Anti-collision protection mechanism for the frame of curtain wall curved glass installation

By designing a frame anti-bump protection mechanism for curtain wall curved glass installation including vehicle body, positioning, adjustment, fixing and protection parts, the problem of poor fixing and protection effects of curved glass in the prior art is solved, and flexible movement and stable fixation of curved glass of different sizes is achieved, which significantly improves transportation safety and use flexibility.

CN116812335BActive Publication Date: 2025-06-24CHINA CONSTR EIGHT ENG DIV CORP LTD
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Patent Information

Application Number
CN202310830733.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-07
Publication Date
2025-06-24
Estimated Expiration
2043-07-07

AI Technical Summary

Technical Problem

In the prior art, the fixing and protective effect of curved glass is poor, and the movement is not flexible, making it difficult to adapt to curved glass of different thicknesses, heights and lengths.

Method used

A frame anti-bump protection mechanism for curtain wall curved glass installation is designed, including the vehicle body part, the positioning part, the longitudinal adjustment part, the transverse adjustment part, the fixed part and the protective part. Through the synergy of these components, the spacing and height of the protective part can be flexibly adjusted, adapted to curved glass of different sizes, and stable fixation and effective protection of curved glass can be achieved through the combination of fixed part and protective part.

Benefits of technology

It realizes flexible movement and stable fixation of curtain wall curved glass, improves transportation safety and use flexibility, adapts to curved glass of different shapes and sizes, and significantly improves the protection effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a protection mechanism for preventing collision of the frame for installing curtain wall curved glass, which includes a vehicle body part (10), a positioning part (20), a longitudinal adjustment part (30), a transverse adjustment part (40), a fixing part (50) and a protection part (60); two groups of positioning parts are arranged at both ends of the vehicle body part, and the two groups of positioning parts are connected in an adjustable manner through the transverse adjustment part; each group of positioning parts includes a fixed positioning unit (201) and a movable positioning unit (202), and the movable positioning unit is installed above the fixed positioning unit in a liftable manner through the longitudinal adjustment part; the fixing part is installed on the vehicle body part in a movable manner, and the protection part is installed on the vehicle body part in a movable manner through the two groups of positioning parts. The curtain wall curved glass (90) is placed on the vehicle body part and is located between the fixing part and the protection part. The present invention can solve the problems of poor fixing effect, poor protection effect and inflexible movement in the prior art.
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Description

Technical Field

[0001] The present invention relates to a curved glass transportation device, and in particular to a border anti-collision protection mechanism for installing curved glass of curtain walls. Background Art

[0002] Most modern high-rise buildings use curved glass curtain walls to decorate the facade. The curved glass of the curtain wall is different from ordinary glass. Its sound insulation effect is much better than that of ordinary glass. Therefore, the curved glass is thicker and heavier. When the construction height of the curved glass curtain wall exceeds 100m, due to the influence of height, when installing the curved glass, wind load and the self-weight of the glass need to be considered. The difficulty of moving and hoisting is great, and the curved glass may be damaged or even accidentally fall during the hoisting process due to shaking.

[0003] The Chinese invention patent with the publication number CN114701859A discloses a transportation device for non-planar glass processing; it includes a loading frame and a curved glass placed in the loading frame; a circumferential clamping mechanism is provided in the loading frame. The circumferential clamping mechanism includes a bearing roller assembly arranged below the curved glass and a set of clamping plate assemblies linked with the bearing roller assembly. The circumferential clamping mechanism also includes a front and rear limiting assembly installed on the bearing roller. Although this transportation device initially solves the problem of transporting curved glass, it is limited to curved glass of the same size. Only the upper pressing roller and the rotating lifting and storage mechanism connected to the upper pressing roller and its storage cavity are used to realize the height adjustment and direction adjustment of the upper pressing roller. The fixing effect and protection effect on the curved glass are both poor, and the movement is not flexible. Therefore, there is a need to provide a border anti-collision protection mechanism for installing curved glass of curtain walls, which can solve the problems of poor fixing effect, poor protection effect and inflexible movement in the prior art. Summary of the Invention

[0004] The purpose of the present invention is to provide a border anti-collision protection mechanism for installing curved glass of curtain walls, which can solve the problems of poor fixing effect, poor protection effect and inflexible movement in the prior art.

[0005] The present invention is implemented as follows:

[0006] A protection mechanism for preventing the edges of a curtain wall curved glass from being knocked, comprising a vehicle body part, a positioning part, a longitudinal adjustment part, a transverse adjustment part, a fixing part and a protection part; two groups of positioning parts are symmetrically arranged at both ends of the vehicle body part along the Y-axis direction, and are adjustably connected by the transverse adjustment part between the two groups of positioning parts; each group of positioning parts includes a fixed positioning unit and a movable positioning unit, the fixed positioning unit is installed on the vehicle body part, and the movable positioning unit is installed above the fixed positioning unit in a liftable manner through the longitudinal adjustment part; the fixing part is installed on the vehicle body part in a movable manner along the Y-axis direction, and the protection part is installed on the vehicle body part in a movable manner along the X-axis direction through the two groups of positioning parts, the curtain wall curved glass is placed on the vehicle body part, and the curtain wall curved glass is located between the fixing part and the protection part.

[0007] The vehicle body part includes a bottom plate, right-angle brackets and rollers, several rollers are respectively installed at intervals at the bottom of the bottom plate, and a pair of right-angle brackets are symmetrically arranged at both ends of the bottom plate along the Y-axis direction; several X-axis guide grooves are formed on the bottom plate along the X-axis direction, and several Y-axis slide rails arranged along the Y-axis direction are respectively arranged on the bottom plate in a slidable manner along the several X-axis guide grooves, the longitudinal adjustment part and a pair of right-angle brackets are installed on the bottom plate in a movable manner along the several Y-axis slide rails; two groups of fixed positioning units are respectively fixedly arranged at the bottoms of a pair of right-angle brackets, and two groups of movable positioning units are respectively arranged on a pair of right-angle brackets in a slidable manner.

[0008] Both the fixed positioning unit and the movable positioning unit include a positioning frame, a positioning block, a positioning rail, a positioning suction cup, a double-headed screw rod and a Y-axis turntable; the positioning frame of the fixed positioning unit is fixedly installed at the bottom of the right-angle bracket, and the positioning frame of the movable positioning unit is installed on the right-angle bracket in a liftable manner; two positioning blocks are respectively located on both sides of the positioning frame, one end of the positioning rail is fixedly installed on one of the positioning blocks, and the other end of the positioning rail penetrates through the positioning frame and the other positioning block along the X-axis direction; a pair of positioning suction cups are respectively installed on the two positioning blocks and are arranged oppositely, so that the pair of positioning suction cups can respectively adsorb and connect to the outer walls on both sides of the protection part; threads with opposite directions are respectively formed at both ends of the double-headed screw rod, the middle part of the double-headed screw rod penetrates through the positioning frame, both ends of the double-headed screw rod are respectively screwed through the two positioning blocks by threads, and Y-axis turntables are coaxially fixed at both ends of the double-headed screw rod respectively;

[0009] The positioning blocks of the fixed positioning unit and the movable positioning unit on the same side of the right-angle bracket are connected by the longitudinal adjustment part, and the lower end of the longitudinal adjustment part penetrates through the positioning block of the fixed positioning unit and is slidably inserted into the Y-axis slide rail; the tops of the two groups of longitudinal adjustment parts on the same side of a pair of right-angle brackets are connected by the transverse adjustment part.

[0010] The longitudinal adjustment part includes a longitudinal rod, a longitudinal carriage, a longitudinal adjustment component, and a longitudinal limit component; the lower end of the longitudinal rod penetrates through the positioning block of the fixed positioning unit and is slidably inserted into the Y-axis slide rail, and the longitudinal adjustment component is arranged on the upper side of the longitudinal rod; the longitudinal carriage is coaxially inserted into the longitudinal rod through the longitudinal adjustment component, the longitudinal carriage is tightly connected to the longitudinal rod through the longitudinal limit component, and the upper end of the longitudinal carriage is fixedly connected to the positioning block of the movable positioning unit.

[0011] The longitudinal adjustment component includes a gear rack, a longitudinal rack, a longitudinal turntable, a longitudinal cone wheel, a driven cone wheel, and a longitudinal gear; the gear rack is in an L-shaped structure, one end of the gear rack is fixedly installed on the outer wall of the longitudinal rod, the driven cone wheel and the longitudinal gear are coaxially fixed and rotatably installed on the gear rack; the longitudinal rack is arranged on the side wall of the longitudinal carriage, the end of the longitudinal gear extends into the longitudinal rod and is in meshing transmission connection with the longitudinal rack; the longitudinal cone wheel is rotatably installed on the gear rack, and the longitudinal cone wheel is in meshing transmission connection with the driven cone wheel, and the axle of the longitudinal cone wheel penetrates through the gear rack and is coaxially fixed to the longitudinal turntable.

[0012] The longitudinal limit component includes a longitudinal limit rod and a longitudinal spring; a plurality of longitudinal limit holes are formed at intervals on the longitudinal carriage, and longitudinal limit holes are formed at the upper end of the longitudinal rod, so that one end of the longitudinal limit rod can vertically penetrate and connect the longitudinal rod and the longitudinal carriage through the longitudinal limit holes; the longitudinal spring is coaxially sleeved on the longitudinal limit rod, one end of the longitudinal spring is fixedly connected to the outer wall of the longitudinal rod, and the other end of the longitudinal spring is fixedly connected to the other end of the longitudinal limit rod.

[0013] The transverse adjustment part includes an X-axis rod, an X-axis carriage, an X-axis adjustment component, and an X-axis limit component; one end of the X-axis rod is arranged at the upper end of the longitudinal carriage of the longitudinal adjustment part on one set of positioning parts, one end of the X-axis carriage is coaxially inserted into the X-axis rod through the X-axis adjustment component, and the other end of the X-axis carriage is arranged at the upper end of the longitudinal carriage of the longitudinal adjustment part on the other set of positioning parts; the X-axis carriage is tightly connected to the X-axis rod through the X-axis limit component.

[0014] The X-axis adjustment component includes a wheel disc rack, an X-axis rack, an X-axis turntable, an X-axis cone wheel, a passive cone wheel, and an X-axis gear; the wheel disc rack is in an L-shaped structure, one end of the wheel disc rack is fixedly installed on the outer wall of the X-axis rod, the passive cone wheel and the X-axis gear are coaxially fixed and rotatably installed on the wheel disc rack; the X-axis rack is arranged on the side wall of the X-axis carriage, the end of the X-axis gear extends into the X-axis rod and is in meshing transmission connection with the X-axis rack; the X-axis cone wheel is rotatably installed on the wheel disc rack, and the X-axis cone wheel is in meshing transmission connection with the passive cone wheel, and the axle of the X-axis cone wheel penetrates through the wheel disc rack and is coaxially fixed to the X-axis turntable.

[0015] The X-axis limit assembly includes an X-axis limit rod and an X-axis spring; several X-axis limit holes are formed at intervals on the X-axis carriage, and an X-axis limit hole is formed at the upper end of the X-axis rod, so that one end of the X-axis limit rod can vertically penetrate through the X-axis limit hole to connect the X-axis rod and the X-axis carriage; the X-axis spring is coaxially sleeved on the X-axis limit rod, one end of the X-axis spring is fixedly connected to the outer wall of the X-axis rod, and the other end of the X-axis spring is fixedly connected to the other end of the X-axis limit rod.

[0016] The fixed part includes a fixed motor, a lead screw, a fixed frame and a fixed block; the fixed motor is installed at the side end of the bottom plate, the lead screw is rotatably installed in the bottom plate, and one end of the lead screw is coaxially fixed to the output shaft of the fixed motor; the bottom of the fixed frame is threadedly connected to the lead screw, and the thread directions at both ends of the lead screw are opposite, so that a pair of fixed frames are arranged to slide relative to each other along the Y-axis direction on the bottom plate; on one surface of the pair of fixed frames arranged opposite to each other, there are fixed blocks, and several card slots are formed on the fixed blocks, so that the end of the curved curtain wall glass can be clamped in one of the card slots, so that both ends of the curved curtain wall glass are pressed and fixed by a pair of fixed frames.

[0017] The protection part includes clamping plates, a belt, a transmission assembly, a handle plate and clamping rods; a pair of clamping plates are arranged in parallel on both sides of the curved curtain wall glass, and the inner walls of the pair of clamping plates are pressed and attached to the surface of the curved curtain wall glass through shock-absorbing blocks; a pair of positioning suction cups of the fixed positioning unit are respectively adsorbed and pressed on the outer walls of the pair of clamping plates, and a pair of positioning suction cups of the movable positioning unit are respectively adsorbed and pressed on the outer walls of the pair of clamping plates; several clamping rods are installed through each clamping plate, and one end of each of the several clamping rods is provided with a transmission assembly, and several groups of transmission assemblies are connected by belt drive, and the handle plate is installed on one of the groups of transmission assemblies; the other end of each group of clamping rods is located between the pair of clamping plates and is pressed on the two surfaces of the curved curtain wall glass through a clamping block;

[0018] The transmission assembly includes a belt pulley and a transmission lead screw; on one surface of the pair of clamping plates away from each other, there are wheel plates, the belt pulley is rotatably installed on the wheel plate, and the belt is in transmission connection with the belt pulley; one end of the transmission lead screw is coaxially fixed to the belt pulley, and the clamping rod is a hollow rod with internal threads, so that the other end of the transmission lead screw is threadedly connected to one end of the clamping rod;

[0019] On the inner wall of one of the clamping plates, several support blocks are arranged at intervals, and the several support blocks are matched and pressed against the concave arc surface of the curved curtain wall glass.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] 1. Since the vehicle body part is provided in the present invention, the vehicle body part can drive the curved curtain wall glass to move flexibly at the construction site through the setting of the rollers, which is convenient for the flexible movement of the curved curtain wall glass and the transportation of the curved curtain wall glass.

[0022] 2. Since the present invention is provided with a positioning part, a longitudinal adjustment part and a transverse adjustment part, the distance between a pair of clamping plates can be adjusted transversely through the transverse adjustment part, and the height of the pair of clamping plates can be adjusted longitudinally through the longitudinal adjustment part, so that the pair of clamping plates can be placed on both sides of the curved surface glass of the curtain wall, and further play a role in protecting and clamping the curved surface glass of the curtain wall, and can adapt to the curved surface glass of the curtain wall with different thicknesses, different heights and different lengths, and has good universality and flexibility in use.

[0023] 3. Since the present invention is provided with a fixing part, a protection part and a support block, the fixing part can clamp and fix the two end parts of the curved surface glass of the curtain wall, and the protection part can be attached to the two surfaces of the curved surface glass of the curtain wall through a pair of clamping plates, restricting the curved surface glass of the curtain wall from four directions, so that it is stably and safely arranged on the vehicle body part, playing a role in reinforcement and anti-collision. At the same time, by pressing the support block and the clamping block on the surface of the curved surface glass of the curtain wall, it can adapt to curved surface structures of different shapes, effectively protect the curved surface glass of the curtain wall, and improve the transportation safety of the curved surface glass of the curtain wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic diagram of the use of the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention (one side view);

[0025] Figure 2 is a schematic diagram of the use of the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention (the other side view);

[0026] Figure 3 is a three-dimensional view of the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention;

[0027] Figure 4 is a schematic structural diagram of the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention (the protection part is not shown);

[0028] Figure 5 is a front view of the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention (the protection part is not shown);

[0029] Figure 6 is a side view of the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention (the protection part is not shown);

[0030] Figure 7 is Figure 6 the sectional view taken along G-G in

[0031] Figure 8 is a schematic structural diagram of the protection part in the anti-collision protection mechanism for the frame of the curved surface glass of the curtain wall of the present invention;

[0032] Figure 9It is a side view of the protection part in the anti-collision protection mechanism for the frame of the curved glass of the curtain wall in the present invention;

[0033] Figure 10 It is Figure 9 the H-H sectional view of;

[0034] Figure 11 It is Figure 9 the I-I sectional view of;

[0035] Figure 12 It is Figure 4 the enlarged schematic view of part A in;

[0036] Figure 13 It is Figure 7 the enlarged schematic view of part B in;

[0037] Figure 14 It is Figure 7 the enlarged schematic view of part C in;

[0038] Figure 15 It is Figure 3 the enlarged schematic view of part C in;

[0039] Figure 16 It is Figure 6 the enlarged schematic view of part E in;

[0040] Figure 17 It is Figure 4 the enlarged schematic view of part F in.

[0041] In the figure, 10 - vehicle body part; 11 - bottom plate; 12 - Y-axis slide rail; 13 - right-angle frame; 14 - roller; 15 - X-axis guide groove; 20 - positioning part; 201 - fixed positioning unit; 202 - movable positioning unit; 21 - positioning frame; 22 - positioning block; 211 - positioning rail; 221 - positioning suction cup; 30 - longitudinal adjustment part; 31 - longitudinal rod; 32 - longitudinal carriage; 33 - longitudinal adjustment component; 34 - longitudinal limit component; 311 - gear frame; 321 - longitudinal rack; 322 - longitudinal limit hole; 331 - longitudinal turntable; 332 - longitudinal cone pulley; 333 - driven cone pulley; 334 - longitudinal gear; 341 - longitudinal limit rod; 342 - longitudinal spring; 40 - transverse adjustment part; 41 - X-axis rod; 42 - X-axis carriage; 43 - X-axis adjustment component; 44 - X-axis limit component; 411 - wheel disc frame; 421 - X-axis rack; 422 - X-axis limit hole; 431 - X-axis turntable; 432 - X-axis cone pulley; 433 - passive cone pulley; 434 - X-axis gear; 441 - X-axis limit rod; 442 - X-axis spring; 50 - fixed part; 51 - fixed motor; 52 - lead screw; 53 - fixed frame; 531 - fixed block; 60 - protection part; 61 - clamping plate; 62 - belt; 63 - transmission component; 64 - handle plate; 65 - clamping rod; 611 - wheel plate; 612 - shock absorber block; 631 - belt pulley; 632 - transmission lead screw; 651 - clamping block; 7 - support block; 81 - double-headed lead screw; 82 - Y-axis turntable; 90 - curtain wall curved glass. Detailed implementation mode

[0042] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0043] Please refer to the attached Figure 1 to the attached Figure 4, A frame anti-collision protection mechanism for installing curtain wall curved glass, including a vehicle body part 10, a positioning part 20, a longitudinal adjustment part 30, a transverse adjustment part 40, a fixing part 50 and a protection part 60; two groups of positioning parts 20 are symmetrically arranged at both ends of the vehicle body part 10 along the Y-axis direction (taking the width direction of the bottom plate 11 of the vehicle body part 10 as the X-axis direction, the length direction of the bottom plate 11 as the Y-axis direction, and the thickness direction of the bottom plate 11 as the longitudinal direction), and the two groups of positioning parts 20 are adjustably connected by the transverse adjustment part 40; each group of positioning parts 20 includes a fixed positioning unit 201 and a movable positioning unit 202, the fixed positioning unit 201 is installed on the vehicle body part 10, and the movable positioning unit 202 is liftably installed above the fixed positioning unit 201 through the longitudinal adjustment part 30; the fixing part 50 is movably installed on the vehicle body part 10 along the Y-axis direction, the protection part 60 is movably installed on the vehicle body part 10 along the X-axis direction through the two groups of positioning parts 20, the curtain wall curved glass 90 is placed on the vehicle body part 10, and the curtain wall curved glass 90 is located between the fixing part 50 and the protection part 60.

[0044] The two groups of positioning parts 20 and the longitudinal adjustment part 30 can be used to adjust the spacing and height of the protection part 60, so that the protection part 60 can fit and tightly press on the two surfaces of the curtain wall curved glass 90. The transverse adjustment part 40 can be used to adjust the position of the positioning part 20, so that the positioning part 20 can be located at the end of the curtain wall curved glass 90, ensuring the circumferential pressing of the protection part 60 on the curtain wall curved glass 90. At the same time, the curtain wall curved glass 90 is further fixed from both ends through the fixing part 20, so that the curtain wall curved glass 90 is stably placed on the vehicle body part 10, and the vehicle body part 10 drives the curtain wall curved glass 90 to move flexibly, ensuring the flexibility, stability and safety of the curtain wall curved glass 90 during transportation and lifting.

[0045] Please refer to Appendix Figure 4 to Appendix Figure 7 , The vehicle body part 10 includes a bottom plate 11, a right-angle frame 13 and rollers 14. A plurality of rollers 14 are respectively installed at intervals at the bottom of the bottom plate 11, and a pair of right-angle frames 13 are symmetrically arranged at both ends of the bottom plate 11 along the Y-axis direction; a plurality of X-axis guide grooves 15 are formed on the bottom plate 11 along the X-axis direction, and a plurality of Y-axis slide rails 12 arranged along the Y-axis direction are respectively slidably arranged on the bottom plate 11 along the plurality of X-axis guide grooves 15. The longitudinal adjustment part 30 and a pair of right-angle frames are movably installed on the bottom plate 11 along the plurality of Y-axis slide rails 12; two groups of fixed positioning units 201 are respectively fixedly arranged at the bottoms of a pair of right-angle frames 13, and two groups of movable positioning units 202 are respectively slidably arranged on a pair of right-angle frames 13.

[0046] The roller 14 can adopt a universal wheel with a self-locking function in the prior art, so as to ensure the moving flexibility of the vehicle body part 10. The size and material of the bottom plate 11 can be made according to the size and weight of the curtain wall curved glass 90 to ensure the safe and stable placement of the curtain wall curved glass 90 on the bottom plate 11. The X-axis guide groove 15 facilitates the movement of the Y-axis slide rail 12 in the X-axis direction, thereby driving the right-angle frame 13, the fixed part 20 and the longitudinal adjustment part 30 to move. The movement stability is high and the movement track is controllable, so that the protection part 60 can adapt to curtain wall curved glasses 90 with different thicknesses.

[0047] Please refer to the attached Figure 12 As shown in the figure, both the fixed positioning unit 201 and the movable positioning unit 202 include a positioning frame 21, a positioning block 22, a positioning rail 211, a positioning suction cup 221, a double-headed screw rod 81 and a Y-axis turntable 82; the positioning frame 21 of the fixed positioning unit 201 is fixedly installed at the bottom of the right-angle frame 13, and a chute (not shown in the figure) is formed on the right-angle frame 13. The positioning frame 21 of the movable positioning unit 202 is vertically and liftably installed on the right-angle frame 13 along the longitudinal direction through a slider and the chute; the two positioning blocks 22 are respectively located on both sides of the positioning frame 21, one end of the positioning rail 211 is fixedly installed on one of the positioning blocks 22, and the other end of the positioning rail 211 penetrates through the positioning frame 21 and the other positioning block 22 in the X-axis direction; a pair of positioning suction cups 221 are respectively installed on the two positioning blocks 22 and are arranged oppositely, so that a pair of positioning suction cups 221 can respectively adsorb and connect to the outer walls on both sides of the protection part 60; threads with opposite directions are respectively formed at both ends of the double-headed screw rod 81. The middle part of the double-headed screw rod 81 penetrates through the positioning frame 21, and both ends of the double-headed screw rod 81 are respectively screwed and penetrate through the two positioning blocks 22 by threads, and Y-axis turntables 82 are coaxially fixed at both ends of the double-headed screw rod 81.

[0048] The rotation of the Y-axis turntable 82 drives the double-headed screw rod 81, and the two positioning blocks 22 move linearly towards or away from each other along the axial direction of the double-headed screw rod 81 by using threads in different directions, so as to drive the protection part 60 to move synchronously through the positioning suction cups 221, so that the protection part 60 can adapt to curtain wall curved glasses 90 with different thicknesses. The two positioning blocks 22 are guided through the positioning rail 211 to ensure the relative linear movement between the two positioning blocks 22.

[0049] Please refer to the attached Figure 1 to the attached Figure 7 As shown in the figure, the positioning blocks 22 of the fixed positioning unit 201 and the positioning blocks 22 of the movable positioning unit 202 on the same side of the right-angle frame 13 are connected by a longitudinal adjustment part 30. The lower end of the longitudinal adjustment part 30 penetrates through the positioning block 22 of the fixed positioning unit 201 and is slidably inserted into the Y-axis slide rail 12; the tops of the two groups of longitudinal adjustment parts 30 on the same side of a pair of right-angle frames 13 are connected by a transverse adjustment part 40.

[0050] The movable positioning unit 202 can adjust the height through the longitudinal adjustment part 30 to adapt to curtain wall curved glass 90 of different heights. The fixed positioning unit 201, the movable positioning unit 202, and the longitudinal adjustment part 30 can slide along the Y-axis slide rail 12 to adjust the distance between the two groups of positioning parts 20 to adapt to curtain wall curved glass 90 of different lengths.

[0051] Please see attached Figure 14 and attached Figure 15 The longitudinal adjustment part 30 includes a longitudinal rod 31, a longitudinal slide 32, a longitudinal adjustment component 33 and a longitudinal limit component 34; the lower end of the longitudinal rod 31 passes through the positioning block 22 of the fixed positioning unit 201 and can be slidably inserted into the Y-axis slide rail 12, and the longitudinal adjustment component 33 is arranged on the upper end side of the longitudinal rod 31; the longitudinal slide 32 is coaxially inserted into the longitudinal rod 31 through the longitudinal adjustment component 33, the longitudinal slide 32 is locked and connected to the longitudinal rod 31 through the longitudinal limit component 34, and the upper end of the longitudinal slide 32 is fixedly connected to the positioning block 22 of the movable positioning unit 202.

[0052] The longitudinal slide 32 slides relative to the longitudinal rod 31 through the longitudinal adjustment component 33 to achieve the height extension and retraction of the longitudinal adjustment part 30, thereby achieving the height adjustment of the active positioning unit 202, so that the positioning suction cup 221 on the active positioning unit 202 is lower than the top of the curtain wall curved glass 90 to adapt to the curtain wall curved glass 90 of different heights, and the protective part 60 provides an effective clamping force for the curtain wall curved glass 90. After being adjusted into place, it is locked by the longitudinal limit component 34 to prevent the longitudinal slide 32 from accidentally sliding relative to the longitudinal rod 31 during use.

[0053] Please see attached Figure 14 and attached Figure 15 The longitudinal adjustment assembly 33 includes a gear frame 311, a longitudinal rack 321, a longitudinal rotating disk 331, a longitudinal bevel wheel 332, a driven bevel wheel 333 and a longitudinal gear 334; the gear frame 311 is an L-shaped structure, one end of the gear frame 311 is fixedly mounted on the outer wall of the longitudinal rod 31, the driven bevel wheel 333 and the longitudinal gear 334 are coaxially fixedly connected and rotatably mounted on the gear frame 311 through a wheel axle; the longitudinal rack 321 is arranged on the side wall of the longitudinal slide 32, and a through groove is formed on the outer wall of the longitudinal rod 31, so that the end of the longitudinal gear 334 extends into the longitudinal rod 31 through the through groove and is meshed and connected to the longitudinal rack 321 for transmission; the longitudinal bevel wheel 332 is rotatably mounted on the gear frame 311 through a wheel axle, and the longitudinal bevel wheel 332 is meshed and connected to the driven bevel wheel 333 for transmission, and the wheel axle of the longitudinal bevel wheel 332 passes through the gear frame 311 and is coaxially fixedly connected to the longitudinal rotating disk 331.

[0054] Manually control the rotation of the longitudinal cone pulley 332 by using the longitudinal turntable 331, and drive the driven cone pulley 333. The driven cone pulley 333 drives the longitudinal gear 334 to rotate. Thus, the longitudinal gear 334 pushes the longitudinal rack 321 through the meshing teeth and drives the longitudinal carriage 32 to slide relative to the longitudinal rod 31. By changing the rotation direction of the longitudinal turntable 331, the extension and retraction of the longitudinal carriage 32 relative to the longitudinal rod 31 can be controlled, realizing the longitudinal adjustment function.

[0055] Please refer to the appendix Figure 15 The longitudinal limiting assembly 34 includes a longitudinal limiting rod 341 and a longitudinal spring 342. A plurality of longitudinal limiting holes 322 are formed at intervals on the longitudinal carriage 32, and longitudinal limiting holes 322 are formed at the upper end of the longitudinal rod 31, so that one end of the longitudinal limiting rod 341 can vertically penetrate through the longitudinal limiting holes 322 to connect the longitudinal rod 31 and the longitudinal carriage 32. The longitudinal spring 342 is coaxially sleeved on the longitudinal limiting rod 341. One end of the longitudinal spring 342 is fixedly connected to the outer wall of the longitudinal rod 31, and the other end of the longitudinal spring 342 is fixedly connected to the other end of the longitudinal limiting rod 341.

[0056] Vertically insert the longitudinal limiting rod 341 into the longitudinal rod 31 and the longitudinal carriage 32 by using the longitudinal limiting holes 322, which can play a role in locking the longitudinal rod 31 and the longitudinal carriage 32. Preferably, the longitudinal limiting holes 322 can be threaded holes, and the longitudinal limiting rod 341 can be a long bolt, so as to ensure the insertion stability of the longitudinal limiting rod 341 in the longitudinal rod 31 and the longitudinal carriage 32 by using thread engagement. At the same time, the elastic deformation of the longitudinal spring 342 is used to assist the insertion and disassembly of the longitudinal limiting rod 341 to prevent the longitudinal limiting rod 341 from separating from the longitudinal rod 31.

[0057] Please refer to the appendix Figure 16 and the appendix Figure 17 The transverse adjustment part 40 includes an X-axis rod 41, an X-axis carriage 42, an X-axis adjustment component 43 and an X-axis limiting component 44. One end of the X-axis rod 41 is arranged at the upper end of the longitudinal carriage 32 of the longitudinal adjustment part 30 located on one group of positioning parts 20. One end of the X-axis carriage 42 is coaxially inserted into the X-axis rod 41 through the X-axis adjustment component 43, and the other end of the X-axis carriage 42 is arranged at the upper end of the longitudinal carriage 32 of the longitudinal adjustment part 30 located on the other group of positioning parts 20. The X-axis carriage 42 is tightly connected to the X-axis rod 41 through the X-axis limiting component 44.

[0058] The X-axis slide 42 slides relative to the X-axis rod 41 through the X-axis adjustment assembly 43 to achieve the length extension of the lateral adjustment part 40, thereby achieving the spacing adjustment of the movable positioning units 202 of the two sets of positioning parts 20, so that the positioning suction cups 211 are located inside the end of the curtain wall curved glass 90 to adapt to the curtain wall curved glass 90 of different lengths. Through the adjustment of the longitudinal adjustment part 30 and the lateral adjustment part 40, it is ensured that the eight positioning suction cups 221 on both sides are located within the range of the plane where the curtain wall curved glass 90 is located, so that the protection part 60 can be effectively pressed on both sides of the curtain wall curved glass 90 to play a reinforcing role. After the adjustment is in place, it is locked by the X-axis limit assembly 44 to prevent the X-axis slide 42 from accidentally sliding relative to the X-axis rod 41 during use.

[0059] Please see attached Figure 16 and attached Figure 17 The X-axis adjustment assembly 43 includes a wheel frame 411, an X-axis rack 421, an X-axis turntable 431, an X-axis cone wheel 432, a passive cone wheel 433 and an X-axis gear 434; the wheel frame 411 is an L-shaped structure, one end of the wheel frame 411 is fixedly mounted on the outer wall of the X-axis rod 41, the passive cone wheel 433 and the X-axis gear 434 are coaxially fixedly connected and rotatably mounted on the wheel frame 411 through the wheel shaft; the X-axis rack 421 is arranged on A through groove is formed on the side wall of the X-axis slide 42 and the outer wall of the X-axis rod 41, so that the end of the X-axis gear 434 extends into the X-axis rod 41 through the through groove and is meshed and connected with the X-axis rack 421 for transmission; the X-axis bevel wheel 432 is rotatably mounted on the wheel disc frame 411 through the wheel axle, and the X-axis bevel wheel 432 is meshed and connected with the passive bevel wheel 433 for transmission, and the wheel axle of the X-axis bevel wheel 432 passes through the wheel disc frame 411 and is coaxially fixed to the X-axis turntable 431.

[0060] The X-axis turntable 431 is used to manually control the rotation of the X-axis bevel wheel 432, and the passive bevel wheel 433 is driven to rotate the X-axis gear 434, so that the X-axis gear 434 is used to push the X-axis rack 421 through the meshing teeth and drive the X-axis slide 42 to slide relative to the X-axis rod 41. The extension and retraction of the X-axis slide 42 relative to the X-axis rod 41 can be controlled by different rotation directions of the X-axis turntable 431 to achieve the lateral adjustment function.

[0061] Please see attached Figure 17 The X-axis limit assembly 44 includes an X-axis limit rod 441 and an X-axis spring 442; a plurality of X-axis limit holes 422 are formed at intervals on the X-axis slide 42, and an X-axis limit hole 422 is formed at the upper end of the X-axis rod 41, so that one end of the X-axis limit rod 441 can vertically penetrate the X-axis rod 41 and the X-axis slide 42 through the X-axis limit hole 422; the X-axis spring 442 is coaxially sleeved on the X-axis limit rod 441, one end of the X-axis spring 442 is fixedly connected to the outer wall of the X-axis rod 41, and the other end of the X-axis spring 442 is fixedly connected to the other end of the X-axis limit rod 441.

[0062] Insert the X-axis limit rod 441 vertically into the X-axis rod 41 and the X-axis carriage 42 through the X-axis limit hole 422, which can play a role in locking the X-axis rod 41 and the X-axis carriage 42. Preferably, the X-axis limit hole 422 can be a threaded hole, and the X-axis limit rod 441 can be a long bolt, so as to ensure the insertion stability of the X-axis limit rod 441 in the X-axis rod 41 and the X-axis carriage 42 by means of thread engagement. At the same time, the elastic deformation of the X-axis spring 442 is used to assist the insertion and removal of the X-axis limit rod 441 to prevent the X-axis limit rod 441 from detaching from the X-axis rod 41.

[0063] Please refer to the appendix Figure 13 As shown, the fixing part 50 includes a fixing motor 51, a lead screw 52, a fixing frame 53 and a fixing block 531; the fixing motor 51 is installed at the side end of the bottom plate 11. A chute is formed along the Y-axis center line on the bottom plate 11. The lead screw 52 is rotatably inserted into the bottom plate 11 through a bearing and is located below the chute. One end of the lead screw 52 is coaxially fixed to the output shaft of the fixing motor 51; the bottom of the fixing frame 53 is inserted into the chute through a slider and is threadedly connected with the lead screw 52. The thread directions at both ends of the lead screw 52 are opposite, so that a pair of fixing frames 53 are arranged to slide relative to each other along the Y-axis direction on the bottom plate 11; on one surface where a pair of fixing frames 53 are oppositely arranged, fixing blocks 531 are provided, and several card slots are formed on the fixing blocks 531, so that the end of the curved curtain wall glass 90 can be clamped in one of the card slots, so that both ends of the curved curtain wall glass 90 are pressed and fixed by a pair of fixing frames 53.

[0064] The fixing motor 51 can be a small motor with forward and reverse rotation functions in the prior art. The output shaft of the fixing motor 51 drives the lead screw 52 to rotate forward or backward, and uses the threads with different directions at both ends to drive a pair of fixing frames 53 to approach or move away from each other along the chute, so as to adapt to curved curtain wall glasses 90 with different lengths, so that a pair of fixing frames 53 respectively press against both ends of the curved curtain wall glass 90. At the same time, the setting of the card slots further ensures the clamping between the end of the curved curtain wall glass 90 and the fixing frame 53.

[0065] Preferably, several card slots can be arranged at intervals on one fixing frame 53 to adapt to different contact positions between the ends of the curved curtain wall glasses 90 with different curvatures and the fixing frame 53. The width of the card slot can be determined according to the thickness of the end of the curved curtain wall glass 90. The height of the fixing frame 53 and the height of the card slot can be determined according to the height of the curved curtain wall glass 90 to ensure the reliable fixation of the curved curtain wall glass 90.

[0066] Please refer to the appendix Figure 8 to the appendix Figure 11, the protection part 60 includes a clamping plate 61, a belt 62, a transmission assembly 63, a handle plate 64 and a clamping rod 65; a pair of clamping plates 61 are arranged in parallel on both sides of the curved curtain wall glass 90, and the inner walls of the pair of clamping plates 61 are pressed and attached to the surface of the curved curtain wall glass 90 through shock-absorbing blocks 612; a pair of positioning suction cups 221 of the fixed positioning unit 201 are respectively adsorbed and pressed on the outer walls of the pair of clamping plates 61, and a pair of positioning suction cups 221 of the movable positioning unit 202 are respectively adsorbed and pressed on the outer walls of the pair of clamping plates 61; several clamping rods 65 are installed through each clamping plate 61, and one ends of the several clamping rods 65 are all provided with a transmission assembly 63, and several groups of transmission assemblies 63 are connected by a belt 62 in transmission, and the handle plate 64 is installed on one group of transmission assemblies 63; the other ends of each group of clamping rods 65 are located between the pair of clamping plates 61 and are pressed on two surfaces of the curved curtain wall glass 90 through clamping blocks 651.

[0067] By driving the transmission assembly 63 to rotate through the handle plate 64, four groups of transmission assemblies 63 can be arranged on the clamping plate 61. The transmission assemblies 63 located on the same clamping plate 61 are driven in a circular motion through the belt 62, so that the four clamping rods 65 extend into the pair of clamping plates 61 and are pressed on the surface of the curved curtain wall glass 90 through the clamping blocks 651, thereby playing a role in multi-point pressing and reinforcement of the curved curtain wall glass 90 and ensuring that the curved positions of different shapes can be effectively fixed. Preferably, the clamping block 651 can be made of materials such as rubber, which has good anti-slip effect and certain deformation ability to ensure the pressing and fixing of the curved curtain wall glass 90.

[0068] Please refer to Appendix Figure 8 to Appendix Figure 11 , the transmission assembly 63 includes a belt pulley 631 and a transmission lead screw 632; a wheel plate 611 is provided on one surface of a pair of clamping plates 61 that are far away from each other, the belt pulley 631 is rotatably installed on the wheel plate 611 through a wheel shaft, and the belt 62 is in transmission connection with the belt pulley 631; one end of the transmission lead screw 632 is coaxially fixed to the belt pulley 631, and the clamping rod 65 is a hollow rod with internal threads, so that the other end of the transmission lead screw 632 is screwed into one end of the clamping rod 65 through threads.

[0069] Preferably, a groove is provided on the belt pulley 631, the belt 62 is embedded in the groove, and the belt 62 is in surface contact with the bottom surface of the groove, and the synchronous transmission of the belt pulley 631 through the belt 62 is realized by using the friction force. The belt pulley 631 drives the transmission lead screw 632 to rotate. The clamping rod 65 can be installed through a sliding groove and a slider of a sleeve on the clamping plate 61, and the clamping rod 65 can only move linearly perpendicular to the clamping plate 61, so as to convert the rotation of the transmission lead screw 632 into the axial movement of the clamping rod 65 through the thread, and push the clamping block 651 on the clamping rod 65 into and press it on the curved curtain wall glass 90.

[0070] The sleeve is used to ensure the axiality of the clamping rod 65. A slider is provided on the inner wall of the sleeve, and a chute is axially provided on the clamping rod 65. Thus, the rotation of the clamping rod 65 is restricted by the limit of the slider and the chute, ensuring that the clamping rod 65 makes a linear motion and presses against the curved surface glass 90 of the curtain wall, ensuring the pressing and fixing effect.

[0071] Please refer to the appendix Figure 1 to the appendix Figure 3 and the appendix Figure 8 to the appendix Figure 10 On the inner wall of one of the clamping plates 61 (i.e., the side facing the other clamping plate 61), several support blocks 7 are provided at intervals, and the several support blocks 7 are matched and pressed against the concave arc surface of the curved surface glass 90 of the curtain wall.

[0072] The support blocks 7 can better fit on the concave arc surface of the curved surface glass 90 of the curtain wall, ensuring the matching pressing against the curved surface, and further improving the clamping and fixing effect on the curved surface glass 90 of the curtain wall.

[0073] Please refer to the appendix Figure 1 to the appendix Figure 17 The usage method and working principle of the present invention are

[0074] Place the curved surface glass 90 of the curtain wall to be installed on the bottom plate 11. The curved surface glass 90 of the curtain wall is located between a pair of fixing frames 53 and a pair of clamping plates 61, and the support blocks 7 are located at the concave surface of the curved surface glass 90 of the curtain wall.

[0075] The fixed motor 51 is powered on and started. According to the length of the curved surface glass 90 of the curtain wall, the output shaft of the fixed motor 51 drives the lead screw 52 to rotate forward or backward. When the lead screw 52 rotates, it drives a pair of fixing frames 53 to move closer or farther away to adapt to the length of the curved surface glass 90 of the curtain wall until the fixed blocks 531 are in close contact with both ends of the curved surface glass 90 of the curtain wall, and both ends of the curved surface glass 90 of the curtain wall are respectively clamped in the card slots of the pair of fixed blocks 531, playing a role in initially fixing the curved surface glass 90 of the curtain wall.

[0076] Manually rotate the longitudinal turntable 331 of the longitudinal adjustment part 30 in the forward or reverse direction. The longitudinal turntable 331 drives the longitudinal cone pulley 332 to rotate. The longitudinal cone pulley 332 meshes with the driven cone pulley 333 for transmission. The longitudinal cone pulley 332 drives the longitudinal gear 334 to rotate through the driven cone pulley 333. The longitudinal gear 334 meshes with the longitudinal rack 321 for transmission. When the longitudinal gear 334 rotates, it drives the longitudinal rack 321 to move upward or downward. The longitudinal rack 321 drives the longitudinal carriage 32 to slide upward or downward relative to the longitudinal rod 31, causing the movable positioning unit 202 to slide upward or downward along the right-angle frame 13. Thus, the height of the positioning suction cup 221 on the movable positioning unit 202 adapts to the height of the curtain wall curved glass 90, ensuring that the positioning suction cup 221 can exert an effective clamping force on the curtain wall curved glass 90 through the clamping plate 61. The longitudinal limit rod 341 is inserted into the coincident longitudinal limit holes 322 on the longitudinal rod 31 and the longitudinal carriage 32, restricting the relative sliding between the longitudinal carriage 32 and the longitudinal rod 31.

[0077] Manually rotate the X-axis turntable 431 of each group of X-axis adjustment components 43 in the forward or reverse direction. The X-axis turntable 431 drives the X-axis cone pulley 432 to rotate synchronously in the forward or reverse direction. The X-axis cone pulley 432 drives the X-axis gear 434 to rotate through the passive cone pulley 433. When the X-axis gear 434 rotates, it drives the X-axis rack 421 to move horizontally. The X-axis rack 421 drives the X-axis carriage 42 to slide relative to the X-axis rod 41. The X-axis carriage 42 slides on the X-axis rod 41, driving the two groups of positioning parts 20 to move closer to or away from each other. A pair of right-angle frames 13 move synchronously along the Y-axis slide rail 12 to adjust the distance between the two groups of positioning parts 20, so that the positioning blocks 22 on the two groups of positioning parts 20 are both on the outer sides of a pair of clamping plates 61 and adsorb and press a pair of clamping plates 61 through the positioning suction cups 221 to adapt to the length of the curtain wall curved glass 90. The X-axis limit rod 441 is inserted into the coincident X-axis limit holes 422 on the X-axis rod 41 and the X-axis carriage 42, restricting the relative sliding between the X-axis carriage 42 and the X-axis rod 41.

[0078] Manually rotate the Y-axis turntable 82. The Y-axis turntable 82 drives the double-headed lead screw 81 to rotate. When the double-headed lead screw 81 rotates, it drives the positioning blocks 22 at both ends of the double-headed lead screw 81 to move closer to each other in the X-axis direction on the positioning frame 21. The positioning blocks 22 push a pair of clamping plates 61 to move closer to each other to adapt to the thickness of the curtain wall curved glass 90 until the support block 7 on one clamping plate 61 is in close contact with the concave surface of the curtain wall curved glass 90.

[0079] Manually rotate the handle plate 64. The handle plate 64 drives the transmission lead screw 632 to rotate synchronously. Through screw transmission, the pressing blocks 651 at the other ends of the clamping rods 65 are pushed in and pressed against the two surfaces of the curtain wall curved glass 90, thereby effectively fixing the curtain wall curved glass 90.

[0080] The vehicle body part 10 can be flexibly moved at the construction site through the rollers 14. By installing the lifting lugs on the vehicle body part 10, the entire mechanism can be hoisted synchronously with the curved curtain wall glass 90, ensuring the stability and safety of the curved curtain wall glass 90 during the lifting process and preventing the curved curtain wall glass 90 from colliding with the building structure and being damaged.

[0081] The above are only the preferred embodiments of the present invention and are not intended to limit the protection scope of the invention. Therefore, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A frame anti-collision protection mechanism for curtain wall curved glass installation, characterized in that: It includes a vehicle body part (10), a positioning part (20), a longitudinal adjustment part (30), a lateral adjustment part (40), a fixing part (50) and a protection part (60); two groups of positioning parts (20) are symmetrically arranged at both ends of the vehicle body part (10) along the Y-axis direction, and the two groups of positioning parts (20) are adjustably connected by the lateral adjustment part (40); each group of positioning parts (20) includes a fixed positioning unit (201) and a movable positioning unit (202), the fixed positioning unit (201) is installed on the vehicle body part (10), and the movable positioning unit (202) is liftably installed above the fixed positioning unit (201) through the longitudinal adjustment part (30); the fixing part (50) is movably installed on the vehicle body part (10) along the Y-axis direction, the protection part (60) is movably installed on the vehicle body part (10) along the X-axis direction through the two groups of positioning parts (20), the curtain wall curved glass (90) is placed on the vehicle body part (10), and the curtain wall curved glass (90) is located between the fixing part (50) and the protection part (60).

2. The edge anti-collision protection mechanism for curtain wall curved glass installation according to claim 1, characterized in that: The vehicle body part (10) described above includes a bottom plate (11), a right-angle frame (13) and rollers (14), and several rollers (14) are respectively installed at intervals at the bottom of the bottom plate (11), and a pair of right-angle frames (13) are symmetrically arranged at both ends of the bottom plate (11) along the Y-axis direction; several X-axis guide grooves (15) are formed on the bottom plate (11) along the X-axis direction, and several Y-axis slide rails (12) arranged along the Y-axis direction are respectively slidably arranged on the bottom plate (11) along the several X-axis guide grooves (15), and the longitudinal adjustment part (30) and a pair of right-angle frames (13) are movably installed on the bottom plate (11) along the several Y-axis slide rails (12); two groups of fixed positioning units (201) are respectively fixedly arranged at the bottoms of a pair of right-angle frames (13), and two groups of movable positioning units (202) are respectively slidably arranged on a pair of right-angle frames (13).

3. The edge anti-collision protection mechanism for curtain wall curved glass installation according to claim 2, characterized in that: The described fixed positioning unit (201) and movable positioning unit (202) both include a positioning frame (21), a positioning block (22), a positioning rail (211), a positioning suction cup (221), a double-headed screw rod (81), and a Y-axis turntable (82); the positioning frame (21) of the fixed positioning unit (201) is fixedly installed at the bottom of the right-angle frame (13), and the positioning frame (21) of the movable positioning unit (202) is installed on the right-angle frame (13) in a liftable manner; two positioning blocks (22) are respectively located on both sides of the positioning frame (21), one end of the positioning rail (211) is fixedly installed on one of the positioning blocks (22), and the other end of the positioning rail (211) penetrates through the positioning frame (21) and the other positioning block (22) along the X-axis direction; a pair of positioning suction cups (221) are respectively installed on the two positioning blocks (22) and are arranged oppositely, so that the pair of positioning suction cups (221) can respectively adsorb and connect to the outer walls on both sides of the protection part (60); the two ends of the double-headed screw rod (81) are respectively formed with threads in opposite directions, the middle of the double-headed screw rod (81) penetrates through the positioning frame (21), the two ends of the double-headed screw rod (81) are respectively screwed through the two positioning blocks (22) by threads, and the two ends of the double-headed screw rod (81) are respectively coaxially fixed to the Y-axis turntable (82); The positioning block (22) of the fixed positioning unit (201) and the positioning block (22) of the movable positioning unit (202) on the same side of the right-angle frame (13) are connected by a longitudinal adjustment part (30). The lower end of the longitudinal adjustment part (30) penetrates through the positioning block (22) of the fixed positioning unit (201) and is slidably inserted into the Y-axis slide rail (12); the tops of the two groups of longitudinal adjustment parts (30) on the same side of a pair of right-angle frames (13) are connected by a transverse adjustment part (40).

4. The border anti-collision protection mechanism for curtain wall curved glass installation according to claim 3, characterized in that: The described longitudinal adjustment part (30) includes a longitudinal rod (31), a longitudinal slide frame (32), a longitudinal adjustment component (33), and a longitudinal limit component (34); the lower end of the longitudinal rod (31) penetrates through the positioning block (22) of the fixed positioning unit (201) and is slidably inserted into the Y-axis slide rail (12), and the longitudinal adjustment component (33) is arranged on the upper side part of the longitudinal rod (31); the longitudinal slide frame (32) is coaxially inserted into the longitudinal rod (31) through the longitudinal adjustment component (33), the longitudinal slide frame (32) is locked and connected to the longitudinal rod (31) through the longitudinal limit component (34), and the upper end of the longitudinal slide frame (32) is fixedly connected to the positioning block (22) of the movable positioning unit (202).

5. The anti-collision protection mechanism for the frame of the curtain wall curved glass installation according to claim 4, characterized in that: The described longitudinal adjustment component (33) includes a gear holder (311), a longitudinal rack (321), a longitudinal turntable (331), a longitudinal cone pulley (332), a driven cone pulley (333), and a longitudinal gear (334); the gear holder (311) is in an L-shaped structure, one end of the gear holder (311) is fixedly installed on the outer wall of the longitudinal rod (31), the driven cone pulley (333) and the longitudinal gear (334) are coaxially fixed and rotatably installed on the gear holder (311); the longitudinal rack (321) is arranged on the side wall of the longitudinal carriage (32), the end of the longitudinal gear (334) extends into the longitudinal rod (31) and is in meshing transmission connection with the longitudinal rack (321); the longitudinal cone pulley (332) is rotatably installed on the gear holder (311), and the longitudinal cone pulley (332) is in meshing transmission connection with the driven cone pulley (333), the axle of the longitudinal cone pulley (332) penetrates through the gear holder (311) and is coaxially fixed with the longitudinal turntable (331).

6. The anti-collision protection mechanism for the frame of the curtain wall curved glass installation according to claim 4, characterized in that: The described longitudinal limit component (34) includes a longitudinal limit rod (341) and a longitudinal spring (342); a number of longitudinal limit holes (322) are formed at intervals on the longitudinal carriage (32), and longitudinal limit holes (322) are formed at the upper end of the longitudinal rod (31), so that one end of the longitudinal limit rod (341) can vertically penetrate and connect the longitudinal rod (31) and the longitudinal carriage (32) through the longitudinal limit holes (322); the longitudinal spring (342) is coaxially sleeved on the longitudinal limit rod (341), one end of the longitudinal spring (342) is fixedly connected to the outer wall of the longitudinal rod (31), and the other end of the longitudinal spring (342) is fixedly connected to the other end of the longitudinal limit rod (341).

7. The anti-collision protection mechanism for the frame of the curtain wall curved glass installation according to claim 3, characterized in that: The described transverse adjustment part (40) includes an X-axis rod (41), an X-axis carriage (42), an X-axis adjustment component (43), and an X-axis limit component (44); one end of the X-axis rod (41) is arranged at the upper end of the longitudinal carriage (32) of the longitudinal adjustment part (30) located on one set of positioning parts (20), one end of the X-axis carriage (42) is coaxially inserted into the X-axis rod (41) through the X-axis adjustment component (43), and the other end of the X-axis carriage (42) is arranged at the upper end of the longitudinal carriage (32) of the longitudinal adjustment part (30) located on the other set of positioning parts (20); the X-axis carriage (42) is locked and connected to the X-axis rod (41) through the X-axis limit component (44).

8. The edge protection mechanism for preventing collision of the curtain wall curved glass installation according to claim 7, characterized in that: The X-axis adjustment assembly (43) comprises a wheel disc frame (411), an X-axis rack (421), an X-axis turntable (431), an X-axis bevel wheel (432), a passive bevel wheel (433) and an X-axis gear (434); the wheel disc frame (411) is an L-shaped structure, one end of the wheel disc frame (411) is fixedly mounted on the outer wall of the X-axis rod (41), and the passive bevel wheel (433) and the X-axis gear (434) are coaxially fixedly connected and rotatably mounted on the upper surface of the wheel disc frame (411). ; The X-axis rack (421) is arranged on the side wall of the X-axis slide (42); the end of the X-axis gear (434) extends into the X-axis rod (41) and is meshed and transmission-connected with the X-axis rack (421); the X-axis cone wheel (432) is rotatably mounted on the wheel disc frame (411), and the X-axis cone wheel (432) is meshed and transmission-connected with the passive cone wheel (433); the wheel axle of the X-axis cone wheel (432) passes through the wheel disc frame (411) and is coaxially fixedly connected with the X-axis turntable (431); The X-axis limiting assembly (44) comprises an X-axis limiting rod (441) and an X-axis spring (442); a plurality of X-axis limiting holes (422) are formed at intervals on the X-axis slide (42); an X-axis limiting hole (422) is formed at the upper end of the X-axis rod (41), so that one end of the X-axis limiting rod (441) can pass through the X-axis limiting hole (422) to vertically penetrate and connect the X-axis rod (41) and the X-axis slide (42); the X-axis spring (442) is coaxially sleeved on the X-axis limiting rod (441); one end of the X-axis spring (442) is fixedly connected to the outer wall of the X-axis rod (41), and the other end of the X-axis spring (442) is fixedly connected to the other end of the X-axis limiting rod (441).

9. The anti-collision protection mechanism for the frame of the curved curtain wall glass installation according to claim 1, characterized in that: The fixing part (50) comprises a fixing motor (51), a screw rod (52), a fixing frame (53) and a fixing block (531); the fixing motor (51) is mounted on the side end of the base plate (11); the screw rod (52) is rotatably embedded in the base plate (11); one end of the screw rod (52) is coaxially fixedly connected to the output shaft of the fixing motor (51); the bottom of the fixing frame (53) is screwed to the screw rod (52); the screw threads at both ends of the screw rod (52) are in opposite directions, so that a pair of fixing frames (53) are relatively slidably arranged on the base plate (11) along the Y-axis direction; a fixing block (531) is provided on one surface of the pair of fixing frames (53) which are arranged opposite to each other, and a plurality of slots are formed on the fixing block (531), so that the end of the curtain wall curved glass (90) can be clamped in one of the slots, so that the two ends of the curtain wall curved glass (90) are pressed and fixed by the pair of fixing frames (53).

10. The anti-collision protection mechanism for the frame of the curved curtain wall glass installation according to claim 1, characterized in that: The described protection part (60) includes a clamping plate (61), a belt (62), a transmission assembly (63), a handle plate (64) and a clamping rod (65); a pair of clamping plates (61) are arranged in parallel on both sides of the curved curtain wall glass (90), and the inner walls of the pair of clamping plates (61) are pressed and attached to the surface of the curved curtain wall glass (90) through shock-absorbing blocks (612); a pair of positioning suction cups (221) of the fixed positioning unit (201) are respectively adsorbed and pressed on the outer walls of the pair of clamping plates (61), and a pair of positioning suction cups (221) of the movable positioning unit (202) are respectively adsorbed and pressed on the outer walls of the pair of clamping plates (61); a number of clamping rods (65) are installed through each clamping plate (61), and one end of each of the number of clamping rods (65) is provided with a transmission assembly (63), and a number of groups of transmission assemblies (63) are connected by a belt (62) for transmission, and the handle plate (64) is installed on one group of transmission assemblies (63); the other end of each group of clamping rods (65) is located between the pair of clamping plates (61) and is pressed against the two surfaces of the curved curtain wall glass (90) through a clamping block (651). The transmission assembly (63) includes a pulley (631) and a transmission lead screw (632); a wheel plate (611) is provided on one surface of each of the pair of clamping plates (61) away from each other, the pulley (631) is rotatably installed on the wheel plate (611), and the belt (62) is in transmission connection with the pulley (631); one end of the transmission lead screw (632) is coaxially fixed to the pulley (631), and the clamping rod (65) is a hollow rod with internal threads, so that the other end of the transmission lead screw (632) is screwed into one end of the clamping rod (65) through threads. A number of support blocks (7) are provided at intervals on the inner wall of one of the clamping plates (61), and the number of support blocks (7) are matched and pressed against the concave arc surface of the curved curtain wall glass (90).

Citation Information

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