Drying device and cleaning equipment

By employing a combination of high-temperature-resistant rolling elements and air-cutting drying in the drying device, the problem of incomplete drying in traditional drying devices has been solved, thereby improving the packaging quality and production efficiency of camera modules.

CN223856076UActive Publication Date: 2026-01-30DONG GUAN GAO WEI GUANG XUE DIAN ZI YOU XIAN GONG SI
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Patent Information

Application Number
CN202520147108.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2026-01-30
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

Traditional drying devices suffer from problems such as incomplete drying, poor product packaging quality, long drying time, and low efficiency when drying camera modules.

Method used

A drying device was designed, which includes a rolling element with high temperature resistance and a heat distortion temperature of 300℃~350℃. It is used to thoroughly dry the residual liquid in the gap between the carrier and the workpiece to be dried at high temperature. The device also incorporates a combination structure of an air-cutting chamber and a drying chamber to improve drying efficiency and packaging efficiency.

Benefits of technology

It achieves thorough drying of the gap between the carrier and the workpiece to be dried, improving the quality and production efficiency of packaged products, shortening drying time, and increasing processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a drying device and cleaning equipment, and the drying device comprises a device body which is provided with a first inlet and a first outlet which communicate with each other; the supporting assembly is arranged in the device body; the conveying assembly comprises a first driving part and a first rolling part connected to the output end of the first driving part, the first rolling part is movably arranged on the supporting assembly and covers the supporting assembly at least from the first inlet to the first outlet, and the thermal deformation temperature of the first rolling part is 300-350 DEG C. According to the technical scheme, the problems that a traditional drying device is not thorough in drying and poor in product packaging quality are effectively solved; the drying time is long, the drying efficiency is low, and the production efficiency is low.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of processing equipment, in particular to a drying device and cleaning equipment. BACKGROUND

[0002] In the manufacturing process of a camera module, in order to reduce the influence of dirty spots on the yield of products, the camera module needs to be cleaned and dried. In the related art, the camera module is first fixed to a carrier, then transported to a cleaning device by the carrier for cleaning, and finally transported to a traditional drying device for drying to obtain a clean and dry camera module.

[0003] However, since the carrier generally includes a bottom plate and a cover plate, and the camera module is fixed between the bottom plate and the cover plate, a large amount of cleaning liquid and water will remain between the gap between the bottom plate and the cover plate during cleaning. If the drying time is too short, the residual liquid in this part will not be completely dried, affecting the subsequent packaging process and the quality of the packaged product. If the drying time is too long, it will affect the drying efficiency and result in low production efficiency of the camera module. Invention content

[0004] The present application provides a drying device and cleaning equipment to solve the technical problems of incomplete drying of the traditional drying device, poor product packaging quality, long drying time, low drying efficiency, and low production efficiency.

[0005] To this end, in a first aspect, the embodiments of the present application provide a drying device, which includes: a device body having a first inlet and a first outlet in communication; a support assembly arranged in the device body; and a transmission assembly including a first driving member and a first rolling member connected to the output end of the first driving member, the first rolling member being movably arranged in the support assembly and covering the support assembly at least at the first inlet to the first outlet, and the thermal deformation temperature of the first rolling member being 300-350 DEG C.

[0006] In one possible implementation, the device body includes a wind cutting chamber and a drying chamber in communication, the first inlet is arranged in the wind cutting chamber, and the first outlet is arranged in the drying chamber.

[0007] In one possible implementation, the device body further includes a buffer chamber, the buffer chamber is in communication with the drying chamber, and the first outlet is arranged in the buffer chamber.

[0008] In one possible implementation, the drying device further includes a first heat preservation member arranged in the drying chamber; and / or,

[0009] The drying device further includes a second heat preservation member arranged in the buffer chamber.

[0010] In a possible implementation, the drying device further comprises a detection member arranged at the first outlet, and the detection member is configured to detect the workpiece to be dried transmitted by the first rolling member.

[0011] In a possible implementation, the drying device further comprises a feeding chamber, a second driving member, and a second rolling member connected to an output end of the second driving member, a second inlet of the feeding chamber is communicated with the first outlet, the second rolling member is movably arranged in the feeding chamber through the support assembly, one end of the second rolling member is connected to the first rolling member, and the other end of the second rolling member passes through a second outlet of the feeding chamber.

[0012] In a possible implementation, the feeding chamber is provided with heat dissipation holes.

[0013] In a possible implementation, the drying device further comprises a feeding unit, and the feeding unit is communicated with the inlet end of the cleaning chamber.

[0014] In a possible implementation, the cleaning device comprises a cleaning chamber, an isolation chamber, and a rinsing chamber arranged in sequence and communicated with each other, and the rinsing chamber is communicated with the first inlet.

[0015] In a possible implementation, the cleaning device further comprises a feeding unit, and the feeding unit is communicated with the inlet end of the cleaning chamber.

[0016] According to the drying device and the cleaning equipment provided by the embodiments of the present application, the drying device comprises: a device body having a first inlet and a first outlet communicated with each other; a support assembly arranged in the device body; and a transmission assembly comprising a first driving member and a first rolling member connected to an output end of the first driving member, the first rolling member is movably arranged in the support assembly and covers the support assembly at least at the first inlet and the first outlet, and the thermal deformation temperature of the first rolling member is 300-350 DEG C. According to the technical scheme, the first driving member drives the first rolling member to rotate, so as to transport the carrier on which the workpiece to be dried is fixed from the first inlet to the first outlet of the device body, thereby realizing the drying and transmission of the workpiece to be dried. Compared with the conventional drying device, the highest drying temperature of which is limited by the temperature resistance performance of the device and is not more than 100 DEG C, and the liquid remaining in the gap between the bottom plate and the cover plate of the carrier, the gap between the workpiece to be dried and the bottom plate / cover plate, etc. cannot be completely dried, the thermal deformation temperature of the first rolling member is set to 300-350 DEG C to improve the temperature resistance performance of the first rolling member, so that the first rolling member can work at high temperature, thereby the overall drying temperature of the drying device can be increased, for example, the drying temperature in the device body is about 110 DEG C, so as to completely dry the liquid remaining between the carrier and the workpiece to be dried, the drying effect is good, the subsequent packaging is facilitated, and the quality of the packaged product is improved. At the same time, the high-temperature drying environment can effectively shorten the drying time, improve the drying efficiency and the packaging efficiency, and improve the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0017] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments consistent with the application and, together with the description, serve to explain the principles of the application. In order to more clearly illustrate the technical solutions in the embodiments of the application or in the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the drawings described below can also be obtained by those of ordinary skill in the art without any creative work under the premise of no creative work. One or more embodiments are exemplarily illustrated by the pictures in the drawings corresponding to the embodiments, and the exemplarily illustrations do not constitute a limitation on the embodiments. The elements with the same reference numerals in the drawings represent similar elements, unless otherwise specified. The drawings in the drawings do not constitute a proportional limitation.

[0018] Figure 1 A structural schematic diagram of the drying device provided for the embodiments of the application is shown in the figure.

[0019] Figure 2 A top view of the device body of the drying device provided for the embodiments of the application is shown in the figure.

[0020] Figure 3 A side sectional view of the discharging chamber of the drying device provided for the embodiments of the application is shown in the figure.

[0021] Figure 4 A structural schematic diagram of the cleaning equipment provided for the embodiments of the application is shown in the figure.

[0022] Explanation of reference numerals:

[0023] 100, device body; 101, first inlet; 102, first outlet; 110, air cutting chamber; 120, drying chamber; 130, buffer chamber;

[0024] 200, supporting assembly;

[0025] 300, transmission assembly; 310, first driving member; 320, first rolling member;

[0026] 400, first heat preservation member; 500, second heat preservation member; 600, detection member;

[0027] 700, discharging chamber; 701, second inlet; 702, second outlet; 703, heat dissipation hole; 800, second driving member; 900, second rolling member;

[0028] 10, base; 20, cleaning device; 21, cleaning chamber; 22, isolation chamber; 23, rinsing chamber; 30, drying device; 40, feeding unit. DETAILED DESCRIPTION

[0029] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the scope of protection of the present application.

[0030] The following disclosure provides many different embodiments, or examples, for implementing different structures of the present application. For the purpose of simplification, the components and arrangements of the specific examples are described in the following. Of course, they are only examples and the purpose is not to limit the present application. In addition, reference numerals and / or letters can be repeated in different examples in the present application. Such repetition is for the purpose of simplification and clarity, and does not indicate the relationship between the various embodiments and / or arrangements discussed. In addition, the present application provides various specific examples of processes and materials, but a person of ordinary skill in the art can realize the applicability of other processes and / or the use of other materials.

[0031] For the purpose of description, spatial relative terms can be used in the description to describe the relative position relationship or movement of one element or feature with respect to another element or feature as shown in the drawings, such as "inner", "outer", "inboard", "outboard", "under", "below", "on", "above", "front", "back", etc. Such spatial relative terms are intended to include different orientations of the device in use or operation in addition to the orientation depicted in the drawings. For example, if the device in the drawings is flipped over or the posture is changed or the movement state is changed, then the directional indications are also changed accordingly, for example: the element described as "under" or "below" another element or feature will be subsequently oriented as "above" or "above" another element or feature. Therefore, the example term "below" can include both the up and down positions. The device can be additionally oriented (rotated by 90 degrees or in other directions) and the spatial relative relationship descriptors used in the text are interpreted accordingly.

[0032] Referring to Figure 1 and Figure 2The embodiment of the present application provides a drying device, which comprises a device body 100, a first inlet 101 and a first outlet 102 which are communicated, a supporting assembly 200 arranged in the device body 100, and a transmission assembly 300 comprising a first driving member 310 and a first rolling member 320 connected to the output end of the first driving member 310, wherein the first rolling member 320 is movably arranged in the supporting assembly 200 and covers the supporting assembly 200 at least at the first inlet 101 and the first outlet 102, and the thermal deformation temperature of the first rolling member 320 is 300-350 DEG C.

[0033] In the embodiment, the first rolling member 320 is driven to rotate by the first driving member 310, so as to convey the carrier on which the workpiece to be dried is fixed from the first inlet 101 to the first outlet 102 of the device body 100, thereby realizing the drying and transmission of the workpiece to be dried. Compared with the conventional drying device 30, the highest drying temperature provided by the conventional drying device 30 does not exceed 100 DEG C due to the limitation of the temperature resistance performance of the conventional drying device 30, and the conventional drying device 30 cannot completely dry the liquid remaining in the gap between the bottom plate and the cover plate of the carrier, the gap between the workpiece to be dried and the bottom plate / cover plate and the like. The thermal deformation temperature of the first rolling member 320 of the drying device 30 is set to 300-350 DEG C, so as to improve the temperature resistance performance of the first rolling member 320, so that the first rolling member 320 can work at high temperature, thereby the overall drying temperature of the drying device 30 can be improved, for example, the drying temperature in the device body 100 is about 110 DEG C, the liquid remaining between the carrier and the workpiece to be dried can be completely dried, the drying effect is good, the subsequent packaging is facilitated, and the quality of the packaged product is improved; meanwhile, the high-temperature drying environment can effectively shorten the drying time, improve the drying efficiency and the packaging efficiency, and improve the production efficiency.

[0034] Specifically, the drying device 30 is configured as a combined workpiece including at least a device body 100, a support assembly 200, and a transmission assembly 300. The device body 100 can be a near-box or box-like structure and can be made of stainless steel. The device body 100 has a drying chamber with a heating assembly inside. The heating assembly can be used to heat the gas in the drying chamber to provide a certain drying temperature environment for the workpiece to be dried. The first inlet 101 and the first outlet 102 arranged thereon are in communication with the drying chamber. The workpiece to be dried can enter the drying chamber through the first inlet 101 for drying. After a certain drying time, the workpiece to be dried is sent out of the drying chamber from the first outlet 102. In this way, the continuous drying of multiple workpieces to be dried can be realized, and the drying efficiency is high. The support assembly 200 can be a pipeline track frame with a track arranged on the horizontal plane. The track penetrates the device body 100 through the first inlet 101 and the first outlet 102. The bottom of the track is provided with a support foot which is placed on the ground and located outside the device body 100. Alternatively, the support assembly 200 can be a horizontal frame connected to the inner wall of the device body 100. It can be detachably connected to the device body 100 by screws / bolts, or it can be connected to the device body 100 by welding / heat melting. The horizontal frame can be spliced by multiple rod-shaped tubes, such as multiple stainless steel tubes spliced into a horizontal ladder structure or a horizontal grid frame. The support assembly 200 can be arranged at the middle region of the drying chamber to provide support for the transmission assembly 300, the carrier and the workpiece to be dried. It can also make hot gas reach most of the positions of the periphery of the carrier and the workpiece to be dried, thereby increasing the drying area, shortening the drying time, improving the drying efficiency and improving the drying effect. The transmission assembly 300 is configured as a combined member including at least a first driving member 310 and a first rolling member 320. The first driving member 310 can be a rotary motor / motor, etc. for driving the first rolling member 320 to rotate. The first rolling member 320 can include multiple long shafts and multiple rollers. The long shafts extend in a direction perpendicular to the conveying direction of the carrier, and multiple rollers are arranged on the long shafts in an axial direction. The multiple long shafts are distributed in the conveying direction of the carrier. The carrier is placed on the multiple rollers. In this way, the multiple long shafts of the first rolling member 320 can be driven to rotate by the first driving member 310 to drive the multiple rollers on the long shafts to rotate. The carrier and the workpiece to be dried fixed on the carrier are conveyed forward by the friction between the first rolling member 320 and the carrier placed thereon, thereby realizing the pipeline drying and transmission of the workpiece to be dried. The residence time is short, the response speed is fast, and the drying efficiency is high.

[0035] Furthermore, this example can achieve a heat distortion temperature of 300℃ to 350℃ by selecting the material used to manufacture the first rolling element 320. For example, PEEK material can be selected to manufacture the first rolling element 320, which has a heat distortion temperature of 316℃. When subjected to a drying temperature of 110℃, it will not deform. Under this drying temperature environment, the residual liquid in the gap between the carrier placed on it and the workpiece to be dried fixed on the carrier can be thoroughly dried. It has excellent temperature resistance and a long service life.

[0036] It is understood that the drying temperature of the drying device 30 provided in this application embodiment should not exceed the hot melt temperature of the adhesive used in the workpiece to be dried, so as to avoid the adhesive melting due to excessive temperature during the drying process, which would affect the bonding performance of the workpiece to be dried.

[0037] like Figure 1 As shown, in one possible implementation, the device body 100 includes a connected air-cutting chamber 110 and a drying chamber 120, with a first inlet 101 located in the air-cutting chamber 110 and a first outlet 102 located in the drying chamber 120.

[0038] In this embodiment, the specific configuration of the device body 100 is optimized. Specifically, the device body 100 is configured as a combined structure including at least an air-cutting chamber 110 and a drying chamber 120. The air-cutting chamber 110 can be a box structure with an internal air-blowing component that can largely blow away the cleaning liquid on the carrier and the workpiece to be dried, reducing subsequent drying time and improving subsequent drying efficiency. The drying chamber 120 can be a box structure arranged side by side with the air-cutting chamber 110, with an internal heating component that can provide a preset drying temperature to the drying chamber 120, causing the residual liquid in the carrier and the workpiece to be dried entering the drying chamber 120 to evaporate, achieving a drying effect and facilitating subsequent packaging. The air-cutting chamber 110 and the drying chamber 120 are connected by a curtain-like opening. Thus, the carrier and the workpiece to be dried enter the air-cutting chamber 110 through the first inlet 101, and after air-drying in the air-cutting chamber 110, they exit through the opening and enter the drying chamber 120. After drying in the drying chamber 120, they exit from the first outlet 102, thereby completing the removal and drying of the cleaning liquid. The device body 100 provided in this example includes at least two drying methods: air-drying and drying. This can significantly shorten the drying time of the workpiece after cleaning, improve processing efficiency, and enhance the convenience and reliability of subsequent packaging.

[0039] like Figure 1 As shown, in one possible implementation, the device body 100 further includes a buffer chamber 130, which is connected to the drying chamber 120, and a first outlet 102 is located in the buffer chamber 130.

[0040] In this embodiment, the specific configuration of the device body 100 is further optimized. Specifically, the device body 100 is configured to include at least a combination of the wind cutting chamber 110, the drying chamber 120, and the buffer chamber 130. The buffer chamber 130 can be a box structure arranged side by side with the drying chamber 120, and a buffer table is arranged therein to provide a cooling buffer zone for the carrier and the workpiece to be dried output from the drying chamber 120. Since the drying temperature of the drying device 30 provided in this example is higher than that of the conventional drying device 30, by arranging the buffer chamber 130, on the one hand, the output temperature of the carrier and the workpiece to be dried can be preliminarily reduced to facilitate the workers to take and improve the safety performance of the operation; on the other hand, the carrier and the workpiece to be dried coming out of the drying chamber 120 can be prevented from directly contacting the external environment, causing problems such as delamination or cracking due to sudden temperature drop, and improving the quality of the packaged product.

[0041] As shown in Figure 1 In a possible implementation manner, the drying device 30 further includes a first heat preservation member 400 arranged in the drying chamber 120, and / or the drying device 30 further includes a second heat preservation member 500 arranged in the buffer chamber 130.

[0042] In this embodiment, the specific configuration of the drying device 30 is further optimized. Specifically, the drying device 30 is configured to include at least a combination of the device body 100, the support assembly 200, the transmission assembly 300, and the first heat preservation member 400 and / or the second heat preservation member 500. The first heat preservation member 400 can be heat preservation cotton which is attached to the inner wall of the drying chamber 120 by adhesion or the like to lock the temperature in the drying chamber 120, reduce heat loss, improve the effective utilization rate of heat energy, save energy and reduce emissions. The second heat preservation member 500 can be heat preservation cotton which is attached to the inner wall of the buffer chamber 130 by adhesion or the like to lock the temperature in the buffer chamber 130, reduce heat loss, improve the effective utilization rate of heat energy, save energy and reduce emissions.

[0043] As shown in Figure 1 In a possible implementation manner, a detection member 600 is arranged at the first outlet 102, and the detection member 600 is used to detect the workpiece to be dried transmitted by the first rolling member 320.

[0044] In this embodiment, the specific configuration of the drying device 30 is further optimized. Specifically, the drying device 30 is configured to include at least a combination of the device body 100, the support assembly 200, the transmission assembly 300, and the detection piece 600. The detection piece 600 can be a high-temperature-resistant optical fiber sensor, which is arranged at the outlet end of the buffer chamber 130 and is used to detect the number of carriers / works to be dried output from the buffer chamber 130. When the output number and the input quality are not equal, an alarm is sent to remind the operator to maintain, so as to avoid the situation that the carriers / works to be dried are accumulated in the buffer chamber 130 / drying chamber 120 due to jamming, and to improve the conveying smoothness and drying operation safety of the drying device 30. The drying device 30 provided in this example can realize self-detection of the transmission system through the detection piece 600, can timely find the jamming problem, and has strong protection performance.

[0045] As shown in Figure 1 and Figure 3 In a possible implementation manner, a blanking chamber 700, a second driving piece 800, and a second rolling piece 900 connected to the output end of the second driving piece 800 are further included. The second inlet 701 of the blanking chamber 700 is in communication with the first outlet 102. The second rolling piece 900 is movably arranged in the blanking chamber 700 through the support assembly 200. One end of the second rolling piece 900 is opposite to the first rolling piece 320, and the other end of the second rolling piece 900 penetrates through the second outlet 702 of the blanking chamber 700.

[0046] In this embodiment, the specific configuration of the drying device 30 is further optimized. Specifically, the drying device 30 is configured to include at least a device body 100, a support assembly 200, a conveying assembly 300, a discharging chamber 700, a second driving member 800, and a second rolling member 900. The discharging chamber 700 can have a box structure and a discharging cavity. A discharging table is arranged in the discharging cavity and used to place the carrier / workpiece after drying. One end of the discharging table is connected to the support assembly 200 at the first outlet 102, and the other end extends out of the second outlet 702. The second inlet 701 and the second outlet 702 arranged on the discharging chamber 700 are respectively connected to the discharging cavity. The workpiece after drying is output from the first outlet 102, enters the discharging cavity through the second inlet 701, and is output from the second outlet 702 after cooling in the discharging cavity. In this way, the continuous cooling output of multiple workpieces after drying can be realized, and the production efficiency is high. The second driving member 800 can be a rotary motor / motor, etc., used to drive the second rolling member 900 to rotate. The structure of the second rolling member 900 is similar to that of the first rolling member 320. The second rolling member 900 can be made of high-temperature material, such as peek material, to increase the service life. The second rolling member 900 can also be made of conventional material, such as UPE material, to reduce the cost. The second rolling member 900 is connected to the first rolling member 320 to realize seamless transmission of the carrier / workpiece to be dried between the device body 100 and the discharging chamber 700, improve the smoothness of conveying, and have high processing efficiency.

[0047] In one possible implementation, the discharging chamber 700 is provided with heat dissipation holes 703. In this way, the high-temperature gas in the discharging chamber 700 can be quickly discharged to the external environment through the heat dissipation holes 703, the temperature can be quickly reduced, the work personnel can easily take the carrier / workpiece to be dried, the work personnel can be effectively prevented from being scalded, and the work safety is high.

[0048] In an example, the heat dissipation holes 703 are arranged in an array to increase the heat dissipation area and further improve the heat dissipation efficiency and effect.

[0049] In addition, as shown in Figure 4 The present application also provides a cleaning device, which includes a base 10, a cleaning device 20, and a drying device 30 as described above. The cleaning device 20 and the drying device 30 are sequentially arranged on the base 10.

[0050] The cleaning equipment provided in the embodiment can completely dry the liquid remaining in the gap between the bottom plate and the cover plate of the carrier after cleaning, the liquid remaining in the gap between the workpiece to be dried and the carrier, and the liquid remaining in the gap between the workpiece to be dried and the carrier, has good drying effect, high drying efficiency, and is beneficial to subsequent product packaging. Specifically, the cleaning equipment is configured as a combined member including at least a base 10, a cleaning device 20, and a drying device 30. The base 10 can be a long box structure arranged on the ground and internally arranged with a cleaning liquid recovery pipeline. The inlet of the cleaning liquid recovery pipeline is in communication with the cleaning device, and the outlet is in communication with a liquid recovery device. In this way, the cleaning liquid can be recycled. The cleaning device 20 can be a box structure arranged on the base 10. A shower head group is arranged at the top of the cleaning device 20 for spraying cleaning liquid to clean the carrier and the workpiece to be dried passing below. A liquid recovery port is arranged at the bottom of the cleaning device 20 and is in communication with the cleaning liquid recovery pipeline in the base 10. The specific structure of the drying device 30 is referred to the above embodiment. Since the cleaning equipment adopts all the technical solutions of the above embodiments, it at least has all the beneficial effects brought by the technical solutions of the above embodiments, which will not be repeated here.

[0051] In one possible implementation, the cleaning device 20 includes a cleaning chamber 21, an isolation chamber 22, and a rinsing chamber 23 arranged in sequence and in communication. The rinsing chamber 23 is in communication with the first inlet 101.

[0052] In the embodiment, the specific configuration of the cleaning device 20 is optimized. Specifically, the cleaning device 20 is configured as a combined structure including at least a cleaning chamber 21, an isolation chamber 22, and a rinsing chamber 23. The cleaning chamber 21, the isolation chamber 22, and the rinsing chamber 23 can be box structures arranged side by side. A shower head group is arranged in the cleaning chamber 21 for spraying cleaning liquid. The isolation chamber 22 is used to provide a cleaning reaction time for the cleaning liquid attached to the carrier / workpiece to be dried, so that the cleaning liquid and the dirt attached thereto fully react, and the cleaning effect is improved. A shower head group is arranged in the rinsing chamber 23 for spraying water and the like to flush the cleaning liquid and dirt attached to the carrier / workpiece to be dried. The cleaning device 20 provided in the example has good cleaning effect, which is beneficial to reducing the influence of dirt on product yield and improving the imaging quality of the camera module.

[0053] In one possible implementation, a feeding unit 40 is further included, which is in communication with the inlet end of the cleaning chamber 21.

[0054] In this embodiment, the specific configuration of the cleaning device is further optimized. Specifically, the cleaning device is configured as a combined component including at least the base 10, the cleaning device 20, the drying device 30, and the feeding unit 40. The feeding unit 40 can be a feeding table connected with a conveying belt, and a roller transmission assembly is arranged on the top of the feeding unit 40. The feeding unit 40 can transmit the carrier transported by the conveying belt into the cleaning chamber 21, so as to realize automatic and continuous feeding and improve the processing efficiency.

[0055] It is to be understood that the terminology used herein is for the purpose of describing particular example embodiments only and is not intended to be limiting. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. The terms "comprises", "comprising", "includes", "including" and the like are to be construed to be inclusive (i.e., to include both instances of open- and closed- ended conditions) unless otherwise indicated. The methods described herein can be implemented by one or more computer programs or software modules that operate to perform the methods.

[0056] Although the terms first, second, third, etc. can be used herein to describe various elements, components, regions, layers and / or sections, these elements, components, regions, layers and / or sections should not be limited by these terms. These terms can be only used to distinguish one element, component, region, layer or section from another region, layer or section. Terms such as "first", "second", and other numerical terms when used herein do not imply a sequence or order unless clearly indicated by the context. Thus, a first element, component, region, layer or section discussed below could be termed a second element, component, region, layer or section without departing from the teachings of the example embodiments.

[0057] The specific embodiments described hereinabove are shown by way of example, and could be practiced not only as described, but could also be practiced with proper modification within the scope of the present application. Accordingly, the present application is not intended to be limited to the examples described hereinabove, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A drying apparatus, characterized by, The device comprises: a device body (100) having a first inlet (101) and a first outlet (102) in communication; a supporting assembly (200) arranged in the device body (100); and a conveying assembly (300) comprising a first driving member (310) and a first rolling member (320) connected to an output end of the first driving member (310), the first rolling member (320) being movably arranged in the supporting assembly (200) and covering the supporting assembly (200) at least at the first inlet (101) and the first outlet (102), the first rolling member (320) having a hot deformation temperature of 300-350°C. The device body (100) comprises a wind cutting chamber (110) and a drying chamber (120) in communication, the first inlet (101) being arranged in the wind cutting chamber (110), and the first outlet (102) being arranged in the drying chamber (120).

2. The drying apparatus according to claim 1, wherein The device body (100) further comprises a buffer chamber (130) in communication with the drying chamber (120), and the first outlet (102) is arranged in the buffer chamber (130).

3. The drying apparatus according to claim 2, wherein The drying device (30) further comprises a first heat preservation member (400) arranged in the drying chamber (120); and / or 4. The drying apparatus according to claim 3, wherein The drying device (30) further comprises a second heat preservation member (500) arranged in the buffer chamber (130). The device further comprises a detection member (600) arranged at the first outlet (102), the detection member (600) being used for detecting a workpiece to be dried conveyed by the first rolling member (320).

5. The drying apparatus according to claim 3, wherein The device further comprises a feeding chamber (700), a second driving member (800), and a second rolling member (900) connected to an output end of the second driving member (800), a second inlet (701) of the feeding chamber (700) being in communication with the first outlet (102), the second rolling member (900) being movably arranged in the feeding chamber (700) through the supporting assembly (200), one end of the second rolling member (900) being opposite to the first rolling member (320), and the other end of the second rolling member (900) penetrating out of a second outlet (702) of the feeding chamber (700).

6. The drying apparatus of claim 1, wherein The feeding chamber (700) is provided with a heat dissipation hole (703).

7. The drying apparatus of claim 6, wherein The device comprises a base (10), a cleaning device (20), and a drying device (30) according to any one of claims 1-7, the cleaning device (20) and the drying device (30) being arranged on the base (10) in sequence.

8. A cleaning apparatus characterized by, The cleaning device (20) comprises a washing chamber (21), an isolation chamber (22), and a rinsing chamber (23) arranged in sequence and in communication, the rinsing chamber (23) being in communication with the first inlet (101).

9. The cleaning apparatus of claim 8, wherein, The device further comprises a feeding unit (40) in communication with an inlet end of the washing chamber (21).

10. The cleaning apparatus of claim 9, wherein, ​