Probe device and UV curing equipment

By designing a movable and swingable probe device, the problem of low efficiency caused by fixed probe device position was solved, realizing high-efficiency energy detection and multi-point following detection of UV curing equipment, thereby improving product yield and production efficiency.

CN223571222UActive Publication Date: 2025-11-21SHENZHEN ZHICHANG INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422962539.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-11-21
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

The existing probe device cannot be moved or adjusted, resulting in low detection efficiency and failing to meet the high-efficiency energy detection requirements of UV curing equipment.

Method used

Design a probe device in which a movable base is movably connected to a base and moves along the length of the base, a swing base is oscillatingly connected to the movable base and swings up and down, and the probe is connected to the swing base. Position adjustment is achieved through the combined movement of the movable base and the swing base. The probe can move and swing flexibly by combining the drive of a motor and a synchronous belt drive module.

Benefits of technology

It improves the working efficiency of the probe device, ensures the yield of UV-cured materials on the product surface, realizes multi-point following energy detection, is compatible with various UV curing ovens, reduces manpower and material resources, and builds intelligent production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a probe device and UV curing equipment. The probe device comprises a base, a moving seat, a swinging seat and a probe; the movable seat is movably connected to the base and moves in the length direction of the base. The swinging seat is connected to the moving seat in a swinging manner and swings in the vertical direction; the swing seat moves along with the movement of the movable seat; the probe is connected to the swing seat, and the position of the probe is adjusted along with swing of the swing seat, so that the probe moves and swings relative to the base through the moving seat and the swing seat, the position of the probe relative to the base is adjusted conveniently, the probe is used for detecting energy of a mercury lamp or an LED lamp, and the yield of UV curing materials on the surface of a product is guaranteed.
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Description

Technical Field

[0001] This application relates to the technical field of UV curing equipment, and more particularly to a probe device and a UV curing device. Background Technology

[0002] With the development of technology, UV curing equipment is applied in industry. UV curing equipment is a device that uses ultraviolet radiation to cure materials. Its working principle is to use ultraviolet light generated by ultraviolet lamps to make inks, coatings, and other paper coated or printed on the surface of materials form, thereby achieving rapid curing. As part of the UV curing equipment, the probe device is used to detect the energy of mercury lamps or LED lamps.

[0003] In the prior art, the probe device includes a base and a probe, the probe is connected to the base, and the probe is fixed relative to the base and cannot be moved. Utility Model Content

[0004] The embodiments of this application provide a probe device and a UV curing equipment. A movable base is movably connected to a base and moves along the length of the base. A swing base is oscillatingly connected to the movable base and swings up and down. The swing base moves with the movement of the movable base. The probe is connected to the swing base and its position is adjusted with the swing of the swing base, so that the probe can move and swing relative to the base through the movable base and the swing base. This facilitates the adjustment of the probe's position relative to the base, avoids the probe being in a fixed state relative to the base, and avoids the need for manual placement of the probe's detection end on the mercury lamp or LED lamp. This improves the working efficiency of the probe device. The probe is used to detect the energy of the mercury lamp or LED lamp, ensuring the yield rate of the UV-cured material on the product surface.

[0005] Other features and advantages of this application will become apparent from the following detailed description, or may be learned in part from practice of this application.

[0006] To achieve the above objectives, the present invention provides a solution: a probe device applied to a UV curing equipment, the probe device comprising:

[0007] Base;

[0008] A movable base is movably connected to the base and moves along the length of the base;

[0009] A swing seat is oscillatingly connected to the movable seat and swings in the up-down direction; the swing seat moves as the movable seat moves.

[0010] The probe, connected to the swing base, adjusts its position as the swing base swings. The probe is used to detect the energy of a mercury lamp or an LED lamp.

[0011] Optionally, the probe device further includes a first power component disposed between the base and the movable seat; the first power component applies a moving force to the movable seat and drives the movable seat to move relative to the base.

[0012] Optionally, the first power assembly includes a motor and a synchronous belt drive module; the fixed end of the motor is connected to the base.

[0013] The output end of the motor is connected to one end of the synchronous belt drive module, and drives the synchronous belt in the synchronous belt drive module to rotate.

[0014] The movable seat is connected to the timing belt and moves along the length of the base as the timing belt rotates.

[0015] Optionally, a clamping seat is provided between the movable seat and the timing belt, the clamping seat being connected to the movable seat and clamping the timing belt.

[0016] Optionally, the first power assembly further includes a guide rail located between the base and the movable seat;

[0017] The fixed end of the guide rail is connected to the base, and the movable end of the guide rail is connected to the movable seat.

[0018] Optionally, the probe device further includes a second power component, which is located between the movable base and the swing base; the fixed end of the second power component is connected to the movable base, and the swing end of the second power component is connected to the swing base, thereby driving the swing base to swing relative to the movable base.

[0019] Optionally, the second power component is a rotary cylinder.

[0020] Optionally, the swing seat is arranged in a long arm shape, and there are multiple probes, which are spaced apart along the length of the swing seat.

[0021] Optionally, the probe is an energy probe.

[0022] To achieve the above objectives, the present invention provides a solution: a UV curing device, including the aforementioned probe device.

[0023] Compared with the prior art, the beneficial effects of the embodiments of this utility model are:

[0024] This utility model embodiment provides a probe device and a UV curing equipment. A movable base is movably connected to a base and moves along the length of the base; a swing base is oscillatingly connected to the movable base and swings up and down; the swing base moves with the movement of the movable base; the probe is connected to the swing base and its position is adjusted with the swing of the swing base, so that the probe can move and swing relative to the base through the movable base and the swing base. The probe is used to detect the energy of a mercury lamp or an LED lamp, ensuring the yield rate of UV-cured materials on the product surface.

[0025] Furthermore, the UV curing equipment in this embodiment is essentially a UV curing equipment that integrates multi-point following energy detection. It also has an energy following detection function, which can be used for energy detection of mercury lamps and LED lamps. It is compatible with various similar UV curing ovens, including single-lamp, multi-lamp, and top-and-bottom contrast UV curing ovens. It has high adaptability, reduces manpower and material resources in the workshop, builds intelligent production, and improves the yield rate of finished products. Attached Figure Description

[0026] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. It is obvious that the drawings described below are merely some embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any inventive effort. In the drawings:

[0027] Figure 1 A schematic diagram of a probe device according to an embodiment of this application is shown;

[0028] Figure 2 for Figure 1 A magnified view of a section of A in the center;

[0029] Figure 3 A schematic diagram showing the connection between the base and the movable seat of a probe device according to an embodiment of this application is shown;

[0030] Figure 4 A schematic diagram showing the connection between the swing base and the probe of a probe device according to an embodiment of this application is shown;

[0031] Figure 5 for Figure 4 A magnified view of the area from B in the center.

[0032] Figure Labels

[0033] 100. Probe device;

[0034] 10. Base;

[0035] 20. Movable seat; 21. Clamping seat;

[0036] 30. Swinging seat;

[0037] 40. Probe;

[0038] 50. First power component; 51. Motor; 52. Synchronous belt drive module; 53. Guide rail;

[0039] 60. Second power component. Detailed Implementation

[0040] Exemplary embodiments will now be described more fully with reference to the accompanying drawings. However, these exemplary embodiments can be implemented in many forms and should not be construed as limited to the examples set forth herein; rather, these embodiments are provided to make this application more comprehensive and complete, and to fully convey the concept of the exemplary embodiments to those skilled in the art.

[0041] Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments. Numerous specific details are provided in the following description to give a thorough understanding of embodiments of this application. However, those skilled in the art will recognize that the technical solutions of this application can be practiced without one or more of the specific details, or other methods, components, apparatuses, steps, etc., can be employed. In other instances, well-known methods, apparatuses, implementations, or operations are not shown or described in detail to avoid obscuring various aspects of this application.

[0042] The block diagrams shown in the accompanying drawings are merely functional entities and do not necessarily correspond to physically independent entities. That is, these functional entities can be implemented in software, in one or more hardware modules or integrated circuits, or in different network and / or processor devices and / or microcontroller devices.

[0043] The flowcharts shown in the accompanying drawings are merely illustrative and do not necessarily include all content and operations / steps, nor do they necessarily have to be performed in the described order. For example, some operations / steps can be broken down, while others can be combined or partially combined; therefore, the actual execution order may change depending on the specific circumstances.

[0044] Please refer to the attached document. Figures 1-2 This application provides a probe device 100 for detecting the energy of a mercury lamp or an LED lamp.

[0045] Please refer to the attached document. Figures 1-2In the embodiments of this application, the probe device 100 includes a base 10, a movable seat 20, a swing seat 30, and a probe 40. The movable seat 20 is movably connected to the base 10 and moves along the length of the base 10. The swing seat 30 is oscillatingly connected to the movable seat 20 and swings in the up-down direction. The swing seat 30 moves with the movement of the movable seat 20. The probe 40 is connected to the swing seat 30 and its position is adjusted with the swing of the swing seat 30, so that the probe 40 can move and swing relative to the base 10 through the movable seat 20 and the swing seat 30. This facilitates the adjustment of the position of the probe 40 relative to the base 10, avoids the probe 40 being in a fixed state relative to the base 10, and avoids the need for the probe 40 to be placed one by one by the mercury lamp or LED lamp under human intervention. This improves the working efficiency of the probe device 100. The probe 40 is used to detect the energy of the mercury lamp or LED lamp, ensuring the yield rate of the mercury lamp or LED lamp.

[0046] Please refer to the attached document. Figure 3 Please refer to the appendix. Figure 5 In the embodiments of this application, the base 10 serves as a support component of the probe device 100, and the base 10 is used to support the movable seat 20, the swing seat 30, and the probe 40. The base 10 is arranged in the lateral direction, which is not specifically limited here.

[0047] In the embodiments of this application, the movable seat 20 is disposed on the upper side of the base 10. The movable seat 20 is movably connected to the base 10 and moves along the length direction of the base 10 so as to adjust the position of the movable seat 20 relative to the base 10, thereby facilitating the adjustment of the length position of the movable seat 20 relative to the base 10.

[0048] Please refer to the attached document. Figures 4-5 In the embodiments of this application, the swing seat 30 is disposed on the outside of the movable seat 20. The swing seat 30 is swayably connected to the movable seat 20 and swings in the up and down direction to adjust the position of the swing seat 30 relative to the movable seat 20, thereby facilitating the adjustment of the up and down position of the swing seat 30 relative to the base 10, so as to realize the swing seat 30 swinging relative to the base 10. The swing seat 30 moves with the movable seat 20 to adjust the length position of the swing seat 30 relative to the base 10, so as to realize that the swing seat 30 can move and swing relative to the base 10.

[0049] Please refer to the attached document. Figures 4-5In the embodiments of this application, the probe 40 is disposed on the outside of the swing seat 30 and connected to the swing seat 30 so that the probe 40 is fixed on the outside of the swing seat 30. The position of the probe 40 is adjusted as the swing seat 30 swings, so that the probe 40 can move and swing relative to the base 10 through the moving seat 20 and the swing seat 30, thereby facilitating the adjustment of the position of the probe 40 relative to the base 10 and avoiding the probe 40 being in a fixed state relative to the base 10. The probe 40 is used to detect the energy of mercury lamps or LED lamps.

[0050] Please refer to the attached document. Figure 3 The probe device 100 also includes a first power component 50, which is disposed between the base 10 and the movable seat 20. The first power component 50 is arranged along the length direction of the base 10. The first power component 50 applies a moving force to the movable seat 20 and drives the movable seat 20 to move relative to the base 10, so that the movable seat 20 can move relative to the base 10 through the first power component 50, thereby facilitating the adjustment of the length position of the movable seat relative to the base 10.

[0051] Please refer to the attached document. Figure 3 The first power assembly 50 includes a motor 51 and a synchronous belt drive module 52. The motor 51 is arranged vertically, and its fixed end is connected to the base 10 so that the motor 51 can be fixed to the base 10. The synchronous belt drive module 52 is arranged along the length of the base 10. The output end of the motor 51 is connected to one end of the synchronous belt drive module 52 and drives the synchronous belt in the synchronous belt drive module 52 to rotate so as to adjust the position of the synchronous belt in the synchronous belt drive module 52. The movable seat 20 is connected to the synchronous belt so as to be fixed to the synchronous belt. The movable seat 20 moves along the length of the base 10 as the synchronous belt rotates so that the movable seat 20 can move relative to the base 10 through the motor 51 and the synchronous belt drive module 52 so as to realize the movement of the movable seat 20 along the length of the base 10.

[0052] Please refer to the attached document. Figure 3 The synchronous belt drive module 52 includes a synchronous belt and two synchronous pulleys. The two synchronous pulleys are arranged at intervals along the length of the base 10. The synchronous belt is sleeved on the two synchronous pulleys. The output end of the motor 51 is connected to either synchronous pulley so that the motor 51 can drive the synchronous belt to rotate via the synchronous pulley.

[0053] Please refer to the attached document. Figure 3 A clamping seat 21 is provided between the movable seat 20 and the timing belt. The clamping seat 21 is located between the movable seat 20 and the timing belt. The clamping seat 21 is connected to the movable seat 20 so that the clamping seat 21 can be fixed to the movable seat 20. The clamping seat 21 clamps the timing belt so that the movable seat 20 can be connected to the timing belt through the clamping seat 21, thereby facilitating the movement of the movable seat 20 as the timing belt rotates.

[0054] Please refer to the attached document. Figure 3 The first power assembly 50 also includes a guide rail 53, which is located between the base 10 and the movable seat 20. The guide rail 53 is arranged along the length of the base 10. The fixed end of the guide rail 53 is connected to the base 10, and the movable end of the guide rail 53 is connected to the movable seat 20, so that the movable seat 20 can move relative to the base 10 through the guide rail 53, thereby improving the smoothness of the movement of the movable seat 20 relative to the base 10.

[0055] Please refer to the attached document. Figures 4-5 The probe device 100 also includes a second power component 60, which is located between the movable seat 20 and the swing seat 30. The fixed end of the second power component 60 is connected to the movable seat 20 to fix it in place, and the swing end of the second power component 60 is connected to the swing seat 30 to fix it in place. The swing end of the second power component 60 drives the swing seat 30 to swing relative to the movable seat 20, so that the swing seat 30 can swing relative to the movable seat 20 through the second power component 60, thereby facilitating the adjustment of the angle arrangement of the swing seat 30 relative to the movable seat 20. Optionally, the second power component 60 is a rotary cylinder, which drives the swing seat 30 to swing under rotation.

[0056] Please refer to the attached document. Figures 4-5 The swing base 30 is arranged in a long arm shape, and there are multiple probes 40. The multiple probes 40 are arranged at intervals along the length of the swing base 30. By arranging multiple probes 40, the detection efficiency of the probes 40 relative to the mercury lamp or LED lamp is increased, thus improving the detection effect of the probes 40 relative to the mercury lamp or LED lamp. Optionally, the probes 40 are energy probes 40.

[0057] In another embodiment, a UV curing apparatus includes a probe device 100, which is part of a UV curing apparatus, a device that uses ultraviolet radiation to cure materials.

[0058] Compared with the prior art, the beneficial effects of this utility model are:

[0059] This utility model provides a probe device 100 and a UV curing device. A movable base 20 is movably connected to a base 10 and moves along the length of the base 10. A swing base 30 is swayably connected to the movable base 20 and swings up and down. The swing base 30 moves with the movement of the movable base 20. A probe 40 is connected to the swing base 30 and its position is adjusted with the swing of the swing base 30, so that the probe 40 can move and swing relative to the base 10 through the movable base 20 and the swing base 30, thereby facilitating the adjustment of the position of the probe 40 relative to the base 10. The probe 40 is used to detect the energy of a mercury lamp or an LED lamp, ensuring the yield of UV-cured materials on the product surface.

[0060] Furthermore, the UV curing equipment in this embodiment is essentially a UV curing equipment that integrates multi-point following energy detection. It also has an energy following detection function, which can be used for energy detection of mercury lamps and LED lamps. It is compatible with various similar UV curing ovens, including single-lamp, multi-lamp, and top-and-bottom contrast UV curing ovens. It has high adaptability, reduces manpower and material resources in the workshop, builds intelligent production, and improves the yield of finished products.

[0061] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0062] In the description of this application, the terms "second" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "second" or "second" may explicitly or implicitly include one or more features.

[0063] 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 probe device, characterized in that, The probe device, used in UV curing equipment, includes: Base; A movable base is movably connected to the base and moves along the length of the base; A swing seat is oscillatingly connected to the movable seat and swings in the up-down direction; the swing seat moves as the movable seat moves. The probe, connected to the swing base, adjusts its position as the swing base swings. The probe is used to detect the energy of a mercury lamp or an LED lamp.

2. The probe device according to claim 1, characterized in that, The probe device further includes a first power component, which is disposed between the base and the movable seat; the first power component applies a moving force to the movable seat and drives the movable seat to move relative to the base.

3. The probe device according to claim 2, characterized in that, The first power assembly includes a motor and a synchronous belt drive module; the fixed end of the motor is connected to the base; The output end of the motor is connected to one end of the synchronous belt drive module, and drives the synchronous belt in the synchronous belt drive module to rotate. The movable seat is connected to the timing belt and moves along the length of the base as the timing belt rotates.

4. The probe device according to claim 3, characterized in that, A clamping seat is provided between the movable seat and the timing belt. The clamping seat is connected to the movable seat and clamps the timing belt.

5. The probe device according to claim 4, characterized in that, The first power assembly also includes a guide rail, which is located between the base and the movable seat; The fixed end of the guide rail is connected to the base, and the movable end of the guide rail is connected to the movable seat.

6. The probe device according to claim 1, characterized in that, The probe device further includes a second power component, which is located between the movable base and the swing base; the fixed end of the second power component is connected to the movable base, and the swing end of the second power component is connected to the swing base, thereby driving the swing base to swing relative to the movable base.

7. The probe device according to claim 6, characterized in that, The second power component is a rotary cylinder.

8. The probe device according to claim 1, characterized in that, The swing seat is arranged in the shape of a long arm, and there are multiple probes, which are spaced apart along the length of the swing seat.

9. The probe device according to claim 1, characterized in that, The probe is an energy probe.

10. A UV curing device, characterized in that, Includes the probe device as described in any one of claims 1 to 9.