A multi-point cooperative fine-tunable entry and exit device and a method of using the same

By designing a multi-point coordinated fine-tuning entry and exit device, and utilizing a combination of directional and adjusting components, the problems of non-coplanar connection points of curved panels and dimensional deviations of the base keel were solved, enabling precise fine-tuning and stable installation of the panels.

CN117230952BActive Publication Date: 2026-03-27CHINA CONSTR DONGFANG DECORATION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-01
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The connection points of the curved panels are not coplanar, the dimensions of the base keel are greatly deviated, and the panels themselves are heavy, making installation and adjustment difficult.

Method used

Design a multi-point collaborative fine-tunable entry and exit device, including a base keel, a transition steel part, a fine-tuning component and a panel to be adjusted. The panel can be fine-tuned by combining a directional component, a malleable plate group and an adjustment component.

Benefits of technology

It enables precise fine-tuning of the panel, solves the problems of large installation and construction deviations and heavy weight, and ensures the stability and reliability of the device.

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Abstract

The present application relates to the field of building, especially to a kind of multi-point coordination fine adjustment access device, comprising: base keel, adapter steel piece, fine adjustment component and to be adjusted panel;The base keel with the fine adjustment component is connected by the adapter steel piece;The fine adjustment component includes directional component, shapeable plate group and adjusting component, the first directional slide rail is equipped in the upper and lower ends of the directional component, one end of the shapeable plate group is fixedly connected with the directional component, and the other end is slidably arranged in the first directional slide rail;The adjusting component penetrates the directional component and the shapeable plate group, and the adjusting component is displaced to drive the slidably one end of the shapeable plate group to be displaced along the first directional slide rail;The to be adjusted panel is fixedly connected with the slidably one end of the shapeable plate group.The electric welding treatment is used between the end and the second nut of the present application, to avoid the falling of the second nut, to ensure the stability of the multi-point coordination fine adjustment access device.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of building, in particular to a multi-point cooperative fine-tuning access device and a method thereof. BACKGROUND

[0002] With the continuous improvement of building construction level, people's artistic effect of building facade is not limited to the flat and square building body, and the number of facades with streamline complex metal curved surface is increasing.

[0003] The following problems are that the connecting points of the curved surface panel are not coplanar, the size deviation of the base keel is large, and the weight of the panel itself is heavy, causing more and more difficult adjustment problems. The non-coplanar and large installation deviation of the self-weight installation adjustment have become a relatively difficult problem to solve.

[0004] Therefore, it is necessary to design a device for fine-tuning the access of the panel. SUMMARY

[0005] The present application aims to solve the problems in the prior art and provides a multi-point cooperative fine-tuning access device, comprising:

[0006] a base keel, an adapter steel piece, a fine-tuning component, and a panel to be adjusted;

[0007] The base keel and the fine-tuning component are connected through the adapter steel piece;

[0008] The fine-tuning component comprises a directional component, a shapeable plate group, and an adjustment component. The directional component is provided with first directional sliding rails at the upper and lower ends. One end of the shapeable plate group is fixedly connected with the directional component, and the other end is slidably arranged in the first directional sliding rails. The adjustment component penetrates the directional component and the shapeable plate group. The adjustment component drives the slidably arranged end of the shapeable plate group to displace along the first directional sliding rails through displacement.

[0009] The panel to be adjusted is fixedly connected with the slidably arranged end of the shapeable plate group.

[0010] Further, the directional component is a first aluminum component. The two sides of the first aluminum component, which are parallel to each other, are extended and folded outward along a direction perpendicular to themselves to form two first directional sliding rails. The two first directional sliding rails are located in the same vertical plane.

[0011] The directional sliding rail bottom of the lower end surface of the first aluminum component is extended downward to form a hanging rack plate.

[0012] A second directional sliding rail is horizontally arranged in the middle of the back surface of the first aluminum component. The back surface of the first aluminum component is the surface without the first directional sliding rail.

[0013] Further, the shapeable plate set comprises a second aluminum component, a third aluminum component, a fourth aluminum component, a fifth aluminum component and a sixth aluminum component, and the shapeable plate set is connected by a pin shaft, wherein the second aluminum component and the sixth aluminum component are connected by a pin shaft at one end.

[0014] Further, the second aluminum component and the sixth aluminum component are inserted into the first directional slide rail, so that the shapeable plate set is connected with the first aluminum component, and the sixth aluminum component is fixedly connected with the first aluminum component by a mechanical screw.

[0015] Further, the third aluminum component, the fourth aluminum component, the fifth aluminum component and the first aluminum component form a right trapezoid, wherein the fourth aluminum component is parallel to the first aluminum component.

[0016] Further, the fourth aluminum component is provided with a round hole at a central position, and the first aluminum component is provided with an oblong hole at a central position.

[0017] Further, the adjusting component is a special two-stage screw, wherein the end is an M4 screw, and the screw except the end is an M6 screw, the size of the round hole is matched with the M4 screw, and the width of the oblong hole is matched with the M6 screw.

[0018] Further, the M6 screw of the adjusting component is arranged in the oblong hole and a first nut in the second directional slide rail, the upper end face and the lower end face of the first nut are respectively connected with the inner wall of the second directional slide rail, and the first nut can slide in the second directional slide rail.

[0019] The M4 screw of the adjusting component is arranged in the round hole and matched with a second nut outside the round hole, and the second nut is spot-welded with the end of the adjusting component, wherein the adjusting component is perpendicular to the first aluminum component.

[0020] Further, the hanger plate is provided with a first slot at the bottom of one end close to the adapter steel piece, the upper end face of the adapter steel piece is provided with a second slot, and the first slot is matched with the second slot to realize the hanging connection of the first aluminum component and the adapter steel piece.

[0021] The application further provides a use method of the multi-point cooperative fine-tuning in-out device.

[0022] S1: the shapeable plate set is connected by a pin shaft.

[0023] Step S2: slidingly inserting the second aluminum component and the sixth aluminum component in the first directional slide rail of the directional component, and fixing the sixth aluminum component and the first aluminum component by mechanical screwing;

[0024] Step S3: after passing the first nut, the long waist hole and the round hole, respectively, the second nut is screwed, and the second nut and the end of the adjusting component are fixed by spot welding;

[0025] Step S4: bolt connecting the second aluminum component and the to-be-adjusted panel;

[0026] Step S5: inserting and cooperating the first slot opening on the assembled multi-point cooperative fine adjustment in-out device and the second slot opening of the adapter steel piece to realize the hanging connection;

[0027] Step S6: forward or reverse rotation of the adjusting component to control the fourth aluminum component to approach or move away from the first aluminum component, that is, to control the to-be-adjusted panel connected with the second aluminum component to move away from or approach the base keel.

[0028] Further, the step S6 includes,

[0029] Step S61: forward rotation of the adjusting component, the adjusting component generates a pulling force on the fourth aluminum component, the fourth aluminum component approaches the first aluminum component, the included angle between the fourth aluminum component and the aluminum components on both sides becomes larger, so that the adjusting component is displaced in the long waist hole along the track of the second directional slide rail to the direction close to the second aluminum component, that is, the to-be-adjusted panel connected with the second aluminum component is controlled to move away from the base keel.

[0030] Step S62: reverse rotation of the adjusting component, the adjusting component generates a pushing force on the fourth aluminum component, the fourth aluminum component moves away from the first aluminum component, the included angle between the fourth aluminum component and the aluminum components on both sides becomes smaller, so that the adjusting component is displaced in the long waist hole along the track of the second directional slide rail to the direction away from the second aluminum component, that is, the to-be-adjusted panel connected with the second aluminum component is controlled to approach the base keel.

[0031] Compared with the prior art, the beneficial effects of the present application are:

[0032] 1. The fine adjustment component of the multi-point cooperative fine adjustment entry and exit device comprises a directional component, a shapeable plate group and an adjusting component, the fourth aluminum component in the shapeable plate group is made to approach and move away from the directional component through forward or reverse rotation of the adjusting component, so that the second aluminum component connected with the face plate to be adjusted is driven to move away or approach the base keel through mechanical principle, and fine adjustment is realized.

[0033] 2. The multi-point cooperative fine adjustment entry and exit device adopts electric welding treatment between the end and the second nut, the second nut is prevented from falling off, and the stability of the multi-point cooperative fine adjustment entry and exit device is ensured. DETAILED DESCRIPTION

[0034] The accompanying drawings are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification, illustrate embodiments of the application and are used to explain the application, but do not constitute a limitation on the application.

[0035] In the drawings:

[0036] Figure 1 It is a structural schematic view of the multi-point cooperative fine adjustment entry and exit device.

[0037] Figure 2 It is a structural schematic view of the multi-point cooperative fine adjustment entry and exit device.

[0038] Figure 3 It is a connection schematic view of the directional component and the adjusting component of the multi-point cooperative fine adjustment entry and exit device.

[0039] Figure 4 It is a shapeable plate group schematic view of the multi-point cooperative fine adjustment entry and exit device.

[0040] Figure 5 It is an adjusting schematic view of the multi-point cooperative fine adjustment entry and exit device. Figure 1 (b) is a bottom view of (a);

[0041] Figure 6 It is an adjusting schematic view of the multi-point cooperative fine adjustment entry and exit device. Figure 2 (b) is a bottom view of (a);

[0042] Figure 7 It is an adjusting schematic view of the multi-point cooperative fine adjustment entry and exit device. Figure 3 (b) is a bottom view of (a).

[0043] Reference signs

[0044] 1: base keel;

[0045] 2: switching steel piece;

[0046] 3: fine adjustment component;

[0047] 31: directional component; 32: shapeable plate group; 33: adjustment component; 34: first nut; 35: second nut;

[0048] 311: first aluminum component; 312: first directional slide rail; 313: second directional slide rail; 314: hanger plate; 315: long waist hole;

[0049] 321: second aluminum component; 322: third aluminum component; 323: fourth aluminum component; 324: fifth aluminum component; 325: sixth aluminum component; 326: round hole;

[0050] 331: special two-stage screw;

[0051] 3311: M4 screw; 3312: M6 screw;

[0052] 4: panel to be adjusted;

[0053] 5: reference surface. DETAILED DESCRIPTION

[0054] In order to make the purpose, technical solutions and advantages of the present application more clear, the present application is further described in detail below in combination with the drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0055] Embodiment 1

[0056] Please refer to Figures 1-7 The technical solution of the multi-point cooperative fine adjustment entry and exit device provided in the embodiment is as follows:

[0057] Base keel 1, adapter steel piece 2, fine adjustment component 3 and panel to be adjusted 4;

[0058] The base keel 1 and the fine adjustment component 3 are connected through the adapter steel piece 2;

[0059] The fine adjustment component 3 includes a directional component 31, a shapeable plate group 32 and an adjustment component 33. The directional component 31 is provided with first directional slide rails 312 at the upper and lower ends. One end of the shapeable plate group 32 is fixedly connected with the directional component 31, and the other end is slidably arranged in the first directional slide rails 312. The adjustment component 33 penetrates through the directional component 31 and the shapeable plate group 32. The adjustment component 33 drives the slidably arranged end of the shapeable plate group 32 to displace along the first directional slide rails 312 by displacement;

[0060] The panel to be adjusted 4 is fixedly connected with the slidably arranged end of the shapeable plate group 32.

[0061] In specific implementation, the adapter steel piece 2 and the base keel 1 are welded.

[0062] Specifically, the directional component 31 is a first aluminum component 311, both sides of which are parallel to each other, and each side extends outward along a direction perpendicular to itself and is folded to form two first directional slide rails 312, which are located in the same vertical plane.

[0063] The directional slide rail bottom of the lower end surface of the first aluminum component 311 extends downward to form a hanger plate 314.

[0064] The back surface of the first aluminum component 311 is provided with a second directional slide rail 313 in the middle, and the back surface of the first aluminum component 311 is the surface without the first directional slide rail 312.

[0065] In a specific implementation, the second directional slide rail 313 is parallel to the first directional slide rail 312.

[0066] Specifically, the shapeable plate set 32 includes a second aluminum component 321, a third aluminum component 322, a fourth aluminum component 323, a fifth aluminum component 324, and a sixth aluminum component 325, and the shapeable plate set 32 is connected by a pin shaft hinge, wherein the second aluminum component 321 and the sixth aluminum component 325 are connected by a pin shaft hinge at only one end.

[0067] In a specific implementation, the unconnected side of the sixth aluminum component 325 is arranged in alignment with the side of the first aluminum component 311, the sixth aluminum component 325 is placed in the first directional slide rail 312 with a narrow side length design to reduce costs, and the side length of the second aluminum component 321 is greater than 1 / 2 of the side length of the first aluminum component 311 to achieve maximum range adjustment.

[0068] Specifically, the second aluminum component 321 and the sixth aluminum component 325 are inserted into the first directional slide rail 312, so that the shapeable plate set 32 is connected to the first aluminum component 311, and the sixth aluminum component 325 is fixedly connected to the first aluminum component 311 by a mechanical screw.

[0069] In a specific implementation, the mechanical screw can be an ST4.8*15 self-tapping screw.

[0070] Specifically, the third aluminum component 322, the fourth aluminum component 323, the fifth aluminum component 324, and the first aluminum component 311 form a right trapezoid, and the fourth aluminum component 323 is parallel to the first aluminum component 311.

[0071] The fourth aluminum component 323 is provided with a circular hole 326 at the center position, and the first aluminum component 311 is provided with an oblong hole 315 at the center position.

[0072] In a specific implementation, the center line of the circular hole 326 and the center of the oblong hole 315 are located in the same horizontal plane.

[0073] Specifically, the adjusting component 33 is a special two-stage screw 331, in which the end is an M4 screw 3311, and the screw except the end is an M6 screw 3312, the size of the round hole 326 matches the M4 screw 3311, and the width of the long waist hole 315 matches the M6 screw 3312.

[0074] Specifically, the M6 screw 3312 of the adjusting component 33 is arranged in the long waist hole 315 and the first nut 34 in the second directional slide rail 313, the upper end surface and the lower end surface of the first nut 34 are respectively connected with the inner wall of the second directional slide rail 313, and the first nut 34 can slide in the second directional slide rail 313.

[0075] The M4 screw 3311 of the adjusting component 33 is arranged in the round hole 326 and matched with the second nut 35 outside the round hole 326, and the second nut 35 is point-welded with the end of the adjusting component 33, wherein the adjusting component 33 is perpendicular to the first aluminum component 311.

[0076] In the specific implementation, a nut handle is fixedly arranged at the tail of the adjusting component 33, so as to facilitate the rotation of the adjusting component 33.

[0077] In the specific implementation, because the upper end surface and the lower end surface of the first nut 34 are respectively connected with the inner wall of the second directional slide rail 313, when the adjusting component 33 rotates, the upper end surface and the lower end surface of the first nut 34 are subjected to resistance, so that the adjusting component can be screwed in and out.

[0078] In the specific implementation, because the screw except the end is the M6 screw 3312, the transition surface is arranged on the surface where the M6 screw 3312 and the M4 screw 3311 are connected, that is, the part where the end surface of the M6 screw 3312 is connected with but does not coincide with the end surface of the M4 screw 3311, so when the adjusting component 33 is rotated and the adjusting component 33 is pushed out, the transition surface applies an outward pushing force to the fourth aluminum component 323.

[0079] In the specific implementation, the second nut 35 is arranged outside the round hole 326, and the second nut 35 is point-welded with the screw, so when the adjusting component 33 is rotated and retracted, the second nut 35 applies an inward pushing force to the fourth aluminum component 323, that is, the adjusting component 33 applies a pulling force to the fourth aluminum component 323.

[0080] Specifically, the first slot is arranged at the bottom of the end of the hanger plate 314 close to the adapter steel piece 2, and the second slot is arranged at the upper end surface of the adapter steel piece 2, the first slot is matched with the second slot, so as to realize the hanging of the first aluminum component 311 and the adapter steel piece 2.

[0081] Embodiment 2

[0082] As Figures 5-7 The application further provides a method for using the multi-point cooperative fine-tunable in-out device in embodiment 1.

[0083] Step S1: the shapeable plate set 32 is hinged by using a pin shaft;

[0084] Step S2: the second aluminum component 321 and the sixth aluminum component 325 in the hinged shapeable plate set 32 are slid and inserted into the first directional slide rail 312 of the directional component 31, and the sixth aluminum component 325 is fixedly connected with the first aluminum component 311 by using mechanical screws;

[0085] Step S3: the adjusting component 33 is passed through the first nut 34, the long waist hole 315 and the round hole 326, and then the second nut 35 is screwed, and the second nut 35 is fixed at the end of the adjusting component 33 by using spot welding;

[0086] Step S4: the to-be-adjusted panel 4 is bolted with the second aluminum component 321;

[0087] Step S5: the first slotted opening on the assembled multi-point cooperative fine-tunable in-out device is inserted and matched with the second slotted opening of the adapter steel piece 2 to realize the hanging connection;

[0088] Step S6: the adjusting component 33 is rotated forward or reversely to control the fourth aluminum component 323 to move close to or away from the first aluminum component 311, that is, to control the to-be-adjusted panel 4 connected with the second aluminum component 321 to move away from or close to the base keel 1.

[0089] Specifically, step S6 includes,

[0090] Step S61: the adjusting component 33 is rotated forward, the adjusting component 33 generates a pulling force on the fourth aluminum component 323, the fourth aluminum component 323 moves close to the first aluminum component 311, the included angle between the fourth aluminum component 323 and the aluminum components on both sides becomes larger, so that the adjusting component 33 is displaced in the long waist hole 315 along the track of the second directional slide rail 313 to the direction close to the second aluminum component 321, that is, the to-be-adjusted panel 4 connected with the second aluminum component 321 is controlled to move away from the base keel 1.

[0091] Step S62: the adjusting component 33 is reversely rotated, the adjusting component 33 generates a pushing force on the fourth aluminum component 323, the fourth aluminum component 323 moves away from the first aluminum component 311, the included angle between the fourth aluminum component 323 and the aluminum components on both sides becomes smaller, so that the adjusting component 33 is displaced in the long waist hole 315 along the track of the second directional slide rail 313 to the direction away from the second aluminum component 321, that is, the to-be-adjusted panel 4 connected with the second aluminum component 321 is controlled to move close to the base keel 1.

[0092] Finally, it should be noted that the above is only the preferred embodiment of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, it still can be modified to the technical solution recorded in the foregoing embodiments, or equivalent replacement of some technical features. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A multi-point coordinated fine-tunable entry and exit device, characterized in that, include: Basic keel, connecting steel parts, fine-tuning components and panel to be adjusted; The base keel and the fine-tuning component are connected through the adapter steel piece; The fine-tuning component includes an orientation component, a malleable plate assembly, and an adjustment component. The orientation component has first orientation slide rails at both its upper and lower ends. One end of the malleable plate assembly is fixedly connected to the orientation component, and the other end is slidably disposed in the first orientation slide rail. The adjustment component passes through the orientation component and the malleable plate assembly. The adjustment component moves by displacement to drive one slidable end of the malleable plate assembly to move along the first orientation slide rail. The panel to be adjusted is fixedly connected to one slidable end of the malleable plate assembly; The directional component is a first aluminum material assembly. The two parallel sides of the first aluminum material assembly extend outward and fold in a direction perpendicular to itself to form two first directional slide rails. The two first directional slide rails are located on the same vertical plane. The bottom of the directional slide rail on the lower end face of the first aluminum component extends downward to form a hanging plate; A second directional slide rail is horizontally provided in the middle of the back of the first aluminum component, and the back of the first aluminum component is the side without the first directional slide rail.

2. The multi-point coordinated fine-tunable entry and exit device according to claim 1, characterized in that: The malleable panel assembly includes a second aluminum component, a third aluminum component, a fourth aluminum component, a fifth aluminum component, and a sixth aluminum component. The malleable panel assemblies are hinged together by pins, wherein the second aluminum component and the sixth aluminum component are hinged together at only one end by a pin.

3. The multi-point coordinated fine-tunable entry and exit device according to claim 2, characterized in that: The second aluminum component and the sixth aluminum component are inserted into the first directional slide rail, so that the malleable plate group is connected to the first aluminum component, wherein the sixth aluminum component is fixedly connected to the first aluminum component by mechanical screws.

4. The multi-point coordinated fine-tunable entry and exit device according to claim 3, characterized in that: The third aluminum component, the fourth aluminum component, the fifth aluminum component, and the first aluminum component form a trapezoid, wherein the fourth aluminum component is parallel to the first aluminum component; The fourth aluminum component has a circular hole at its center, and the first aluminum component has an elongated hole at its center.

5. The multi-point coordinated fine-tunable entry and exit device according to claim 4, characterized in that: The adjusting component is a specially designed two-stage screw, wherein the end is an M4 screw and the screws other than the end are M6 screws. The size of the round hole matches the M4 screw, and the width of the oblong hole matches the M6 ​​screw.

6. The multi-point coordinated fine-tunable entry and exit device according to claim 5, characterized in that: The M6 ​​screw of the adjusting component passes through the long waist hole and the first nut in the second directional slide rail. The upper end face and lower end face of the first nut are respectively in contact with the inner wall of the second directional slide rail. The first nut can slide in the second directional slide rail. The M4 screw of the adjusting component passes through the circular hole and engages with the second nut outside the circular hole. The second nut is spot-welded to the end of the adjusting component. The adjusting component is perpendicular to the first aluminum material assembly.

7. The multi-point coordinated fine-tunable entry and exit device according to claim 6, characterized in that: The bottom of the bracket plate near the adapter steel part has a first slot, and the upper surface of the adapter steel part has a second slot. The first slot and the second slot cooperate to enable the first aluminum component to be attached to the adapter steel part.

8. A method of using the multi-point coordinated fine-tunable entry and exit device according to claim 7, characterized in that: Step S1: Hinge the malleable sheet assembly using pins; Step S2: Slide the second aluminum component and the sixth aluminum component in the hinged malleable plate assembly into the first directional slide rail of the directional component, and fix the sixth aluminum component to the first aluminum component with mechanical screws; Step S3: After passing the adjusting component through the first nut, the long slot, and the round hole, screw on the second nut and fix the second nut to the end of the adjusting component by spot welding; Step S4: Connect the panel to be adjusted to the second aluminum component with bolts; Step S5: Connect the first slot on the assembled multi-point coordinated fine-tunable entry and exit device with the second slot on the adapter steel part to achieve the hanging connection; Step S6: Rotate the adjustment component in the forward or reverse direction to control the fourth aluminum component to move closer to or away from the first aluminum component, that is, to control the panel to be adjusted connected to the second aluminum component to move away from or closer to the base keel.

9. The method of using the multi-point coordinated fine-tunable entry and exit device according to claim 8, characterized in that: Step S6 includes, Step S61: Rotate the adjusting component in the forward direction. The adjusting component exerts a pulling force on the fourth aluminum component. The fourth aluminum component moves closer to the first aluminum component. The angle between the fourth aluminum component and the aluminum components on both sides increases, causing the adjusting component to move along the track of the second directional slide rail in the long waist hole towards the second aluminum component. That is, the panel to be adjusted connected to the second aluminum component is controlled to move away from the base keel. Step S62: Rotate the adjusting component in the opposite direction. The adjusting component generates a thrust on the fourth aluminum component. The fourth aluminum component moves away from the first aluminum component. The angle between the fourth aluminum component and the aluminum components on both sides becomes smaller. This causes the adjusting component to move away from the second aluminum component in the long waist hole along the track of the second directional slide rail. That is, it controls the panel to be adjusted connected to the second aluminum component to move closer to the base keel.

Citation Information

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