. The other end of the insert plate 71 is connected to the placement box 72.
[0080] The positioning pin 73 passes through the positioning hole 41b and the strip hole 71a to connect the insert plate 71 and the rotating disk 41;
[0081] The lengths of the multiple inserts 71 are inconsistent.
[0082] In this invention, a strip hole 71a is provided at one end of the insert plate 71, which facilitates the positioning pin 73 to pass through the strip hole 71a, enabling fine adjustment of the position of the insert plate 71 and making the equipment more flexible to use.
[0083] In this utility model, the lengths of the multiple insert plates 71 are not the same, so that in the above-mentioned watering mode one, each flower pot placement component 7 can be watered normally. That is, from top to bottom, the length of the insert plates 71 increases sequentially, so that the watering process of the multiple flower pot placement components 7 does not affect each other.
[0084] Meanwhile, the different lengths of the multiple inserts 71 make the device display more aesthetically pleasing in the dynamic viewing mode of multiple flowers.
[0085] Annular grooves 41c are provided on both sides of the rotating disk 41, and fixed teeth 42 are provided inside the annular grooves 41c.
[0086] The linkage component 5 includes a positioning sleeve 51, a linkage part 52, and a support part 53. The positioning sleeve 51 is keyed and fixedly disposed on the outer periphery of the support tube 2. The upper and lower ends of the positioning sleeve 51 are respectively in pressure-free contact with the surfaces of two adjacent rotating disks 41.
[0087] The linkage 52 includes a fixed shaft 521, a rolling bearing 522 and a gear 523. One end of the fixed shaft 521 is fixed to the circumferential surface of the positioning sleeve 51, and the other end of the fixed shaft 521 is provided with the rolling bearing 522. The gear 523 is fixed to the outer circumferential surface of the rolling bearing 522. The gear 523 meshes with the fixed gear 42 to form a transmission mechanism.
[0088] The support part 53 includes a fixed shaft 531, a rolling bearing 532, and a support wheel 533. One end of the fixed shaft 531 is fixed to the circumferential surface of the positioning sleeve 51, and the other end of the fixed shaft 531 is provided with the rolling bearing 532. The support wheel 533 is fixed to the outer circumferential surface of the rolling bearing 532. The circumferential surface of the support wheel 533 slides and presses against the surfaces of two adjacent rotating disks 41 to form a sliding support mechanism.
[0089] The linkage part 52 and the support part 53 are the same in number, and each has at least two.
[0090] In this invention, when one rotating disk 41 rotates, it drives the meshing gear 523 to rotate, which in turn drives another rotating disk 41 to rotate, thus achieving the situation where all rotating disks 41 rotate. It should be noted that the rotation directions of two adjacent rotating disks 41 are opposite to create a dazzling aesthetic.
[0091] In this invention, two adjacent rotating disks 41 press against the circumference of the support wheel 533, and the support wheel 533 can roll along with the rotating disk 41 to reduce friction on the rotating disk 41. At the same time, the rotating disk 41 provides good support for the rotating disk 41 located above, ensuring the best stability during the movement of the equipment.
[0092] In this utility model, the positioning sleeve 51 is keyed and fixedly installed on the outer periphery of the support tube 2, that is, the positioning sleeve 51 does not rotate, thereby ensuring the effective linkage of the gear 523 and preventing the gear 523 from slipping.
[0093] In this invention, the upper and lower ends of the positioning sleeve 51 are in pressure contact with the surfaces of the two adjacent rotating disks 41, respectively. That is, the diameter of the support wheel 533 is equal to the height of the positioning sleeve 51, thereby reducing the friction between the end face of the positioning sleeve 51 and the rotating disk 41.
[0094] In this invention, the number of linkage parts 52 and support parts 53 are the same, and at least two of each are provided to ensure that the linkage effect and stability of the multiple rotating disks 41 are optimal.
[0095] Multiple linkage parts 52 and support parts 53 are evenly distributed on the outer periphery of the positioning sleeve 51, and the linkage parts 52 and support parts 53 are arranged alternately in sequence.
[0096] In this invention, the linkage part 52 and the support part 53 are arranged alternately in sequence to improve the overall linkage effect and stability of the equipment.
[0097] Positioning component 6 includes a clamping plate 61, a support leg 62 and a clamping wheel 63. The clamping plate 61 is sleeved on the outer periphery of the support tube 2 and threadedly connected to the support tube 2.
[0098] At least three support legs 62 are provided, and the top of the support legs 62 is connected to the pressure plate 61.
[0099] The clamping wheel 63 is fixed to the bottom of the support leg 62, and the circumference of the clamping wheel 63 presses against the upper surface of the rotating disk 41 located at the top.
[0100] In this invention, the pressure roller 63 presses against the upper surface of the uppermost rotating disk 41 to prevent the rotating disk 41 from shaking and improve the stability of the equipment.
[0101] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
Claims
1. A watering-type flower display rack, characterized in that, It includes a placement rack assembly (1), a support tube (2), a watering assembly (3), multiple rotating assemblies (4), multiple linkage components (5), and multiple flower pot placement assemblies (7); The placement rack assembly (1) includes a fixed base (10) and a water collection box (11). The fixed base (10) is fixed inside the water collection box (11). A cavity (10a) is provided inside the fixed base (10), and a water pumping component is provided inside the cavity (10a). The bottom of the support pipe (2) is inserted into the cavity (10a) of the fixed seat (10) and connected to the water outlet of the pumping component. The top water outlet of the support pipe (2) is connected to the water inlet of the watering component (3). The watering assembly (3) is located above the water collection box (11); The rotating component (4) is sleeved on the outer periphery of the support tube (2). Multiple rotating components (4) are arranged from top to bottom. A through hole is opened in the middle of the rotating component (4) for the support tube (2) to pass through. Multiple flower pot placement components (7) are installed on each rotating component (4). A linkage component (5) is provided between two adjacent rotating components (4) to form a transmission pair. The lower surface of the lowest rotating disk (41) is pressed against and in sliding contact with the upper surface of the fixed seat (10).
2. The watering-type flower display rack according to claim 1, characterized in that, The pumping components include a water pump (101) and an inlet pipe (102); The fixing seat (10) is a cylindrical shape with the opening facing downward. The top of the fixing seat (10) is provided with a threaded hole and the lower end of the support tube (2) is screwed into the threaded hole to form a sealing connection mechanism. The lower end of the support tube (2) extends into the cavity (10a) and is connected to the outlet end of the water pump (101). The outlet end of the water inlet pipe (102) is connected to the inlet end of the water pump (101), and the inlet end of the water inlet pipe (102) passes through the fixed seat (10) to extend into the water collection box (11).
3. The watering-type flower display rack according to claim 2, characterized in that, The fixing seat (10) is located in the middle of the water collection box (11); The bottom of the water collection box (11) is a downward-concave arc or curved surface, and the middle part of the water collection box (11) is the lowest position.
4. A watering-type flower display rack according to any one of claims 1-3, characterized in that, The watering assembly (3) includes a connecting cylinder (31), a water outlet pipe (32) and multiple drip pipes (33). The connecting cylinder (31) is a cylindrical shape with its opening facing downwards, and two mounting holes (31a) are opened on the circumference of the connecting cylinder (31). Two water outlet pipes (32) are provided. The ends of the water outlet pipes (32) are inserted into or screwed into the mounting holes (31a) to form a sealed connection structure. The two water outlet pipes (32) are arranged in a straight line. Each of the water outlet pipes (32) is equipped with multiple drip pipes (33), with the water outlet of the drip pipe (33) facing downward and located directly above the water collection box (11); The top of the support tube (2) is inserted into or screwed into the bottom opening of the connecting tube (31) to form a sealed connection structure.
5. A watering-type flower display rack according to claim 4, characterized in that, The multiple drip pipes (33) are arranged at equal intervals.
6. A watering-type flower display rack according to claim 4, characterized in that, The rotating assembly (4) includes a rotating disk (41); The top of the fixed seat (10) has an annular groove (10b), and multiple balls (103) are arranged inside the annular groove (10b); The lower surface of the rotating disk (41) located at the bottom presses against the spherical surface of a plurality of balls (103) to form a sliding mechanism.
7. A watering-type flower display rack according to claim 6, characterized in that, The rotating disk (41) has multiple slots (41a) on its circumference and multiple positioning holes (41b) on its surface. The multiple positioning holes (41b) correspond to and pass through the multiple slots (41a). The flowerpot placement assembly (7) includes a insert plate (71), a placement box (72) and a positioning pin (73). One end of the insert plate (71) has a strip hole (71a) and the end is inserted into a slot (41a). The other end of the insert plate (71) is connected to the placement box (72). The positioning pin (73) passes through the positioning hole (41b) and the strip hole (71a) to connect the insert plate (71) and the rotating disk (41); The lengths of the multiple inserts (71) are inconsistent.
8. A watering-type flower display rack according to claim 6, characterized in that, The rotating disk (41) has annular grooves (41c) on both sides, and fixed teeth (42) are provided inside the annular grooves (41c). The linkage component (5) includes a positioning sleeve (51), a linkage part (52) and a support part (53). The positioning sleeve (51) is keyed and fixedly installed on the outer periphery of the support tube (2). The upper and lower ends of the positioning sleeve (51) are in pressure contact with the surfaces of two adjacent rotating disks (41). The linkage part (52) includes a fixed shaft (521), a rolling bearing (522) and a gear (523). One end of the fixed shaft (521) is fixed to the circumferential surface of the positioning sleeve (51), and the other end of the fixed shaft (521) is provided with a rolling bearing (522). The gear (523) is fixed on the outer circumferential surface of the rolling bearing (522). The gear (523) meshes with the fixed gear (42) to form a transmission mechanism. The support part (53) includes a fixed shaft two (531), a rolling bearing two (532) and a support wheel (533). One end of the fixed shaft two (531) is fixed to the circumferential surface of the positioning sleeve (51), and the other end of the fixed shaft two (531) is provided with the rolling bearing two (532). The support wheel (533) is fixed to the outer circumferential surface of the rolling bearing two (532). The circumferential surface of the support wheel (533) slides and presses against the surfaces of two adjacent rotating disks (41) to form a sliding support mechanism. The linkage part (52) and the support part (53) are the same in number, and at least two of each are provided.
9. A watering-type flower display rack according to claim 8, characterized in that, Multiple linkage parts (52) and support parts (53) are evenly distributed on the outer periphery of the positioning sleeve (51), and the linkage parts (52) and support parts (53) are arranged alternately in sequence.
10. A watering-type flower display rack according to any one of claims 7-8, characterized in that, It also includes a positioning component (6); The positioning component (6) includes a pressure plate (61), a support leg (62) and a pressure wheel (63). The pressure plate (61) is sleeved on the outer periphery of the support tube (2) and threadedly connected to the support tube (2). At least three support legs (62) are provided, and the top of the support legs (62) is connected to the pressure plate (61). The clamping wheel (63) is fixed to the bottom of the support leg (62), and the circumferential surface of the clamping wheel (63) presses against the upper surface of the rotating disk (41) located at the top.