A bowl basket assembly and a dishwasher

By designing a dish rack assembly that connects the movable rack to the bottom mesh in a convertible state, the contradiction between the load-bearing and placement of tableware in a dishwasher is resolved, achieving efficient, stable, and flexible tableware storage and configuration to meet market demands.

CN224671471UActive Publication Date: 2026-08-25NINGBO QINGMEI ELECTRIC APPLIANCE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522141235.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2026-08-25
Estimated Expiration
2035-10-10

AI Technical Summary

Technical Problem

Existing dishwasher dish racks present a contradiction between the required number of place settings and the versatility of placement, making it difficult to meet market demands for increased dish capacity and diverse placement options.

Method used

Design a bowl basket assembly comprising a bottom mesh and a movable rack, the movable rack being rotatably connected to the bottom mesh, enabling rapid switching between a supported state and an inverted state. Combined with multiple bowl support racks, it achieves flexible tableware placement configuration.

Benefits of technology

To improve the load-bearing capacity and stability of tableware within a limited space, simplify the configuration complexity for users, meet the diverse tableware placement needs, and enhance the flexibility and efficiency of space planning.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224671471U_ABST
    Figure CN224671471U_ABST
Patent Text Reader

Abstract

The utility model relates to a bowl basket assembly and dish-washing machine, bowl basket assembly includes the first movable row, second movable row and third movable row of bottom net and being established at bottom net, and bottom net forms first containing space and second containing space in first direction inside, and bottom net is separately set up with a plurality of interval distribution's bowl support frame along second direction on first containing space and second containing space, first movable row distributes in first containing space, second movable row and third movable row distribute in second containing space, first movable row, second movable row and third movable row are connected with bottom net rotation respectively to have support state and inverted state, through the partition of bottom net and the integration bowl support frame with the independent control of three movable rows, can put down movable row to place closely when needing high carrying capacity, and can set up movable row of specific area to provide support when needing to place special-shaped tableware, and user can carry out flexible configuration to movable row according to the type and quantity of each time tableware washing.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of dish rack technology, and in particular to a dish rack assembly and a dishwasher. Background Technology

[0002] In the prior art, upper bowl basket components are often used to hold tableware such as rice bowls, cups or condiment dishes, and may be equipped with a movable rack structure to expand the ways tableware can be placed.

[0003] With the increasing popularity of dishwashers and the growing market demand for higher tableware capacity, a contradiction has arisen between the versatility of dishwasher racks in terms of tableware placement and load capacity. Therefore, this patent aims to propose a rack structure that satisfies both the increased load capacity requirement and the diverse placement needs of tableware. Utility Model Content

[0004] Therefore, it is necessary to provide a dish rack assembly and a dishwasher to address the aforementioned problems.

[0005] A bowl basket assembly includes a bottom mesh and a movable row disposed on the bottom mesh;

[0006] The bottom net is provided with multiple spaced bowl support racks, the movable row is rotatably connected to the bottom net to have a supported state and an inverted state, and the movable row is arranged adjacent to the bowl support racks;

[0007] When the movable row is in a supported state, its horizontal height is greater than that of the bowl support frame, and the movable row is located above the bowl support frame. At this time, the movable row is used for placing the first bowl. When the movable row is in an inverted state, its horizontal height is less than that of the bowl support frame, and the distance between two adjacent bowl supports is used for placing the second bowl.

[0008] This application discloses a dish rack assembly, in which a dish support frame and a movable rack are respectively provided on the bottom mesh for fixing the placement of dishes. The movable rack is rotatably connected to the bottom mesh and forms at least a first position and a second position. When the movable rack is in the first position, it is in a supported state, standing upright above the dish support frame, with the first dish placed upside down on the movable rack. When the movable rack is in the second position, it is in an inverted state, with the second dish vertically inserted into two adjacent dish support frames. This application allows the movable rack to quickly switch between the supported and inverted states through a simple flipping action. When it is necessary to increase the capacity for placing tableware, the movable rack can be flipped over so that the second dish is inserted upside down into two adjacent dish support frames. When personalized tableware placement is required, the movable rack in a specific area can be erected to provide support. Users can flexibly configure the movable rack according to the type and quantity of tableware washed each time, thereby more efficiently and stably accommodating a variety of tableware combinations with greater size differences within a limited volume. This simplifies the overall design of the dish rack, reduces the user's configuration complexity, and achieves multiple uses for one basket.

[0009] In one embodiment, the movable row includes a storage rod, a connecting rod, and a movable component. One end of the connecting rod is assembled and connected to the storage rod, and the other end is rotatably connected to the movable component and the bottom net. The movable component has a first limiting structure to ensure that the movable row maintains the supported state.

[0010] In one embodiment, the connecting rod includes a first vertical rod and a first horizontal rod. There are multiple first vertical rods spaced apart. One end of each first vertical rod is connected to the storage rod, and the other end is connected to the first horizontal rod. The projections of the multiple first vertical rods onto the bottom net are staggered from the bowl support frame. When the movable rack is inverted, the storage rod and the first horizontal rod are distributed on both sides of the bowl support frame. By designing the connecting rod to consist of multiple spaced-apart first vertical and first horizontal rods, and ensuring that the projections of these first vertical rods onto the bottom net are staggered from the bowl support frame, the structure of the movable rack and the space of the inherent bowl support frame on the bottom net are kept separate. This solves the problem of flat storage of the movable rack in the inverted state, thereby maximizing the effective load-bearing area and overall structural stability of the bowl basket within a limited space.

[0011] In one embodiment, the end of the first crossbar furthest from the movable component is bent to form a U-shaped latch, and the steel wire in the bottom mesh is recessed to form a limiting groove. The U-shaped latch engages with the limiting groove to achieve a rotatable connection between the first crossbar and the bottom mesh. This rotatable connection between the first crossbar and the bottom mesh via the U-shaped latch and the limiting groove achieves an extremely simple, efficient, and reliable rotatable connection structure. The entire process requires no screws, no tools, and no complex alignment operations, enabling one-step rapid assembly. This significantly improves assembly efficiency on the production line and reduces labor costs.

[0012] In one embodiment, the distance between the end of the U-shaped buckle and the steel wire of the bottom mesh with the limiting groove is L1, and the distance between the steel wire of the bottom mesh with the limiting groove and the nearest first vertical bar is L2, with L1 being greater than L2. Because the distance between the end of the U-shaped buckle and the steel wire of the bottom mesh with the limiting groove is greater than the distance between the steel wire of the bottom mesh with the limiting groove and the nearest first vertical bar, the U-shaped buckle can smoothly and reliably engage with the limiting groove on the steel wire of the bottom mesh, ensuring the first horizontal bar has a range of rotation relative to the limiting groove. Furthermore, it allows for a detachable connection between the movable section and the bottom mesh, facilitating cleaning or replacement of the movable section.

[0013] In one embodiment, the connecting rod further includes a second crossbar, and the two ends of the first vertical rod are respectively connected to the first crossbar and the second crossbar, and the first vertical rod at least partially protrudes from the second crossbar to form a limiting part. The placement rod is provided with an assembly groove, and the assembly groove is provided with a second limiting structure and a slot. The shape of the assembly groove matches the shape of the second crossbar, the second limiting structure is movably engaged with the second crossbar, and the limiting part is inserted into the slot.

[0014] In one embodiment, the movable part is provided with a first buckle and a second buckle along a first direction and a second direction, respectively. The first buckle and the second buckle are respectively movably fastened to the steel wire of the bottom mesh. The movable part is also provided with a third buckle along the first direction. The third buckle is the first limiting structure. One end of the first crossbar is bent to form a locking part, which is movably fastened to the third buckle. By providing the first, second and third buckles on the movable part, a multi-directional and multi-functional composite buckle structure is constructed. This structure achieves movable connection and precise positioning of the movable part and the bottom mesh in two vertical directions in the horizontal plane through the first buckle and the second buckle, ensuring the stability of the rotation center. At the same time, through the cooperation of the locking part formed by the third buckle and the end of the first crossbar, the movable row provides stable support in the supported state, thereby simplifying assembly and achieving a reliable working effect of smooth rotation and clear state of the movable row.

[0015] In one embodiment, the bottom mesh is divided into a first accommodating space and a second accommodating space, with the first accommodating space and the second accommodating space respectively equipped with the movable rack and the dish support rack. By dividing the bottom mesh into first and second accommodating spaces and independently configuring the combination of movable rack and dish support rack in each space, refined zoning management of the dish rack function is achieved. This allows users to configure the two areas independently and differently according to the type and quantity of dishes being washed. For example, one area can have the movable rack erected to place the first dish, while the other area can have the movable rack laid down to densely place the second dish. This greatly improves the flexibility and efficiency of the dish rack space planning, while meeting more diverse tableware placement needs.

[0016] In one embodiment, in the supported state, the support height of at least one of the movable rows differs from the support height of the other movable rows. By setting movable rows of different heights in the supported state, a staggered three-dimensional support structure is achieved inside the bowl basket, thereby better meeting the user's diverse needs for mixed placement of tableware.

[0017] A dishwasher including the dish rack assembly described in any of the preceding claims. Attached Figure Description

[0018] Figure 1 A schematic diagram of the bowl basket assembly in one embodiment. Figure 1 (Active row support status);

[0019] Figure 2 A schematic diagram of the bowl basket assembly in one embodiment. Figure 2 (Activity row inverted state);

[0020] Figure 3 Example of tableware placement in one embodiment Figure 1 (Activity row inverted state);

[0021] Figure 4 Example of tableware placement in one embodiment Figure 2 (Active row support status);

[0022] Figure 5 A schematic diagram of the bowl basket assembly in one embodiment. Figure 3 (Active row support status);

[0023] Figure 6 A schematic diagram of the bowl basket assembly in one embodiment. Figure 4 (Activity row inverted state);

[0024] Figure 7 This is a schematic diagram of the assembly of the bottom mesh and the movable row in one embodiment;

[0025] Figure 8 A partial structural diagram of the movable row in one embodiment. Figure 1 ;

[0026] Figure 9 A partial structural diagram of the movable row in one embodiment. Figure 2 ;

[0027] Figure 10 This is a schematic diagram of the structure of the moving part in one embodiment;

[0028] Figure 11 A schematic diagram of the bowl basket assembly in one embodiment. Figure 5 ;

[0029] Figure 12 for Figure 11 Enlarged view of section A.

[0030] The correspondence between the reference numerals and the component names is as follows:

[0031] 10 Bottom mesh, 11 Bowl support rack, 101 Limiting groove, 102 First accommodating space, 103 Second accommodating space;

[0032] 20 Movable row, 20A First movable row, 20C Second movable row, 20B Third movable row, 21 Storage rod, 22 Connecting rod, 23 Movable part, 211 Second limiting structure, 212 Limiting rib, 221 First vertical rod, 222 First horizontal rod, 223 Second horizontal rod, 2211 Limiting part, 2221 U-shaped latch, 2223 Snap-fit ​​part, 231 First snap-fit, 232 Second snap-fit, 233 Third snap-fit, 201 Assembly groove, 202 Slot. Detailed Implementation

[0033] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0034] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.

[0035] The following describes some embodiments of the bowl basket assembly of the present invention with reference to the accompanying drawings.

[0036] like Figures 1 to 6 As shown, this embodiment discloses a bowl basket assembly, including a bottom mesh 10 and a movable row 20 disposed on the bottom mesh 10;

[0037] The bottom net 10 is provided with a plurality of bowl support racks 11 spaced apart. The movable row 20 is rotatably connected to the bottom net 10 to have a supported state and an inverted state, and the movable row 20 is arranged adjacent to the bowl support racks 11.

[0038] When the movable row 20 is in a supported state, the horizontal height of the movable row 20 is greater than the horizontal height of the bowl support frame 11, and the movable row 20 is located above the bowl support frame 11. At this time, the movable row 20 is used for placing the first bowl. When the movable row 20 is in an inverted state, the horizontal height of the movable row 20 is less than the horizontal height of the bowl support frame 11. At this time, the distance between two adjacent bowl support frames 11 is used for placing the second bowl.

[0039] This application discloses a bowl basket assembly, in which a bowl support frame 11 for fixing bowls and a movable rack 20 are respectively provided on the bottom mesh 10. The movable rack 20 is rotatably connected to the bottom mesh 10 and forms at least a first position and a second position. When the movable rack is in the first position, the movable rack 20 is in a supported state and stands upright above the bowl support frame 11, with the first bowl placed upside down on the movable rack 20. When the movable rack 20 is in the second position, the movable rack 20 is in an inverted state, with the second bowl vertically inserted into two adjacent bowl support frames 11. This application enables the movable rack 20 to quickly switch between the supported state and the inverted state through a simple flipping action. When it is necessary to increase the capacity of tableware, the movable rack 20 can be knocked down so that the second bowl is inserted upside down into two adjacent bowl support frames 11. When personalized tableware placement is required, the movable rack in a specific area can be erected to provide support. Users can flexibly configure the movable rack 20 according to the type and quantity of tableware washed each time, thereby accommodating a variety of tableware combinations with greater size differences more efficiently and stably within a limited volume. This simplifies the overall design of the dish rack, reduces the configuration complexity for users, and realizes multiple uses for one basket.

[0040] Among them, the bowl support frame 11 is a steel wire structure that protrudes in the opposite direction to the bottom of the bottom net 10. There is a certain gap between two adjacent bowl support frames 11, and the bowls can be fixed vertically between the two adjacent bowl support frames 11.

[0041] The number of movable rows 20 can be no less than one. For example, there are two movable rows 20, namely the first movable row 20A and the second movable row 20C. The first movable row 20A and the second movable row 20C are distributed on the bottom net 10 at intervals and are individually rotatably connected to the bottom net 10.

[0042] like Figures 7 to 10As shown, in addition to the features of the above embodiments, this embodiment further defines that: the movable row 20 includes a storage rod 21, a connecting rod 22 and a movable member 23. One end of the connecting rod 22 is assembled and connected to the storage rod 21, and the other end is rotatably connected to the movable member 23 and the bottom net 10. The movable member 23 is provided with a first limiting structure to ensure that the movable row maintains a supported state.

[0043] The first limiting structure can be a bayonet structure, which can be movably engaged with the steel wire on the connecting rod 22. When the steel wire on the connecting rod 22 is engaged with the bayonet structure on the movable part 23, the movable row is firmly locked in the support state by mechanical interlocking, which greatly improves the reliability of use. The user only needs to apply a small force to the storage rod 21 or the connecting part to make the connecting rod 22 disengage from the first limiting structure and realize the state switching of the movable row.

[0044] It should be noted that when the tableware is in the supported state, the storage rod 21 is tilted at a certain angle or perpendicular to the bottom net 10 through the connecting rod 22, and the storage rod 21 provides support for the tableware.

[0045] like Figures 7 to 10 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the connecting rod 22 includes a first vertical rod 221 and a first horizontal rod 222. There are multiple first vertical rods 221, which are spaced apart. One end of the first vertical rod 221 is connected to the storage rod 21, and the other end is connected to the first horizontal rod 222. The projections of the multiple first vertical rods 221 on the bottom net 10 are staggered with the bowl support frame 11. When the movable row 20 is in an inverted state, the storage rod 21 and the first horizontal rod 222 are distributed on both sides of the bowl support frame 11.

[0046] The above embodiment further defines the connecting rod 22 as being composed of multiple spaced first vertical rods 221 and first horizontal rods 222, and ensures that the projections of these first vertical rods 221 on the bottom net 10 are staggered with the bowl support frame 11. This achieves that the structure of the movable rack does not interfere with the space of the inherent bowl support frame 11 on the bottom net 10, and solves the problem of flat storage of the movable rack in the inverted state. Thus, the effective load-bearing area and overall structural stability of the bowl basket are maximized within a limited space.

[0047] It should be noted that the bowl support frame 11 is an inherent, upward-protruding structure on the bottom mesh 10. If the connecting rod 22 of the movable row overlaps with the bowl support frame 11 in the projection, then when the movable row is in an inverted state, the first vertical rod 221 will hit or rest on the bowl support frame 11, causing the movable row to be unable to be completely flat.

[0048] like Figures 7 to 10As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the end of the first crossbar 222 away from the movable member 23 is bent to form a U-shaped buckle 2221, the steel wire in the bottom net 10 is recessed to form a limiting groove 101, and the U-shaped buckle 2221 cooperates with the limiting groove 101 to realize the rotational connection between the first crossbar 222 and the bottom net 10.

[0049] The above embodiments further define that the first crossbar 222 and the bottom net 10 are actually rotatably connected through the cooperation of the U-shaped buckle 2221 and the limiting groove 101, realizing an extremely simple, efficient and reliable rotatable connection structure. The whole process does not require screws, tools or complicated alignment operations, realizing one-step rapid assembly, which can greatly improve the assembly efficiency on the production line and reduce labor costs.

[0050] Among them, the U-shaped buckle 2221 is a "U"-shaped barb structure formed by bending one end of the first horizontal bar 222, while the limiting groove 101 is a groove structure with an opening formed by the steel wire in the bottom net 10 being recessed in the direction away from the bottom of the bottom net 10; specifically, the method of assembling the first horizontal bar 222 with the bottom net 10 is as follows: the end of the first horizontal bar 222 with the U-shaped buckle 2221 is inserted into the limiting groove 101 from the opening direction of the limiting groove 101, and the first horizontal bar 222 rotates relative to the bottom net 10, so that the U-shaped buckle 2221 is engaged with the limiting groove 101, and the U-shaped buckle 2221 can rotate relative to the limiting groove 101.

[0051] like Figures 11 to 12 As shown, in addition to the features of the above embodiments, this embodiment further defines: the distance between the end of the U-shaped buckle 2221 and the steel wire forming the limiting groove 101 of the bottom net 10 is L1, the distance between the steel wire forming the limiting groove 101 of the bottom net 10 and the nearest first vertical rod 221 is L2, and L1 is greater than L2.

[0052] The above embodiment further limits the distance between the end of the U-shaped buckle 2221 and the steel wire forming the limiting groove 101 of the bottom net 10 to be greater than the distance between the steel wire forming the limiting groove 101 of the bottom net 10 and the nearest first vertical bar 221. Based on this, the U-shaped buckle 2221 can smoothly and reliably engage with the limiting groove 101 on the steel wire of the bottom net 10, and ensure that the first horizontal bar 222 can rotate relative to the limiting groove 101. In addition, it can also realize the detachable connection between the movable row and the bottom net 10, which is convenient for cleaning or replacing the movable row.

[0053] like Figure 8As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the connecting rod 22 also includes a second horizontal bar 223, the two ends of the first vertical bar 221 are respectively connected to the first horizontal bar 222 and the second horizontal bar 223, and the first vertical bar 221 at least partially protrudes from the second horizontal bar 223 to form a limiting part 2211, the placement rod 21 is provided with an assembly groove 201, the assembly groove 201 is provided with a second limiting structure 211 and a slot 202, the shape of the assembly groove 201 matches the shape of the second horizontal bar 223, the second limiting structure 211 is movably engaged with the second horizontal bar 223, and the limiting part 2211 is inserted into the slot.

[0054] The first vertical rod 221 is sandwiched between the first horizontal rod 222 and the second horizontal rod 223, which are arranged in parallel. The assembly groove 201 can be a long, narrow groove structure. The entire second horizontal rod 223 can be pressed into the assembly groove 201, and the position of the second horizontal rod 223 is limited by the second limiting structure 211 on the assembly groove 201. The second limiting structure 211 can be a protrusion formed by the side walls on both sides of the assembly groove 201, and the protrusion is movably engaged with the second horizontal rod 223.

[0055] like Figures 7 to 10 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the movable part is provided with a first buckle 231 and a second buckle 232 along the first direction and the second direction, respectively. The first buckle 231 and the second buckle 232 are respectively movably fastened to the steel wire of the bottom net 10. The movable part is also provided with a third buckle 233 along the first direction. The third buckle 233 is a first limiting structure. One end of the first crossbar 222 is bent to form a snap-fit ​​part 2222. The snap-fit ​​part 2222 is movably fastened to the third buckle 233.

[0056] The above embodiment further defines the first, second and third buckles 233 on the movable part, constructing a multi-directional and multi-functional composite buckle structure. This structure realizes the movable part and the bottom net 10 in two vertical directions in the horizontal plane through the first buckle 231 and the second buckle 232, ensuring the stability of the rotation center. At the same time, through the cooperation of the third buckle 233 and the snap-fit ​​part 2222 formed at the end of the first crossbar 222, the movable row provides a stable support in the support state, thereby simplifying the assembly and achieving a reliable working effect of smooth rotation and clear state of the movable row.

[0057] The engagement of the first buckle 231 along the first direction and the second buckle 232 along the second direction is equivalent to establishing a two-dimensional right-angled positioning for the movable part in the horizontal plane at the bottom of the bottom net 10. This ensures that the connection point between the movable part and the bottom net 10 will not become loose or shifted due to force, providing a stable and reliable rotation center.

[0058] like Figure 8 and Figure 9 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the surface of the storage rod 21 is provided with a plurality of spaced limiting ribs 212 along the length direction.

[0059] The above embodiment further specifies that multiple spaced limiting ribs 212 are provided on the surface of the shelf rod 21, which is in direct contact with the tableware, significantly increasing the friction between the tableware and the supporting surface, effectively preventing the tableware from sliding or tipping over due to water flow impact and vibration during the operation of the dishwasher; at the same time, these spaced ribs form a natural barrier, which can achieve more precise positioning and isolation of tableware of different shapes, avoiding collisions between tableware, and improving the structural strength of the shelf rod 21 itself through a similar reinforcing rib effect.

[0060] like Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the bottom mesh 10 is divided into a first accommodating space 102 and a second accommodating space 103, and the first accommodating space 102 and the second accommodating space 103 are respectively provided with the movable row 20 and the bowl support frame 11.

[0061] The above embodiment further defines the bottom mesh 10 as a first accommodating space 102 and a second accommodating space 103, and independently configures the combination of movable rack 20 and dish support rack 11 in each space, realizing refined zoning management of the dish basket function; this allows users to configure the two areas independently and differently according to the type and quantity of dishes being washed. For example, one area can have the movable rack 20 erected to place the first dish, while the other area can have the movable rack 20 laid down to densely place the second dish, thereby greatly improving the flexibility and efficiency of the dish basket space planning as a whole, while meeting more diverse tableware placement needs.

[0062] It should be noted that in some embodiments, one of the first accommodating space 102 or the second accommodating space 103 is further provided with a third movable row 20B.

[0063] In addition to the features of the above embodiments, this embodiment further specifies that, in the supported state, the support height of at least one of the movable rows is different from the support height of the other movable rows.

[0064] The above embodiments further define the movable rows of different heights in the supported state, realizing a three-dimensional support structure with staggered heights inside the bowl basket, thereby better meeting the user's diverse needs for mixed placement of tableware.

[0065] A second aspect of this application provides a dishwasher including the aforementioned dish rack assembly.

[0066] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0067] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A bowl basket assembly, characterized in that, Includes a base net (10) and a movable row (20) disposed on the base net (10); The bottom net (10) is provided with a plurality of bowl support racks (11) spaced apart. The movable row (20) is rotatably connected to the bottom net (10) to have a supported state and an inverted state, and the movable row (20) is arranged adjacent to the bowl support racks (11). When the movable row (20) is in a supported state, the horizontal height of the movable row (20) is greater than the horizontal height of the bowl support frame (11), and the movable row (20) is located above the bowl support frame (11). At this time, the movable row (20) is used for placing the first bowl. When the movable row (20) is in an inverted state, the horizontal height of the movable row (20) is less than the horizontal height of the bowl support frame (11). At this time, the distance between two adjacent bowl support frames (11) is used for placing the second bowl.

2. The bowl basket assembly according to claim 1, characterized in that, The movable row (20) includes a storage rod (21), a connecting rod (22) and a movable component (23). One end of the connecting rod (22) is assembled and connected to the storage rod (21), and the other end is rotatably connected to the movable component (23) and the bottom net (10). The movable component (23) has a first limiting structure to ensure that the movable row (20) maintains a supported state.

3. The bowl basket assembly according to claim 2, characterized in that, The connecting rod (22) includes a first vertical rod (221) and a first horizontal rod (222). There are multiple first vertical rods (221), which are spaced apart. One end of each first vertical rod (221) is connected to the storage rod (21), and the other end is connected to the first horizontal rod (222). The projections of the multiple first vertical rods (221) on the bottom net (10) are staggered from the bowl support frame (11). When the movable row (20) is in an inverted state, the storage rod (21) and the first horizontal rod (222) are distributed on both sides of the bowl support frame (11).

4. The bowl basket assembly according to claim 3, characterized in that, The end of the first crossbar (222) away from the movable part (23) is bent to form a U-shaped buckle (2221), and the steel wire in the bottom net (10) is recessed to form a limiting groove (101). The U-shaped buckle (2221) cooperates with the limiting groove (101) to realize the rotational connection between the first crossbar (222) and the bottom net (10).

5. The bowl basket assembly according to claim 3, characterized in that, The connecting rod (22) further includes a second horizontal bar (223). The two ends of the first vertical bar (221) are connected to the first horizontal bar (222) and the second horizontal bar (223) respectively. The first vertical bar (221) protrudes at least partially from the second horizontal bar (223) to form a limiting part (2211). The storage rod (21) is provided with an assembly groove (201). The assembly groove (201) is provided with a second limiting structure (211) and a slot (202). The shape of the assembly groove (201) matches the shape of the second horizontal bar (223). The second limiting structure (211) is movably engaged with the second horizontal bar (223). The limiting part (2211) is inserted into the slot (202).

6. The bowl basket assembly according to claim 3, characterized in that, The movable part (23) is provided with a first buckle (231) and a second buckle (232) along the first direction and the second direction, respectively. The first buckle (231) and the second buckle (232) are respectively engaged with the steel wire of the bottom net (10). The movable part (23) is also provided with a third buckle (233) along the first direction. The third buckle (233) is the first limiting structure. One end of the first crossbar (222) is bent to form a snap-fit ​​part (2222). The snap-fit ​​part (2222) is engaged with the third buckle (233).

7. The bowl basket assembly according to claim 2, characterized in that, The surface of the storage rod (21) is provided with a plurality of spaced limiting ribs (212) along the length direction.

8. The bowl basket assembly according to any one of claims 1-7, characterized in that, The bottom net (10) is divided into a first accommodating space (102) and a second accommodating space (103), and the first accommodating space (102) and the second accommodating space (103) are respectively provided with the movable row (20) and the bowl support frame (11).

9. The bowl basket assembly according to claim 8, characterized in that, In the supported state, the support height of at least one of the movable rows (20) is different from the support height of the other movable rows (20).

10. A dishwasher, characterized in that, Includes the bowl basket assembly as described in any one of claims 1-9 above.