Environment-friendly heavy barium flint optical glass forming device

By designing an environmentally friendly heavy barium flint optical glass forming device with automated conveying and cooling components, the problems of low efficiency and high risk caused by manual intervention in the production process have been solved, and an efficient and continuous production process has been achieved.

CN223852478UActive Publication Date: 2026-01-30ANHUI LONGYANG OPTOELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520394506.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-01-30
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Existing environmentally friendly heavy barium flint optical glass forming equipment requires manual intervention during the production process, resulting in low production efficiency, high uncertainty, operational risks, and slow mold forming speed.

Method used

An environmentally friendly heavy barium flint optical glass forming device was designed, including a conveying component, a limiting component, and a condensation component, to achieve automated conveying and rapid cooling, reduce manual intervention, and improve production continuity and efficiency.

Benefits of technology

Automated transfer and rapid cooling reduce human intervention, improve the continuity and efficiency of the production process, reduce operational risks, and avoid optical distortion caused by uneven cooling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of environment-friendly heavy barium flint optical glass forming, and discloses an environment-friendly heavy barium flint optical glass forming device which comprises a bearing assembly, a conveying assembly, a material injection assembly, a limiting assembly and a condensation assembly, the conveying assembly is installed on the inner wall of the bearing assembly, the material injection assembly is installed at the front end of the upper portion of the bearing assembly, and the limiting assembly is installed on the lower portion of the bearing assembly. The limiting assemblies are symmetrically distributed and installed above the bearing assembly, and the condensation assembly is installed at the rear end of the upper portion of the bearing assembly. The conveying assembly and the limiting assembly are arranged, so that raw materials or semi-finished products can be automatically conveyed from one working procedure to the next working procedure, manual intervention is reduced, the continuity and efficiency of the production process are improved, and the limiting device can effectively guarantee that the position of a mold deviates in the conveying process; and the condensation assembly is arranged, so that the temperature difference of all parts of the glass in the cooling process is extremely small, and internal stress and optical distortion caused by non-uniform cooling are avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the environmental protection heavy barium fire optical glass forming technical field, more specifically, it relates to environmental protection heavy barium fire optical glass forming device. BACKGROUND

[0002] The environmental protection heavy barium fire optical glass forming device is characterized by using renewable resources and reducing pollution emissions, meeting the requirements of modern green industry. Through efficient and accurate production process, it provides high-quality optical glass materials for optical instruments, meeting the needs of high-end optical applications.

[0003] When the device needs manual intervention for transfer between each production link during work, it will greatly increase the production time, reduce the production efficiency, increase the uncertainty in the production process, increase the operation difficulty, thereby increasing the risk of accidents, the material forming speed in the mold is slow, which affects the working efficiency of the device to some extent.

[0004] Therefore, in order to solve the above problems, the environmental protection heavy barium fire optical glass forming device is provided. Utility model content

[0005] In order to overcome the above-mentioned defects of the prior art, the utility model provides an environmental protection heavy barium fire optical glass forming device to solve the problems in the above background art.

[0006] The utility model provides the following technical scheme: environmental protection heavy barium fire optical glass forming device, including bearing assembly, conveying assembly, injection assembly, limiting component and condensation component, wherein the conveying assembly is installed on the inner wall of bearing assembly, the injection assembly is installed above the front end of bearing assembly, the limiting component is symmetrically distributed and is installed above bearing assembly, the condensation component is installed above the rear end of bearing assembly.

[0007] Preferably, the bearing assembly includes a bearing plate, a base, a first side plate and a second side plate, wherein the base is matrix distributed and fixedly installed on the bottom of the bearing plate, the first side plate is fixedly installed on the upper side of the bearing plate, and the second side plate is fixedly installed on the other upper side of the bearing plate.

[0008] Preferably, the conveying assembly comprises a side fixing plate, a driving motor, a conveying belt, a first transmission wheel, a second transmission wheel and a fixing rod, the side fixing plate is fixedly installed on the outer wall of the second side plate, the driving motor is fixedly installed above the side fixing plate, the output end of the driving motor is movably penetrated through the second side plate and fixedly penetrated through the first transmission wheel, the first transmission wheel and the second transmission wheel are in engagement with the inner wall of the conveying belt, and the fixing rod is movably penetrated through the second transmission wheel and fixedly connected with the inner walls of the first side plate and the second side plate.

[0009] Preferably, the injection assembly comprises a first U-shaped plate, a storage tank, a heat preservation sleeve, a cover body, a booster pump, a feeding pipe, a discharging pipe, an infrared signal detector, a liquid level meter and a controller, the first U-shaped plate is fixedly installed above the first side plate and the second side plate, the storage tank is fixedly installed above the first U-shaped plate, the heat preservation sleeve is fixedly installed on the outer wall of the storage tank, the cover body is placed on the notch opened above the storage tank, the booster pump is fixedly installed above the storage tank, one end of the feeding pipe is fixedly connected with the feeding position, the other end of the feeding pipe is fixedly connected with the booster pump, the discharging pipe is fixedly penetrated through the bottom of the storage tank and the first U-shaped plate, the infrared signal detector is fixedly installed on the inner wall of the bottom of the first U-shaped plate, the liquid level meter is placed in the storage tank, and the controller is fixedly installed on the outer wall of the first U-shaped plate.

[0010] Preferably, the limiting assembly comprises a fixed block, a fixed rivet and a limiting plate, the fixed block is placed above the first side plate and the second side plate, the fixed rivet is movably penetrated through the fixed block and fixedly installed above the first side plate and the second side plate, and the limiting plate is fixedly installed on the front wall of the fixed rivet.

[0011] Preferably, the condensing assembly comprises a second U-shaped plate, a condensing pipe and a temperature insulation plate, the second U-shaped plate is fixedly installed above the first side plate and the second side plate, the condensing pipe is fixedly installed in the second U-shaped plate, and the temperature insulation plates are symmetrically distributed and fixedly installed on the side walls of the second U-shaped plate.

[0012] The technical effects and advantages of the utility model are as follows:

[0013] The utility model discloses a conveying assembly and limiting assembly, which can automatically transfer raw materials or semi-finished products from one process to the next process, reduce manual intervention, improve the continuity and efficiency of the production process, and effectively prevent the position deviation of the mold during transportation.

[0014] The utility model discloses a cooling assembly is equipped with, be favorable to make the temperature difference of each part of glass in the cooling process is minimum, avoid the internal stress and optical distortion caused by uneven cooling, and can effectively accelerate the forming time of material, improve work efficiency to a certain extent. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the whole structure schematic diagram of the utility model.

[0016] Figure 2 It is the whole structure and partial section schematic diagram of the utility model.

[0017] Figure 3 It is the whole structure schematic diagram of the utility model. Figure 2 A structure schematic diagram.

[0018] The sign is: 1, bearing assembly;101, bearing plate;102, base;103, first side plate;104, second side plate;2, conveying assembly;201, side fixed plate;202, drive motor;203, conveying belt;204, first transmission wheel;205, second transmission wheel;206, fixed link;3, injection assembly;301, first U-shaped plate;302, storage tank;303, heat preservation cover;304, cover;305, booster pump;306, feed pipe;307, discharge pipe;308, infrared signal detector;309, liquid level meter;310, controller;4, limiting assembly;401, fixed block;402, fixed rivet;403, limiting plate;5, condensing assembly;501, second U-shaped plate;502, condensing pipe;503, temperature insulation plate. DETAILED DESCRIPTION

[0019] The technical scheme in the utility model will be described below in connection with the drawings in the utility model, and additionally, the form of each structure recorded in the following implementation is only an example, and the forming of the environment-friendly heavy barium flint optical glass involved in the utility model is not limited to each structure recorded in the following implementation, and all other implementations obtained by the ordinary skilled in the art without making creative labor belong to the range of protection of the utility model.

[0020] Referring to Figures 1-3 The utility model provides an environment-friendly heavy barium flint optical glass forming device, including bearing assembly 1, conveying assembly 2, injection assembly 3, limiting assembly 4 and condensing assembly 5, wherein conveying assembly 2 is installed on the inner wall of bearing assembly 1, injection assembly 3 is installed on the upper front end of bearing assembly 1, limiting assembly 4 is symmetrically distributed and is installed on the upper of bearing assembly 1, and condensing assembly 5 is installed on the upper rear end of bearing assembly 1.

[0021] The bearing assembly 1 comprises a bearing plate 101, a base 102, a first side plate 103 and a second side plate 104, wherein the base 102 is arranged in matrix and fixedly installed on the bottom of the bearing plate 101, the first side plate 103 is fixedly installed on the upper side of the bearing plate 101, and the second side plate 104 is fixedly installed on the other upper side of the bearing plate 101.

[0022] The conveying assembly 2 comprises a side fixing plate 201, a driving motor 202, a conveying belt 203, a first transmission wheel 204, a second transmission wheel 205 and a fixed rod 206, wherein the side fixing plate 201 is fixedly installed on the outer wall of the second side plate 104, the driving motor 202 is fixedly installed on the upper side of the side fixing plate 201, the output end of the driving motor 202 is movably penetrated through the second side plate 104 and fixedly penetrated through the first transmission wheel 204, the first transmission wheel 204 and the second transmission wheel 205 are engaged with the inner wall of the conveying belt 203, and the fixed rod 206 is movably penetrated through the second transmission wheel 205 and fixedly connected with the inner walls of the first side plate 103 and the second side plate 104. The provision of the conveying assembly 2 is beneficial to the transmission work of the device, so as to realize continuous work activity.

[0023] The feeding assembly 3 comprises a first U-shaped plate 301, a storage tank 302, a heat preservation sleeve 303, a cover 304, a booster pump 305, a feeding pipe 306, a discharging pipe 307, an infrared signal detector 308, a liquid level meter 309 and a controller 310, wherein the first U-shaped plate 301 is fixedly installed on the upper side of the first side plate 103 and the second side plate 104, the storage tank 302 is fixedly installed on the upper side of the first U-shaped plate 301, the heat preservation sleeve 303 is fixedly installed on the outer wall of the storage tank 302, the cover 304 is placed on the notch opened on the upper side of the storage tank 302, the booster pump 305 is fixedly installed on the upper side of the storage tank 302, one end of the feeding pipe 306 is fixedly connected with the feeding position, the other end of the feeding pipe 306 is fixedly connected with the booster pump 305, the discharging pipe 307 is fixedly penetrated through the bottom of the storage tank 302 and the first U-shaped plate 301, the infrared signal detector 308 is fixedly installed on the inner wall of the bottom of the first U-shaped plate 301, the liquid level meter 309 is placed in the interior of the storage tank 302, and the controller 310 is fixedly installed on the outer wall of the first U-shaped plate 301.

[0024] The limiting assembly 4 comprises a fixed block 401, a fixed rivet 402 and a limiting plate 403, wherein the fixed block 401 is placed on the upper side of the first side plate 103 and the second side plate 104, the fixed rivet 402 is movably penetrated through the fixed block 401 and fixedly installed on the upper side of the first side plate 103 and the second side plate 104, and the limiting plate 403 is fixedly installed on the front wall of the fixed rivet 402. The provision of the limiting assembly 4 is beneficial to avoiding displacement of the device when the mold is operated.

[0025] The condensing assembly 5 comprises a second U-shaped plate 501, a condensing pipe 502 and a temperature insulation plate 503, wherein the second U-shaped plate 501 is fixedly installed above the first side plate 103 and the second side plate 104, the condensing pipe 502 is fixedly installed inside the second U-shaped plate 501, and the temperature insulation plates 503 are symmetrically distributed and fixedly installed on the side walls of the second U-shaped plate 501, and the condensing assembly 5 is provided, so that the device can accelerate the solidification of the materials in the mold.

[0026] The working principle of the utility model discloses:

[0027] The device is horizontally placed above the ground, at this time, the driving motor 202 starts to work, the output end of the driving motor 202 drives the first transmission wheel 204 to start rotating motion, the rotating motion of the first transmission wheel 204 drives the transmission belt 203 engaged with it to start conveying activity, the staff places the mold above the transmission belt 203, when the infrared signal detector 308 detects that the mold reaches below, at this time, the signal is defined as a working signal, and the working signal is sent to the controller 310, after the controller 310 receives the working signal, the driving motor 202 stops driving work, and the booster pump 305 starts to work, the booster pump 305 draws materials into the storage tank 302 according to the standard through the feeding pipe 306, at this time, the liquid level meter 309 monitors the material position signal in real time, the materials in the storage tank 302 are injected into the mold through the discharge pipe 307, when the infrared signal detector 308 monitors that the material position in the storage tank 302 reaches the bottom, the signal is defined as a running signal and sent to the controller 310, after the controller 310 receives the running signal, the driving motor 202 starts to work, and the booster pump 305 stops working, at this time, the transmission motion of the transmission belt 203 transports the mold to below the condensing assembly 5, at the same time, the condensing pipe 502 starts to work, the condensing pipe 502 emits cold air to accelerate the solidification of the materials in the mold, when the solidification is completed, at this time, the staff can remove the formed mold from the rear end of the device and place it on the front end of the device, which can effectively guarantee the continuous operation of the device.

[0028] Finally, it should be pointed out that: first, in the description of the present application, it should be pointed out that, unless otherwise specified and limited, the terms "installation", "connection", "connection" should be understood broadly, which can be mechanical connection or electrical connection, or the communication between two elements, or direct connection, "up", "down", "left", "right" and the like are only used to indicate the relative positional relationship, when the absolute position of the described object changes, the relative positional relationship may change;

[0029] Secondly: the utility model discloses an embodiment, only the structure involved in the embodiment is involved, other structures can refer to the usual design, in the case of no conflict, the same embodiment and different embodiments of the utility model can be combined with each other.

[0030] Finally: the above only for the preferred embodiments of the utility model have, and do not for limiting the utility model, any modification, equivalent replacement, improvement etc. made within the spirit and principles of the utility model, should be included in the protection scope of the utility model.

Claims

1. An environmental protection barium firestone optical glass forming device, comprising a bearing assembly (1), a conveying assembly (2), a material injection assembly (3), a limiting assembly (4) and a condensing assembly (5), characterized in that: The conveying assembly (2) is installed on the inner wall of the bearing assembly (1), the injection assembly (3) is installed above the front end of the bearing assembly (1), the limiting assembly (4) is symmetrically distributed and installed above the bearing assembly (1), and the condensing assembly (5) is installed above the rear end of the bearing assembly (1); the conveying assembly (2) comprises a side fixed plate (201), a driving motor (202), a conveying belt (203), a first transmission wheel (204), a second transmission wheel (205) and a fixed rod (206), wherein the side fixed plate (201) is fixedly installed on the outer wall of the second side plate (104), the driving motor (202) is fixedly installed above the side fixed plate (201), the output end of the driving motor (202) is movably penetrated through the second side plate (104) and fixedly penetrated through the first transmission wheel (204), the first transmission wheel (204) and the second transmission wheel (205) are engaged with the inner wall of the conveying belt (203), and the fixed rod (206) is movably penetrated through the second transmission wheel (205) and fixedly connected with the inner walls of the first side plate (103) and the second side plate (104).

2. The environmentally friendly barium line optical glass forming device according to claim 1, characterized in that: The bearing assembly (1) comprises a bearing plate (101), a base (102), a first side plate (103) and a second side plate (104), wherein the base (102) is matrix-distributed and fixedly installed at the bottom of the bearing plate (101), the first side plate (103) is fixedly installed on one side above the bearing plate (101), and the second side plate (104) is fixedly installed on the other side above the bearing plate (101).

3. The environmentally friendly barium line optical glass forming device according to claim 1, characterized in that: The injection assembly (3) comprises a first U-shaped plate (301), a storage tank (302), a heat preservation sleeve (303), a cover (304), a booster pump (305), a feeding pipe (306), a discharging pipe (307), an infrared signal detector (308), a liquid level meter (309) and a controller (310), wherein the first U-shaped plate (301) is fixedly installed above the first side plate (103) and the second side plate (104), the storage tank (302) is fixedly installed above the first U-shaped plate (301), the heat preservation sleeve (303) is fixedly installed on the outer wall of the storage tank (302), the cover (304) is placed on the notch opened above the storage tank (302), the booster pump (305) is fixedly installed above the storage tank (302), one end of the feeding pipe (306) is fixedly connected with the feeding part, the other end of the feeding pipe (306) is fixedly connected with the booster pump (305), the discharging pipe (307) is fixedly penetrated through the bottom of the storage tank (302) and the first U-shaped plate (301), the infrared signal detector (308) is fixedly installed on the inner wall of the bottom of the first U-shaped plate (301), the liquid level meter (309) is placed in the storage tank (302), and the controller (310) is fixedly installed on the outer wall of the first U-shaped plate (301).

4. The environmentally friendly barium line optical glass forming device according to claim 1, characterized in that: Said limiting component (4) includes fixed block (401), fixed rivet (402) and limiting plate (403), wherein, fixed block (401) is placed above first side plate (103) and second side plate (104), fixed rivet (402) is movably penetrated through fixed block (401) and is fixedly installed above first side plate (103) and second side plate (104), limiting plate (403) is fixedly installed on the front wall of fixed rivet (402).

5. The environmentally friendly barium line optical glass forming device according to claim 1, characterized in that: Said condensing component (5) includes second U-shaped plate (501), condensing pipe (502) and temperature insulation plate (503), wherein, second U-shaped plate (501) is fixedly installed above first side plate (103) and second side plate (104), condensing pipe (502) is fixedly installed inside second U-shaped plate (501), temperature insulation plate (503) is symmetrically distributed and fixedly installed on the side wall of second U-shaped plate (501).