Telescopic equipment mounting device and equipment with same

By designing a retractable equipment installation device, the telescopic components absorb deformation energy caused by external forces, solving the problem of poor installation stability of the equipment in an unstable environment and extending the service life of the equipment and the installation device.

CN119934351APending Publication Date: 2025-05-06SHENZHEN ZHONGDE MEMBRANE STRUCTURE CO LTD
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Patent Information

Application Number
CN202510010878.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When installing equipment in unstable external devices or outdoor environments, the installation stability of the equipment is easily affected by external forces, resulting in damage to the installation device and equipment and shortening the service life.

Method used

A telescopic device installation device is designed, including a connecting component and a telescopic component. One end of the telescopic component is connected to the equipment to be installed and the other end is connected to the connecting component. It can squeeze or stretch the telescopic component when the device is affected by external forces, realize movement relative to the connecting component and absorb energy generated during deformation.

Benefits of technology

By setting telescopic components, the direct friction and wear between the equipment and the connecting components are reduced, the equipment and the connecting components are protected, the service life is extended, and the impact force is reduced when facing external pressure, and the installation stability is improved.

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Abstract

The invention provides a telescopic equipment mounting device and equipment with the same. The telescopic equipment mounting device comprises a connecting assembly and at least one telescopic assembly. One end of each telescopic assembly is used for being connected with external equipment to be installed, and the other end of each telescopic assembly is connected with the connecting assembly, so that the equipment to be installed extrudes or stretches each telescopic assembly to move relative to the connecting assembly when being influenced by external force; the connecting assembly is connected with the external preset fixing device, so that dynamically adjustable connection between the to-be-installed equipment and the external preset fixing device can be achieved, energy generated in the deformation process can be absorbed when extrusion or stretching is caused by external pressure, the impact force of the outside to the to-be-installed equipment is relieved, the to-be-installed equipment is protected, and the service life of the to-be-installed equipment is prolonged. And the service life of the to-be-mounted equipment is prolonged. The installation application scene of the to-be-installed equipment can be effectively expanded, the equipment installation efficiency is improved, and the equipment utilization rate is increased.
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Description

Technical Field

[0001] The invention relates to the field of equipment installation, and in particular to a retractable equipment installation device and equipment having the same. Background Art

[0002] When the equipment to be installed is installed on an unstable external device, an unstable surface or an outdoor environment with unstable climate through an installation device, the installation stability of the equipment is often easily affected by external forces (such as strong winds, heavy rains and other bad outdoor weather, movement and deformation of the external device). When the external device or surface where the equipment is installed is affected by external forces, it is easy to deform. At this time, the installation device and the equipment are easy to directly bear the stress caused by these deformations. Furthermore, the uneven distribution of force is easy to cause damage to the installation device and the installed equipment, shortening the service life of the installation device and the equipment, and increasing the scrap rate. Summary of the invention

[0003] In view of this, the present application proposes a retractable equipment installation device and equipment having the same, and the specific scheme is as follows:

[0004] In a first aspect, a retractable equipment installation device is provided, comprising: a connecting component and at least one retractable component;

[0005] One end of each telescopic component is used to connect to the external equipment to be installed, and the other end of each telescopic component is connected to the connecting component, so that the equipment to be installed can squeeze or stretch each telescopic component to achieve movement relative to the connecting component when affected by external force; the connecting component is connected to an external preset fixing device.

[0006] By setting up the telescopic component, a certain distance can be maintained between the device to be installed and the connecting component, reducing the possibility of direct friction and wear between the device to be installed and the connecting component, thereby protecting the device to be installed and the connecting component and extending the service life of both.

[0007] In some specific embodiments, the telescopic component includes an elastic telescopic part and a movable limiting part; one end of the elastic telescopic part is connected to the device to be installed, and the other end of the elastic telescopic part is connected to the connecting component to squeeze or stretch the elastic telescopic part when the device to be installed is affected by external force; the elastic telescopic part is sleeved on the outside of the movable limiting part, or the elastic telescopic part is arranged inside the movable limiting part.

[0008] In some specific embodiments, the elastic telescopic member includes one or more of a soft tube and a hard tube; and the movable limiting member includes a spring structure.

[0009] In some specific embodiments, a telescopic protective cover is also included, and the telescopic protective cover is arranged on the surface of the telescopic component; drainage holes for drainage are arranged on part or all of the telescopic protective covers. In practical applications, the telescopic protective cover is a flexible protective cover, which can further protect the elastic telescopic parts and the movable limiter in the telescopic component, and reduce the interference of external dust and rain. Furthermore, by arranging drainage holes in the protective cover, the moisture in the protective cover can be discharged, the telescopic component inside the telescopic protective cover is kept dry, and its service life is extended.

[0010] In a specific embodiment, when the equipment to be installed is a rigid structure, the elastic telescopic part is set as a solid hose so that it can play the role of a transition connection. The solid hose has flexible characteristics such as bendability and twistability, and can adapt to the irregular surfaces of the equipment to be installed and the external preset fixing device and the angle requirements of different installation positions, so that the equipment to be installed can be more closely fitted with the external preset fixing device during the installation process of the external preset fixing device, and the installation is more stable.

[0011] In practical applications, by setting the movable limiter as a spring structure and making the outer diameter of the elastic telescopic part slightly smaller than the inner diameter of the spring structure, the elasticity of the spring structure can be used to compensate for the differences in the installation position and angle of the elastic telescopic part. When the elastic telescopic part vibrates or shakes, the spring structure can buffer it, absorb and transmit the impact energy of the equipment to be installed, and avoid damage to the equipment to be installed due to frequent shaking and impact.

[0012] In a specific embodiment, the spring structure is a composite material with high elasticity and strong weather resistance or a high-strength steel wire spring.

[0013] In some specific embodiments, the number of connecting components includes at least one, and each connecting component is connected to at least one telescopic component; one end of the multiple telescopic components is evenly arranged on the side of the connecting component facing the equipment to be installed along the length direction and / or height direction of the connecting component.

[0014] In some specific embodiments, the connection assembly includes a connection piece and a fixing mechanism for connecting to an external preset fixing device; wherein the telescopic assembly, the connection piece and the fixing mechanism are connected in sequence.

[0015] In some specific embodiments, the fixing mechanism includes a fastening bolt and a connection auxiliary member; the connection member includes a first connection portion and a second connection portion connected to each other, and an angle is formed between the first connection portion and the second connection portion;

[0016] The first connection portion is provided with a first mounting hole corresponding to the telescopic assembly, and one end of the telescopic assembly passes through the first mounting hole. Specifically, one end of the elastic telescopic member in the telescopic assembly passes through the first mounting hole to achieve a fixed connection or a movable connection with the first connection portion;

[0017] A second mounting hole corresponding to the fixing mechanism is provided on the second connecting part, and the fastening bolt passes through one end of the connecting auxiliary part and the second mounting hole in sequence to fix one end of the connecting auxiliary part on the second connecting part; the other end of the connecting auxiliary part is fixedly connected to an external preset fixing device.

[0018] In practical applications, the connector includes a C-type connector; the first connector and the second connector may correspond to the side and lower end of the C-type connector, or to the side and upper end of the C-type connector. When the fixing mechanism is disposed on the end corresponding to the lower portion of the C-type connector, the upper end of the C-type connector can not only share a portion of the stress of the lower portion of the C-type connector, but also form a corresponding shielding portion of the fixing mechanism, which can provide the fixing mechanism with windproof and waterproof effects.

[0019] In some specific embodiments, a fixing plate, a nut and a buffer are also included. The fastening bolt passes through the fixing plate and the second connecting part in sequence; a nut is arranged on at least one end of the fastening bolt. The buffer is arranged between the nut and the fixing plate; and / or the buffer is arranged between the nut and the second connecting part, and is used to buffer the external pressure on the fixing mechanism. In a specific embodiment, a buffer may be arranged between the nut and the fixing plate or the second connecting part connected to the fastening bolt, or a buffer may be arranged between the bolt head of the fastening bolt and the fixing plate or the second connecting part connected to the fastening bolt. In practical applications, the buffer may include a spring structure or a sponge or other structure with elasticity and friction. Due to the influence of vibration, temperature change, etc., the preload force received by the fastening bolt may fluctuate, and the nut may rotate and loosen by itself, resulting in loose connection of the fastening bolt. At this time, the buffer arranged between the fastening bolt and the nut can compensate for the change of the preload force, increase the friction between the nut and the fastening bolt, and ensure the tightness and reliability during the connection process.

[0020] When the nut is tightened, the pressure will be concentrated on the contact surface between the nut and the fixing plate or the nut and the second connection part, which may cause the fixing plate or the second connection part to be locally overstressed and cause indentations, deformation, etc. By providing a buffer, the buffer has a certain elastic deformation capacity, and the pressure generated when the nut is tightened can be more evenly distributed to the contact surface of the fixing plate or the second connection part, reducing the local pressure, avoiding the fixing plate or the second connection part from being damaged due to local excessive force, and extending the service life of the plate and the entire connection structure.

[0021] In practical applications, the buffer includes a spring structure. By setting the spring structure, the spring structure can produce appropriate elastic deformation when subjected to external stress, provide sufficient deformation to effectively eliminate the stress on the nut, and strengthen the connection between the nut and the fastening bolt.

[0022] In some specific embodiments, the connection auxiliary member includes a soft structure and / or a hard structure. A limiting structure is formed on an edge of one side of the connection auxiliary member close to the first connection portion, and the limiting structure abuts against the fastening bolt.

[0023] It should be noted that the present application does not specifically limit the form of the limiting structure. As long as it can achieve the reinforcement effect between the fastening bolts and the connection auxiliary parts, the limiting structure can be a hard structure or a soft structure. The limiting structure can be integrally formed with the connection auxiliary part, or it can be additionally provided on one end of the connection auxiliary part. In actual applications, users can select and adjust the limiting structure and the connection auxiliary part according to actual conditions.

[0024] In a specific embodiment, the connection auxiliary part includes a soft connecting film material, and the limiting structure can be a curling structure formed by rolling the connecting film material inward from a side edge close to the first connecting part, wherein an embedded rope is arranged in the curling structure, which can not only abut against the fastening bolts, increase the friction between the fastening bolts and the connecting film material, and strengthen the connection strength between the fastening bolts and the connecting film material, but also improve the firmness of the edge of the connecting film material and prevent the edge of the connecting film material from cracking.

[0025] In a specific embodiment, the external preset fixing device includes a flexible air film structure, wherein the connection auxiliary part, that is, the connecting film material, can be connected to the fastening bolt at one end and fixedly connected to the flexible air film structure by heat sealing at the other end.

[0026] In some specific embodiments, a connection protection frame is also included which is sleeved on the device to be installed; the connection protection frame matches the shape of the device to be installed; one end of the telescopic component is fixedly connected or movably connected to the connection protection frame to achieve connection with the device to be installed. In a specific embodiment, the device to be installed includes a photovoltaic panel, and the connection protection frame includes upper and lower and left and right frames arranged along the edge of the photovoltaic panel, which can be made of aluminum alloy or other lightweight and high-strength materials to ensure the overall structural stability of the device to be installed.

[0027] In some specific embodiments, a pressure detection member, an elastic adjustment device and a control device are further included. The pressure detection member and the elastic adjustment device are connected to the control device in communication; the pressure detection member and the elastic adjustment device are connected to the telescopic component, wherein the pressure detection member is used to detect the pressure data of the telescopic component and send the pressure data to the control device. The control device is used to analyze the pressure data and send an adjustment instruction to the elastic adjustment device, and the elastic adjustment device is used to adjust the telescopic length of the telescopic component according to the adjustment instruction.

[0028] In a second aspect, a device is proposed, wherein the device comprises any one of the retractable device mounting devices in the above technical solutions. In a specific embodiment, a connection protection frame may be provided on the outer edge of the device, and the device comprises a photovoltaic panel device.

[0029] Beneficial effect: The present application proposes a retractable equipment installation device and equipment having the same, including a connecting component and at least one retractable component. One end of each retractable component is used to connect with an external equipment to be installed, and the other end of each retractable component is connected to the connecting component, so that the equipment to be installed can be squeezed or stretched when affected by external force to achieve movement relative to the connecting component, and a dynamically adjustable connection between the equipment to be installed and an external preset fixing device can be achieved. When facing squeezing or stretching caused by external pressure, the energy generated in the deformation process can be absorbed to reduce the impact force of the outside world on the equipment to be installed, so that the equipment having this retractable equipment installation device can flexibly cope with a variety of application scenarios and installation directions, thereby extending the service life of the equipment to be installed. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. 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 related drawings can be obtained based on these drawings without paying creative work.

[0031] Figure 1 This is a schematic diagram of the overall structure of this application;

[0032] Figure 2 Schematic diagram of the external preset fixture installed for this application;

[0033] Figure 3 It is a partial schematic diagram of the retractable equipment installation device in the present application;

[0034] Figure 4 It is a partial side view schematic diagram of the retractable equipment mounting device in the present application;

[0035] Figure 5It is a partial side cross-sectional schematic diagram of the retractable equipment mounting device in the present application;

[0036] Figure 6 Another schematic diagram of the overall structure of this application;

[0037] Figure 7 Schematic diagram of the connection relationship of the control device in this application.

[0038] Figure markings: 1-connecting assembly; 11-connecting piece; 111-first connecting part; 112-second connecting part; 12-fixing mechanism; 121-fastening bolt; 122-connecting auxiliary part; 123-nut; 124-buffer; 125-fixing plate; 126-limiting structure; 13-first mounting hole; 14-second mounting hole; 2-telescopic assembly; 21-elastic telescopic part; 22-movable limiting part; 23-telescopic protective cover; 24-drainage hole; 3-connecting protection frame; 4-equipment to be installed; 5-external preset fixing device; 6-control device; 7-pressure detection part; 8-elastic adjustment device. DETAILED DESCRIPTION

[0039] Hereinafter, various embodiments disclosed in 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 disclosed in the present application to the specific embodiments disclosed herein, but the present application should be understood to cover all adjustments, equivalents and / or alternatives falling within the spirit and scope of the various embodiments disclosed in the present application.

[0040] The terms used in the various embodiments disclosed in the present application are only used to describe the purpose of specific embodiments and are not intended to limit the various embodiments disclosed in the present application. As used herein, the singular form is intended to also include the plural form, unless the context clearly indicates otherwise. Unless otherwise specified, all terms used here (including technical terms and scientific terms) have the same meaning as the meanings commonly understood by ordinary technicians in the field of various embodiments disclosed in the present application. Terms (such as terms defined in generally used dictionaries) will be interpreted as having the same meaning as the contextual meaning in the relevant technical field and will not be interpreted as having an idealized meaning or an overly formal meaning, unless clearly defined in the various embodiments disclosed in the present application.

[0041] Example

[0042] The present application discloses a retractable device installation device and a device having the same, and the specific scheme is as follows:

[0043] In the first aspect, a retractable equipment installation device is proposed, comprising: a connecting component 1 and at least one retractable component 2. One end of each retractable component 2 is used to connect with an external device to be installed 4, and the other end of each retractable component 2 is connected to the connecting component 1, so that the device to be installed 4 can be squeezed or stretched by an external force to achieve relative movement of the connecting component 1; the connecting component 1 is connected to an external preset fixing device 5, such as Figure 2 shown.

[0044] By setting the telescopic component 2, a certain distance can be set between the device to be installed 4 and the connecting component 1, reducing the possibility of direct friction and wear between the device to be installed 4 and the connecting component 1, thereby protecting the device to be installed 4 and the connecting component 1 and extending the service life of both.

[0045] In some specific embodiments, the telescopic assembly 2 includes an elastic telescopic member 21 and a movable limiting member 22;

[0046] One end of the elastic telescopic part 21 is connected to the device to be installed 4, and the other end of the elastic telescopic part 21 is connected to the connecting component 1, so as to squeeze or stretch the elastic telescopic part 21 when the device to be installed 4 is affected by external force; the elastic telescopic part 21 is sleeved outside the movable limiting part 22, or the elastic telescopic part 21 is arranged inside the movable limiting part 22.

[0047] In some specific embodiments, the elastic telescopic member 21 includes one or more of a soft tube and a hard tube; the movable limiting member 22 includes a spring structure.

[0048] In some specific embodiments, Figure 5 As shown in the partial cross-sectional view of the telescopic component 2, it also includes a telescopic protective cover 23, which is arranged on the surface of the telescopic component 2; some or all of the telescopic protective covers are provided with drainage holes 24 for drainage. In practical applications, the telescopic protective cover 23 is a flexible protective cover, which can further protect the elastic telescopic parts 21 and the movable limiter 22 in the telescopic component 2, and reduce the interference of external dust and rain. Furthermore, by providing drainage holes 24 in the protective cover, the moisture in the protective cover can be discharged, the telescopic component 2 inside the telescopic protective cover 23 is kept dry, and its service life is extended.

[0049] In a specific embodiment, when the equipment 4 to be installed is a rigid structure, the elastic telescopic part 21 is set as a solid hose, so that it can play the role of a transition connection. The solid hose has flexible characteristics such as bendability and twistability, and can adapt to the irregular surfaces of the equipment 4 to be installed and the external preset fixing device 5 and the angle requirements of different installation positions, so that the equipment 4 to be installed can be more closely fitted with the external preset fixing device 5 during the installation process of the external preset fixing device 5, and the installation is more stable.

[0050] In actual applications, by setting the movable limit member 22 as a spring structure and making the outer diameter of the elastic telescopic member 21 slightly smaller than the inner diameter of the spring structure, the elasticity of the spring structure can be used to compensate for the differences in the installation position and angle of the elastic telescopic member 21. When the elastic telescopic member 21 vibrates or shakes, the spring structure can buffer it, absorb and transmit the impact energy of the equipment 4 to be installed, and avoid damage to the equipment 4 to be installed due to frequent shaking and impact.

[0051] In a specific embodiment, the spring structure is a composite material with high elasticity and strong weather resistance or a high-strength steel wire spring.

[0052] In some specific embodiments, the number of connecting components 1 includes at least one, and each connecting component 1 is connected to at least one telescopic component 2; one end of the plurality of telescopic components 2 is evenly arranged along the length direction and / or height direction of the connecting component 1 on the side of the connecting component 1 facing the equipment 4 to be installed.

[0053] In practical applications, by evenly arranging a plurality of telescopic components 2, the connection tension distribution between the device to be installed 4 and the connection component 1 can be made more balanced.

[0054] In some specific embodiments, the connection assembly 1 includes a connection member 11 and a fixing mechanism 12 for connecting to an external preset fixing device 5; wherein the telescopic assembly 2, the connection member 11 and the fixing mechanism 12 are connected in sequence.

[0055] In some specific embodiments, the fixing mechanism 12 includes a fastening bolt 121 and a connection auxiliary member 122; the connection member 11 includes a first connection portion 111 and a second connection portion 112 connected to each other, and an angle is formed between the first connection portion 111 and the second connection portion 112;

[0056] The first connection portion 111 is provided with a first mounting hole 13 corresponding to the telescopic assembly 2, and one end of the telescopic assembly 2 passes through the first mounting hole 13, specifically, one end of the elastic telescopic member in the telescopic assembly 2 passes through the first mounting hole 13, so as to achieve a fixed connection or a movable connection with the first connection portion 111;

[0057] The second connecting part 112 is provided with a second mounting hole 14 corresponding to the fixing mechanism 12, and the fastening bolt 121 passes through one end of the connecting auxiliary part 122 and the second mounting hole 14 in sequence to fix one end of the connecting auxiliary part 122 on the second connecting part 112; the other end of the connecting auxiliary part 122 is fixedly connected to an external preset fixing device 5.

[0058] In a specific embodiment, Figure 3 and Figure 5As shown, the elastic telescopic part 21 of the telescopic component 2 includes a hard tube, and the movable limiting part 22 includes a spring structure sleeved on the hard tube. During specific use, one end of the hard tube is movably set in the first mounting hole 13. When the telescopic component 2 is stretched or compressed, the hard tube can pass through the first mounting hole 13 according to the degree of compression and slide in the first mounting hole 13. The spring structure sleeved on the hard tube can provide a buffer for the hard tube.

[0059] In practical applications, the connector 11 includes a C-shaped connector 11; the first connector 111 and the second connector 112 may correspond to the side and lower end of the C-shaped connector 11, or to the side and upper end of the C-shaped connector 11. In a specific embodiment, the angle between the first connector 111 and the second connector 112 is 90 degrees. Figure 4 As shown in the middle angle α.

[0060] By setting an angle between the first connection part 111 and the second connection part 112, the telescopic component 2 can be fixed and the fixing mechanism 12 can be installed in different directions. By making the telescopic component 2 and the fixing mechanism 12 stress in different directions, the connection strength between the connection component 1 and the device to be installed 4 and the external preset fixing device 5 can be increased overall. It should be noted that this embodiment does not specifically limit the size of this angle. In actual applications, the user can adjust the size of the angle between the first connection part 111 and the second connection part 112 according to the actual installation needs.

[0061] When the fixing mechanism 12 is arranged on one end corresponding to the lower part of the C-shaped connector 11, the upper end of the C-shaped connector 11 can not only share part of the stress of the lower part of the C-shaped connector 11, but also can form a corresponding shielding part of the fixing mechanism 12, which can provide the fixing mechanism 12 with windproof and waterproof effects.

[0062] In some specific embodiments, a fixing plate 125, a nut 123 and a buffer 124 are further included. The fastening bolt 121 passes through the fixing plate 125 and the second connecting portion 112 in sequence; the nut 123 is provided on at least one end of the fastening bolt 121. The buffer 124 is provided at a position between the nut 123 and the fixing plate 125; and / or the buffer 124 is provided at a position between the nut 123 and the second connecting portion 112, for buffering the external pressure on the fixing mechanism 12. In a specific embodiment, the buffer 124 may be provided between the nut 123 and the fixing plate 125 or the second connecting portion 112 connected to the fastening bolt 121, or the buffer 124 may be provided between the bolt head of the fastening bolt 121 and the fixing plate 125 or the second connecting portion 112 connected to the fastening bolt 121. In practical applications, the buffer 124 may include a spring structure or a structure having elasticity and friction, such as a sponge. Due to the influence of vibration, temperature change and the like, the preload force received by the fastening bolt 121 may fluctuate, and the nut 123 may rotate and loosen on its own, causing the connection of the fastening bolt 121 to loosen. At this time, the buffer 124 provided between the fastening bolt 121 and the nut 123 can compensate for the change in the preload force, increase the friction between the nut 123 and the fastening bolt 121, and ensure the tightness and reliability during the connection process.

[0063] When the nut 123 is tightened, the pressure will be concentrated on the contact surface between the nut 123 and the fixing plate 125 or the nut 123 and the second connecting part 112, which may cause the fixing plate 125 or the second connecting part 112 to be locally overstressed, resulting in indentations, deformation, etc. By providing the buffer 124, which has a certain elastic deformation capacity, the pressure generated when the nut 123 is tightened can be more evenly distributed to the contact surface of the fixing plate 125 or the second connecting part 112, reducing the local pressure, avoiding the fixing plate 125 or the second connecting part 112 from being damaged due to local overstress, and extending the service life of the plate and the entire connecting structure.

[0064] In practical applications, the buffer 124 includes a spring structure. By setting the spring structure, the spring structure can produce appropriate elastic deformation when subjected to external stress, provide sufficient deformation to effectively eliminate the stress on the nut 123, and strengthen the connection between the nut 123 and the fastening bolt 121.

[0065] In some specific embodiments, the connection auxiliary member 122 includes a soft structure and / or a hard structure. A limiting structure 126 is formed on one side edge of the connection auxiliary member 122 close to the first connection portion 111 , and the limiting structure 126 abuts against the fastening bolt 121 .

[0066] It should be noted that the present application does not specifically limit the form of the limiting structure 126. As long as it can achieve the reinforcement effect between the fastening bolt 121 and the connection auxiliary member 122, the limiting structure 126 can be a hard structure or a soft structure. The limiting structure 126 can be integrally formed with the connection auxiliary member 122, or can be additionally provided on one end of the connection auxiliary member 122. In actual applications, users can select and adjust the limiting structure 126 and the connection auxiliary member 122 according to actual conditions.

[0067] In a specific embodiment, Figure 4 As shown, the connection auxiliary part 122 includes a soft connection film material, and the limiting structure 126 can be a curling structure formed by rolling the connection film material inward from the edge of one side close to the first connection part 111, wherein an embedded rope is arranged in the curling structure, which can not only abut against the fastening bolt 121, increase the friction between the fastening bolt 121 and the connection film material, and strengthen the connection strength between the fastening bolt 121 and the connection film material, but also improve the firmness of the edge of the connection film material and prevent the edge of the connection film material from cracking.

[0068] In a specific embodiment, the external preset fixing device 5 includes a flexible air film structure, and the connecting auxiliary part 122, that is, the connecting film material, can be connected to the fastening bolt 121 at one end, and the other end can be fixedly connected to the flexible air film structure by heat sealing.

[0069] In some specific embodiments, Figure 1 , Figure 2 As shown, it also includes a connection protection frame 3 mounted on the device to be installed 4; the connection protection frame 3 matches the shape of the device to be installed 4; one end of the telescopic component 2 is fixedly connected or movably connected to the connection protection frame 3 to achieve connection with the device to be installed 4. In a specific embodiment, the device to be installed 4 includes a photovoltaic panel, and the connection protection frame 3 includes upper and lower and left and right frames arranged along the edge of the photovoltaic panel. In a specific embodiment, the connection protection frame 3 covers part or all of the edges of the device to be installed.

[0070] In practical applications, the connection protection frame 3 can be made of aluminum alloy or other lightweight high-strength materials to ensure the overall structural stability of the device to be installed 4. By using lightweight materials, the overall weight of the retractable device installation device can be effectively reduced, and the overall installation efficiency can be improved.

[0071] In some specific embodiments, a pressure detection member 7, an elastic adjustment device 8 and a control device 6 are also included. The pressure detection member 7 and the elastic adjustment device 8 are connected to the control device 6 in communication; the pressure detection member 7 and the elastic adjustment device 8 are connected to the telescopic component 2, wherein the pressure detection member 7 is used to detect the pressure data of the telescopic component 2 and send the pressure data to the control device 6. The control device 6 is used to analyze the pressure data and send an adjustment instruction to the elastic adjustment device 8, and the elastic adjustment device 8 is used to adjust the telescopic length of the telescopic component 2 according to the adjustment instruction. The connection relationship between the modules can be as follows: Figure 7 shown.

[0072] In a specific use process, the control device 6 includes a host computer, and the pressure detection component 7 includes a pressure sensor. The user can regularly inspect and maintain the installed equipment, telescopic component 2 and connecting component 1 through the pressure detection component 7. When it is found that the pressure detected by the pressure detection component 7 changes abnormally or abnormal weather occurs, which may challenge the connecting component 1 and the telescopic component 2, the control device 6 can issue instructions to the elastic adjustment device 8 to enable the elastic adjustment device 8 to assist part or all of the telescopic component 2 to connect and support the equipment 4 to be installed.

[0073] In a second aspect, a device is proposed, wherein the device includes any of the retractable device mounting devices in the above technical solutions. In a specific embodiment, a connection protection frame 3 may be provided on the outer edge of the device, and the device includes a photovoltaic panel device, such as Figure 1 and Figure 6 In a specific embodiment, the external preset fixing device includes a structure with a flexible surface such as an air film structure, and the photovoltaic panel device can be installed on the surface of the air film structure through a retractable device installation device. When the air film structure is deformed by strong winds or other natural factors, the telescopic component 2 will absorb the stress generated during the deformation process, and reduce the impact force on the photovoltaic panel device caused by the deformation of the air film structure.

[0074] The present embodiment proposes a retractable equipment installation device and equipment having the same, including a connecting component and at least one retractable component; one end of each retractable component is used to connect to an external equipment to be installed, and the other end of each retractable component is connected to the connecting component, so that the equipment to be installed can squeeze or stretch each retractable component to achieve relative movement of the connecting component when affected by external force; the connecting component is connected to an external preset fixing device, and further, a dynamically adjustable connection between the equipment having this retractable equipment installation device and the external preset fixing device can be achieved. When facing squeezing or stretching caused by external pressure, the equipment installation device can absorb the energy generated in the deformation process, reduce the impact force of the outside world on the equipment to be installed, and can effectively extend the service life of the equipment to be installed.

[0075] Those skilled in the art will appreciate that the accompanying drawings are only schematic diagrams of a preferred implementation scenario, and the modules or processes in the accompanying drawings are not necessarily necessary for the implementation of the present application. Those skilled in the art will appreciate that the modules in the devices in the implementation scenario can be distributed in the devices of the implementation scenario according to the description of the implementation scenario, or can be changed accordingly and located in one or more devices different from the present implementation scenario. The modules of the above-mentioned implementation scenarios can be combined into one module, or can be further split into multiple sub-modules. The above-mentioned serial numbers of this application are only for description and do not represent the pros and cons of the implementation scenarios. The above disclosure is only a few specific implementation scenarios of the present application, but the present application is not limited thereto, and any changes that can be thought of by a technician in this field should fall within the scope of protection of the present application.

Claims

1. A retractable equipment installation device, characterized in that: include: A connecting component and at least one telescopic component; One end of each telescopic assembly is used to connect with an external device to be installed, and the other end of each telescopic assembly is connected to the connecting assembly, so that the device to be installed can be squeezed or stretched by an external force to move relative to the connecting assembly; The connecting component is connected to an external preset fixing device.

2. A retractable equipment installation device according to claim 1, characterized in that: The telescopic assembly includes an elastic telescopic member and a movable limiting member; One end of the elastic expansion member is connected to the device to be installed, and the other end of the elastic expansion member is connected to the connecting assembly, so as to squeeze or stretch the elastic expansion member when the device to be installed is affected by an external force; The elastic telescopic member is sleeved outside the movable limiting member, or the elastic telescopic member is arranged inside the movable limiting member.

3. A retractable equipment installation device according to claim 2, characterized in that: The elastic expansion member includes one or more of a soft tube and a hard tube; the movable limiting member includes a spring structure.

4. A retractable equipment installation device according to claim 1, characterized in that: It also includes a telescopic protective cover, which is arranged on the surface of the telescopic component; some or all of the telescopic protective covers are provided with drainage holes for drainage.

5. A retractable equipment installation device according to claim 1, characterized in that: The number of the connecting components includes at least one, and each of the connecting components is connected to at least one of the telescopic components; One ends of the plurality of telescopic components are uniformly arranged along the length direction and / or height direction of the connecting component on a side of the connecting component facing the equipment to be installed.

6. A retractable equipment installation device according to claim 1, characterized in that: The connecting assembly includes a connecting piece and a fixing mechanism for connecting to an external preset fixing device; The telescopic assembly, the connecting member and the fixing mechanism are connected in sequence.

7. A retractable equipment installation device according to claim 6, characterized in that: The fixing mechanism includes a fastening bolt and a connection auxiliary member; the connection member includes a first connection portion and a second connection portion connected to each other, and an angle is formed between the first connection portion and the second connection portion; The first connecting portion is provided with a first mounting hole corresponding to the telescopic assembly, and one end of the telescopic assembly passes through the first mounting hole to achieve a fixed connection or a movable connection with the first connecting portion; The second connecting part is provided with a second mounting hole corresponding to the fixing mechanism, and the fastening bolt passes through one end of the connecting auxiliary part and the second mounting hole in sequence to fix one end of the connecting auxiliary part on the second connecting part; the other end of the connecting auxiliary part is fixedly connected to an external preset fixing device.

8. A retractable equipment installation device according to claim 7, characterized in that: Also includes a fixing plate, a nut and a buffer; The fastening bolt passes through the fixing plate and the second connecting portion in sequence; the nut is provided on at least one end of the fastening bolt; The buffer member is disposed between the nut and the fixing plate; and / or the buffer member is disposed between the nut and the second connecting portion, and is used to buffer the external pressure applied to the fixing mechanism.

9. A retractable equipment installation device according to claim 7, characterized in that: The connection auxiliary component includes a soft structure and / or a hard structure; A limiting structure is formed on an edge of one side of the connection auxiliary member close to the first connection portion, and the limiting structure abuts against the fastening bolt.

10. A device, characterized in that: A retractable equipment mounting device comprising any one of claims 1-9.