Glass feeding lifting appliance

By designing an automated glass loading spreader, using suspension components and flip components, and using pneumatic suction cups to absorb glass, the problems of low efficiency and high damage rate during the glass loading process of new energy vehicles are solved, and efficient and safe glass loading operations are achieved.

CN223073728UActive Publication Date: 2025-07-08DAYUN AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202421680576.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-07-08
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

In the prior art, the loading process of glass in new energy vehicles relies on manual operations, has low efficiency and high glass damage rate.

Method used

Design a glass feeding spreader, adopting suspension components, flip components and integrated frames, using pneumatic suction cups to absorb glass, and adjusting the glass angle through flip components to achieve automatic feeding.

Benefits of technology

提高了玻璃上料的效率,减少了玻璃损伤,降低了劳动强度和危险系数,节省了人力和工时。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass feeding lifting appliance. The glass feeding lifting appliance comprises a hanging assembly, the overturning assembly is integrated on the hanging assembly; the integrated frame is arranged at the lower end of the overturning assembly, the integrated frame is provided with a plurality of suction cups, and the lifting appliance adsorbs glass through the suction cups; the overturning assembly can drive the integrated frame to overturn so as to drive the glass to overturn. According to the glass feeding lifting appliance, a pneumatic suction cup structure is adopted, vacuum adsorption between the suction cup and glass is achieved through a compressed air system during lifting, and therefore it is guaranteed that the glass is grabbed firmly and not prone to being scratched, and the angle between the integrated frame and the glass can be adjusted through the overturning assembly. The tool solves the problems of high labor intensity and large danger coefficient in the manual transfer process, is convenient to operate integrally, and can effectively save manpower and working hours.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass assembly in a new energy vehicle assembly workshop, and particularly relates to a glass loading spreader. Background Art

[0002] With the development of the times, today's new energy vehicle designs are becoming more and more novel, and basically all adopt panoramic sunroof or semi-sunroof top designs; the newly designed top sunroof structure can effectively reduce the vehicle wind resistance and improve the overall vehicle lighting, so the requirements for the strength and assembly of the glass will be more stringent.

[0003] Some vehicle manufacturers use manual handling to load the glass onto the glass gluing / assembly equipment, which has low efficiency and a high glass damage rate.

[0004] Based on the above technical problems, those skilled in the art urgently need to develop a glass loading spreader. Content of the Utility Model

[0005] The purpose of the utility model is to provide a glass loading spreader, which can improve the glass loading efficiency and reduce glass damage.

[0006] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0007] A glass loading spreader of the utility model, which includes:

[0008] A suspension assembly;

[0009] A flipping assembly integrated with the suspension assembly; and

[0010] An integrated frame arranged at the lower end of the flipping assembly, the integrated frame is provided with a plurality of suction cups, and the spreader adsorbs the glass through the plurality of suction cups;

[0011] The flipping assembly can drive the integrated frame to flip, so as to drive the glass to flip.

[0012] Further, the integrated frame includes:

[0013] Two longitudinal beams and two cross beams;

[0014] The cross beam is fixed on the longitudinal beam, and an installation space is reserved between the two cross beams;

[0015] Both ends of the longitudinal beam in the length direction are installed with the suction cups through fixing plates;

[0016] An aluminum alloy base is arranged at the connection between the cross beam and the longitudinal beam.

[0017] Further, the suspension assembly includes:

[0018] Support square tube;

[0019] A lifting lug integrated at the upper end of the support square tube through a first mounting plate; and

[0020] A rotating bracket arranged at the lower part of the support square tube;

[0021] The flipping assembly is assembled below the first mounting plate and located at the front side of the support square tube, and the movable end of the flipping assembly is connected to the integrated frame to drive the integrated frame to flip.

[0022] Further, the flipping assembly includes:

[0023] A cylinder assembly arranged below the first mounting plate;

[0024] A cylinder push rod connected to the cylinder rod of the cylinder assembly, the cylinder push rod is rotatably connected to a first flipping bracket through a pin shaft, a second flipping bracket is fixedly connected to one end of the first flipping bracket away from the cylinder push rod, and a support plate is fixed to the lower end of the second flipping bracket;

[0025] A pin shaft is installed at the middle position of the second flipping bracket.

[0026] Further, the second flipping bracket is located between the two cross beams, and the support plate is located below the two cross beams and is assembled and fixed to the lower surface of the cross beam through bolts.

[0027] Further, armrest brackets are respectively installed on both sides of the support square tube through armrest mounting plates, and the armrest brackets extend forward;

[0028] One end of the armrest bracket away from the support square tube is assembled and fixed with a switch assembly through a second mounting plate, and the switch assembly is respectively a right switch assembly and a left switch assembly;

[0029] Both the right switch assembly and the left switch assembly can control the work of the tooling.

[0030] In the above technical solution, a glass loading sling provided by the present utility model has the following beneficial effects:

[0031] The glass loading sling of the present utility model adopts a pneumatic suction cup structure. During lifting, vacuum adsorption between the suction cup and the glass is realized through a compressed air system, so as to ensure firm grasping of the glass and prevent it from being scratched easily. The angle of the integrated frame and the glass can be adjusted through the flipping assembly. This tooling solves the problems of large labor intensity and high risk coefficient caused by manual transfer process, is convenient to operate as a whole, and can effectively save manpower and working hours. Description of the Drawings

[0032] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required in the embodiments. Obviously, the drawings in the following description are only some embodiments described in the present utility model. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings.

[0033] Figure 1 Structural schematic diagram of the glass loading sling disclosed in the embodiment of the present utility model;

[0034] Figure 2 Structural schematic diagram of the flipping assembly of the glass loading sling disclosed in the embodiment of the present utility model;

[0035] Figure 3 Structural schematic diagram of the glass loading sling in the use state disclosed in the embodiment of the present utility model.

[0036] Explanation of reference numerals:

[0037] Suspension assembly; 200, integrated frame; 300, flipping assembly; 400, glass;

[0038] 1, suction cup; 2, longitudinal beam; 3, aluminum alloy base; 4, rotating bracket; 5, handrail bracket; 6, handrail mounting plate; 7, support square tube; 8, lifting lug; 9, first mounting plate; 10, cylinder assembly; 11, right switch assembly; 12, left switch assembly; 13, second mounting plate; 14, cross beam; 15, fixing plate;

[0039] 301, cylinder push rod; 302, first flipping bracket; 303, second flipping bracket; 304, support plate; 305, pin shaft. Detailed implementation manners

[0040] In order to enable those skilled in the art to better understand the technical solutions of the present utility model, the following will further introduce the present utility model in detail in conjunction with the drawings.

[0041] See Figures 1 to 3 as shown;

[0042] A glass loading sling in this embodiment, the glass loading sling includes:

[0043] Suspension assembly 100;

[0044] Flipping assembly 300 integrated with the suspension assembly 100; and

[0045] Integrated frame 200 provided at the lower end of the flipping assembly 300, and a plurality of suction cups 1 are provided on the integrated frame 200, and the sling adsorbs the glass 400 through the plurality of suction cups 1;

[0046] The flipping component 300 can drive the integrated frame 200 to flip, so as to drive the glass 400 to flip.

[0047] Specifically, this embodiment discloses a glass loading sling, which includes a suspension component 100, a flipping component 300 and an integrated frame 200. Among them, the suspension component 100 serves as the main body of the tooling, used to integrate the flipping component 300 and the lower integrated frame 200. The integrated frame 200 of this embodiment integrates multiple suction cups 1, uses vacuum suction cups to adsorb the glass 400, and can adjust the inclination angle of the integrated frame 200 through the flipping component 300 according to the working requirements.

[0048] Preferably, the integrated frame 200 of this embodiment includes:

[0049] Two longitudinal beams 2 and two cross beams 14;

[0050] The cross beam 14 is fixed on the longitudinal beam 2, and an installation space is reserved between the two cross beams 14;

[0051] Suction cups 1 are installed at both ends of the longitudinal beam 2 in the length direction through fixing plates 15;

[0052] An aluminum alloy base 3 is provided at the connection between the cross beam 14 and the longitudinal beam 2.

[0053] This embodiment further defines the structure of the integrated frame 200, which is composed of two longitudinal beams 2 and two cross beams 14. The cross beam 14 is located on the upper surface of the longitudinal beam 2 and is symmetrically arranged, and an installation space for the movable end of the flipping component 300 is reserved in the middle. At the same time, in order to ensure the structural stability, an aluminum alloy base 3 is provided at the connection between the cross beam 14 and the longitudinal beam 2 to reinforce the installation structural stability of the two.

[0054] Preferably, the suspension component 100 of this embodiment includes:

[0055] A support square tube 7;

[0056] An ear 8 integrated on the upper end of the support square tube 7 through a first mounting plate 9; and

[0057] A rotating bracket 4 provided at the lower part of the support square tube 7;

[0058] The flipping component 300 is assembled below the first mounting plate 9 and located on the front side of the support square tube 7. The movable end of the flipping component 300 is connected to the integrated frame 200 to drive the integrated frame 200 to flip.

[0059] The ear 8 at the upper end of the suspension component 300 of this embodiment can be designed and connected for on-site hoisting to hang the entire tooling. The support square tube 7 is the main structure, and a rotating bracket 4 is provided at its lower end, and the flipping component 300 is integrated on the front side.

[0060] Among them, the flipping assembly 300 of this embodiment includes:

[0061] A cylinder assembly 10 disposed below the first mounting plate 9;

[0062] A cylinder push rod 301 connected to the cylinder rod of the cylinder assembly 10. The cylinder push rod 301 is rotatably connected to a first flipping bracket 302 through a pin shaft 305. One end of the first flipping bracket 302 away from the cylinder push rod 301 is fixedly connected to a second flipping bracket 303. A support plate 304 is fixed to the lower end of the second flipping bracket 303. A pin shaft 305 is installed at the middle position of the second flipping bracket 303.

[0063] More specifically, the second flipping bracket 303 of this embodiment is located between two cross beams 14, and the support plate 304 is located below the two cross beams 14 and is fixedly assembled with the lower surface of the cross beam 14 through bolts.

[0064] The flipping assembly 300 of this embodiment uses the cylinder assembly 10 as a driving component. Its cylinder rod is connected to a cylinder push rod 301, and the first flipping bracket 302 and the second flipping bracket 303 are rotated relative to the suspension assembly 300 by using the pin shaft 305, and the integrated frame 200 at the lower end is driven to flip. And the flipping assembly 300 of this embodiment is fixedly assembled with the lower surfaces of the two cross beams 14 through the support plate 304 at the lower end.

[0065] For the convenience of operation, armrest brackets 5 are respectively installed on both sides of the support square tube 7 of this embodiment through armrest mounting plates 6, and the armrest brackets 5 extend forward;

[0066] One end of the armrest bracket 5 away from the support square tube 7 is fixedly assembled with a switch assembly through a second mounting plate 13. The switch assemblies are a right switch assembly 11 and a left switch assembly 12 respectively; both the right switch assembly 11 and the left switch assembly 12 can control the operation of the tooling.

[0067] In the above technical solution, a glass loading sling provided by the present utility model has the following beneficial effects:

[0068] The glass loading sling of the present utility model adopts a pneumatic suction cup structure. During lifting, vacuum adsorption between the suction cup 1 and the glass 400 is realized through a compressed air system, so as to ensure that the glass 400 is firmly grasped and not easily scratched. The angle of the integrated frame 200 and the glass 400 can be adjusted through the flipping assembly 300. This tooling solves the problems of high labor intensity and high risk coefficient caused by manual transfer. The overall operation is convenient, and manpower and working hours can be effectively saved.

[0069] The above only describes some exemplary embodiments of the present utility model by way of illustration. Without doubt, for those of ordinary skill in the art, various different ways can be used to modify the described embodiments without departing from the spirit and scope of the present utility model. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present utility model.

Claims

1. Glass loading sling, characterized in that, The glass loading spreader includes: A suspension assembly (100); A flipping assembly (300) integrated with the suspension assembly (100); and An integrated frame (200) provided at the lower end of the flipping assembly (300), the integrated frame (200) being provided with a plurality of suction cups (1), and the spreader adsorbs the glass (400) through the plurality of suction cups (1); The flipping assembly (300) can drive the integrated frame (200) to flip, so as to drive the glass (400) to flip.

2. The glass loading sling according to claim 1, characterized in that, The integrated frame (200) includes: Two longitudinal beams (2) and two cross beams (14); The cross beam (14) is fixed to the longitudinal beam (2), and an installation space is reserved between the two cross beams (14); Both ends of the longitudinal beam (2) in the length direction are provided with the suction cups (1) through fixing plates (15); An aluminum alloy base (3) is provided at the connection between the cross beam (14) and the longitudinal beam (2).

3. The glass loading sling according to claim 2, wherein, The suspension assembly (100) includes: A support square tube (7); A lifting lug (8) integrated with the upper end of the support square tube (7) through a first mounting plate (9); and A rotating bracket (4) provided at the lower part of the support square tube (7); The flipping assembly (300) is assembled below the first mounting plate (9) and located on the front side of the support square tube (7), and the movable end of the flipping assembly (300) is connected to the integrated frame (200) to drive the integrated frame (200) to flip.

4. The glass loading sling according to claim 3, wherein, The flipping assembly (300) includes: A cylinder assembly (10) provided below the first mounting plate (9); A cylinder push rod (301) connected to the cylinder rod of the cylinder assembly (10), the cylinder push rod (301) is rotatably connected to a first flipping bracket (302) through a pin shaft (305), a second flipping bracket (303) is fixedly connected to one end of the first flipping bracket (302) away from the cylinder push rod (301), and a support plate (304) is fixed to the lower end of the second flipping bracket (303); A pin shaft (305) is installed at the middle position of the second flipping bracket (303).

5. The glass loading sling according to claim 4, wherein The second flipping bracket (303) is located between the two cross beams (14), and the support plate (304) is located below the two cross beams (14) and is assembled and fixed to the lower surface of the cross beam (14) through bolts.

6. The glass loading sling according to claim 3, characterized in that, Armrest brackets (5) are respectively installed on both sides of the support square tube (7) through armrest mounting plates (6), and the armrest brackets (5) extend forward; A switch assembly is assembled and fixed to one end of the armrest bracket (5) away from the support square tube (7) through a second mounting plate (13), and the switch assembly is respectively a right switch assembly (11) and a left switch assembly (12); Both the right switch assembly (11) and the left switch assembly (12) can control the operation of the tooling.