Washing machine box body assembly and washing machine
Through the design of the clamping parts, clamping holes and positioning parts, the connection complexity problem between the washing machine case and the air outlet structure is solved, and simple disassembly and stable connection effect is achieved.
Patent Information
- Application Number
- CN202421928614.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The connection between the existing washing machine case and the air outlet structure is complicated and inconvenient to disassemble, resulting in cumbersome operation.
The coupling between the clamping member and the clamping hole is adopted, combined with the design of the positioning member and the positioning groove, the detachable connection between the air outlet structure and the box is realized, and the stability and accuracy of the connection are ensured through the coupling between the clamping member and the positioning member.
The loading and unloading process of the air outlet structure is simplified, the stability and accuracy of the connection are improved, loosening problems are avoided, and it can be operated without the help of tools.
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Figure CN223074461U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of washing machines, and more particularly, to a washing machine cabinet assembly and a washing machine. Background Art
[0002] In the related art, the cabinet of the washing machine and the air outlet structure are generally connected by means of fasteners such as screws and bolts, which has the disadvantages of complex operation and inconvenient disassembly. Summary of the Utility Model
[0003] To overcome the problems existing in the related art, the present disclosure provides a washing machine cabinet assembly and a washing machine.
[0004] According to a first aspect of an embodiment of the present disclosure, a washing machine cabinet assembly is provided, including a cabinet and an air outlet structure. An air outlet hole for communicating with a ventilation pipe is provided on the cabinet. A first ventilation hole is formed inside the air outlet structure. At least one positioning member and at least one clamping member are provided on one of the cabinet and the air outlet structure, and at least one positioning hole and at least one clamping hole are provided on the other of the cabinet and the air outlet structure. The air outlet structure can be detachably connected to the cabinet through the cooperation of the clamping member and the clamping hole, and when the clamping member is clamped with the clamping hole, the positioning member is positioned in the positioning hole, and the first ventilation hole is communicated with the air outlet hole.
[0005] In some embodiments, the clamping member includes an insertion portion and a stop portion connected to each other. The stop portion can stop against the inner wall of the cabinet when the insertion portion is inserted into the clamping hole.
[0006] In some embodiments, the first end of the insertion portion is connected to the first end of the stop portion, the second section of the stop portion extends in a direction away from the insertion portion, and the insertion portion and the stop portion are configured in an L shape.
[0007] In some embodiments, along the end of the stop portion close to the insertion portion to the end of the stop portion far from the insertion portion, the thickness of the stop portion gradually decreases.
[0008] In some embodiments, the positioning member includes an extension section and a convex block. An opening is formed on the side wall of the air outlet structure. The first end of the extension section is connected to the hole wall of the opening, the second end of the extension extends into the opening, and the convex block protrudes from the second end of the extension section.
[0009] In some embodiments, the end of the convex block facing away from the extension section is formed into a hemispherical shape.
[0010] In some embodiments, the air outlet structure includes a connecting member and a first flange protruding circumferentially around the connecting member. A first ventilation hole is formed inside the connecting member, and both the positioning member and the clamping member protrude from the side wall of the first flange.
[0011] In some embodiments, the connecting member includes a cylindrical body and a second flange circumferentially arranged around the cylindrical body. The first flange is circumferentially arranged around the first end of the cylindrical body, and the second flange is circumferentially arranged around the second end of the cylindrical body.
[0012] In some embodiments, there are multiple clamping holes and multiple positioning holes, and the multiple clamping holes and the multiple positioning holes are arranged at intervals circumferentially around the air outlet hole.
[0013] In some embodiments, each clamping hole is arranged between two adjacent positioning holes, and each positioning hole is arranged between two adjacent clamping holes.
[0014] In some embodiments, the positioning holes and the clamping holes communicate with the air outlet hole respectively.
[0015] According to a second aspect of the embodiments of the present disclosure, a washing machine is provided, including the washing machine body assembly as described above.
[0016] The technical solutions provided by the embodiments of the present disclosure may include the following beneficial effects: The clamping between the clamping member and the clamping hole can achieve the clamping between the air outlet structure and the box body. The cooperation between the positioning member and the positioning groove can further position the connection between the air outlet structure and the box body in the clamped state. On the one hand, the cooperation between the positioning member and the positioning groove can prevent the loosening problem of the cooperation between the clamping holes during the operation of the washing machine to ensure the stability of the connection. On the other hand, the cooperation between the positioning member and the positioning groove can improve the positioning accuracy between the air outlet structure and the box body, reduce the error caused by the position deviation, and thus ensure the stability and accuracy of the connection.
[0017] Moreover, the connection between the box body and the air outlet structure is realized by clamping, and the loading and unloading operation of the air outlet structure can be realized without the aid of installation tools, which has the advantages of simple structure and convenient operation.
[0018] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The drawings here are incorporated into the specification and constitute a part of this specification, showing the embodiments in line with the present disclosure, and are used together with the specification to explain the principles of the present disclosure.
[0020] Figure 1 is a partial exploded view of a washing machine cabinet assembly shown according to an exemplary embodiment;
[0021] Figure 2 is a front view of an air outlet structure of a washing machine cabinet assembly shown according to an exemplary embodiment;
[0022] Figure 3 is a perspective view of an air outlet structure of a washing machine cabinet assembly shown according to an exemplary embodiment;
[0023] Figure 4 is a sectional view of an air outlet structure of a washing machine cabinet assembly shown according to an exemplary embodiment.
[0024] Description of Reference Numerals
[0025] 15 - Cabinet; 151 - Air outlet hole; 152 - Positioning hole; 153 - Clamping hole; 91 - Air outlet structure; 92 - First ventilation hole; 921 - First air inlet; 922 - First air outlet; 93 - Positioning member; 930 - Extension section; 931 - Protrusion; 932 - Opening; 94 - Clamping member; 940 - Insertion part; 941 - Stopping part; 95 - Connecting member; 950 - Cylindrical body; 951 - Second flange; 96 - First flange; 97 - Guide member; 970 - Second ventilation hole; 971 - Side wall; 972 - Connecting wall; 973 - Transition section; 974 - Outer discharge section. Detailed Description of the Embodiment
[0026] Here, the exemplary embodiments will be described in detail, and examples thereof are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numerals in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present disclosure. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.
[0027] In the present disclosure, unless otherwise stated, the directional terms such as "inner, outer" refer to the inside and outside of the specific structural contour, and the terms such as "first, second" are only used to distinguish one element from another element, and do not have sequentiality and importance.
[0028] Reference Figures 1 to 4As shown, according to the first aspect of the embodiments of the present disclosure, a washing machine cabinet assembly is provided, which includes a cabinet 15 and an air outlet structure 91. An air outlet hole 151 for communicating with a ventilation pipe is provided on the cabinet 15. A first ventilation hole 92 is formed inside the air outlet structure 91. At least one positioning member 93 and at least one clamping member 94 are provided on one of the cabinet 15 and the air outlet structure 91, and at least one positioning hole 152 and at least one clamping hole 153 are provided on the other of the cabinet 15 and the air outlet structure 91. The air outlet structure 91 can be detachably connected to the cabinet 15 through the cooperation of the clamping member 94 and the clamping hole 153. When the clamping member 94 is clamped with the clamping hole 153, the positioning member 93 is positioned in the positioning hole 152, and the first ventilation hole 92 is communicated with the air outlet hole 151.
[0029] The clamping between the air outlet structure 91 and the cabinet 15 can be realized through the cooperation of the clamping member 94 and the clamping hole 153. The cooperation between the positioning member 93 and the positioning groove can further position the connection between the air outlet structure 91 and the cabinet 15 in the clamped state. On the one hand, the cooperation between the positioning member 93 and the positioning groove can prevent the cooperation between the clamping hole 153 and the clamping hole 153 from loosening during the operation of the washing machine to ensure the stability of the connection. On the other hand, the cooperation between the positioning member 93 and the positioning groove can improve the positioning accuracy between the air outlet structure 91 and the cabinet 15, reduce the error caused by the position deviation, and thus ensure the stability and accuracy of the connection.
[0030] Moreover, the connection between the cabinet 15 and the air outlet structure 91 is realized by means of clamping. The loading and unloading operation of the air outlet structure 91 can be realized without the aid of installation tools, which has the advantages of simple structure and convenient operation.
[0031] The present disclosure does not limit the specific structure and clamping method of the above clamping member 94. For example, as Figure 2 shown, in an exemplary embodiment provided by the present disclosure, the clamping member 94 may include an insertion portion 940 and a stop portion 941 connected to each other. The stop portion 941 can stop at the inner wall of the cabinet 15 when the insertion portion 940 is inserted into the clamping hole 153. In this way, when it is necessary to fix the air outlet structure 91 on the cabinet 15, the clamping member 94 can be inserted into the clamping hole 153, and the stop member is located inside the cabinet 15 to stop against the inner wall of the cabinet 15, thereby restricting the detachment of the clamping member 94 from the clamping hole 153 and realizing the firm connection between the air outlet structure 91 and the cabinet 15.
[0032] In some embodiments, as Figure 2As shown, the first end of the insertion part 940 is connected to the first end of the stop part 941. The second section of the stop part 941 extends in a direction away from the insertion part 940. The insertion part 940 and the stop part 941 are configured in an L shape. Since the insertion part 940 and the stop part 941 are configured in an L shape, when the insertion part 940 is inserted into the clamping hole 153, the stop part 941 connected to the first end of the insertion part 940 can horizontally block against the inner wall of the box body 15 to achieve locking with the box body 15.
[0033] To further improve the clamping effect between the clamping part 94 and the clamping hole 153, as Figure 2 shown, along the end of the stop part 941 close to the insertion part 940 to the end of the stop part 941 far from the insertion part 940, the thickness of the stop part 941 gradually decreases. In this way, after the clamping part 94 is inserted into the clamping hole 153, by rotating the air outlet structure 91, the position of the stop part 941 in the clamping hole 153 can be adjusted. And as the stop part 941 is continuously screwed in, the distance between the stop part 941 and the inner wall of the box body 15 gradually decreases until the stop part 941 fits and presses tightly against the inner wall of the box body 15 to achieve locking between the air outlet structure 91 and the box body 15.
[0034] Alternatively, in other embodiments provided by the present disclosure, the above clamping part 94 can be clamped in the above clamping hole 153 by an interference fit to achieve locking of the two.
[0035] Similarly, the present disclosure does not limit the specific shape and positioning method of the above positioning part 93, as long as it can achieve the positioning function of the above air outlet structure 91. For example, in an exemplary embodiment provided by the present disclosure, as Figures 2 to 4 shown, the positioning part 93 can include an extension section 930 and a convex block 931. An opening 932 is formed on the side wall 971 of the air outlet structure 91. The first end of the extension section 930 is connected to the hole wall of the opening 932, and the extended second end extends into the opening 932. The convex block 931 protrudes from the second end of the extension section 930. After the above clamping part 94 is inserted into the clamping hole 153, since the convex block 931 protrudes from the extension section 930, the convex block 931 will contact and be squeezed by the outer surface of the box body 15, and then drive the extension section 930 to deform in a direction away from the inside of the box body 15, so that the convex block 931 generates an elastic driving force towards the box body 15. As the air outlet structure 91 rotates, when the convex block 931 rotates to a position opposite to the positioning hole 152, the elastic driving force generated by the deformation of the extension section 930 can drive the convex block 931 to move towards the positioning hole 152 and be embedded in the positioning hole 152. At this time, the air outlet structure 91 cannot continue to rotate, and the clamping part 94 is also in a clamped and locked state with the clamping groove.
[0036] Under the cooperation of the above-mentioned positioning member 93 and the positioning hole 152, on the one hand, after the clamping member 94 is clamped in place, the relative movement between the clamping member 94 and the clamping groove can be restricted, thereby improving the stability between the clamping member 94 and the clamping groove. On the other hand, it can also avoid the problem that the clamping member 94 and the clamping groove are not locked in place, thereby reducing the error caused by the position deviation.
[0037] In some embodiments, such as Figure 2 shown, one end of the convex block 931 departing from the extension section 930 is formed as a hemispherical shape. During the process of the hemispherical convex block 931 being inserted into and removed from the positioning hole 152, there is less resistance between the convex block 931 and the positioning hole 152. Therefore, it is more convenient for the positioning member 93 to slide into the positioning hole 152 or be removed from the positioning hole 152, thereby making the locking and unlocking operations of the air outlet structure 91 smoother and more labor-saving.
[0038] In the present disclosure, as Figures 1 to 4 shown, the air outlet structure 91 includes a connecting member 95 and a first flange 96 protruding circumferentially around the connecting member 95. A first ventilation hole 92 is formed inside the connecting member 95. Both the positioning member 93 and the clamping member 94 protrude from the side wall 971 of the first flange 96. In this way, when assembling the above-mentioned air outlet, the connecting member 95 can be partially inserted into the clamping hole 153 on the washing machine body 15, so as to communicate with the ventilation pipe arranged inside the washing machine body 15. At the same time, since the first flange 96 protrudes circumferentially around the connecting member 95 and is arranged protruding from the connecting member 95, when the air outlet structure 91 is fixed on the body 15, the side of the first flange 96 close to the washing machine body 15 can be attached to the outer side wall 971 of the body 15, thereby improving the sealing performance between the air outlet structure 91 and the body 15.
[0039] In order to further improve the sealing effect, as Figure 2 、 Figure 3 shown, the connecting member 95 may include a cylindrical body 950 and a second flange 951 arranged circumferentially around the cylindrical body 950. The first flange 96 is arranged around the first end of the cylindrical body 950, and the second flange 951 is arranged around the second end of the cylindrical body 950. In the embodiment where the cylindrical body 950 is connected to the ventilation pipe by plugging, the end of the cylindrical body 950 departing from the guiding member 97 and the second flange 951 can jointly abut against the side wall 971 of the ventilation pipe, thereby increasing the sealing contact area between the cylindrical body 950 and the ventilation pipe and achieving the purpose of improving the sealing performance between the cylindrical body 950 and the ventilation pipe.
[0040] In order to further improve the connection stability between the air outlet structure 91 and the body 15, as Figure 1As shown, there may be multiple snap holes 153 and positioning holes 152, and the multiple snap holes 153 and the multiple positioning holes 152 are arranged at intervals around the circumference of the air outlet 151. In this way, with the cooperation of the multiple snap members 94 and the multiple snap holes 153 and the cooperation of the multiple positioning members 93 and the multiple positioning holes 152, the locking and positioning functions between the air outlet structure 91 and the box body 15 are jointly realized, thereby improving the stability and error tolerance between the two.
[0041] In an exemplary embodiment provided by the present disclosure, as Figure 1 shown, both the above-mentioned snap holes 153 and positioning holes 152 are two. Among them, the two snap holes 153 are symmetrically arranged, and the two positioning holes 152 are symmetrically arranged. In this way, with the cooperation of the positioning member 93 and the positioning hole 152 and the cooperation of the snap member 94 and the snap hole 153, positioning and locking can be carried out from different directions, improving the locking stability between the air outlet structure 91 and the box body 15.
[0042] In some embodiments, as Figure 1 shown, each snap hole 153 is arranged between two adjacent positioning holes 152, and each positioning hole 152 is arranged between two adjacent snap holes 153. That is to say, the snap holes 153 and the positioning holes 152 are arranged alternately in sequence. In this way, it can be ensured that there are positioning members 93 and positioning holes 152 on both sides of each snap member 94 and the snap hole 153, and there are snap members 94 and snap holes 153 on both sides of each positioning hole 152 and the positioning member 93, thereby realizing the locking and positioning of each position of the air outlet structure 91, and further improving the stability and firmness of the connection between the air outlet structure 91 and the box body 15.
[0043] In some embodiments, the positioning hole 152 and the snap hole 153 are respectively communicated with the air outlet 151, which is convenient for processing and opening the above-mentioned positioning hole 152, snap hole 153 and air outlet 151 on the box body 15.
[0044] During the use of the washing machine, affected by factors such as water inlet and heating, the gas pressure inside the washing machine will change to a certain extent. In order to ensure the balance of the internal pressure of the washing machine, an air outlet structure 91 for exhausting gas is generally provided on the back panel of the washing machine. However, precisely because the air outlet structure 91 is provided on the back panel of the washing machine, and this back panel is arranged opposite to the wall, when the gas is discharged through the air outlet structure 91, it will directly blow towards the wall. Over time, it will cause problems such as the wall getting damp or damaged.
[0045] Based on this, the air outlet structure 91 further includes a guiding member 97 connected to the connecting member 95. Specifically, as Figures 2 to 4As shown, for the embodiment in which the first ventilation hole 92 is formed inside the connecting member 95, the first intake port 921 and the first outlet port 922 are respectively formed at both ends of the first ventilation hole 92. The first intake port 921 is used to communicate with the ventilation pipe of the washing machine, and the first outlet port 922 is used to communicate with the outside atmosphere. The guiding member 97 is disposed opposite to the first outlet port 922 and is used to change the flow direction of the gas discharged from the first outlet port 922.
[0046] In the above technical solution, since the guiding member 97 is disposed opposite to the first outlet port 922, in this way, the gas inside the washing machine can be discharged to the outside atmosphere through the ventilation pipe, the first intake port 921, the first ventilation hole 92, and the first outlet port 922 in sequence. During the process of the gas flowing from the first outlet port 922 to the outside, the gas will directly impact on the guiding member 97 disposed opposite to the first outlet port 922 and flow along the extending direction of the guiding member 97, realizing the change of the gas flow direction, thereby reducing or avoiding the problem that the gas directly impacts on the wall behind the washing machine after flowing out from the first outlet port 922, and further improving the user experience.
[0047] The present disclosure does not limit the specific structure of the guiding member 97, as long as it can realize the change of the flow direction of the gas discharged from the first outlet port 922. For example, in an exemplary embodiment provided by the present disclosure, as Figures 2 to 3 shown, a second ventilation hole 970 communicating with the outside atmosphere may be formed inside the guiding member 97. The second ventilation hole 970 is communicated with the first ventilation hole 92 through the first outlet port 922, and the flow direction of the gas in the second ventilation hole 970 is different from the flow direction of the gas in the first ventilation hole 92. In this way, after the gas flows out from the first ventilation hole 92 inside the connecting member 95, it can enter the second ventilation hole 970 through the first outlet port 922 of the first ventilation hole 92. Since the second ventilation hole 970 is not in the same direction as the first ventilation hole 92, the flow direction of the gas will change during the process of flowing in the second ventilation hole 970, thereby avoiding the gas directly impacting on the wall when flowing from the second ventilation hole 970 into the atmosphere.
[0048] In order to further reduce the contact between the gas discharged from the second ventilation hole 970 and the wall, in the present disclosure, the included angle between the flow direction of the gas in the second ventilation hole 970 and the flow direction of the gas in the first ventilation hole 92 is less than or equal to 90°. Since the included angle between the flow direction of the gas in the second ventilation hole 970 and the flow direction of the gas in the first ventilation hole 92 is less than or equal to 90°, this can make the flow direction of the gas after flowing out from the second ventilation hole 970 be away from the wall direction or parallel to the wall, so as to reduce or avoid the contact between the gas and the wall.
[0049] It should be noted that for the embodiment in which the included angle between the flow direction of the gas in the second vent hole 970 and the flow direction of the gas in the first vent hole 92 is equal to 90°, at this angle, the gas flowing out of the second vent hole 970 will neither directly blow towards the wall nor directly blow towards the washing machine (the back panel of the washing machine), thus avoiding the purging of the gas on the wall and the back panel.
[0050] The present disclosure does not limit the specific structure of the above-mentioned guide member 97. For example, in an exemplary embodiment provided by the present disclosure, as Figure 3 shown, the guide member 97 includes two side walls 971 arranged at intervals and a connecting wall 972 connected between the two side walls 971. The connecting wall 972 is disposed opposite to the first air outlet 922, and the connecting wall 972 and the side walls 971 together enclose the second vent hole 970. In this way, when the gas flows into the first vent hole 92, it can flow from the first air outlet 922 of the first vent hole 92 into the second vent hole 970 surrounded by the side walls 971 and the connecting wall 972, and then flow into the external atmosphere. In the above process, the connecting wall 972 connected between the side walls 971 can block and isolate the gas flowing out of the first vent hole 92 to prevent the gas from directly impacting on the wall surface, and the two side walls 971 arranged at intervals can limit and guide the gas to facilitate the gas to quickly flow into the external atmosphere.
[0051] Alternatively, in another exemplary embodiment provided by the present disclosure, the guiding portion may include a baffle and a plurality of partition plates. The two adjacent partition plates are arranged at intervals, one end of each partition plate is connected to the baffle, and the other end of each partition plate is connected to the connecting member 95. The baffle and the two adjacent baffles together enclose the second vent hole 970. In this way, under the combined action of the plurality of partition plates and the baffle, the space between the baffle and the guiding portion can be divided into a plurality of second vent holes 970. In this way, when the gas flows out of the first air outlet 922 of the first through hole, it will directly impact on the baffle and enter into the plurality of second vent holes 970 respectively. After the airflow flowing out of the first vent hole 92 is shunted, it is then led out to the external atmosphere through the second vent hole 970.
[0052] In the present disclosure, as Figure 4As shown, the second vent hole 970 may include a transition section 973 and at least one outer discharge section 974 that communicate with each other. The transition section 973 is disposed opposite to and communicates with the first air outlet 922 of the first vent hole 92. One end of each outer discharge section 974 away from the transition section 973 communicates with the outside atmosphere. In this way, after the gas flows from the first vent hole 92 through the first air outlet 922 into the transition section 973, it is then discharged to the outside atmosphere through the outer discharge section 974. In the above process, on the one hand, the transition section 973 can buffer and transition the gas. On the other hand, in the embodiment where the second vent hole 970 includes multiple outer discharge sections 974, the transition section 973 can also distribute the gas flowing out from the first vent hole 92, so that the flow rate and flow velocity of the gas flowing out from each outer discharge section 974 are more uniform.
[0053] In order to further facilitate the gas to flow more smoothly from the transition section 973 into the outer discharge section 974, in an embodiment provided by the present disclosure, as Figure 4 shown, the inner side wall 971 of the above-mentioned transition section 973 is configured as an arc surface. In this way, when the gas flows through the transition section 973, the arc-shaped inner side wall 971 can guide the gas, and moreover, the arc-shaped inner side wall 971 also makes the gas flow path smoother, thereby reducing the flow resistance during the process of the gas flowing from the transition section 973 into the outer discharge section 974.
[0054] In addition, for the embodiment where the inner side wall 971 of the transition section 973 is configured as an arc surface, the above-mentioned outer discharge section 974 may extend along the tangent direction of the air outlet of the transition section 973. When the gas is discharged from the air outlet of the transition section 973, it will move along the tangent direction of the air outlet. Therefore, setting the transition section 973 to extend along this tangent direction can reduce the resistance and energy loss during the exhaust process, thereby improving the exhaust efficiency.
[0055] Alternatively, in other embodiments provided by the present disclosure, a flow channel may not be provided inside the above-mentioned guide member 97. For example, the guide member 97 may be provided as a guide plate, and the guide plate is disposed opposite to the first air outlet 922. In this way, after the gas impacts on the guide plate after being discharged through the first air outlet 922, it can be directly discharged to the atmosphere through the space between the guide plate and the connecting member 95.
[0056] For the embodiment where the second vent hole 970 may be multiple, as Figure 3 、 Figure 4 shown, multiple second vent holes 970 are arranged at intervals around the circumference of the guide member 97. In this way, the gas discharged from the multiple second vent holes 970 can be discharged into the outside atmosphere from different directions of the guide member 97, further improving the exhaust efficiency.
[0057] In an exemplary embodiment provided by the present disclosure, asFigure 3 , Figure 4 , two second ventilation holes 970 are formed inside the guide member 97, and the two second ventilation holes 970 are arranged in central symmetry. In this way, after the gas is discharged through the first ventilation hole 92, the gas can be evenly shunted into the two second ventilation holes 970 respectively and discharged into the atmosphere, and flows out to the outside atmosphere through the two second ventilation holes 970, thereby improving the gas discharge efficiency. In addition, since the flow rate and flow volume of the gas flowing out of a single second ventilation hole 970 are reduced, the noise generated during the gas discharge process can also be reduced.
[0058] Alternatively, each of the above-mentioned second ventilation holes 970 may also have a plurality of second air outlets for communicating with the outside atmosphere, and the plurality of second air outlets are arranged at intervals around the circumference of the guide member 97. In this way, the gas entering each second ventilation hole 970 can be discharged into the outside atmosphere through the plurality of second air outlets, further improving the exhaust efficiency. Moreover, since the plurality of second air outlets are arranged at intervals around the circumference of the guide member 97, the problem of interference between two adjacent second air outlets during the exhaust process can be effectively avoided.
[0059] According to the second aspect of the embodiments of the present disclosure, a washing machine is provided, including the above-mentioned washing machine body assembly. This washing machine has all the beneficial effects of the above-mentioned washing machine body assembly, and the present disclosure will not describe them here.
[0060] After considering the specification and practicing the solutions disclosed herein, those skilled in the art will readily conceive of other embodiments of the present disclosure. This application is intended to cover any variations, uses, or adaptations of the present disclosure, which follow the general principles of the present disclosure and include the common general knowledge or conventional technical means in the technical field not disclosed in the present disclosure. The specification and embodiments are only regarded as exemplary, and the true scope and spirit of the present disclosure are pointed out by the appended claims.
[0061] It should be understood that the present disclosure is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.
Claims
1. A washing machine cabinet assembly, characterized in that, It includes a box body and an air outlet structure. An air outlet hole for communicating with a ventilation pipe is provided on the box body. A first ventilation hole is formed inside the air outlet structure. At least one positioning member and at least one clamping member are provided on one of the box body and the air outlet structure, and at least one positioning hole and at least one clamping hole are provided on the other of the box body and the air outlet structure. The air outlet structure can be detachably connected to the box body through the cooperation of the clamping member and the clamping hole, and when the clamping member is clamped with the clamping hole, the positioning member is positioned in the positioning hole, and the first ventilation hole is communicated with the air outlet hole.
2. The washing machine cabinet assembly according to claim 1, characterized in that, The clamping member includes an insertion part and a stop part connected to each other. The stop part can stop against the inner wall of the box body when the insertion part is inserted into the clamping hole.
3. The washing machine cabinet assembly according to claim 2, characterized in that, The first end of the insertion part is connected to the first end of the stop part. The second section of the stop part extends in a direction away from the insertion part. The insertion part and the stop part are configured in an L shape.
4. The washing machine cabinet assembly according to claim 3, wherein, Along the end of the stop part close to the insertion part to the end of the stop part far from the insertion part, the thickness of the stop part gradually decreases.
5. The washing machine cabinet assembly according to claim 1, wherein, The positioning member includes an extension section and a convex block. An opening is formed on the side wall of the air outlet structure. The first end of the extension section is connected to the hole wall of the opening, the second end of the extension extends into the opening, and the convex block protrudes from the second end of the extension section.
6. The washing machine cabinet assembly according to claim 5, wherein, One end of the convex block facing away from the extension section is formed into a hemispherical shape.
7. The washing machine cabinet assembly according to any one of claims 1-6, characterized in that, The air outlet structure includes a connecting member and a first flange protruding circumferentially around the connecting member. The first ventilation hole is formed inside the connecting member. The positioning member and the clamping member both protrude from the side wall of the first flange.
8. The washing machine cabinet assembly according to claim 7, characterized in that, The connecting member includes a cylinder body and a second flange arranged circumferentially around the cylinder body. The first flange is arranged circumferentially around the first end of the cylinder body, and the second flange is arranged circumferentially around the second end of the cylinder body.
9. The washing machine cabinet assembly according to any one of claims 1-6, characterized in that, Both the clamping holes and the positioning holes are multiple. The multiple clamping holes and the multiple positioning holes are arranged at intervals circumferentially around the air outlet hole.
10. The washing machine cabinet assembly according to claim 9, wherein, Each clamping hole is arranged between two adjacent positioning holes, and each positioning hole is arranged between two adjacent clamping holes.
11. The washing machine cabinet assembly according to any one of claims 1-6, characterized in that, The positioning holes and the clamping holes are respectively communicated with the air outlet hole.
12. A washing machine, characterized in that, It includes a washing machine box body assembly according to any one of claims 1-11.