Cleaning device
By introducing fans and heating parts into the cosmetic appliance cleaning device, the problem of inability to dry after cleaning is solved, effective cleaning and drying of cosmetic appliances is achieved, and the risk of bacterial growth is reduced.
Patent Information
- Application Number
- CN202421493229.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-06-26
AI Technical Summary
The existing cosmetic utensil cleaning devices cannot be effectively dried after cleaning, resulting in the cosmetic utensils being prone to bacterial growth in wet environments.
A cleaning device including a fan and a heating element is designed. The fan and the heating element are installed in the air supply passage of the main unit, and air is supplied through the fan and the air sent out by the fan is heated to dry cosmetics.
Effective cleaning and drying of cosmetic utensils has been achieved, reducing the risk of bacterial growth and improving hygiene standards after cleaning.
Smart Images

Figure CN222944069U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to but is not limited to the technical field of cosmetic tool cleaning, and in particular to a cleaning device. Background Art
[0002] Commonly used makeup tools include makeup brushes, makeup eggs, etc. After long-term use, these makeup tools are prone to residual makeup powder and dust. If they are not cleaned in time, they are prone to breed bacteria, which may cause clogged pores or skin allergies when used.
[0003] In the past, users usually washed the cosmetics by hand with clean water and then spun or air-dried them. However, the hand-washing method is time-consuming and may not be thorough. Therefore, a cleaning device for cleaning these cosmetic tools has been proposed. The cleaning device includes a first accommodating chamber, a clamping jaw, and a motor for driving the clamping jaw. When cleaning is required, the cosmetic tool is clamped on the clamping jaw, and cleaning liquid is added to the first accommodating chamber to immerse the brush head of the cosmetic tool. Then, the motor drives the clamping jaw to rotate at a high speed, so that the brush head rotates in the cleaning liquid, thereby cleaning the cosmetic tool.
[0004] However, although this method can effectively clean the cosmetic tools themselves, the user still needs to disassemble the cosmetic tools after cleaning and then air dry or sun dry them. Moreover, if the cosmetic tools are left in the first receiving chamber without being disassembled in time for drying, it is even more likely to cause bacteria to grow. Utility Model Content
[0005] The utility model aims to solve the above-mentioned problem of the cleaning device at least to a certain extent. To this end, the utility model provides a cleaning device that can dry the cosmetic tool after cleaning it.
[0006] According to the cleaning device of the utility model, cosmetic tools are cleaned, comprising: a base, formed with a first accommodating cavity for accommodating the cosmetic tools; a main unit, which can be covered or opened relative to the base, and the main unit has: a first mounting seat, which can be covered or opened with the base; a driving unit, which is arranged on the first mounting seat and is connected to a clamping unit of an auxiliary tool for clamping the cosmetic tools or assisting in cleaning the cosmetic tools to drive the clamping unit to rotate; a drying unit, comprising a fan and a heating element, the fan being mounted on the first mounting seat in a manner of supplying air toward the first accommodating cavity when the main unit and the base are covered, and the heating element being mounted on the first mounting seat and located on the air supply path of the fan. Beneficial Effects
[0007] The cleaning device of the utility model can dry the cosmetic tools after cleaning them.
[0008] In some embodiments, the first mounting seat is formed with a through air supply channel, and when the main unit and the base are covered, the air supply channel is connected to the first accommodating cavity; the heating element is installed in the air supply channel.
[0009] In some embodiments, the first mounting seat is formed with a through air outlet channel, and the air outlet channel is formed on the other side of the first mounting seat relative to the air supply channel; when the main unit and the base are covered, the air outlet channel is connected to the first accommodating cavity and to the outside of the cleaning device.
[0010] In some embodiments, the air supply channel is provided with a valve, the valve blocks the air supply channel relative to the first accommodating chamber, and the valve can be opened by wind from the fan in a direction toward the first accommodating chamber.
[0011] In some embodiments, the valve comprises: a cover portion and an elastic portion, wherein the elastic portion applies force to the cover portion in a direction opposite to an air supply direction, so that the cover portion blocks the air supply channel.
[0012] In some embodiments, a mounting hole is formed at one end of the air supply channel adjacent to the first accommodating cavity; the cover portion and the elastic portion are integrally formed of an elastic material, and the elastic portion is telescopically stuck in the mounting hole.
[0013] In some embodiments, the first mounting seat includes: a first shell and a second shell that are detachable from each other; the air supply channel is formed in the second shell; the fan is installed in the first shell, and, when the first shell and the second shell are installed with each other, the fan and the air supply channel are opposite to each other.
[0014] In some embodiments, the first mounting seat includes: a first shell and a second shell that are detachable from each other; the first shell is formed with an annular second wall portion, the second wall portion defines a first channel portion, and the first channel portion is connected to the outside of the cleaning device; the second shell is formed with an annular third wall portion, the third wall portion defines a second channel portion; when the first shell and the second shell are mounted on each other, the end of the third wall portion is embedded in the first channel portion; the first channel portion and the second channel portion together constitute the air outlet channel.
[0015] In some embodiments, the driving portion includes a first motor, the first motor is mounted to the first housing, and the first motor is adjacent to the second wall portion.
[0016] In some embodiments, the drying section further includes: a temperature sensor disposed in the air supply channel for detecting the temperature in the air supply channel; and a temperature control switch connected to the heating element. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of an implementation manner of the cleaning device of the utility model.
[0018] Figure 2 yes Figure 1 Schematic diagram of the internal structure of the cleaning device.
[0019] Figure 3 This is a perspective view of a main machine equipped with a cleaning device and equipped with auxiliary tools.
[0020] Figure 4 This is a diagram showing one direction in a state where the first shell and the second shell of the first mounting base of the host are removed.
[0021] Figure 5 This is a diagram from another direction showing a state where the first shell and the second shell of the first mounting base of the host are removed.
[0022] Figure 6 yes Figure 3 Cross-sectional view at AA in .
[0023] Figure 7 It is a three-dimensional diagram of the rotating part of the cleaning device.
[0024] Figure 8 Schematic diagram of the second shell and some components installed in the second shell.
[0025] Fig. 9 yes Figure 6 A three-dimensional view of the clamping unit in the top view.
[0026] Fig.10 yes Figure 6 A stereoscopic view of the clamping unit in the upward direction.
[0027] Fig.11 yes Fig. 9 Cross-sectional view at BB in .
[0028] Fig.12 yes Fig. 9 Cross-sectional view at BB in . DETAILED DESCRIPTION
[0029] Embodiments of the present embodiment are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present embodiment, and should not be construed as limiting the present embodiment.
[0030] In the description of this embodiment, it should be understood that descriptions involving orientation, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this embodiment and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on this embodiment.
[0031] In the description of this embodiment, "several" means one or more, "more" means more than two, "greater than", "less than", "exceed", etc. are understood to exclude the number itself, and "above", "below", "within", etc. are understood to include the number itself. If there is a description of "first" or "second", it is only used for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features or implicitly indicating the order of the indicated technical features.
[0032] In the description of this embodiment, unless otherwise clearly defined, terms such as setting, installing, connecting, etc. should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in this embodiment based on the specific content of the technical solution.
[0033] Reference Figures 1 to 12 , and mainly refer to Figures 1 to 3 as well as Figure 6 , among which, Figure 2 In the figure, for the convenience of illustration, the outer shell of the cleaning device including the base is partially cut away; Figure 6 In order to facilitate illustration, some structures that are not related to the expression of the main components are omitted. The cleaning device of this embodiment is used to clean a makeup tool 200. As the makeup tool 200, makeup tools 200 such as makeup brushes and egg puffs can be listed. Among them, as makeup brushes, there are makeup brushes for various purposes with different handle diameters. In addition, in the case that some makeup tools 200 are not easy to clamp, auxiliary tools 201 are used to assist in cleaning the makeup tools 200. For example, when cleaning an egg puff, the egg puff can be pressed down by an auxiliary tool 201 (such as an egg puff stirring stick), or the egg puff can be scrubbed with a brush head.
[0034] The cleaning device of this embodiment includes: a base 101, a main unit 102, and a clamping unit 103. The base 101 is formed with a first accommodating cavity 104 for accommodating a cosmetic tool 200. The main unit 102 can be closed or opened relative to the base 101. The main unit 102 has: a first mounting seat 105 that can be closed or opened with the base 101, a driving unit 106 disposed on the first mounting seat 105, and a rotating member 107 rotatably mounted to the middle of the first mounting seat 105. The clamping unit 103 is used to clamp the cosmetic tool 200 or an auxiliary tool 201 for cleaning the cosmetic tool 200. The clamping unit 103 is mounted to the rotating member 107 of the first mounting seat 105 of the main unit 102, and is driven by the driving unit 106 to rotate via the rotating member 107.
[0035] The base 101 is cylindrical, and the first accommodating cavity 104 of the base 101 is used to accommodate the cleaning liquid. In addition, when the clamping unit 103 is installed on the main body 102, when the main body 102 and the base 101 cover each other, part of the clamping unit 103 can also be accommodated in the first accommodating cavity 104. Further, when the main body 102 and the base 101 cover each other, the cosmetic tool 200 or the auxiliary tool 201 clamped by the clamping unit 103 extends from the main body 102 into the first accommodating cavity 104 and is immersed in the cleaning liquid. Therefore, when the main body 102 is working, the cosmetic tool 200 or the auxiliary tool 201 is driven to rotate and quickly stirred in the cleaning liquid, so that the cosmetic tool 200 is cleaned by the cleaning liquid.
[0036] At the edge of the opening of the base 101, a plurality of first engaging grooves 108 are formed along the inner circumference, and correspondingly, at the outer circumference of the first mounting seat 105 of the main body near the bottom, a plurality of engaging points 109 are formed along the circumference, so that the base 101 and the first mounting seat 105 of the host 102 are rotatably engaged with each other through the structure of the first engaging grooves 108 and the engaging points 109. In the engaged state, the host 102 covers the base 101 as a whole. When the host 102 needs to be disassembled, the host 102 is rotated in the rotation direction opposite to the covering direction to disassemble the host 102.
[0037] Continue to refer to Figure 4 as well as Figure 5 The first mounting base 105 of the host 102 includes a first shell 110 and a second shell 111 that are detachable from each other. The first shell 110 and the second shell 111 are connected to each other by screws and / or snap-fit structures. The middle of the first shell 110 and the middle of the second shell 111 are respectively penetrated to avoid the long cosmetic tool 200. When the first shell 110 and the second shell 111 are installed with each other, the space penetrated by the middle of the first shell 110 and the space penetrated by the middle of the second shell 111 are roughly coaxial.
[0038] The driving unit 106 is installed on the first housing 110. The driving unit 106 includes a first motor 112, a control panel 113 for control, and a power interface 114, etc., all of which can be installed on the first housing 110. The control panel 113 and the power interface 114 are installed on the upper part of the first housing 110 to facilitate the operator's operation. The first motor 112 is installed on the lower part of the first housing 110, and the rotating shaft of the first motor 112 extends to the upper part of the first housing 110. The main body of the first motor 112 is located in the area between the first housing 110 and the second housing 111. When observed from a top view, the first motor 112 is located at the circumferential edge of the first mounting seat 105. In other words, the first motor 112 is installed at the circumferential edge of the first housing 110.
[0039] Continue to refer to Figure 6 And auxiliary reference Figure 4 as well as Figure 5 A bearing seat 115 is formed in the middle of the second housing 111, and a bearing 116 is installed in the bearing seat 115. The rotating member 107 is rotatably installed to the second housing 111 through the bearing 116. The rotating member 107 is used to install the clamping unit 103. The rotating member 107 is in a through-cylindrical shape. The rotating member 107 includes a cylindrical main body 117, and the rotating member 107 is installed to the inner ring of the bearing 116 through the main body 117. A belt mounting portion 118 is formed at one axial end of the rotating member 107, and the belt mounting portion 118 and the main body 117 are integrally formed. The structure of the belt mounting portion 118 is not particularly limited. For example, the belt mounting portion 118 can be used to install the transmission belt 121. In this case, the outer periphery of the belt mounting portion 118 is smooth as a whole; in addition, the belt mounting portion 118 can also be used to install a synchronous belt. In this case, the belt mounting portion 118 includes a tooth portion formed in the circumferential direction of the rotating member 107 to mesh with the synchronous belt. A first clamping portion 119 is formed on the inner wall of the rotating member 107 . The first clamping portion 119 is used to be engaged with a second clamping portion 150 (described later) of the clamping unit 103 , so as to install the clamping unit 103 .
[0040] In the state of being mounted on the bearing 116 located in the second housing 111, the belt mounting portion 118 of the rotating member 107 is exposed above the first housing 110. The first motor 112, whose output shaft is located above the first housing 110, is connected to the belt mounting portion 118 of the rotating member 107 via the belt transmission mechanism 120, thereby driving the rotating member 107 to rotate. The belt transmission mechanism 120 includes a pulley and a transmission belt 121, wherein the pulley includes a first pulley 122 mounted on the output shaft of the first motor 112 and the rotating member 107. In other words, the rotating member 107 having the belt mounting portion 118 also becomes a part of the belt transmission mechanism 120, thereby reducing the number of parts of the belt transmission mechanism 120. In addition, the belt transmission mechanism 120 is not particularly limited, for example, it can be a belt transmission mechanism 120, in which case the outer periphery of the belt mounting portion 118 is smooth as a whole; it can also be a synchronous belt transmission mechanism 120, in which case the outer periphery of the belt mounting portion 118 is formed with a toothed portion that meshes with the synchronous belt.
[0041] Thus, when the clamping unit 103 is mounted on the rotating member 107 and the cosmetic tool 200 or the auxiliary tool 201 is mounted on the clamping unit 103, the operation of the first motor 112 can be started or stopped by operating the control button of the control panel 113. For example, when the cosmetic tool 200 needs to be cleaned, the main unit 102 is disassembled, and then the cleaning liquid is injected into the base 101. Then, the cosmetic tool 200 is installed in the clamping unit 103. Then, the main unit 102 is covered on the base 101, and the control button of the control panel 113 is operated to start the operation of the first motor 112. At this time, the rotating member 107 driven by the first motor 112 rotates at a high speed, thereby driving the clamping unit 103 and the cosmetic tool 200 (such as a makeup brush) mounted on the clamping unit 103 to rotate at a high speed. The brush head of the high-speed rotating cosmetic brush is immersed in the cleaning liquid, thereby washing away the dust and foundation on the brush head, thereby cleaning the cosmetic brush. After cleaning is completed, the main unit 102 is disassembled, and then the cleaning liquid in the first receiving chamber 104 of the base 101 is poured out.
[0042] Continue to refer to Figures 3 to 6 As mentioned above, if the cosmetic tool 200 is left in the first accommodating cavity 104 and is not removed in time for drying, bacteria may grow. To this end, the main body 102 of the cleaning device of the embodiment further includes a drying unit 122, which includes a fan 123 and a heating element 124. The fan 123 is mounted on the first mounting seat 105 in a manner of supplying air toward the first accommodating cavity 104 when the main body 102 and the base 101 are covered. The heating element 124 is mounted on the first mounting seat 105 and is located on the air supply path of the fan 123.
[0043] In the cleaning device of the embodiment, by providing the drying unit 122 including the fan 123 and the heater 124, and installing the heater 124 on the air supply path of the fan 123, the air from the fan 123 can be easily heated and sent into the first receiving chamber 104. Thus, the cosmetic tool 200 can be dried after being cleaned.
[0044] The first mounting seat 105 is formed with a through air supply channel 125 on the air supply path of the fan 123, and when the main unit 102 and the base 101 are covered, the air supply channel 125 is connected to the first accommodating chamber 104. More specifically, the fan 123 is mounted on the first housing 110, and the air supply channel 125 is formed on the second housing 111. And, when the first housing 110 and the second housing 111 are mounted to each other, the fan 123 and the air supply channel 125 are opposite. The structure of the fan 123 of the drying section 122 is not particularly limited, for example, a commercially available fan can be used. In addition, in a specific example, the drying section 122 may include a second motor 126, and a fan blade 127 is mounted on the output shaft of the second motor 126, so that the second motor 126 can drive the fan blade 127 to rotate, thereby forming the fan 123. The second motor 126 is mounted on the first housing 110, and the second motor 126 is located on the other side of the radial edge of the first housing 110 relative to the first motor 112 on the first housing 110. In addition, the fan blade 127 installed on the second motor 126 is located between the first housing 110 and the second housing 111. The second housing 111 is formed with a first wall portion 128, and the first wall portion 128 defines the air supply channel 125. In a top view, the first wall portion 128 extends toward the first housing 110. When the first housing 110 and the second housing 111 are installed with each other, the fan blade 127 is at least partially accommodated in the air supply channel 125.
[0045] In addition, the heating element 124 is installed in the air supply channel 125. The heating element 124 is not particularly limited as long as it can heat the wind from the fan 123. For example, the heating element 124 can be a heating wire, a heating plate, a heating coil or a combination thereof. In a specific example, the heating element 124 can be a heating member that is composed of, for example, four heating plates and is cross-shaped as a whole when viewed from a top view. The second shell 111 is formed with a holding beam 129 for holding the heating element 124 below the first wall portion 128. The number of holding beams 129 is consistent with the number of heating plates of the heating element 124. For example, when the heating element 124 has four plates, the holding beam 129 also includes four places. A plurality of holding beams 129 are evenly spaced and arranged along the circumference of the inner peripheral surface of the first wall portion 128 below the inner side of the first wall portion 128. One end of the plurality of holding beams 129 is connected to the inner side of the first wall portion 128, and the other end of each holding beam 129 is connected to each other in the middle of the air supply channel 125 to form a whole. Thus, the heating element 124 is held by these holding beams 129. In addition, the air supply passage 125 is communicated through the spaces between the adjacent holding beams 129, and the wind from the fan 123 passes through the spaces in the air supply passage 125 and enters the first accommodating chamber 104.
[0046] Main reference Figure 6 , and auxiliary reference Figure 7 , among which, in Figure 7 The first wall 128 is partially cut away for convenience of illustration. The drying section 122 further includes: a heating control circuit board 130, a temperature sensor 131 and a temperature control switch 132. The heating control circuit board 130 is used to control the heating of the heating element 124 or stop the heating. The temperature sensor 131 is arranged in the air supply channel 125 and is used to detect the temperature in the air supply channel 125. The temperature control switch 132 is connected to the heating element 124, and according to the temperature in the air supply channel 125 detected by the temperature sensor 131, the heating element 124 is operated or stopped. The heating control circuit board 130, the temperature sensor 131 and the temperature control switch 132 can all be accommodated in the air supply channel 125. The installation method of the heating control circuit board 130 and the temperature control switch 132 is not particularly limited. For example, a mounting groove (not marked with a reference numeral) can be formed on the inner side of the first wall 128, and the heating control circuit board 130 can be inserted into the mounting groove. In addition, the temperature sensor 131 may be, for example, a thermistor sensor (NTC), and the temperature sensor 131 may be attached to the inner side of the first wall portion 128 .
[0047] When the temperature in the air supply channel 125 detected by the temperature sensor 131 is lower than, for example, 70°C, the temperature control switch 132 enables the heating element 124 to operate, thereby heating the wind from the fan 123. In addition, when the temperature in the air supply channel 125 detected by the temperature sensor 131 is higher than, for example, 85°C, the temperature control switch 132 stops the heating element 124 from operating, thereby preventing the temperature in the air supply channel 125 from being too high, thereby preventing the second housing 111 from being burned. In addition, the heating element 124 is used to heat the wind from the fan 123, which can also be understood from other perspectives as the fan 123 dissipating heat from the air supply channel 125. In other words, when the fan 123 stops operating due to damage or other unexpected reasons, the temperature control switch 132 stops the heating element 124 from operating. As a result, the risk of the second housing 111 being burned due to the excessive temperature in the air supply channel 125 caused by the inability to dissipate heat in the air supply channel 125 can be reduced.
[0048] In order to facilitate the electrical connection between the control panel 113 installed on the first housing 110 and the heating control circuit board 130, the temperature sensor 131 and the temperature control switch 132 installed on the inner side of the first wall portion 128 of the second housing 111, a gap for the wire to pass through can be formed in the first wall portion 128. Specifically, the first housing 110 is formed with a retaining strip 133 extending toward the second housing 111, and the retaining strip 133 is formed at a position close to the installation position of the second motor 126. The first wall portion 128 of the second housing 111 is formed with a cutout 134 open toward the first housing 110. When the first housing 110 and the second housing 111 are mounted to each other, the retaining strip 133 is inserted into the cutout 134, and there is a gap between the end of the retaining strip 133 and the bottom of the cutout 134 to allow various wires to pass through.
[0049] Main reference Figure 6 The air supply channel 125 is provided with a valve 135, the valve 135 blocks the air supply channel 125 relative to the first accommodating chamber 104, and the valve 135 can be pushed open by the wind from the fan 123 in the direction toward the first accommodating chamber 104. The valve 135 is, for example, installed at one end of the air supply channel 125 adjacent to the first accommodating chamber 104. The valve 135 can be installed on a plurality of retaining beams 129 and face the first accommodating chamber 104. More specifically, a mounting hole 136 is formed at one end of the air supply channel 125 adjacent to the first accommodating chamber 104. The mounting hole 136 is formed at a location where the plurality of retaining beams 129 are connected to each other. The mounting hole 136 can be formed approximately coaxially with the air supply channel 125. The valve 135 is installed in the mounting hole 136, thereby blocking the communicating position of the air supply channel 125 and the first accommodating chamber 104.
[0050] The valve 135 has a cover 137 and an elastic part 138. The elastic part 138 applies force to the cover 137 in a direction opposite to the air supply direction, so that the cover 137 blocks the air supply passage 125. The elastic part 138 is installed in the installation hole 136. In the initial state, the elastic part 138 applies a slight force to the cover 137. The cover 137 is located on the side of the holding beam 129 opposite to the first accommodating cavity 104. The cover 137 is roughly disc-shaped, and the area of the cover 137 is larger than the cross-sectional area of the air supply passage 125. In the installed state, the slight force applied by the elastic part 138 to the cover 137 makes the cover 137 fit the side of each holding beam 129 opposite to the first accommodating cavity 104, thereby completely blocking the air supply passage 125.
[0051] The cover 137 and the elastic part 138 can be integrally formed of an elastic material, and the elastic part 138 can be retractably stuck in the mounting hole 136. For example, the valve 135 can be formed of one of elastic materials such as silicone, rubber, etc. The elastic part 138 is in the shape of an axis, one end of the elastic part 138 is connected to the cover 137, and the other end is formed with a hook having a diameter larger than the mounting hole 136. In addition, the distance between the cover 137 and the hook is smaller than the depth of the mounting hole 136. When installing, the hook of the elastic part 138 passes through the mounting hole 136 from the side of the holding beam 129 opposite to the first accommodating cavity 104, and is hung on the other side of the holding beam 129 in a slightly stretched state. Therefore, since the elastic part 138 is stretched in the installed state, the cover 137 is kept in contact with the side of the holding beam 129 opposite to the first accommodating cavity 104 by the contraction force of the elastic part 138.
[0052] In addition, when the fan 123 supplies air toward the air supply channel 125, the fan 123 abuts against the cover 137 and causes the elastic portion 138 to undergo elastic deformation, thereby separating the cover 137 from the retaining beam 129, so that the wind from the fan 123 can enter the first accommodating chamber 104 through the gap between the cover 137 and the second shell 111.
[0053] Continue to refer to Figure 4 as well as Figure 5, the first mounting seat 105 is formed with a through air outlet channel 139, and the air outlet channel 139 is formed on the other side of the first mounting seat 105 relative to the air supply channel 125. When the main unit 102 and the base 101 are covered, the air outlet channel 139 is connected to the first accommodating chamber 104 and is connected to the outside of the cleaning device. By arranging the air outlet channel 139 on the other side of the first mounting seat 105 relative to the air supply channel 125, the path from the air supply channel 125 into the first accommodating chamber 104 and out of the air outlet channel 139 can be extended, thereby effectively drying the cosmetics 200 located in the first accommodating chamber 104. In a specific example, the first housing 110 is formed with an annular second wall portion 140, and the second wall portion 140 defines a first channel portion 141, and the first channel portion 141 is connected to the outside of the cleaning device. In addition, the second housing 111 is formed with an annular third wall portion 142, and the third wall portion 142 defines a second channel portion 143. When the first housing 110 and the second housing 111 are mounted to each other, the end of the third wall portion 142 is embedded in the first channel portion 141. The first channel portion 141 and the second channel portion 143 together form the air outlet channel 139. In addition, the first motor 112 is mounted adjacent to the second wall portion 140.
[0054] The following describes the assembly process of some components of the host 102.
[0055] With the first housing 110 and the second housing 111 of the first mounting seat 105 disassembled, the first motor 112 and the second motor 126 are mounted to the first housing 110, respectively. Next, the fan 123 is mounted to the output shaft of the second motor 126, and the pulley of the belt transmission mechanism 120 is mounted to the first motor 112. Then, the wires of the drying section 122 are placed in the cutout 134. Next, the first housing 110 and the second housing 111 are aligned with the retaining strip 133 of the first housing 110 and the cutout 134 of the first wall portion 128 of the second housing 111, and the second wall portion 140 of the first housing 110 and the third wall portion 142 of the second housing 111 as positioning references. Next, with the first housing 110 and the second housing 111 aligned with each other, the first housing 110 and the second housing 111 are locked, for example, by screws. Finally, the belt (eg, synchronous belt) of the belt transmission mechanism 120 is meshed with the pulley installed on the first motor 112 and the belt installation portion 118 of the rotating member 107. Thus, the installation of the host 102 is completed.
[0056] Main reference Figures 9 to 12 , and auxiliary reference Figure 7 ,in, Fig.11 as well as Fig.12 Both Fig. 9 The cross-sectional view at BB in FIG. 1 is shown in FIG. 1 , but for the sake of illustration, Fig.12 The cosmetic tool 200 is added to the cross-sectional view of FIG. 1 , and the first clamping member 145 and the second clamping member 146 for clamping the cosmetic tool 200 are re-illustrated. Next, the clamping unit 103 and the installation of the clamping unit 103 and the rotating member 107 are described.
[0057] As described above, the clamping unit 103 is mounted to the rotating member 107 of the first mounting seat 105 of the main unit 102, and is driven by the driving unit 106 to rotate via the rotating member 107. The clamping unit 103 is used to detachably clamp the cosmetic tool 200 (such as a makeup brush) or the auxiliary tool 201 (such as an egg puff stirring stick) for cleaning the cosmetic tool 200. Specifically, the clamping unit 103 includes: a second mounting seat 144, a first clamping member 145 and a second clamping member 146. The second mounting seat 144 is cylindrical and has a second accommodating cavity 147 formed in the middle for accommodating the cosmetic tool 200 or the auxiliary tool 201. The first clamping member 145 is coaxially arranged in the second accommodating cavity 147 with the second mounting seat 144. The first clamping member 145 is formed with a plurality of first clamping lips 148 spaced apart along the circumferential direction, and the plurality of first clamping lips 148 clamp the cosmetic tool 200 or the auxiliary tool 201 in a manner of surrounding the outer circumference of the cosmetic tool 200 or the auxiliary tool 201. The second clamping member 146 is coaxially disposed in the second accommodating cavity 147 with the first clamping member 145, and is spaced apart from the first clamping member 145 along the axial direction of the second mounting seat 144. The second clamping member 146 is formed with a plurality of second clamping lips 149 spaced apart along the circumferential direction, and the second clamping member 146 and the first clamping member 145 clamp the cosmetic tool 200 or the auxiliary tool 201 together with the first clamping member 145 in a manner of surrounding the outer circumference of the cosmetic tool 200 or the auxiliary tool 201 with the plurality of second clamping lips 149.
[0058] By having such a clamping unit 103, the cleaning device of the embodiment can clamp more different types of cosmetic tools 200 without replacing the clamping claws (clamping unit 103). Specifically, since the cosmetic tool 200 or the auxiliary tool 201 usually has a columnar handle 200a, by providing a coaxial first clamping member 145 and a second clamping member 146, and each clamping member is respectively formed with a clamping lip that clamps the cosmetic tool 200 or the auxiliary tool 201 in a manner of surrounding the outer periphery of the cosmetic tool 200 or the auxiliary tool 201, in other words, since the clamping lip clamps the cosmetic tool 200 or the auxiliary tool 201 with the axis of the cosmetic tool 200 or the auxiliary tool 201 as a reference, it is possible to adapt to cosmetic tools 200 or the auxiliary tool 201 with different diameters within the deformable range of the clamping lip, so that more different types of cosmetic tools 200 can be clamped without replacing the clamping unit 103, and the versatility of the cleaning device can be improved.
[0059] Reference Figure 7 as well as Fig. 9 The clamping unit 103 can be mounted to the rotating member 107 of the main body by means of a clamping connection. For example, the rotating member 107 is formed with a first clamping portion 119; a second clamping portion 150 is formed at one axial end of the second mounting seat 144 of the clamping unit 103; at least one of the first clamping portion 119 and the second clamping portion 150 can be elastically swung, and the clamping unit 103 is mounted to the rotating member 107 by the first clamping portions 119 and the second clamping portions 150 being mutually clamped.
[0060] The inner wall of the rotating member 107 is formed with a plurality of second engaging grooves 151 as the first engaging portion 119. As long as the clamping unit 103 can be reliably held, the number of the second engaging grooves 151 as the first engaging portion 119 is not particularly limited. For example, the inner wall of the rotating member 107 may be formed with a plurality of second engaging grooves 151, and the plurality of second engaging grooves 151 are spaced and evenly distributed along the circumference of the rotating member 107. In a top view, the second engaging grooves 151 are formed in a roughly U-shape, and the second engaging grooves 151 are formed by removing a portion of the inner wall of the rotating member 107. The second engaging groove 151 includes a supporting surface 152 at the bottom, and the supporting surface 152 is used to support the second engaging portion 150. In addition, the inner wall of the rotating member 107 is formed with ribs 153 at the circumferential edge of each second engaging groove 151. The rib 153 extends from the inner wall of the rotating member 107 toward the middle of the rotating member 107 along the radial direction of the rotating member 107 .
[0061] In addition, the inner wall of the rotating member 107 may also be formed with a plurality of guide grooves 154, one end of the guide groove 154 penetrates the axial direction of the main body 117 of the rotating member 107 along the axial direction of the rotating member 107, and the other end of the guide groove 154 extends along the axial direction of the inner wall of the rotating member 107. The guide grooves 154 are spaced and evenly distributed along the rotating member 107. In addition, the guide grooves 154 and the second clamping grooves 151 are alternately spaced and distributed along the circumferential direction of the rotating member 107.
[0062] The second mounting seat 144 may include a third housing 155 and a fourth housing 156, and the third housing 155 and the fourth housing 156 are detachably mounted in the circumferential direction. For example, the third housing 155 and the fourth housing 156 may be detachably mounted by screws. The second mounting seat 144 has a first end 157 located at the third housing 155. When mounted to the rotating member 107, the third housing 155 of the second mounting seat 144 is opposite to the rotating member 107, and the first end 157 is opposite to the rotating member 107. The first end 157 of the third housing 155 is formed with an annular fourth wall portion 158, and the fourth wall portion 158 protrudes from the first end 157 along the axial direction of the third housing 155. The middle part of the fourth wall portion 158 is formed with a first avoidance space 159 for avoiding the handle 200a of the cosmetic tool 200 or the auxiliary tool 201. In addition, the second mounting seat 144 may also have a second end 160 located at the fourth housing 156. A through second avoidance space 161 is formed on the second end portion 160, and the second avoidance space 161 is coaxial with the first avoidance space 159 defined by the fourth wall portion 158 formed on the third shell 155. Thus, the cosmetic tool 200 or the auxiliary tool 201 can be allowed to pass through the first avoidance space 159 and the second avoidance space 161 in sequence, so as to be partially accommodated in the second accommodating cavity 147.
[0063] A first end portion 157 of the second mounting seat 144 at one end opposite to the rotating member 107 is formed with a plurality of clamping arms 162 at intervals along the circumferential direction, each clamping arm 162 protrudes from the first end portion 157 along the axial direction of the second mounting seat 144, and the end of each clamping arm 162 serves as the second clamping portion 150. More specifically, each clamping arm 162 is formed by further protruding from the edge of the end of the fourth wall portion 158. The end of the clamping arm 162 serving as the second clamping portion 150 is roughly hook-shaped, and when the clamping unit 103 is mounted on the rotating member 107, the end of the clamping arm 162 serving as each second clamping portion 150 is clamped into each second clamping groove 151. The number of the clamping arms 162 is the same as the number of the second clamping grooves 151. The clamping arm 162 is cantilever-shaped, so that it can be elastically deformed. In addition, a plurality of guide protrusions 163 are formed at intervals along the circumferential direction on the outer side of the fourth wall portion 158, one end of the guide protrusion 163 extends along the axial direction of the fourth wall portion 158 to a position substantially flush with the end of the fourth wall portion 158, and the other end of the guide protrusion 163 extends along the axial direction of the fourth wall portion 158 to the first end 157 of the third housing 155. The guide protrusions 163 are spaced and evenly distributed along the circumferential direction of the fourth wall portion 158. In addition, the guide protrusions 163 and the clamping arms 162 are alternately spaced and distributed along the circumferential direction of the fourth wall portion 158.
[0064] When the second mounting seat 144 is mounted on the rotating member 107, each clamping arm 162 is squeezed and deformed by the inner wall of the rotating member 107, and slides from the lower part of the rotating member 107 along the inner surface of the inner wall of the rotating member 107. While pushing the second mounting seat 144, the second mounting seat 144 is rotated relative to the rotating member 107 so that the guide protrusion 163 extends into the guide groove 154, thereby aligning the second mounting seat 144 and the rotating member 107. Then, the second mounting seat 144 is continuously pushed until the clamping arm 162 reaches the second clamping groove 151. After reaching the second clamping groove 151, the end of each clamping arm 162 returns to its original state and is clamped into the second clamping groove 151, and the end of the fourth wall portion 158 abuts against the rib 153 formed on the circumferential edge of each second clamping groove 151. In other words, by making the end of the fourth wall portion 158 of the second mounting seat 144 abut against the rib portion 153, the clamping unit 103 is restrained from sliding further along the inner surface of the inner wall of the rotating member 107. At this time, the end of the clamping arm 162 as the second clamping portion 150 is supported and restricted by the supporting surface 152 of the second clamping groove 151 in the axial direction. In addition, by making the guide protrusion 163 extend into the guide groove 154, the rotation of the clamping unit 103 as a whole relative to the rotating member 107 is restricted. As a result, the clamping unit 103 is reliably held on the rotating member 107 and rotates with the rotation of the rotating member 107.
[0065] Reference Continue Reference Figures 9 to 11 In addition, the clamping unit 103 further includes a retaining cylinder 164, which is accommodated in the second accommodating chamber 147. In addition, when the third housing 155 and the fourth housing 156 are mounted to each other, one axial end of the retaining cylinder 164 and the third housing 155 jointly clamp one of the first clamping member 145 and the second clamping member 146; the other axial end of the retaining cylinder 164 and the fourth housing 156 jointly clamp the other of the first clamping member 145 and the second clamping member 146. For example, one axial end of the retaining cylinder 164 and the first end 157 of the third housing 155 jointly clamp the first clamping member 145, and the other axial end of the retaining cylinder 164 and the second end 160 of the fourth housing 156 jointly clamp the second clamping member 146. In other words, the retaining cylinder 164 is located between the first clamping member 145 and the second clamping member 146 along the axial direction of the second mounting seat 144. Thus, the first clamping member 145 and the second clamping member 146 are spaced apart from each other in the axial direction of the second mounting seat 144 by the retaining tube 164 , and are stably retained in the second accommodation chamber 147 .
[0066] The materials of the first clamping member 145 and the second clamping member 146 are flexible materials. Such flexible materials are not particularly limited, as long as they have certain strength and elastic deformation characteristics, for example, silicone and rubber can be cited. The first clamping member 145 and the second clamping member 146 surround and clamp the cosmetic tool 200 or the auxiliary tool 201 through the elastic deformation of the material itself. The formation method of the first clamping member 145 and the second clamping member 146 is not particularly limited, for example, they can be formed by injection molding, and can also be formed by cutting material on a disc-shaped elastic material.
[0067] The first end portions 165 of the plurality of first clamping lips 148 together define a first hole portion 166 that allows the cosmetic tool 200 or the auxiliary tool 201 to pass through. The first clamping member 145 is circular in shape as a whole when viewed from above. In addition, the first hole portion 166 is also circular in shape when viewed from above. The first hole portion 166 can be formed, for example, by cutting, punching, or other methods of removing materials. The diameter of the first hole portion 166 is, for example, about 5 mm. The number of the first clamping lips 148 can be, for example, an even number, for example, the first clamping lips 148 can have more than 4, or more than 6, or more than 8. In addition, the first clamping lips 148 can be less than 12, or less than 8. The first clamping lips 148 are evenly and spacedly distributed along the circumference of the first clamping member 145. The interval between two adjacent first clamping lips 148 can be formed by cutting, punching, or other methods of removing materials. When the cosmetic tool 200 or the auxiliary tool 201 passes through the first hole 166 , the plurality of first clamping lips 148 are elastically deformed and wrap around one axial end of the cosmetic tool 200 or the auxiliary tool 201 .
[0068] The second end portions 167 of the plurality of second clamping lips 149 jointly define a second hole portion 168 that allows the cosmetic tool 200 or the auxiliary tool 201 to pass through. The second clamping member 146 is circular in shape as a whole when viewed from above. In addition, the second hole portion 168 is also circular in shape when viewed from above. The first hole portion 166 and the second hole portion 168 are coaxial along the axial direction of the second mounting seat 144. Similarly, the second hole portion 168 can be formed, for example, by cutting, punching, or other methods of removing materials. When the cosmetic tool 200 or the auxiliary tool 201 passes through the second hole portion 168, the plurality of second clamping lips 149 are elastically deformed and wrap around the other axial end of the cosmetic tool 200 or the auxiliary tool 201. The diameter of the second hole portion 168 is, for example, about 5 mm. The number of the second clamping lips 149 may be an even number, for example, the second clamping lips may be more than 4, or more than 6, or more than 8. In addition, the second clamping lips 149 may be less than 12, or less than 8. The second clamping lips 149 are evenly and spaced apart along the circumference of the second clamping member 146. The interval between two adjacent second clamping lips 149 may be formed by cutting, punching, or other methods of removing materials.
[0069] In addition, the length S2 of the second clamping lip 149 along the radial direction of the second hole portion 168 is greater than the length S1 of the first clamping lip 148 along the radial direction of the first hole portion 166. Here, the length S1 of the first clamping lip 148 along the radial direction of the first hole portion 166 refers to the distance along the radial direction of the first hole portion 166 from the cantilevered first terminal portion 165 of the first clamping lip 148 to the base end of the first clamping lip 148 connected to the main body of the first clamping member 145. Similarly, the length S2 of the second clamping lip 149 along the radial direction of the second hole portion 168 refers to the distance along the radial direction of the second hole portion 168 from the cantilevered second terminal portion 167 of the second clamping lip 149 to the base end of the second clamping lip 149 connected to the main body of the second clamping member 146. The length of the first clamping lip 148 along the radial direction of the first hole portion 166 is, for example, not less than 7 mm and not more than 10 mm. In addition, the length of the second clamping lip 149 in the radial direction of the first hole portion 166 is, for example, not less than 9 mm and not more than 12 mm. In this way, the deformation amount of the second clamping lip 149 is greater than the deformation amount of the first clamping lip 148.
[0070] In addition, the cantilevered first terminal end 165 of the first clamping lip 148 is formed with a first inclined portion 169, which is formed on the side of the first clamping member 145 facing the direction of insertion of the cosmetic tool 200 or the auxiliary tool 201, so as to expand the first hole 166. The inclination angle R1 of the first inclined portion 169 relative to the axial direction of the first clamping member 145 is, for example, greater than 20° and less than 45°. That is, the inclination angle R1 of the first inclined portion 169 can be substantially the same as the deformation angle of the first clamping lip 148 in the state of clamping the cosmetic tool 200 or the auxiliary tool 201. In addition, the first inclined portion 169 is formed across the entire thickness direction of the terminal end of the first clamping lip 148.
[0071] Similarly, the cantilevered end of the second clamping lip 149 may also be formed with a second inclined portion 170, which is formed on the side of the second clamping member 146 facing the direction of insertion of the cosmetic tool 200 or the auxiliary tool 201, so as to expand the second hole 168. The inclination angle R2 of the second inclined portion 170 relative to the axial direction of the second clamping member 146 is, for example, greater than 30° and less than 45°. That is, the inclination angle R2 of the second inclined portion 170 may be substantially the same as the deformation angle of the second clamping lip 149 in the state of clamping the cosmetic tool 200 or the auxiliary tool 201. In addition, the second inclined portion 170 is formed across the entire thickness direction of the end of the second clamping lip 149.
[0072] In the cleaning device of the embodiment, by providing the drying unit 122 including the fan 123 and the heating element 124, and installing the heating element 124 on the air supply path of the fan 123, the air from the fan 123 can be easily heated and sent into the first accommodating chamber 104. Thus, the cosmetic tools 200 can be dried after being cleaned, and the growth of bacteria on the brush heads of the cosmetic tools 200 can be suppressed.
[0073] In the cleaning device of the embodiment, by forming a through air supply passage 125 connected to the first accommodating chamber 104 on the first mounting seat 105, and installing the heating element 124 in the air supply passage 125, the wind from the fan 123 can be guided and collected, and the wind can be quickly heated, thereby improving the heating efficiency.
[0074] In the cleaning device of the embodiment, by forming a through air outlet channel 139 in the first mounting seat 105, and forming the air outlet channel 139 on the other side of the first mounting seat 105 relative to the air supply channel 125, the path from the air supply channel 125 into the first accommodating chamber 104 and out of the air outlet channel 139 can be extended, thereby more effectively drying the cosmetic tools 200 located in the first accommodating chamber 104.
[0075] In the cleaning device of the embodiment, the air supply channel 125 is provided with a valve 135 capable of blocking the air supply channel 125 relative to the first accommodating chamber 104, and the valve 135 can be pushed open by the wind from the fan 123 in the direction toward the first accommodating chamber 104, so that during the cleaning process, the cleaning liquid splashed in the first accommodating chamber 104 can be prevented from entering the air supply channel 125. In addition, by enabling the valve 135 to be pushed open by the wind from the fan 123, during drying, hot air can be directly blown into the first accommodating chamber 104 without the need for an additional action of opening the valve 135.
[0076] In the cleaning device of the embodiment, the valve 135 has a cover portion 137 and an elastic portion 138, and the elastic portion 138 applies force to the cover portion 137 in a direction opposite to the air supply direction. The cover portion 137 can be held by the elastic portion 138 so that when there is no wind from the fan 123, the cover portion 137 can reliably block the air supply channel 125.
[0077] In addition, in the cleaning device of the embodiment, by making the cover part 137 and the elastic part 138 integrally formed of elastic material, and the elastic part 138 can be retractably stuck in the mounting hole 136, the valve 135 can be easily formed and easily installed without a complicated structure.
[0078] In the cleaning device of the embodiment, the first mounting base 105 includes a first shell 110 and a second shell 111 that are detachable from each other, and respective components can be easily mounted on each shell, respectively, which facilitates installation and maintenance.
[0079] In addition, by forming a locking strip 133 on the first shell 110 and a cutout 134 on the first wall portion 128 of the second shell 111, not only can the wires that need to enter the air supply duct 125 be easily installed, but the mutual installation of the first shell 110 and the second shell 111 can also be initially positioned, thereby improving the convenience of installation.
[0080] In addition, by forming the annular second wall portion 140 defining the first channel portion 141 on the first housing 110, and forming the annular third wall portion 142 defining the second channel portion 143 on the second housing 111, and the end of the third wall portion 142 is embedded in the first channel portion 141, the air outlet channel 139 can be easily formed, and the mutual installation of the first housing 110 and the second housing 111 can be initially positioned, thereby improving the convenience of installation. Furthermore, by arranging the first motor 112 adjacent to the second wall portion 140, the strength of the first housing 110 at the position where the first motor 112 is installed can be strengthened, and the possible deterioration of the first housing 110 at the position where the first motor 112 is installed can be suppressed.
[0081] In the cleaning device of the embodiment, the drying section 122 further includes a temperature sensor 131 and a temperature control switch 132, and thereby controls the temperature in the air supply channel 125 to be within a specified range (for example, above 70°C and below 85°C), which can improve the efficiency of heating the wind from the fan 123. Furthermore, by setting the drying section 122 so that when the fan 123 stops working due to damage or other unexpected reasons, the temperature control switch 132 stops the heating element 124. In this way, the risk of the second housing 111 being burned due to excessive temperature in the air supply channel 125 caused by the inability to dissipate heat in the air supply channel 125 can be reduced.
[0082] In the cleaning device of the embodiment, a coaxial first clamping member 145 and a second clamping member 146 are provided, and each clamping member is respectively formed with a clamping lip for clamping the cosmetic tool 200 or the auxiliary tool 201 in a manner surrounding the outer periphery of the cosmetic tool 200 or the auxiliary tool 201. In other words, since the clamping lip clamps the cosmetic tool 200 or the auxiliary tool 201 with the axis of the cosmetic tool 200 or the auxiliary tool 201 as a reference, it is possible to adapt to cosmetic tools 200 or auxiliary tools 201 with different diameters within the deformable range of the clamping lip, thereby being able to clamp more different types of cosmetic tools 200 without replacing the clamping unit 103, thereby improving the versatility of the cleaning device.
[0083] Furthermore, since each clamping piece is formed with a plurality of clamping lips, even when the first clamping piece 145 and the second clamping piece 146 clamp a plurality of cosmetic tools 200 at the same time, the cosmetic tools 200 or the auxiliary tools 201 can be clamped with the axis of the cosmetic tools 200 or the auxiliary tools 201 as a reference.
[0084] In the cleaning device of the embodiment, the clamping reliability of the first clamping member 145 and the second clamping member 146 can be improved by making the materials of the first clamping member 145 and the second clamping member 146 respectively flexible materials, and the first clamping lip 148 and the second clamping lip 149 respectively elastically deform and wrap the cosmetic tool 200 or the auxiliary tool 201.
[0085] In the cleaning device of the embodiment, by making the radial length S2 of the second clamping lip 149 along the second hole 168 greater than the radial length S1 of the first clamping lip 148 along the first hole 166, the first clamping member 145 and the second clamping member 146 can be used to clamp cosmetic tools 200 or auxiliary tools 201 with different handle 200a diameters. For example, when the handle 200a of the cosmetic tool 200 or auxiliary tool is in a conical shape with a large diameter at the end close to the brush head and a small diameter at the end of the handle 200a, since the radial length S2 of the second clamping lip 149 is greater than the radial length S1 of the first clamping lip 148, that is, the deformation amount of the second clamping lip 149 is greater than that of the first clamping lip 148, it can adapt to the "big head and small tail" type of cosmetic tools 200 or auxiliary tools. In this way, the universality of the clamping unit 103 of the cleaning device can be improved, and more different types of cosmetic tools 200 can be clamped without replacing the clamping claws.
[0086] In the cleaning device of the embodiment, the first inclined portion 169 for expanding the first hole 166 is formed at the end of the first clamping lip 148, and the second inclined portion 170 for expanding the second hole 168 is formed at the end of the second clamping lip 149, so that the cosmetic tool 200 or the auxiliary tool 201 can be inserted more easily into the first hole 166 and the second hole 168. In addition, by forming the first inclined portion 169 and the second inclined portion 170, the contact area between the first clamping lip 148 and the second clamping lip 149 and the cosmetic tool 200 or the auxiliary tool 201 can be increased in the state where the first clamping lip 148 and the second clamping lip 149 are elastically deformed, and the cosmetic tool 200 or the auxiliary tool 201 can be more reliably held at a position coaxial with the first clamping member 145 and the second clamping member 146.
[0087] Furthermore, since these cosmetic tools 200 or auxiliary tools 201 can be reliably maintained in a coaxial position with the first clamp 145 and the second clamp 146, even a smaller clamping force can stably hold these cosmetic tools 200 or auxiliary tools 201, thereby preventing these cosmetic tools 200 or auxiliary tools 201 from falling.
[0088] In the cleaning device of the embodiment, the second mounting seat 144 can be easily formed by making the second mounting seat 144 include the third shell 155 and the fourth shell 156 that are detachably mounted to each other. In addition, the clamping unit 103 also includes a retaining cylinder 164, and when the third shell 155 and the fourth shell 156 are mounted to each other, one axial end of the retaining cylinder 164 and the third shell 155 jointly clamp one of the first clamping member 145 and the second clamping member 146; the other axial end of the retaining cylinder 164 and the fourth shell 156 jointly clamp the other of the first clamping member 145 and the second clamping member 146. As a result, the first clamping member 145 and the second clamping member 146 can be easily installed or removed in the second accommodating chamber 147. For example, by directly disassembling the third shell 155 and the fourth shell 156, the first clamping member 145 and the second clamping member 146 can be disassembled, which can facilitate maintenance.
[0089] In the cleaning device of the embodiment, by forming the belt mounting portion 118 on the rotating member 107, the rotating member 107 can be made a part of the belt transmission mechanism 120, and the number of parts of the belt transmission mechanism 120 can be reduced. In addition, by forming the first clamping portion 119 on the rotating member 107, the clamping unit 103 can be directly mounted on the rotating member 107, and the number of parts required for mounting the clamping unit 103 and the rotating member 107 can be reduced.
[0090] Furthermore, as described above, since the clamping unit 103 of this embodiment can be applied to a variety of different cosmetic tools 200, the clamping unit 103 of this embodiment does not need to be frequently replaced. Under this premise, the clamping unit 103 can be directly connected to the rotating member 107 for installation without considering the problem of rapid disassembly due to the need to replace the clamping unit 103. The complexity of the structure of the clamping unit 103 can be reduced.
[0091] In the cleaning device of the embodiment, the second engaging groove 151 as the first engaging portion 119 is formed on the inner wall of the rotating member 107, and the engaging arm 162 that can be easily deformed is formed on the first end 157 of the second mounting seat 144, so that the clamping unit 103 can be easily mounted on the rotating member 107. For example, when the second mounting seat 144 of the clamping unit 103 is mounted on the rotating member 107, each engaging arm 162 is squeezed and deformed by the inner wall of the rotating member 107, and slides from the lower part of the rotating member 107 along the inner surface of the inner wall of the rotating member 107 until the engaging arm 162 reaches the second engaging groove 151.
[0092] In addition, it should be noted that in the above embodiment, an example is described in which the air outlet channel 139 is formed on the other side of the first mounting seat 105 relative to the air supply channel 125, but it is not limited to this. The air outlet channel 139 can be formed at any position of the first mounting seat 105 except the air supply channel 125.
[0093] In addition, an example is described in which the air outlet channel 139 is composed of the first channel portion 141 and the second channel portion 143, but it is not limited to this. The air outlet channel 139 can be formed in any form as long as it can connect the first accommodating chamber 104 and the outside of the cleaning device.
[0094] In the above embodiment, the valve 135 is described as being integrally formed of an elastic material, but the present invention is not limited thereto. The valve 135 may be formed by a manually operated cover 137 or a cover 137 driven by a motor.
[0095] Furthermore, although the example in which the elastic portion 138 of the valve 135 is made of an elastic material has been described, the present invention is not limited thereto. For example, the elastic portion 138 may be an elastic member such as a coil spring.
[0096] In the above embodiment, an example is described in which the first mounting base 105 includes a first shell 110 and a second shell 111 that are detachable from each other, but it is not limited to this. For example, the first mounting base 105 may also include only one of the shells, and the first motor 112 or the second motor 126 is independently mounted to the second shell 111 through a mounting plate, etc.
[0097] In the above embodiment, an example is described in which the clamping unit 103 includes two clamping members, namely the first clamping member 145 and the second clamping member 146 . However, the present invention is not limited thereto, and the clamping unit 103 may also include three or more clamping members.
[0098] In the above embodiment, the example in which the length S2 of the second clamping lip 149 of the clamping unit 103 along the radial direction of the second hole portion 168 is greater than the length S1 of the first clamping lip 148 along the radial direction of the first hole portion 166 is described, but the present invention is not limited thereto. The length S2 of the second clamping lip 149 along the radial direction of the second hole portion 168 may be the same as the length S1 of the first clamping lip 148 along the radial direction of the first hole portion 166.
[0099] In the above embodiment, the first clamping lip 148 has the first inclined portion 169 formed at the end and the second clamping lip 149 has the second inclined portion 170 formed at the end, but the present invention is not limited thereto. The ends of the first clamping lip 148 and the second clamping lip 149 may also be flat end surfaces without forming such inclined portions.
[0100] In the above embodiment, the second mounting seat 144 includes the third housing 155, the fourth housing 156 and the retaining cylinder 164, and when the third housing 155 and the fourth housing 156 are mounted to each other, one axial end of the retaining cylinder 164 and the third housing 155 jointly clamp one of the first clamping member 145 and the second clamping member 146; the other axial end of the retaining cylinder 164 and the fourth housing 156 jointly clamp the other of the first clamping member 145 and the second clamping member 146, but the invention is not limited thereto. For example, the second mounting seat 144 may be an integral component, and the first clamping member 145 and the second clamping member 146 are respectively pressed to the second mounting seat 144 by a pressing plate.
[0101] In the above embodiment, the rotating member 107 is formed with the first clamping portion 119, the second mounting seat 144 of the clamping unit 103 is formed with the second clamping portion 150, and the clamping unit 103 is mounted to the rotating member 107 by the first clamping portion 119 and the second clamping portion 150 being mutually clamped, but the present invention is not limited thereto. Since the cleaning device can clamp more different types of cosmetic tools 200 without replacing the clamping unit 103, there is no need to consider the problem of rapid disassembly due to the need to replace the clamping unit 103, and therefore, the clamping unit 103 can be mounted on the main unit 102 in any manner, for example, it can be directly locked on the main unit 102 by screws, etc.
[0102] Although examples of the present embodiment have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present embodiment, and the scope of the present embodiment is defined by the claims and their equivalents.
Claims
1. A cleaning device for cleaning cosmetic tools, characterized in that: include: A base, formed with a first accommodating cavity for accommodating the cosmetic tool; The host can be closed or opened relative to the base, and the host has: A first mounting seat, which can be closed or opened with the base; A driving unit, disposed on the first mounting seat and connected to a clamping unit for clamping the cosmetic tool or an auxiliary tool for assisting in cleaning the cosmetic tool, to drive the clamping unit to rotate; The drying part includes a fan and a heating element. The fan is installed on the first mounting seat in a manner of supplying air toward the first accommodating cavity when the main unit and the base are covered. The heating element is installed on the first mounting seat and is located on the air supply path of the fan.
2. The cleaning device according to claim 1, characterized in that: The first mounting seat is formed with a through air supply channel, and when the main unit and the base are covered, the air supply channel is connected to the first accommodating chamber; The heating element is installed in the air supply channel.
3. The cleaning device according to claim 2, characterized in that: The first mounting seat is formed with a through air outlet passage, and the air outlet passage is formed on the other side of the first mounting seat relative to the air supply passage; When the main unit and the base are covered, the air outlet passage is communicated with the first accommodating chamber and is communicated with the outside of the cleaning device.
4. The cleaning device according to claim 2, characterized in that: The air supply channel is provided with a valve, and the valve blocks the air supply channel relative to the first accommodating chamber, and the valve can be opened by the wind from the fan in the direction toward the first accommodating chamber.
5. The cleaning device according to claim 4, characterized in that: The valve comprises a cover portion and an elastic portion, wherein the elastic portion applies force to the cover portion in a direction opposite to an air supply direction so that the cover portion blocks the air supply passage.
6. The cleaning device according to claim 5, characterized in that: An installation hole is formed at one end of the air supply channel adjacent to the first accommodating chamber; The cover portion and the elastic portion are integrally formed of an elastic material, and the elastic portion is telescopically clamped in the mounting hole.
7. The cleaning device according to claim 2, characterized in that: The first mounting base comprises: a first shell and a second shell which are detachable from each other; The air supply channel is formed in the second shell; The fan is mounted on the first housing, and when the first housing and the second housing are mounted to each other, the fan and the air supply passage are opposite to each other.
8. The cleaning device according to claim 3, characterized in that: The first mounting base comprises: a first shell and a second shell which are detachable from each other; The first housing is formed with an annular second wall portion, the second wall portion defines a first channel portion, and the first channel portion is communicated with the outside of the cleaning device; The second housing is formed with an annular third wall portion, and the third wall portion defines a second channel portion; When the first shell and the second shell are mounted on each other, the end of the third wall portion is embedded in the first channel portion; The first channel portion and the second channel portion together constitute the air outlet channel.
9. The cleaning device according to claim 8, characterized in that: The driving portion includes a first motor mounted to the first housing, and the first motor is adjacent to the second wall portion.
10. The cleaning device according to claim 2, characterized in that: The drying section also includes: a temperature sensor, disposed in the air supply passage, for detecting the temperature in the air supply passage; A temperature control switch is connected to the heating element.