Dome glass curtain wall structure and construction device thereof
The design of the keel mechanism and the connection and adjustment mechanism solves the problem of complicated splicing of dome glass curtain wall structures, realizes the rapid and stable splicing and diversified combination of dome glass curtain walls, and simplifies the construction process.
Patent Information
- Application Number
- CN202511398899.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-28
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2045-09-28
AI Technical Summary
The existing dome glass curtain wall structure is complicated to splice between the curtain walls during construction. It requires personnel to use bolts and other fasteners to tighten them carefully, which is time-consuming and labor-intensive. In addition, the splicing shape is relatively fixed and cannot be changed according to needs.
The design employs a combination of keel mechanism, main curtain wall mechanism and auxiliary curtain wall mechanism, combined with connection mechanism, adjustment mechanism and support mechanism. The curtain wall can be quickly spliced and disassembled by components such as connecting rods, compression springs, adjustment plates and electromagnets. The curved keel and spiral segmented keel provide a stable structural frame.
It enables rapid and stable splicing of dome glass curtain walls, allowing for diverse combinations to meet various needs, simplifying the construction process and improving construction efficiency.
Smart Images

Figure CN120889357B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of dome curtain wall, in particular to a dome glass curtain wall structure and a construction device thereof. BACKGROUND
[0002] At present, large-span glass curtain wall is a light wall with decorative effect commonly used in modern large and high-rise buildings. Its greatest feature is to organically unify architectural aesthetics, building functions, building energy saving and building structure and other factors.
[0003] The existing dome glass curtain wall structure is complicated to splice between the curtain walls when building, and personnel need to use bolts and other fasteners for careful locking, which is time-consuming and laborious, and the shape of splicing is fixed and cannot be changed according to requirements, so it cannot meet the existing requirements. Therefore, we propose a dome glass curtain wall structure and a construction device thereof. SUMMARY
[0004] The purpose of the present application is to provide a dome glass curtain wall structure and a construction device thereof to solve the problems of the dome glass curtain wall structure in the background art, such as the complicated splicing between the curtain walls, the need for personnel to use bolts and other fasteners for careful locking, the time-consuming and laborious, and the fixed shape of splicing that cannot be changed according to requirements.
[0005] To achieve the above purpose, the present application provides the following technical scheme: a dome glass curtain wall structure and a construction device thereof, comprising a keel mechanism, a main curtain wall mechanism and an auxiliary curtain wall mechanism are arranged on the outer surface of the keel mechanism, a connecting mechanism and an adjusting mechanism are arranged on the surface of the main curtain wall mechanism and the auxiliary curtain wall mechanism, and a supporting mechanism is arranged between the keel mechanism, the main curtain wall mechanism and the auxiliary curtain wall mechanism;
[0006] The main curtain wall mechanism comprises a first half hexagonal curtain wall and a second half hexagonal curtain wall, the first half hexagonal curtain wall and the second half hexagonal curtain wall are movably installed on the outer surface of the keel mechanism, and one side of the first half hexagonal curtain wall is mutually attached to one side of the second half hexagonal curtain wall.
[0007] The auxiliary curtain wall mechanism comprises a first pentagonal curtain wall and a second pentagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall are movably installed on the outer surface of the keel mechanism, and one side of the first pentagonal curtain wall is mutually attached to one side of the second pentagonal curtain wall.
[0008] The main curtain wall mechanism and the auxiliary curtain wall mechanism are mutually spliced and combined into a half football shape.
[0009] Preferably, the keel mechanism comprises arc keels, top circular rings and spiral segmented keels, the outer surface of the top circular ring is fixedly provided with eight groups of arc keels, each group of arc keels is composed of a plurality of arc rods, a plurality of spiral segmented keels are arranged between every two groups of arc keels, and both ends of the spiral segmented keel are welded to the surface of the arc keel.
[0010] Preferably, the connecting mechanism comprises connecting convex rods and compression springs, the short side of the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall is provided with a spring groove, the connecting convex rod is slidably arranged in the spring groove, the compression spring is arranged between the connecting convex rod and the spring groove, one end of the compression spring is connected to the inner wall of the spring groove, the other end of the compression spring is connected to the connecting convex rod, the outer surface of the connecting convex rod is provided with a limiting groove, and the position between the two connecting convex rods on the outer surface of the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall is fixedly provided with a strike corner.
[0011] Preferably, the first half-hexagonal curtain wall and the second half-hexagonal curtain wall and the first pentagonal curtain wall and the second pentagonal curtain wall are internally provided with adjusting cavities, and the adjusting mechanism is arranged in the adjusting cavity.
[0012] Preferably, the adjusting mechanism comprises adjusting plates, racks and driving gears, the long side of the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall is provided with an adjusting groove, the adjusting plate is slidably arranged in the adjusting groove, the inner side of the adjusting plate is fixedly provided with a rack, and the two racks arranged in the same first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall are meshingly connected with a driving gear, the bottom of the driving gear is provided with a shaft rod, the shaft rod penetrates through the surface of the main curtain wall mechanism and the auxiliary curtain wall mechanism and extends to the outside of the bottom end of the main curtain wall mechanism and the auxiliary curtain wall mechanism.
[0013] Preferably, the adjusting mechanism further comprises rotating shafts, rotating plates, arc convex blocks and bending springs, the two side surfaces of the adjusting plate are provided with rotating grooves, the rotating grooves are internally provided with arc grooves, the rotating shafts are rotatably arranged at the outside positions of the rotating grooves, the outer surface of the rotating shaft is fixedly provided with a rotating plate, the side of the rotating plate close to the rotating groove is fixedly provided with an arc convex block, the rotating plate is rotatably clamped in the rotating groove, the arc convex block is rotatably clamped in the arc groove, the bending spring is movably arranged between the arc convex block and the arc groove, one end of the bending spring is connected to the inner wall of the arc groove, and the other end of the bending spring is connected to the arc convex block.
[0014] Preferably, the adjusting mechanism further comprises a limiting buckle, a compression spring and an electromagnet, outer surfaces of the rotating plates are each provided with a rotating plate outer groove, the limiting buckle is slidingly installed inside the rotating plate outer groove, the compression spring is movably installed between the limiting buckle and the rotating plate outer groove, and the electromagnet is installed inside the rotating plate near the rotating plate outer groove.
[0015] Preferably, the supporting mechanism comprises a supporting arc frame, a wedge-shaped arc plate and a clamping plate, outer surfaces of the arc-shaped keel and the spiral segmented keel are each movably provided with a plurality of supporting arc frames, the clamping plate is bolted to the bottom end of the supporting arc frame, the arc-shaped keel and the spiral segmented keel movably pass through between the clamping plate and the supporting arc frame, the wedge-shaped arc plate is fixedly installed at the top end of the supporting arc frame, and the bottom end of the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall is provided with a wedge-shaped arc groove, and the wedge-shaped arc plate is slidingly clamped into the interior of the wedge-shaped arc groove.
[0016] Preferably, surfaces of the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall are each provided with a glass connecting groove, and the glass connecting groove is provided with painted glass.
[0017] Preferably, the connecting convex rod is movably clamped into the interior of both sides of the adjusting groove, the limiting buckle that is extruded and ejected from the rotating plate outer groove is slidingly inserted into the interior of the limiting groove, the gap between the outer edge connecting positions of the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall is filled with sealing filler, and the elastic strip is filled at each end connecting position of the outer surfaces between the first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall.
[0018] Compared with the prior art, the present application has the following beneficial effects:
[0019] 1、The first half-hexagonal curtain wall, the second half-hexagonal curtain wall, the first pentagonal curtain wall and the second pentagonal curtain wall are combined with each other through the cooperation of the main curtain wall mechanism and the auxiliary curtain wall mechanism, so that the device forms a semi-spherical dome structure, and the device has a stable form and is convenient to splice in different combination styles, thereby realizing the diversification of splicing results.
[0020] 2, the connecting convex rod is inserted into the inside of the adjusting groove, the impact angle hits the surface of the adjusting plate, so that the adjusting plate moves to the inside of the adjusting groove, then the connecting convex rod enters the inside of the two sides of the adjusting, pushes the rotating plate, and the rotating plate rotates along the rotating shaft as the axis, rotates the rotating plate to the inside of the rotating groove, and then vacates the space of the two sides of the inside of the adjusting groove, the connecting convex rod continues to move to the inside of the adjusting groove, so as to be inserted into the deep position of the two sides of the inside of the adjusting groove; when the connecting convex rod hits the surface of the rotating plate, the limiting buckle is first hit to the surface of the limiting buckle, so that the limiting buckle is retracted to the inside of the outer groove of the rotating plate, when the connecting convex rod is inserted to the deepest position of the inside of the adjusting groove, the limiting buckle is extruded by the elastic force of the spring and is inserted into the inside of the limiting groove, so as to limit the connecting mechanism and the adjusting mechanism, realize the splicing between the main curtain wall mechanism and the auxiliary curtain wall mechanism, and facilitate personnel to combine the main curtain wall mechanism and the auxiliary curtain wall mechanism. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structure schematic view of keel mechanism in the application;
[0022] Figure 2 It is a splicing structure schematic view of main curtain wall mechanism and auxiliary curtain wall mechanism in the application;
[0023] Figure 3 It is a structure schematic view of main curtain wall mechanism and auxiliary curtain wall mechanism in the application;
[0024] Figure 4 It is a sectional view of main curtain wall mechanism and auxiliary curtain wall mechanism in the application;
[0025] Figure 5 It is a sectional view of main curtain wall mechanism and auxiliary curtain wall mechanism in the application;
[0026] Figure 6 It is a sectional view of main curtain wall mechanism and auxiliary curtain wall mechanism in the application; Figure 4 It is an enlarged schematic view of part A in the application;
[0027] Figure 7 It is an enlarged schematic view of part B in the application; Figure 4 It is an enlarged schematic view of part B in the application;
[0028] Figure 8 It is an enlarged schematic view of part C in the application; Figure 7 It is an enlarged schematic view of part C in the application;
[0029] Figure 9 It is an enlarged schematic view of part D in the application. Figure 4 It is an enlarged schematic view of part D in the application.
[0030] In the figure: 1, keel mechanism; 101, arc keel; 102, top ring; 103, spiral segmented keel; 2, main curtain wall mechanism; 201, first half hexagonal curtain wall; 202, second half hexagonal curtain wall; 3, auxiliary curtain wall mechanism; 301, first pentagonal curtain wall; 302, second pentagonal curtain wall; 4, support mechanism; 401, support arc frame; 402, wedge-shaped arc plate; 403, wedge-shaped arc groove; 404, clamping plate; 5, connecting mechanism; 501, spring groove; 502, connecting convex rod; 503, compression spring; 504, limiting groove; 505, knock angle; 6, adjusting mechanism; 601, adjusting groove; 602, adjusting plate; 603, rack; 604, rotating groove; 605, rotating shaft; 606, rotating plate; 607, driving gear; 608, arc convex block; 609, arc concave groove; 610, bending spring; 611, rotating plate outer groove; 612, limiting buckle; 613, extrusion spring; 614, electromagnet; 7, painted glass; 8, glass connecting groove; 9, adjusting cavity; 10, sealing filler; 11, elastic strip; 12, shaft rod. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments.
[0032] Please refer to Figures 1 to 9 An embodiment provided by the present application: a dome glass curtain wall structure and a construction device thereof, comprising a keel mechanism 1, the outer surface of the keel mechanism 1 is provided with a main curtain wall mechanism 2 and an auxiliary curtain wall mechanism 3, the surfaces of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are both provided with a connecting mechanism 5 and an adjusting mechanism 6, and the keel mechanism 1, the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are all provided with a support mechanism 4;
[0033] The main curtain wall mechanism 2 comprises a first half hexagonal curtain wall 201 and a second half hexagonal curtain wall 202, the first half hexagonal curtain wall 201 and the second half hexagonal curtain wall 202 are both movably installed on the outer surface of the keel mechanism 1, and one side of the first half hexagonal curtain wall 201 is mutually attached to one side of the second half hexagonal curtain wall 202;
[0034] The auxiliary curtain wall mechanism 3 comprises a first pentagonal curtain wall 301 and a second pentagonal curtain wall 302, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are both movably installed on the outer surface of the keel mechanism 1, and one side of the first pentagonal curtain wall 301 is mutually attached to one side of the second pentagonal curtain wall 302;
[0035] The main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are mutually spliced and combined into a half football shape.
[0036] Through the cooperation of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3, the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are combined with each other in use, the device forms a semi-spherical dome structure, the device has a stable shape, different combination patterns of the device can be spliced, and the splicing result is diversified.
[0037] The keel mechanism 1 comprises arc keels 101, a top-end circular ring 102 and spiral segmented keels 103. The outer surface of the top-end circular ring 102 is fixedly provided with eight groups of arc keels 101. Each group of arc keels 101 is composed of a plurality of arc-shaped rods. A plurality of spiral segmented keels 103 are arranged between every two groups of arc keels 101. The two ends of the spiral segmented keels 103 are welded to the surfaces of the arc keels 101.
[0038] The connecting mechanism 5 comprises connecting convex rods 502 and compression springs 503. The short sides of the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are provided with spring grooves 501. The connecting convex rods 502 are slidably arranged in the spring grooves 501. The compression springs 503 are arranged between the connecting convex rods 502 and the spring grooves 501. One end of the compression spring 503 is connected to the inner wall of the spring groove 501, and the other end of the compression spring 503 is connected to the connecting convex rod 502. The outer surface of the connecting convex rod 502 is provided with a limiting groove 504. The positions between the two connecting convex rods 502 on the outer surfaces of the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are fixedly provided with impact angles 505.
[0039] The first half hexagonal curtain wall 201 and the second half hexagonal curtain wall 202 and the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are provided with adjusting cavities 9. The adjusting mechanism 6 is arranged in the adjusting cavities 9.
[0040] The adjusting mechanism 6 comprises adjusting plates 602, racks 603 and driving gears 607. The long sides of the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are provided with adjusting grooves 601. The adjusting plates 602 are slidably arranged in the adjusting grooves 601. The inner sides of the adjusting plates 602 are fixedly provided with the racks 603. The driving gears 607 are arranged between the two racks 603 arranged in the same first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302. The bottom of the driving gear 607 is provided with a shaft 12. The shaft 12 penetrates the surfaces of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 and extends to the outside of the bottom ends of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3.
[0041] Through the cooperation of the rack 603 and the driving gear 607, when the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are spliced, the two adjusting grooves 601 may be mutually butted, and at this time, two cases are divided:
[0042] The first case: when the installed main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are not the last one, the adjusting plate 602 is manually pushed inward, and when the adjusting plate 602 moves inward, the rack 603 is synchronously moved, the rack 603 moves to drive the driving gear 607 to rotate, and then drives the rack 603 on the other side to move reversely, so that the first adjusting plate 602 is inserted into the inside of the other adjusting groove 601;
[0043] The second case: when the last main curtain wall mechanism 2 or the auxiliary curtain wall mechanism 3 in the overall bottommost circle of the device is installed, the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 or the second pentagonal curtain wall 302 is inserted into the last vacant position, and the shaft rod 12 at the bottom of the driving gear 607 inside is connected with the servo motor, and the driving gear 607 is driven to rotate through the servo motor, so that the rack 603 on both sides of the driving gear 607 moves, and the adjusting plate 602 is inserted into the inside of the adjusting groove 601.
[0044] The adjusting mechanism 6 further comprises a rotating shaft 605, a rotating plate 606, an arc-shaped protrusion 608 and a curved spring 610, both sides of the adjusting plate 602 are provided with a rotating groove 604, the inside of the rotating groove 604 is provided with an arc-shaped groove 609, the rotating shaft 605 is rotatably installed at the position close to the outside of the adjusting plate 602 in the inside of the rotating groove 604, the rotating plate 606 is fixedly installed on the outer surface of the rotating shaft 605, the arc-shaped protrusion 608 is fixedly installed on the side close to the rotating groove 604 of the rotating plate 606, the rotating plate 606 is rotatably clamped in the inside of the rotating groove 604, the arc-shaped protrusion 608 is rotatably clamped in the inside of the arc-shaped groove 609, the curved spring 610 is movably installed between the arc-shaped protrusion 608 and the inside of the arc-shaped groove 609, one end of the curved spring 610 is connected with the inner wall of the arc-shaped groove 609, and the other end of the curved spring 610 is connected with the arc-shaped protrusion 608.
[0045] By the cooperation of the connecting mechanism 5 and the adjusting mechanism 6, the connecting convex rod 502 is inserted into the inside of the adjusting groove 601, the striker 505 hits the surface of the adjusting plate 602, the adjusting plate 602 moves to the inside of the adjusting groove 601, then the connecting convex rod 502 enters the inside of the adjusting groove 601 on both sides and pushes the rotating plate 606, the rotating plate 606 rotates around the rotating shaft 605 as the axis, so as to rotate the rotating plate 606 to the inside of the rotating groove 604, thereby leaving the space on both sides of the inside of the adjusting groove 601, at this time, the connecting convex rod 502 continues to move to the inside of the adjusting groove 601, thereby being inserted into the deep position on both sides of the inside of the adjusting groove 601.
[0046] The adjusting mechanism 6 further comprises a limiting buckle 612, an extrusion spring 613 and an electromagnet 614, the outer surface of the rotating plate 606 is provided with a rotating plate outer groove 611, the inside of the rotating plate outer groove 611 is slidably provided with the limiting buckle 612, the limiting buckle 612 and the inside of the rotating plate outer groove 611 are movably provided with the extrusion spring 613, the inside of the rotating plate 606 is provided with the electromagnet 614 near the rotating plate outer groove 611, the limiting buckle 612 is attracted by the magnetic force of the electromagnet 614, and the extrusion spring 613 is not affected by the magnetic force of the electromagnet 614.
[0047] When the connecting convex rod 502 hits the surface of the rotating plate 606, the limiting buckle 612 is first hit and retracted to the inside of the rotating plate outer groove 611, when the connecting convex rod 502 is inserted to the deepest position in the inside of the adjusting groove 601, the limiting buckle 612 is popped out by the elastic force of the extrusion spring 613 and inserted into the inside of the limiting groove 504, thereby limiting between the connecting mechanism 5 and the adjusting mechanism 6, realizing the splicing between the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3, and facilitating the personnel to combine the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3; when it is needed to disassemble the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3, the electromagnet 614 is powered on, the coil of the electromagnet 614 is powered on to generate a magnetic field, the limiting buckle 612 is magnetically adsorbed, thereby being pulled by the magnetic field generated by the electromagnet 614 and moving to the inside of the rotating plate outer groove 611, thereby retracting the limiting buckle 612 to the inside of the rotating plate outer groove 611, at this time, the limiting between the limiting buckle 612 and the connecting convex rod 502 is released, the connecting convex rod 502 is pulled out from the inside of the adjusting groove 601, thereby completing the disassembly of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3.
[0048] The support mechanism 4 comprises support arc frames 401, wedge-shaped arc plates 402 and clamping plates 404, the outer surfaces of the arc-shaped keels 101 and the spiral segmented keels 103 are movably provided with a plurality of support arc frames 401, the bottom ends of the support arc frames 401 are provided with clamping plates 404 through bolts, the arc-shaped keels 101 and the spiral segmented keels 103 movably penetrate between the clamping plates 404 and the support arc frames 401, the top ends of the support arc frames 401 are fixedly provided with two wedge-shaped arc plates 402, the bottom ends of the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are provided with wedge-shaped arc grooves 403, and the wedge-shaped arc plates 402 are slidably clamped into the interiors of the wedge-shaped arc grooves 403.
[0049] The surfaces of the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are provided with glass connecting grooves 8, and the interiors of the glass connecting grooves 8 are provided with painted glass 7.
[0050] The connecting convex rods 502 are movably clamped into the interiors of both sides of the adjusting grooves 601, the limiting buckles 612 that are bounced out of the rotating plate outer grooves 611 by the elastic force of the compression springs 613 are slidably inserted into the interiors of the limiting grooves 504, the gaps at the outer edge connecting positions of the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are filled with sealing fillers 10, and the end connecting positions of the outer surfaces between the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 and the second pentagonal curtain wall 302 are filled with elastic strips 11.
[0051] When the dome glass curtain wall structure and the construction device thereof are constructed, the position of the dome is determined, a plurality of arc-shaped rods are spliced into the state of the arc-shaped keels 101, a plurality of arc-shaped keels 101 are repeatedly installed below the top circular ring 102, the intervals between each group of arc-shaped keels 101 are 45°, then the support arc frames 401 are sleeved on the surfaces of different arc-shaped keels 101 according to the positions of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 that need to be built, then the clamping plates 404 are installed at the bottom ends of the support arc frames 401 through bolts, the arc-shaped keels 101 are clamped between the support arc frames 401 and the clamping plates 404, then the arc-shaped rods are continuously spliced, and the process is repeated until the arc-shaped rods are built, at this time, the bottom end of the top circular ring 102 is welded and connected with the uppermost arc-shaped rod of each group of arc-shaped keels 101, so that the basic frame erection is completed.
[0052] Subsequently, according to the shape and position of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 built as needed, the support arc frame 401 is installed on the surface of the different spiral segment keels 103, the clamping plate 404 is connected with the support arc frame 401 through bolts, and the two ends of the spiral segment keel 103 are welded and connected between the two groups of adjacent arc keels 101, so that the spiral segment keel 103 is arranged in a spiral shape upwards. When the spiral segment keel 103 is built, the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 can be installed on the surface of the wedge-shaped arc plate 402, the wedge-shaped arc plate 402 is inserted into the inside of the wedge-shaped arc groove 403, and thus the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 or the second pentagonal curtain wall 302 is slidably spliced along the arc line of the wedge-shaped arc plate 402.
[0053] When the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are spliced, the connecting mechanism 5 is aligned with the adjusting mechanism 6, at this time the connecting convex rod 502 is inserted into the inside of the adjusting groove 601, the impact corner 505 hits the surface of the adjusting plate 602, so that the adjusting plate 602 moves to the inside of the adjusting groove 601, then the connecting convex rod 502 enters the both sides of the inside of the adjusting groove 601 and pushes the rotating plate 606, so that the rotating plate 606 rotates around the rotating shaft 605 as the axis, the rotating plate 606 is rotated to the inside of the rotating groove 604, thereby leaving space on both sides of the inside of the adjusting groove 601, and the connecting convex rod 502 continues to move to the inside of the adjusting groove 601, so as to be inserted into the deep position on both sides of the inside of the adjusting groove 601.
[0054] When the connecting convex rod 502 hits the surface of the rotating plate 606, it first hits the surface of the limiting buckle 612, so that the limiting buckle 612 retracts to the inside of the rotating plate outer groove 611, when the connecting convex rod 502 is inserted to the deepest position in the inside of the adjusting groove 601, the limiting buckle 612 is popped out by the elastic force of the elastic spring 613 and is inserted into the inside of the limiting groove 504, thereby limiting the connecting mechanism 5 and the adjusting mechanism 6, achieving the splicing of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3, and facilitating the combination of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3.
[0055] When the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 need to be removed, the electromagnet 614 is powered on, the coil of the electromagnet 614 is powered on to generate a magnetic field, the limiting buckle 612 is retracted to the inside of the rotating plate outer groove 611, the limiting between the limiting buckle 612 and the connecting convex rod 502 is released, and the connecting convex rod 502 is directly pulled out from the inside of the adjusting groove 601, thereby completing the disassembly of the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3.
[0056] When the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are spliced, the two adjusting grooves 601 may be mutually connected, which is divided into two cases:
[0057] The first case: when the main curtain wall mechanism 2 and the auxiliary curtain wall mechanism 3 are not the last one to be installed, manually push the adjusting plate 602 inward to drive the rack 603 to move synchronously, the movement of the rack 603 drives the driving gear 607 to rotate, and in turn drives the rack 603 on the other side to move reversely, so that the first adjusting plate 602 is inserted into the inside of the adjusting slot 601;
[0058] The second case: when the last main curtain wall mechanism 2 or the auxiliary curtain wall mechanism 3 in the lowest circle of the whole device is installed, insert the first half hexagonal curtain wall 201, the second half hexagonal curtain wall 202, the first pentagonal curtain wall 301 or the second pentagonal curtain wall 302 into the last vacant position, connect the shaft 12 at the bottom of the driving gear 607 inside with the servo motor, and drive the driving gear 607 to rotate through the servo motor, so as to drive the rack 603 on both sides of the driving gear 607 to move, and make the adjusting plate 602 inserted into the inside of the adjusting slot 601.
[0059] It is obvious to those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A dome glass curtain wall structure comprising a keel mechanism (1), characterized in that: The outer surface of the keel mechanism (1) is provided with a main curtain wall mechanism (2) and an auxiliary curtain wall mechanism (3), the surfaces of the main curtain wall mechanism (2) and the auxiliary curtain wall mechanism (3) are provided with connecting mechanisms (5) and adjusting mechanisms (6), and the keel mechanism (1) and the main curtain wall mechanism (2) and the auxiliary curtain wall mechanism (3) are provided with supporting mechanisms (4); The main curtain wall mechanism (2) comprises a first half hexagonal curtain wall (201) and a second half hexagonal curtain wall (202), the first half hexagonal curtain wall (201) and the second half hexagonal curtain wall (202) are movably installed on the outer surface of the keel mechanism (1), and one side of the first half hexagonal curtain wall (201) and one side of the second half hexagonal curtain wall (202) are mutually attached; The auxiliary curtain wall mechanism (3) comprises a first pentagonal curtain wall (301) and a second pentagonal curtain wall (302), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are movably installed on the outer surface of the keel mechanism (1), and one side of the first pentagonal curtain wall (301) and one side of the second pentagonal curtain wall (302) are mutually attached; The main curtain wall mechanism (2) and the auxiliary curtain wall mechanism (3) are mutually spliced and combined into a half football shape; The connecting mechanism (5) comprises a connecting convex rod (502) and a compression spring (503), the short side outer sides of the first half hexagonal curtain wall (201), the second half hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are provided with spring grooves (501), and the connecting convex rod (502) is slidably installed in the inside of the spring groove (501); The adjusting mechanism (6) comprises a rotating shaft (605), a rotating plate (606), an arc-shaped convex block (608) and a bending spring (610), the two side surfaces of the adjusting plate (602) are provided with rotating grooves (604), the inside of the rotating groove (604) is provided with an arc-shaped groove (609), the rotating shaft (605) is rotatably installed at the position close to the outside of the adjusting plate (602) in the inside of the rotating groove (604), the rotating plate (606) is fixedly installed on the outer surface of the rotating shaft (605), the arc-shaped convex block (608) is fixedly installed on the side close to the rotating groove (604) of the rotating plate (606), the rotating plate (606) is rotatably clamped in the inside of the rotating groove (604), the arc-shaped convex block (608) is rotatably clamped in the inside of the arc-shaped groove (609), the bending spring (610) is movably installed between the arc-shaped convex block (608) and the arc-shaped groove (609), one end of the bending spring (610) is connected with the inner wall of the arc-shaped groove (609), and the other end of the bending spring (610) is connected with the arc-shaped convex block (608). The adjusting mechanism (6) further comprises limit buckles (612), extrusion springs (613) and electromagnets (614), the outer surfaces of the rotating plates (606) are each provided with a rotating plate outer groove (611), the interiors of the rotating plate outer grooves (611) are each slidably provided with a limit buckle (612), the limit buckles (612) and the interiors of the rotating plate outer grooves (611) are each movably provided with an extrusion spring (613), and the interiors of the rotating plates (606) are each provided with an electromagnet (614) near the rotating plate outer grooves (611); The connecting convex rods (502) are each movably clamped into the interiors of the two sides of the adjusting grooves (601) and are each slidably inserted into the interiors of the limit grooves (504) by the limit buckles (612) that are extruded and bounced out of the rotating plate outer grooves (611) by the elastic forces of the extrusion springs (613).
2. The dome glass curtain wall structure according to claim 1, characterized in that: The keel mechanism (1) comprises arc keels (101), top end rings (102) and spiral segmented keels (103), the outer surfaces of the top end rings (102) are each fixedly provided with eight arc keels (101), each of the arc keels (101) is composed of a plurality of arc rods, and a plurality of spiral segmented keels (103) are arranged between every two groups of arc keels (101), and the two ends of each of the spiral segmented keels (103) are welded to the surfaces of the arc keels (101).
3. The dome glass curtain wall structure according to claim 1, characterized in that: The connecting convex rods (502) and the interiors of the spring grooves (501) are each provided with a compression spring (503), one end of each of the compression springs (503) is connected to the inner walls of the spring grooves (501), the other ends of the compression springs (503) are connected to the connecting convex rods (502), the outer surfaces of the connecting convex rods (502) are each provided with a limit groove (504), and the positions between the two connecting convex rods (502) of the outer surfaces of the first half hexagonal curtain wall (201), the second half hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are each fixedly provided with an impact corner (505).
4. The dome glass curtain wall structure according to claim 1, characterized in that: The interiors of the first half hexagonal curtain wall (201), the second half hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are each provided with an adjusting cavity (9), and the adjusting mechanism (6) is arranged in the interior of the adjusting cavity (9).
5. The dome glass curtain wall structure according to claim 3, characterized in that: The adjusting mechanism (6) further comprises adjusting plates (602), racks (603) and driving gears (607), the long side outer sides of the first half-hexagonal curtain wall (201), the second half-hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are each provided with an adjusting groove (601), the adjusting groove (601) is internally slidably provided with the adjusting plate (602), the inner side of the adjusting plate (602) is fixedly provided with the rack (603), the two racks (603) located in the same first half-hexagonal curtain wall (201), second half-hexagonal curtain wall (202), first pentagonal curtain wall (301) and second pentagonal curtain wall (302) are each meshingly connected with the driving gear (607), the bottom of the driving gear (607) is provided with a shaft rod (12), the shaft rod (12) penetrates the surfaces of the main curtain wall mechanism (2) and the auxiliary curtain wall mechanism (3) and extends to the outside of the bottom ends of the main curtain wall mechanism (2) and the auxiliary curtain wall mechanism (3).
6. The dome glass curtain wall structure according to claim 2, wherein: The supporting mechanism (4) comprises supporting arc frames (401), wedge-shaped arc plates (402) and clamping plates (404), the outer surfaces of the arc keels (101) and the spiral segmented keels (103) are movably provided with a plurality of supporting arc frames (401), the bottom ends of the supporting arc frames (401) are each provided with the clamping plate (404) through bolts, the arc keels (101) and the spiral segmented keels (103) movably penetrate between the clamping plates (404) and the supporting arc frames (401), the top ends of the supporting arc frames (401) are each fixedly provided with two wedge-shaped arc plates (402), the bottom ends of the first half-hexagonal curtain wall (201), the second half-hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are each provided with a wedge-shaped arc groove (403), and the wedge-shaped arc plates (402) are each slidably clamped into the interiors of the wedge-shaped arc grooves (403).
7. The dome glass curtain wall structure according to claim 5, wherein: The surfaces of the first half-hexagonal curtain wall (201), the second half-hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are each provided with a glass connecting groove (8), and the interiors of the glass connecting grooves (8) are each provided with a stained glass (7).
8. The dome glass curtain wall structure according to claim 5, wherein: The gaps of the outer connecting positions of the first half-hexagonal curtain wall (201), the second half-hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) are each filled with a sealing filler (10), and the outer surface of each end connecting position between the first half-hexagonal curtain wall (201), the second half-hexagonal curtain wall (202), the first pentagonal curtain wall (301) and the second pentagonal curtain wall (302) is filled with an elastic strip (11).
Citation Information
Patent Citations
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