Device for assisting correction of spectacle frame
By designing a device for heating and cooling components, the problem of reduced plasticity of eyeglass frames due to exposure to air was solved, thus achieving accuracy and stability in eyeglass frame correction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-04-03
AI Technical Summary
During the production of plastic eyeglass frames, the frames become less malleable due to exposure to air, which affects the correction effect.
Design a device that includes a heating component and a cooling component, wherein the frame is heated on a heating platform to maintain its plasticity, and cooled and shaped on a cooling platform to prevent deformation.
It effectively maintains the plasticity of the frame, ensures the accuracy of the correction process, and prevents the frame from deforming due to accidental impact after correction.
Smart Images

Figure CN224074985U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of eyeglass frame manufacturing, and in particular to a device for assisting in the correction of eyeglass frames. Background Technology
[0002] Common materials for eyeglass frames typically include metals (such as titanium alloys, stainless steel, and aluminum-magnesium alloys), plastics (such as cellulose acetate, TR90, and nylon), natural materials (such as wood and horn), and composite materials (a combination of metal and plastic).
[0003] In the production of plastic eyeglass frames, if defects are found (such as dimensional deviations, poor symmetry, or structural deformation), a correction process is required for repair or adjustment. During this process, prolonged exposure to air can reduce the plasticity of the eyeglass frames, thus affecting the correction results. Utility Model Content
[0004] The purpose of this invention is to provide a device for assisting in the correction of eyeglass frames, thereby addressing the shortcomings of existing technologies.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0006] A device for assisting in the correction of eyeglass frames includes a worktable and heating and cooling components respectively disposed at both ends of the worktable.
[0007] The workbench includes an operating platform for placing eyeglass frames to be corrected, a display screen on the operating platform for displaying the ambient temperature inside the heating and cooling components, and a first foot switch and a second foot switch below the operating platform for operating the heating and cooling components.
[0008] The heating assembly includes a heating box and a first transmission box located below the heating box. A heating platform is provided inside the heating box, and several heating stations are provided on the heating platform for placing eyeglass frames to be heated before correction. The bottom center of the heating platform is connected to a first rotary motor located in the first transmission box.
[0009] The cooling assembly includes a cooling box and a second transmission box located below the cooling box. A cooling platform is provided inside the cooling box, and several cooling stations are provided on the cooling platform for placing the corrected eyeglass frames to be cooled. The bottom center of the cooling platform is connected to a second rotary motor located in the second transmission box.
[0010] The heating box and cooling box include an outer frame and several transparent observation windows arranged along the outer frame. The side end of one of the transparent observation windows is movably connected to the outer frame by a hinge. The transparent observation window is connected to the first transmission motor and the second transmission motor in the first transmission box or the second transmission box by a transmission mechanism.
[0011] The transmission mechanism includes a guide rail disposed inside the transparent observation window, a pulley disposed inside the guide rail, one end of the swing arm cooperating with the guide rail through the pulley, and the other end of the swing arm being connected to the first transmission motor and the second transmission motor.
[0012] The heating chamber is equipped with a unidirectional gold-plated heating tube for heating, and the cooling chamber is equipped with a compressor for cooling.
[0013] The output terminal of the first foot switch is connected to the first rotary motor and the first drive motor respectively, and the output terminal of the second foot switch is connected to the second rotary motor and the second drive motor respectively.
[0014] The outer surfaces of the first and second transmission boxes are provided with louvers for heat dissipation.
[0015] A method for assisting in the correction of eyeglass frames includes the following steps:
[0016] S1. Place the eyeglass frames to be calibrated on the operating platform into the heating platform of the heating chamber, and place one eyeglass frame at each heating station; close the transparent observation window and start the unidirectional gold-plated heating tube to heat the eyeglass frames;
[0017] S2. Observe the display screen. After the temperature and heating time in the heating chamber reach the calibration standard, press the first foot switch to send control signals to the first rotary motor and the first drive motor respectively. The first rotary motor drives the heating platform to rotate, so that a heating station on the heating platform rotates to the openable transparent observation window. The first drive motor opens the transparent observation window through the swing arm.
[0018] S3. Remove the eyeglasses frame from the heating station, insert a new eyeglasses frame to be calibrated, and close the transparent viewing window; place the removed heated eyeglasses frame on the operating platform and calibrate the eyeglasses frame using the calibration tool;
[0019] S4. Place the corrected eyeglass frame into the cooling station and close the transparent observation window; observe the display screen, and wait until the temperature and cooling time inside the cooling chamber reach the standard before opening the cooling chamber and taking it out using the second foot switch.
[0020] In summary, this utility model has the following beneficial effects:
[0021] By using heating and cooling components at both ends of the worktable, the eyeglass frame to be corrected can be placed in the heating component for heating to maintain its plasticity; and after correction, the corrected eyeglass frame can be placed in the cooling component for cooling to quickly set its shape and prevent deformation due to accidental collision. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the device for assisting in the correction of eyeglass frames according to this utility model.
[0023] Figure 2 This is a top view of the device for assisting in the correction of eyeglass frames according to this utility model.
[0024] Figure 3 This is a schematic diagram of the transmission mechanism described in this utility model. Detailed Implementation
[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with the illustrations and specific embodiments.
[0026] like Figures 1 to 3 As shown, the present invention proposes a device for assisting in the correction of eyeglass frames, including a worktable 1, and a heating component 2 and a cooling component 3 respectively disposed at both ends of the worktable 1.
[0027] The workbench 1 includes an operating platform 11 for placing eyeglass frames to be corrected, a display screen 12 on the operating platform 11 for displaying the ambient temperature inside the heating component 2 and the cooling component 3, and a first foot switch 13 and a second foot switch 14 for operating the heating component 2 and the cooling component 3 below the operating platform 11.
[0028] The heating assembly 2 includes a heating box 21 and a first transmission box 22 disposed below the heating box 21. A heating platform 23 is provided inside the heating box 21. Several heating stations 24 for placing eyeglass frames to be heated before correction are provided on the heating platform 23. The bottom middle position of the heating platform 23 is connected to a first rotary motor disposed inside the first transmission box 22.
[0029] The cooling assembly 3 includes a cooling box 31 and a second transmission box 32 disposed below the cooling box 31. A cooling platform 33 is provided inside the cooling box 31. Several cooling stations 34 are provided on the cooling platform 33 for placing the corrected eyeglass frames to be cooled. The bottom center of the cooling platform 33 is connected to a second rotary motor disposed inside the second transmission box 32.
[0030] The heating box 21 and cooling box 31 include an outer frame 41 and a plurality of transparent observation windows 42 arranged along the outer frame 41. The side end of one transparent observation window 42 is movably connected to the outer frame 41 by a hinge. The transparent observation window 42 is connected to the first transmission motor and the second transmission motor in the first transmission box 22 or the second transmission box 32 by a transmission mechanism 43.
[0031] The transmission mechanism 43 includes a guide rail 44 disposed inside the transparent observation window 42, a pulley 45 disposed inside the guide rail 44, one end of the swing arm 46 cooperating with the guide rail 44 through the pulley 45, and the other end of the swing arm 46 being connected to the first transmission motor and the second transmission motor.
[0032] The heating box 21 is equipped with a unidirectional gold-plated heating tube for heating, and the cooling box 31 is equipped with a compressor for cooling.
[0033] The output terminal of the first foot switch 13 is connected to the first rotary motor and the first drive motor respectively, and the output terminal of the second foot switch 14 is connected to the second rotary motor and the second drive motor respectively.
[0034] The outer surfaces of the first transmission box 22 and the second transmission box 32 are provided with louvers for heat dissipation.
[0035] A method for assisting in the correction of eyeglass frames includes the following steps:
[0036] S1. Place the eyeglass frames to be calibrated on the operating platform 11 into the heating platform 23 of the heating box 21, and place one eyeglass frame on each heating station 24; close the transparent observation window 42 and start the unidirectional gold-plated heating tube to heat the eyeglass frames;
[0037] S2. Observe the display screen 12. After the temperature and heating time in the heating box 21 reach the calibration standard, send control signals to the first rotary motor and the first drive motor respectively by stepping on the first foot switch 13. The first rotary motor drives the heating platform 23 to rotate, so that a heating station 24 on the heating platform 23 rotates to the openable transparent observation window 42. The first drive motor opens the transparent observation window 42 through the swing arm 46.
[0038] S3. Remove the eyeglasses frame from the heating station 24, place the new eyeglasses frame to be calibrated, and close the transparent observation window 42; place the removed heated eyeglasses frame on the operating platform 11, and calibrate the eyeglasses frame using the calibration tool;
[0039] S4. Place the corrected eyeglass frame into the cooling station 34 and close the transparent observation window 42; observe the display screen 12, and wait until the temperature and cooling time in the cooling box 31 reach the standard, then open the cooling box 31 and take it out through the second foot switch 14.
[0040] In this document, the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer", "vertical", and "horizontal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the purpose of clarifying the technical solution and for the convenience of description, and therefore should not be construed as limiting the present utility model.
[0041] In this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, which includes not only the elements listed but also other elements not expressly listed.
[0042] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A device for assisting eyeglass frame correction, characterized in that, The device comprises a workbench (1), a heating assembly (2) and a cooling assembly (3) arranged at two ends of the workbench (1) respectively; The workbench (1) comprises an operation platform (11) for placing the eyeglass frames to be corrected, a display screen (12) is arranged on the operation platform (11) and is used for displaying the ambient temperature in the heating assembly (2) and the cooling assembly (3), and a first foot switch (13) and a second foot switch (14) are arranged below the operation platform (11) and are used for operating the heating assembly (2) and the cooling assembly (3); The heating assembly (2) comprises a heating box (21) and a first transmission box (22) arranged below the heating box (21), a heating platform (23) is arranged in the heating box (21), a plurality of heating stations (24) for placing the eyeglass frames to be heated before correction are arranged on the heating platform (23), and the middle position of the bottom of the heating platform (23) is in transmission connection with a first rotary motor arranged in the first transmission box (22); The cooling assembly (3) comprises a cooling box (31) and a second transmission box (32) arranged below the cooling box (31), a cooling platform (33) is arranged in the cooling box (31), a plurality of cooling stations (34) for placing the eyeglass frames to be cooled after correction are arranged on the cooling platform (33), and the middle position of the bottom of the cooling platform (33) is in transmission connection with a second rotary motor arranged in the second transmission box (32).
2. The device for assisting eyeglass frame correction according to claim 1, characterized in that, The heating box (21) and the cooling box (31) comprise an outer frame (41) and a plurality of transparent observation windows (42) arranged along the outer frame (41), one side end of one of the transparent observation windows (42) is movably connected to the outer frame (41) through a hinge, and the transparent observation window (42) is in transmission connection with a first transmission motor and a second transmission motor in the first transmission box (22) or the second transmission box (32) through a transmission mechanism (43).
3. The device for assisting eyeglass frame correction according to claim 2, characterized in that, The transmission mechanism (43) comprises a guide slide rail (44) arranged on the inner side of the transparent observation window (42), a pulley (45) is arranged in the guide slide rail (44), one end of a swing arm (46) is matched with the guide slide rail (44) through the pulley (45), and the other end of the swing arm (46) is in transmission connection with the first transmission motor and the second transmission motor.
4. The device for assisting eyeglass frame correction of claim 1, wherein, The heating box (21) is provided with a one-way gold-plated heating pipe for heating, and the cooling box (31) is provided with a compressor for cooling.
5. The device for assisting eyeglass frame correction of claim 1, wherein, The output ends of the first foot switch (13) are connected with the first rotary motor and the first transmission motor respectively, and the output ends of the second foot switch (14) are connected with the second rotary motor and the second transmission motor respectively.
6. The device for assisting eyeglass frame correction of claim 1, wherein, The outer surfaces of the first transmission box (22) and the second transmission box (32) are provided with louvers for heat dissipation.