Display stand for a smart lawnmower

The modular display stand for robotic lawnmowers addresses inflexibility and space issues by enabling easy assembly/disassembly and adjustable display angles, improving exhibition flexibility and space utilization.

DE202026101556U1Active Publication Date: 2026-05-07NANJING CHERVON IND
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Patent Information

Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
NANJING CHERVON IND
Filing Date
2026-03-20
Publication Date
2026-05-07

AI Technical Summary

Technical Problem

Current display stands for robotic lawnmowers are large, inflexible, and difficult to transport, occupying significant space and lacking adaptability to diverse exhibition environments.

Method used

A modular display stand with removable and pivotable machine stands, a support column, and adjustable angles for displaying lawnmowers, featuring a concave base with embedded lighting and movable wheels for enhanced flexibility and space utilization.

Benefits of technology

The stand improves exhibition flexibility, space efficiency, and visual presentation by allowing easy assembly/disassembly, adjustable display angles, and modular arrangement of lawnmowers, enhancing the overall exhibition experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

Display stand for an intelligent lawnmower, characterized in that it includes the following: a base, a support column extending vertically to the plane of the base, with one end of the support column connected to the base; several machine stands, each of the machine stands comprising a display section for placing the smart lawnmower and a fixing section connected to the support column, wherein the fixing sections of the several machine stands are removable and successively placed at different positions on the support column; wherein the exhibition section comprises a first end connected to the fixing section and a second end facing away from the fixing section, wherein in the vertical direction the first end is higher than the second end, and wherein, when the smart lawnmower is placed on the machine stand, the angle between the plane of a base plate of the smart lawnmower and the horizontal plane is greater than or equal to 0 degrees and less than or equal to 90 degrees.
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Description

Technical field

[0001] The present utility model relates to a display stand, for example a display stand for exhibiting an intelligent lawnmower. Technical background

[0002] Currently, most display stands for robotic lawnmowers are large, fixed structures that take up a lot of space, are not convenient to install or transport. They offer little overall flexibility, are not conducive to flexible arrangement and setup, and are difficult to adapt to diverse exhibition environments.

[0003] This section contains background information related to the present utility model; this background information is not necessarily prior art. Disclosure of the utility model

[0004] One purpose of this utility model is to partially or completely solve, or at least mitigate, the aforementioned problems. This utility model provides a display stand for a smart lawnmower that improves display flexibility and space utilization efficiency.

[0005] To achieve the aforementioned objective, the present utility model employs the following technical solutions: Display stand for an intelligent lawnmower, comprising: a base, a support column extending in the vertical direction to the plane of the base, one end of the support column being firmly connected to the base;Several machine stands, each machine stand comprising a display section for placing the smart lawnmower and a fixing section connected to the support column, the fixing sections of the several machine stands being removable and successively mounted at different positions on the support column, the display section comprising a first end connected to the fixing section and a second end facing away from the fixing section, the first end being higher than the second end in the vertical direction, and wherein, when the smart lawnmower is placed on the machine stand, the angle between the plane of a base plate of the smart lawnmower and the horizontal plane is greater than or equal to 0 degrees and less than or equal to 90 degrees.

[0006] In some embodiments, the top of the base is designed as a flat stand for placing the smart lawnmower.

[0007] In some embodiments, the flat stand is configured as a concave structure with a raised edge, and wherein, when the smart lawnmower is displayed on the flat stand, the support points of the smart lawnmower lie within the concave structure.

[0008] In some embodiments, the base further comprises a lamp group embedded along the inside of the concave structure.

[0009] In some embodiments, the underside of the base is provided with a movable wheel assembly.

[0010] In some embodiments, the fixing section is pivotable relative to the support column.

[0011] In some embodiments, the support column is a cylinder, wherein the fixing section is cylindrical, the inner wall of which rests against the support column.

[0012] In some embodiments, the multiple fixing sections abut each other in the vertical direction.

[0013] In some embodiments, one side of the display section is designed with a snap-in structure that serves to snap and fix the intelligent lawnmower into place.

[0014] In some embodiments, the locking structure comprises at least one locking element, wherein the base of the smart lawnmower comprises at least one locking section, wherein the locking element coincides with the locking section, and wherein the locking element is inserted into the locking section to secure the smart lawnmower.

[0015] In some embodiments, the locking structure comprises a first locking element and a second locking element, wherein the base of the smart lawnmower comprises a first locking section and a second locking section, and wherein the first locking element and the second locking element interact with the first locking section and the second locking section to lock and secure the smart lawnmower.

[0016] In some embodiments, the number of first locking elements is 2, wherein the 2 first locking elements are arranged symmetrically to the second plane.

[0017] In some embodiments, the number of second locking elements is 2, wherein the 2 second locking elements are arranged symmetrically to the second plane.

[0018] In some embodiments, the distance between the first locking elements is smaller than the distance between the second locking elements.

[0019] In some embodiments, it further comprises an information stand, wherein the information stand includes a display plate for placing an information display sheet and a clamping ring connected to the display plate, wherein the clamping ring is removablely mounted on the support column and pivotable relative to the support column.

[0020] In some embodiments, the clamping ring and the fixing section can be placed on the support column in any relative order.

[0021] In some embodiments, it further comprises a terminal stand, wherein the terminal stand includes a holder for placing a mobile terminal and an annular seat connected to the holder, the annular seat being removable and pivotable relative to the support column.

[0022] In some embodiments, the ring-shaped seat and the fixing section can be placed on the support column in any relative order.

[0023] In some embodiments, it further comprises a ring that can be placed on the support column and is located between the fixing sections of adjacent machine stands in order to adjust the distance between adjacent machine stands.

[0024] In some embodiments, the support column is constructed as several cooperating support elements, with one end of each support element forming a first connecting section and the other end forming a second connecting section cooperating with the first connecting section.

[0025] In some embodiments, the base forms a first assembly section that interacts with the first connecting section or the second connecting section.

[0026] In some embodiments, it further comprises a cover plate arranged at the end of the support column facing away from the base for placing an information display sheet, the cover plate containing a second assembly section that interacts with the first connecting section or the second connecting section.

[0027] In some embodiments, the support column and the display section are made of cold-rolled steel material, while the material of the fixing section is medical-grade stainless steel.

[0028] To achieve the aforementioned objective, the present utility model further provides a display stand for an intelligent lawnmower, comprising: a base, a support column extending vertically to the plane of the base, one end of the support column being fixedly connected to the base; several machine stands, each machine stand comprising a display section for placing the intelligent lawnmower and a fixing section connected to the support column, the fixing sections of the several machine stands being removable and successively placed at different positions on the support column.

[0029] In some embodiments, the fixing section is pivotable relative to the support column, with a swivel angle range of 0-360°.

[0030] In some embodiments, when the smart lawn mower is placed on the machine stand, the angle between the plane of a base plate of the smart lawn mower and the horizontal plane is greater than or equal to 5 degrees and less than or equal to 85 degrees.

[0031] The advantageous effects of the present utility model are as follows: The display stand for an intelligent lawnmower of the present utility model, wherein the machine stand is removable and mounted on the support column, forming a plug-in structure of the large tube over small tube type, is convenient to disassemble and assemble, improves the exhibition flexibility and space utilization efficiency, and enhances the layered feel of the exhibition. Presentation of the illustrations

[0032] To clarify the technical solutions in the embodiments of this utility model, the drawings required for the description of these embodiments are briefly presented. Obviously, the drawings shown in the following description represent only a few embodiments of this utility model. Those skilled in the art with ordinary knowledge in the field can derive further drawings from these drawings without any creative effort. Fig. Figure 1 is a schematic structural view of the display stand for an intelligent lawnmower according to an embodiment of the present utility model; Fig. Figure 2 is a schematic structural view of the exhibition stand made of Fig. 1 from one perspective; Fig. Figure 3 is a schematic structural view of the exhibition stand made of Fig. 1. From a different perspective; Fig. Figure 4 is an exploded view of the display stand made of Fig. 1; Fig. Figure 5 is a schematic structural view of the intelligent lawnmower according to an embodiment of the present utility model; Fig. Figure 6 is a schematic structural view of the intelligent lawnmower from Fig. 5 from a bottom view perspective; Fig. Figure 7 is a schematic structural view of the intelligent lawnmower according to an embodiment of the present utility model, which is placed on the display stand. Specific examples of implementation

[0033] Before an embodiment of the present utility model is explained in detail, it should be understood that the present utility model is not limited to its application to the structural details and component arrangements set out in the following description or shown in the drawings above.

[0034] In the present utility model, the terms "comprise," "contain," "have," or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a set of elements includes not only those elements but also other elements not expressly listed, or elements inherent to that process, method, article, or device. Without further limitations, an element defined by the phrase "comprising a..." does not preclude the presence of additional identical elements in the process, method, article, or device comprising the element.

[0035] In this utility model, the term "and / or" describes an associative relationship between associated objects and indicates that three relationships are possible. For example, A and / or B can mean: A exists alone, A and B exist simultaneously, or B exists alone. Additionally, the character " / " in this utility model generally indicates that the associated objects before and after it have an "and / or" relationship.

[0036] In the present utility model, the terms "connect," "combine," "couple," and "assemble" can refer to a direct connection, bond, coupling, or assembly, or an indirect connection, bond, coupling, or assembly. For the sake of clarity, a direct connection means that two parts or components are joined together without any intermediate parts, and an indirect connection means that two parts or components are each connected by at least one intermediate part, with these two parts or components being connected by the intermediate part. Furthermore, "connect" and "couple" are not limited to physical or mechanical connections or couplings and can include electrical connections or couplings.

[0037] In the present utility model, those skilled in the art with ordinary knowledge in the field will understand that relative terms (e.g., "about," "approximately," "essentially," etc.) used in connection with quantities or conditions encompass the stated value and have the meaning indicated by the context. For example, this relative term encompasses at least the degree of error associated with the measurement of a given value and tolerances associated with a given value caused by manufacturing, assembly, and use. Such terms should also be considered as a disclosure of the range defined by the absolute values ​​of the two endpoints. Relative terms may relate to adding or subtracting a certain percentage (e.g., 1%, 5%, 10%, or more) of the stated value.Values ​​that do not use a relative term should also be disclosed as specific values ​​with tolerances. Furthermore, "essentially," when expressing a relative angular position relationship (e.g., essentially parallel, essentially vertical), may refer to the addition or subtraction of a specific degree (e.g., 1 degree, 5 degrees, 10 degrees, or more) based on the specified angle.

[0038] In the present utility model, those skilled in the art with ordinary knowledge in the field will understand that a function performed by a component can be performed by one component, several components, one part, or several parts. Likewise, a function performed by a part can also be performed by one part, one component, or a combination of several parts.

[0039] In this utility model, orientation terms such as "top," "bottom," "left," "right," "front," "back," etc., are described based on the orientations and positional relationships shown in the drawings and should not be understood as limiting the embodiments of this utility model. Furthermore, it must also be understood in context that when it is mentioned that one element is connected to another element "top" or "bottom," it may be connected not only directly but also indirectly via an intermediate element. It should also be understood that orientation terms such as top, bottom, left side, right side, front, back, etc., do not only represent positive orientations but can also be understood as lateral orientations.For example, "bottom" can include directly below, bottom left, bottom right, bottom front, bottom back, etc.

[0040] In this utility model, the terms "controller", "processor", "central processing unit", "CPU", and "MCU" may be used interchangeably. When using a component designated as a "controller", "processor", "central processing unit", "CPU", or "MCU" to perform a specific function, these functions may, unless otherwise specified, be performed by one or more of the above components.

[0041] In the present utility model, the terms "device", "module" or "component" can be implemented in the form of hardware or software to realize a specific function.

[0042] In the present utility model, the terms "calculate", "assess", "control", "determine", "recognize", etc. refer to operations and processes of a computer system or a similar electronic computing device (e.g., controller, processor, etc.).

[0043] The following describes advantages, other benefits, and solutions to problems associated with specific embodiments. However, these advantages, benefits, problem solutions, and any feature that might cause or clarify any advantage, benefit, or solution should not be considered critical, required, or essential features of any or all claims.

[0044] Fig. Figure 1 shows a display stand for an intelligent lawnmower, in particular a display stand for exhibiting an intelligent lawnmower, which can be referred to simply as a display stand. To clearly explain the technical solution of the present utility model, the figures in Figure 1 are also shown. Fig. The directions shown in 1 are defined as: front, back, left, right, up and down.

[0045] As in Fig. 1 to Fig. As shown in Figure 4, the display stand 100 for an intelligent lawnmower, according to an embodiment of the present utility model, comprises: a base 110, a support column 120, and a machine stand 130. The plane in which the base 110 lies is defined as the first plane 101; that is, the base 110 extends substantially along the first plane 101, and when the base 110 is positioned horizontally, the first plane 101 is substantially parallel to the horizontal plane. One end of the support column 120 is detachably connected to the base 110, with the support column 120 and the base 110 being fixed by four 6 x 30 mm screws. The other end of the support column 120 extends along the direction of the first straight line 102, the first straight line 102 being substantially perpendicular to the first plane 101; that is, the support column 120 extends substantially along the vertical direction of the base 110.It is understood that the first straight line 102 can be considered substantially perpendicular to the first plane 101 if any angle of deviation between the first straight line 102 and the direction perpendicular to the first plane 101 is within a range of 30°. The machine stand 130 serves to place the smart lawnmower 200 for display, wherein the machine stand 130 comprises at least one; for example, the machine stand 130 may comprise 1, 2, 3, or more than 3, the number of machine stands 130 being determined according to the number of smart lawnmowers 200 to be displayed or the user requirements, which is not limited in the present utility model.The machine stand 130 comprises a fixing section 131 and an exhibition section 132, wherein the fixing section 131 is connected to the support column 120 to support the machine stand 130, and wherein the exhibition section 132 serves to place the intelligent lawnmower 200.

[0046] Specifically, the fixing section 131 is detachably mounted on the support column 120, and if there are more than one machine stand 130, the multiple fixing sections 131 are successively mounted at different positions on the support column 120 along the direction of the first straight line 102. The display stand 100 for an intelligent lawnmower of the present utility model, wherein the machine stand 130 is detachably mounted on the support column 120 and forms a plug-in structure of the large tube over small tube type, is convenient to disassemble and assemble, improves display flexibility and space utilization efficiency, and enhances the layered feel of the display.

[0047] Fig. Figure 5 is a schematic structural view of an intelligent lawnmower according to an embodiment of the present utility model. See Fig. 5. The intelligent lawnmower 200 comprises a main part 210, a propulsion component 220, a working component 230, and a control unit. The main part 210 comprises an upper housing 211 and a lower base plate 212, as shown in Fig. 5 and Fig. Figure 6 shows the housing 211 and the base plate 212 forming a receiving space to accommodate the core components of the intelligent lawnmower 200, which are used to perform the functions of the intelligent lawnmower 200. The propulsion component 220 and the working component 230 are arranged at the base of the main part 210. The propulsion component 220 serves to support the main part 210 when walking on the lawn, and the propulsion component 220 comprises propulsion rollers 221 and a propulsion drive motor that drives the propulsion rollers 221, the propulsion drive motor causing the propulsion rollers 221 to rotate in order to support the main part 210. The working component 230 is used to perform the mowing operation and can also be referred to as the mowing unit.The working component 230 comprises a cutting tool and a cutting motor that drives the cutting tool, with the cutting motor rotating the cutting tool at high speed to cut vegetation. The control unit is electrically connected to both the propulsion drive motor and the cutting motor, and by controlling the operation of the propulsion drive motor and the cutting motor, the control unit manages the intelligent lawnmower 200 to complete the work task.

[0048] When using the display stand to exhibit the intelligent lawnmower 200, see Fig. 7. The intelligent lawnmower 200 will be placed on display section 132. It should be understood that the intelligent lawnmower 200 can also be replaced by other equipment, and the display stand can also be used to display other equipment, including but not limited to display materials, robotic lawnmower accessories, chargers, battery packs, etc.

[0049] As in Fig. 1 to Fig. As shown in Figure 4, the top of the base 110 is designed as a flat stand 111, which serves to support the smart lawnmower 200. The flat stand 111 is configured as a concave structure 112 with a raised edge, and when the smart lawnmower 200 is placed on the flat stand 111, the contact points of the smart lawnmower 200 with the base 110 serve as supports of the base 110 for the smart lawnmower 200, the supports of the smart lawnmower 200 being located within the concave structure 112. For example, the supports of the smart lawnmower 200 are a drive wheel assembly, the drive wheel assembly of the smart lawnmower 200 being located within the concave structure 112.

[0050] The base 110 further includes a lamp group 113, which is embedded along the inside of the raised edge to illuminate the exhibition area. For example, the lamp group 113 is designed as LED lamps, whereby mounting LED lamps on the inside of the raised edge of the concave structure 112 allows an LED light strip to be embedded without increasing the overall volume, thus enhancing the visual impact and brand perception during the exhibition. At the same time, this design avoids safety and aesthetic issues caused by exposed cables and makes the installation and maintenance of the light strip more convenient. The support column 120 is also equipped with a suspension element 180, which serves to suspend a mobile power source to supply power to the lamp group 113.

[0051] The underside of the base 110 is equipped with a movable wheel assembly 114, which facilitates moving the display stand. For example, the movable wheel assembly 114 can be designed as universal wheels. By arranging a movable wheel assembly 114 on the underside of the base 110, stable movement and positional adjustment can be achieved, thus facilitating quick setup in various exhibition spaces (such as shops, trade fairs, etc.). The configuration with universal wheels gives the stand greater flexibility and practicality when moving and parking, further improving the stand's usability and adaptability.

[0052] As in Fig. As shown in Figure 3, the fixing section 131 is pivotable relative to the support column 120, allowing the machine stand 130 to rotate around the support column 120 and flexibly adjusting the display direction of the smart lawnmower 200. The pivot angle of the fixing section 131 around the support column 120 is 0°–360°, where the pivot angle refers to the angle of rotation in the horizontal plane. The pivotable connection allows a 360-degree rotation of the machine stand 130, enabling the user to flexibly adjust the display direction depending on the display scenario and increasing the versatility and adaptability of the display. When displaying multiple smart lawnmowers 200, the rotation angle of the machine stand 130 can be adjusted so that the smart lawnmowers 200 are distributed around the support column 120 to improve space utilization.In some embodiments, the swivel angle of the fixing section 131 about the support column 120 is 0°–270°. In some embodiments, the swivel angle of the fixing section 131 about the support column 120 is 0°–180°. In some embodiments, the swivel angle of the fixing section 131 about the support column 120 is 0°–90°.

[0053] The support column 120 is a cylinder with a substantially circular cross-section, and the fixing section 131 is cylindrical with its inner wall abutting the support column 120. The fixing section 131 is mounted on the support column 120, forming a plug-in structure of the large tube over small tube type, which allows for convenient disassembly and assembly. When several fixing sections 131 are mounted successively on the support column 120, they abut each other along the direction of the first straight line 102.

[0054] The exhibition section 132 comprises a first end 133 connected to the fixing section 131 and a second end 134 facing away from the fixing section 131, with the first end 133 being higher than the second end 134 in the direction of the first straight line 102. It should be understood that the two ends of the exhibition section 132 do not lie in the same horizontal plane, so that the exhibition section 132 extends downwards at an overall inclination.The display section 132 extends along the direction of the second straight line 104 in a direction away from the support column 120, wherein the direction from the first end 133 to the second end 134 is understood to be the direction of extension of the second straight line 104, and wherein the angle between the second straight line 104 and the horizontal plane is greater than or equal to 0 degrees and less than or equal to 90 degrees; it is understood that the display section 132 extends inclined upwards, horizontally, vertically, or inclined downwards relative to the support column 120. When the smart lawnmower 200 is placed on the machine stand 130, the base plate 212 of the smart lawnmower 200 touches or approaches the main part of the display section 132, the direction of extension of the base plate forming a third plane 105, wherein the second straight line 104 is substantially parallel to the plane of the base plate 212, i.e.,of the third level 105, and wherein the angle between the plane of the base plate 212 and the horizontal plane is greater than or equal to 0 degrees and less than or equal to 90 degrees; it is understood that the smart lawnmower can be displayed tilted upwards, horizontally, or tilted downwards. By displaying the smart lawnmower 200 at an angle, it is presented within the user's field of vision, allowing the user to view the entire structure of the smart lawnmower 200, thereby improving the visual presentation and reducing blind spots. As in . Fig.As shown in Figure 7, the angle α between the third plane 105, in which the base plate 212 lies, and the horizontal plane is greater than or equal to 0 degrees and less than or equal to 90 degrees, such as angle α being 5 degrees, 10 degrees, 15 degrees, 25 degrees, 30 degrees, 45 degrees, 55 degrees, 60 degrees, 70 degrees, or 80 degrees. In some embodiments, the angle between the plane of the base plate 212 of the smart lawnmower 200 and the horizontal plane is greater than or equal to 20 degrees and less than or equal to 50 degrees. In some embodiments, the angle between the plane of the base plate 212 of the smart lawnmower 200 and the horizontal plane is greater than or equal to 30 degrees and less than or equal to 60 degrees. In some embodiments, the angle between the plane of the base plate 212 of the intelligent lawnmower 200 and the horizontal plane is greater than or equal to 10 degrees and less than or equal to 50 degrees.In some embodiments, the angle between the plane of the base plate 212 of the intelligent lawnmower 200 and the horizontal plane is greater than or equal to 5 degrees and less than or equal to 80 degrees. In some embodiments, the angle between the plane of the base plate 212 of the intelligent lawnmower 200 and the horizontal plane is greater than or equal to 5 degrees and less than or equal to 85 degrees.

[0055] The machine stand 130 has modular features, i.e., a fixing section 131 plus an exhibition section 132 form a module, with several sets of machine stands 130 being able to be arranged on the support column 120, each machine stand 130 being rotatable, and several smart lawn mowers 200 being able to be placed on the machine stand 130 to form a rotatable, vertically stacked display mode.

[0056] One side of the display section 132 is formed with a snap-in structure 135, wherein the snap-in structure corresponds to the base structure of the smart lawnmower in order to snap and secure the smart lawnmower 200. The snap-in structure 135 comprises at least one snap-in element, wherein the base of the smart lawnmower 200 comprises at least one snap-in section, the snap-in element interacting with the snap-in section to stably position the smart lawnmower 200 on the display section 132.For example, the base of the intelligent lawnmower 200 comprises a first locking section 213 arranged in a forward-backward direction and a second locking section 214, wherein the first locking section 213 is a recess formed by the housing 211, wherein the second locking section 214 is a recess formed by the base plate 212, wherein the first locking section 213 and the second locking section 214 may further be a recess formed by the base plate 212 or the housing 211, or a recess formed appropriately by the housing 211 and the base plate 212, or a recess formed between the housing 211 and the base plate 212.Accordingly, the snap-in structure 135 comprises a first snap-in element 136 and a second snap-in element 137 arranged along the direction of the second straight line 104, wherein the first snap-in element 136 is embedded in the first snap-in section 213 and the second snap-in element 137 is embedded in the second snap-in section 214 to snap the smart lawnmower 200 into place and fix it on the display section 132 for display; after the display is complete, the smart lawnmower 200 can be removed. In some embodiments, the snap-in structure 135 may further comprise a third snap-in element arranged along the direction of the second straight line 104, the number of snap-in elements being determined as required, which is not limited in the present utility model.

[0057] The first locking element 136 comprises at least one, and the second locking element 137 comprises at least one, the number of first locking elements 136 and second locking elements 137 being determined as required, e.g., 2, 3, or 4. For example, the first locking element 136 comprises 2, and the second locking element 137 comprises 2, wherein the distance between the two first locking elements 136 is smaller than the distance between the two second locking elements 137. A second plane 103 is defined, extending vertically through the connection point of the fixing section 131 with the support column 120, with the two first locking elements 136 and the two second locking elements 137 each being arranged symmetrically with respect to the second plane 103.

[0058] The display stand 100 for an intelligent lawnmower further comprises an information stand 140 for displaying an information sheet. This information sheet can display information about the intelligent lawnmower 200, such as its brand, performance parameters, price, production date, etc. The information stand 140 includes a display plate 141 for holding the information sheet and a clamping ring 142 connected to the display plate 141. The clamping ring 142 is removable and mounted on the support column 120, and is pivotable relative to the support column 120. The pivot angle range is 0-360°, allowing the information stand 140 to be rotated around the support column 120 at any angle, and enabling the user to adjust the display angle of the information stand 140 as needed.The clamping ring 142 and the fixing section 131 can be mounted on the support column 120 in any relative order, whereby the relative positional relationship between the machine stand 130 and the information stand 140 can be adjusted so that the information display sheet on the information stand 140 displays the relevant information about the smart lawnmower 200 at the adjacent position accordingly. For example, the information stand has modular features, i.e., a clamping ring 142 plus a display plate 141 form a module, with a total of three sets of modules being present in this embodiment. The display plate 142 is magnetic, and the information display sheet can be attached to and displayed on the display plate 142 by magnetic attraction.

[0059] The display stand 100 for a smart lawnmower further comprises a terminal stand 150 for placing a mobile terminal 300, the mobile terminal 300 having a screen for displaying product information about the smart lawnmower. The mobile terminal 300 can be used to query and display relevant information about the smart lawnmower 200 placed on the display stand and can also display information about other relevant products of the same company or brand, play product promotional videos, or other information. In some embodiments, the mobile terminal 300 can also establish a communication link with the smart lawnmower 200 on the display stand and control the smart lawnmower 200.The terminal stand 150 comprises a bracket 151 for placing the mobile terminal 300 and an annular seat 152 connected to the bracket 151. The annular seat 152 is detachably mounted on the support column 120 and is pivotable relative to the support column 120, with a pivot angle range of 0-360°. This allows the terminal stand 150 to be rotated around the support column 120 at any angle, enabling the user to adjust the display angle of the terminal stand 150 as needed. The annular seat 152 and the fixing section 131 can be mounted on the support column 120 in any relative order.

[0060] The display stand 100 for an intelligent lawnmower further comprises a ring 160 that can be placed on the support column 120. The cross-section of the ring 160 is identical to that of the fixing section 131. The ring 160 is placed on the support column 120 and positioned between the fixing sections 131 of adjacent machine stands 130 to adjust the distance between adjacent machine stands 130 in the direction of the first straight line 102. The ring 160 has the same structure as the fixing section 131, with the axial outer surface of the ring 160 bearing against the outer surface of the fixing section 131, thus maintaining a visually consistent external appearance and improving the aesthetics.

[0061] The support column 120 is constructed as several interacting support elements 121, with one end of each support element 121 forming a first connecting section 122 and the other end forming a second connecting section 123 that interacts with the first connecting section 122. The several support elements 121 are assembled to form the support column 120 by coupling the first connecting section 122 with the second connecting section 123, whereby the length of the support column 120 can be adjusted as required.

[0062] The base 110 forms a first assembly section 115 which interacts with the first connecting section 122 or the second connecting section 123 in order to fix the lowest support element 121 of the support column 120 to the base 110.

[0063] The display stand 100 for an intelligent lawnmower further comprises a cover plate 170, the cover plate 170 being arranged at the upper end of the support column 120 to hold an information display sheet. The cover plate 170 includes a second mounting section 171, which interacts with the first connecting section 122 or the second connecting section 123, to fix the uppermost support element 121 of the support column 120 to the support element 121.

[0064] The support column 120 and the machine stand 130 serve as load-bearing columns, with the fixing section 131 being made of medical-grade stainless steel, and the support column 120, the display section 132, and the base 110 being made of cold-rolled steel, thus ensuring good structural strength and stability of the display stand. Even if all machine stands are rotated on the same side, the display stand will not tip over. It should be understood that the fixing section, the support column, and the display section could also be made of other materials that offer the same load-bearing capacity, such as structural steel.

[0065] The display stand of the present utility model exhibits a significant improvement in terms of structural stability, exhibition flexibility and visual expressiveness compared to the prior art, and can effectively meet the requirements for an exhibition in several scenarios, taking into account lightweight construction and high load-bearing capacity equally.

[0066] The basic principle, main features, and advantages of the present utility model have been presented and described above. Persons with expertise in the industry should understand that the above embodiments do not in any way limit the present utility model and that all technical solutions obtained through equivalent substitutions or equivalent transformations fall within the scope of protection of the present utility model.

Claims

[1] Display stand for an intelligent lawnmower, characterized by that it includes the following: a base, a support column extending vertically to the plane of the base, with one end of the support column connected to the base; several machine stands, each of the machine stands comprising a display section for placing the smart lawnmower and a fixing section connected to the support column, wherein the fixing sections of the several machine stands are removable and successively placed at different positions on the support column; wherein the exhibition section comprises a first end connected to the fixing section and a second end facing away from the fixing section, wherein in the vertical direction the first end is higher than the second end, and wherein, when the smart lawnmower is placed on the machine stand, the angle between the plane of a base plate of the smart lawnmower and the horizontal plane is greater than or equal to 0 degrees and less than or equal to 90 degrees. [2] Display stand for an intelligent lawnmower according to claim 1, characterized by , that the top of the base is designed as a flat stand for placing the smart lawnmower, wherein the flat stand is configured as a concave structure with a raised rim, and wherein, when the smart lawnmower is displayed on the flat stand, the support points of the smart lawnmower are located within the concave structure. [3] Display stand for an intelligent lawnmower according to claim 2, characterized by , that the base further comprises a lamp group embedded along the inside of the concave structure, and wherein the underside of the base is provided with a movable wheel group. [4] Display stand for an intelligent lawnmower according to claim 1, characterized by that the fixing section is pivotable relative to the support column. [5] Display stand for an intelligent lawnmower according to claim 1, characterized by that the support column is a cylinder, wherein the fixing section is cylindrical, the inner wall of which rests against the support column. [6] Display stand for an intelligent lawnmower according to claim 1, characterized by, that one side of the display section is formed with a snap-in structure, wherein the snap-in structure comprises a first snap-in element and a second snap-in element, wherein the base of the smart lawnmower comprises a first snap-in section and a second snap-in section, and wherein the first snap-in element and the second snap-in element interact with the first snap-in section and the second snap-in section to snap and fix the smart lawnmower in place. [7] Display stand for an intelligent lawnmower according to claim 1, characterized by, that it further comprises an information stand, wherein the information stand comprises a display plate for placing an information display sheet and a clamping ring connected to the display plate, wherein the clamping ring is removablely mounted on the support column and pivotable relative to the support column; wherein the clamping ring and the fixing section can be mounted on the support column in any relative order. [8] Display stand for an intelligent lawnmower according to claim 1, characterized by , further comprising a terminal stand, the terminal stand comprising a holder for placing a mobile terminal and an annular seat connected to the holder, the annular seat being removable and pivotable relative to the support column; wherein the annular seat and the fixing section can be placed on the support column in any relative order. [9] Display stand for an intelligent lawnmower, characterized by that it includes the following: a base, a support column extending vertically to the plane of the base, with one end of the support column connected to the base; several machine stands, each of which includes an exhibition section for placing the intelligent lawnmower and a fixing section connected to the support column, the fixing sections of the several machine stands being removable and successively placed at different positions on the support column. [10] Display stand for an intelligent lawnmower according to claim 9, characterized by , that the fixing section is pivotable relative to the support column, with a swivel angle range of 0-360°.