Aluminum profile module for local space construction

The sliding connection and adjustment mechanism of the aluminum profile module solves the problems of low construction efficiency of the aluminum profile module in a narrow space and safety hazards of bolt connections, and realizes rapid installation and disassembly.

CN116838078BActive Publication Date: 2025-09-30FOSHAN GUANGYA ALUMINUM FORMWORK SCI & TECH
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Patent Information

Application Number
CN202310787705.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2025-09-30
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

The existing aluminum profile modules have low construction efficiency in narrow spaces, and the bolt connections are easily lost, posing a safety hazard.

Method used

The first template and the second template are connected by a sliding connector, combined with an adjustment mechanism, a locking assembly and an unlocking assembly to achieve a connection without bolts. The transmission assembly drives the connector to move linearly, and automatic positioning is achieved using elastic connectors and snap-on parts.

Benefits of technology

It improves the construction efficiency of aluminum profile modules in narrow spaces, avoids bolt loss and safety hazards, and enables rapid installation and disassembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an aluminum profile module, which relates to the field of building construction modules. The aluminum profile module includes: a first template, in which a cavity is provided; a second template, which is perpendicular to the first template; a connecting assembly, including a first connecting member and a second connecting member, the first connecting member is provided on the first template, and the first connecting member and the first template are slidingly connected along the length direction of the second template, the second connecting member is provided on the second template, and the first connecting member and the second connecting member are slidingly matched; an adjusting mechanism is provided in the cavity, which is used to adjust the first connecting member and the second connecting member to slide together, or to adjust the first connecting member to detach from the second connecting member and enter the first template. The aluminum profile module of the present application does not require additional space for the first connecting member to detach from the second template, which facilitates the disassembly of the aluminum profile module in a relatively narrow local space.
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Description

Technical Field

[0001] The invention relates to the field of building construction modules, in particular to an aluminum profile module. Background Art

[0002] Traditional building modules are usually made of wood. Wooden modules have the advantage of low cost, but poor durability and low reuse rate. They require large amounts of deforestation and cause great damage to the environment.

[0003] In order to reduce the use of wooden building modules, steel building modules are gradually being used to replace wooden building modules. Steel modules have high strength and good reusability, but they are too heavy and have the disadvantage of being inconvenient to disassemble during actual application. In addition, due to the high weight of steel modules, the falling of steel modules will cause a relatively large safety hazard.

[0004] Aluminum profile modules have the advantages of light weight, high bearing capacity and good reusability. Aluminum profile modules are light in weight, easy to operate by construction workers, and can reduce safety hazards during the construction process. Therefore, aluminum profile modules are currently widely used in the construction field.

[0005] However, there are relatively few aluminum profile modules that are suitable for relatively narrow local spaces. In order to improve the construction performance of aluminum profile building modules in local spaces, detachable aluminum profile modules are usually used to facilitate the aluminum profile modules to enter narrow spaces. Among them, the detachable aluminum profile modules in the related art are fixed in the following way: two adjacent aluminum modules are plugged in, and then the bolt holes of the two aluminum modules are aligned, and the bolts are screwed into the bolt holes to achieve a detachable connection of the aluminum profile module. However, when using bolts for alignment connection, it is necessary to calibrate the bolt holes in multiple parts, and both installation and disassembly have the problems of being time-consuming and inefficient. In addition, due to the large number of bolts, during the construction process, it is also easy for the bolts to be lost or dropped, and the bolts scattered on the ground can easily cause safety hazards. Summary of the Invention

[0006] In order to improve the constructability of aluminum profile modules in relatively narrow local spaces and at the same time improve the installation efficiency of aluminum profile modules, the present application provides an aluminum profile module.

[0007] The aluminum profile module provided in this application adopts the following technical solution:

[0008] An aluminum profile module, comprising:

[0009] a first template, wherein a cavity is provided in the first template;

[0010] a second template, perpendicular to the first template;

[0011] A connecting assembly includes a first connecting member and a second connecting member, wherein the first connecting member is provided on the first template and is slidably connected to the first template along the length direction of the second template, and the second connecting member is provided on the second template and is slidably engaged with the first connecting member;

[0012] An adjustment mechanism is provided in the cavity and is used to adjust the first connecting member to slide with the second connecting member, or to adjust the first connecting member to separate from the second connecting member and enter the first template.

[0013] The first and second templates are detachably connected via the first and second connectors, which can reduce the space occupied by the aluminum profile module during transportation. This not only facilitates transportation, but also facilitates the insertion of the aluminum profile module into spaces with limited local space. Furthermore, an adjustment mechanism is provided within the first template, which can reduce the space occupied by the adjustment mechanism. Furthermore, the adjustment mechanism can adjust the first connector to fit within the first template. Therefore, when disassembling the aluminum profile module, there is no need to create additional space for the first connector to detach from the second template, making it easier to disassemble the aluminum profile module even in confined spaces.

[0014] The aluminum profile modules of the present application do not need to be connected in position using bolts, which effectively improves the installation efficiency and does not cause safety hazards caused by bolts falling on the ground.

[0015] Optionally, the adjustment mechanism includes:

[0016] an adjusting component disposed in the first template, wherein the adjusting component is slidably connected to the first template, and a sliding direction of the adjusting component and the first template is perpendicular to a sliding direction of the first connecting member and the first template;

[0017] a transmission assembly hinged to the first connecting member and the adjustment assembly, wherein the adjustment assembly drives the first connecting member to slide by changing an angle formed by the adjustment assembly and the transmission assembly, and an angle formed by the transmission assembly and the first connecting member;

[0018] A driving member is connected to the adjusting assembly and is used to drive the adjusting assembly and the first template to slide relative to each other.

[0019] The lengths of the transmission assembly of the first connecting member and the adjustment assembly are not adjustable. When the adjustment assembly slides, the angles formed by the transmission assembly, the adjustment assembly, and the first connecting member change, which can drive the first connecting member to perform linear motion. Specifically, when the angle formed by the transmission assembly and the adjustment assembly gradually increases and the angle formed by the transmission assembly and the first connecting member gradually decreases, the adjustment assembly drives the first connecting member to separate from the second template; when the angle formed by the transmission assembly and the adjustment assembly gradually decreases and the angle formed by the transmission assembly and the first connecting member gradually increases, the adjustment assembly drives the first connecting member to cooperate with the second connecting member. That is, under the transmission action of the transmission assembly, the adjustment assembly can drive the first connecting member to perform linear motion by linear sliding.

[0020] Unlike rack-and-pinion transmissions and lead-screw linear transmissions, which convert rotation into linear transmission, rack-and-pinion and lead-screw linear transmissions both involve the mating of tooth surfaces. Smooth tooth mating surfaces are more susceptible to wear. Severe wear or the presence of impurities on these surfaces can affect the precision of tooth mating, making it difficult for rack-and-pinion and lead-screw linear transmissions to achieve linear transmission.

[0021] Optionally, the transmission assembly includes four connecting rods, the four connecting rods form a quadrilateral, and the connection between two adjacent connecting rods is hinged;

[0022] Wherein, one corner of the transmission assembly is hinged to the first connecting member, and the other corner is hinged to the first template; the adjustment assembly is hinged to any one corner of the other set of opposite corners of the transmission assembly.

[0023] When the transmission assembly uses only one connecting rod, the first connecting member generates a force component in the sliding direction of the adjustment assembly, which can easily prevent the first connecting member from performing smooth linear motion. The transmission assembly uses four sequentially hinged connecting rods. The four connecting rods work together to limit the movement of the first connecting member in the sliding direction of the adjustment assembly, which helps to drive the first connecting member to perform smooth linear motion.

[0024] Optionally, the driving member is a connecting rod, and the first template is provided with a slide along the sliding direction of the adjustment component. One end of the connecting rod is connected to the adjustment component, and the end of the connecting rod away from the adjustment component passes through the slide and extends to the outside of the first template.

[0025] From the perspective of energy conservation, the driving member adopts a connecting rod driven manually, and the connecting rod extends through the slideway to the outside of the first template, which has the effect of facilitating the control of the movement of the connecting rod.

[0026] Optionally, the connecting rod passes through one end of the first template and is rotatably connected to a limiting rod, the rotating axis between the limiting rod and the connecting rod is perpendicular to the connecting rod, and the first template is provided with two limiting grooves in sequence along the sliding direction of the adjustment component, and the limiting grooves are adapted to the limiting rod.

[0027] The connecting rod is rotatably connected to a limit rod, and the first template opens two limit grooves in sequence along the sliding direction of the adjustment component. The two limit grooves correspond to the two states of the first connecting part being locked in the second template and the first connecting part being detached from the second template. When the state adjustment of the first connecting part is completed, the limit rod can be rotated so that the limit rod is embedded in the limit groove, thereby realizing the positioning of the adjustment component.

[0028] The above structure for achieving the limit of the adjustment component is simple, and there is no need to tighten screws in place or set up a complicated limit structure.

[0029] Optionally, the first template is provided with a seal for sealing the slide at a position corresponding to the slide, the seal is slidably connected to the first template, and the seal is fixedly connected to the connecting rod.

[0030] The first template is provided with a seal at the position of the slide, and the seal is fixedly connected to the connecting rod, so the seal can slide with the connecting rod, always keeping the slide in a sealed state, which can prevent dust or granular impurities from entering the cavity of the first template, thereby preventing impurities from affecting the normal operation of the adjustment mechanism, and is conducive to the reuse of aluminum profile modules.

[0031] Optionally, the aluminum profile module further includes:

[0032] The locking assembly comprises an elastic connector and a clamping member, wherein the elastic connector is provided in the first connector, and the clamping member is provided in the second template. The elastic connector and the clamping member are elastically clamped, and the clamping direction of the elastic connector and the clamping member is perpendicular to the matching direction of the first connector and the second connector;

[0033] Unlocking component: connected to the elastic connecting member, used for pulling the elastic connecting member out of the clamping member.

[0034] The elastic connector can achieve the coordination between the elastic connector and the clip-on connector under the action of its own elastic force, omitting the step of manually using bolts or pins to further limit the connecting block, which is beneficial to improving the installation efficiency of the aluminum profile module; the setting of the unlocking component can disassemble the aluminum profile module, making it convenient for the reuse of the aluminum profile module.

[0035] Optionally, the unlocking component includes:

[0036] a connecting rope, one end of which is connected to the adjusting assembly and the other end of which is connected to the elastic connecting member;

[0037] A guide assembly, used for guiding the connecting rope so that the adjusting assembly can pull the elastic connecting member away from the clamping member;

[0038] Wherein, a conversion fastener is provided in the first template, and the conversion fastener is used to control the adjustment component to independently drive the unlocking component to move;

[0039] The adjustment component includes:

[0040] a sliding member, slidably connected to the first template;

[0041] an adjusting member, provided on one side of the sliding member, comprising a main body and a buckle portion, wherein the main body is slidably connected to the sliding member and is hinged to the transmission assembly, and the buckle portion is provided on the main body and movably buckled with the conversion buckle;

[0042] The supporting member is provided on the sliding member and is connected to an end of the connecting rope away from the elastic connecting member, and can drive the adjusting member and the connecting rope to move.

[0043] When the snap portion of the adjusting member is snapped into engagement with the conversion fastener, the first connecting member and the second connecting member are matched, but the elastic connecting member is not matched with the snap connecting member. At this time, when the sliding member continues to move in the direction close to the first connecting member, the adjusting member does not continue to move in the direction close to the first connecting member under the limitation of the conversion fastener, but the supporting member can continue to drive the connecting rope to move in the direction close to the first connecting member, so that the elastic connecting member and the snap connecting member match to complete the stable connection between the first template and the second template.

[0044] When the aluminum profile module needs to be disassembled, the sliding member slides away from the first connecting member. Before the support member contacts the adjusting member, the support member only drives the connecting rope to move, so that the elastic connecting member is disengaged from the clamping member. After the support member contacts the adjusting member, the support member drives the adjusting member to move away from the first connecting member, so that the adjusting member is disengaged from the conversion buckle, and drives the first connecting member to move away from the second template, so that the second template can be disassembled from the first template.

[0045] Through the cooperation of the adjustment mechanism, the locking assembly and the unlocking assembly, the adjustment mechanism can adjust the movement of the first connecting member, and can also adjust the movement of the unlocking assembly and the locking assembly.

[0046] Optionally, the elastic connecting member includes:

[0047] a plug connector disposed in the first connecting member, the plug connector being slidably connected to the clamping member along a sliding direction perpendicular to the sliding direction of the first connecting member; an end of the connecting rope away from the sliding member being connected to the plug connector;

[0048] The elastic member is arranged in the first connecting member, with one end fixedly connected to the first connecting member and the other end connected to the plug-in member.

[0049] The plug-in connector cooperates with the snap connector to lock the first connector in the second template. An elastic member is provided. Through the elastic force of the elastic member, when the plug-in connector moves to a position directly opposite to the snap connector, the plug-in connector can automatically cooperate with the snap connector. Compared with direct bolt locking, it has an automatic positioning effect and does not require manual correction of whether the screw holes are correctly aligned, which is beneficial to saving the locking step of the first connector and can realize rapid installation of the first template and the second template.

[0050] Optionally, the guide assembly includes:

[0051] A steering wheel, rotatably connected to the first template along a direction perpendicular to the plane where the first template is located;

[0052] The guide member is arranged in the first connecting member. The end of the connecting rope away from the supporting member passes around the steering wheel and then extends along the guide member toward the connector and is connected to the connector.

[0053] The end of the connecting rope away from the connector is horizontally guided to the steering wheel through the guide piece. After the connecting rope passes around the steering wheel, the direction of the connecting rope changes by 90°, and the movement of the connecting rope can be adjusted by adjusting the component.

[0054] In summary, the technical solution of this application includes at least the following beneficial effects:

[0055] 1. The first template and the second template of the aluminum profile module are connected by the sliding fit of the first connecting member and the second connecting member, and the adjustment mechanism can adjust the first connecting member to enter the first template. When disassembling the aluminum profile module, there is no need to make additional space for the first connecting member to be separated from the second template, which is convenient for disassembling the aluminum profile template in places with relatively narrow space; the aluminum profile module of the present application does not need to use bolts for alignment connection, which effectively improves the installation efficiency. In addition, since no bolts are needed, the problem of scattered bolts being easily lost is also prevented.

[0056] 2. Unlike the rack and pinion transmission structure and the screw linear transmission structure, which both convert rotation into linear transmission, in this application, under the transmission action of the transmission component, the adjustment component can drive the first connecting part to perform linear motion through linear sliding, and there is no problem of easy wear of the tooth surface, which leads to the inability to drive the first connecting part to slide normally.

[0057] 3. Through the cooperation of the specific adjustment mechanism, locking assembly and unlocking assembly of the present application, the adjustment mechanism can adjust the movement of the first connecting member, as well as the movement of the unlocking assembly and the locking assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0058] Figure 1 It is a structural schematic diagram of an aluminum profile module according to a preferred embodiment of the present application.

[0059] Figure 2 yes Figure 1 Top view of .

[0060] Figure 3 yes Figure 2 Sectional view of plane AA.

[0061] Figure 4 yes Figure 3 Schematic diagram of the local structure.

[0062] Figure 5 yes Figure 2 Cross-sectional view of the middle BB plane.

[0063] Figure 6 yes Figure 5 Schematic diagram of the local structure.

[0064] Figure 7 yes Figure 1 main view.

[0065] Figure 8 yes Figure 7 Cross-sectional view of the CC plane.

[0066] Figure 9 yes Figure 8 A partial enlarged view of point A in the middle.

[0067] Description of reference numerals:

[0068] 1. First template; 11. Cavity; 12. First slide groove; 13. Slideway; 14. Limiting groove; 15. Guide rail; 2. Second template; 3. Connecting block; 31. Accommodating groove; 4. Connecting groove; 5. Adjusting mechanism; 51. Slide rod; 511. Second slide groove; 52. Adjusting block; 521. Main body; 522. Buckle portion; 53. Support block; 54. Conversion buckle; 55. Transmission assembly; 56. Connecting rod; 561. Limiting rod; 57. Seal; 6. Locking assembly; 61. Spring; 62. Plug-in block; 63. Snap-fit ​​groove; 7. Unlocking assembly; 71. Connecting rope; 72. Support shaft; 73. Steering wheel; 74. Guide groove. DETAILED DESCRIPTION

[0069] The following is combined with Figure 1-9 This application is described in further detail.

[0070] The present application embodiment discloses an aluminum profile module. Figure 1 The aluminum profile module includes a first template 1 and a second template 2. In order to facilitate the transportation of aluminum profiles and their application in local space, refer to Figure 2 and 3 The aluminum profile module further includes a connecting assembly and an adjusting mechanism 5. The connecting assembly is used to connect the first template 1 and the second template 2, and the adjusting mechanism 5 is used to adjust the first template 1 and the second template 2 to cooperate or adjust the first template 1 and the second template 2 to separate from each other.

[0071] Reference Figure 4 The connection assembly includes a first connection member and a second connection member. The first connection member is provided on the first template 1 and is slidably connected to the first template 1 along the length direction of the second template 2. The second connection member is provided on the second template 2, and the first connection member and the second connection member are slidably matched, thereby achieving the positioning connection between the first template 1 and the second template 2.

[0072] In a specific embodiment, referring to Figure 4 The first connecting member may be a connecting block 3, and the second connecting member may be a connecting groove 4 provided in the second template 2. The connecting block 3 and the connecting groove 4 are adapted in shape and size. To prevent the connecting block 3 and the second template 2 from rotating relative to each other, in some preferred embodiments, the connecting block 3 preferably has a non-circular cross-section, such as a polygonal cross-section.

[0073] The first template 1 and the second template 2 are connected by the connection block 3 and the connection groove 4. However, the connection block 3 is prone to fall out of the connection groove 4 of the second template 2, making it impossible to achieve a stable connection between the first template 1 and the second template 2. Therefore, the aluminum profile module preferably also includes a locking assembly 6.

[0074] In some specific embodiments, the locking assembly 6 can be formed of detachable connectors such as bolts and latches that pass through the first template 1 and the second template 2 at the same time to define the locking assembly 6 .

[0075] In some preferred embodiments, reference Figure 5 and 6 , the locking assembly 6 includes an elastic connector and a snap-in connector. The elastic connector is provided in the connecting block 3, the snap-in connector is provided in the second template 2, and the positions of the elastic connector and the snap-in connector are opposite. When the elastic connector and the snap-in connector are misaligned, the elastic connector is in a compressed state. When the elastic connector moves to a position opposite to the snap-in connector, the elastic connector extends into the snap-in connector under the action of its own elastic force, thereby achieving the coordination between the elastic connector and the snap-in connector. The coordination direction between the elastic connector and the snap-in connector is perpendicular to the coordination direction between the connecting block 3 and the connecting groove 4. When the elastic connector and the snap-in connector are coordinated, the connecting block 3 cannot be separated from the connecting groove 4 of the second template 2, thereby achieving the purpose of locking. In addition, since the elastic connector can achieve the coordination between the elastic connector and the snap-in connector under the action of its own elastic force, the step of manually using bolts or latches to further limit the connecting block 3 is omitted, which is conducive to improving the installation efficiency of the aluminum profile module.

[0076] The specific elastic connector and the clamping member are described in detail below.

[0077] Reference Figure 6 The connecting block 3 is provided with a receiving groove 31 with an open side, and the elastic connecting member is arranged in the receiving groove 31. Specifically, the elastic connecting member includes an elastic member and a plug-in member. The elastic member can be an object that can return to its original shape after deformation. In this embodiment, the elastic member is specifically a spring 61 as an example. One end of the spring 61 is fixed to the inner wall of the receiving groove 31 opposite to the opening, and the other end extends in a direction perpendicular to the matching direction of the connecting block 3 and the connecting groove 4. The plug-in member is used to be plugged in with the card connector to limit the connecting block 3 from being separated from the connecting groove 4. In this embodiment, the plug-in member is specifically a plug-in block 62, and the plug-in block 62 is on the same straight line as the spring 61, and the end of the plug-in block 62 close to the spring 61 is fixed to the spring 61.

[0078] The clamping member is provided on the second template 2. In this embodiment, the clamping member is specifically a clamping groove 63 provided on the second template 2. Specifically, the clamping groove 63 is opposite to the receiving groove 31, and the side of the clamping groove 63 near the receiving groove 31 is also open. The end of the plug-in block 62 away from the spring 61 passes through the open receiving groove 31 and enters the clamping groove, thereby locking the connecting block 3.

[0079] Among them, before the plug-in block 62 cooperates with the slot, the plug-in block 62 compresses the spring 61 into the accommodating slot 31, that is, the spring 61 is in a compressed state, so that when the plug-in block 62 moves to a position directly opposite to the slot, the spring 61 can provide power to the plug-in block 62 to allow the plug-in block 62 to automatically extend into the slot.

[0080] Since the aluminum profile module needs to be disassembled for reuse, it is also necessary to consider how to unlock the locking component 6. Therefore, in a specific embodiment, the aluminum profile module further includes an unlocking component 7.

[0081] In a specific embodiment, the unlocking component 7 can be a connecting rope 71, one end of which is fixedly connected to the plug-in block 62, and the other end passes through the connecting block 3 and the second template 2 in sequence and extends to the outside of the second template 2.

[0082] In a specific embodiment, the unlocking component 7 can also adopt an unlocking piece with a thread. When unlocking is required, the unlocking piece is threadedly connected through the second template 2, the connecting block 3 and the plug-in block 62 in sequence. After the connection between the unlocking piece and the plug-in block 62 is completed, the plug-in block 62 can be pulled out of the slot through the unlocking piece to achieve unlocking.

[0083] As for the adjusting mechanism 5, since the function of the adjusting mechanism 5 is to adjust the first connecting member to slide along the length direction of the second template 2, the adjusting mechanism 5 can be a structure that can drive the first connecting member to perform linear motion, such as a gear rack linear transmission structure, a screw linear transmission structure, etc.

[0084] In a preferred embodiment, the adjustment mechanism 5 can adjust the movement of the first connecting member as well as the movement of the unlocking assembly 7 and the locking assembly 6. The preferred adjustment mechanism 5 and the unlocking assembly 7 are described in detail below.

[0085] Reference Figure 4 , the preferred adjustment mechanism 5 includes an adjustment component, a conversion fastener, a transmission component 55 and a driving member. The adjustment component is arranged in the first template 1, and the adjustment component is slidably connected to the first template 1, and is used to drive the transmission component 55 to drive the first connecting member to perform linear motion. The conversion fastener can enable the adjustment component to drive the unlocking component 7 to move alone, and plays a key role in using the same adjustment component to adjust the movement of the first connecting member, the movement of the unlocking component 7 and the movement of the locking component 6. The transmission component 55 is hinged to the first connecting member and the adjustment component, and the adjustment component drives the first connecting member to slide by changing the angle formed by the adjustment component and the transmission component 55, and the angle formed by the transmission component 55 and the first connecting member. The function of the driving member is to drive the adjustment component to move.

[0086] The adjustment assembly includes a sliding member, an adjusting member, and a supporting member. In a specific embodiment, the sliding member is a sliding rod 51, the adjusting member is an adjusting block 52, and the supporting member is a supporting block 53. A cavity 11 is provided in the first template 1, the sliding rod 51 is provided in the first template 1, the first template 1 is provided with a first sliding groove 12 for the sliding rod 51 to slide, and the sliding rod 51 and the first template 1 are slidably connected along a sliding direction perpendicular to the first connecting member. The adjustment block 52 includes a main body 521 and a snap-fit ​​portion 522. The main body 521 is provided on the sliding rod 51, and the sliding rod 51 is provided with a second sliding groove 511 for the sliding of the main body 521. The sliding direction of the main body 521 and the sliding rod 51 is parallel to the sliding direction of the sliding rod 51 and the first template 1. The snap-fit ​​portion 522 is fixed to the main body 521 and is used to movably engage with the conversion fastener to limit the adjustment block 52 from sliding in the direction of approaching the first connecting member following the sliding rod 51. The support block 53 is fixed on the slide rod 51, and the distance between the support block 53 and the first connecting member is smaller than the distance between the conversion fastener and the first connecting member. When the plug-in block 62 is matched with the snap-fit ​​groove 63, the distance between the support block 53 and the conversion fastener is equal to the thickness of the part of the plug-in block 62 inserted into the snap-fit ​​groove 63.

[0087] The conversion fastener is provided in the first template 1, and the conversion fastener is preferably a conversion buckle 54. When the snap portion 522 of the adjustment block 52 is engaged with the conversion buckle 54, the slide bar 51 can no longer drive the adjustment block 52 to move in the direction close to the first connecting member. When the drive slide bar 51 continues to move in the direction close to the first connecting member, the adjustment block 52 disengages from the support block 53. When the drive slide bar 51 moves in the direction away from the first connecting member, the adjustment block 52 remains in its original position before the support block 53 contacts the adjustment block 52. After the support block 53 contacts the adjustment block 52, the support block 53 pushes the adjustment block 52 to disengage from the conversion buckle 54 under the driving action of the slide bar 51, that is, the adjustment block 52 can slide together with the slide bar 51. At this time, there is no relative movement between the adjustment block 52 and the slide bar 51.

[0088] The configuration of the conversion buckle 54 allows, after the first and second connectors are fully engaged, the movement of the connecting rope 71 can be independently adjusted by sliding the slide bar 51 to control the locking assembly 6 to lock the first connector. When disassembling the aluminum profile module, the first connector remains stationary before the slide bar 51 drives the connecting rope 71 to move, causing the plug-in block 62 to compress the spring 61 and enter the receiving groove 31. After the plug-in block 62 is disengaged from the engaging groove 63, the support block 53 contacts the adjustment block 52, driving the adjustment block 52 to drive the transmission assembly 55 to move, causing the transmission assembly 55 to drive the first connector to disengage from the second template 2, thereby completing disassembly.

[0089] The transmission assembly 55 preferably includes four connecting rods, forming a quadrilateral, with the connections between two adjacent connecting rods hinged. One corner of the transmission assembly 55 is hinged to the first connector, and another corner is hinged to the first template 1. Any one of the other two diagonally opposite corners of the transmission assembly 55 is hinged to the body 521 of the adjustment block 52, enabling the adjustment block 52 to move with the slide rod 51, thereby driving the first connector to move as well.

[0090] The driving member is used to drive the slide bar 51 to slide, and any structure capable of driving the slide bar 51 to perform linear motion may be used.

[0091] Reference Figure 6 The preferred unlocking assembly 7 includes a connecting rope 71 and a guide assembly. One end of the connecting rope 71 is fixedly connected to the center of the plug block 62 near the spring 61, and the other end is fixedly connected to the support block 53. The guide assembly is used to guide the movement of the connecting rope 71 and includes a support shaft 72, a steering wheel 73, and a guide member. The support shaft 72 is disposed within the first template 1, with its length perpendicular to the plane of the first template 1. It supports and mounts the steering wheel 73. The steering wheel 73 functions to redirect the connecting rope 71. The steering wheel 73 is located directly below the support block 53 and is rotatably connected to the support shaft 72. After the end of the connecting rope 71 away from the plug block 62 passes around the steering wheel 73, the portion of the connecting rope 71 that passes around the steering wheel 73 transitions from being parallel to the length of the second template 2 to being parallel to the length of the slide bar 51. The guide member guides the end of the connecting rope 71 away from the plug block 62 along the length of the second template 2 to the steering wheel 73. In this embodiment, the guide member is specifically a guide groove 74 provided in the first connecting member. The connecting rope 71 is located in the guide groove 74 and extends through the guide groove 74 to the steering wheel 73 outside the first connecting member.

[0092] Among them, when installing the aluminum profile module, the sliding rod 51 is driven by the connecting rod 56 to move in the direction close to the first connecting member, and the support block 53 on the sliding rod 51 drives the adjustment block 52 to move together with the sliding rod 51 in the direction close to the first connecting member. When the snap portion 522 of the adjustment block 52 is snapped with the conversion buckle 54, the first connecting member of the first template 1 and the second connecting member of the second template 2 are matched, but the spring 61 is not matched with the snap groove 63. At this time, when the sliding rod 51 continues to move in the direction close to the first connecting member, the adjustment block 52 does not continue to move in the direction close to the first connecting member under the limitation of the conversion buckle 54, but the support block 53 can continue to drive the connecting rope 71 to move in the direction close to the first connecting member, so that the plug-in block 62 cooperates with the snap groove 63 to complete the stable connection between the first template 1 and the second template 2.

[0093] When disassembling the aluminum profile module, the connecting rod 56 drives the slide rod 51 to slide away from the first connecting member. Before the support block 53 contacts the adjusting block 52, the support block 53 only drives the connecting rope 71 to move, so that the plug-in block 62 is disengaged from the clamping groove 63. After the support block 53 contacts the adjusting block 52, the support block 53 drives the adjusting block 52 to move away from the first connecting member, so that the adjusting block 52 disengages from the conversion buckle 54, and drives the first connecting member to move away from the second template 2, so that the second template 2 can be disassembled from the first template 1.

[0094] Among them, regarding the selection of the driving member, considering the practicality, the driving member is preferably driven manually. Figure 7 and 8 The driving member is a connecting rod 56. The connecting rod 56 is fixedly connected to the slide bar 51, and the end of the connecting rod 56 away from the slide bar 51 extends through the first template 1 in a direction perpendicular to the connecting rod 56 to the outside of the first template 1. The first template 1 is provided with a slideway 13 along the sliding direction of the slide bar 51 for the connecting rod 56 to drive the slide bar 51 to slide.

[0095] More preferably, referring to Figure 7 and 8 The connecting rod 56 passes through one end of the first template 1 and is rotatably connected to a limiting member. The limiting member is preferably a limiting rod 561 with a simple structure. The rotation axis between the limiting rod 561 and the connecting rod 56 is perpendicular to the length of the connecting rod 56. The first template 1 has two limiting grooves 14 formed in sequence along the sliding direction of the sliding rod 51. The limiting grooves 14 are adapted to the limiting rod 561, and the limiting rod 561 can be rotatably embedded in the limiting grooves 14. One limiting groove 14 corresponds to the state in which the first connecting member is locked in the second template 2, and the other limiting groove 14 corresponds to the state in which the first connecting member is disengaged from the second template 2.

[0096] Still more preferably, referring to Figure 8 and 9 The first template 1 is provided with a seal 57 for sealing the slideway 13 at a position corresponding to the slideway 13. The first template 1 is provided with a guide rail 15 for the seal 57 to slide. The seal 57 and the first template 1 slide in the same direction as the slide rod 51, and the seal 57 is fixedly connected to the connecting rod 56. When the connecting rod 56 slides along the slideway 13, the seal 57 can slide with the connecting rod 56, keeping the slideway 13 in a sealed state at all times, thereby preventing dust, particulate matter, etc. from entering the cavity 11 of the first template 1.

[0097] This specific implementation manner is merely an explanation of the present application and is not a limitation of the present application. After reading this specification, those skilled in the art may make non-creative modifications to the specific implementation manner as needed, but as long as they are within the scope of the claims of the present application, they are protected by the patent law.

Claims

1. An aluminum profile module, characterized in that: include A first template (1), wherein a cavity (11) is provided in the first template (1); A second template (2) is perpendicular to the first template (1); A connecting assembly comprising a first connecting member and a second connecting member, wherein the first connecting member is provided on the first template (1), and the first connecting member and the first template (1) are slidably connected along the length direction of the second template (2), and the second connecting member is provided on the second template (2), and the first connecting member and the second connecting member are slidably matched; an adjusting mechanism (5), disposed in the cavity (11), for adjusting the sliding fit between the first connecting member and the second connecting member, or adjusting the first connecting member to separate from the second connecting member and enter the first template (1); The regulating mechanism (5) comprises: an adjusting component disposed in the first template (1), the adjusting component being slidably connected to the first template (1), and a sliding direction between the adjusting component and the first template (1) being perpendicular to a sliding direction between the first connecting member and the first template (1); The transmission component (55) is hinged to the first connecting member and the adjusting component, and the adjusting component drives the first connecting member to slide by changing the angle formed by the adjusting component and the transmission component (55), and the angle formed by the transmission component (55) and the first connecting member; one corner of the transmission component (55) is hinged to the first connecting member, and the other corner is hinged to the first template (1); the adjusting component is hinged to any one corner of the other set of opposite corners of the transmission component (55); A driving member connected to the adjusting assembly, used to drive the adjusting assembly and the first template (1) to slide relative to each other; The transmission assembly (55) comprises four connecting rods, the four connecting rods forming a quadrilateral, and the connection between two adjacent connecting rods is hinged.

2. The aluminum profile module according to claim 1, characterized in that: The adjustment assembly includes a slide rod (51), an adjustment block (52) and a support block (53). The first template (1) is provided with a cavity (11) and a conversion fastener. The slide rod (51) is provided in the first template (1). The first template (1) is provided with a first slide groove (12) for the slide rod (51) to slide. The slide rod (51) and the first template (1) are slidably connected along a sliding direction perpendicular to the sliding direction of the first connecting member. The adjustment block (52) includes a body (521) and a buckle portion (522). The body (521) is provided on the slide rod (51). The slide rod (51) is provided with a second slide groove (511) for the body (521) to slide. The sliding direction of the body (521) and the slide rod (51) is parallel to the sliding direction of the slide rod. (51) and the sliding direction of the first template (1); the snap-fit ​​portion (522) is fixed on the body (521) and is used for movably snapping with the conversion fastener to limit the adjustment block (52) from sliding along the slide bar (51) toward the direction close to the first connecting member; the support block (53) is fixed on the slide bar (51); the driving member is a connecting rod (56), the connecting rod (56) is fixedly connected to the slide bar (51), and the end of the connecting rod (56) away from the slide bar (51) passes through the first template (1) along the direction perpendicular to the connecting rod (56) and extends to the outside of the first template (1), and the first template (1) is provided with a slideway (13) along the sliding direction of the slide bar (51) for the connecting rod (56) to drive the slide bar (51) to slide.

3. The aluminum profile module according to claim 2, characterized in that: The connecting rod (56) passes through one end of the first template (1) and is rotatably connected to the limiting rod (561). The rotation axis between the limiting rod (561) and the connecting rod (56) is perpendicular to the connecting rod (56). The first template (1) is provided with two limiting grooves (14) in sequence along the sliding direction of the adjustment component. The limiting grooves (14) are adapted to the limiting rod (561).

4. The aluminum profile module according to claim 2, characterized in that: The first template (1) is provided with a sealing member (57) for sealing the slideway (13) at a position corresponding to the slideway (13); the sealing member (57) is slidably connected to the first template (1), and the sealing member (57) is fixedly connected to the connecting rod (56).

5. An aluminum profile module according to any one of claims 2 to 4, characterized in that: The aluminum profile module also includes: A locking assembly (6): comprising an elastic connector and a snap-fitting member, wherein the elastic connector is arranged in the first connector, and the snap-fitting member is arranged in the second template (2), the elastic connector and the snap-fitting member are elastically snap-fitted, and the matching direction of the elastic connector and the snap-fitting member is perpendicular to the matching direction of the first connector and the second connector; Unlocking component (7): connected to the elastic connecting member, used for extracting the elastic connecting member from the clamping member.

6. The aluminum profile module according to claim 5, characterized in that: The unlocking component (7) comprises: a connecting rope (71), one end of which is connected to the support block (53) and the other end of which is connected to the elastic connecting member; A guide assembly is used to guide the connecting rope (71) so that the adjustment assembly can pull the elastic connecting piece away from the clamping piece.

7. The aluminum profile module according to claim 6, characterized in that: The elastic connecting member comprises: A plug connector is provided in the first connecting member, the plug connector is slidably connected to the clamping member along a sliding direction perpendicular to the sliding direction of the first connecting member; an end of the connecting rope (71) away from the sliding member is connected to the plug connector; The elastic member is arranged in the first connecting member, with one end fixedly connected to the first connecting member and the other end connected to the plug-in member.

8. The aluminum profile module according to claim 7, characterized in that: The guide assembly comprises: A steering wheel (73) is rotatably connected to the first template (1) in a direction perpendicular to the plane where the first template (1) is located; The guide member is provided in the first connecting member, and the end of the connecting rope (71) away from the supporting member passes around the steering wheel (73) and then extends along the guide member toward the connector and is connected to the connector.