Drying module and clothes treatment equipment
By adopting a capacitor installation structure of a plug-in slot and a plug-in block in a clothes processing device, the problem of unstable capacitor installation is solved, the stability of the device is improved and the overall height is reduced, leakage of washing water is avoided, and efficient capacitor installation and removal are achieved.
Patent Information
- Application Number
- CN202420975314.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-07
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-05-07
AI Technical Summary
In existing clothes processing equipment, the capacitor is not installed firmly and is easy to fall off, affecting the normal operation of the equipment. In addition, the drying module is set at the bottom, which increases the height of the equipment and may cause abnormal situations such as washing water leakage.
The capacitor installation structure adopts a plug-in slot and a plug-in block. The capacitor is connected through the plug-in slot and the plug-in block to ensure a stable installation. The fan and the drying turntable are arranged in the shell of the drying module, and the capacitor is located above the cylinder.
It improves the installation and removal efficiency of capacitors, enhances the working stability of the equipment, reduces the overall height of the equipment, avoids abnormal situations such as washing water leakage, and extends the service life of the equipment.
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Figure CN223357974U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of clothing processing equipment manufacturing, and in particular to a drying module and clothing processing equipment. Background Art
[0002] In the field of clothing processing equipment manufacturing technology, to prevent the impact of clothing processing equipment vibration on capacitors, existing capacitors are generally installed on the clothing processing equipment housing, resulting in longer wiring and affecting control accuracy. Alternatively, existing technical solutions simply clip the capacitors directly onto the drying module housing, locating the drying module below the drum to reduce shaking and achieve a balance between control accuracy and device stability. However, placing the drying module below the drum easily increases the overall height of the clothing processing equipment and may cause abnormalities such as wash water leakage, affecting device safety and service life. Furthermore, simply clipping capacitors is less stable and is extremely likely to fall off during operation of the clothing processing equipment, causing the clothing processing equipment to cease normal operation.
[0003] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present disclosure, and therefore may include information that does not constitute prior art known to ordinary technicians in this field. Utility Model Content
[0004] The present disclosure aims to provide a drying module and a clothes processing device, wherein the capacitors in the drying module and the clothes processing device are easy to install and remove with high efficiency, and the capacitors are installed more firmly.
[0005] The present disclosure provides a drying module, characterized by comprising:
[0006] A housing having a receiving cavity;
[0007] a fan, disposed in the accommodating cavity;
[0008] A drying turntable is arranged in the accommodating cavity and spaced apart from the fan;
[0009] A capacitor mounting structure is provided on the housing, and the capacitor mounting structure has a first plug-in structure;
[0010] The capacitor includes: a capacitor body and a second plug-in structure, wherein the second plug-in structure is connected to the capacitor body, the first plug-in structure and the second plug-in structure are respectively a plug-in slot and a plug-in block, and at least part of the plug-in block can be inserted into the plug-in slot.
[0011] In an exemplary embodiment of the present disclosure, the first plug-in structure is the plug-in slot, the second plug-in structure is the plug-in block, and the plug-in block is inserted into the plug-in slot along the direction of the central axis of the drying rotary disk.
[0012] In an exemplary embodiment of the present disclosure, the plug-in slot includes at least a first sub-plug-in slot and a second sub-plug-in slot; the capacitor mounting structure includes: a first limiting portion and a second limiting portion, the first sub-plug-in slot is located in the first limiting portion, the second limiting portion is spaced apart from the first limiting portion, and the second sub-plug-in slot is located in the second limiting portion;
[0013] The plug-in block includes: a first plug-in portion and a second plug-in portion, the first plug-in portion and the second plug-in portion are both connected to the capacitor body, and at least a portion of the first plug-in portion can be inserted into the first sub-plug-in slot, and at least a portion of the second plug-in portion can be inserted into the second sub-plug-in slot.
[0014] In an exemplary embodiment of the present disclosure, the first limiting portion has a first opening, the second limiting portion has a second opening, and the first opening and the second opening are arranged opposite to each other.
[0015] In an exemplary embodiment of the present disclosure, the capacitor mounting structure further includes:
[0016] A limiting plate connects the first limiting portion and the second limiting portion, and the first limiting portion, the second limiting portion and the limiting plate form the plug-in slot.
[0017] In an exemplary embodiment of the present disclosure, a first stop portion and a second stop portion are provided on a side of the limiting plate close to the plug-in slot, and the first stop portion is closer to the first limiting portion than the second stop portion;
[0018] The plug-in block further includes a first protrusion and a second protrusion, wherein the first protrusion contacts the first stopper, and the second protrusion contacts the second stopper.
[0019] In an exemplary embodiment of the present disclosure, the first protrusion is provided on a side of the first plug-in portion close to the limiting plate, and the second protrusion is provided on a side of the second plug-in portion close to the limiting plate.
[0020] In an exemplary embodiment of the present disclosure, a side of the first stop portion close to the first limiting portion is a first inclined surface, and the first inclined surface is inclined toward the second limiting portion; the first convex portion is at least located between the first inclined surface and the first limiting portion, and the first convex portion is in contact with the first inclined surface.
[0021] In an exemplary embodiment of the present disclosure, a side of the second stop portion close to the second limiting portion is a second inclined surface, and the second inclined surface is inclined toward the first limiting portion; the second convex portion is at least located between the second inclined surface and the second limiting portion, and the second convex portion is in contact with the second inclined surface.
[0022] In an exemplary embodiment of the present disclosure, the first plug-in portion includes:
[0023] A first connecting plate and a first plug-in plate, wherein the first connecting plate connects the capacitor body and the first plug-in plate, and at least a portion of the first plug-in plate can be inserted into the first sub-plug-in slot.
[0024] In an exemplary embodiment of the present disclosure, the second plug-in portion includes:
[0025] A second connecting plate and a second plug-in plate, wherein the second connecting plate connects the capacitor body and the second plug-in plate, and at least a portion of the second plug-in plate can be inserted into the second sub-plug-in slot.
[0026] In an exemplary embodiment of the present disclosure, the capacitor mounting structure further includes: a first connecting portion connected to the first limiting portion and the second limiting portion, and the first connecting portion is arranged opposite to the limiting plate, and the first limiting portion, the second limiting portion, the limiting plate, and the first connecting portion surround the plug-in slot;
[0027] The plug-in block further includes a second connecting portion connected to the first connecting portion.
[0028] In an exemplary embodiment of the present disclosure, the second connecting part includes a third connecting plate and a clip, the third connecting plate is connected to the capacitor body, and the clip is clipped to any edge of the first connecting part in the direction of the central axis of the drying turntable.
[0029] In an exemplary embodiment of the present disclosure, the third connecting plate is located between the first connecting portion and the limiting plate, and the buckle is located on the side of the third connecting plate close to the capacitor body; or, the third connecting plate is located on the side of the first connecting portion away from the limiting plate, and the buckle is located on the side of the third connecting plate away from the capacitor body.
[0030] In an exemplary embodiment of the present disclosure, the third connecting plate is located between the first plug-in portion and the second plug-in portion, and is connected to the first plug-in portion and the second plug-in portion.
[0031] In an exemplary embodiment of the present disclosure, the capacitor is a fan capacitor, which is electrically connected to the fan and is disposed near the fan.
[0032] In an exemplary embodiment of the present disclosure, the capacitor mounting structure is arranged on a side of the fan away from the drying turntable.
[0033] In an exemplary embodiment of the present disclosure, the capacitor mounting structure is arranged at an upstream position of the air flow of the fan, and the fan is an AC fan.
[0034] In an exemplary embodiment of the present disclosure, the housing includes:
[0035] A first shell and a second shell are arranged opposite to each other in the direction of the central axis of the drying rotary disk to form the accommodating cavity; the fan and the capacitor mounting structure are both installed in the first shell.
[0036] In an exemplary embodiment of the present disclosure, the accommodating chamber includes: a first sub-accommodating chamber and a second sub-accommodating chamber, and the second shell includes: a turntable protection shell and a fan protection shell; the turntable protection shell and the first shell form the first sub-accommodating chamber, and the drying turntable is located in the first sub-accommodating chamber; the fan protection shell and the first shell form the second sub-accommodating chamber, and at least part of the fan is located in the second sub-accommodating chamber.
[0037] In an exemplary embodiment of the present disclosure, the drying module further includes:
[0038] The hanging ear is connected to the edge of the shell and is used to install the drying module on the equipment to be installed.
[0039] In an exemplary embodiment of the present disclosure, the hanging ear includes:
[0040] A support plate connected to the edge of the shell and extending in the direction of the central axis of the drying turntable;
[0041] The mounting plate is connected to one end of the support plate away from the housing and extends in a direction away from the support plate. The mounting plate can be mounted on the device to be mounted.
[0042] Another aspect of the present disclosure provides a clothes processing device, which includes any one of the drying modules described above.
[0043] In an exemplary embodiment of the present disclosure, the clothes processing device further includes:
[0044] Box;
[0045] The cylinder is arranged in the box body; the drying module is arranged in the box body and is located above the cylinder.
[0046] The technical solution provided by the present disclosure can achieve the following beneficial effects:
[0047] The drying module provided by the present disclosure includes: a housing, a fan, a drying turntable, a capacitor mounting structure, and a capacitor. The fan and the drying turntable can be used to dry items.
[0048] In addition, the capacitor mounting structure provided by the present disclosure has a first plug-in structure, and the capacitor has a second plug-in structure. Furthermore, the first plug-in structure and the second plug-in structure are respectively a plug-in slot and a plug-in block. Thus, when the capacitor needs to be installed, it is only necessary to insert the plug-in block into the plug-in slot. When the capacitor needs to be removed, it is only necessary to remove the plug-in block from the plug-in slot. This arrangement can facilitate the installation and removal of the capacitor and improve the installation and removal efficiency of the capacitor.
[0049] At the same time, since the plug-in connection has a high degree of connection stability, the above-mentioned setting can improve the stability of the capacitor installed on the capacitor mounting structure, avoiding the problem of the capacitor falling off during the operation of the drying module, thereby greatly improving the working stability of the drying module.
[0050] Furthermore, because the capacitors provided by the present disclosure can be securely mounted on the capacitor mounting structure, the problem of the capacitors falling off due to excessive shaking can be effectively avoided. Therefore, compared to the prior art, the drying module provided by the present disclosure can be placed above the drum of the clothes processing device, thereby reducing the overall height of the clothes processing device and preventing abnormal situations such as wash water leakage that affect the safety and service life of the drying module.
[0051] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure. BRIEF DESCRIPTION OF THE DRAWINGS
[0052] The accompanying drawings are incorporated into and constitute a part of the specification, illustrate embodiments consistent with the present disclosure, and together with the specification, are used to explain the principles of the present disclosure. Obviously, the drawings described below are only some embodiments of the present disclosure, and those skilled in the art can derive other drawings based on these drawings without inventive effort.
[0053] Figure 1 A schematic structural diagram of a drying module according to an exemplary embodiment of the present disclosure is shown;
[0054] Figure 2 An exemplary embodiment of the present disclosure is shown. Figure 1 Schematic diagram of part of the structure;
[0055] Figure 3 An exemplary embodiment of the present disclosure is shown. Figure 2 Schematic diagram of the cross-sectional structure;
[0056] Figure 4 A partial structural schematic diagram of a drying module according to an exemplary embodiment of the present disclosure is shown;
[0057] Figure 5 A schematic structural diagram of a capacitor from a first perspective according to an exemplary embodiment of the present disclosure is shown;
[0058] Figure 6 FIG2 shows a structural schematic diagram of a capacitor according to an exemplary embodiment of the present disclosure from a second perspective;
[0059] Figure 7 A schematic structural diagram of a capacitor installation structure according to an exemplary embodiment of the present disclosure is shown.
[0060] Description of reference numerals:
[0061] 1. Housing; 11. Accommodation chamber; 111. First sub-accommodation chamber; 112. Second sub-accommodation chamber; 12. Rotating shaft fixture; 13. First housing; 14. Second housing; 141. Rotating disk protection housing; 142. Fan protection housing;
[0062] 2. Fan; 21. First rotating shaft; 22. Impeller; 23. Mounting structure; 24. Connecting structure;
[0063] 3. Drying turntable; 31. Molecular sieve; 32. Driving ring; 321. Ring portion; 322. Gear portion;
[0064] 4. Turntable driver; 41. Driving unit; 42. Driving gear;
[0065] 5. Capacitor mounting structure; 50. First plug-in structure; 51. Plug-in slot; 511. First sub-plug-in slot; 512. Second sub-plug-in slot; 52. First limiting portion; 521. First side panel; 522. First bottom panel; 523. Second side panel; 53. Second limiting portion; 531. Third side panel; 532. Second bottom panel; 533. Fourth side panel; 54. Limiting plate; 541. First stopping portion; 5411. First inclined surface; 542. Second stopping portion; 5421. Second inclined surface; 55. First connecting portion;
[0066] 6. Capacitor; 60. Second plug-in structure; 61. Capacitor body; 62. Plug-in block; 621. First plug-in portion; 6211. First connecting plate; 6212. First plug-in plate; 622. Second plug-in portion; 6221. Second connecting plate; 6222. Second plug-in plate; 623. First protrusion; 624. Second protrusion; 625. Second connecting portion; 6251. Third connecting plate; 6252. Buckle;
[0067] 7. Mounting ear; 71. Support plate; 711. First reinforcement portion; 72. Mounting plate; 721. Second reinforcement portion; 722. Third connection portion;
[0068] X, first direction; Y, second direction; Z, direction of the central axis. DETAILED DESCRIPTION
[0069] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be implemented in many forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete and will fully convey the concepts of the example embodiments to those skilled in the art. Like reference numerals in the figures represent like or similar structures, and thus their detailed description will be omitted.
[0070] Although relative terms such as "upper" and "lower" are used in this specification to describe the relationship of one illustrated component to another, these terms are used herein for convenience only, such as in accordance with the orientation of the illustrations in the accompanying drawings. It will be understood that if the illustrated device were flipped upside down, the component described as "upper" would become the component "lower." When a structure is referred to as "on" another structure, this may mean that the structure is integrally formed with the other structure, that the structure is "directly" disposed on the other structure, or that the structure is "indirectly" disposed on the other structure via the other structure.
[0071] The terms "a", "an", "the", and "said" are used to indicate the presence of one or more elements / components / etc.; the terms "including" and "having" are used to express open-ended inclusion and mean that additional elements / components / etc. may exist in addition to the listed elements / components / etc.; the terms "first" and "second" etc. are used only as labels and are not intended to limit the quantity of their objects.
[0072] like Figures 1 to 7As shown, the present disclosure first provides a drying module. This drying module can be used on clothing processing equipment to dry clothes and other items. However, this is not limited to this. The drying module can also be used on other devices with drying functions and can be configured according to actual needs, all of which are within the scope of protection of the present disclosure. Furthermore, this drying module has higher drying efficiency and better drying effects.
[0073] The drying module provided herein includes a housing 1, a fan 2, and a drying disc 3. The housing 1 may include a housing 11; the fan 2 may be disposed within the housing 11 and may include a first rotating shaft 21 and an impeller 22 disposed around the first rotating shaft 21; and the drying disc 3 may be disposed within the housing 11 and spaced apart from the fan 2. Thus, the fan 2 can provide drying air to the drying disc 3, allowing moisture in the drying air to be absorbed by the drying disc 3, thereby achieving a drying function.
[0074] In one embodiment, the direction Z along which the central axis of the drying turntable 3 lies can be parallel to the extension direction of the first rotating shaft 21. This can reduce the space required for the drying module in the direction Z along which the central axis of the drying turntable 3 lies, thereby facilitating installation of the drying module on a device having a drying function. The central axis of the drying turntable 3 herein refers to the line along which the center of rotation of the drying turntable 3 lies.
[0075] In one embodiment of the present disclosure, Figure 3 As shown, in the direction Z of the central axis of the drying disc 3, the height H1 of the impeller 22 can be 1.2 to 3 times the thickness H2 of the drying disc 3. For example, the height H1 of the impeller 22 can be 1.2, 1.5, 1.8, 2.1, 2.4, 2.7, or 3 times the thickness H2 of the drying disc 3. This configuration increases the air volume of the fan 2 and allows the air volume of the fan 2 to match the thickness of the drying disc 3 within this range, ensuring that the fan 2 has sufficient air volume to quickly deliver moisture-laden air to be dried to the drying disc 3. At the same time, the drying disc 3 also has the ability to absorb a corresponding amount of moisture, allowing the drying disc 3 to absorb sufficient moisture in a short period of time, maximizing the balance between drying efficiency and the moisture absorption capacity of the drying disc 3. This, in turn, improves the drying efficiency and drying effect of the drying module, enabling the drying module to quickly and effectively dry clothes and items waiting to be dried.
[0076] As shown in Table 1, the height H1 of part of the impeller 22 and the thickness H2 of the drying turntable 3 are listed.
[0077] Table 1
[0078]
[0079]
[0080] It should be noted that the above Table 1 only lists some embodiments to explain the height H1 of the impeller 22 and the thickness H2 of the drying turntable 3, and does not include all embodiments. The above values can be adjusted according to actual needs, which is within the scope of protection of this disclosure.
[0081] In one embodiment of the present disclosure, the ratio of the diameter D1 of the impeller 22 to the diameter D2 of the drying disc 3 can be greater than or equal to 0.5. For example, the ratio of the diameter D1 of the impeller 22 to the diameter D2 of the drying disc 3 can be 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, and so on. This configuration can further increase the air volume of the fan 2 and further ensure that the air volume of the fan 2 matches the air volume of the drying disc 3, thereby further ensuring that the fan 2 has sufficient air volume to quickly transfer the moisture-laden air to be dried to the drying disc 3. At the same time, the drying disc 3 can also have the ability to absorb a corresponding amount of moisture, thereby increasing the amount of moisture absorbed by the drying disc 3 in a short period of time, maximizing the balance between the drying efficiency and the moisture absorption capacity of the drying disc 3, and further improving the drying efficiency and drying effect of the drying module, further enabling the drying module to quickly and effectively dry clothes and items waiting to be dried.
[0082] As shown in Table 2, the diameter D1 of some impellers 22 and the diameter D2 of the drying rotary disc 3 are listed.
[0083] Table 2
[0084]
[0085]
[0086] It should be noted that the above Table 2 only lists some embodiments to explain the diameter D1 of the impeller 22 and the diameter D2 of the drying turntable 3, and does not include all embodiments. The above values can be adjusted according to actual needs, which is within the scope of protection of this disclosure.
[0087] In one embodiment of the present disclosure, Figures 1 to 3 As shown, the drying module may further include a turntable driver 4. The turntable driver 4 may drive the drying turntable 3 to rotate. The turntable driver 4 may be disposed on the housing 1.
[0088] The drying turntable 3 may include a molecular sieve 31 and a drive ring 32. The molecular sieve 31 can absorb moisture from the items being dried. The drive ring 32 can be disposed around the molecular sieve 31 and connected to the turntable driver 4 to rotate the drying turntable 3.
[0089] In this embodiment, the drive ring 32 may include a ring portion 321 and a tooth portion 322. The ring portion 321 may be disposed around the molecular sieve 31, and the tooth portion 322 may be disposed on a side of the ring portion 321 facing away from the molecular sieve 31. The turntable driver 4 may include a drive portion 41 and a drive gear 42. The drive portion 41 may be connected to the drive gear 42 to drive the drive gear 42 to rotate. The drive gear 42 may mesh with the tooth portion 322 of the drive ring 32 to drive the drive ring 32 to rotate.
[0090] Furthermore, the present disclosure, by providing a drive ring 32 and a drive gear 42, ensures that when they are engaged, they can transmit a greater torque, thereby increasing the rotational speed of the drive ring 32 and further improving the drying efficiency and effect of the drying module. Furthermore, when the drive ring 32 and the drive gear 42 are engaged, they ensure the continuous stability of torque transmission, allowing the drive ring 32 to rotate more stably, thereby ensuring the stability of the drying module's operation.
[0091] The drive unit 41 may be a drive motor. This configuration can reduce noise and vibration during operation of the drive unit 41 and enable the drive unit 41 to use clean energy, reducing its environmental pollution. This allows the drying module to be used in small, enclosed environments such as homes. However, the drive unit 41 is not limited to this embodiment and may be other devices with drive capabilities. This configuration is within the scope of this disclosure.
[0092] In one embodiment, the ratio of the diameter D1 of the impeller 22 to the diameter D3 of the molecular sieve 31 can be greater than 0.5. For example, the ratio of the diameter D1 of the impeller 22 to the diameter D3 of the molecular sieve 31 can be 0.55, 0.6, 0.7, 0.8, 0.9, 1.0, etc. Such a configuration can further ensure that the air volume of the fan 2 can match the molecular sieve 31, so as to further ensure that the fan 2 has sufficient air volume to quickly transfer the moisture-containing air to be dried to the molecular sieve 31. At the same time, it can ensure that the molecular sieve 31 within this diameter range can also have the ability to absorb a corresponding amount of moisture, thereby increasing the amount of moisture absorbed by the molecular sieve 31 in a short time, maximizing the balance between the drying efficiency and the moisture absorption capacity of the molecular sieve 31, and further improving the drying efficiency and drying effect of the drying module, so that the drying module can quickly and effectively dry clothes and items waiting to be dried.
[0093] As shown in Table 3, the diameter D1 of some impellers 22 and the diameter D3 of the molecular sieve 31 are listed.
[0094] Table 3
[0095]
[0096] It should be noted that Table 2 above only lists some embodiments to explain the diameter D1 of the impeller 22 and the diameter D3 of the molecular sieve 31, and does not include all embodiments. The above values can be adjusted according to actual needs, which is within the scope of protection of this disclosure.
[0097] In one embodiment of the present disclosure, Figure 3 As shown, in the direction of the central axis of the drying turntable, the height H1 of the impeller 22 can be 1.5 to 2.5 times the thickness H3 of the molecular sieve 31. For example, the height H1 of the impeller 22 can be 1.5 times, 1.8 times, 2.1 times, 2.4 times, 2.5 times, etc. of the thickness H3 of the drying turntable 3. Such an arrangement can increase the air volume of the fan 2 and match the air volume of the molecular sieve 31 within this thickness range, thereby ensuring that the fan 2 has sufficient air volume to quickly transfer the moisture-containing air to be dried to the molecular sieve 31. At the same time, it can also ensure that the molecular sieve 31 within this thickness range can also have the ability to absorb a corresponding amount of moisture, thereby further enabling the molecular sieve 31 to absorb sufficient moisture in a short time, maximizing the balance between the drying efficiency and the moisture absorption capacity of the molecular sieve 31, and further improving the drying efficiency and drying effect of the drying module, so that the drying module can quickly and effectively dry clothes waiting to be dried.
[0098] As shown in Table 4, the height H1 of a portion of the impeller 22 and the thickness H3 of the molecular sieve 31 are listed.
[0099] Table 4
[0100]
[0101] It should be noted that the above Table 1 only lists some embodiments to explain the height H1 of the impeller 22 and the thickness H3 of the molecular sieve 31, and does not include all embodiments. The above values can be adjusted according to actual needs, which is within the scope of protection of this disclosure.
[0102] In one embodiment of the present disclosure, the housing 1 may be provided with a shaft fixture 12, and the drying turntable 3 may be sleeved on the shaft fixture 12. By providing the shaft fixture 12, the drying turntable 3 can be limited to prevent the drying turntable 3 from shifting during rotation.
[0103] The axis of the rotating shaft fixture 12 and the axis of the drying turntable 3 can be collinear. Such an arrangement can further ensure that the drying turntable 3 can rotate stably around the rotating shaft fixture 12 .
[0104] In one embodiment of the present disclosure, Figures 1 to 2 、 Figures 4 to 7As shown, the drying module may further include: a capacitor mounting structure 5 and a capacitor 6. The capacitor mounting structure 5 may be arranged on the housing 1, and the capacitor mounting structure 5 may have a first plug-in structure 50. The capacitor 6 may include: a capacitor body 61 and a second plug-in structure 60. The second plug-in structure 60 may be connected to the capacitor body 61. The first plug-in structure 50 and the second plug-in structure 60 may be a plug-in slot 51 and a plug-in block 62 respectively, and at least part of the plug-in block 62 may be inserted into the plug-in slot 51. With such an arrangement, when the capacitor 6 needs to be installed, it is only necessary to insert the plug-in block 62 into the plug-in slot 51, and when the capacitor 6 needs to be disassembled, it is only necessary to pull the plug-in block 62 out of the plug-in slot 51. Therefore, such an arrangement can facilitate the installation and disassembly of the capacitor 6 and improve the installation and disassembly efficiency of the capacitor 6.
[0105] At the same time, since the plug-in connection has a high degree of connection stability, the above-mentioned setting can improve the stability of the capacitor 6 installed on the capacitor mounting structure 5, avoiding the problem of the capacitor 6 falling off during the operation of the drying module, thereby greatly improving the working stability of the drying module.
[0106] Furthermore, since the capacitor 6 provided by the present disclosure can be securely mounted on the capacitor mounting structure 5, the problem of the capacitor 6 falling off due to large shaking can be effectively avoided. Therefore, compared with the prior art, the drying module provided by the present disclosure can be placed above the drum of the clothes processing device, thereby reducing the overall height of the clothes processing device and avoiding the problem of abnormal conditions such as washing water leakage affecting the safety and service life of the drying module.
[0107] In one embodiment, the first plug-in structure 50 can be a plug-in slot 51, and the second plug-in structure 60 can be a plug-in block 62. The plug-in block 62 can be inserted into the plug-in slot 51 along the direction Z where the central axis of the drying turntable 3 is located. Since there is no other structure that can block the capacitor mounting structure 5 in the direction Z where the central axis of the drying turntable 3 is located. Therefore, the present disclosure can facilitate the installation of the capacitor 6 through the above-mentioned setting, and avoid other structural parts in the drying module from blocking the installation of the capacitor 6. However, it is not limited to this. The plug-in block 62 can also be inserted into the plug-in slot 51 along other directions, and can be selected and set according to actual needs, which is all within the scope of protection of the present disclosure.
[0108] In one embodiment, Figures 4 to 7As shown, the plug-in slot 51 may include at least a first sub-plug-in slot 511 and a second sub-plug-in slot 512. The capacitor mounting structure 5 may include a first limiting portion 52 and a second limiting portion 53. The first sub-plug-in slot 511 may be located within the space defined by the first limiting portion 52. The second limiting portion 53 may be spaced apart from the first limiting portion 52, and the second sub-plug-in slot 512 may be located within the space defined by the second limiting portion 53.
[0109] The plug-in block 62 may include a first plug-in portion 621 and a second plug-in portion 622. Both the first plug-in portion 621 and the second plug-in portion 622 may be connected to the capacitor body 61 to ensure a secure connection between the first plug-in portion 621 and the second plug-in portion 622. At least a portion of the first plug-in portion 621 can be inserted into the first sub-plug-in slot 511, and at least a portion of the second plug-in portion 622 can be inserted into the second sub-plug-in slot 512.
[0110] Therefore, through the above-mentioned setting, the present invention can use the first limiting portion 52 and the second limiting portion 53 to limit the plug-in block 62 in the first direction X, so as to further improve the stability of the capacitor 6 installed on the capacitor mounting structure 5, and further avoid the problem of the capacitor 6 falling off during the operation of the drying module, thereby further improving the working stability of the drying module.
[0111] It should be noted that the first direction X may be a direction from the first limiting portion 52 toward the second limiting portion 53 .
[0112] The first limiting portion 52 can have a first opening, and the second limiting portion 53 can have a second opening, and the first opening and the second opening can be arranged opposite each other. With this arrangement, when the first plug-in portion 621 needs to be inserted into the first sub-plug-in slot 511, it is no longer necessary to precisely align it, thereby reducing the difficulty of inserting the first plug-in portion 621 into the first sub-plug-in slot 511. Furthermore, when the second plug-in portion 622 needs to be inserted into the second sub-plug-in slot 512, it is no longer necessary to precisely align it, thereby reducing the difficulty of inserting the second plug-in portion 622 into the second sub-plug-in slot 512.
[0113] In this embodiment, if Figure 7 As shown, the first position-limiting portion 52 may include: a first side panel 521, a first bottom panel 522, and a second side panel 523. The first side panel 521, the first bottom panel 522, and the second side panel 523 may be sequentially connected and positioned relative to each other. Thus, the first opening is defined as the area between the end of the first side panel 521 distal from the first bottom panel 522 and the end of the second side panel 523 distal from the first bottom panel 522. This arrangement increases the area of the first opening, further reducing the difficulty of inserting the first plug-in portion 621.
[0114] The second limiting portion 53 may include a third side plate 531, a second bottom plate 532, and a fourth side plate 533. The third side plate 531, the second bottom plate 532, and the fourth side plate 533 may be sequentially connected and positioned relative to each other, such that the second opening is defined as the area between an end of the third side plate 531 distal from the second bottom plate 532 and an end of the fourth side plate 533 distal from the second bottom plate 532. This arrangement increases the area of the second opening, further reducing the difficulty of inserting the second plug portion 622.
[0115] The first bottom plate 522 and the second bottom plate 532 may be arranged relative to each other, thereby ensuring that the first opening and the second opening may be arranged relative to each other.
[0116] In one embodiment, the capacitor mounting structure 5 may further include a limiting plate 54. The limiting plate 54 may connect the first limiting portion 52 and the second limiting portion 53. Furthermore, the first limiting portion 52, the second limiting portion 53, and the limiting plate 54 may enclose the insertion slot 51. This arrangement allows the limiting plate 54 to further limit the position of the capacitor 6, further enhancing the secure installation of the capacitor 6.
[0117] The first side plate 521 and the third side plate 531 can be located on the same side of the insertion slot 51 in the second direction Y, and the second side plate 523 and the fourth side plate 533 can be located on the same side of the insertion slot 51 in the second direction Y. The limiting plate 54 can be located between the first side plate 521 and the third side plate 531, connecting the first and third side plates 521 and 531; alternatively, the limiting plate 54 can be located between the second side plate 523 and the fourth side plate 533, connecting the second and fourth side plates 523 and 533. In other words, it is understood that the limiting plate 54 can be located on one side of the insertion slot 51 in the second direction Y. This arrangement prevents the limiting plate 54 from occupying space in the insertion slot 51.
[0118] It should be noted that the second direction Y may be a direction from the first side plate 521 to the second side plate 523 , or the second direction Y may be a direction from the third side plate 531 to the fourth side plate 533 .
[0119] In one embodiment, Figures 4 to 7 As shown, a first stop portion 541 and a second stop portion 542 may be provided on a side of the limiting plate 54 close to the insertion slot 51. The first stop portion 541 may be close to the first limiting portion 52 relative to the second stop portion 542. That is, it is understandable that the first stop portion 541 and the second stop portion 542 may be spaced apart along the first direction X.
[0120] The plug-in block 62 may further include a first protrusion 623 and a second protrusion 624. The first protrusion 623 may contact the first stop 541, and the second protrusion 624 may contact the second stop 542. This arrangement allows the first and second stop 541 and 542 to position the first and second protrusions 623 and 624, further improving the stability of the capacitor installation and reducing the possibility of the capacitor 6 falling off during operation of the drying module.
[0121] The first protrusion 623 can abut against the first stopper 541, and the second protrusion 624 can abut against the second stopper 542. It should be noted that the abutment mentioned here refers to the existence of an interaction force between the two abutting parts, that is, there is an interaction force between the first protrusion 623 and the first stopper 541, and there is an interaction force between the second protrusion 624 and the second stopper 542. This arrangement can effectively prevent the capacitor 6 from shaking and ensure that the capacitor 6 can always be stably installed on the capacitor mounting structure 5.
[0122] In one embodiment, a surface of the first stopper 541 close to the first limiting portion 52 may be a first inclined surface 5411, which may be inclined toward the second limiting portion 53. The first protrusion 623 may be located at least between the first inclined surface 5411 and the first limiting portion 52, and the first protrusion 623 may contact the first inclined surface 5411. This configuration can enhance the stopping effect of the first stopper 541 and facilitate the insertion of the plug-in block 62.
[0123] A surface of the second stopper 542 close to the second limiting portion 53 may be a second inclined surface 5421, which may be inclined toward the first limiting portion 52. The second protrusion 624 may be located at least between the second inclined surface 5421 and the second limiting portion 53, and the second protrusion 624 may contact the second inclined surface 5421. This arrangement can enhance the stopping effect of the second stopper 542 and further facilitate the insertion of the plug-in block 62.
[0124] In one embodiment, the first plug-in portion 621 may include a first connecting plate 6211 and a first plug-in plate 6212. The first connecting plate 6211 may connect the capacitor body 61 and the first plug-in plate 6212, and at least a portion of the first plug-in plate 6212 may be inserted into the first sub-plug-in slot 511. The first protrusion 623 may be located on a side of the first plug-in plate 6212 that is close to the stop plate 54.
[0125] The first plug-in portion 621 can be an integrated structure, that is, the first connecting plate 6211 and the first plug-in plate 6212 can be manufactured through an integrated process, without the need for welding, riveting, or other connection methods. This configuration can reduce the number of connection points between the first connecting plate 6211 and the first plug-in plate 6212, thereby improving the connection strength and structural strength between the first connecting plate 6211 and the first plug-in plate 6212 and reducing the probability of fracture between the first connecting plate 6211 and the first plug-in plate 6212.
[0126] However, the present invention is not limited thereto, and the first plug-in portion 621 may also be a split structure, that is, the first connecting plate 6211 and the first plug-in plate 6212 may be manufactured separately and then connected by welding, riveting, etc. This arrangement can reduce the difficulty of manufacturing the first plug-in portion 621.
[0127] In addition, the first protrusion 623 may also be an integrated structure with the first connecting plate 6211 and the first plug-in plate 6212, but is not limited thereto.
[0128] The second plug-in portion 622 may include a second connecting plate 6221 and a second plug-in plate 6222. The second connecting plate 6221 may connect the capacitor body 61 to the second plug-in plate 6222, and at least a portion of the second plug-in plate 6222 may be inserted into the second sub-plug-in slot 512. The second protrusion 624 may be located on a side of the second plug-in plate 6222 that is adjacent to the stop plate 54.
[0129] The second plug-in portion 622 may also be an integrated structure. This configuration can reduce the number of connection points between the second connecting plate 6221 and the second plug-in plate 6222, thereby improving the connection strength and structural strength between the second connecting plate 6221 and the second plug-in plate 6222 and reducing the probability of breakage between the second connecting plate 6221 and the second plug-in plate 6222.
[0130] However, the second plug-in portion 622 may also be a split structure, that is, the second connecting plate 6221 and the second plug-in plate 6222 may be manufactured separately and then connected by welding, riveting, etc. This arrangement can reduce the difficulty of manufacturing the second plug-in portion 622.
[0131] In addition, the second protrusion 624 may also be an integrated structure with the second connecting plate 6221 and the second plug-in plate 6222, but is not limited thereto.
[0132] In one embodiment of the present disclosure, Figure 7As shown, the capacitor mounting structure 5 may further include a first connecting portion 55. The first connecting portion 55 may be connected to the first limiting portion 52 and the second limiting portion 53, and the first connecting portion 55 may be arranged opposite to the limiting plate 54. The first limiting portion 52, the second limiting portion 53, the limiting plate 54, and the first connecting portion 55 may enclose the aforementioned insertion slot 51.
[0133] For example, when the limiting plate 54 is connected to the first side plate 521 and the third side plate 531, the first connecting portion 55 can be connected to the second side plate 523 and the fourth side plate 533; when the limiting plate 54 is connected to the second side plate 523 and the fourth side plate 533, the first connecting portion 55 can be connected to the first side plate 521 and the third side plate 531. The first connecting portion 55 can be a fourth connecting plate, but is not limited thereto.
[0134] like Figure 5 and Figure 6 As shown, the plug-in block 62 may further include a second connection portion 625. The second connection portion 625 may be connected to the first connection portion 55. The capacitor 6 may not only be plug-connected to the capacitor mounting structure 5, but may also be connected via the first connection portion 55 and the second connection portion 625. This provides a double insurance for the installation of the capacitor 6 and further prevents the capacitor 6 from being detached from the capacitor mounting structure 5.
[0135] In one embodiment, the second connection portion 625 may include: a third connection plate 6251 and a buckle 6252, wherein the third connection plate 6251 may be connected to the capacitor body 61, and the buckle 6252 may be snap-fitted to any edge of the first connection portion 55 in the direction Z of the central axis of the drying turntable 3. In this way, the present disclosure can connect the first connection portion 55 and the second connection portion 625 by snapping, thereby enabling quick connection and disassembly between the first connection portion 55 and the second connection portion 625, ensuring that the capacitor 6 can be more conveniently installed in the capacitor mounting structure 5.
[0136] like Figures 4 to 7 As shown, the third connecting plate 6251 can be located between the first connecting portion 55 and the limiting plate 54, and the buckle 6252 can be located on a side of the third connecting plate 6251 close to the capacitor body 61. In this arrangement, when the first connecting portion 55 and the second connecting portion 625 are engaged, the first connecting portion 55 can be located between the third connecting plate 6251 and the capacitor body 61, thereby enabling the first connecting portion 55 to further limit the capacitor 6.
[0137] But not limited to this, the third connecting plate 6251 can also be located on the side of the first connecting part 55 away from the limiting plate 54, and the buckle 6252 can be located on the side of the third connecting plate 6251 away from the capacitor body 61. It can be selected and set according to actual conditions, which is within the scope of protection of this disclosure.
[0138] In one embodiment, the third connecting plate 6251 can be located between the first plug-in portion 621 and the second plug-in portion 622, and the third connecting plate 6251 can be connected to the first plug-in portion 621 and the second plug-in portion 622. This arrangement can improve the structural strength of the first plug-in portion 621, the second plug-in portion 622, and the second connecting portion 625, thereby preventing them from breaking during use and affecting the installation stability of the capacitor 6.
[0139] In one embodiment of the present disclosure, the plug-in block 62 may be an integrated structure, that is, the various components of the plug-in block 62 may be manufactured through an integrated process. This arrangement can ensure that the plug-in block 62 has a high structural strength.
[0140] However, the present invention is not limited thereto, and the various components of the plug-in block 62 may be partially integrated or manufactured separately, and may be selected and configured according to actual needs, all of which are within the scope of protection of the present disclosure.
[0141] In one embodiment of the present disclosure, Figure 1 and Figure 2 As shown, the capacitor 6 can be a fan capacitor. The fan capacitor can be electrically connected to the fan 2 to drive the fan 2 to start.
[0142] In one embodiment, the capacitor 6 can be arranged near the fan 2. This arrangement can make the capacitor 6 closer to the fan 2, thereby improving the control ability of the capacitor 6 on the fan 2 and reducing the length of the wire connecting the capacitor 6 and the fan 2, thereby saving the amount of wire material and reducing the manufacturing cost of the drying module.
[0143] The capacitor mounting structure 5 can be installed on the side of the fan 2 away from the drying turntable 3. Since the drying turntable 3 will absorb moisture, the humidity near the drying turntable 3 is relatively high. With this arrangement, it is possible to prevent the capacitor 6 from being affected by moisture after being installed on the capacitor mounting structure 5 and affecting its normal operation.
[0144] The capacitor mounting structure 5 can be positioned upstream of the fan 2. Because the wind upstream of the fan 2 does not pass through the drying disc 3, the humidity of the wind upstream of the fan 2 is relatively low. This arrangement prevents the high humidity of the wind from affecting the operation of the capacitor 6 after it is installed in the capacitor mounting structure 5, ensuring the operational stability of the capacitor 6 and improving the operational stability of the drying module.
[0145] In one embodiment, the fan 2 may be an AC fan 2 that can operate using AC power. Compared to a DC fan 2, an AC fan 2 has higher production and operating costs. Therefore, by configuring the fan 2 as an AC fan 2, the production and operating costs of the drying module can be reduced.
[0146] In one embodiment of the present disclosure, Figure 1 and Figure 2 As shown, the housing 1 may include a first housing 13 and a second housing 14. The first housing 13 and the second housing 14 may be disposed relative to each other in the direction Z of the central axis of the drying rotary disc 3 to enclose the aforementioned accommodating chamber 11. The fan 2 and the capacitor mounting structure 5 may both be mounted in the first housing 13.
[0147] In one embodiment, the capacitor mounting structure 5 and the first housing 13 can be integrally formed. This arrangement can enhance the connection strength between the capacitor mounting structure 5 and the first housing 13, further ensuring the secure installation of the capacitor 6. However, the present invention is not limited thereto; the capacitor mounting structure 5 and the first housing 13 can also be separate structures, depending on the actual situation.
[0148] The above-mentioned accommodating chamber 11 may include: a first sub-accommodating chamber 111 and a second sub-accommodating chamber 112. The second shell 14 may include: a turntable protection shell 141 and a fan protection shell 142. The turntable protection shell 141 and the first shell 13 can enclose the first sub-accommodating chamber 111, and the drying turntable 3 can be located in the first sub-accommodating chamber 111; the fan protection shell 142 and the first shell 13 can enclose the second sub-accommodating chamber 112, and at least part of the fan 2 can be located in the second sub-accommodating chamber 112. In this way, the drying turntable 3 and the fan 2 can be isolated and arranged to avoid mutual influence between the drying turntable 3 and the fan 2. In addition, by dividing the second shell 14 into the turntable protection shell 141 and the fan protection shell 142, the amount of materials used in manufacturing the second shell 14 can be saved, and the cost of manufacturing the second shell 14 can be reduced.
[0149] At the same time, when a large housing 1 is divided into two small housings 1, the two small housings 1 have a higher structural strength. Therefore, through the above arrangement, the turntable protection housing 141 and the fan protection housing 142 have a higher structural strength, which can provide better protection for the drying turntable 3 and the fan 2.
[0150] In one embodiment, Figures 1 to 3 As shown, the impeller 22 of the fan 2 and at least a portion of the first rotating shaft 21 can be located within the second sub-accommodation chamber 112. The fan 2 may further include a mounting structure 23 and a connecting structure 24. The mounting structure 23 may be located on a side of the fan protection housing 142 facing away from the first housing 13 and connected to the fan protection housing 142. The connecting structure 24 may extend through the fan protection housing 142 along the direction Z of the central axis of the drying rotary disc 3 and connect the first rotating shaft 21 and the mounting structure 23. Because the impeller 22 of the fan 2 provided in the present disclosure is relatively tall, it occupies a relatively large height space. Therefore, by locating the mounting structure 23 of the fan 2 outside the second sub-accommodation chamber 112, the height of the second sub-accommodation chamber 112 can be minimized, thereby improving the structural strength between the fan protection housing 142 and the first housing 13. Furthermore, locating the mounting structure 23 outside the second sub-accommodation chamber 112 facilitates installation by the operator.
[0151] In one embodiment of the present disclosure, Figure 1 and Figure 2 As shown, the drying module may further include: a hanging ear 7. The hanging ear 7 may be connected to the edge of the housing 1 to be used to mount the drying module on the device to be mounted. The device to be mounted herein may be a structure such as a box of a clothes processing device, but is not limited thereto.
[0152] In one embodiment, the mounting bracket 7 and the housing 1 can be integrally formed. This arrangement can enhance the connection strength between the mounting bracket 7 and the housing 1, improve the bearing capacity of the mounting bracket 7, and prevent the mounting bracket 7 from breaking due to the excessive weight of the drying module. However, the mounting bracket 7 and the housing 1 can also be separate structures, which can be configured according to actual circumstances.
[0153] In one embodiment, the hanging ear 7 may include: a support plate 71 and a mounting plate 72. The support plate 71 may be connected to the edge of the housing 1 and may extend in the direction Z of the central axis of the drying turntable 3. The mounting plate 72 may be connected to the end of the support plate 71 away from the housing 1 and extend in a direction away from the support plate 71. The mounting plate 72 may be mounted on the device to be mounted. With this arrangement, the present disclosure can utilize the support plate 71 to raise the hanging ear 7 in the direction Z of the central axis of the drying turntable 3 to facilitate connection of the hanging ear 7 to the device to be mounted.
[0154] In one embodiment, the hanging ear 7 may be connected to the edge of the first shell 13 , that is, the support plate 71 may be connected to the edge of the first shell 13 .
[0155] The support plate 71 may be provided with a first reinforcement portion 711 , which may be connected to the support plate 71 and the first shell 13 to increase the structural strength of the support plate 71 and improve the bearing capacity of the support plate 71 .
[0156] The first reinforcement portion 711 may be a first reinforcement rib, but is not limited thereto. The first reinforcement portion 711 may also be other structural members that can improve the structural strength and may be configured according to actual conditions.
[0157] The mounting plate 72 may be provided with a second reinforcement portion 721 , which may be located on the side of the mounting plate 72 facing away from the first shell 13 , thereby increasing the structural strength of the mounting plate 72 , improving the bearing capacity of the mounting plate 72 , and thereby improving the bearing capacity of the entire hanging ear 7 .
[0158] The second reinforcement portion 721 can be composed of multiple grooves. This arrangement can form reinforcing ribs between adjacent grooves, thereby increasing the structural strength of the mounting plate 72. Furthermore, this arrangement can save material in manufacturing the mounting plate 72 and reduce its weight. However, this is not limiting. The second reinforcement portion 721 can also be other reinforcing structures and can be configured according to actual circumstances, which is also within the scope of protection of this disclosure.
[0159] In one embodiment, the mounting plate 72 may be provided with a third connection portion 722, through which the mounting lug 7 can be connected to the device to be installed, thereby improving the stability of the drying module installation. The third connection portion 722 may be a connection hole, through which a connector can pass to connect to the device to be installed. However, the third connection portion 722 may also be a connecting structure 24 such as a snap-fit buckle or a snap-fit slot, and can be configured as needed, all of which are within the scope of protection of this disclosure.
[0160] Another aspect of the present disclosure provides a clothes processing device. The clothes processing device may include but is not limited to a washing machine, etc. The clothes processing device may include the drying module described above.
[0161] It should be noted that the present disclosure has already provided a detailed description of the specific structure and beneficial effects of the drying module in the aforementioned embodiments. Therefore, in this embodiment, the specific structure and beneficial effects of the drying module will not be repeated. Please refer to the specific description in the aforementioned embodiments, which are all within the scope of protection of the present disclosure.
[0162] The clothes processing device provided by the present disclosure includes the above-mentioned drying module, such as Figures 1 to 7As shown, the above-mentioned drying module may include: a housing 1, a fan 2, a drying turntable 3, a capacitor mounting structure 5 and a capacitor 6. Among them, the capacitor mounting structure 5 can be arranged on the housing 1, and the capacitor mounting structure 5 can have a first plug-in structure 50. The capacitor 6 may include: a capacitor body 61 and a second plug-in structure 60. The second plug-in structure 60 can be connected to the capacitor body 61. The first plug-in structure 50 and the second plug-in structure 60 can be respectively a plug-in slot 51 and a plug-in block 62, and at least part of the plug-in block 62 can be inserted into the plug-in slot 51. In this way, when the capacitor 6 needs to be installed, it is only necessary to insert the plug-in block 62 into the plug-in slot 51. When the capacitor 6 needs to be disassembled, it is only necessary to pull the plug-in block 62 out of the plug-in slot 51. Therefore, such a setting can facilitate the installation and disassembly of the capacitor 6 and improve the installation and disassembly efficiency of the capacitor 6.
[0163] At the same time, since the plug-in connection has a high degree of connection stability, the above-mentioned setting can improve the stability of the capacitor 6 installed on the capacitor mounting structure 5, and avoid the problem of the capacitor 6 falling off during the operation of the drying module, thereby greatly improving the working stability of the drying module and the working stability of the clothing processing equipment.
[0164] Furthermore, since the capacitor 6 provided by the present disclosure can be securely mounted on the capacitor mounting structure 5, the problem of the capacitor 6 falling off due to large shaking can be effectively avoided. Therefore, compared with the prior art, the drying module provided by the present disclosure can be placed above the drum of the clothes processing device, thereby reducing the overall height of the clothes processing device and avoiding the problem of abnormal conditions such as washing water leakage affecting the safety and service life of the drying module.
[0165] In another aspect, the present disclosure provides an electrical appliance. The electrical appliance may include, but is not limited to, a dishwasher or a laundry processing appliance. The laundry processing appliance may include a washing machine, a dryer, a washer-dryer, a clothes dryer, or the like. The electrical appliance may include the drying module described above.
[0166] It should be noted that the present disclosure has already provided a detailed description of the specific structure and beneficial effects of the drying module in the aforementioned embodiments. Therefore, in this embodiment, the specific structure and beneficial effects of the drying module will not be repeated. Please refer to the specific description in the aforementioned embodiments, which are all within the scope of protection of the present disclosure.
[0167] The electrical equipment provided by the present disclosure includes the above-mentioned drying module, such as Figures 1 to 7As shown, the above-mentioned drying module may include: a housing 1, a fan 2, a drying turntable 3, a capacitor mounting structure 5 and a capacitor 6. Among them, the capacitor mounting structure 5 can be arranged on the housing 1, and the capacitor mounting structure 5 can have a first plug-in structure 50. The capacitor 6 may include: a capacitor body 61 and a second plug-in structure 60. The second plug-in structure 60 can be connected to the capacitor body 61. The first plug-in structure 50 and the second plug-in structure 60 can be respectively a plug-in slot 51 and a plug-in block 62, and at least part of the plug-in block 62 can be inserted into the plug-in slot 51. In this way, when the capacitor 6 needs to be installed, it is only necessary to insert the plug-in block 62 into the plug-in slot 51. When the capacitor 6 needs to be disassembled, it is only necessary to pull the plug-in block 62 out of the plug-in slot 51. Therefore, such a setting can facilitate the installation and disassembly of the capacitor 6 and improve the installation and disassembly efficiency of the capacitor 6.
[0168] At the same time, since the plug-in connection has a high degree of connection stability, the above-mentioned setting can improve the stability of the capacitor 6 installed on the capacitor mounting structure 5, and avoid the problem of the capacitor 6 falling off during the operation of the drying module, thereby greatly improving the working stability of the drying module and the working stability of the electrical equipment.
[0169] Furthermore, since the capacitor 6 provided by the present disclosure can be securely mounted on the capacitor mounting structure 5, the problem of the capacitor 6 falling off due to large shaking can be effectively avoided. Therefore, compared with the prior art, the drying module provided by the present disclosure can be placed above the cleaning space of the electrical equipment, thereby reducing the overall height of the electrical equipment and avoiding the problem of abnormal conditions such as cleaning water leakage affecting the safety and service life of the drying module.
[0170] Other embodiments of the present disclosure will readily occur to those skilled in the art after considering the specification and practicing the utility model disclosed herein. This disclosure is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, with the true scope and spirit of the present disclosure being indicated by the appended claims.
Claims
1. A drying module, characterized in that: include: A housing having a receiving cavity; a fan, disposed in the accommodating cavity; A drying turntable is arranged in the accommodating cavity and spaced apart from the fan; A capacitor mounting structure is provided on the housing, and the capacitor mounting structure has a first plug-in structure; The capacitor includes: a capacitor body and a second plug-in structure, wherein the second plug-in structure is connected to the capacitor body, the first plug-in structure and the second plug-in structure are respectively a plug-in slot and a plug-in block, and at least part of the plug-in block can be inserted into the plug-in slot.
2. The drying module according to claim 1, characterized in that: The first plug-in structure is the plug-in slot, and the second plug-in structure is the plug-in block. The plug-in block is inserted into the plug-in slot along the direction of the central axis of the drying rotary disk.
3. The drying module according to claim 2, characterized in that: The plug-in slot includes at least a first sub-plug-in slot and a second sub-plug-in slot; the capacitor mounting structure includes: a first limiting portion and a second limiting portion, the first sub-plug-in slot is located in the first limiting portion, the second limiting portion is spaced apart from the first limiting portion, and the second sub-plug-in slot is located in the second limiting portion; The plug-in block includes: a first plug-in portion and a second plug-in portion, the first plug-in portion and the second plug-in portion are both connected to the capacitor body, and at least a portion of the first plug-in portion can be inserted into the first sub-plug-in slot, and at least a portion of the second plug-in portion can be inserted into the second sub-plug-in slot.
4. The drying module according to claim 3, characterized in that: The first limiting portion has a first opening, the second limiting portion has a second opening, and the first opening and the second opening are arranged opposite to each other.
5. The drying module according to claim 4, characterized in that: The capacitor installation structure further includes: A limiting plate connects the first limiting portion and the second limiting portion, and the first limiting portion, the second limiting portion and the limiting plate form the plug-in slot.
6. The drying module according to claim 5, characterized in that: A first stop portion and a second stop portion are provided on a side of the limiting plate close to the plug slot, wherein the first stop portion is closer to the first limiting portion than the second stop portion; The plug-in block further includes a first protrusion and a second protrusion, wherein the first protrusion contacts the first stopper, and the second protrusion contacts the second stopper.
7. The drying module according to claim 6, characterized in that: The first protrusion is arranged on a side of the first plug-in portion close to the limiting plate, and the second protrusion is arranged on a side of the second plug-in portion close to the limiting plate.
8. The drying module according to claim 6 or 7, characterized in that: A side of the first stop portion close to the first limiting portion is a first inclined surface, and the first inclined surface is inclined toward the second limiting portion; the first convex portion is at least located between the first inclined surface and the first limiting portion, and the first convex portion contacts the first inclined surface.
9. The drying module according to claim 6 or 7, characterized in that: A side of the second stop portion close to the second limiting portion is a second inclined surface, and the second inclined surface is inclined toward the first limiting portion; the second convex portion is at least located between the second inclined surface and the second limiting portion, and the second convex portion contacts the second inclined surface.
10. The drying module according to any one of claims 3 to 7, characterized in that: The first plug-in portion includes: A first connecting plate and a first plug-in plate, wherein the first connecting plate connects the capacitor body and the first plug-in plate, and at least a portion of the first plug-in plate can be inserted into the first sub-plug-in slot.
11. The drying module according to any one of claims 3 to 7, characterized in that: The second plug-in portion includes: A second connecting plate and a second plug-in plate, wherein the second connecting plate connects the capacitor body and the second plug-in plate, and at least a portion of the second plug-in plate can be inserted into the second sub-plug-in slot.
12. The drying module according to any one of claims 5 to 7, characterized in that: The capacitor mounting structure further includes: a first connecting portion connected to the first limiting portion and the second limiting portion, and the first connecting portion is arranged opposite to the limiting plate, and the first limiting portion, the second limiting portion, the limiting plate and the first connecting portion form the plug-in slot; The plug-in block further includes a second connecting portion connected to the first connecting portion.
13. The drying module according to claim 12, characterized in that: The second connecting portion includes a third connecting plate and a buckle, the third connecting plate is connected to the capacitor body, and the buckle is engaged with any edge of the first connecting portion in the direction of the central axis of the drying rotary disk.
14. The drying module according to claim 13, characterized in that: The third connecting plate is located between the first connecting part and the limiting plate, and the buckle is located on the side of the third connecting plate close to the capacitor body; or, the third connecting plate is located on the side of the first connecting part away from the limiting plate, and the buckle is located on the side of the third connecting plate away from the capacitor body.
15. The drying module according to claim 13, characterized in that: The third connecting plate is located between the first plug-in portion and the second plug-in portion, and is connected to the first plug-in portion and the second plug-in portion.
16. The drying module according to any one of claims 1 to 7, characterized in that: The capacitor is a fan capacitor, which is electrically connected to the fan and is arranged near the fan.
17. The drying module according to claim 16, characterized in that: The capacitor mounting structure is arranged on a side of the fan away from the drying rotary disk.
18. The drying module according to claim 17, characterized in that: The capacitor mounting structure is arranged at an upstream position of the air flow of the fan, and the fan is an AC fan.
19. The drying module according to any one of claims 1 to 7, characterized in that: The housing comprises: A first shell and a second shell are arranged opposite to each other in the direction of the central axis of the drying rotary disk to form the accommodating cavity; the fan and the capacitor mounting structure are both installed in the first shell.
20. The drying module according to claim 19, characterized in that: The accommodating chamber includes: a first sub-accommodating chamber and a second sub-accommodating chamber, and the second shell includes: a turntable protection shell and a fan protection shell; the turntable protection shell and the first shell form the first sub-accommodating chamber, and the drying turntable is located in the first sub-accommodating chamber; the fan protection shell and the first shell form the second sub-accommodating chamber, and at least part of the fan is located in the second sub-accommodating chamber.
21. The drying module according to any one of claims 1 to 7, characterized in that: The drying module also includes: The hanging ear is connected to the edge of the shell and is used to install the drying module on the equipment to be installed.
22. The drying module according to claim 21, characterized in that: The mounting ears include: A support plate connected to the edge of the shell and extending in the direction of the central axis of the drying turntable; The mounting plate is connected to one end of the support plate away from the housing and extends in a direction away from the support plate. The mounting plate can be mounted on the device to be mounted.
23. A clothes processing device, characterized in that: The clothes processing device includes the drying module according to any one of claims 1 to 22.
24. The clothes treating device according to claim 23, characterized in that: The clothes processing device also includes: Box; The cylinder is arranged in the box body; the drying module is arranged in the box body and is located above the cylinder.