CN111603124B - A load-bearing structure for dish washer and dish washer thereof - Google Patents
A load-bearing structure for dish washer and dish washer thereof Download PDFInfo
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- CN111603124B CN111603124B CN202010379141.4A CN202010379141A CN111603124B CN 111603124 B CN111603124 B CN 111603124B CN 202010379141 A CN202010379141 A CN 202010379141A CN 111603124 B CN111603124 B CN 111603124B
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- flow guide
- dishwasher
- frame body
- bearing frame
- carrying
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
- A47L15/50—Racks ; Baskets
- A47L15/502—Cutlery baskets
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Abstract
The invention discloses a carrying structure for a dish-washing machine and the dish-washing machine, relates to the technical field of kitchen electrical equipment, and is used for solving the problem that the application of the dish-washing machine is limited due to the limited tableware carrying capacity of the existing dish-washing machine. The invention provides a bearing structure for a dishwasher, which can be arranged in a washing chamber of the dishwasher, wherein a bearing area for placing articles to be washed is formed on the bearing structure, an extension connecting structure is arranged on the bearing structure, and the extension connecting structure on one bearing structure can be connected with the other bearing structure.
Description
Technical Field
The invention relates to the technical field of kitchen electrical equipment, in particular to a carrying structure for a dish-washing machine and the dish-washing machine.
Background
The dish washer is used to automatically clean tableware such as dish, chopsticks, dish, knife and fork. With the improvement of living standard of people, the dish washing machine becomes one of kitchen equipment purchased by more and more families.
The existing dish washing machine comprises a box body and a plurality of shelves, a washing chamber is formed in the box body, the shelves are installed in the washing chamber of the box body, the quantity of tableware which can be borne by the shelves installed in the washing chamber is limited after the dish washing machine is manufactured, and when the quantity of the required tableware is increased, the dish washing machine cannot meet the cleaning requirement of the dish washing machine at the same time.
Disclosure of Invention
The invention provides a carrying structure for a dish-washing machine and the dish-washing machine, which are used for solving the problem that the application of the dish-washing machine is limited due to the limited tableware carrying capacity of the existing dish-washing machine.
In order to achieve the purpose, the invention adopts the following technical scheme:
in a first aspect, the present invention provides a carrying structure for a dishwasher, the carrying structure being capable of being installed in a washing chamber of the dishwasher, the carrying structure being formed with a carrying region for placing articles to be washed, the carrying structure being provided with extended connection structures, the extended connection structure on one carrying structure being capable of being connected with the other carrying structure.
Compared with the prior art, the carrying structure for the dish washing machine is used for placing articles to be washed, when the dish washing machine is applied, one part of the carrying structures can be firstly installed in a washing chamber of the dish washing machine, when fewer articles (such as chopsticks, spoons, bowls, dishes and the like) are washed, the articles to be washed are directly placed in the carrying areas of the carrying structures installed in the washing chamber, and the requirement that the articles to be washed are separately placed in the washing process can be met; when washing more article, can be connected required one or more other bearing structure that do not install in the box through the extension connection structure on it with the bearing structure who has installed in the box, realize increasing the quantity of bearing structure in the washing chamber, correspondingly, the area in bearing structure's total bearing area in the washing chamber also increases, thereby on the basis of the demand was placed in the partition when satisfying the washing, can wash more article, the tableware bearing capacity increases, its cleaning performance is better, bearing structure's scalability in the dish washer is higher.
In some possible embodiments of the present invention, the expansion connection structure includes a first expansion connection structure and a second expansion connection structure, the first expansion connection structure is a clamping member disposed on the bearing structure, the second expansion connection structure is a matching structure disposed on the bearing structure, and the clamping member of one bearing structure can be clamped in the matching structure of the other bearing structure.
In some possible embodiments of the present invention, the supporting structure is provided with an elastic expansion member, the fastening member is a fastening rod or a buckle disposed on the supporting structure, and the matching structure is a fastening slot formed on the elastic expansion member.
In some possible embodiments of the present invention, the fastening member is an elastic buckle disposed on the bearing structure, and the matching structure is a connecting fastening hole disposed on the bearing structure.
In some possible embodiments of the invention, the connection card hole includes: a connecting portion; the clamping part, the hole width of clamping part is less than the hole width of connecting portion, the pore wall of connecting portion with the pore wall of clamping part meets, elasticity buckle can penetrate in the connecting portion, and move extremely in the clamping part with connecting card hole chucking, connecting buckle is not fragile.
In some possible embodiments of the invention, the load bearing structure is a load bearing frame, the load bearing frame comprising: the bearing frame body is of a net structure; the water conservancy diversion structure, the water conservancy diversion structure sets up bear on the frame body, can improve bearing structure's drying rate.
In some possible embodiments of the invention, the flow guiding structure comprises: the first flow guide structure is arranged on the inner wall of the bearing frame body; and the second flow guide structure is arranged on the outer wall of the bearing frame body.
In some possible embodiments of the present invention, the first flow guiding structure is a first flow guiding rib, and the first flow guiding rib is disposed on a side wall in the bearing frame body.
In some possible embodiments of the invention, the first air guiding rib comprises: a first flow guide rib plate; the first flow guide rib plate and the second flow guide rib plate are vertically connected to the side wall in the bearing frame body, one side edge, far away from the bearing frame body, of the first flow guide rib plate is connected with one side edge, far away from the bearing frame body, of the second flow guide rib plate, and the first flow guide rib plate, the second flow guide rib plate and the side wall in the bearing frame body form an inverted-cone-shaped flow guide structure.
In some possible embodiments of the invention, the second flow guiding structure comprises: the flow guide net wires are obliquely arranged on the bottom wall of the bearing frame body, a plurality of flow guide net wires are arranged in net holes of the same bearing frame body, extend out of the bottom wall of the bearing frame body and intersect with one ends of other flow guide net wires in the same net hole; the flow collecting columns are respectively arranged at the intersection of the guide net wires in different meshes and are positioned on the outer sides of the guide net wires.
In some possible embodiments of the present invention, the carrier further includes a support rib plate, and the support rib plate is vertically disposed on the outer surface of the bottom of the carrier body; the second flow guide structure further comprises second flow guide ribs, and the second flow guide ribs are connected with the outer surface of the bottom of the bearing frame body and the surface of the support rib plate.
In some possible embodiments of the present invention, the bearing frame further includes a plurality of separation columns, the separation columns are respectively disposed at intersections of the plurality of flow guide wires in different mesh holes, and the separation columns are all located inside the flow guide wires.
In some possible embodiments of the present invention, the separation column includes a separation column and a plurality of baffles, the baffles are vertically disposed on an outer wall of the separation column in an up-down direction, and the plurality of baffles are distributed along a circumferential direction of the separation column.
In some possible embodiments of the present invention, the upper end surface of the baffle is an inclined surface, and a side edge of the upper end surface of the baffle, which is far away from the separation cylinder, is lower than a side edge of the upper end surface of the baffle, which is connected to the separation cylinder.
In some possible embodiments of the present invention, the separation column further includes a plurality of arc connection structures, a surface of each of the arc connection structures along the circumferential direction is composed of a first arc surface, a first plane, a second arc surface, and a second plane, which are sequentially connected to each other, the first arc surface has the same arc shape as the outer wall of the separation column, and is in fit connection with the arc surface of the outer wall of the separation column, the first plane is in fit connection with one of the flow deflectors, the second arc surface is opposite to the first arc surface, and the second plane is in fit connection with another adjacent one of the flow deflectors.
In some possible embodiments of the invention, the upper end of the separation cylinder is spherical.
In a second aspect, the embodiment of the invention also provides a dishwasher, which comprises a box body, wherein a cleaning chamber is formed in the box body; a plurality of the load bearing structures of the above embodiments, the load bearing structures being mountable within the washing chamber. The dishwasher of the embodiment of the invention can obtain the same technical effects as the carrying structure for the dishwasher of the embodiment, and the description is omitted.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic view of a carrying structure of a dishwasher according to an embodiment of the present invention with a handle in a first position;
FIG. 2 is a schematic view of a carrying structure of a dishwasher according to an embodiment of the present invention with a handle in a second position;
FIG. 3 is a top view of a load bearing structure in a dishwasher according to an embodiment of the present invention;
FIG. 4 is a side view of a load bearing structure in a dishwasher according to an embodiment of the present invention;
FIG. 5 is a front view of a load bearing structure in a dishwasher according to an embodiment of the present invention;
FIG. 6 is an enlarged view of portion A of FIG. 5;
FIG. 7 is a bottom view of a load bearing structure in a dishwasher according to an embodiment of the present invention;
FIG. 8 is a partial schematic view of a load bearing structure in a dishwasher in accordance with an embodiment of the present invention;
FIG. 9 is a schematic three-dimensional structure of a carrying structure in a dishwasher according to an embodiment of the present invention;
FIG. 10 is an enlarged view of portion B of FIG. 9;
FIG. 11 is a schematic view of the dish washer of the present invention with the chopsticks basket as the carrying structure and the chopsticks basket cover opened;
FIG. 12 is an enlarged view of section C of FIG. 11;
FIG. 13 is a second view of a portion of a carrying structure of a dishwasher in accordance with an embodiment of the present invention;
FIG. 14 is a third schematic view of a portion of a carrying structure of a dishwasher in accordance with an embodiment of the present invention;
FIG. 15 is a schematic view of a partition column of a carrying structure in a dishwasher according to an embodiment of the present invention;
FIG. 16 is a second schematic view of the separating column of the carrying structure of the dishwasher according to the embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; may be a mechanical connection; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
In the description of the present invention, "and/or" is only one kind of association relationship describing an association object, and means that there may be three kinds of relationships, for example, a and/or B, and may mean: a exists alone, A and B exist simultaneously, and B exists alone. In addition, the character "/" herein generally indicates that the former and latter related objects are in an "or" relationship.
The dish washer includes casing, controller, pipeline, water pump, control valve, motor, heater, water sprayer, etc. the space inside the casing forms one washing chamber with opening, and the washing chamber has various tableware racks installed inside and the water sprayer may be vane wheel or sprayer. The dish washer has the working principle that a motor drives a water pump, water containing detergent is guided into a cleaning chamber through a pipeline, the water is heated through a heater, and the hot water is used for forcibly cleaning tableware on a tableware rack through a water spraying device.
Referring to fig. 1 to 4, in a carrying structure 100 for a dishwasher according to an embodiment of the present invention, the carrying structure 100 can be installed in a washing chamber of the dishwasher, a carrying region for placing articles to be washed is formed on the carrying structure 100, an extended connection structure 1 is provided on the carrying structure 100, and the extended connection structure 1 on one carrying structure 100 can be connected with another carrying structure 100.
Compared with the prior art, the carrying structure 100 for the dishwasher is used for placing articles to be washed, when the dishwasher is applied, one part of the carrying structures 100 can be firstly installed in the washing chamber, when fewer articles (such as chopsticks, spoons, bowls, dishes and the like) are washed, the articles to be washed are directly placed in the carrying areas of the carrying structures 100 installed in the washing chamber, and the requirement that the articles to be washed are separately placed in the washing process can be met; when washing more article, can be connected required one or more other bearing structure 100 that do not install in the box with bearing structure 100 installed in the box through extension connection structure 1 on it, realize increasing the quantity of bearing structure 100 in the washing chamber, correspondingly, the area of bearing structure 100's total bearer area in the washing chamber also increases, thereby on the basis of the demand was placed in the separation when satisfying the washing, can wash more article, the tableware bearing capacity increases, its cleaning performance is better, bearing structure 100's scalability is high in the dishwasher.
It should be noted that the bearing structure 100 may be a chopsticks cage, a dish rack, a cup rack, a knife rack, a pot rack, etc.
In some embodiments, the expansion connection structure 1 is a hoop with a connection bolt formed on the bearing structure 100, and if the bearing structure 100 is a net structure, the hoop can be directly clamped on a net wire of the bearing structure 100 and then locked by the connection bolt, so as to realize connection of two bearing structures 100, and the structure is relatively simple.
In other embodiments, referring to fig. 5, the expansion connection structure 1 includes a first expansion connection structure and a second expansion connection structure, where the first expansion connection structure is a clamping member 11 disposed on the bearing structure 100, the second expansion connection structure is a matching structure 12 disposed on the bearing structure 100, the clamping member 11 of one bearing structure can be clamped in the matching structure 12 of the other bearing structure to achieve connection of the two bearing structures 100, and both connection and detachment operations are simple.
For the above scheme of connecting two bearing structures 100 in a clamping manner, there are various specific clamping structures, for example, the bearing structure 100 is provided with an elastic expansion piece 2, the clamping piece 11 is a clamping rod or a buckle 111 arranged on the bearing structure 100, and the matching structure 12 is a clamping groove 121 formed on the elastic expansion piece 2, as shown in fig. 1 to 5; for another example, the engaging member 11 is an elastic buckle disposed on the supporting structure 100, and the engaging structure 12 is a connecting hole 122 disposed on the supporting structure 100, both of which are relatively simple.
For the above-mentioned second clamping scheme, the elastic buckle can be directly clamped in the connecting clamp hole 122. Or, in some embodiments, referring to fig. 5 and 8, the card connecting hole 122 includes a connecting portion 1221 and a clamping portion 1222, wherein the width of the clamping portion 1222 is smaller than the width of the connecting portion 1221, the hole wall of the connecting portion 1221 is connected to the hole wall of the clamping portion 1222, the elastic buckle can penetrate into the connecting portion 1221 and move into the clamping portion 1222 to be clamped with the card connecting hole 122, the hole wall of the card connecting hole 122 of this solution can gradually apply a pressing force to the elastic buckle to deform the elastic buckle, the elastic buckle is easy to assemble and disassemble, the amount of deformation of the elastic buckle inserted into the connecting portion 1221 of the card connecting hole 122 or taken out of the connecting portion 1221 of the card connecting hole 12 is small, and the elastic buckle is not easily damaged.
Taking the bearing structure 100 in fig. 1 to 9 as an example of a chopstick container, the chopstick container includes a chopstick container main body 101a and a chopstick container cover 102a, wherein the upper end of the chopstick container main body 101a is formed with an opening, a plurality of separated bearing parts 1011a (7 bearing parts are shown in fig. 7) are formed in the chopstick container main body 101a, a tower-shaped decreasing structure 1012a is formed in a gap between outer walls of two adjacent bearing parts 1011a, that is, the upper end of the bearing part 1011a is larger than the lower end of the bearing part 1011a, which is beneficial for the separation requirement of placing small tableware in the chopstick container, and a plurality of connecting clip holes 122 are formed in the chopstick container main body 101 a. The chopstick cage cover 102a is installed at the opening of the chopstick cage main body 101a, the chopstick cage cover 102a is of a net structure to form a plurality of separation holes 1021a, and the separation holes 1021a can further separate the tableware in the chopstick cage. The chopstick cage cover 102a is provided with a plurality of cup holders 1022a, by which the cups are fixed and partitioned, so that the dishwasher can be used to wash the cup holders 1022 a. The cup holder 1022a includes a clamping portion 1023, and a concave-convex structure 1024 is formed on the clamping portion 1023, and the concave-convex structure 1024 can improve the clamping force on the cup to prevent the cup from being disengaged from the cup holder 1022 a. The top surface of the chopstick cage cover 102a is provided with a buckle 111, a clamping groove 121 and a handle 103a, the handle 103a is movably connected with the chopstick cage cover 102a along the vertical direction, the handle 103a moves to a first preset position in fig. 1, and the handle 103a moves to a second preset position in fig. 2. It should be noted that the structure of the buckle 111 and the catch 121 on the chopstick container in the above-mentioned figures cannot be matched with each other, that is, the structure of the buckle 111 on the chopstick container and the structure of the other bearing structure which is the same as the structure of the catch 121 in the figures cannot be matched with each other, and the structure of the catch 121 on the chopstick container and the structure of the other bearing structure which is the same as the structure of the buckle 111 in the figures cannot be matched with each other.
In order to further improve the diversion effect of the bearing structure 100, the bearing structure 100 includes a bearing frame body 3 and a diversion structure, wherein the bearing frame body 3 is a net structure, and the net structure can facilitate the entry and discharge of the washing water; the water conservancy diversion structure sets up on bearing frame body 3, and the washing water that the water conservancy diversion structure can further accelerate to bear on the frame body 3 is derived to improve and bear the drying rate of frame body 3.
In some embodiments, the diversion structure is disposed on the inner wall of the carrier body 3, and the diversion structure can promote the washing water on the inner wall of the carrier body 3 to be guided out; or the diversion structure is arranged on the outer wall of the bearing frame body 3, and the diversion structure can promote the washing water on the outer wall of the bearing frame body 3 to be led out; or above-mentioned water conservancy diversion structure includes first water conservancy diversion structure and second water conservancy diversion structure, and wherein, first water conservancy diversion structure sets up on bearing the inner wall of frame body 3, and second water conservancy diversion structure sets up on bearing the outer wall of frame body 3, and first water conservancy diversion structure can promote to bear the washing water on the inner wall of frame body 3 and derive, and second water conservancy diversion structure can promote to bear the washing water on the outer wall of frame body 3 and derive, and its water conservancy diversion is effectual.
It should be noted that the structure of the first flow guiding structure and the structure of the second flow guiding structure may be the same or different.
In some possible embodiments of the present invention, the first flow guiding structure is a first flow guiding rib 4, and the first flow guiding rib 4 is disposed on a side wall inside the bearing frame body 3, so that the structure is simple and the processing is convenient. In other possible embodiments of the present invention, the first flow guiding structure is a flow guiding groove, and the flow guiding groove is formed on a side wall inside the bearing frame body 3. It should be noted that the side wall of the carrier body 3 is provided with a plurality of first air guiding ribs 4.
The scheme of the first flow guiding ribs 4 is various, if the first flow guiding ribs 4 are 'I' -shaped ribs, the first flow guiding ribs 4 are vertically arranged on the side wall in the bearing frame body 3, and the structure is simple. For another example, the first flow guiding rib 4 includes a first flow guiding rib plate 41 and a second flow guiding rib plate 42, wherein the first flow guiding rib plate 41 and the second flow guiding rib plate 42 are both vertically connected to the side wall in the bearing frame body 3, a side edge of the first flow guiding rib plate 41, which is far away from the bearing frame body 3, is connected to a side edge of the second flow guiding rib plate 42, which is far away from the bearing frame body 3, and the first flow guiding rib plate 41, the second flow guiding rib plate 42 and the side wall in the bearing frame body 3 enclose a flow guiding structure in an inverted cone shape (an inverted triangular cone shape as shown in fig. 12), as shown in fig. 11 and 12, the first flow guiding rib plate 41 and the second flow guiding rib plate 42 are both obliquely arranged, so that the flow guiding effect of the first flow guiding rib is good.
Referring to fig. 9, 10 and 13, the second flow guiding structure includes a plurality of flow guiding mesh wires 5 and a plurality of flow collecting pillars 6, wherein the flow guiding mesh wires 5 are obliquely disposed on the bottom wall of the bearing frame body 3, a plurality of flow guiding mesh wires 5 are disposed in the same mesh 10 of the bearing frame body 3, and the flow guiding mesh wires 5 extend out of the bottom wall of the bearing frame body 3 and intersect with one ends of the other flow guiding mesh wires 5 in the same mesh 10; the plurality of flow collecting columns 6 are respectively arranged at the intersection of the plurality of flow guide net wires 5 in different net holes 10, and the plurality of flow collecting columns 6 are all positioned at the outer sides of the flow guide net wires 5. Of course, the second flow guiding structure may be a first flow guiding rib 4 structure disposed on the outer wall of the bearing frame body 3 and the same as the first flow guiding structure. The inner surface and the outer surface of the flow guide net wire 5 are conical surfaces.
Because the outer surface of the bottom of some supporting structures of the dish washing machine is provided with the supporting rib plates 7, the supporting rib plates 7 are vertically arranged. The second diversion structure further comprises a second diversion rib 8, the second diversion rib 8 is connected with the outer surface of the bottom of the bearing frame body 3 and the surface of the support rib plate 7, as shown in fig. 9 and 10, the second diversion rib 8 can lead out condensed water flowing to the outer surface of the bottom of the bearing frame body 3, and the drying speed of the bottom of the bearing frame body 3 can be further improved.
For the embodiment that the carrying structure 100 is the chopstick cage, since the tableware, such as chopsticks, forks and spoons, which are usually placed in the chopstick cage, are small in size and are directly and vertically placed in the chopstick cage, the chopsticks, the forks and the spoons are easily gathered at the bottom of the chopstick cage, and thus the drying speed of the bottom of the tableware in the chopstick cage is slow. Therefore, referring to fig. 14, the carrier further includes a plurality of partition columns 9, the plurality of partition columns 9 are respectively disposed at the intersections of the plurality of guide wires 5 in different meshes 10, and the plurality of partition columns 9 are all located inside the guide wires 5, and the partition columns 9 can partition the dishes at the bottom of the chopstick cage, thereby increasing the drying speed of the bottom of the dishes.
The structure of the separation column 9 has various forms, for example, the separation column 9 is a cylinder structure, and the structure is simple; or the separation column 9 comprises a separation column 91 and a plurality of guide plates 92, the guide plates 92 are vertically arranged on the outer wall of the separation column 91 along the up-down direction, the guide plates 92 are distributed along the circumferential direction of the separation column 91, and the guide plates 92 can promote the washing water on the separation column 9 to fall down, so that the washing water on the tableware is prevented from being accumulated on the separation column 9; and the guide plate on the guide column can further improve the separation capacity of the separation column 9.
It should be noted that in fig. 15, the baffle 92 extends in the vertical direction, and the axis of the separation column 9 coincides with the axis of the collecting column 6 in the same mesh 10 of the separation column 91.
In order to further improve the flow guiding effect of the flow guiding plate 92, referring to fig. 15 and 16, the upper end surface of the flow guiding plate 92 is an inclined surface, and the edge of the upper end surface of the flow guiding plate 92 far away from the separation column 91 is lower than the edge of the upper end surface of the flow guiding plate 92 connected to the separation column 91.
Since the connection between the diversion plate 92 and the separation column 91 forms a sharp corner region where the washing water is easy to accumulate under the action of the surface tension of the washing water, so that the drying speed of the region is slow, in some embodiments of the present invention, the separation column 9 further includes a plurality of circular arc connection structures 93, the surface of the circular arc connection structures 93 along the circumferential direction is composed of a first circular arc surface, a first plane, a second circular arc surface and a second plane which are sequentially connected, the first circular arc surface is the same as the arc surface of the outer wall of the separation column 91, the first circular arc surface is in fit connection with the arc surface of the outer wall of the separation column 91, the first plane is in fit connection with one diversion plate 92, the second circular arc surface is opposite to the first circular arc surface, the second plane is in fit connection with another diversion plate 92, and no sharp corner region is formed between the separation column 91 and the diversion plate 92, so that the separation cylinder 91 is not easy to accumulate water and is easy to dry.
In addition, in order to prevent the washing water from being accumulated on the upper end surface of the partition cylinder 91, in some embodiments, the upper end of the partition cylinder 91 is formed in a spherical shape, as shown in fig. 15 and 16.
The embodiment of the invention also comprises a dishwasher, which comprises a box body and a plurality of bearing structures 100, wherein a cleaning chamber is formed in the box body, and one or more bearing structures 100 in the scheme can be installed in the cleaning chamber. The carrying structure 100 of the dishwasher of the present embodiment is the same as the carrying structure 100 of the dishwasher of the previous embodiment, and both can obtain the same technical effect, and the description thereof is omitted.
In the description herein, particular features, structures, materials, or characteristics may be combined in any suitable manner in any one or more embodiments or examples.
The above description is only for the specific embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention are included in the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the appended claims.
Claims (15)
1. A carrying structure for a dishwasher, the carrying structure being mountable in a washing chamber of the dishwasher, characterized in that a carrying area for placing articles to be washed is formed on the carrying structure, an extended connection structure is provided on the carrying structure, the extended connection structure on one carrying structure being connectable with another carrying structure;
the bearing structure is a bearing frame, the bearing frame includes:
a carrier body;
the flow guide structure is arranged on the bearing frame body;
the flow guide structure comprises a first flow guide structure, and the first flow guide structure is arranged on the inner wall of the bearing frame body;
the first flow guide structure is a first flow guide rib which is arranged on the side wall in the bearing frame body;
the first flow guide rib comprises:
a first flow guide rib plate;
the first flow guide rib plate and the second flow guide rib plate are vertically connected to the side wall in the bearing frame body, one side edge, far away from the bearing frame body, of the first flow guide rib plate is connected with one side edge, far away from the bearing frame body, of the second flow guide rib plate, and the first flow guide rib plate, the second flow guide rib plate and the side wall in the bearing frame body form an inverted-cone-shaped flow guide structure.
2. The carrying structure for a dishwasher of claim 1 wherein the extension connection structure comprises a first extension connection structure and a second extension connection structure, the first extension connection structure being a snap-in member provided on the carrying structure, the second extension connection structure being a mating structure provided on the carrying structure, the snap-in member of one carrying structure being capable of snapping into the mating structure of the other carrying structure.
3. The carrying structure for a dishwasher according to claim 2, wherein the carrying structure is provided with an elastic extension member, the snapping member is a snapping bar or a snap provided on the carrying structure, and the mating structure is a snapping groove formed on the elastic extension member.
4. The carrying structure for a dishwasher according to claim 2, wherein the catch member is an elastic catch provided on the carrying structure, and the engagement structure is a connection catch hole provided on the carrying structure.
5. The carrying structure for a dishwasher of claim 4 wherein the connection card hole comprises:
a connecting portion;
the clamping part, the hole width of clamping part is less than the hole width of connecting portion, the pore wall of connecting portion with the pore wall of clamping part meets, elasticity buckle can penetrate in the connecting portion and remove to in the clamping part with connect the card hole chucking.
6. The load bearing structure for a dishwasher according to claim 1,
the bearing frame body is of a net structure.
7. The carrying structure for a dishwasher of claim 6, wherein the flow guide structure further comprises:
and the second flow guide structure is arranged on the outer wall of the bearing frame body.
8. The load carrying structure for a dishwasher of claim 7 wherein said second flow directing structure comprises:
the flow guide net wires are obliquely arranged on the bottom wall of the bearing frame body, a plurality of flow guide net wires are arranged in net holes of the same bearing frame body, extend out of the bottom wall of the bearing frame body and intersect with one ends of other flow guide net wires in the same net hole;
the flow collecting columns are respectively arranged at the intersection of the guide net wires in different meshes and are positioned on the outer sides of the guide net wires.
9. The carrying structure for a dishwasher of claim 8 wherein the carrier further comprises:
the supporting rib plates are vertically arranged on the outer surface of the bottom of the bearing frame body;
the second flow guide structure further comprises second flow guide ribs, and the second flow guide ribs are connected with the outer surface of the bottom of the bearing frame body and the surface of the support rib plate.
10. The carrying structure for a dishwasher of claim 6 wherein the carrier further comprises:
the separation columns are respectively arranged at the intersection of the diversion net wires in different meshes and are positioned on the inner sides of the diversion net wires.
11. The load bearing structure for a dishwasher of claim 10 wherein said separator bar comprises:
a separation cylinder;
the guide plates are vertically arranged on the outer wall of the separation column body in the vertical direction, and the guide plates are distributed in the circumferential direction of the separation column body.
12. The carrying structure for a dishwasher according to claim 11, wherein the upper end surface of the deflector is an inclined surface, and a side edge of the upper end surface of the deflector, which is away from the partition cylinder, is lower than a side edge of the upper end surface of the deflector, which is connected to the partition cylinder.
13. The load bearing structure for a dishwasher of claim 11 wherein said separator bar further comprises:
a plurality of circular arc connection structure, circular arc connection structure is constituteed by first arc surface, first plane, second arc surface and the second plane that connects gradually along the surface of circumferencial direction, first arc surface with the arc surface shape of the outer wall of separation cylinder is the same, just first arc surface with the cambered surface laminating of the outer wall of separation cylinder is connected, first plane and one the guide plate laminating is connected, the second arc surface with first arc surface is relative, the second plane is with adjacent another the guide plate laminating is connected.
14. The load carrying structure for a dishwasher of claim 11 wherein the upper end of the partition column is spherical.
15. A dishwasher, comprising:
the cleaning device comprises a box body, a cleaning chamber and a cleaning device, wherein the cleaning chamber is formed in the box body;
a plurality of load bearing structures as claimed in any one of claims 1 to 14, the load bearing structures being mountable within the washing chamber.
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