Orthodontic appliance detection device

Through the orthodontic correction device detection device that integrates lighting components and multi-functional parts, the problems of dim vision and single function of traditional orthopedic mirrors are solved, adaptive lighting and operation are integrated, the orthodontic treatment process is simplified, and the treatment efficiency and patient experience are improved.

CN120436552APending Publication Date: 2025-08-08SHENZHEN NANSHAN MATERNAL & CHILD HEALTH HOSPITAL
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Patent Information

Application Number
CN202510589958.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

Traditional orthodontic oral mirrors rely on external light sources to illuminate, resulting in dim vision or uneven reflection, and a single function. They require frequent switching of tools to extend treatment time and increase patient discomfort.

Method used

A detection device for orthodontic correction equipment is designed, integrating lighting components with multifunctional parts (such as oraloscopes and probes), and functional switching is achieved through threaded connections or slide rail structures, providing integrated adaptive lighting and operation.

Benefits of technology

Simplified the operation process, improved the intraoral light adequacy, reduced tool switching steps, and optimized patient experience and treatment efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an orthodontic appliance detection device, and relates to the technical field of detection equipment, and the orthodontic appliance detection device comprises a connection main body which is provided with a first installation end and a second installation end which are oppositely arranged; the first functional part is detachably connected to the first mounting end; the second functional part is detachably connected to the second mounting end, and the first functional part and the second functional part can enable the connecting main body to have different functions; the lighting assembly is detachably installed on the connecting body, and the irradiation end of the lighting assembly can be arranged towards the first installation end or the second installation end. According to the technical scheme, the problem that an existing orthodontic appliance detection device is single in function can be solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of detection equipment, and in particular to an orthodontic correction appliance detection device. Background Art

[0002] In orthodontic treatment, a mouth mirror is one of the core tools for doctors in daily diagnosis and treatment. It is used to observe the deep structures of the patient's mouth (such as the posterior teeth area, occlusal surface, etc.) and assist in checking the wearing of braces, tooth arrangement and occlusal relationship. However, traditional orthodontic mouth mirrors have the following limitations:

[0003] 1. Illumination relies on external light sources: Traditional mouth mirrors rely on external headlights or surgical lights to reflect light, which is easily affected by ambient light, resulting in dim vision or uneven reflection, affecting the doctor's observation accuracy of details (such as bracket bonding position, archwire ligation status, and adhesive overflow).

[0004] 2. Single function: Existing mouth mirrors only have the function of reflection observation. Doctors need to frequently switch tools (such as needle holders, probes, lighting equipment, etc.) to open and close the orthodontic appliance (such as opening the ligature and adjusting the archwire), which prolongs the treatment time and increases the patient's discomfort. Summary of the Invention

[0005] In order to solve at least one of the above-mentioned technical problems, the present invention provides an orthodontic appliance detection device.

[0006] To achieve the above objectives, the present invention provides an orthodontic appliance detection device, comprising:

[0007] The connecting body is provided with a first mounting end and a second mounting end which are arranged opposite to each other;

[0008] a first functional component, detachably connected to the first mounting end;

[0009] a second functional component detachably connected to the second mounting end, wherein the first functional component and the second functional component enable the connection body to have different functions;

[0010] The lighting assembly is detachably mounted on the connecting body, and the illumination end of the lighting assembly can be arranged toward the first mounting end or the second mounting end.

[0011] In one embodiment, the first functional component includes a first connecting portion and a first functional portion connected to each other, and the first connecting portion is detachably connected to the first mounting end;

[0012] And / or, the second functional component includes a second connecting portion and a second functional portion that are connected to each other, and the second functional portion is detachably connected to the second mounting end.

[0013] In one embodiment, the first functional component is threadedly connected to the first mounting end;

[0014] And / or, the second functional component is threadedly connected to the second mounting end.

[0015] In one embodiment, the connecting body is provided with a first slide rail, and the first slide rail is provided along the extension direction of the connecting body;

[0016] The lighting assembly includes a mounting tube sleeved on the connecting body and a lighting portion mounted on the mounting tube. The mounting tube is plugged into the first slide rail and can slide along the first slide rail. The lighting portion can rotate on the mounting tube.

[0017] A first positioning structure is provided between the installation tube and the connecting body, and the first positioning structure is used to position the installation tube on the connecting body.

[0018] In one embodiment, the first positioning structure includes a first screw installed on the mounting tube, and the first screw is pressed against the connecting body to position the mounting tube on the connecting body.

[0019] In one embodiment, the first positioning structure includes a plurality of first positioning grooves provided on the first slide rail and a first elastic portion provided on the mounting tube. The plurality of first positioning grooves are evenly distributed along the extension direction of the first slide rail. The first elastic portion can be inserted into any of the first positioning grooves and push the mounting tube to move the first elastic portion out of one of the first positioning grooves.

[0020] In one embodiment, the lighting assembly further comprises a rotating portion having a cylindrical structure, the rotating portion being mounted on the mounting tube and being rotatable around an axis of the mounting tube, the lighting portion being mounted on the rotating portion and being rotatable on the rotating portion;

[0021] A second positioning structure is provided between the rotating part and the mounting tube, and the second positioning structure is used to position the rotating part on the mounting tube.

[0022] In one embodiment, the mounting tube is provided with a second slide rail, the rotating portion is plugged into the second slide rail, and the second slide rail is extended along the circumferential direction of the mounting tube.

[0023] In one embodiment, the second positioning structure includes a second screw installed on the rotating portion, and the second screw is pressed against the connecting body to position the mounting cylinder on the connecting body.

[0024] In one embodiment, the second positioning structure includes a plurality of second positioning grooves provided on the second slide rail and a second elastic portion provided on the rotating portion. The plurality of second positioning grooves are evenly distributed along the extension direction of the second slide rail. The second elastic portion can be inserted into any second positioning groove and push the mounting tube to move the second elastic portion out of one of the second positioning grooves.

[0025] The technical solution of the present invention is to install a lighting component, a first functional component, and a second functional component on the connecting body. At this time, when the staff operates the connecting body, they can switch between different functions through the first functional component and the second functional component. For example, when checking the status of the arch wire with a mouth mirror and adjusting the arch wire with a probe, only one detection device is needed for inspection and adjustment, and there is no need to hold an additional lighting device. The doctor can free up his other hand, simplifying the operation. The doctor does not need to hold a mouth mirror or a probe in one hand and a lighting device (flashlight) in the other hand. At the same time, when the doctor needs to use both hands to operate the inspection (the probe and the mouth mirror work together to check the arch wire, or to check the arch wire set in the teeth. It should be noted that the inside of the teeth is the side of the teeth close to the tongue), because the detection devices on both hands have lighting components, the doctor can obtain better lighting function during operation, so that the light in the oral cavity is more sufficient, which can avoid the problem of dim vision, and thus solve the technical problems existing in the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0027] Figure 1 A schematic structural diagram of an embodiment of an orthodontic appliance detection device provided by the present invention;

[0028] Figure 2 for Figure 1 A partial enlarged view of point A in the middle;

[0029] Figure 3 A schematic structural diagram of another embodiment of the orthodontic appliance detection device provided by the present invention;

[0030] Figure 4 A schematic structural diagram of another embodiment of the orthodontic appliance detection device provided by the present invention;

[0031] Figure 5 for Figure 1 A magnified view of the lighting assembly;

[0032] Figure 6 This is a structural schematic diagram of an embodiment of the installation cylinder, connecting body, rotating part, first positioning structure and second positioning structure in the orthodontic correction appliance detection device provided by the present invention.

[0033] Description of Figure Numbers:

[0034] 100, connecting body; 110, first mounting end; 120, second mounting end; 130, first slide rail;

[0035] 200, first functional part; 210, first connecting part; 220, first functional part;

[0036] 300, second functional part; 310, second connecting part; 320, second functional part;

[0037] 400, lighting assembly; 410, mounting tube; 420, lighting unit; 430, rotating unit; 440, second slide rail; 450, rotating shaft;

[0038] 500, first positioning structure; 510, first positioning groove; 520, first elastic portion;

[0039] 600, second positioning structure; 610, second positioning groove; 620, second elastic portion;

[0040] 700. The third functional component.

[0041] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0042] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0043] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0044] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited to "first" and "second" may explicitly or implicitly include at least one of such features. In addition, if "and / or" or "and / or" appears in the full text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions that satisfy both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0045] In orthodontic treatment, a mouth mirror is one of the core tools for doctors in daily diagnosis and treatment. It is used to observe the deep structures of the patient's mouth (such as the posterior teeth area, occlusal surface, etc.) and assist in checking the wearing of braces, tooth arrangement and occlusal relationship. However, traditional orthodontic mouth mirrors have the following limitations:

[0046] 1. Illumination relies on external light sources: Traditional mouth mirrors rely on external headlights or surgical lights to reflect light, which is easily affected by ambient light, resulting in dim vision or uneven reflection, affecting the doctor's observation accuracy of details (such as bracket bonding position, archwire ligation status, and adhesive overflow).

[0047] 2. Single function: Existing mouth mirrors only have the function of reflection observation. Doctors need to frequently switch tools (such as needle holders, probes, lighting equipment, etc.) to open and close the orthodontic appliance (such as opening the ligature and adjusting the archwire), which prolongs the treatment time and increases the patient's discomfort.

[0048] To address the above pain points, there is an urgent need for an integrated orthodontic appliance detection device that integrates lighting and appliance operation functions to reduce operational complexity and optimize patient experience.

[0049] The present invention provides an orthodontic correction appliance detection device.

[0050] See also Figure 1 In one embodiment of the present invention, the orthodontic appliance detection device includes: a connecting body 100, a first functional part 200, a second functional part 300, and a lighting assembly 400; wherein the connecting body 100 is provided with a first mounting end 110 and a second mounting end 120 that are arranged opposite to each other; further, in some embodiments, the connecting body 100 is configured as a long rod structure, wherein an anti-slip structure is provided on the outer side of the connecting body 100, and the anti-slip structure can be an anti-slip groove or an anti-slip protrusion;

[0051] Specifically, the first functional component 200 is detachably connected to the first mounting end 110; the second functional component 300 is detachably connected to the second mounting end 120, wherein the first functional component 200 and the second functional component 300 enable the connection body 100 to have different functions. It should be noted that the first functional component 200 can function as a probe, that is, the first functional component 200 with a probe function is detachably connected to the first mounting end 110 of the connection body 100. Furthermore, in some embodiments, the first functional component 200 and the first mounting end 110 are connected by threads. Specifically, the first mounting end 110 has a thread groove, and the first functional component 200 has threads. Furthermore, the second functional component 300 can function as a dental mirror, that is, the second functional component 300 with a dental mirror function is detachably connected to the second end of the connection body 100. In some embodiments, the second functional component 300 and the second mounting end 120 are connected by threads. However, the present application is not limited thereto. In some embodiments, the functional member may also adopt other structures, such as a third functional member 700 (see FIG. 1 ) capable of opening the orthodontic self-locking bracket switch structure. Figure 3 ), the third functional part 700 has a flat end, specifically, the flat end can be pushed or rotated to open the orthodontic self-locking bracket switch structure. By connecting the main body 100 and combining different functional parts, the orthodontic correction appliance detection device has a variety of combination methods when used, so that the staff can combine the detection device suitable for their own needs (reference Figure 3 、 Figure 4 ).

[0052] Furthermore, the lighting assembly 400 can be detachably mounted on the connecting body 100, wherein the illumination end of the lighting assembly 400 can be arranged toward the first mounting end 110 or the second mounting end 120. In some embodiments, the lighting assembly 400 includes a lamp bead, a mounting base, a power supply, and a power switch, wherein the power supply, the power switch, and the lamp bead are all arranged on the mounting base, wherein the power supply can supply power to the lamp bead, and the power switch can control the power to be turned on, wherein the mounting base is pluggable connected to the connecting body 100, specifically, a plurality of plug-in slots (not shown) are provided on the connecting body 100, wherein when the mounting base is connected to the plug-in slots at different positions, the position of the lighting assembly 400 on the connecting body 100 can be adjusted, wherein, when it is necessary to adjust the illumination end of the lighting assembly 400, the lighting assembly 400 can be removed from the plug-in slot, and then the illumination end of the lighting assembly 400 can be rotated so that it From the first mounting end 110 to the second mounting end 120, it should be further explained that in this embodiment, by installing the lighting assembly 400, the first functional part 200, and the second functional part 300 on the connecting body 100, the staff can switch between different functions through the first functional part 200 and the second functional part 300 when operating the connecting body 100. For example, when checking the status of the archwire with a mouth mirror and adjusting the archwire with a probe, only one detection device is required for inspection and adjustment, without the need for a separate handheld lighting device. This frees up the doctor's other hand, simplifying the operation and eliminating the need for the doctor to hold a mouth mirror or probe in one hand and a lighting device (flashlight) in the other. At the same time, when the doctor needs to operate with both hands (using the probe and mouth mirror to operate together to inspect the archwire, or to inspect the archwire set in the teeth, it should be noted that the inner teeth are the side of the teeth close to the tongue), because the detection devices on both hands have the lighting assembly 400, the doctor can obtain better lighting function during operation, so that the light in the oral cavity is more sufficient, which can avoid the problem of dim vision, and thus solve the technical problems existing in the prior art.

[0053] At the same time, since the lighting assembly 400 is provided on the connecting body 100, the doctor can omit the step of switching the lighting assembly 400 when switching instruments, which can reduce the steps of switching tools and thus achieve the purpose of shortening time.

[0054] Furthermore, when the staff is testing the orthodontic braces through the first functional part 200 or the second functional part 300, they can provide auxiliary lighting for the oral cavity under the action of the lighting component 400. At this time, the indoor lighting can be adjusted to be relatively weaker to reduce the light intensity, thereby reducing the discomfort caused by strong light to the patient's eyes and further optimizing the patient experience. Of course, in order to further improve the lighting effect, the lighting component 400 can be set close to the first mounting end 110 or the second mounting end 120 when in use to improve the lighting effect of the lighting component 400 on the oral cavity. In this way, with the assistance of the lighting component 400, it is convenient for the staff to improve visual recognition. It should be noted that since the irradiation end of the lighting component 400 is set toward the first mounting end 110 or the second mounting end 120, when the staff uses the first functional part 200 or the second functional part 300 to perform an inspection operation, the irradiation end of the lighting component 400 can move with the movement of the functional part, that is, it can move with the movement of the mounting end, so that the lighting component 400 can more intuitively illuminate the inspection area of the functional part, so that the inspection area can be intuitively presented to the staff. Of course, in some embodiments, the lamp beads in the lighting component 400 can be adjusted so that the lamp beads can emit stronger light directly on the inspection area. At this time, the staff can turn off the strong light of the indoor auxiliary lighting to reduce the strong light received by the patient's eyes, thereby optimizing the patient experience.

[0055] In one embodiment, reference Figure 1 , the first functional part 200 includes a first connecting portion 210 and a first functional portion 220 connected to each other, and the first connecting portion 210 is detachably connected to the first mounting end 110. Furthermore, in some embodiments, the first connecting portion 210 is threadedly connected to the first mounting end 110, but the present design is not limited thereto. In some embodiments, the first connecting portion 210 and the first mounting end 110 can also be plug-in connected, wherein the first connecting portion 210 and the first mounting end 110 are transitionally matched, so as to prevent the first connecting portion 210 from falling off the first mounting end 110. Of course, in order to further improve the connection stability between the first connecting portion 210 and the first mounting end 110, after the first connecting portion 210 and the first mounting end 110 are plugged in, the two can also be fixed together by means of screws or pins. It should be noted that when the first functional part 200 has a probe function, the first functional portion 220 is configured as a probe structure.

[0056] In one embodiment, reference Figure 1The second functional component 300 includes a second connecting portion 310 and a second functional portion 320, which are connected to each other. The second functional portion 320 is detachably connected to the second mounting end 120. In one embodiment, the second functional component 300 is threadedly connected to the second mounting end 120. It should be noted that the connection method between the second connecting portion 310 and the second mounting end 120 can refer to the connection method between the first connecting portion 210 and the first mounting end 110 described above. When the second functional component 300 has the function of an oral mirror, the second functional portion 320 is configured as an oral mirror structure.

[0057] Furthermore, it should be emphasized that since the first functional part 200 and the second functional part 300 are both detachably connected to the connecting body 100, if the first functional part 200 or the second functional part 300 is damaged and needs to be replaced, only the first functional part 200 or the second functional part 300 can be replaced, and the connecting body 100 does not need to be replaced. Similarly, the same is true for the lighting assembly 400. It should be noted that when the functional part can also adopt other structures, such as the third functional part 700 that can open the orthodontic self-locking bracket switch structure, the flat end of the third functional part 700 is easily worn and deformed during use. After wear and deformation, it is not easy to open the orthodontic self-locking bracket switch structure. In this case, only the functional part needs to be replaced, and the entire detection device does not need to be replaced.

[0058] In one embodiment, reference Figure 1 The lighting assembly 400 can slide along the extension direction of the connecting body 100 and can be positioned at the position required by the staff. Specifically, the connecting body 100 is provided with a first slide rail 130, and the first slide rail 130 is provided along the extension direction of the connecting body 100. Furthermore, the first slide rail 130 can be a track structure protruding from the surface of the connecting body 100, or a groove structure recessed in the surface of the connecting body 100. It should also be noted that when the connecting body 100 is configured as a polygonal prism structure, the first slide rail 130 can be the connecting body 100 itself.

[0059] Further, refer to Figure 5 、 Figure 6The lighting assembly 400 includes a mounting tube 410 that is sleeved on the connecting body 100 and a lighting portion 420 that is mounted on the mounting tube 410. The mounting tube 410 is plugged into the first slide rail 130 and can slide along the first slide rail 130. When the first slide rail 130 is configured as a rail structure, the mounting tube 410 is sleeved on the outside of the connecting body 100. At this time, a guide groove is provided on the inner wall of the mounting tube 410 to cooperate with the rail structure, and the rail structure is inserted into the guide groove. When the first slide rail 130 is configured as a groove structure, a guide block is protruding from the inner wall of the mounting tube 410, and the guide block is inserted into the groove structure. When the mounting tube 410 is configured as a polygonal column structure, the inner wall surface of the mounting tube 410 is configured as a polygonal column structure. The lighting part 420 can rotate on the mounting tube 410. It should be noted that the lighting part 420 is installed on the outside of the mounting tube 410 through the rotating shaft 450, wherein the illumination end is arranged on the lighting part 420, and the lighting part 420 can rotate around the axis of the rotating shaft 450, so that the illumination end can be adjusted by the rotating shaft 450. Furthermore, in order to make the adjusted illumination end have a better positioning effect, the lighting part 420 can be fixed to the rotating shaft 450, and the rotating shaft 450 and the mounting tube 410 can be transitionally matched. Specifically, the rotating shaft 450 and the mounting tube 410 are plugged in and transitionally matched.

[0060] A first positioning structure 500 is provided between the mounting tube 410 and the connecting body 100. The first positioning structure 500 is used to position the mounting tube 410 on the connecting body 100. It should be noted that, through the first positioning structure 500, the staff operates the mounting tube 410 to slide on the connecting body 100. After sliding to the specified position, the mounting tube 410 can be positioned at the specified position through the first positioning structure 500.

[0061] In one embodiment, the first positioning structure 500 includes a first screw (not shown) installed in the mounting tube 410. The first screw abuts against the connecting body 100 to position the mounting tube 410 on the connecting body 100. It should be noted that when the first positioning structure 500 includes the first screw, positioning the mounting tube 410 on the connecting body 100 only requires tightening the first screw so that the first screw abuts against the outside of the connecting body 100. The mounting tube 410 is then positioned on the connecting body 100 through friction. When the position of the mounting tube 410 needs to be adjusted, the first screw can be loosened.

[0062] In one embodiment, reference Figure 5 、 Figure 6The first positioning structure 500 includes a plurality of first positioning grooves 510 provided on the first slide rail 130 and a first elastic portion 520 provided on the mounting tube 410. The plurality of first positioning grooves 510 are evenly distributed along the extension direction of the first slide rail 130. The first elastic portion 520 can be inserted into any of the first positioning grooves 510, pushing the mounting tube 410 to remove the first elastic portion 520 from a first positioning groove 510. Furthermore, when the first slide rail 130 is configured as a track structure, the plurality of first positioning grooves 510 are provided in the track structure, and the corresponding first elastic portion 520 is provided in a groove on the mounting tube 410. When the first slide rail 130 is configured as a groove structure, the plurality of first positioning grooves 510 are provided in the groove structure, and the corresponding first elastic portion 520 is provided on the guide block. When the connecting body 100 is configured as a polygonal column structure, the plurality of first positioning grooves 510 are provided on the first side surface of the polygonal column structure, and the first elastic portion 520 is provided on the inner wall of the mounting tube 410. Furthermore, in some embodiments, the first elastic portion 520 may be a positioning glass bead, but the present design is not limited thereto. In other embodiments, the first elastic portion 520 may be a spring. It should be noted that when the first positioning structure 500 includes the first elastic portion 520, it is relatively simple and more convenient for the operator to adjust the position of the mounting tube 410 without having to tighten or loosen the first screw.

[0063] In one embodiment, reference Figure 5 、 Figure 6 The lighting assembly 400 further includes a rotating portion 430, which is mounted on the mounting tube 410 and is rotatable about the axis of the mounting tube 410. The lighting unit 420 is mounted on the rotating portion 430 and is rotatable on the rotating portion 430. A second positioning structure 600 is provided between the rotating portion 430 and the mounting tube 410, and the second positioning structure 600 is used to position the rotating portion 430 on the mounting tube 410. Furthermore, in some embodiments, the rotating portion 430 can be configured as a cylindrical structure, wherein the rotating portion 430 is sleeved outside the mounting tube 410. In this way, when a staff member operates the connecting body 100 to rotate, in order to make the lighting unit 420 better correspond to the detection area, the staff member can operate the rotating portion 430 to rotate the lighting unit 420 to a certain angle so that the illumination end corresponds to the detection area. At the same time, the second positioning structure 600 can position the lighting unit 420 on the mounting tube 410. In some embodiments, the second positioning structure 600 can be a means of engagement between the rotating portion 430 and the mounting tube 410, such as when the rotating portion 430 and the mounting tube 410 are in transitional engagement. If the operator does not push the rotating portion 430, the rotating portion 430 will remain stationary. If the operator pushes the rotating portion 430, the rotating portion 430 will rotate.

[0064] Furthermore, when the lighting assembly 400 includes a rotating portion 430, the rotating shaft 450 is correspondingly mounted on the rotating portion 430. Furthermore, in some embodiments, in order to facilitate the staff to operate the lighting assembly 400 to rotate, the lighting assembly 400 can be mounted on the rotating portion 430 through a motor (not shown). When the angle of the lighting assembly 400 needs to be adjusted, the lighting assembly 400 can be driven to rotate by the motor. Specifically, the motor is mounted on the rotating portion 430, and the lighting assembly 400 is mounted on the output end of the motor. Alternatively, the motor is mounted on the lighting assembly 400, and the output end of the motor is mounted on the rotating portion 430. It should be noted that in this embodiment, the motor adopts a low-speed motor, wherein the power supply of the motor can be shared with the power supply in the lighting assembly 400. Furthermore, the power supply in the lighting assembly 400 can be a detachable power supply, or a power supply with a charging function. At the same time, in order to further improve the operating performance of the motor, an adjustment switch for controlling the motor is also installed on the outside of the rotating part 430. The adjustment switch can control the forward and reverse rotation of the motor to adjust the angle of the lighting assembly 400, thereby avoiding manual adjustment and improving the convenience of the doctor when operating with one hand.

[0065] In one embodiment, reference Figure 5 、 Figure 6 The mounting tube 410 is provided with a second slide rail 440, and the rotating portion 430 is plugged into the second slide rail 440. The second slide rail 440 extends along the circumference of the mounting tube 410. Furthermore, in some embodiments, when the first slide rail 130 is configured as a track structure, the mounting tube 410 is sleeved on the outside of the connecting body 100. In this case, the inner wall of the mounting tube 410 is provided with a guide groove that cooperates with the track structure, and the track structure is inserted into the guide groove. When the first slide rail 130 is configured as a groove structure, the inner wall of the mounting tube 410 is provided with a guide block that protrudes and inserts into the groove structure.

[0066] In one embodiment, the second positioning structure 600 includes a second screw (not shown) mounted on the rotating portion 430. The second screw abuts against the connecting body 100, thereby positioning the mounting tube 410 on the connecting body 100. It should be noted that when the second positioning structure 600 includes a second screw, positioning the mounting tube 410 on the connecting body 100 only requires tightening the second screw so that the second screw abuts against the outside of the connecting body 100. Frictionally positioning the rotating portion 430 on the mounting tube 410 allows the second screw to be loosened to adjust the position of the mounting tube 410.

[0067] In one embodiment, reference Figure 5 、 Figure 6The second positioning structure 600 includes a plurality of second positioning slots 610 provided on the second slide rail 440 and a second elastic portion 620 provided on the rotating portion 430. The plurality of second positioning slots 610 are evenly distributed along the extension direction of the second slide rail 440. The second elastic portion 620 can be inserted into any of the second positioning slots 610, pushing the mounting tube 410 to remove the second elastic portion 620 from a second positioning slot 610. Furthermore, when the second slide rail 440 is configured as a track structure, the plurality of second positioning slots 610 are provided in the track structure, and the corresponding second elastic portions 620 are provided in the grooves on the rotating portion 430. When the second slide rail 440 is configured as a groove structure, the plurality of second positioning slots 610 are provided in the groove structure, and the corresponding second elastic portions 620 are provided on the guide block. Furthermore, in some embodiments, the second elastic portion 620 can be a positioning glass bead, but the present design is not limited thereto. In other embodiments, the second elastic portion 620 can be a spring. It should be noted that when the second positioning structure 600 includes the second elastic portion 620, it is relatively simple and more convenient for the staff to adjust the position of the rotating portion 430, without the need to tighten or loosen the second screw. Furthermore, when the second positioning structure 600 includes the second elastic portion 620 and the first positioning structure 500 includes the first elastic portion 520, when the staff is using the detection device, if the connecting body 100 is rotated, they can use their hands to intervene and drive the first positioning structure 500 or the second positioning structure 600 to adjust the position of the lighting portion 420, thereby improving the convenience of using the detection device.

[0068] The above description is merely an exemplary embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made by utilizing the contents of the present invention's description and drawings under the technical concept of the present invention, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. An orthodontic appliance detection device, characterized in that: include: The connecting body is provided with a first mounting end and a second mounting end which are arranged opposite to each other; a first functional component, detachably connected to the first mounting end; a second functional component detachably connected to the second mounting end, wherein the first functional component and the second functional component enable the connection body to have different functions; The lighting assembly is detachably mounted on the connecting body, and the illumination end of the lighting assembly can be arranged toward the first mounting end or the second mounting end.

2. The orthodontic appliance detection device according to claim 1, wherein: The first functional component includes a first connecting portion and a first functional portion connected to each other, and the first connecting portion is detachably connected to the first mounting end; And / or, the second functional component includes a second connecting portion and a second functional portion that are connected to each other, and the second functional portion is detachably connected to the second mounting end.

3. The orthodontic appliance detection device according to claim 2, characterized in that: The first functional component is threadedly connected to the first mounting end; And / or, the second functional component is threadedly connected to the second mounting end.

4. The orthodontic appliance detection device according to claim 1, wherein: The connecting body is provided with a first slide rail, and the first slide rail is provided along the extension direction of the connecting body; The lighting assembly includes a mounting tube sleeved on the connecting body and a lighting portion mounted on the mounting tube. The mounting tube is plugged into the first slide rail and can slide along the first slide rail. The lighting portion can rotate on the mounting tube. A first positioning structure is provided between the installation tube and the connecting body, and the first positioning structure is used to position the installation tube on the connecting body.

5. The orthodontic appliance detection device according to claim 4, characterized in that: The first positioning structure includes a first screw installed on the installation tube, and the first screw is pressed against the connection body to position the installation tube on the connection body.

6. The orthodontic appliance detection device according to claim 4, characterized in that: The first positioning structure includes a plurality of first positioning grooves provided on the first slide rail and a first elastic portion provided on the mounting tube. The plurality of first positioning grooves are evenly distributed along the extension direction of the first slide rail. The first elastic portion can be inserted into any of the first positioning grooves and push the mounting tube to move the first elastic portion out of one of the first positioning grooves.

7. The orthodontic appliance detection device according to claim 4, characterized in that: The lighting assembly further comprises a rotating portion of a cylindrical structure, the rotating portion being mounted on the mounting tube and being capable of rotating around the axis of the mounting tube, the lighting portion being mounted on the rotating portion and being capable of rotating on the rotating portion; A second positioning structure is provided between the rotating part and the mounting tube, and the second positioning structure is used to position the rotating part on the mounting tube.

8. The orthodontic appliance detection device according to claim 7, characterized in that: The mounting tube is provided with a second slide rail, the rotating portion is plugged into the second slide rail, and the second slide rail is extended along the circumferential direction of the mounting tube.

9. The orthodontic appliance detection device according to claim 8, characterized in that: The second positioning structure includes a second screw installed on the rotating part, and the second screw is pressed against the connecting body to position the mounting cylinder on the connecting body.

10. The orthodontic appliance detection device according to claim 8, characterized in that: The second positioning structure includes a plurality of second positioning grooves provided on the second slide rail and a second elastic portion provided on the rotating portion. The plurality of second positioning grooves are evenly distributed along the extension direction of the second slide rail. The second elastic portion can be inserted into any second positioning groove and push the mounting tube to move the second elastic portion out of a second positioning groove.

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