Equipment mounting structure and device with same
By using the snap-fit connection of the connection groove and the limit piece in the equipment installation structure, the problems of traditional equipment installation being time-consuming and damaging the surface are solved, and fast and stable equipment installation is achieved.
Patent Information
- Application Number
- CN202422906232.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Traditional equipment installation methods require a large number of connecting components, are time-consuming, have high maintenance costs, have uneven connections, and are prone to surface damage.
The supporting structure and connecting piece design are adopted. By setting a connecting groove on the second connecting piece and utilizing a limit piece to engage with the first connecting piece, a detachable connection is achieved, additional installation parts are reduced, and force is evenly distributed.
Simplify the installation process, improve efficiency, reduce manpower and material resources, and reduce damage to the surface of the supporting structure.
Smart Images

Figure CN223375515U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of equipment installation, and in particular to an equipment installation structure and a device having the same. Background Art
[0002] When installing external equipment on hard or flexible surfaces, traditional methods often use welding, bolting, etc., which often require the use of a large number of connecting components and parts. In the case of a large number of devices to be installed, they still need to be installed and fixed one by one using connecting components. This takes a long time and has high maintenance costs. The force points between the connecting components and the equipment to be installed are unevenly distributed, and the installation of a large number of connecting components can easily cause damage to the surface of the object to be installed. Utility Model Content
[0003] In view of the above-mentioned deficiencies in the prior art, the present application provides an equipment installation structure and a device having the same to solve at least one of the above-mentioned technical problems. The specific structure is as follows:
[0004] In a first aspect, a device installation structure is proposed, comprising a supporting structure, a first connecting member, and a second connecting member for connecting to an external device.
[0005] The second connecting member is provided with a connecting groove; the supporting structure is provided with a first connecting member, and the first connecting member is used to engage with the connecting groove to achieve a detachable connection between the second connecting member and the supporting structure.
[0006] In some specific embodiments, one end of the first connecting member is fixedly connected to the supporting structure, and the other end is provided with a limiting member that matches the connecting groove; the limiting member is used to engage with the connecting groove.
[0007] In some specific embodiments, the second connecting member includes a guide rail member, a connecting groove is provided on the guide rail member, and an installation entrance is formed at at least one end of the connecting groove in the length direction of the guide rail member; the limiting member is embedded in the installation entrance to achieve a snap connection with the connecting groove.
[0008] In a specific embodiment, the connecting groove passes through the guide rail member in the longitudinal direction of the guide rail member and forms installation entrances at both ends of the guide rail member. In actual application, the user can insert the limiting member from the installation entrance of the connecting groove at either end of the guide rail member to achieve a snap connection between the limiting member and the connecting groove, thereby achieving a snap connection between the first connecting member and the connecting groove. By providing the guide rail member and the connecting groove on the guide rail member, the contact surface between the first connecting member and the second connecting member can be enlarged, the force applied to the two at the connection point can be more uniform, and during the installation process, only a snap connection is required without the need for other additional mounting members or connecting components to perform installation and connection, which greatly simplifies the installation process of the external device.
[0009] In some specific embodiments, the connecting groove is formed on the second connecting member with an opening for accommodating the first connecting member. The limiting member is engaged in the connecting groove, and the side of the limiting member facing the opening abuts against the inner side wall of the connecting groove near the opening to prevent the limiting member from falling out of the opening.
[0010] In practical applications, by forming an opening on the second connecting member for accommodating the first connecting member, it is possible that during the process of connecting with the second connecting member, part of the first connecting member can enter the connecting groove from the opening, further engaging the limiting member in the connecting groove, and the side of the limiting member facing the opening abuts against the inner sidewall of the connecting groove near the opening on the connecting groove, which means that it is difficult for the limiting member to escape through the opening on the connecting groove and is limited by the inner sidewalls corresponding to the two sides of the connecting groove near the opening. As a result, the limiting member can be stably engaged in the connecting groove, further achieving a stable connection between the second connecting member and the first connecting member. In a specific embodiment, the opening is arranged along the length direction of the connecting groove, the installation entrances are arranged at both ends of the length direction of the connecting groove, and the opening and the installation entrance are connected to each other.
[0011] In practical applications, the supporting structure may include a flexible structure, such as flexible fabric, membrane material, or a floating structure, such as an air film structure, an air bag structure, etc. The external device is detachably connected via the connecting grooves of the first connector and the second connector.
[0012] In some specific embodiments, the first connector includes at least one film layer, and the stopper includes a curled edge structure formed by winding the film layer. By configuring the first connector as a film layer structure, when the supporting structure is also a flexible structure, the first connector and the supporting structure can achieve a better fit and higher connection strength.
[0013] In actual application, the curling structure includes a buried rope structure. In a specific embodiment, the buried rope structure is arranged along the edge of one side of the membrane layer toward the second connecting member. When the buried rope edge serves as a limiting member relative to the membrane layer, it can also further consolidate the edge strength of the membrane layer.
[0014] In some specific embodiments, the second connector further includes a receiving member, one side of which is configured to receive an external device, and the other side of which faces the supporting structure; the guide rail member is disposed on at least one side of the receiving member. In practical applications, the device mounting structure may be used in the field of photovoltaic installation, where the external device may include a photovoltaic panel, and the receiving member is a receiving plate. The photovoltaic panel is disposed on a side of the receiving plate facing the outside world, thereby contacting the outside world and performing operations.
[0015] In some specific embodiments, the number of the guide rail members includes at least two; the guide rail members are provided on both side edge regions of the receiving member, or the guide rail members are provided on two opposite side edges of the receiving member.
[0016] In one specific embodiment, two guide rails are provided on a receiving plate. The two guide rails may be provided on a side of the receiving plate for receiving external devices, on a side of the receiving plate facing the supporting structure, or on a side surface of the receiving plate. In practical applications, as long as a detachable connection between the connecting groove in the guide rail and the first connecting member can be achieved, the two guide rails may be provided together on both side edge regions of one side of the receiving plate, or separately on side edge regions of different sides.
[0017] By arranging the guide rail members on both side edge areas or two opposite side edges of the supporting member, the weight and external force exerted on the supporting member can be evenly dispersed. Compared with the case where only one guide rail member is provided, the problem of excessive local pressure on the first connecting member or the second connecting member can be reduced, thereby achieving force balance of the supporting plate.
[0018] In a specific embodiment, the first connecting member includes an elastic telescopic structure. By being set as an elastic telescopic structure, when the position between the first connecting members is larger or smaller, when the first connecting member is connected to the second connecting member, the first connecting member can elastically stretch to compensate for the rigid distance between the first connecting member and the second connecting member, and can adapt to more external devices of different sizes and different installation positions of the second connecting members.
[0019] In some specific embodiments, a position adjustment member is further included; one or more second connectors are engaged with the same first connector. A position adjustment member is provided between at least two adjacent second connectors; the position adjustment member is used to limit the position of the second connector. In actual applications, the second connector is connected to an external device. By limiting the movement of the second connector, the external device connected to the second connector can be further limited in position, ensuring that the external device remains stable relative to the support structure and the first connector.
[0020] It should be noted that the present application does not specifically limit the relationship between the number of connections between the second connector and the first connector. As long as the external device can be detachably connected to the first connector through the connecting groove on the second connector, when the connecting groove of a second connector is long enough, multiple first connectors can enter through the installation entrances at both ends of the connecting groove and be snap-connected with the connecting groove; when the length of the first connector is sufficient, multiple second connectors can also be snap-connected with the same first connector through the connecting groove.
[0021] In some specific embodiments, a plurality of first connecting members are disposed on the supporting structure. In practical applications, the plurality of first connecting members may be evenly disposed on the supporting structure.
[0022] In a specific embodiment, a protective layer is further included, which is arranged on the supporting structure near the first connecting member. The protective layer can reduce the friction between the first connecting member and the surface of the supporting structure, and / or the friction between the second connecting member and the surface of the supporting structure during the installation of the external device, thereby preventing the supporting structure from being scratched or worn by the first connecting member and / or the second connecting member.
[0023] Second, a device is provided, comprising any of the aforementioned device mounting structures. In a specific embodiment, the device mounting structure allows for batch mounting of external devices onto the surface of a supporting structure, providing a more secure installation without the need for additional small parts. This effectively improves the efficiency of external device installation on the device and reduces labor and maintenance costs.
[0024] Beneficial effects: The present application provides an equipment installation structure and a device having the same, including a supporting structure, a second connecting member and a first connecting member; by providing a connecting groove on the second connecting member and providing a first connecting member on the supporting structure, the first connecting member is used to engage with the connecting groove, thereby realizing a quick and detachable connection between the external equipment and the supporting structure, which is suitable for connecting the external equipment to the supporting structure in various situations, can reduce the manpower and material resources spent on batch installation of external equipment, and at the same time minimize the impact on the surface of the supporting structure body. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0026] Figure 1 A schematic diagram of a cross-sectional structure of the present application;
[0027] Figure 2 This is a schematic structural diagram of the first connecting member in this application;
[0028] Figure 3 This is another cross-sectional structural diagram of the present application;
[0029] Figure 4 This is another cross-sectional structural diagram of the present application;
[0030] Figure 5 A schematic diagram of a three-dimensional structure of the guide rail member in this application;
[0031] Figure 6 This is a schematic top view of the overall structure of the present application;
[0032] Figure 7 This is another cross-sectional structural diagram of the present application.
[0033] The figures are marked as follows: 1-supporting structure; 11-protective layer; 2-first connecting member; 3-limiting member; 4-second connecting member; 41-guide rail member; 411-connecting groove; 412-installation entrance; 413-opening; 5-external equipment; 51-position adjustment member; 6-supporting member. DETAILED DESCRIPTION
[0034] The following will clearly and completely describe the concept, specific structure and technical effects of this application in combination with the embodiments and drawings to fully understand the purpose, characteristics and effects of this application.
[0035] Hereinafter, various embodiments of the present application will be described more fully. The present application may have various embodiments, and adjustments and changes may be made therein. However, it should be understood that there is no intention to limit the various embodiments of the present application to the specific embodiments disclosed herein, but rather that the present application should be understood to cover all adjustments, equivalents and / or alternatives that fall within the spirit and scope of the various embodiments of the present application.
[0036] Hereinafter, the terms "include" or "may include" as used in various embodiments of the present application indicate the presence of disclosed functions, operations, or elements, and do not limit the addition of one or more functions, operations, or elements. In addition, as used in various embodiments of the present application, the terms "include", "have" and their cognates are intended only to indicate specific features, numbers, steps, operations, elements, pieces, or combinations of the foregoing, and should not be understood as first excluding the presence of one or more other features, numbers, steps, operations, elements, pieces, or combinations of the foregoing or the possibility of adding one or more features, numbers, steps, operations, elements, pieces, or combinations of the foregoing.
[0037] In various embodiments of the present application, the expression "or" or "at least one of A or / and B" includes any or all combinations of the words listed simultaneously. For example, the expression "A or B" or "at least one of A or / and B" may include A, may include B, or may include both A and B.
[0038] The expressions (such as "first", "second", etc.) used in the various embodiments of the present application may modify the various constituent elements in the various embodiments, but may not limit the corresponding constituent elements. For example, the above expressions do not limit the order and / or importance of the elements. The above expressions are only used to distinguish one element from other elements. For example, a first user device and a second user device indicate different user devices, although both are user devices. For example, without departing from the scope of the various embodiments of the present application, a first element may be referred to as a second element, and similarly, a second element may also be referred to as a first element.
[0039] It should be noted that, in this application, unless otherwise specified or defined, terms such as "mounted," "connected," and "fixed" should be interpreted broadly. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; or internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this application based on specific circumstances.
[0040] In this application, a person of ordinary skill in the art needs to understand that the terms indicating orientation or positional relationships herein are based on the orientation or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on this application.
[0041] The terms used in the various embodiments of the application are only used to describe the purpose of specific embodiments and are not intended to limit the various embodiments of the application. As used herein, the singular form is intended to also include the plural form, unless the context clearly indicates otherwise. Unless otherwise limited, all terms used here (including technical terms and scientific terms) have the same meaning as the meaning generally understood by those of ordinary skill in the art of the application. The terms (such as the terms defined in the dictionary generally used) will be interpreted as having the same meaning as the contextual meaning in the relevant technical field and will not be interpreted as having idealized meaning or too formal meaning, unless clearly defined in the various embodiments of the application.
[0042] Example
[0043] This application provides an equipment installation structure and a device having the same, the specific scheme is as follows:
[0044] In a first aspect, a device installation structure is proposed, comprising a supporting structure 1 , a first connecting member 2 , and a second connecting member 4 for connecting to an external device 5 .
[0045] The second connecting member 4 is provided with a connecting groove 411; the supporting structure 1 is provided with a first connecting member 2, which is used to engage with the connecting groove 411 to achieve a detachable connection between the second connecting member 4 and the supporting structure 1, so as to finally detachably connect the external device connected to the second connecting member 4 to the supporting structure 1. Figure 1 As shown, in a specific embodiment, the first connecting member 2 can be arranged to protrude relative to the supporting structure 1.
[0046] In some specific embodiments, one end of the first connecting member 2 is fixedly connected to the supporting structure 1, and the other end is provided with a limiting member 3 that matches the connecting groove 411, such as Figure 2 The limiting member 3 is used for engaging and connecting with the connecting groove 411 .
[0047] In actual application, the first connecting member 2 can be fixedly connected to the supporting structure 1 by welding or integral molding. The second connecting member 4 can be detachably connected to the external device, or can be integrally molded with the external device. It should be noted that the present application does not limit the specific shape and structure of the supporting structure 1. In a specific embodiment, the supporting structure 1 can include a flexible membrane structure, an air film structure, an airbag structure or a fabric structure, or can include a hard metal structure or a plastic structure. The supporting structure 1 can be in contact with or connected to the ground, water surface, or other external areas where it needs to be installed.
[0048] In some specific embodiments, the second connecting member 4 includes a guide rail member 41, a connecting groove 411 is provided on the guide rail member 41, and a mounting entrance 412 is formed at at least one end of the connecting groove 411 in the length direction of the guide rail member 41; the limiting member 3 is engaged with the connecting groove 411 by being embedded in the mounting entrance 412. Figure 6 As shown in the middle direction A, Figure 1 、 Figure 2 、 Figure 3 and Figure 4 Schematic diagrams of several cross sections of the device installation structure in direction A in this embodiment. The second connecting member 4 can be as follows: Figure 1 or Figure 3 As shown, it is arranged on the side of the external device 5 facing the supporting structure 1, and can also be as shown. Figure 4 As shown, it is arranged on the side of the external device 5 away from the supporting structure 1, and can also be as follows Figure 7 It is shown as being arranged on the side of the external device 5 .
[0049] In one embodiment, the connecting groove 411 extends through the guide rail member 41 in its longitudinal direction and forms installation inlets 412 at both ends of the guide rail member 41. In actual use, the user can insert the limiting member 3 through the installation inlets 412 at either end of the connecting groove 411 on the guide rail member 41 to achieve a snap connection between the limiting member 3 and the connecting groove 411, thereby achieving a snap connection between the first connecting member 2 and the connecting groove 411.
[0050] By setting the connecting groove 411, the snap-fit connection between the first connecting member 2 and the second connecting member 4 is achieved, so that in actual application, the user does not need to fix each external device or the second connecting member 4 with additional small parts such as bolts, and can form an overall connection between the first connecting member 2 and the second connecting member 4 at one time. Since one end of the first connecting member 2 is fixedly connected to the supporting structure 1, the two can be in a fitted shape, which allows the first connecting member 2 to cooperate with various forms of the surface of the supporting structure 1. When the surface of the supporting structure 1 is an uneven arc surface, the first connecting member 2 and the second connecting member 4 can still achieve a quick and efficient snap-fit connection.
[0051] In some specific embodiments, the connecting groove 411 is formed with an opening 413 on the second connecting member 4 for accommodating the first connecting member 2. The limiting member 3 is engaged in the connecting groove 411, and the side of the limiting member 3 facing the opening 413 abuts against the inner sidewall of the connecting groove 411 near the opening 413 to prevent the limiting member 3 from falling out of the opening 413.
[0052] In practical applications, such as Figure 3 As shown, by forming an opening 413 on the second connecting member 4 for accommodating the first connecting member 2 in the connecting groove 411, it is possible to allow a portion of the first connecting member 2 to enter the connecting groove 411 from the opening 413 during the connection process with the second connecting member 4, thereby further engaging the limiting member 3 in the connecting groove 411, and the side of the limiting member 3 facing the opening 413 abuts against the inner sidewall of the connecting groove 411 near the opening 413 on the connecting groove 411, which means that it is difficult for the limiting member 3 to escape through the opening 413 on the connecting groove 411 and is limited by the inner sidewalls of the connecting groove 411 corresponding to both sides near the opening 413. In a specific embodiment, the opening 413 is provided along the length direction of the connecting groove 411, and the installation entrances 412 are provided at both ends of the length direction of the connecting groove 411, and the opening 413 and the installation entrance 412 are connected to each other.
[0053] After the limiting member 3 enters the connecting groove 411 through the installation entrance 412, it can bring the first connecting member 2 into the connecting groove 411 from the opening 413 to achieve the engagement between the first connecting member 2 and the connecting groove 411. Figure 4 and Figure 5As shown in the direction B, the installation entrance 412 is oriented as shown in FIG. Figure 5 As shown in the middle direction A, by arranging the opening 413 and the installation entrance 412 in different orientations, the direction in which the retaining member 3 is engaged and retained in the connecting groove 411 is different from the direction in which the retaining member enters the connecting groove 411. The inner sidewalls of the connecting groove 411 can be in contact with the retaining member 3, which can reduce the relative displacement caused by the retaining member 3 between the first connecting member 2 and the second connecting member 4, thereby improving the connection stability between the connecting grooves 411 of the first connecting member 2 and the second connecting member 4. When the width of the opening 413 in cross section is consistent with the thickness of the first connecting member 2, the first connecting member 2 can be clamped by the sidewalls of the opening 413 after entering the opening to achieve fixation relative to the connecting groove 411.
[0054] In some specific embodiments, the first connecting member 2 includes at least one film layer; the limiting member 3 includes a curling structure formed by winding the film layer. In actual applications, by using a film layer formed by a film material in the first connecting member 2, the contact range between the first connecting member 2 and the supporting structure 1 can be made larger and the fit can be tighter. In a specific embodiment, when the supporting structure 1 also includes a film layer, the film layer of the first connecting member 2 can be integrally formed with the film layer of the supporting structure 1, and the strength of the film layer of the first connecting member 2 can be different from the strength of the film layer of the supporting structure 1. This embodiment does not limit the specific number of film layers. In actual applications, users can set the film layer to one layer or multiple layers according to actual needs to meet different connection strength requirements.
[0055] In actual applications, the curling structure can be integrally formed with the first connecting member 2. The curling structure includes a buried rope structure. In a specific embodiment, the buried rope structure is arranged along the edge of one side of the membrane layer toward the second connecting member 4. When the buried rope edge serves as a limiting member 3 protruding relative to the membrane layer, it can also further consolidate the edge strength of the membrane layer.
[0056] In some specific embodiments, the second connecting member 4 further includes a receiving member 6 , one side of which is used to receive the external device 5 , and the other side of the receiving member 6 faces the supporting structure 1 ; the guide rail member 41 is provided on at least one side of the receiving member 6 .
[0057] It should be noted that the present application does not specifically limit the type of external device 5. As long as the external device 5 can be ultimately connected to the supporting structure 1 through the connection of the second connecting member 4 and the first connecting member 2, the device installation structure can be applied in a variety of fields. In a specific embodiment, the external device 5 can be a plate-like structure, and the device installation structure is applied in the field of photovoltaic installation. The external device 5 includes a photovoltaic panel, and the receiving member 6 is a receiving plate. The photovoltaic panel is arranged on the side of the receiving plate facing the outside world so as to contact the outside world and perform work.
[0058] In some specific embodiments, the number of the guide rail members 41 includes at least two; the guide rail members 41 are provided on both side edge regions of the receiving member 6 , or the guide rail members 41 are provided on two opposite side edges of the receiving member 6 .
[0059] In a specific embodiment, two guide rails 41 are provided on a receiving plate. The two guide rails 41 can be provided on the side of the receiving plate for receiving the external device 5, or on the side of the receiving plate facing the supporting structure 1, or on the side surface of the receiving plate. In practical applications, as long as the connection groove 411 in the guide rail 41 and the first connecting member 2 can be detachably connected, the two guide rails 41 can be provided together on the side edge areas of one side of the receiving plate, or respectively on the side edge areas of different surfaces. Figure 4 As shown, the guide rail member 41 is installed on the two side edge areas of the receiving plate for receiving the external device 5, wherein the side edge areas are as shown in FIG. Figure 4 and Figure 5 As shown in area C.
[0060] By setting the guide rail member 41 on both side edge areas or on two opposite side edges of the supporting member 6, the weight and external force exerted on the supporting member 6 can be evenly dispersed. Compared with the case where only one guide rail member 41 is set, the problem of excessive local pressure can be reduced, and the force balance of the supporting plate can be achieved.
[0061] In a specific embodiment, the first connecting member 2 includes an elastic telescopic structure. By being set as an elastic telescopic structure, when the position between the first connecting members 2 is larger or smaller, when the first connecting member 2 is connected to the second connecting member 4, the first connecting member 2 can elastically expand and contract to compensate for the rigid distance between the first connecting member 2 and the second connecting member 4, and can adapt to more external devices 5 of different sizes and different installation positions of the second connecting members 4.
[0062] In some specific embodiments, a position adjustment member 51 is further included; one or more second connection members 4 are engaged with the same first connection member 2. A position adjustment member 51 is provided between at least two adjacent second connection members 4; the position adjustment member 51 is used to limit the position of the second connection member 4. The distribution of the position adjustment member 51 can be as follows: Figure 6As shown. In actual applications, the position adjustment member 51 can be a clamping mechanism fixedly connected to the first connector 2 by clamping. The user can set this position adjustment member 51 between one or more second connectors 51 according to actual needs to prevent the second connector 51 from moving relative to the first connector 2. In actual applications, the second connector 4 is connected to the external device 5. By setting the position adjustment member 51 to limit the movement of the second connector 4 relative to the first connector 2, the external device 5 connected to the second connector 4 can be further limited, so that the external device 5 can remain stable relative to the supporting structure 1 and the first connector 2. The user can set the position of the position adjustment member 51 according to actual needs to further adjust the position of the external device 5 connected to the second connector 4 relative to the supporting structure 1.
[0063] It should be noted that the present application does not specifically limit the relationship between the number of connections between the second connector 4 and the first connector 2. As long as the external device 5 can be detachably connected to the first connector 2 through the connecting groove 411 on the second connector 4, when the connecting groove 411 of a second connector 4 is long enough, multiple first connectors 2 can enter through the installation entrances 412 at both ends of the connecting groove 411 and be snap-connected with the connecting groove 411; when the length of the first connector 2 is sufficient, multiple second connectors 4 can also be snap-connected with the same first connector 2 through the connecting groove 411.
[0064] In some specific embodiments, a plurality of first connecting members 2 are evenly arranged on the supporting structure 1 .
[0065] In a specific embodiment, a protective layer 11 is further included. The protective layer 11 is arranged on the supporting structure 1 near the first connecting member 2, which can reduce the friction between the first connecting member 2 and the surface of the supporting structure 1, and / or the friction between the second connecting member 4 and the surface of the supporting structure 1 during the installation of the external device 5, thereby preventing the surface of the supporting structure 1 from being scratched or worn by the first connecting member 2 and / or the second connecting member 4.
[0066] Second, a device is provided, comprising any of the aforementioned device mounting structures. In a specific embodiment, the device mounting structure allows for batch mounting of external devices 5 onto the surface of the support structure 1, providing a more secure mounting structure without the need for additional small parts. This effectively improves the efficiency of mounting the external devices 5 onto the device and reduces labor and maintenance costs.
[0067] This embodiment provides an equipment installation structure and a device having the same, including a supporting structure, a second connecting member and a first connecting member; by providing a connecting groove on the second connecting member and providing a first connecting member on the supporting structure that is engaged with the connecting groove, a quick and detachable connection between the external equipment and the supporting structure can be achieved, which is suitable for connecting the external equipment to the supporting structure in various situations, can reduce the manpower and material resources spent on batch installation of external equipment, and at the same time minimize the impact on the surface of the supporting structure body.
[0068] The above is a specific description of the preferred implementation of the present application, but the invention of the present application is not limited to the embodiments. Technical personnel familiar with the art can also make various equivalent modifications or substitutions without violating the spirit of the present application. These equivalent modifications or substitutions are all included in the scope defined by the claims of the present application.
Claims
1. A device installation structure, characterized in that: It includes a supporting structure, a first connecting member and a second connecting member for connecting to an external device; The supporting structure is provided with the first connecting member; the second connecting member is provided with a connecting groove, and the first connecting member is used to engage with the connecting groove to achieve a detachable connection between the second connecting member and the supporting structure.
2. The equipment installation structure according to claim 1, characterized in that: One end of the first connecting member is fixedly connected to the supporting structure, and the other end is provided with a limiting member that matches the connecting groove; The limiting member is used for engaging and connecting with the connecting groove.
3. The equipment installation structure according to claim 2, characterized in that: The second connecting member includes a guide rail member, the connecting groove is provided on the guide rail member, and the connecting groove is formed with an installation entrance at least at one end in the length direction of the guide rail member; The limiting member is embedded in the installation entrance to achieve a snap connection with the connecting groove.
4. The equipment installation structure according to claim 2, characterized in that: The connecting groove is formed on the second connecting member with an opening for accommodating the first connecting member; The limiting member is engaged in the connecting groove, and a side of the limiting member facing the opening abuts against an inner side wall of the connecting groove close to the opening to prevent the limiting member from falling out of the opening.
5. The equipment installation structure according to claim 2, characterized in that: The first connecting member includes at least one film layer; the limiting member includes a curling structure formed by winding the film layer.
6. The equipment installation structure according to claim 3, characterized in that: The second connecting member further includes a receiving member, one side of which is used to receive external equipment, and the other side of which faces the supporting structure; The guide rail component is arranged on at least one side of the receiving component.
7. The equipment installation structure according to claim 6, characterized in that: The number of the guide rail members includes at least two; the guide rail members are arranged on both side edge areas of the receiving member, or the guide rail members are arranged on two opposite side edges of the receiving member.
8. The equipment installation structure according to claim 1, characterized in that: It also includes a position adjustment member; the same first connecting member or one or more second connecting members; The position adjusting member is provided between at least two adjacent second connecting members; the position adjusting member is used to limit the position of the second connecting member.
9. The equipment installation structure according to claim 1, characterized in that: A plurality of the first connecting members are arranged on the supporting structure.
10. A device, characterized in that: The invention comprises any one of the equipment installation structures in claims 1-9.