Detection cover mechanism and treatment equipment
Through the movable connection design of the support and the closure assembly, the operation inconvenience caused by the filling closure of the silicone cover is solved, and the convenient closure and openness of the detection hole is achieved, which improves the operation efficiency and appearance maintenance of the laser treatment equipment.
Patent Information
- Application Number
- CN202422403276.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In existing laser treatment equipment, the silicone cover is plugged into the detection hole by filling, resulting in inconvenient operation and affecting the operation efficiency. The silicone cover is prone to aging and contaminated with dust, affecting the appearance of the equipment.
The movable connection design of the support and the closure assembly is adopted. The support is installed on the edge of the detection hole. The closure assembly realizes the closure or openness of the detection hole through rotation, sliding or disassembly to avoid the filling closure of the silicone cover.
Improves operating efficiency, prevents dust from entering, keeps the interior of the equipment clean, and improves the user experience.
Smart Images

Figure CN223154385U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, and particularly relates to a detection cover mechanism and a treatment device. Background Technique
[0002] The treatment device emits energy to the human body to achieve the treatment effect, such as a laser treatment device. Generally, before emitting light to the human body, it is necessary to detect the light emission parameters such as the power and frequency of the laser to ensure the treatment quality.
[0003] In the related art, the laser treatment device includes a test host, a treatment handpiece and a silica gel cover. Among them, a detection hole is provided through the housing of the test host, and the treatment handpiece has a light emitting part for emitting laser. In the non-detection state, the end of the silica gel cover is elastically filled in the test hole to prevent dust from running into the housing through the detection hole and causing pollution. When laser detection is required, the entire silica gel cover is removed, and the light emitting part of the treatment handpiece is docked and oriented towards the test hole, so that the laser can be shot into the housing through the test hole, and subsequent parameter detection can be carried out.
[0004] However, since the silica gel cover is placed in the test hole by filling, it is not convenient to close or open the test hole, resulting in a reduction in operation efficiency. Content of the Utility Model
[0005] The main purpose of the utility model is to propose a detection cover mechanism, aiming to avoid the filling type closure of the silica gel cover to improve the operation efficiency.
[0006] To achieve the above purpose, the detection cover mechanism proposed by the utility model is applied to a test host. A detection hole is provided through the housing of the test host. The detection cover mechanism includes a support member and a closing component. The support member is used to be installed at the edge of the detection hole; the closing component is movably connected to the support member to close the detection hole.
[0007] In one embodiment, the support member is used to surround the opening periphery of the detection hole. A central hole axially communicating with the detection hole is provided through the support member. The closing component is movably connected to the opening periphery of the central hole to cover the central hole.
[0008] In one embodiment, the closing component includes a plurality of covering members. The plurality of covering members are respectively movably connected to the outer periphery of the support member and are circumferentially spaced apart to jointly cover the central hole.
[0009] In one embodiment, each of the covering members includes a connecting rod and a planetary plate, one end of the connecting rod is swingably connected to the outer periphery of the support member, and the other end is connected to the end of the planetary plate. The plurality of planetary plates are respectively driven by the swing of each of the connecting rods to move toward the direction of mutual splicing so as to cover the center hole together.
[0010] In one embodiment, the support member is further provided with a plurality of guide holes, and the plurality of guide holes are circumferentially spaced and located at the outer periphery of the support member. Each of the planetary plates is provided with a sliding portion on the surface facing the support member, and one of the sliding portions is movably inserted into one of the guide holes to enable the plurality of planetary plates to be slidably spliced.
[0011] In one embodiment, a plurality of first limiting holes are formed on the outer periphery of the support member, a swing portion is protruded from one end of each connecting rod, and one swing portion is inserted into one of the first limiting holes so that the connecting rod can swing around the first limiting hole.
[0012] In one embodiment, the support member is rotatably connected to the shell, and the detection cover mechanism also includes a toggle member, one end of which is connected to the support member. By toggling the other end of the toggle member, the support member is driven to rotate, and the transmission drives the multiple connecting rods to swing respectively.
[0013] In one embodiment, the detection cover mechanism further includes an elastic member, one end of which is used to connect to the housing, and the other end is connected to the toggle member, and the toggle member drives the support member to reset and rotate under the tension of the elastic member, so that the multiple connecting rods drive the multiple planetary plates to swing in the direction of mutual splicing. And / or, the support member is located in the housing, and the housing is penetrated by a toggle hole spaced apart from the detection hole, and the toggle hole extends along the rotation direction of the support member, and the end of the toggle member away from the support member passes through the toggle hole.
[0014] In one embodiment, the surfaces of two adjacent planetary pieces used for splicing are respectively a first splicing surface and a second splicing surface, the first splicing surface and the second splicing surface are tilted upward along the angle direction of the thickness direction of one of the planetary pieces, and the second splicing surface is tilted downward along the angle direction of the thickness direction of the other planetary piece, so that the two adjacent planetary pieces are spliced with interference fit.
[0015] The utility model also proposes a therapeutic device, which includes a test host, a therapeutic hand tool and the detection cover mechanism as described above, wherein the test host includes a shell and a detection module, the shell is penetrated by a detection hole, and the detection module is arranged in the shell; the support member is installed on the edge of the detection hole; the therapeutic hand tool has an energy part for emitting energy.
[0016] In the technical solution of the present utility model, when energy detection is not required, the sealing component is moved to a position covering the detection hole to ensure the sealing effect inside the housing. When energy detection is required, the sealing component is moved away through an articulated connection method such as rotation, sliding or disassembly, so as to expose the detection hole, and the treatment handpiece can perform energy detection through the detection hole. Therefore, through the movable sealing of the sealing component, the filling sealing of the silica gel cover is avoided, facilitating the closing or opening of the test hole and improving the operation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for description in the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0018] Figure 1 FIG. 11 is a partial structural schematic diagram of an embodiment of a treatment device with the detection hole in a closed state provided by the present utility model;
[0019] Figure 2 FIG. Figure 1 is a structural schematic diagram of the detection cover mechanism in a closed state in FIG.
[0020] Figure 3 FIG. Figure 2 is an exploded structural schematic diagram of the detection cover mechanism in FIG.
[0021] Figure 4 FIG. Figure 1 is a structural schematic diagram of the detection hole in an open state in FIG.
[0022] Figure 5 FIG. Figure 4 is a structural schematic diagram of the detection cover mechanism in an open state in FIG.
[0023] Figure 6 FIG. Figure 1 is a structural schematic diagram of the light-emitting part of the treatment handpiece inserted into the detection hole in FIG.
[0024] Figure 7 FIG. Figure 6 is a sectional structural schematic diagram in the A-A direction in FIG.
[0025] Figure 8 FIG. Figure 7 is a partial enlarged view at B in FIG.
[0026] Explanation of the reference numerals in the drawings:
[0027] 100. Treatment device; 10. Detection cover mechanism; 1. Support member; 11. Cover plate; 113. Guide hole; 115. Limit boss; 1151. First limit hole; 13. Base; 15. Central hole; 3. Sealing assembly; 31. Covering member; 311. Link; 3111. Swing portion; 3113. Driving portion; 313. Planet piece; 3131. First splicing surface; 3133. Second splicing surface; 3135. Connection hole; 3136. Second limit hole; 41. Poking member; 411. Poking portion; 43. Elastic member; 50. Test mainframe; 51. Housing; 511. Detection hole; 513. Poking hole; 70. Treatment handpiece; 71. Light-emitting portion.
[0028] The realization, functional features and advantages of the purpose of the present utility model will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0029] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0030] It should be noted that if there are directional indications (such as up, down, left, right, front, back...) in the embodiments of the present utility model, the directional indications are only used to explain the relative position relationship and movement conditions between components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0031] In addition, if there are descriptions such as "first", "second", etc. in the embodiments of the present utility model, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, if "and / or" or "and / or" appears throughout the text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, or solution B, or a solution where A and B are satisfied simultaneously. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present utility model.
[0032] Treatment equipment achieves treatment effects by emitting energy to the human body. For example, laser treatment equipment, ultrasonic treatment equipment, radio frequency treatment equipment, etc. are used to emit light, ultrasound, electricity and other forms of energy to the human body, acting on human tissues to treat people. Generally, before treating the human body, it is necessary to detect the emitted energy to avoid excessive energy causing harm to the person, or too little energy to complete the treatment, so as to ensure the quality of treatment.
[0033] In the related art, the treatment device includes a test host, a treatment handpiece and a silicone cover, wherein the shell of the test host is penetrated with a detection hole, the treatment handpiece has an energy part for emitting energy, and in a non-detection state, the end of the silicone cover elastically fills the test hole to prevent dust from entering the shell through the detection hole and causing pollution. When energy detection is required, the silicone cover is removed as a whole, and the energy part of the treatment handpiece is docked toward the test hole so that energy can be emitted into the shell through the test hole, thereby performing subsequent parameter detection.
[0034] However, since the silicone cover is plugged into the test hole by filling, it is inconvenient to close or open the test hole, resulting in reduced operating efficiency.
[0035] For example, on existing laser therapy devices, the detection holes are plugged with silicone covers. Because silicone is soft, it cannot withstand greater pressure; at the same time, silicone ages easily, and they tend to discolor or even fade or yellow over time. Although these do not affect the function of the entire device, they will be a visual deterrent to consumers in the medical field. In addition, although the silicone cover can effectively prevent dust and small particles on the device, it itself is easy to attract dust, lint and other debris. This is especially obvious for lighter-colored silicone shells, where particles tend to be more prominent. Over time, this accumulation will affect the overall appearance of the protective shell, which can be frustrating for consumers in the medical field. In order to maintain the beauty of the device, users have to clean or wipe it regularly. What's more difficult is that the silicone cover has many dead corners, and the dust in these dead corners is difficult to wipe.
[0036] In order to solve the above problems, the present invention proposes a detection cover mechanism 10, which aims to avoid the filling-type sealing of the silicone cover to improve the operation efficiency.
[0037] Reference Figures 1 to 8 In one embodiment of the utility model, the detection cover mechanism 10 is applied to a test host 50, and a detection hole 511 is penetrated through the shell 51 of the test host 50. The detection cover mechanism 10 includes a support member 1 and a closing component 3. The support member 1 is used to be installed on the edge of the detection hole 511; the closing component 3 is movably connected to the support member 1 to close the detection hole 511.
[0038] Among them, the type of the test host 50 is not specifically limited and can be other independent detection tools for the treatment handpiece 70 to perform light source detection through the test hole. The closing component 3 can be a rotating cover which is rotatably connected to the support member 1 to open and close the detection hole 511 rotatably.
[0039] In the technical solution of the present utility model, when energy detection is not required, the closing component 3 is moved to a position covering the detection hole 511 to ensure the sealing effect inside the housing 51. When energy detection is required, the closing component 3 is moved away by means of movable connection such as rotation, sliding or disassembly, so as to expose the detection hole 511 for the treatment handpiece 70 to perform light emission detection through the detection hole 511. Therefore, through the movable closing of the closing component 3 in this solution, the filling closing of the silica gel cover is avoided, which facilitates the closing or opening of the test hole and is beneficial to improving the operation efficiency.
[0040] Refer to Figure 2 and Figure 5 In an embodiment of the present utility model, the support member 1 is used to surround the opening periphery of the detection hole 511. The support member 1 is provided with a central hole 15 axially communicating with the detection hole 511, and the closing component 3 is movably connected to the opening periphery of the central hole 15 for covering the central hole 15.
[0041] In this embodiment, through the axial communication between the central hole 15 and the detection hole 511, the precise alignment between the closing component 3 and the detection hole 511 can be ensured, which helps to improve the reliability of closing. In addition, the closing component 3 is movably connected to the opening periphery of the central hole 15, so that the closing component 3 can be quickly moved away when opened without affecting the energy detection, and can quickly cover the central hole 15 when closed to prevent dust from entering.
[0042] Specifically, refer to Figure 8 The support member 1 may include a cover plate 11 and a base 13. The cover plate 11 surrounds the opening periphery of the detection hole 511, and the base 13 is used to abut against the internal structure of the housing 51 to realize the support for the cover plate 11.
[0043] Refer to Figure 2 and Figure 5 In an embodiment of the present utility model, the closing component 3 includes a plurality of covering members 31. The plurality of covering members 31 are respectively movably connected to the outer periphery of the support member 1 and are circumferentially spaced apart to jointly cover the central hole 15.
[0044] In this embodiment, the design of the plurality of covering members 31 makes the closing more uniform and tight. The design of the movable connection allows the covering members 31 to move freely within a certain range, which facilitates the quick opening and closing of the detection hole 511 and improves the operation efficiency.
[0045] Referring to Figure 2 and Figure 5 , in an embodiment of the present utility model, each of the covering members 31 includes a connecting rod 311 and a planetary plate 313. One end of the connecting rod 311 is swingably connected to the outer peripheral edge of the support member 1, and the other end is connected to the end of the planetary plate 313. Under the swing drive of their respective connecting rods 311, a plurality of the planetary plates 313 approach each other in the direction of splicing, so as to jointly cover the central hole 15.
[0046] In this embodiment, by driving the movement of the planetary plate 313 through the swing of the connecting rod 311, precise control of the position can be achieved, ensuring that each covering member 31 can be accurately spliced in place. In addition, the design of the connecting rod 311 and the planetary plate 313 makes the structure of the entire closing assembly 3 more compact, which helps to improve the integration of the entire detection cover mechanism 10, thereby facilitating installation and maintenance.
[0047] Referring to Figure 2 and Figure 5 , in an embodiment of the present utility model, the support member 1 is further provided with a plurality of guide holes 113. The plurality of guide holes 113 are circumferentially spaced on the outer peripheral edge of the support member 1. Each surface of the planetary plate 313 facing the support member 1 is provided with a sliding portion, and a sliding portion is movably inserted into a guide hole 113, so that the plurality of planetary plates 313 are slidably spliced.
[0048] In this embodiment, the design of the guide holes 113 ensures the sliding path of the planetary plates 313, so that each planetary plate 313 can move along a predetermined trajectory during the sliding process, improving the accuracy and stability of splicing. The setting of the sliding portion makes the planetary plates 313 slide more smoothly during the sliding process, reducing the frictional resistance and extending the service life.
[0049] Optionally, a connection hole 3135 is provided through the surface of the planetary plate 313. The connection hole 3135 is used for a fastener such as a pin to pass through. The part of the fastener that passes through and faces the support member 1 constitutes the sliding portion of the planetary plate 313.
[0050] Referring to Figure 2 , Figure 3 and Figure 5In one embodiment of the utility model, a plurality of first limiting holes 1151 are provided on the outer periphery of the support member 1, and a swinging portion 3111 is convexly provided at one end of each connecting rod 311, and a swinging portion 3111 is inserted into a first limiting hole 1151, so that the connecting rod 311 swings around the first limiting hole 1151. And / or, a second limiting hole 3136 is provided on each planetary piece 313, and a driving portion 3113 is convexly provided at one end of each connecting rod 311, and a driving portion 3113 is inserted into a second limiting hole 3136, so as to drive the planetary piece 313 to move in the splicing direction.
[0051] In this embodiment, the swing range of the connecting rod 311 is ensured by the design of the first limiting hole 1151 and the swinging part 3111, so that the connecting rod 311 will not deviate from the predetermined trajectory during the swinging process. The design of the swinging part 3111 makes the movement of the connecting rod 311 smoother, reduces mechanical jamming, and improves the convenience of operation.
[0052] Specifically, the support member 1 may be provided with a limiting boss 115, and the limiting boss 115 is provided with a first limiting hole 1151. The setting of the limiting boss 115 is beneficial to enhancing the structural strength of the support member 1 and facilitating the insertion and alignment of the swing part 3111 in the first limiting hole 1151.
[0053] Optionally, through the cooperation between the second limiting hole 3136 and the driving part 3113, the movement of the planetary piece 313 is smoother, the mechanical jamming and wear are reduced, and the service life is extended. In addition, the driving part 3113 is inserted into the second limiting hole 3136 to ensure the stable connection between the connecting rod 311 and the planetary piece 313, and avoid loosening or unhooking during the swinging process.
[0054] Reference Figure 2 and Figure 5 In one embodiment of the utility model, the support member 1 is rotatably connected to the shell 51, and the detection cover mechanism 10 also includes a toggle member 41, one end of which is connected to the support member 1, and the other end of the toggle member 41 is toggled to drive the support member 1 to rotate, and drive the multiple connecting rods 311 to swing respectively.
[0055] In this embodiment, the toggle member 41 drives the support member 1 to rotate, and the support member 1 drives the multiple connecting rods 311 to swing, thereby ensuring the reliability and consistency of the transmission. The design of the toggle member 41 provides a simple operation method, so that the user can quickly control the opening and closing of the planetary plate 313 through a simple toggle action.
[0056] Reference Figure 2 and Figure 5In one embodiment of the utility model, the detection cover mechanism 10 further includes an elastic member 43, one end of the elastic member 43 is used to connect to the housing 51, and the other end is connected to the toggle member 41. The toggle member 41 drives the support member 1 to reset and rotate under the pulling drive of the elastic member 43, so that the multiple connecting rods 311 drive the multiple planetary plates 313 to swing in the direction of mutual splicing. And / or, the support member 1 is located in the housing 51, and the housing 51 is penetrated by a toggle hole 513 spaced apart from the detection hole 511, and the toggle hole 513 extends along the rotation direction of the support member 1, and the end of the toggle member 41 away from the support member 1 passes through the toggle hole 513.
[0057] Among them, the elastic member 43 can be selected as a tension spring, one end of which is sleeved on the connecting column of the shell 51, and the other end is sleeved on the toggle part 411 of the toggle member 41, and the elastic tension on the toggle member 41 drives the support member 1 to reset and rotate.
[0058] In this embodiment, the design of the elastic member 43 enables the toggle member 41 to automatically reset after being released, driving the support member 1 to reset and rotate, so that the multiple planetary pieces 313 move in the splicing direction to achieve automatic closure. This design improves the convenience and efficiency of operation and reduces the steps of manual reset. In addition, the tensile force of the elastic member 43 ensures that the planetary pieces 313 can be tightly spliced during the reset process, thereby improving the reliability and sealing of the closure.
[0059] Optionally, the design of the toggle hole 513 allows one end of the toggle member 41 to pass through the outside of the housing 51, and the operator can directly toggle the toggle member 41 from the outside to control the closing assembly 3. This design greatly improves the convenience of operation, and the operator can open and close the closing assembly 3 without opening the housing 51. In addition, the support member 1 is located inside the housing 51, which can effectively prevent external dust and debris from entering the movement area of the support member 1 and the connecting rod 311, thereby keeping the inside of the housing 51 clean.
[0060] Reference Figure 2 and Figure 5 In one embodiment of the utility model, the surfaces used for splicing two adjacent planetary pieces 313 are respectively a first splicing surface 3131 and a second splicing surface 3133. The first splicing surface 3131 is tilted upward along the angle direction of the thickness direction of one of the planetary pieces 313, and the second splicing surface 3133 is tilted downward along the angle direction of the thickness direction of the other planetary piece 313, so that the two adjacent planetary pieces 313 have an interference fit.
[0061] In this embodiment, the interference fit design of the two planetary plates 313 can effectively reduce the gap between the splicing surfaces, which is beneficial to prevent dust from entering the inside of the test host 50 through the detection hole 511, thereby ensuring the normal operation of the test host 50.
[0062] For example, on the sides of the two planetary plates 313 for splicing, two centrally symmetric triangular protrusions are respectively formed. When the two triangular protrusions approach each other, one triangular protrusion moves along the gradually expanding direction of the other triangular protrusion for guiding, so as to achieve the effect of mutual extrusion, and finally realize the oblique closure and interference fit of the two planetary plates 313. It should be noted that the shape and quantity of the protrusions are not specifically limited here. As long as the interference splicing of the two planetary plates 313 is realized in this way, it falls within the protection scope of this application.
[0063] Optionally, the first splicing surface 3131 and the second splicing surface 3133 are set as arc-shaped surfaces that fit each other in shape, so that the splicing of adjacent two planetary plates 313 is tighter, reducing the splicing gap and improving the sealing performance of the closure.
[0064] Refer to Figures 1 to 8 Moreover, the present utility model further provides a treatment device 100, which includes a test host 50, a treatment handpiece 70 and the detection cover mechanism 10 as described above. The test host 50 includes a housing 51 and a detection module. The housing 51 is provided with a detection hole 511 in a penetrating manner, and the detection module is arranged inside the housing 51; the support member 1 is installed at the edge of the detection hole 511; the treatment handpiece 70 has an energy part 71 for emitting energy.
[0065] In some embodiments, the above treatment device 100 can be any one of a laser treatment device, an ultrasonic treatment device, and a radio frequency treatment device.
[0066] Among them, since this treatment device 100 adopts all the technical solutions of the above-mentioned all embodiments, it at least has all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be elaborated here one by one.
[0067] In this solution, when the closing assembly 3 opens the detection hole 511, the light-emitting part 71 can emit energy into the housing 51 for the detection module to detect the parameters of the energy.
[0068] In summary, the detection cover mechanism 10 and the treatment device 100 of the embodiment of the utility model can be installed in the following manner: the support member 1 is installed on the housing 51 through the rotating shaft and rotates around the rotating shaft, and the planetary piece 313 is installed on the connecting rod 311 and the support member 1, so that the planetary piece 313 and the connecting rod 311 together form a double rocker connecting rod mechanism. The entire double rocker connecting rod mechanism is fixed on the support member 1. At the same time, the elastic member 43 always gives a certain elastic pulling force to the toggle part 411 of the toggle member 41, driving each planetary piece 313 to automatically reset, thereby maintaining the closed state of the detection hole 511.
[0069] Correspondingly, the detection cover mechanism 10 can adopt the following working principle: when the treatment handpiece 70 does not need to be detected, the planetary plate 313 is kept in a closed state under the drive of the connecting rod 311 and the elastic member 43. For details, please refer to the attached Figure 1 and 2 When the therapeutic handpiece 70 needs to be inspected, the toggle portion 411 of the toggle member 41 is gently pushed clockwise to the right by hand, thereby driving the support member 1 to rotate; and since the connecting rod 311 is swingably connected to the limiting hole 1151 of the support member 1, the connecting rod 311 is driven to rotate under the rotation of the support member 1; at the same time, the four planetary plates 313 are driven by the rotation of each connecting rod 311 and the side thrust of the hole wall of the guide hole 113 due to the rotation, and the four planetary plates are gradually opened counterclockwise along the extension direction of the guide hole 113, and at this time, the detection hole 511 is in a semi-open state.
[0070] When the toggle portion 411 of the toggle member 41 is pushed to the right limit, the four planetary plates 313 are fully opened. Figure 5 At this time, the treatment handpiece 70 is placed in the detection hole 511 to perform energy detection on the treatment handpiece 70. When the treatment handpiece 70 is detected and taken out, the toggle portion 411 of the toggle member 41 is pulled back to the left limit position under the pulling force of the elastic member 43. In this way, the four planetary plates 313 move with the connecting rod 311 and return to the original closed state under the lateral thrust of the hole wall of the guide hole 113. This cycle of work is repeated. This is the working principle of the detection cover mechanism 10.
[0071] Therefore, the detection cover mechanism 10 of the utility model can not only avoid the shortcomings of the existing silicone cover such as dust contamination and fading, but more importantly, when the detection of the treatment handpiece 70 is completed, the four planetary pieces 313 can automatically reset to keep it in a normally closed state; and after the four planetary pieces 313 are spliced and reset, the whole presents a planetary shape, which looks more beautiful and generous, and is conducive to improving the user experience.
[0072] The above are only exemplary embodiments of the present utility model, and do not limit the patent scope of the present utility model. Any equivalent structural transformation made under the technical concept of the present utility model by using the content of the specification and drawings of the present utility model, or any direct / indirect application in other related technical fields is included in the patent protection scope of the present utility model.
Claims
1. A detection cover mechanism, characterized in that The detection cover mechanism is applied to a test host, a shell of the test host is penetrated by a detection hole, and the detection cover mechanism includes: A support member, the support member being used to be mounted on an edge of the detection hole; and A closing component is movably connected to the supporting member to close the detection hole.
2. The detection cover mechanism according to claim 1, characterized in that, The support member is used to be arranged around the opening periphery of the detection hole. The support member is penetrated by a center hole axially connected to the detection hole. The closing component is movably connected to the opening periphery of the center hole to cover the center hole.
3. The detection cover mechanism according to claim 2, wherein, The closure assembly includes a plurality of covering members, which are respectively movably connected to the outer periphery of the support member and are arranged at intervals in the circumferential direction so as to cover the central hole together.
4. The detection cover mechanism according to claim 3, characterized in that, Each of the covering parts includes a connecting rod and a planetary plate, one end of the connecting rod is swingably connected to the outer periphery of the support member, and the other end is connected to the end of the planetary plate. The multiple planetary plates are respectively driven by the swing of each of the connecting rods to move closer to each other in the direction of splicing, so as to cover the center hole together.
5. The detection cover mechanism according to claim 4, wherein, The support member is also provided with a plurality of guide holes, which are circumferentially spaced and located at the outer periphery of the support member. A sliding portion is provided on the surface of each planetary piece facing the support member, and a sliding portion is movably inserted into a guide hole to enable the plurality of planetary pieces to be slidably spliced.
6. The detection cover mechanism according to claim 4, wherein A plurality of first limiting holes are formed on the outer periphery of the support member, a swinging portion is protruded from one end of each connecting rod, and one of the swinging portions is inserted into one of the first limiting holes so that the connecting rod can swing around the first limiting hole.
7. The detection cover mechanism according to any one of claims 4 to 6, characterized in that, The support member is rotatably connected to the shell, and the detection cover mechanism also includes a toggle member, one end of which is connected to the support member. By toggling the other end of the toggle member, the support member is driven to rotate, and the transmission drives the multiple connecting rods to swing respectively.
8. The detection cover mechanism according to claim 7, wherein, The detection cover mechanism also includes an elastic member, one end of which is used to be connected to the shell, and the other end is connected to the toggle member. The toggle member drives the support member to reset and rotate under the pulling of the elastic member, so that the multiple connecting rods drive the multiple planetary plates to swing in the direction of mutual splicing.
9. The detection cover mechanism according to any one of claims 4 to 6, characterized in that The surfaces of the two adjacent planetary pieces used for splicing are respectively a first splicing surface and a second splicing surface. The first splicing surface is tilted upward along the angle direction of the thickness direction of one of the planetary pieces, and the second splicing surface is tilted downward along the angle direction of the thickness direction of the other planetary piece, so that the two adjacent planetary pieces are spliced with interference fit.
10. A treatment device, characterized in that, The therapeutic device comprises: A test host, the test host comprising a shell and a detection module, the shell having a detection hole extending therethrough, and the detection module being arranged inside the shell; The detection cover mechanism according to any one of claims 1 to 9, wherein the support member is mounted on an edge of the detection hole; and A therapeutic handpiece has an energy portion for emitting energy.