Automatic cutting mechanism for glass frame raw materials

By designing an automatic glass frame material cutting mechanism, the automatic conveying and laser cutting of glass profiles were integrated, solving the problems of low efficiency and inconsistent quality in the windshield cutting process and ensuring the consistency of cutting quality.

CN223629702UActive Publication Date: 2025-12-05HENAN HUANYU GLASS TECH CO LTD
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Patent Information

Application Number
CN202423232497.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-12-05
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In the existing technology, the cutting process of windshields requires the coordinated operation of multiple devices, resulting in low work efficiency and inconsistent cutting quality, making it difficult to meet high-quality requirements.

Method used

An automatic glass frame material cutting mechanism was designed. Through the connection of the first frame and the second frame, the automatic conveying of glass profiles and the three-axis control of the laser cutting head are realized, achieving integrated feeding and cutting and ensuring consistent cutting quality.

Benefits of technology

This achieved consistent cutting quality for the windshield frame, improved cutting efficiency, and met high-quality requirements.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223629702U_ABST
    Figure CN223629702U_ABST
Patent Text Reader

Abstract

The utility model relates to an automatic cutting mechanism for glass frame raw materials, which belongs to the field of glass production equipment, a first frame body of the automatic cutting mechanism for the glass frame raw materials is connected with a second frame body, glass profiles are automatically conveyed into the second frame body through the first frame body to be cut, the first frame body is used for feeding, and the second frame body is used for cutting. The laser cutting head conducts cutting on the needed shape through three-axis control, feeding and cutting are integrally conducted, the consistency of products is guaranteed, and therefore the cutting quality of the front windshield window frame is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of glass production equipment, specifically, the utility model relates to a glass frame raw material automatic cutting mechanism. BACKGROUND

[0002] The front windshield glass is one kind of automobile glass, and meets the safety requirements of automobiles, so the quality requirements of the front windshield glass are higher than general glass, at present, the front windshield glass of the automobile mainly uses the laminated tempered glass and the laminated area tempered glass, and can bear strong impact force, in order to adapt to the use of different specifications of automobiles, the front windshield glass needs to be cut, and in the prior art, the cutting machine is used for cutting the front windshield glass, the glass is transferred to the cutting machine position for cutting by using the belt conveyor, the above-mentioned operation steps are operated by using different equipment, and the operation cannot be integrated, so the operation efficiency is low, due to the difference in processing, the inconsistency of the front windshield window frame is caused, and the cutting quality of the front windshield window frame is affected. CONTENT

[0003] In order to overcome the problems in the background art, the utility model discloses a glass frame raw material automatic cutting mechanism, the first frame body and the second frame body of the glass frame raw material automatic cutting mechanism are connected, the glass profile is automatically conveyed to the inside of the second frame body for cutting through the first frame body, the first frame body feeds, and the second frame body cuts, the laser cutting head cuts the required shape through three-axis control, feeding and cutting are integrated, the consistency of the product is ensured, and therefore the cutting quality of the front windshield window frame is ensured.

[0004] In order to achieve the above-mentioned purpose, the utility model is realized through the following technical schemes:

[0005] The glass frame raw material automatic cutting mechanism, characterized by comprising a first frame body, a second frame body, the first frame body is connected with the second frame body, a first pressing rod, a second pressing rod, a third pressing rod, a fourth pressing rod and a fifth pressing rod are arranged in the first frame body, a second cylinder, a third cylinder, a fourth cylinder, a fifth cylinder, a sixth cylinder and a seventh cylinder are arranged on the side of the first pressing rod, the second pressing rod, the third pressing rod, the fourth pressing rod and the fifth pressing rod, a sliding groove is arranged in the first frame body, and the sliding groove is located below the first pressing rod, the second pressing rod, the third pressing rod, the fourth pressing rod and the fifth pressing rod; a track is arranged on the top surface of the first frame body, and the top surface of the first frame body on the side of the first pressing rod, the second pressing rod, the third pressing rod, the fourth pressing rod and the fifth pressing rod is provided with a track; a first profile baffle, a second profile baffle and a third profile baffle are arranged in the gap between the track and the pressing rod, and the profile is placed in the first profile baffle, the second profile baffle and the third profile baffle.

[0006] The first frame has a clamping end inside, which is located on the top surface of the sliding groove. The clamping end includes a first guide post, a second guide post, a first sliding bearing, a second sliding bearing, a connecting plate, a first cylinder, a first clamping block, a second clamping block, and a timing belt. The first and second guide posts are located directly above the sliding groove. The first and second sliding bearings are disposed through the outside of the first and second guide posts. The connecting plate is located on the top surface of the first and second sliding bearings. The first cylinder is located on the top surface of the connecting plate. The first and second clamping blocks are located on the left and right sides of the first cylinder. The first and second sliding bearings move back and forth on the first and second guide posts. The synchronous belt connecting plate is connected to the back; the second frame is equipped with a tray inside, and the left end of the tray is equipped with an eighth cylinder, a ninth cylinder, a chuck sleeve, and a chuck; the chuck is located at the end of the chuck sleeve, and the eighth and ninth cylinders are connected to the chuck sleeve. A support plate is provided on the top surface of the tray, and a third motor, a fourth motor, a fifth motor, a laser cutting head, a sixth motor, a tenth cylinder, and an eleventh cylinder are installed on the top surface of the support plate; the laser cutting head is located on the outside of the support plate, and a cutting fixing frame is provided on the inside of the laser cutting head; the fourth and fifth motors are connected to the laser cutting head, the tenth cylinder is connected to the cutting fixing frame, and the eleventh cylinder and the third motor are connected to the tray.

[0007] As a preferred embodiment, the system includes a support plate and a trough; the support plate is connected to the first frame, and the trough is disposed on the top surface of the support plate.

[0008] Preferably, the slide beam is provided on the top surface of the sliding groove.

[0009] Preferably, the system includes a first reducer, a second reducer, and a third reducer; the first reducer, the second reducer, and the third reducer are disposed beside the sliding groove.

[0010] Preferably, the system includes: a first motor, a first drive shaft, and a second drive shaft; the first reducer, the second reducer, and the third reducer are connected to each other via the first drive shaft and the second drive shaft, and the first motor is connected to the first reducer.

[0011] Preferably, the first cylinder is a double-acting cylinder.

[0012] Preferably, the chuck is a chuck with a tapered outer diameter and a notch, mimicking the cross-section of a profile.

[0013] Preferably, the eighth cylinder is a clamping cylinder.

[0014] The first frame body and the second frame body of the glass frame raw material automatic cutting mechanism are connected, glass profiles are automatically conveyed to the inside of the second frame body for cutting through the first frame body, the first frame body feeds, the second frame body cuts, the laser cutting head cuts the required shape through three-axis control, feeding and cutting are integrated, the consistency of products is ensured, and therefore the cutting quality of the front windshield window frame is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0015] Fig. 1 It is a first frame body structure schematic view of the utility model;

[0016] Fig. 2 It is a first frame body front section structure schematic view;

[0017] Fig. 3 It is a first frame body rear section structure schematic view;

[0018] Fig. 4 It is a second frame body structure schematic view of the utility model;

[0019] Fig. 5 It is a tray top surface equipment installation relationship schematic view;

[0020] Fig. 6 It is a support plate top surface equipment installation relationship schematic view.

[0021] In the drawing, first frame body 1, second frame body 2, track 3, support plate 4, falling groove 5, sliding groove 6, first pressing rod 7, first profile baffle 8, first motor 9, first speed reducer 10, sliding beam 11, first transmission shaft 12, second profile baffle 13, second speed reducer 14, second transmission shaft 15, third profile baffle 16, third speed reducer 17, first guide column 18, second guide column 19, first sliding bearing 20, second sliding bearing 21, connecting plate 22, first air cylinder 23, first clamping block 24, second clamping block 25, synchronous belt 26, second motor 27, second air cylinder 28, second pressing rod 29, third air cylinder 30, third pressing rod 31, fourth air cylinder 32, fourth pressing rod 33, fifth air cylinder 34, sixth air cylinder 35, seventh air cylinder 36, eighth air cylinder 37, ninth air cylinder 38, chuck 40 sleeve 39, chuck 40, tray 41, support plate 42, third motor 43, fourth motor 44, fifth motor 45, laser cutting head 46, cutting fixing frame 47, sixth motor 48, tenth air cylinder 49, eleventh air cylinder 50. DETAILED DESCRIPTION

[0022] In order to make the above-mentioned purpose, technical scheme and beneficial effect clearer and more definite, the utility model is specifically described below in combination with the drawings.

[0023] For example, Figs. 1-4The glass frame raw material automatic cutting mechanism comprises a first frame body 1, a second frame body 2, a track 3, a sliding groove 6, a first pressing rod 7, a second pressing rod 29, a third pressing rod 31, and a fourth pressing rod 33.

[0024] The first frame body 1 is connected with the second frame body 2, the first pressing rod 7, the second pressing rod 29, the third pressing rod 31, and the fourth pressing rod 33 are arranged in the first frame body 1, and the second cylinder 28, the second pressing rod 29, the third cylinder 30, the fourth cylinder 32, the fifth cylinder 34, the sixth cylinder 35, and the seventh cylinder 36 are arranged on the side of the first pressing rod 7, the second pressing rod 29, the third pressing rod 31, and the fourth pressing rod 33.

[0025] The sliding groove 6 is arranged in the first frame body 1, and the sliding groove 6 is located below the first pressing rod 7, the second pressing rod 29, the third pressing rod 31 and the fourth pressing rod 33. The top surface of the first frame body 1 is provided with the track 3. The top surface of the first frame body 1 on the side of the first pressing rod 7, the second pressing rod 29, the third pressing rod 31 and the fourth pressing rod 33 is provided with the track 3. The gap between the track 3 and the pressing rod is arranged with the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16. The inside of the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 is placed with the profile. The profile moves downward along the track 3 by relying on the inclination of the track 3. The first pressing rod 7, the second pressing rod 29, the third pressing rod 31 and the fourth pressing rod 33 cooperate with the track 3 to ensure that the profile is arranged in order on the track 3. The first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 block the profile to avoid the profile from sliding downward, so that the processed profile is processed in order. The top surface of the sliding groove 6 is provided with the sliding beam 11. The side of the sliding groove 6 is provided with the first motor 9, the first speed reducer 10, the first transmission shaft 12, the second speed reducer 14, the second transmission shaft 15 and the third speed reducer 17. The first speed reducer 10, the second speed reducer 14 and the third speed reducer 17 are fixed on the first frame body 1. The first speed reducer 10, the second speed reducer 14 and the third speed reducer 17 are connected by relying on the first transmission shaft 12 and the second transmission shaft 15. The first motor 9 is installed on the first speed reducer 10. The rotation of the first motor 9 drives the rotation of the three speed reducers. The output end of the speed reducer is connected with the sliding beam 11. The sliding beam 11 moves forward and backward in the sliding groove 6. The first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 are connected with the sliding beam 11. The forward and backward movement of the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 is driven by the forward and reverse rotation of the first motor 9, that is, the forward and backward movement of the profile on the track 3. After the profile moves forward on the track 3, the fifth cylinder 34, the sixth cylinder 35 and the seventh cylinder 36 lift the profile upward. The first motor 9 reverses to drive the remaining profile to move backward. The second cylinder 28, the third cylinder 30 and the fourth cylinder 32 push the profile lifted by the fifth cylinder 34, the sixth cylinder 35 and the seventh cylinder 36 forward, so that the profile falls into the falling groove 5. The rotation of the first motor 9 drives the rotation of the first speed reducer 10, the second speed reducer and the third speed reducer 17, so that they move forward and backward in the sliding groove 6 relative to the sliding beam 11. The sliding beam 11 is provided with the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16. The first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 move in the track 3 by relying on the weight. When the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 move downward to the last position, the second cylinder 28, the third cylinder 30, the fourth cylinder 32, the fifth cylinder 34 and the sixth cylinder 35 move upward to push the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 at the innermost side to move upward.Then the first motor 9 drives the first reducer 10, the second reducer, the third reducer 17 and the first profile baffle 8, the second profile baffle 13, the third profile baffle 16 to move back, at the same time, the second cylinder 28, the third cylinder 30, the fourth pressure rod 33, the fifth cylinder 34 and the sixth cylinder 35 push the first profile baffle 8, the second profile baffle 13 and the third profile baffle 16 forward to make them move into the drop chute 5.

[0026] The first steel frame is internally provided with a first guide column 18 and a second guide column 19, the first guide column 18 and the second guide column 19 are provided with a first sliding bearing 20 and a second sliding bearing 21 penetratingly, the first sliding bearing 20 and the second sliding bearing 21 are provided with a connecting plate 22 on the top surface, the connecting plate 22 is provided with a first cylinder 23 on the top surface, the left and right sides of the first cylinder 23 are provided with a first clamping block 24 and a second clamping block 25, the first sliding bearing 20 and the second sliding bearing 21 move forward and backward on the first guide column 18 and the second guide column 19, the connecting plate 22 is connected with a synchronous belt 26, the first cylinder 23 is a double-acting cylinder, which can control the first clamping block 24 and the second clamping block 25 at the same time, the first clamping block 24 and the second clamping block 25 move towards and away from each other at the same time, the second motor 27 drives the synchronous belt 26 to operate, that is, controls the connecting plate 22 and the part fixed on the connecting plate 22 to slide forward and backward; the connecting plate 22 is connected with the synchronous belt 26, the movement of the second motor 27 drives the synchronous belt 26 to operate, the operation of the synchronous belt 26 drives the connecting plate 22, the first cylinder 23, the first clamping block 24 and the second clamping block 25 to move forward and backward under the action of the first sliding bearing 20, the second sliding bearing 21, the first guide column 18 and the second guide column 19, the first cylinder 23 is retracted to make the fallen profile be clamped by the first clamping block 24 and the second clamping block 25, and the forward and backward movement feeds the profile to the second frame body 2.

[0027] The chuck 40 is a profiled section cut outer diameter chuck with taper and cut notch, the eighth cylinder 37 is a clamping cylinder, through the extension and contraction of the eighth cylinder 37, the chuck 40 is driven to move forward and backward with the sleeve 39, the cut notch on the chuck 40 ensures that the chuck 40 can stably clamp the profile when the chuck 40 moves forward and backward with the sleeve 39, the laser cutting head 46 is a laser cutting machine head, through the operation of the fifth motor 45, the laser cutting head 46 is driven to move up and down, the fourth motor 44 drives the laser cutting head 46 and the assembly of the fifth motor 45 to move forward and backward, the tenth cylinder 49 drives the cutting fixed frame 47, the cutting fixed frame 47 is used for fixing the profile clamped at the laser cutting head 46, to ensure that the profile does not move during the processing, through the extension and contraction of the eleventh cylinder 50, the tray 41 is turned over, used for supporting the profile processed, the third motor 43 drives all the above parts to move left and right, so as to ensure that the head cuts and processes different parts of the profile sent out; The profile is sent from the first frame body 1 to the second frame body 2 for cutting, the first frame body 1 and the second frame body 2 are on the same straight line, and the position deviation does not occur, so that the consistency of the profile cutting can be effectively ensured.

[0028] Finally, it should be pointed out that the above preferred embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the present application.

Claims

1. A glass frame raw material automatic cutting mechanism, characterized by, The first frame body and the second frame body are connected; The first frame body is internally provided with a first pressing rod, a second pressing rod, a third pressing rod, a fourth pressing rod and a fifth pressing rod, and the first pressing rod, the second pressing rod, the third pressing rod, the fourth pressing rod and the fifth pressing rod are laterally provided with a second air cylinder, a third air cylinder, a fourth air cylinder, a fifth air cylinder, a sixth air cylinder and a seventh air cylinder; the first frame body is internally provided with a sliding groove, and the sliding groove is located below the first pressing rod, the second pressing rod, the third pressing rod, the fourth pressing rod and the fifth pressing rod; the top surface of the first frame body is provided with a track, and the top surface of the first frame body laterally of the first pressing rod, the second pressing rod, the third pressing rod, the fourth pressing rod and the fifth pressing rod is also provided with a track; the track and the gap of the pressing rod are arranged with a first profile baffle, a second profile baffle and a third profile baffle, and the first profile baffle, the second profile baffle and the third profile baffle are internally placed with a profile. The first frame body is internally provided with a clamping end, and the clamping end is arranged on the top surface of the sliding groove; the clamping end comprises a first guide column, a second guide column, a first sliding bearing, a second sliding bearing, a connecting plate, a first air cylinder, a first clamping block, a second clamping block and a synchronous belt; the first guide column and the second guide column are located directly above the sliding groove, the first sliding bearing and the second sliding bearing are arranged outside the first guide column and the second guide column, the connecting plate is arranged on the top surface of the first sliding bearing and the second sliding bearing, the first air cylinder is arranged on the top surface of the connecting plate, the first clamping block and the second clamping block are arranged on the left and right sides of the first air cylinder, and the first sliding bearing and the second sliding bearing move forward and backward on the first guide column and the second guide column, and the synchronous belt is connected to the back of the connecting plate. The second frame body is internally provided with a tray, and the left end of the tray is provided with an eighth air cylinder, a ninth air cylinder, a chuck sleeve and a chuck; the chuck is arranged at the end of the chuck sleeve, the eighth air cylinder and the ninth air cylinder are connected with the chuck sleeve, the top surface of the tray is provided with a support plate, and the top surface of the support plate is installed with a third motor, a fourth motor, a fifth motor, a laser cutting head, a sixth motor, a tenth air cylinder and an eleventh air cylinder; the laser cutting head is arranged outside the support plate, the laser cutting head is internally provided with a cutting fixing frame, the fourth motor and the fifth motor are connected with the laser cutting head, the tenth air cylinder is connected with the cutting fixing frame, and the eleventh air cylinder and the third motor are connected with the tray.

2. The automatic cutting mechanism of glass frame raw material according to claim 1, characterized in that: It comprises: a support plate and a falling groove; the support plate is connected with the first frame body, and the falling groove is arranged on the top surface of the support plate.

3. The automatic cutting mechanism of a glass frame raw material according to claim 1, characterized in that: It comprises: a sliding beam; the sliding beam is arranged on the top surface of the sliding groove.

4. The automatic cutting mechanism of a glass frame raw material according to claim 1, characterized in that: It comprises: a first speed reducer, a second speed reducer and a third speed reducer; the first speed reducer, the second speed reducer and the third speed reducer are arranged on the side of the sliding groove.

5. The automatic cutting mechanism of a glass frame raw material according to claim 4, characterized in that: It comprises: a first motor, a first transmission shaft and a second transmission shaft; the first speed reducer, the second speed reducer and the third speed reducer are connected through the first transmission shaft and the second transmission shaft, and the first motor is connected with the first speed reducer.

6. The automatic cutting mechanism of a glass frame raw material according to claim 1, characterized in that: The first air cylinder is a double-acting air cylinder.

7. The automatic cutting mechanism of a glass frame raw material according to claim 1, characterized in that: The chuck is a chuck with a profile section, an outer diameter with a taper and a notch.

8. The automatic cutting mechanism of a glass frame raw material according to claim 1, characterized in that: The eighth air cylinder is a clamping air cylinder.