Lens attaching auxiliary device
Through the base and bracket design of the lens bonding auxiliary device, the problem of difficulty in aligning the lens and the display screen is solved, efficient and accurate fitting cooperation is achieved, and assembly efficiency and yield are improved.
Patent Information
- Application Number
- CN202422291849.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-19
AI Technical Summary
During the process of fitting the lens with the display screen, it is difficult to achieve accurate alignment, resulting in low assembly efficiency and low yield.
A lens fitting auxiliary device is designed, including a base and a movable bracket, and the atomization device is positioned through the base, and the display screen is tilted with the bracket to split the lens into two independent steps, respectively aligning the window and the display screen and the lens and the assembly space.
It improves the efficiency and accuracy of the lens patching cooperation industry, reduces the alignment difficulty of non-planar lenses, reduces the error caused by assembly tolerances, and improves the overall assembly yield.
Smart Images

Figure CN223065579U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of lens bonding, and specifically relates to a lens bonding auxiliary device. Background Art
[0002] During the process of bonding a lens to a display screen, how to align and bond the two to ensure the integrity and aesthetics of the display on the display screen has been widely concerned in the field. Since after the lens is bonded, it should be entirely within the space reserved by the device, and the window part of the lens should be aligned with the display screen. During the assembly process of the device, there will be more or less assembly tolerances between various steps. After the tolerances of multiple steps are accumulated, the problem that the lens window and the display screen cannot be well centered will be further aggravated, affecting the display effect. As a result, the assembly efficiency of the atomization device is low and the yield is low. Utility Model Content
[0003] This application provides a lens bonding auxiliary device for solving the problem that it is difficult to align the lens and the display screen during the bonding process.
[0004] In one embodiment, a lens bonding auxiliary device is provided, which is applied to an atomization device. The lens bonding auxiliary device includes:
[0005] A base, on which a receiving groove for placing and positioning the atomization device is provided;
[0006] A support assembly, including a bracket, which can reciprocate between a standby position and an operating position on the base; wherein, when the bracket is in the operating position, it can tilt up the display screen of the atomization device so that the display screen is separated from the main body of the atomization device, and at this time the lens of the atomization device is bonded to the display screen alone.
[0007] In some embodiments, the lens is a non-planar lens.
[0008] In some embodiments, the support assembly further includes a guide rail, which is arranged on the base and located on one side of the receiving groove, and is arranged parallel to the length direction of the receiving groove; the bracket is movably arranged on the guide rail.
[0009] In some embodiments, the support assembly further includes a slider, which is movably arranged on the guide rail, and the bracket is installed on the slider.
[0010] In some embodiments, the lens bonding auxiliary device further includes two first positioning members respectively used to define the positions of the operating position and the standby position; the two first positioning members are spaced apart on the guide rail, and the slider is movably arranged between the two first positioning members.
[0011] In some embodiments, at least one operation slot for picking up and placing the atomizing device is further formed on the base, and the operation slot communicates with the accommodating slot.
[0012] In some embodiments, the shape of the accommodating slot in the width direction is adapted to the shape of the atomizing device in the width direction;
[0013] and / or, the length of the accommodating slot is greater than the length of the atomizing device.
[0014] In some embodiments, through holes are formed on the bottom wall of the accommodating slot.
[0015] In some embodiments, at least one through-connection slot that penetrates through both ends is further formed on the side surface of the base facing away from the accommodating slot, and one end of the connection slot communicates with the through hole.
[0016] In some embodiments, it further includes a connection plug for an external power supply to supply power to the display screen. The connection plug is arranged on the base and at least partially extends into the accommodating slot.
[0017] According to the lens fitting auxiliary device of the above embodiments, by providing the base, during the lens fitting operation, the operator can temporarily position the atomizing device through the base, avoiding the influence on the fitting accuracy caused by the movement of the atomizing device during the fitting operation.
[0018] By providing a movably bracket, the display screen can be tilted and lifted, so as to split the lens fitting operation into two mutually separated steps, and the lens is respectively and sequentially fitted with the display screen and the main body. Each step can be operated simply and clearly, and the alignment of the window with the display screen and the alignment of the lens with the assembly space can be respectively achieved, improving the operation efficiency and accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of a lens fitting auxiliary device in an embodiment;
[0020] Figure 2 is Figure 1 a schematic structural diagram of the lens fitting auxiliary device shown in another angle;
[0021] Figure 3 is Figure 1 a schematic diagram of the use state of the lens fitting auxiliary device shown;
[0022] Figure 4 is Figure 3 a sectional structural diagram taken along the line A-A in;
[0023] Figure 5It is a schematic exploded view of the atomizing device applied in the exemplary description.
[0024] The reference numerals are as follows:
[0025] 1 - Lens fitting assistance device; 10 - Base; 11 - Accommodating groove; 12 - Operation groove; 13 - Through hole; 14 - Connection groove; 20 - Support assembly; 21 - Bracket; 22 - Guide rail; 23 - Slide block; 30 - Connection plug; 40, 40a, 40b - First positioning member; 50 - Second positioning member; 2 - Atomizing device; 201 - Main body; 2011 - Assembly space; 202 - Display screen; 203 - Lens; 2031 - Window. Detailed implementation manners
[0026] The present application will be further described in detail below in conjunction with the accompanying drawings through specific implementation manners. Similar elements in different implementation manners are labeled with related similar reference numerals. In the following implementation manners, many detailed descriptions are provided to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification, which is to avoid the core part of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the descriptions in the specification and the general technical knowledge in the art.
[0027] In addition, the features, operations, or characteristics described in the specification can be combined in any appropriate manner to form various implementation manners. At the same time, the steps or actions in the method description can also be reordered or adjusted in an obvious manner by those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for clearly describing a certain embodiment and do not mean a necessary sequence, unless it is stated that a certain sequence must be followed.
[0028] The serial numbers assigned to the components herein, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meaning. The "connection" and "coupling" mentioned in the present application, unless otherwise specified, both include direct and indirect connection (coupling).
[0029] As Figure 1 shown, the present application provides a lens fitting assistance device 1, which is used to assist an operator in performing the lens fitting operation of the atomizing device 2.
[0030] It should be understood that as Figure 5As shown, the atomizing device 2 includes a main body 201, a display screen 202, and a lens 203 to be attached. The main body 201 is provided with an assembly space 2011 which is adapted to the lens 203. The surface shape of the assembly space 2011 is adapted to the lens 203. When the lens 203 is attached to the main body 201, the lens 203 is located within the assembly space 2011. The display screen 202 is disposed on the main body 201, and the setting position on the main body 201 is within the assembly space 2011. One end of the display screen 202 is connected to the main body 201. A viewing window 2031 is provided on the lens 203. When the lens 203 is attached to the main body 201, the viewing window 2031 on the lens 203 corresponds to the display screen 202, so as to protect the display screen 202 while achieving a display effect.
[0031] It should be understood that the "viewing window" can be understood as the part on the lens 203 that can transmit light for display, so as to display the content shown on the display screen 202.
[0032] As Figure 1 and Figure 3 As shown, the lens attachment assisting device 1 includes a base 10 and a support assembly 20. Among them, a receiving groove 11 is provided on the base 10 for placing the atomizing device 2 with the lens 203 to be attached and positioning it, so as to facilitate the operator to perform the lens attachment operation. The support assembly 20 is disposed on the base 10 and includes a bracket 21 for tilting and lifting the display screen 202 in the atomizing device 2.
[0033] Specifically, the bracket 21 is movably disposed on the base 10 and corresponds to the receiving groove 11. On its moving path, there may include a preparatory position 200 and an operating position 100 (that is, the bracket 21 can reciprocate between the preparatory position 200 and the operating position 100 of the base 10). When the bracket 21 is in the operating position 100, it tilts and lifts the display screen 202 from the main body 201, so that the display screen 202 is separated from the main body 201 of the atomizing device 2. At this time, the lens 203 of the atomizing device 2 can be attached to the display screen 202 alone, so as to facilitate the operator to perform the lens attachment operation. When the bracket 21 is in the preparatory position 200, the bracket 21 is not correspondingly arranged with the assembly space 2011. At this time, the display screen 202 can be naturally disposed on the main body 201 under the action of the connection structure between itself and the main body 201. At the same time, the lens 203 can also be attached to the assembly space 2011 without being attached to the bracket 21.
[0034] It should be understood that the standby position 200 and the working position 100 can be respectively a single fixed position, or one or all of them can be non-single fixed positions. For example, since the display screen 202 has a certain area size, there is a small part of the bracket 21 between the main body 201 and the display screen 202, which makes the display screen 202 slightly inclined, and there is also a larger part of the bracket 21 between the main body 201 and the display screen 202, which makes the display screen 202 have a larger inclination angle. Both positions (including other positions that can make the display screen 202 inclined) can be called the working position 100. Or a single position can be defined, so that only when the display screen 202 is inclined to a specific angle is it called the working position 100. There are many potential situations and they are not listed one by one here. The same applies to the standby position 200.
[0035] It should be understood that "the bracket 21 corresponds to the accommodation groove 11" can be understood as that at least part of the bracket 21 has a projection on the plane where the bottom wall of the accommodation groove 11 is located. It can also be understood that when the atomizing device 2 is placed in the accommodation groove 11, the bracket 21 can lift the display screen 202 located in the accommodation groove 11 through its own movement. It can also be understood that when the atomizing device 2 is placed in the accommodation groove 11, the bracket 21 can, through its own movement, make at least part of the display screen 202 have a projection on the plane where the bracket 21 is located. It is not specifically limited here.
[0036] It should be understood that "being located in the accommodation groove 11" can be understood as being located in the space of the accommodation groove 11 defined by the base 10, or can be understood as being located in the space defined by the outer contour of the bottom wall of the accommodation groove 11 in the direction perpendicular to the bottom wall. It is not specifically limited here.
[0037] It should be understood that "the bracket 21 is not correspondingly arranged with the assembly space 2011" can be understood as that the projected area of the bracket 21 on the assembly space 2011 is zero.
[0038] In this application, by providing the base 10, during the process of the operator performing the lens bonding operation, the atomizing device 2 can be temporarily positioned by the base 10. It can avoid the movement of the atomizing device 2 due to accidental touch or other reasons during the bonding operation. Sideways, it can reduce the occurrence of defective production of the atomizing device 2.
[0039] It should be understood that before the lens bonding operation, the main body 201 and the display screen 202 of the atomizing device 2 have been assembled, and the entire atomizing device 2 is in a semi-assembled state. At this time, there may be assembly tolerances in the previously completed various assembly steps, potentially affecting the subsequent assembly steps.
[0040] When performing the lens fitting operation, the operator needs to ensure that the window 2031 of the lens 203 corresponds to the display screen 202, and also ensure that the entire lens 203 corresponds to the assembly space 2011. Therefore, there are two parts of points that need to be noted for alignment.
[0041] The display screen 202 is electrically connected to other components in the main body 201 through a connection line (such as pins, leads, etc.) (there may also be other connecting components, which are not limited here). Without the action of external force, it naturally fits on the surface of the main body 201 where it is located to ensure the flatness of the surface of the main body 201 to be fitted with the lens 203.
[0042] At this time, if manual fitting is directly carried out and the operator only focuses on one of the points that need to be aligned, due to the assembly tolerance that appears in the previous assembly steps, it may be found that the other point that needs to be aligned is not aligned after fitting.
[0043] For example, a certain frame component can be used to frame the outer contour of the lens 203. Before the fitting operation, the area framed by the framing component is aligned with the assembly space 2011. When fitting, the lens 203 is placed in the frame component to achieve the fitting of the surface of the lens 203 and the assembly space 2011. This method can not focus on the correspondence between the window 2031 and the display screen 202 during fitting. However, due to the assembly tolerance that appears in the previous assembly steps, when the lens 203 is placed in the frame component, it may occur that the lens 203 corresponds to the assembly space 2011, but the window 2031 does not correspond to the display screen 202.
[0044] If all the points that need to be aligned are simultaneously focused by the operator during the manual fitting process, it is likely to lead to a reduction in efficiency and it is difficult to ensure that the effect of both points being aligned can be achieved.
[0045] In this application, by setting the movable bracket 21 and making it correspond to the receiving groove 11, when the operator performs the lens fitting operation, the bracket 21 can be moved to the working position 100 to tilt and lift the display screen 202 located in the receiving groove 11.
[0046] In this case, since the display screen 202 is lifted by an external force and presents an inclined state that is not natural and not fitted to the main body 201. Therefore, the window 2031 of the lens 203 can be aligned and fitted with the inclined display screen 202 at an inclined angle first (at this time, since the main body 201 and the bracket 21 are not inclined, the lens 203 will not be fitted to the main body 201 and the bracket 21 during the process of fitting with the display screen 202). The window 2031 of the lens 203 and the display screen 202 are first fitted to each other to form an integral structure.
[0047] Further, move the movable bracket 21 to the standby position 200 so that the display screen 202 can return to the state of naturally fitting the main body 201. At this time, only the alignment of the lens 203 with the assembly space 2011 needs to be concerned, and there is no need to pay attention to the alignment of the window 2031 with the display screen 202.
[0048] Further, fit the lens 203 to the surface of the assembly space 2011 of the main body 201. (During this process, the display screen 202 is also gradually driven by the lens 203 to return to the state of naturally fitting the main body 201. After the fitting is completed, it is located between the lens 203 and the main body 201), so as to realize the fitting operation of the lens 203 with the main body 201 and the display screen 202.
[0049] It should be understood that since the display screen 202 can be tilted and lifted by the bracket 21, the positional relationship between the display screen 202 and the main body 201 is not absolutely single and fixed.
[0050] On this premise, during the process of fitting the lens 203 to the main body 201, the lens 203 in the tilted state in the previous step can be first brought close to the side end of the main body 201 and fitted to the corresponding side end of the assembly space 2011 of the main body 201. Then gradually press down the tilted lens 203 to make it gradually become non-tilted and fit the main body 201 as a whole. During the process of pressing down the lens 203, the operator can press down the lens 203 while adjusting the positional relationship between the lens 203 and the assembly space 2011 so that the lens 203 and the assembly space 2011 are in an aligned state. And during this process, since the positional relationship between the display screen 202 and the main body 201 is not absolutely fixed, the display screen 202 can be driven by the lens 203 to perform fine adjustment of the position during this process to offset the assembly tolerance generated in the previous assembly step.
[0051] It should be understood that there can also be certain slight differences in the size of the lens 203 and the size of the assembly space 2011 on the premise of ensuring the appearance and function of the atomization device 2. This can avoid the errors brought about during the production and assembly processes caused by the completely consistent size data, which may lead to the situation where assembly cannot be achieved.
[0052] Therefore, during the process of pressing down the lens 203, if there is a reserved difference in the sizes of the lens 203 and the assembly space 2011, it can also offset part of the assembly tolerance generated in the previous assembly step. Combined with the part offset by the display screen 202, it can jointly contribute to the result that the two alignment points are both aligned.
[0053] That is, by providing the movable bracket 21 in the present application, the bonding operation of the lens 203 can be split into two mutually separated steps, and the lens 203 is bonded to the display screen 202 and the main body 201 in sequence. Each step can be operated simply and clearly, avoiding the problem of low yield rate that may be caused when aligning two points simultaneously, and also improving the operation efficiency.
[0054] Regarding the non-planar lens 203 and the corresponding assembly space 2011, during the operation of the bracket 21 provided in the present application, after the lens 203 is bonded to the display screen 202, a certain edge of the lens 203 and a certain edge of the assembly space 2011 can be aligned first, and then gradually pressed. Therefore, the alignment difficulty of the non-planar lens 203 is reduced, which is convenient for the operator to operate and improves the operation efficiency.
[0055] That is, regardless of whether the lens is a planar lens or a non-planar lens, the lens bonding auxiliary device 1 can reduce the bonding difficulty of the lens 203 and achieve more accurate and efficient bonding of the lens 203.
[0056] It should be understood that the "non-planar lens" can be understood as at least part of the structure of the lens 203 being non-planar, with a certain arc or a certain bending angle at least in part.
[0057] It should be understood that during the production and manufacturing of each component of the atomizing device 2, due to processing accuracy issues, production size errors will also occur. Different materials are selected for each component, and special materials may also increase the processing accuracy error due to their own characteristics.
[0058] The above processing accuracy errors and the errors caused by material characteristics will also be superimposed on the assembly tolerances generated in the assembly steps of each component. For example, due to the characteristics of the composite board material, forming conditions, production process, processing accuracy, etc. of the composite board type lens, overall position deviation will occur during the assembly process, resulting in the situation where the lens 203 and the assembly space 2011, and the window 2031 and the display screen 202 cannot be aligned simultaneously.
[0059] Therefore, in the foregoing description, the assembly tolerances offset by using the lens bonding auxiliary tooling 1 constructed in the present application for lens bonding can be understood to cover the above various errors.
[0060] Next, taking a specific atomizing device with a display screen and a non-planar lens as an example, the lens bonding auxiliary device 1 of the present application will be further described. In the following description, the atomizing device 2 and its related components can be understood as the selected atomizing device and its components.
[0061] It should be understood that the atomization device may include structures such as a main body, an atomization component, and a power supply component. Among them, a liquid storage space may be provided inside the main body for accommodating an atomization matrix. The atomization component is used to atomize the matrix so that it can be atomized for the user to suck and use. The power supply component is used to supply power to the atomization component to ensure that the atomization component realizes the atomization function.
[0062] As Figure 5 shown, the atomization device 2 is longitudinally arranged, including a main body structure substantially in the shape of a longitudinal cuboid, and an atomization nozzle structure provided at one end in the length direction of the main body structure. The three side projections of its main body structure are all rectangularly arranged, and chamfer structures are formed at the joints between the respective side surfaces. The lens 203 of the atomization device 2 is a non-planar structure, composed of a rectangular planar structure and an arc-bent rectangular plate-like structure. The lens 203 is integrally in the shape of a rectangular plate-like structure with one side being an arc-bent structure.
[0063] It should be understood that the examples of the atomization device shall not be regarded as a limitation to the application of this application. The lens fitting auxiliary device 1 constructed in this application can also be applied to other types of atomization / non-atomization and other atomization devices with a display screen.
[0064] Again, as Figure 1 and Figure 3 shown, in this embodiment, the base 10 is in the shape of a flat cube, and a longitudinally long rectangular accommodation groove 11 is formed by recessing its top end towards the bottom end. The atomization device 2 is placed in the accommodation groove 11. The axis in the length direction of the main body structure of the atomization device 2 is coaxially arranged with the axis in the length direction of the accommodation groove 11. The dimension in the width direction of the accommodation groove 11 is adapted to the dimension in the width direction of the atomization device 2.
[0065] By setting the dimension in the width direction of the accommodation groove 11 to be an adapted dimension with the dimension in the width direction of the atomization device 2, the atomization device 2 can be limited in the width direction, avoiding the relative movement of the atomization device 2 in the width direction during operation, and playing a positioning role.
[0066] In some other alternative embodiments, the base 10 can also be set to other shapes such as frustum-shaped, irregular frustum-shaped, polyhedron-shaped, etc. The accommodation groove 11 can also be set to other shapes such as runway-shaped, irregular-shaped, parallelogram-shaped, etc.
[0067] When the atomization device 2 is of other structures (such as disc-shaped, polygonal-shaped, etc.), the accommodation groove 11 can be set to a corresponding shape, or not corresponding to it, but a shape that can play a positioning role for the atomization device 2.
[0068] Specifically, referring together to Figure 4, chamfer structures are formed at the joints between the side surfaces of the main body structure of the atomizing device 2. In this embodiment, chamfers can also be formed at the joints of the three side walls of the accommodating groove 11 parallel to the axis in the length direction. The cross-sectional shape of the accommodating groove 11 in the width direction is adapted to the cross-sectional shape of the atomizing device 2 in the width direction to further improve the positioning effect of the accommodating groove 11 on the atomizing device 2.
[0069] It should be understood that "the cross-sectional shape of the accommodating groove 11 in the width direction is adapted to the cross-sectional shape of the atomizing device 2 in the width direction" can be understood as the cross-sectional shape and size perpendicular to the axis in the length direction of the two can make the opposite outer walls of the two fit surface to surface. The cross-sectional area of the accommodating groove 11 in the width direction can be different from the cross-sectional area of the atomizing device 2 in the width direction.
[0070] For another example Figure 3 As shown, in some embodiments, the length of the accommodating groove 11 is greater than the length of the atomizing device 2.
[0071] By extending the length of the accommodating groove 11, a relatively generous preparatory position 200 space can be provided for the bracket 21, avoiding the bracket 21 corresponding to the assembly space 2011. When the lens 203 is pressed down, the lens 203 can be prevented from pressing on the bracket 21.
[0072] In some other alternative embodiments, the setting of the support assembly 20 can also make the length of the accommodating groove 11 equal to the length of the atomizing device 2. At this time, the position of the preparatory position 200 needs to be flexibly defined according to the size of the assembly space 2011. It can be entirely outside the accommodating groove 11, or partially outside the accommodating groove 11 and partially inside the accommodating groove 11, or entirely inside the accommodating groove 11.
[0073] In some other alternative embodiments, the overall shape of the accommodating groove 11 can also be set to a shape corresponding to the atomizing device 2.
[0074] In some embodiments, the depth of the accommodating groove 11 can be less than or equal to the thickness of the main body 201 of the atomizing device 2, or slightly greater than the thickness of the main body 201. In Figure 4 As shown in the embodiment, the depth of the accommodating groove 11 is approximately equal to half of the thickness of the main body 201 of the atomizing device 2.
[0075] Such as Figure 2 As shown, in some embodiments, through holes 13 are further formed on the base 10.
[0076] Specifically, the through holes 13 are formed on the bottom wall of the accommodating groove 11 and penetrate through both ends.
[0077] By providing the through hole 13 for air conduction, when the atomizing device 2 is placed on the accommodating groove 11, it is convenient to achieve fitting between the end faces of the atomizing device 2 and the accommodating groove 11 in contact. It can also be quickly removed when the atomizing device 2 needs to be taken out from the accommodating groove 11, avoiding the situation where the contact surfaces of the two are too tightly fitted to prevent removal.
[0078] It should be understood that for the lens fitting assisting device 1 in the embodiment where the length of the accommodating groove 11 is greater than the length of the atomizing device 2, the position of the through hole 13 is set such that when the atomizing device 2 is placed in the accommodating groove 11, at least a part of the through hole 13 can be blocked by the atomizing device 2.
[0079] The number of the through holes 13 can be one or multiple. The shape of the through hole 13 can be circular, or can be set as a longitudinal shape, an irregular shape, a polygon, etc. When the number of the through holes 13 is multiple, they can be evenly spaced or arranged arbitrarily. No limitation is made thereto.
[0080] In some embodiments, at least one connecting groove 14 that penetrates through both ends is further formed on the side surface of the base 10 facing away from the accommodating groove 11. One end of the connecting groove 14 is communicated with the through hole 13.
[0081] During the use of the lens fitting assisting device 1, the base 10 is placed on a platform such as a table, and the placement angle is such that the accommodating groove 11 is at the top for easy operation. At this time, the bottom end of the through hole 13 is blocked by the platform on which the base 10 is placed, making it difficult to achieve the air conduction function. During the process of taking out the atomizing device 2 from the accommodating groove 11, negative pressure is likely to be generated, making it difficult to take out the atomizing device 2. By providing the connecting groove 14 that penetrates through both ends, the bottom end of the through hole 13 can be communicated with the connecting groove 14 and be connected to the outside through the connecting groove 14 to ensure the realization of the air conduction function and avoid the formation of negative pressure.
[0082] In this embodiment, the number of the through holes 13 is one, and the connecting groove 14 includes two straight grooves, which are oppositely arranged on two opposite sides of the through hole 13. The two straight grooves are coaxially arranged, and the axis is parallel to the axis in the width direction of the accommodating groove 11.
[0083] In some other alternative embodiments, the number of the connecting grooves 14 can also be set to three, four, etc., and the shape can also be set as a curved groove, a special-shaped groove, etc.
[0084] For another example Figure 1 As shown, in some embodiments, at least one operation groove 12 is further formed on the base 10. The operation groove 12 is communicated with the accommodating groove 11.
[0085] Refer to together Figure 3, for the accommodating groove 11 that can position the atomizing device 2, an operation groove 12 communicating with it is provided, which is convenient for operators to take and place the atomizing device 2. This avoids the atomizing device 2 being tightly arranged in the accommodating groove 11, making it difficult for operators to take it out by hand.
[0086] In this embodiment, the number of the operation grooves 12 is two, which are respectively arranged oppositely on both sides of the accommodating groove 11 to facilitate the operator to grasp the atomizing device 2.
[0087] Specifically, the two operation grooves 12 are located on opposite sides of the accommodating groove 11, and can be on both sides of the long axis of the accommodating groove 11. When this application is applied to atomizing devices 2 of other shapes, the two operation grooves 12 can also be arranged on the same side for the main purpose of facilitating the grasping of the atomizing device 2.
[0088] In some embodiments, the support assembly 20 further includes a guide rail 22 and a slider 23. Among them, the guide rail 22 is arranged on the base 10 to provide a track for the movement of the bracket 21. The slider 23 is movably arranged on the guide rail 22 to drive the bracket 21 to move along the guide rail 22. The bracket 21 is installed on the slider 23.
[0089] In this application, the bracket 21 is generally plate-shaped and at least partially parallel to the bottom wall of the accommodating groove 11. The bracket 21 is arranged parallel to and at an interval from the bottom wall of the accommodating groove 11, and the space between them is used to accommodate the main body 201 of the atomizing device 2. The guide rail 22 is a longitudinal straight rail, which is installed on the side surface of the base 10 where the accommodating groove 11 is located, and its extending direction is parallel to the length direction of the accommodating groove 11.
[0090] It should be understood that the thickness of the bracket 21 and the interval distance between the bracket 21 and the bottom wall of the accommodating groove 11 are not limited here. During the application of brackets 21 with different thicknesses, the support inclination of the display screen 202 at the same working position 100 will be different. Different interval distances between the bracket 21 and the bottom wall of the accommodating groove 11 will also result in different support inclinations of the display screen 202 at the same working position 100.
[0091] It should be understood that the extending direction of the guide rail 22 needs to be flexibly set according to the specific situation of the atomizing device 2. For example, for the atomizing device 2 shown in this embodiment, the end of its display screen 202 far from the atomizing nozzle is connected to the main body 201. Therefore, when the bracket 21 jacks up the display screen 202, it needs to be inserted between the display screen 202 and the main body 201 from the end of the display screen 202 close to the atomizing nozzle. Based on this, the guide rail 22 needs to be arranged parallel to the long axis of the base 10 (main body 201) so that the bracket 21 can move from the side of the display screen 202 close to the atomizing nozzle to between the display screen 202 and the main body 201.
[0092] If this application is applied to an atomizing device 2 with other structures, it is correspondingly necessary to make flexible adjustments according to the connection situation between the display screen 202 and the main body 201.
[0093] For example, if the first side end of the display screen 202 is connected to the first side end of the main body 201 perpendicular to the long axis, the guide rail 22 can be arranged parallel to the short axis of the base 10 (main body 201). At this time, the bracket 21 can move from the second side end opposite to the first side end of the display screen 202 to between the display screen 202 and the main body 201, achieving the effect of lifting the display screen 202 to make it inclined.
[0094] In some other alternative embodiments, the guide rail 22 and the slider 23 may not be provided, and by arranging a lead screw nut seat structure, the bracket 21 is arranged on the nut seat to realize its reciprocating movement along the extension direction of the lead screw.
[0095] It should be understood that when the atomizing device 2 is arranged in the accommodating groove 11, there may be a certain distance between the end faces of the bracket 21 and the atomizing device 2 that are close to each other, so as to avoid damage to the atomizing device 2 caused by the movement of the bracket 21. However, the size of the distance between the two end faces will also result in different support inclination degrees of the display screen 202 at the same working position 100, so it is not limited here.
[0096] Such as Figure 1 and Figure 3 As shown, in some embodiments, the lens fitting assisting device 1 further includes two first positioning members 40. They are arranged at intervals on the guide rail 22 and are respectively used to define the positions of the working position 100 and the preparation position 200. The slider 23 is movably arranged between the two first positioning members 40.
[0097] By arranging the two first positioning members 40, the moving distance of the slider 23 on the guide rail 22 can be defined, avoiding the slider from moving beyond its necessary limit and causing damage to the device or the atomizing device 2.
[0098] It should be understood that the position definition of the working position 100 and the preparation position 200 by the first positioning member 40 should not be understood restrictively as there is only a single fixed working position 100 and preparation position 200 in this embodiment. It can be understood as being used to define the extreme positions of the working position 100 and the preparation position 200.
[0099] Take Figure 3 One specific embodiment shown as an example. In this embodiment, the two first positioning members 40 are respectively arranged at both ends of the guide rail 22. During use, the first positioning member 40 closer to the display screen 202 is used to define the working position 100, and the other first positioning member 40 is used to define the preparation position 200.
[0100] Now, the first positioning member 40 for defining the working position 100 is defined as the first positioning member 40a, and the other first positioning member 40 is defined as the first positioning member 40b. Then, the position of the inner end (the end close to the second positioning member 40) of the first positioning member 40a can correspond to the end of the display screen 202 where it is connected to the connection line. That is, when the slider 23 slides to the first positioning member 40, the end of the bracket 21 connected to the slider 23 is located at the end of the display screen 202 where it is connected to the connection line. At this time, the position where the bracket 21 (slider 23) is located is the extreme position of the working position 100. The same applies to the first positioning member 40b, which will not be elaborated here.
[0101] In some other alternative embodiments, the two first positioning members 40 may not be provided at the two end portions of the guide rail 22.
[0102] In some other alternative embodiments, the two first positioning members 40 may not be provided on the guide rail 22, and they may be provided on the base 10. When they are provided on the base 10, the first positioning member 40 can be detachably provided on the base 10, and the guide rail 22 is clamped between the first positioning member 40 and the base 10, thereby realizing the detachable connection between the guide rail 22 and the base 10. The first positioning member 40 can also be spaced from the guide rail 22, but its setting position on the base 10 can play a role in limiting the slider 23. The first positioning member 40 can also be selectively and detachably provided on the base 10 to adjust the position of the first positioning member 40 according to different atomizing devices 2, so as to realize the limiting effects of different working positions 100 and standby positions 200.
[0103] In some embodiments, the lens fitting assistance device 1 may further include a connection plug 30. It is used to connect an external power source and the atomizing device 2 respectively to supply power to the display screen 202 of the atomizing device 2.
[0104] By providing the connection plug 30, during the process of lens fitting operation, the display screen 202 can be in a display state, so as to facilitate the operator to distinguish the edge position of the display screen 202 and further improve the alignment effect between the window 2031 of the lens 203 and the edge of the display screen 202.
[0105] The connection plug 30 is provided on the base 10 and at least partially extends into the accommodation groove 11, so that when the main body 201 of the atomizing device 2 is placed in the accommodation groove 11, the plug end of the connection plug 30 can be inserted into the main body 201 to realize the electrical connection between the two.
[0106] It should be understood that "the connection plug 30 at least partially extends into the accommodation groove 11" can be understood as that the projection of the connection plug 30 on the plane parallel to the bottom wall of the accommodation groove 11 and the projection of the accommodation groove 11 on the plane parallel to the bottom wall of the accommodation groove 11 have a non-zero overlapping area.
[0107] For example, when the connecting plug 30 is inserted at the midpoint in the thickness direction of the main body 201 at the position where it is inserted into the main body 201. When the depth of the accommodating groove 11 is less than half of the thickness of the main body 201, the end of the connecting plug 30 can be located outside the space defined by the accommodating groove 11, but the aforementioned projected overlapping area is not equal to zero. When the depth of the accommodating groove 11 is equal to or greater than half of the thickness of the main body 201, the end of the connecting plug 30 is located inside the space defined by the accommodating groove 11.
[0108] It should be understood that when the end of the connecting plug 30 is located inside the space defined by the accommodating groove 11 (the depth of the accommodating groove 11 is equal to or greater than half of the thickness of the main body 201), at the position of the base 10 corresponding to the connecting plug 30, an accommodating groove adapted to the connecting plug 30 can also be provided to facilitate the installation of the connecting plug 30.
[0109] In some embodiments, the lens fitting assisting device 1 may further be provided with at least one second positioning member 50, and the second positioning member 50 can be detachably connected to the base 10 for defining the setting position of the connecting plug 30 on the base 10.
[0110] It should be understood that since at least part of the connecting plug 30 extends into the accommodating groove 11, when the atomizing device 2 needs to be placed in the accommodating groove 11, the connecting plug 30 extending into the accommodating groove 11 may block the placement of the atomizing device 2.
[0111] By providing the second positioning member 50, the connecting plug 30 can be detachably mounted on the base 10, so that when the atomizing device 2 is placed in the accommodating groove 11, the connecting plug 30 and the base 10 can be detached from each other to avoid the connecting plug 30 blocking the placement of the atomizing device 2. After the atomizing device 2 is placed therein, the connecting plug 30 is electrically connected to the atomizing device 2 and positioned by the second positioning member 50.
[0112] It should be understood that taking the structure of the atomizing device 2 in the present application as an example, when the length in the major axis direction of the accommodating groove 11 is greater than the length in the major axis direction of the atomizing device 2, the connecting plug 30 can also be fixedly provided on the base 10. At this time, when the atomizing device 2 is placed in the accommodating groove 11, the length of the accommodating groove 11 exceeding the atomizing device 2 can be used to avoid the connecting plug 30 extending into the accommodating groove 11. After the atomizing device 2 is placed in the accommodating groove 11, it is horizontally moved along the major axis direction of the accommodating groove 11 to achieve the electrical connection of the atomizing device 2 to the connecting plug 30.
[0113] The above uses specific examples to illustrate the present application, which is only for helping to understand the present application and is not intended to limit the present application. For those skilled in the art to which the present application pertains, based on the idea of the present application, several simple deductions, deformations or substitutions can also be made.
Claims
1. A lens fitting assisting device is applied to an atomizing device (2), and is characterized in that, Comprising: A base (10) provided with a receiving groove (11) for placing and positioning the atomizing device (2); A support assembly (20) including a bracket (21) that can reciprocate between a standby position (200) and an operating position (100) of the base (10); wherein, when the bracket (21) is at the operating position (100), it can tilt and lift the display screen (202) of the atomizing device (2) so that the display screen (202) is separated from the main body (201) of the atomizing device (2), and at this time the lens (203) of the atomizing device (2) is in contact with the display screen (202) alone.
2. The lens fitting assistance device according to claim 1, characterized in that, The lens (203) is a non-planar lens.
3. The lens fitting assistance device according to claim 1, characterized in that, The support assembly (20) further includes a guide rail (22) provided on the base (10) and located on one side of the receiving groove (11), arranged parallel to the length direction of the receiving groove (11); the bracket (21) is movably arranged on the guide rail (22).
4. The lens fitting assistance device according to claim 3, characterized in that, The support assembly (20) further includes a slider (23) movably arranged on the guide rail (22), and the bracket (21) is mounted on the slider (23).
5. The lens fitting assistance device according to claim 4, wherein, The lens fitting assisting device further includes two first positioning members (40) respectively for defining the positions of the operating position (100) and the standby position (200); the two first positioning members (40) are spaced on the guide rail (22), and the slider (23) is movably arranged between the two first positioning members (40).
6. The lens fitting assistance device according to claim 1, wherein At least one operation groove (12) for taking and placing the atomizing device (2) is further formed on the base (10), and the operation groove (12) communicates with the receiving groove (11).
7. The lens fitting assistance device according to claim 1, wherein The shape of the receiving groove (11) in the width direction is adapted to the shape of the atomizing device (2) in the width direction; And / or, the length of the receiving groove (11) is greater than the length of the atomizing device (2).
8. The lens fitting assistance device according to claim 7, wherein, A through hole (13) is formed on the bottom wall of the receiving groove (11).
9. The lens fitting assistance device according to claim 8, characterized in that, At least one connecting groove (14) with both ends penetrating is further formed on the side surface of the base (10) facing away from the receiving groove (11), and one end of the connecting groove (14) communicates with the through hole (13).
10. The lens fitting assistance device according to any one of claims 1 to 9, characterized in that, Further included is a connecting plug (30) for an external power supply to supply power to the display screen (202), the connecting plug (30) is provided on the base (10) and at least partially extends into the receiving groove (11).