A perovskite laser device

CN224779610UActive Publication Date: 2026-09-22SHENZHEN MINGCHUANG INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202522287263.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-22
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

在现有技术中,现有的钙钛矿激光设备包括玻璃划线装置,玻璃划线装置设有第一支撑座和第一激光模组;第一激光模组可移动地连接于第一支撑座,第一激光模组的第一激光头用于对玻璃进行划线,但是,只能对玻璃进行初次划线,无法进行阻隔线划线,导致现有的钙钛矿激光设备的功能性较差

Benefits of technology

[0021]本实用新型提供一种钙钛矿激光设备,钙钛矿激光设备包括玻璃划线装置和阻隔线划线装置;玻璃划线装置和阻隔线划线装置沿着玻璃的输送方向依次布置;玻璃划线装置设有第一支撑座、第一移动座和第一激光模组;第一移动座可移动地连接于第一支撑座,并沿着左右方向移动;第一激光模组的第一激光头安装于第一移动座;第一激光模组的第一激光头用于对玻璃进行划线;阻隔线划线装置设有阻隔线划线组件,阻隔线划线组件包括第二支撑座、第二移动座、第三移动座、第二激光头和第二激光发生器;第二移动座可移动地连接于第二支撑座,并沿着前后方向移动;第三移动座可移动地连接于第二移动座,并沿着左右方向移动;第二激光头连接于第三移动座,并处于第二移动座的前侧;第二激光发生器安装于第二移动座的上侧,第二激光发生器连接第二激光头,并与第二激光头处于第二移动座的不同侧壁;第二激光头接收经第二激光发生器输出的激光,并用于对经玻璃划线装置输出的玻璃进行阻隔线划线,以便于玻璃划线装置和阻隔线划线装置分别对玻璃进行初次划线和阻隔线划线,从而便于钙钛矿激光设备集成了初次划线和阻隔线划线效果,避免了只能进行初次划线,提高了钙钛矿激光设备的功能性。

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Abstract

The application provides a perovskite laser device, which comprises a glass scribing device and a barrier line scribing device; the glass scribing device and the barrier line scribing device are arranged in sequence along the conveying direction of the glass; a first laser head of a first laser module is used for scribing the glass; a second laser head is connected to a third moving seat; a second laser generator is installed on the upper side of the second moving seat, the second laser generator is connected to the second laser head, and the second laser head and the second laser generator are located on different side walls of the second moving seat; the second laser head receives laser output by the second laser generator and is used for scribing the barrier line of the glass output by the glass scribing device, so that the glass scribing device and the barrier line scribing device can scribe the glass for the first time and scribe the barrier line, respectively, thereby the perovskite laser device integrates the first scribing and the barrier line scribing effect, avoids the first scribing only, and improves the functionality of the perovskite laser device.
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Description

Technical Field

[0001] This utility model relates to the technical field of perovskite laser equipment, and in particular to a perovskite laser equipment. Background Technology

[0002] With the development of technology, perovskite laser equipment is used to improve the crystal structure of perovskite, enhance its photoelectric properties, and positively impact the energy conversion efficiency during the preparation process. In existing technologies, perovskite laser equipment includes a glass scribing device, which has a first support base and a first laser module. The first laser module is movably connected to the first support base, and its first laser head is used to scribble lines on the glass. However, it can only perform initial scribing and cannot perform barrier scribing, resulting in poor functionality of existing perovskite laser equipment. Utility Model Content

[0003] The purpose of this invention is to provide a perovskite laser device, which includes a glass scribing device and a barrier line scribing device. The glass scribing device and the barrier line scribing device are arranged sequentially along the glass conveying direction. The glass scribing device is provided with a first support base, a first movable base, and a first laser module. The first movable base is movably connected to the first support base and moves in the left-right direction. The first laser head of the first laser module is mounted on the first movable base. The first laser head of the first laser module is used to scribble lines on the glass. The barrier line scribing device is provided with a barrier line scribing assembly, which includes a second support base, a second movable base, a third movable base, a second laser head, and a second laser generator. The second movable base is movably connected to the second support base and moves in the left-right direction. The second laser head moves in the forward and backward direction; the third movable base is movably connected to the second movable base and moves in the left and right direction; the second laser head is connected to the third movable base and is located on the front side of the second movable base; the second laser generator is installed on the upper side of the second movable base, the second laser generator is connected to the second laser head, and the second laser head is located on a different side wall of the second movable base; the second laser head receives the laser output by the second laser generator and is used to perform barrier line scribing on the glass output by the glass scribing device, so that the glass scribing device and the barrier line scribing device can perform initial scribing and barrier line scribing on the glass respectively, thereby facilitating the integration of initial scribing and barrier line scribing effects in the perovskite laser equipment, avoiding the limitation of only performing initial scribing, and improving the functionality of the perovskite laser equipment.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a perovskite laser device, the perovskite laser device comprising a glass scribing device and a barrier line scribing device; the glass scribing device and the barrier line scribing device are arranged sequentially along the glass conveying direction;

[0005] The glass scribing device includes a first support base, a first movable base, and a first laser module; the first movable base is movably connected to the first support base and moves in the left-right direction; the first laser head of the first laser module is mounted on the first movable base; the first laser head of the first laser module is used to scribing lines on the glass.

[0006] The barrier line scribing device includes a barrier line scribing assembly, which comprises a second support base, a second movable base, a third movable base, a second laser head, and a second laser generator. The second movable base is movably connected to the second support base and moves along the front-back direction. The third movable base is movably connected to the second movable base and moves along the left-right direction. The second laser head is connected to the third movable base and is located on the front side of the second movable base. The second laser generator is mounted on the upper side of the second movable base, connected to the second laser head, and located on a different side wall of the second movable base. The second laser head receives the laser output by the second laser generator and is used to scribing barrier lines on the glass output by the glass scribing device.

[0007] Optionally, the glass marking device further includes a first base and a first glass conveying assembly; the first glass conveying assembly includes a third support, a plurality of first glass conveying lines, and a first ball bearing support module; the third support is mounted on the first base; the plurality of first glass conveying lines are mounted on the same third support and arranged at intervals; the plurality of first glass conveying lines are used to convey glass along the front-back direction; a first ball bearing support module is provided at the interval between two adjacent first glass conveying lines, and the first ball bearing support module is provided with a plurality of balls for supporting the glass.

[0008] Optionally, the first support base has a first docking area, which is located near the rear end of the first support base; the first docking area is used for the glass to dock; the first laser module is located above the first docking area and moves in the left-right direction under the drive of the first moving base.

[0009] Optionally, the first ball bearing support module is provided with a first support platform, which is fixedly connected to the first support base; the first support platform is connected with a plurality of first balls, which are arranged in an array on the same first support platform; a portion of the first balls is disposed within the first support platform, and a portion of the first balls is exposed on the upper surface of the first support platform, and the first balls can roll relative to the first support platform.

[0010] Optionally, the glass scribing device further includes a first moving module, which is laid on the first support base. The mounting end of the first moving module is installed on the first support base, and the moving end of the first moving module supports the third moving base and drives the third moving base to move in the left-right direction.

[0011] Optionally, the second movable seat is arranged in the left-right direction;

[0012] The second movable base is connected to the second support base via a second movable module; the connecting end of the second movable module is connected to the second support base, and the moving end of the second movable module is connected to the bottom of the second movable base; the second movable module is arranged along the front-back direction.

[0013] Optionally, the second movable seat has a first mounting area and a second mounting area;

[0014] The first mounting area is located on the front side wall of the second movable base and is used for connection to the third movable base; the second mounting area is located on the upper side wall of the second movable base and is used for connection to the second laser generator, and the second laser head and the second laser generator are arranged side by side along the front-back direction.

[0015] Optionally, the third movable seat is connected to the second movable seat via a third movable module; the connecting end of the third movable module is connected to the second movable seat, and the moving end of the third movable module is connected to the third movable seat, thereby driving the third movable seat to adjust its position; the third movable module is arranged along the left-right direction.

[0016] Optionally, the perovskite laser device further includes a scribing detection device located on the side of the barrier scribing device facing away from the glass scribing device.

[0017] The scribing detection device includes a second base and a detection component; the detection component includes a fourth support, an optical detection module, and a resistance detection module; the fourth support is connected to the second base and arranged along the length of the second base; the optical detection module and the resistance detection module are connected to the same fourth support and are located at different positions on the fourth support; the optical detection module and the resistance detection module are arranged side by side along the length of the fourth support; the optical detection module and the resistance detection module are arranged back to back; the optical detection module is used to perform optical detection on the scribing segment of the glass on the second base; the resistance detection module is used to perform resistance detection on the scribing segment of the glass on the second base.

[0018] Optionally, the fourth support supports the optical detection module and the resistance detection module; the resistance detection module is fixedly connected to the fourth support; there are multiple resistance detection modules, which are arranged along the length of the fourth support, and the optical detection module is located between two adjacent resistance detection modules.

[0019] The optical detection module includes a fourth movable base and an optical detection unit; the fourth movable base is movably connected to the fourth support base and moves along the length direction of the fourth support base; the optical detection unit is connected to the fourth movable base and is adjusted in position under the drive of the fourth movable base.

[0020] Compared with the prior art, the beneficial effects of this utility model are:

[0021] This utility model provides a perovskite laser device, which includes a glass scribing device and a barrier line scribing device. The glass scribing device and the barrier line scribing device are arranged sequentially along the glass conveying direction. The glass scribing device is provided with a first support base, a first movable base, and a first laser module. The first movable base is movably connected to the first support base and moves in the left-right direction. The first laser head of the first laser module is mounted on the first movable base. The first laser head of the first laser module is used to scribble lines on the glass. The barrier line scribing device is provided with a barrier line scribing assembly, which includes a second support base, a second movable base, a third movable base, a second laser head, and a second laser generator. The second movable base is movably connected to the second support base and moves in the left-right direction. The second laser head moves backward; the third movable base is movably connected to the second movable base and moves in the left and right directions; the second laser head is connected to the third movable base and is located on the front side of the second movable base; the second laser generator is installed on the upper side of the second movable base, the second laser generator is connected to the second laser head, and the second laser head is located on a different side wall of the second movable base; the second laser head receives the laser output by the second laser generator and is used to perform barrier line scribing on the glass output by the glass scribing device, so that the glass scribing device and the barrier line scribing device can perform initial scribing and barrier line scribing on the glass respectively, thereby facilitating the integration of initial scribing and barrier line scribing effects in the perovskite laser equipment, avoiding the limitation of only performing initial scribing, and improving the functionality of the perovskite laser equipment. Attached Figure Description

[0022] Figure 1 A schematic diagram of a perovskite laser device according to an embodiment of this application is shown.

[0023] Figure 2 A schematic diagram of a glass scribing apparatus for a perovskite laser device according to an embodiment of this application is shown.

[0024] Figure 3 A schematic diagram of a first laser module of a perovskite laser device according to an embodiment of this application is shown.

[0025] Figure 4 A schematic diagram of the first glass delivery assembly of a perovskite laser device according to an embodiment of this application is shown.

[0026] Figure 5 A schematic diagram of a barrier line scribing device for a perovskite laser apparatus according to an embodiment of this application is shown.

[0027] Figure 6 A schematic diagram of a barrier line scribing assembly of a perovskite laser device according to an embodiment of this application is shown.

[0028] Figure 7 A schematic diagram of a second glass delivery assembly of a perovskite laser device according to an embodiment of this application is shown.

[0029] Figure 8 A schematic diagram of a scribing detection apparatus for a perovskite laser device according to an embodiment of this application is shown.

[0030] Figure 9 A schematic diagram of the detection component of a perovskite laser device according to an embodiment of this application is shown.

[0031] Figure 10 Another schematic diagram of the detection component of a perovskite laser device according to an embodiment of this application is shown.

[0032] Figure 11 A schematic diagram of the optical detection module of a perovskite laser device according to an embodiment of this application is shown.

[0033] Figure 12 A schematic diagram of a resistance detection module of a perovskite laser device according to an embodiment of this application is shown.

[0034] Figure label:

[0035] 100. Perovskite laser equipment;

[0036] 10. Glass marking device; 11. First support base; 11a. First docking area; 12. First movable base; 13. First laser module; 14. First base; 15. First glass conveying assembly; 151. Third support base; 152. First glass conveying line; 153. First ball bearing support module; 1531. First support platform; 15311. First ball bearing; 154. First side wheel calibration module; 16. First movable module;

[0037] 20. Barrier line marking device; 21. Barrier line marking assembly; 211. Second support base; 212. Second movable base; 212a. First mounting area; 212b. Second mounting area; 213. Third movable base; 214. Second laser head; 215. Second laser generator; 216. Second movable module; 217. Third movable module; 22. Third base; 23. Second glass conveying assembly; 231. Fifth support base; 232. Second glass conveying line; 233. Second ball bearing support module; 2331. Second ball bearing; 2332. Second support platform; 234. Second side wheel calibration module;

[0038] 30. Marking detection device; 31. Second base; 32. Detection component; 321. Fourth support; 322. Optical detection module; 3221. Fourth movable base; 3222. Optical detection unit; 32221. First lifting base; 32222. Optical camera; 32223. Protective cover; 3223. Fifth movable base; 3224. Fourth movable module; 3225. Fifth movable module; 323. Resistance detection module; 3231. Sixth support; 3232. Sixth movable base; 3233. Resistance detection unit; 32331. Second lifting base; 32332. Resistance detection probe; 33. Third glass conveying component. Detailed Implementation

[0039] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0040] Please refer to the attached document. Figures 1-12 This application provides a perovskite laser device 100, which is used to improve the crystal structure of perovskite, enhance its photoelectric properties, and has a positive impact on the energy conversion efficiency during the preparation process.

[0041] Please refer to the attached document. Figures 1-12 In this embodiment, the perovskite laser device 100 includes a glass scribing device 10 and a barrier line scribing device 20. The glass scribing device 10 and the barrier line scribing device 20 are arranged sequentially along the glass conveying direction. This allows the glass scribing device 10 to scribble on the glass and then transfer it to the barrier line scribing device 20 for barrier line scribing. As a result, the perovskite laser device 100 integrates the effects of initial scribing and barrier line scribing, avoiding the limitation of only being able to perform initial scribing and improving the functionality of the perovskite laser device 100.

[0042] The glass scribing device 10 includes a first support base 11, a first movable base 12, and a first laser module 13. The first movable base 12 is movably connected to the first support base 11 and moves in the left-right direction to adjust the left-right position of the first movable base 12 relative to the first support base 11. The first laser head of the first laser module 13 is mounted on the first movable base 12 and moves with the movement of the first movable base 12. The first laser head of the first laser module 13 is used to scribing lines on the glass so that the first laser head of the first laser module 13 can scribing lines on the glass during the movement process.

[0043] The barrier line marking device 20 is provided with a barrier line marking assembly 21, which includes a second support base 211, a second movable base 212, a third movable base 213, a second laser head 214, and a second laser generator 215. The second movable base 212 is movably connected to the second support base 211 and moves along the front-back direction to adjust the front-back position of the second movable base 212 relative to the second support base 211. The third movable base 213 is movably connected to the second movable base 212 and moves along the left-right direction to adjust the left-right position of the third movable base 213 relative to the second movable base 212, thereby facilitating the movement of the third movable base 213 relative to the second support base 211 in the front-back and left-right directions. The second laser head 214 is connected to the third movable base 213 so that the second laser head 214 moves with the movement of the third movable base 213, thereby facilitating the adjustment of the front-back and left-right movement of the second laser head 214. The second laser head 214 is located in front of the second movable base 212. The forward and backward direction is X, the left and right direction is Y, and the up and down direction is Z.

[0044] The second laser generator 215 is mounted on the upper side of the second movable base 212. The second laser generator 215 is connected to the second laser head 214 and is located on a different side wall of the second movable base 212. The second laser head 214 receives the laser output by the second laser generator 215 and is used to perform barrier line scribing on the glass output by the glass scribing device 10. This makes full use of the different positions of the second movable base 212 and avoids the second laser head 214 and the second laser generator 215 being located on the front side of the second movable base 212, thereby improving the space utilization of the second movable base 212 of the barrier line scribing device 20.

[0045] Please refer to the attached document. Figures 1-4In this embodiment, the glass marking device 10 further includes a first base 14 and a first glass conveying assembly 15. The first glass conveying assembly 15 includes a third support 151, a plurality of first glass conveying lines 152, and a first ball bearing support module 153. The third support 151 is disposed on the upper side of the first base 14 and is mounted on the first base 14 so that the first glass conveying assembly 15 can be fixed to the upper side of the first base 14 through the third support 151. The plurality of first glass conveying lines 152 are mounted on the same third support 151 and extend along the width of the third support 151. The glass is arranged at intervals along the direction; multiple first glass conveying lines 152 are used to convey glass along the front-to-back direction, so that the glass can be adjusted in front-to-back position under the action of multiple first glass conveying lines 152; a first ball bearing support module 153 is provided at the interval between two adjacent first glass conveying lines 152, and the first ball bearing support module 153 is provided with multiple balls for supporting the glass, so as to ensure the stability of glass conveying, so as to realize glass conveying and laser scribing, thereby facilitating glass to be conveyed and laser scribing at the same time, avoiding the transfer of scribing glass under human action, and improving the working efficiency of glass scribing device 10.

[0046] Please refer to the attached document. Figures 1-4 In this embodiment of the application, the first support base 11 is provided with a first docking area 11a, which is close to the rear end of the first support base 11. The first docking area 11a is used for the glass to dock, and when the glass is in the docking area, the glass is kept still. The first laser module 33 is located above the first docking area 11a and moves in the left and right direction under the drive of the first moving base 12, so that the laser module 33 can scribble lines on the glass in the docking area 21a during the left and right movement.

[0047] Please refer to the attached document. Figures 1-4 In this embodiment, the first ball bearing support module 153 is provided with a first support platform 1531, which is disposed on the upper side of the first support base 11 and is fixedly connected to the first support base 11 so that the first ball bearing support module 153 can be fixed on the upper side of the first support base 11 through the first support platform 1531. The first support platform 1531 is connected with a plurality of first balls 15311, which are arranged in an array on the same first support platform 1531 to ensure the stability of glass conveying. A portion of the first balls 15311 is disposed inside the first support platform 1531, and a portion of the first balls 15311 is exposed on the upper surface of the first support platform 1531. The first balls 15311 can roll relative to the first support platform 1531 so that the glass on the upper surface of the first support platform 1531 can contact the first balls 15311, thereby facilitating the sliding of the glass by the first balls 15311 during the rolling process.

[0048] Please refer to the attached document. Figures 1-4 In this embodiment, the glass marking device 10 further includes a first moving module 16, which is laid on the first support base 11. The mounting end of the first moving module 16 is installed on the first support base 11, and the moving end of the first moving module 16 supports the third moving base 213 and drives the third moving base 213 to move in the left and right direction. This allows the third moving base 213 to move relative to the first support base 11 in the left and right direction under the action of the first moving module 16, ensuring the automated movement effect of the third moving base 213. Optionally, the first moving module 16 can be a synchronous belt moving module or a lead screw moving module.

[0049] The first glass conveyor line 152 is vertically and flexibly connected to the first support base 11 to adjust its height relative to the first support base 11. The conveying surface of the first glass conveyor line 152 has a height difference with the supporting surfaces of the multiple first ball bearings 15311 as the first glass conveyor line 152 rises and falls. When the conveying surface of the first glass conveyor line 152 is lower than the supporting surfaces of the multiple first ball bearings 15311, the supporting surfaces of the multiple first ball bearings 15311 support different positions of the glass and maintain its horizontal state, ensuring the glass remains stationary. When the conveying surface of the first glass conveyor line 152 is equal to the supporting surfaces of the multiple first ball bearings 15311, the first glass conveyor line 152 conveys the glass forward, and the multiple first ball bearings 15311 support the glass, so that the first glass conveyor line 152 and the multiple first ball bearings 15311 simultaneously drive the glass conveying, ensuring the stability of the glass conveying. Optionally, the first glass conveyor line 152 can be raised and lowered relative to the first support base 11 via a motor.

[0050] Please refer to the attached document. Figures 1-4 In this embodiment of the application, the first glass conveying assembly 15 further includes a first side wheel calibration module 154, which is disposed on the left or right side of the first support platform 1531. The first side wheel calibration module 154 is movably connected to the first support base 11 and moves in the left and right direction to adjust the left and right position of the first side wheel calibration module 154 relative to the first support base 11, thereby facilitating the calibration of the left and right position of the glass by the first side wheel calibration module 154.

[0051] Please refer to the attached document. Figures 5-7In this embodiment, the second movable seat 212 is arranged along the left-right direction; the second movable seat 212 is connected to the second support seat 211 via the second movable module 216; the connecting end of the second movable module 216 is connected to the second support seat 211, and the moving end of the second movable module 216 is connected to the bottom of the second movable seat 212; the second movable module 216 is arranged along the front-back direction, so that the second movable seat 212 can move automatically in the front-back direction under the action of the second movable module 216. Optionally, the second movable module 216 can be a synchronous belt movable module or a lead screw movable module.

[0052] Please refer to the attached document. Figures 5-7 In this embodiment, the second movable base 212 is provided with a first mounting area 212a and a second mounting area 212b. The first mounting area 212a is disposed on the front sidewall of the second movable base 212 and is used for connection to the third movable base 213 so that the second movable base 212 is arranged relative to the front sidewall of the second movable base 212. The second mounting area 212b is disposed on the upper sidewall of the second movable base 212 and is used for connection to the second laser generator 215 so that the second laser generator 215 is arranged relative to the upper sidewall of the second movable base 212. The second laser head 214 and the second laser generator 215 are arranged side by side along the front-back direction. The side-by-side arrangement presses the mass inertia, thermal drift and optical path offset of the second laser generator 215 onto the minimum sensitive axis of the movement direction, thereby reducing the additional inertia and ensuring the thermal stability of the spot position.

[0053] Please refer to the attached document. Figures 5-7 In this embodiment, the third movable base 213 is connected to the second movable base 212 via a third movable module 217. The connecting end of the third movable module 217 is connected to the second movable base 212, and the moving end of the third movable module 217 is connected to the third movable base 213, thereby driving the third movable base 213 to adjust its position. The third movable module 217 is arranged along the left-right direction so that the second movable base 212 can move automatically in the left-right direction under the action of the third movable module 217. This facilitates the automatic left-right movement of the second laser head 214 along with the automatic left-right movement of the second movable base 212, enabling the second laser head 214 to perform blocking line scribing on the glass on the second support base 211 during the movement. Optionally, the third movable module 217 can be a synchronous belt movable module or a lead screw movable module.

[0054] The barrier line marking device 20 also includes a third base 22 and a second glass conveying assembly 23; the second glass conveying assembly 23 includes a fifth support 231, a plurality of second glass conveying lines 232, and a second ball bearing support module 233; the fifth support 231 is disposed on the upper side of the third base 22, and is mounted on the third base 22 so that the second glass conveying assembly 23 can be fixed to the upper side of the third base 22 through the fifth support 231; the plurality of second glass conveying lines 232 are mounted on the same fifth support 231 and along the fifth support 231. The glass is arranged at intervals in the width direction; multiple second glass conveying lines 232 are used to convey glass along the front-to-back direction, so that the glass can be adjusted in front-to-back position under the action of multiple second glass conveying lines 232; a second ball bearing support module 233 is provided at the interval between two adjacent second glass conveying lines 232, and the second ball bearing support module 233 is provided with multiple second balls 2331 for supporting the glass, so as to ensure the stability of glass conveying, so that multiple second glass conveying lines 232 and multiple second balls 2331 cooperate to convey glass, thus ensuring the stability of glass conveying.

[0055] The second glass conveying assembly 23 is connected to the first glass conveying assembly 15 so that the first glass conveying assembly 15 can transfer the glass that has been initially marked to the second glass conveying assembly 23.

[0056] The second ball bearing support module 233 is provided with a second support platform 2332, which is fixedly connected to the fifth support base 231 so that the second ball bearing support module 233 can be fixed to the upper side of the fifth support base 231 through the second support platform 2332; the second support platform 2332 is connected to a plurality of second balls 2331, which are arranged in an array on the same second support platform 2332 so that the plurality of second glass conveying lines 232 and the plurality of second balls 2331 can cooperate to convey glass, ensuring the stability of glass conveying.

[0057] A portion of the second ball bearing 2331 is disposed within the second support platform 2332, and a portion of the second ball bearing 2331 is exposed on the upper surface of the second support platform 2332. The second ball bearing 2331 can roll relative to the second support platform 2332 so that the glass on the upper surface of the second support platform 2332 can contact the second ball bearing 2331, thereby facilitating the sliding of the glass by the second ball bearing 2331 during the rolling process.

[0058] Please refer to the attached document. Figures 5-7In this embodiment, the second glass conveyor line 232 is vertically connected to the fifth support base 231 to adjust its height relative to the fifth support base 231. The conveying surface of the second glass conveyor line 232 has a height difference with the supporting surfaces of the multiple second ball bearings 2331 as the second glass conveyor line 232 rises and falls. When the conveying surface of the second glass conveyor line 232 is lower than the supporting surfaces of the multiple second ball bearings 2331, the supporting surfaces of the multiple second ball bearings 2331 support different positions of the glass and maintain its horizontal state, ensuring the glass remains stationary. When the conveying surface of the second glass conveyor line 232 is equal to the supporting surfaces of the multiple second ball bearings 2331, the second glass conveyor line 232 conveys the glass forward, while the multiple second ball bearings 2331 roll in contact with the glass, so that the second glass conveyor line 232 and the multiple second ball bearings 2331 simultaneously drive the glass conveying, ensuring the stability of the glass conveying process.

[0059] Please refer to the attached document. Figures 5-7 In this embodiment, the second glass conveying assembly 23 further includes a second side wheel calibration module 234, which is disposed on the left or right side of the second support platform 2332. The second side wheel calibration module 234 is movably connected to the fifth support base 231 and moves in the left and right direction to adjust the left and right position of the second side wheel calibration module 234 relative to the fifth support base 231, thereby facilitating the second side wheel calibration module 234 to calibrate the left and right position of the glass.

[0060] Please refer to the attached document. Figures 8-12 In this embodiment of the application, the perovskite laser device 100 further includes a scribing detection device 30, which is located on the side of the barrier line scribing device 20 facing away from the glass scribing device 10, so that the glass scribing device 10, the barrier line scribing device 20 and the glass scribing device 10 can be arranged sequentially from front to back.

[0061] The scribing detection device 30 includes a second base 31 and a detection component 32; the detection component 32 includes a fourth support 321, an optical detection module 322, and a resistance detection module 323; the fourth support 321 is connected to the second base 31 and arranged along the length of the second base 31; the optical detection module 322 and the resistance detection module 323 are connected to the same fourth support 321 and are located at different positions on the fourth support 321; the optical detection module 322 and the resistance detection module 323 are arranged side by side along the length of the fourth support 321; the optical detection module 321... The optical detection module 322 and the resistance detection module 323 are arranged in opposite directions. The optical detection module 322 is used to perform optical detection on the scribing segment of the glass located on the second base 31. The resistance detection module 323 is used to perform resistance detection on the scribing segment of the glass located on the second base 31. It is compatible with both the optical detection module 322 and the resistance detection module 323, making full use of the space of the same fourth support 321. It avoids the scribing segment of the glass being transferred to the optical detection module 322 and the resistance detection module 323 for optical and resistance detection under human intervention, thereby improving the integration of the scribing detection device 30.

[0062] Please refer to the attached document. Figures 8-12 In this embodiment, the fourth support 321 supports the optical detection module 322 and the resistance detection module 323; the resistance detection module 323 is fixedly connected to the fourth support 321; there are multiple resistance detection modules 323, which are arranged along the length of the fourth support 321, and the optical detection module 322 is located between two adjacent resistance detection modules 323; energizing the multiple resistance detection modules 323 increases the detection efficiency of the resistance detection module 323 relative to the scribing segment of the glass.

[0063] The optical inspection module 322 includes a fourth movable base 3221 and an optical inspection unit 3222. The fourth movable base 3221 is movably connected to the fourth support base 321 and moves along the length direction of the fourth support base 321 to adjust the length position of the fourth movable base 3221 relative to the fourth support base 321. The optical inspection unit 3222 is connected to the fourth movable base 3221 and is moved by the fourth movable base 3221 to adjust its position to adjust the length position of the optical inspection unit 3222 relative to the fourth support base 321, thereby facilitating optical inspection of different positions of the scribing segment on the glass during movement.

[0064] The optical inspection module 322 is also provided with a fifth movable seat 3223, which is located between the fourth movable seat 3221 and the optical inspection unit 3222. The fifth movable seat 3223 is movably connected to the fourth movable seat 3221 to facilitate adjustment of the position of the fifth movable seat 3223 relative to the fourth movable seat 3221. The fifth movable seat 3223 supports the optical inspection unit 3222. The moving direction of the fifth movable seat 3223 is perpendicular to the moving direction of the fourth movable seat 3221, so that the optical inspection unit 3222 can be positioned in multiple directions under the action of the fifth movable seat 3223 and the fourth movable seat 3221, thereby facilitating the optical inspection unit 3222 to perform optical inspection on different positions of the scribing segment of the glass in the left-right and front-back directions.

[0065] The optical inspection module 322 also includes a fourth moving module 3224 and a fifth moving module 3225; the fourth moving module 3224 is located between the fourth support base 321 and the fourth moving base 3221; the fixed end of the fourth moving module 3224 is connected to the fourth support base 321 and arranged along the length direction of the fourth support base 321; the moving end of the fourth moving module 3224 supports the fourth moving base 3221 and drives the fourth moving base 3221 to move; so that the fourth moving base 3221 can move relative to the fourth support base 321 in the front-back direction under the action of the fourth moving module 3224.

[0066] The fifth moving module 3225 is located between the fourth moving base 3221 and the fifth moving base 3223; the fixed end of the fifth moving module 3225 is connected to the fourth moving base 3221 and is arranged along the length direction of the fourth moving base 3221; the moving end of the fifth moving module 3225 supports the fifth moving base 3223 and drives the fifth moving base 3223 to move, so that the fifth moving base 3223 can move relative to the fourth moving base 3221 in the left and right direction under the action of the fifth moving module 3225.

[0067] The optical inspection unit 3222 includes a first lifting seat 32221 and an optical camera 32222. The first lifting seat 32221 is disposed on one side of the fifth movable seat 3223 and is vertically connected to the fifth movable seat 3223 to facilitate adjustment of the vertical position of the first lifting seat 32221 relative to the fifth movable seat 3223. Specifically, the first lifting seat 32221 is raised and lowered relative to the fifth movable seat 3223 through a third linear motion module.

[0068] The optical camera 32222 is connected to the first lifting base 32221 and is raised and lowered under the drive of the first lifting base 32221 to facilitate the height adjustment of the optical camera 32222, thereby making it easier for the optical camera 32222 to approach or move away from the scribing segment of the glass; the optical camera 32222 is provided with a shooting end, which is arranged in the vertical direction and facing the scribing segment of the glass to shoot the scribing segment of the glass, thereby realizing the recording and analysis of the scribing segment of the glass, and thus achieving optical detection.

[0069] The optical inspection unit 3222 also includes a protective cover 32223, which is detachably connected to the first lifting seat 32221. The protective cover 32223 is disposed around the optical camera 32222 so that it can be connected to or detached from the first lifting seat 32221. Specifically, the protective cover 32223 is detachably connected to the first lifting seat 32221 by bolts. The protective cover 32223 has a through hole, and the optical camera 32222 is located in the through hole so that the optical camera 32222 can extend to the outside of the protective cover 32223 through the space of the through hole. The optical camera 32222 is protected by the protective cover 32223 and the peripheral side of the first lifting seat 32221, preventing the optical camera 32222 from being directly impacted by external objects and extending the service life of the optical camera 32222.

[0070] The resistance detection module 323 includes a sixth support base 3231, a sixth movable base 3232, and a resistance detection unit 3233. The sixth support base 3231 is connected to the fourth support base 321 and is located on the upper side of the fourth support base 321, so that the resistance detection module 323 can be fixed to the fourth support base 321 via the sixth support base 3231. The sixth movable base 3232 is movably connected to the sixth support base 3231, and the moving direction of the sixth movable base 3232 is parallel to the moving direction of the fourth movable base 3231, so as to facilitate adjustment. The position of the sixth movable seat 3232 relative to the sixth support seat 3231; the resistance detection unit 3233 is connected to the sixth movable seat 3232 and is adjusted in position under the drive of the sixth movable seat 3232 so that the resistance detection unit 3233 moves with the movement of the sixth movable seat 3232, thereby facilitating the resistance detection unit 3233 to perform resistance detection at different positions of the scribed segment of the glass during the movement. Specifically, the sixth movable seat 3232 moves relative to the sixth support seat 3231 through the fourth linear motion module.

[0071] The resistance detection unit 3233 includes a second lifting seat 32331 and a resistance detection probe 32332. The second lifting seat 32331 is disposed on one side of the sixth movable seat 3232 and is vertically connected to the sixth movable seat 3232 so as to adjust the height position of the second lifting seat 32331 relative to the sixth movable seat 3232. Specifically, the second lifting seat 32331 is raised and lowered relative to the sixth movable seat 3232 through the fifth movable module 3225.

[0072] The resistance detection probe 32332 is connected to the second lifting seat 32331 and moves up and down under the drive of the second lifting seat 32331, so that the resistance detection probe 32332 moves up and down with the second lifting seat 32331, thereby facilitating the left and right and up and down movement of the resistance detection probe 32332 in cooperation with the second lifting seat 32331 and the sixth moving seat 3232; the resistance detection probe 32332 is arranged in the up and down direction and faces the scribing segment of the glass to contact the scribing segment of the glass, thereby performing resistance detection on the scribing segment of the glass.

[0073] The scribing detection device 30 also includes a third glass conveying assembly 33, which is connected to the second base 31 and docks with the second glass conveying assembly 23. This allows the second glass conveying assembly 23 to transfer the glass that has been scribing the initial line and the barrier line to the third glass conveying assembly 33, thereby facilitating the third glass conveying assembly 33 to transfer the position of the inspected glass.

[0074] Compared with the prior art, the beneficial effects of this utility model are:

[0075] This invention provides a perovskite laser device 100, which includes a glass scribing device 10 and a barrier line scribing device 20. The glass scribing device 10 and the barrier line scribing device 20 are arranged sequentially along the glass conveying direction. The glass scribing device 10 is provided with a first support base 11, a first movable base 12, and a first laser module 13. The first movable base 12 is movably connected to the first support base 11 and moves in the left-right direction. The first laser head of the first laser module 13 is mounted on the first movable base 12 and is used to scribble lines on the glass. The barrier line scribing device 20 is provided with a barrier line scribing assembly 21, which includes a second support base 211, a second movable base 212, a third movable base 213, a second laser head 214, and a second laser generator 215. The second movable base 212 is movably connected to the second support base 211. The second laser head 214 is connected to the third laser head 213 and is located on the front side of the second laser head 212. The second laser generator 215 is installed on the upper side of the second laser head 214 and is located on a different side wall of the second laser head 212. The second laser head 214 receives the laser output by the second laser generator 215 and is used to perform barrier line scribing on the glass output by the glass scribing device 10. This allows the glass scribing device 10 and the barrier line scribing device 20 to perform initial scribing and barrier line scribing on the glass, respectively. This integrates the initial scribing and barrier line scribing effects of the perovskite laser device 100, avoiding the limitation of only performing initial scribing and improving the functionality of the perovskite laser device 100.

[0076] This document uses specific examples to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the methods and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A perovskite laser device, characterized in that, The perovskite laser equipment includes a glass scribing device and a barrier line scribing device; the glass scribing device and the barrier line scribing device are arranged sequentially along the glass conveying direction; The glass scribing device includes a first support base, a first movable base, and a first laser module; the first movable base is movably connected to the first support base and moves in the left-right direction; the first laser head of the first laser module is mounted on the first movable base; the first laser head of the first laser module is used to scribing lines on the glass. The barrier line scribing device includes a barrier line scribing assembly, which comprises a second support base, a second movable base, a third movable base, a second laser head, and a second laser generator. The second movable base is movably connected to the second support base and moves along the front-back direction. The third movable base is movably connected to the second movable base and moves along the left-right direction. The second laser head is connected to the third movable base and is located on the front side of the second movable base. The second laser generator is mounted on the upper side of the second movable base, connected to the second laser head, and located on a different side wall of the second movable base. The second laser head receives the laser output by the second laser generator and is used to scribing barrier lines on the glass output by the glass scribing device.

2. The perovskite laser device according to claim 1, characterized in that, The glass marking device also includes a first base and a first glass conveying assembly; the first glass conveying assembly includes a third support, a plurality of first glass conveying lines and a first ball bearing support module; the third support is mounted on the first base; the plurality of first glass conveying lines are mounted on the same third support and arranged at intervals; the plurality of first glass conveying lines are used to convey glass along the front-back direction; a first ball bearing support module is provided at the interval between two adjacent first glass conveying lines, and the first ball bearing support module is provided with a plurality of balls for supporting the glass.

3. The perovskite laser device according to claim 2, characterized in that, The first support base has a first docking area; the first docking area is used for the glass to dock; the first laser module is located above the first docking area and moves in the left and right direction under the drive of the first moving base.

4. The perovskite laser device according to claim 2, characterized in that, The first ball bearing support module is provided with a first support platform, which is fixedly connected to the first support base; the first support platform is connected to a plurality of first balls, which are arranged in an array on the same first support platform; A portion of the first ball is disposed within the first support platform, and a portion of the first ball is exposed on the upper surface of the first support platform, and the first ball is capable of rolling relative to the first support platform.

5. The perovskite laser device according to claim 2, characterized in that, The glass marking device further includes a first moving module, which is laid on the first support base. The mounting end of the first moving module is installed on the first support base, and the moving end of the first moving module supports the third moving base and drives the third moving base to move in the left and right direction.

6. The perovskite laser device according to claim 1, characterized in that, The second movable seat is arranged along the left-right direction; The second movable base is connected to the second support base via a second movable module; the connecting end of the second movable module is connected to the second support base, and the moving end of the second movable module is connected to the bottom of the second movable base; the second movable module is arranged along the front-back direction.

7. The perovskite laser device according to claim 6, characterized in that, The second movable base has a first mounting area and a second mounting area; The first mounting area is located on the front side wall of the second movable base and is used for connection to the third movable base; the second mounting area is located on the upper side wall of the second movable base and is used for connection to the second laser generator, and the second laser head and the second laser generator are arranged side by side along the front-back direction.

8. The perovskite laser device according to claim 7, characterized in that, The third movable seat is connected to the second movable seat via a third movable module; the connecting end of the third movable module is connected to the second movable seat, and the moving end of the third movable module is connected to the third movable seat, thereby driving the third movable seat to adjust its position; the third movable module is arranged along the left-right direction.

9. The perovskite laser device according to claim 1, characterized in that, The perovskite laser equipment also includes a scribing detection device, which is located on the side of the barrier scribing device that faces away from the glass scribing device. The scribing detection device includes a second base and a detection component; the detection component includes a fourth support base, an optical detection module, and a resistance detection module; The fourth support is connected to the second base and is arranged along the length of the second base; The optical detection module and the resistance detection module are connected to the same fourth support base, but are located at different positions on the fourth support base; The optical detection module and the resistance detection module are arranged side by side along the fourth support base; The optical detection module and the resistance detection module are arranged back to back; The optical inspection module is used to perform optical inspection on the scribing segment of the glass located on the second base; The resistance detection module is used to detect the resistance of the scribing segment of the glass located on the second base.

10. The perovskite laser device according to claim 9, characterized in that, The fourth support base supports the optical detection module and the resistance detection module; the resistance detection module is fixedly connected to the fourth support base; The resistance detection module has multiple modules, which are arranged along the length of the fourth support base, and the optical detection module is located between two adjacent resistance detection modules. The optical detection module includes a fourth movable base and an optical detection unit; the fourth movable base is movably connected to the fourth support base and moves along the length direction of the fourth support base; the optical detection unit is connected to the fourth movable base and is adjusted in position under the drive of the fourth movable base.