Refrigerator
By designing connectors in the refrigerator to electrically connect the main and secondary components, the installation problems caused by isolation of different temperature areas of the refrigerator are solved, and the installation effect is achieved with lower cost and higher reliability.
Patent Information
- Application Number
- CN202421971095.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-14
AI Technical Summary
Due to the isolation of different temperature zones of the refrigerator, the main and secondary components of the split ion generator are inconvenient to install, resulting in high cost and installation difficulty.
A refrigerator is designed, and a connector is used to electrically connect the main component and the secondary component. The connector includes the first and second connectors. By pre-built high-voltage wire harness in the box, the secondary component can be directly installed in each temperature zone to avoid passing through the foam layer or inner liner.
The installation process of main and secondary components is simplified, costs are reduced, installation convenience and reliability are improved, while reducing arc generation and short circuit risks.
Smart Images

Figure CN222912075U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the technical field of household appliances, and in particular, to a refrigerator. Background Art
[0002] A refrigerator is a device that keeps food or other items at a constant low temperature. The ion generator in the refrigerator can generate ions, and the ions circulate with the wind to achieve the effect of sterilizing and removing odors in the refrigerator.
[0003] For existing multi-temperature zone refrigerators, it is difficult for the ion generator to achieve efficient sterilization and odor removal in one temperature zone for another temperature zone. Using multiple ion generators in different temperature zones respectively has a high cost. Therefore, the ion generator in the existing refrigerator is designed as a split type, including a main component and multiple sub-components. The main component is arranged in one of the temperature zones, and the main component and the sub-components are connected by a high-voltage wire harness. The multiple sub-components are respectively arranged in different temperature zones.
[0004] However, due to the isolation of different temperature zones in the refrigerator, it is not convenient to install the main component and the sub-components of the split ion generator. Utility Model Content
[0005] The embodiments of the present application provide a refrigerator, which can solve the technical problem that it is not convenient to install the main component and the sub-components of the split ion generator due to the isolation of different temperature zones in the refrigerator.
[0006] In a first aspect, the embodiments of the present application provide a refrigerator, including:
[0007] A box body provided with a plurality of compartments separated from each other; the box body includes a plurality of air ducts for supplying air to the plurality of compartments;
[0008] An ion generator, which includes a main component and a plurality of sub-components. The main component is arranged on the box body, the main component is electrically connected to the plurality of sub-components, and the sub-components are arranged in the air ducts;
[0009] A plurality of connectors for connecting the main component and the sub-components;
[0010] The connector includes:
[0011] A first connecting member, including a first main body and a first conductive part arranged on the first main body; the first conductive part is electrically connected to one of the main component and the sub-components through a first high-voltage wire harness;
[0012] A second connecting member, including a second main body and a second conductive part arranged on the second main body; the second conductive part is electrically connected to the other of the main component and the sub-components through a second high-voltage wire harness;
[0013] The connector is configured such that when the first main body and the second main body are fixedly locked, the first conductive part and the second conductive part are electrically connected.
[0014] With such a setting, by installing one or more connectors on the high-voltage wire harness between the main component and the secondary component, a part of the high-voltage wire harness connected to the connector can be pre-buried in the box body. The connecting member of the connector on the high-voltage wire harness connected to the secondary component is connected to the connecting member of the connector on the pre-buried high-voltage wire harness, so that multiple secondary components can be directly installed in multiple temperature zones without passing through the foam layer or the inner liner, which facilitates the installation of the main component and the secondary component.
[0015] In some embodiments of the present application, the first conductive part includes a first part and a second part, and the second conductive part includes a first part and a second part;
[0016] When the first main body is plugged into the second main body, the first part of the first conductive part and the first part of the second conductive part approach each other, and the second part of the first conductive part and the second part of the second conductive part approach each other;
[0017] The distance between the first part and the second part of the first conductive part is greater than or equal to 1.5 millimeters and less than or equal to 6.5 millimeters; and / or, the distance between the first part and the second part of the second conductive part is greater than or equal to 1.5 millimeters and less than or equal to 6.5 millimeters.
[0018] With such a setting, the generation of electric arcs can be effectively reduced, the risks of short circuit and electric shock can be lowered, and the safety of the connector can be improved; it helps to enhance electrical isolation, prevent accidental contact between different conductive parts, thereby improving the reliability and stability of the electrical connection; it can reduce electromagnetic interference and radio frequency interference, thereby improving the signal integrity and transmission quality of the electrical connection.
[0019] In some embodiments of the present application, the connector further includes a clamping member, and the first main body and the second main body are fixed by the clamping member;
[0020] When the first main body is plugged into the second main body, the first conductive part and the second conductive part approach each other, and the first main body and the second main body jointly form a mounting groove;
[0021] The first connecting member forms a first part of the mounting groove, the second connecting member forms a second part of the mounting groove, and the first part and the second part of the mounting groove communicate with each other to form the mounting groove;
[0022] The clamping member can move relative to the mounting groove; when the clamping member is in the first position relative to the mounting groove, the clamping member is relatively fixed to the mounting groove; when the clamping member is in the second position relative to the mounting groove, the first main body and the second main body are fixedly locked by the clamping member.
[0023] With such a setting, during the fault test phase, the clamping member is in the first position, and the first connecting member and the second connecting member are pre-connected but not locked, facilitating the disassembly of the first connecting member and the second connecting member when a fault occurs; after the fault test passes, the clamping member is in the second position, and the first connecting member and the second connecting member are fixedly locked by the clamping member. Locking the first connecting member and the second connecting member after the fault test passes improves the process safety and manufacturability, reduces the process of repeatedly disassembling the connector, improves the connection efficiency of the wire harness, and facilitates the connection of two wire harnesses.
[0024] In some embodiments of the present application, when the first main body is inserted into the second main body, the installation groove extends along the first direction, and the clamping member moves along the first direction in the installation groove;
[0025] The first connecting member is provided with an extension hole that extends along the first direction, and the extension hole communicates with the first part of the installation groove;
[0026] The second connecting member is provided with a first fixing hole and a second fixing hole, and the first fixing hole and the second fixing hole communicate with the second part of the installation groove;
[0027] The clamping member includes a first clamping block and a second clamping block;
[0028] When the clamping member is in the first position relative to the installation groove, the first clamping block is located at the first end of the extension hole, and the second clamping block is located in the first fixing hole;
[0029] When the clamping member is in the second position relative to the installation groove, the first clamping block is located at the second end of the extension hole, and the second clamping block is located in the second fixing hole.
[0030] With such a setting, it is convenient to perform the fault test of the two connecting members, reduces the process of repeatedly disassembling the connector, simplifies the operation process, improves the connection reliability, improves the connection efficiency of the wire harness, facilitates the connection of two wire harnesses, and is beneficial to the miniaturization of the connector.
[0031] In some embodiments of the present application, in the first direction, the distance between the first fixing hole and the first connecting member is less than the distance between the second fixing hole and the first connecting member;
[0032] The first fixing hole is provided with an opening; when the clamping member is in the first position relative to the installation groove, the second clamping block abuts against the part of the inner wall of the first fixing hole away from the opening.
[0033] With such a setting, the clamping member can be relatively fixed to the installation groove.
[0034] In some embodiments of the present application, the second clamping block has an inclined surface and an abutting surface that are away from each other in the first direction, the abutting surface faces the first clamping block, and the inclined surface faces away from the first clamping block;
[0035] When the clamping member is in the first position relative to the mounting groove, the second clamping block abuts against a portion of the inner wall of the first fixing hole away from the first connecting member through the inclined surface;
[0036] When the clamping member is in the second position relative to the mounting slot, the second clamping block abuts against a portion of the inner wall of the second fixing hole that faces the first connecting member through the abutting surface.
[0037] With such arrangement, during the fault testing stage, the clamping member is in the first position, and the first connecting member and the second connecting member are pre-connected but not locked, so that the first connecting member and the second connecting member can be easily disassembled when a fault occurs; after the fault test is passed, the first connecting member and the second connecting member are clamped and not easily separated, so the connection between the first connecting member and the second connecting member is more convenient.
[0038] In some embodiments of the present application, the clamping member includes an elastic body;
[0039] The first clamping block and the second clamping block are arranged on the elastic body; in a direction perpendicular to the first direction, the first clamping block can move in a direction close to or away from the extension hole, and the second clamping block can move in a direction close to or away from the first fixing hole and the second fixing hole;
[0040] When the clamping member is located between the first position and the second position relative to the mounting slot, the second clamping block is located in the mounting slot.
[0041] Such arrangement facilitates the installation of the clamping member in the installation slot.
[0042] In some embodiments of the present application, the extension hole is provided with a mounting opening; in the width direction of the extension hole, the width of the mounting opening is smaller than the width of the extension hole;
[0043] The first clamping block is provided with a pressing portion; when the first clamping block is located in the installation slot and the clamping member is located at a third position relative to the installation slot, the pressing portion can move in the installation opening along the first direction, and the third position is located on the side of the first position away from the second position.
[0044] Such arrangement facilitates the installation of the clamping member in the installation slot.
[0045] In some embodiments of the present application, when the first body is plugged into the second body, the first portion of the first conductive portion and the second portion of the first conductive portion are arranged along the second direction; in the second direction, the mounting groove is located between the first portion of the first conductive portion and the second portion of the first conductive portion;
[0046] When the first body is plugged into the second body, the first part of the second conductive part and the second part of the second conductive part are arranged along the second direction; in the second direction, the mounting groove is located between the first part of the second conductive part and the second part of the second conductive part.
[0047] With such a setting, it is convenient to form a gap between the first part and the second part of the first conductive part, and it is also convenient to form a gap between the first part and the second part of the second conductive part.
[0048] In a second aspect, an embodiment of the present application provides a refrigerator, including a box body, an ion generator, and a plurality of connectors; the box body is provided with a plurality of compartments separated from each other; the box body includes a plurality of air ducts for supplying air to the plurality of compartments;
[0049] The ion generator includes a main component and a plurality of sub-components. The main component is arranged in the box body, and the main component is electrically connected to the plurality of sub-components through the plurality of connectors. The sub-components are arranged in the air ducts;
[0050] The connector includes a first connecting piece and a second connecting piece;
[0051] The first connecting piece includes a first main body and a first conductive part arranged on the first main body; the second connecting piece includes a second main body and a second conductive part arranged on the second main body;
[0052] When the main component is electrically connected to the sub-component through the connector, the first main body and the second main body are fixed, and the main component is electrically connected to the sub-component through the electrically connected first conductive part and second conductive part.
[0053] With such a setting, by installing one or more connectors on the high-voltage wire harness between the main component and the sub-component, a part of the high-voltage wire harness connected to the connector can be pre-buried in the box body in advance. The connecting piece of the connector on the high-voltage wire harness connected to the sub-component is connected to the connecting piece of the connector on the pre-buried high-voltage wire harness, so that a plurality of sub-components can be directly installed in a plurality of temperature zones without passing through the foam layer or the inner liner, which is convenient for the installation of the main component and the sub-component. Description of the Drawings
[0054] In order to more clearly illustrate the embodiments of the present application or the implementation manners in the related art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the related art. Obviously, the following drawings are some embodiments of the present application. For those of ordinary skill in the art, other drawings can also be obtained according to these drawings.
[0055] Figure 1 It is a schematic diagram of the working state of the connector of the refrigerator according to the embodiment of the present application;
[0056] Figure 2 It is a first structural schematic diagram of the connector of the refrigerator according to the embodiment of the present application;
[0057] Figure 3 It is a second structural schematic diagram of the connector of the refrigerator according to the embodiment of the present application;
[0058] Figure 4Schematic diagram of the first connecting member of the refrigerator according to the embodiment of the present application;
[0059] Figure 5 Schematic diagram of the second connecting member of the refrigerator according to the embodiment of the present application;
[0060] Figure 6 Another schematic diagram of the first connecting member of the refrigerator according to the embodiment of the present application;
[0061] Figure 7 Another schematic diagram of the first connecting member of the refrigerator according to the embodiment of the present application;
[0062] Figure 8 Another schematic diagram of the second connecting member of the refrigerator according to the embodiment of the present application;
[0063] Figure 9 Another schematic diagram of the second connecting member of the refrigerator according to the embodiment of the present application;
[0064] Figure 10 Schematic diagram of the snap - on member of the refrigerator according to the embodiment of the present application;
[0065] Figure 11 First cross - sectional schematic diagram of the connector of the refrigerator according to the embodiment of the present application;
[0066] Figure 12 Second cross - sectional schematic diagram of the connector of the refrigerator according to the embodiment of the present application;
[0067] Figure 13 Third cross - sectional schematic diagram of the connector of the refrigerator according to the embodiment of the present application.
[0068] Explanation of reference numerals:
[0069] 100 - Connector;
[0070] 110 - First connecting member;
[0071] 111 - First main body; 112 - First conductive part; 113 - First part of the installation groove;
[0072] 114 - Extension hole; 1141 - Installation opening;
[0073] 120 - Second connecting member;
[0074] 121 - Second main body; 122 - Second conductive part; 123 - Second part of the installation groove; 124 - First fixing hole; 125 - Second fixing hole;
[0075] 130 - Snap - on member;
[0076] 131 - First clamping block; 1311 - Pressing part;
[0077] 132 - Second clamping block; 1321 - Inclined surface; 1322 - Contact surface;
[0078] 133 - Elastic main body;
[0079] 200 - Second high - voltage wire harness;
[0080] 300 - Box body;
[0081] 301 - Refrigerating chamber; 302 - Freezing chamber;
[0082] 401 - Main component; 402 - Sub - component. Detailed implementation manner
[0083] As described in the background art, in the related art, a refrigerator usually includes multiple temperature zones. Due to the physical isolation between different temperature zones, it is difficult for an ion generator to achieve efficient sterilization and odor removal in one temperature zone for another temperature zone. If an ion generator is installed in each temperature zone, multiple ion generators are required, which will increase the cost of the refrigerator. Therefore, the ion generator in the existing refrigerator is designed as a split - type structure. The split - type ion generator includes a main component and multiple sub - components. The main component and the sub - components are connected by a high - voltage wire harness. The main component is installed in one of the temperature zones, and the multiple sub - components are respectively arranged in different temperature zones. However, due to the isolation of different temperature zones in the refrigerator, after connecting the main component and the sub - components by a high - voltage wire harness, it is not easy for the multiple sub - components to pass through the foam layer or the inner liner and enter other temperature zones, making it inconvenient to install the main component and the sub - components.
[0084] In view of this, the refrigerator according to the embodiment of the present application includes a box body, an ion generator, and a plurality of connectors. The box body is provided with a plurality of chambers separated from each other, and the box body includes a plurality of air ducts for supplying air to the plurality of chambers; the ion generator includes a main component and a plurality of sub-components. The main component is disposed in the box body, the main component is electrically connected to the plurality of sub-components, and the sub-components are disposed in the air ducts; the connectors are used to connect the main component and the sub-components; the connectors include a first connecting member and a second connecting member. The first connecting member includes a first main body and a first conductive portion disposed on the first main body; the first conductive portion is electrically connected to one of the main component and the sub-components through a first high-voltage wire harness; the second connecting member includes a second main body and a second conductive portion disposed on the second main body; the second conductive portion is electrically connected to the other of the main component and the sub-components through a second high-voltage wire harness; the connector is configured such that when the first main body and the second main body are fixedly locked, the first conductive portion and the second conductive portion are electrically connected. By installing one or more connectors on the high-voltage wire harness between the main component and the sub-components, a part of the high-voltage wire harness connected to the connector can be pre-buried in the box body. The connecting member of the connector on the high-voltage wire harness connected to the sub-component is connected to the connecting member of the connector on the pre-buried high-voltage wire harness, so that the plurality of sub-components can be directly installed in a plurality of temperature zones without passing through the foam layer or the inner liner, which facilitates the installation of the main component and the sub-components.
[0085] To make the objectives, embodiments, and advantages of the present application clearer, the exemplary embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the exemplary embodiments of the present application. Apparently, the described exemplary embodiments are only a part of the embodiments of the present application, rather than all of the embodiments.
[0086] It should be noted that the brief description of the terms in the present application is only for the convenience of understanding the embodiments described below, rather than intending to limit the embodiments of the present application. Unless otherwise specified, these terms should be understood in their ordinary and general meanings.
[0087] In addition, the terms "include" and "have" and any variations thereof are intended to cover but not exclude inclusion. For example, a product or device including a series of components does not necessarily have to be limited to those components clearly listed, but may include other components not clearly listed or inherent to these products or devices.
[0088] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0089] The terms "first", "second", etc. are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first", "second" may explicitly or implicitly include one or more of such features. In the description of this application, unless otherwise specified, "a plurality" means two or more.
[0090] In the description of this application, it should be noted that, unless otherwise clearly specified and defined, the terms "installed", "connected", "coupled" shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0091] Next, the technical solutions in the embodiments of this application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only some of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of this application.
[0092] Please refer to Figure 1 , an embodiment of this application provides a refrigerator, including: a cabinet 300. The cabinet 300 is provided with a plurality of compartments separated from each other.
[0093] In some embodiments of this application, a storage compartment is provided inside the cabinet 300. The number of storage compartments is at least two. The storage compartments may include a refrigerating compartment 301 and a freezing compartment 302, or the storage compartments may also include a refrigerating compartment 301, a freezing compartment 302 and a variable temperature compartment. Different storage compartments form different temperature zones, and different temperature zones form different circulation systems.
[0094] In some embodiments of this application, the cabinet 300 includes a plurality of air ducts for supplying air to the plurality of compartments.
[0095] In some embodiments of this application, the refrigerator further includes an ion generator. The ion generator can generate ions to circulate with the air, achieving the effect of sterilization and odor removal inside the refrigerator.
[0096] It should be noted that, in a refrigerator with multiple cycles and multiple temperature zones, due to the insufficient circulation in different circulation temperature zones, it is difficult for ions to achieve efficient sterilization and odor removal in one temperature zone for another temperature zone. If multiple ion generators are repeatedly used in different temperature zones or different circulation systems, the cost will increase.
[0097] In some embodiments of the present application, the ion generator may be a split structure. The ion generator includes a main component 401 and a plurality of sub-components 402. The main component 401 is disposed in the cabinet 300, and the main component 401 is electrically connected to the plurality of sub-components 402. The sub-components 402 are disposed in the air duct.
[0098] In some embodiments of the present application, the main component 401 may be located in the refrigerating chamber 301, and the plurality of sub-components 402 may be respectively located in the refrigerating chamber 301, the freezing chamber 302 and the variable temperature chamber. The sub-component 402 in the refrigerating chamber 301 may be integrated with the main component 401. The plurality of sub-components 402 take effect in different temperature zones of the refrigerator, improving the bacteria removal and odor purification effect of the refrigerator.
[0099] It should be noted that the limitations and difficulties of using the same split ion generator in different temperature zones are as follows: how the plurality of sub-components 402 of the ion generator penetrate through the foaming layer of the inner liner to enter other temperature zones to take effect, and how to achieve universality and reliability.
[0100] In some embodiments of the present application, the refrigerator further includes a plurality of connectors 100 for connecting the main component 401 and the sub-components 402.
[0101] In some embodiments of the present application, the connector 100 includes a first connecting member 110 and a second connecting member 120, and the first connecting member 110 and the second connecting member 120 are detachably connected.
[0102] The main component 401, the sub-components 402, the first connecting member 110 and the second connecting member 120 are respectively disposed at preset positions in the refrigerator, and the electrical conduction between the main component 401 and the sub-components 402 is achieved by connecting the first connecting member 110 and the second connecting member 120.
[0103] It should be noted that in addition to being applied to the connection between the main component 401 and the sub-components 402 of the ion generator, the connector 100 can also be applied to other high-voltage lines that require electrical conduction, which is not specifically limited here.
[0104] Please refer to Figures 2 - 3 , in some embodiments of the present application, the connector 100 includes a first connecting member 110, and the first connecting member 110 includes a first main body 111. The first main body 111 may be disposed on the outer side of the first connecting member 110.
[0105] In some embodiments of the present application, the first connecting member 110 includes a first conductive portion 112 disposed on the first main body 111. The first conductive portion 112 is electrically connected to one of the main component 401 and the sub-components 402 through a first high-voltage wire harness. The first conductive portion 112 may be located inside the first main body 111, and the first main body 111 can play a role in protecting the first conductive portion 112.
[0106] In some embodiments of the present application, the first body 111 may be a plastic part, which can insulate the first conductive part 112 from the outside.
[0107] Please refer to Figures 2 - 4 , in some embodiments of the present application, the connector 100 includes a second connecting member 120. The second connecting member 120 includes a second body 121 and a second conductive part 122 disposed on the second body 121. The second conductive part 122 is electrically connected to the other of the main component 401 and the sub-component 402 through a second high-voltage wire harness. The second conductive part 122 is used to contact the first conductive part 112 of the first connecting member 110, thereby achieving electrical connection.
[0108] In some embodiments of the present application, the second body 121 is disposed on the outside of the second connecting member 120, and the second conductive part 122 may be located inside the second body 121. The second body 121 serves to protect the second conductive part 122.
[0109] In some embodiments of the present application, the second body 121 may be a plastic part, which can insulate the first conductive part 112 from the outside.
[0110] In some embodiments of the present application, one end of the first conductive part 112 facing away from the second connecting member 120 is connected to a first high-voltage wire harness, and one end of the second conductive part 122 facing away from the first connecting member 110 is connected to a second high-voltage wire harness 200. The electrical conduction between the first high-voltage wire harness and the second high-voltage wire harness 200 is achieved through the electrical connection between the first conductive part 112 and the second conductive part 122.
[0111] In some embodiments of the present application, the connector 100 is configured such that when the first body 111 and the second body 121 are fixedly locked, the first conductive part 112 and the second conductive part 122 are electrically connected.
[0112] It should be noted that when the first body 111 and the second body 121 are fixedly locked, there is no relative movement or rotation between the first body 111 and the second body 121, and it is not easy for the first body 111 and the second body 121 to be separated.
[0113] Before installing the main component 401 and the sub-component 402, the first connecting member 110 and the second connecting member 120 of the connector 100 are not connected. Some high-voltage wire harnesses connected to the connector 100 can be pre-buried in the box body. The connecting members of the connector 100 on the high-voltage wire harness connected to the sub-component 402 are connected to the connecting members of the connector 100 on the pre-buried high-voltage wire harness, so that multiple sub-components 402 can be directly installed in multiple temperature zones respectively, without passing through the foam layer or the inner liner, which is convenient for the installation of the main component 401 and the sub-component 402.
[0114] In some embodiments of the present application, one or more connectors 100 may also be provided on the first high-voltage wire harness, and one or more connectors 100 may also be provided on the second high-voltage wire harness to facilitate the pre-burial of the high-voltage wire harness.
[0115] Please refer to Figure 4 , in some embodiments of the present application, the first conductive portion 112 includes a first part and a second part. Both the first part and the second part of the first conductive portion 112 can conduct electricity. The first part and the second part of the first conductive portion 112 are respectively connected to two high-voltage wire harnesses.
[0116] Please refer to Figure 5 , in some embodiments of the present application, the second conductive portion 122 includes a first part and a second part. Both the first part and the second part of the second conductive portion 122 can conduct electricity. The first part and the second part of the second conductive portion 122 are respectively connected to two high-voltage wire harnesses.
[0117] In some embodiments of the present application, after the first conductive portion 112 and the second conductive portion 122 are electrically connected, the two high-voltage wire harnesses connected to the first conductive portion 112 and the two high-voltage wire harnesses connected to the second conductive portion 122 are electrically connected.
[0118] In some embodiments of the present application, when the first main body 111 is inserted into the second main body 121, the first part of the first conductive portion 112 and the first part of the second conductive portion 122 are close to each other, and the second part of the first conductive portion 112 and the second part of the second conductive portion 122 are close to each other.
[0119] In some embodiments of the present application, after the first main body 111 is inserted into the second main body 121, a fault test is performed on the first conductive portion 112 and the second conductive portion 122. If the first part of the first conductive portion 112 and the first part of the second conductive portion 122 are not conducted, and / or, the second part of the first conductive portion 112 and the second part of the second conductive portion 122 are not conducted, it is necessary to adjust the first conductive portion 112 and the second conductive portion 122 and perform the test again.
[0120] In some embodiments of the present application, after the first main body 111 is inserted into the second main body 121, a fault test is performed on the first conductive portion 112 and the second conductive portion 122. If the first part of the first conductive portion 112 and the first part of the second conductive portion 122 are close to each other and conducted, and the second part of the first conductive portion 112 and the second part of the second conductive portion 122 are close to each other and conducted, the clamping member 130 is made to be in the second position relative to the mounting groove to fix the first connecting member 110 and the second connecting member 120.
[0121] Please refer to Figure 4, in some embodiments of the present application, the distance d1 between the first part and the second part of the first conductive portion 112 is greater than or equal to 1.5 millimeters and less than or equal to 6.5 millimeters.
[0122] In some embodiments of the present application, the distance d1 between the first part and the second part of the first conductive portion 112 can be 3.0 millimeters - 4.5 millimeters, which meets the safety requirements, can effectively reduce the generation of electric arcs, reduce the risks of short circuits and electric shocks, and improve the safety of the connector; helps to enhance electrical isolation, prevent accidental contact between different conductive parts, thereby improving the reliability and stability of the electrical connection; can reduce electromagnetic interference and radio frequency interference, thereby improving the signal integrity and transmission quality of the electrical connection.
[0123] In some embodiments of the present application, the distance d1 between the first part and the second part of the first conductive portion 112 can be any range among 1.5 millimeters - 3.0 millimeters, 4.5 millimeters - 5.0 millimeters, 5.0 millimeters - 5.5 millimeters, 5.5 millimeters - 6.0 millimeters, and 6.0 millimeters - 6.5 millimeters.
[0124] Please refer to Figure 5 , in some embodiments of the present application, the distance d2 between the first part and the second part of the second conductive portion 122 is greater than or equal to 1.5 millimeters and less than or equal to 6.5 millimeters.
[0125] In some embodiments of the present application, the distance d2 between the first part and the second part of the second conductive portion 122 can be 3.0 millimeters - 4.5 millimeters, which meets the safety requirements, can effectively reduce the generation of electric arcs, reduce the risks of short circuits and electric shocks, and improve the safety of the connector; helps to enhance electrical isolation, prevent accidental contact between different conductive parts, thereby improving the reliability and stability of the electrical connection; can reduce electromagnetic interference and radio frequency interference, thereby improving the signal integrity and transmission quality of the electrical connection.
[0126] In some embodiments of the present application, the distance d2 between the first part and the second part of the second conductive portion 122 can be any range among 1.5 millimeters - 3.0 millimeters, 4.5 millimeters - 5.0 millimeters, 5.0 millimeters - 5.5 millimeters, 5.5 millimeters - 6.0 millimeters, and 6.0 millimeters - 6.5 millimeters.
[0127] Please refer to Figures 2 - 3 , in some embodiments of the present application, the connector further includes a clamping member 130, and the first main body 111 and the second main body 121 are fixed by the clamping member 130.
[0128] In some embodiments of the present application, when the first body 111 is plugged into the second body 121, the first conductive part 112 and the second conductive part 122 approach each other, and the first body 111 and the second body 121 jointly form a mounting groove.
[0129] It should be noted that after the first body 111 is plugged into the second body 121, it is necessary to test whether the first conductive part 112 and the second conductive part 122 are electrically connected.
[0130] If it is tested that the first conductive part 112 and the second conductive part 122 are already electrically connected, then the first conductive part 112 and the second conductive part 122 are in contact with each other after approaching; if it is tested that the first conductive part 112 and the second conductive part 122 are not electrically connected, then the first conductive part 112 and the second conductive part 122 do not contact each other after approaching, and it is necessary to further adjust the positions of the first conductive part 112 and the second conductive part 122 so that the first conductive part 112 and the second conductive part 122 can be electrically connected.
[0131] Please refer to Figures 5 - 9 , in some embodiments of the present application, the first connecting member 110 forms a first part 113 of the mounting groove, and the second connecting member 120 forms a second part 123 of the mounting groove.
[0132] In some embodiments of the present application, the first part 113 of the mounting groove may be located on the first connecting member 110, and the second part 123 of the mounting groove may be located on the second connecting member 120. The first part 113 of the mounting groove and the second part 123 of the mounting groove may form a complete mounting groove, and the clamping member 130 may move within the complete mounting groove.
[0133] In some embodiments of the present application, when the first body 111 is plugged into the second body 121, the first part 113 of the mounting groove and the second part 123 of the mounting groove communicate to form a mounting groove.
[0134] In some embodiments of the present application, the first part 113 of the mounting groove and the second part 123 of the mounting groove may communicate and form a complete mounting groove, and the clamping member 130 may be installed in the complete mounting groove to improve the connection stability of the clamping member 130.
[0135] Please refer to Figures 2 - 3 , in some embodiments of the present application, when the first body 111 is plugged into the second body 121, the clamping member 130 can move relative to the mounting groove. The clamping member 130 can be in different positions within the mounting groove to change the fixing relationship between the first body 111 and the second body 121.
[0136] Please refer to Figure 2, in some embodiments of the present application, when the clamping member 130 is in the first position relative to the mounting groove, the clamping member 130 is relatively fixed to the mounting groove. The clamping member 130 is mounted on the first connecting member 110 and the second connecting member 120. The clamping member 130 is restricted within the mounting groove. The outer surface of the clamping member 130 is pressed against the inner surface of the first connecting member 110, and the outer surface of the clamping member 130 is pressed against the inner surface of the second connecting member 120, realizing pre-connection but not locking of the first connecting member 110 and the second connecting member 120.
[0137] Please refer to Figure 3 , in some embodiments of the present application, when the clamping member 130 is in the second position relative to the mounting groove, the first main body 111 and the second main body 121 are fixedly locked through the clamping member 130. The first main body 111 and the second main body 121 are locked by the clamping member 130 and are not easily separated.
[0138] By providing the clamping member 130, a fault test can be performed when the clamping member 130 is in the first position relative to the mounting groove. If it is found that the first conductive portion 112 and the second conductive portion 122 are not electrically connected, further adjustment is required to make the first conductive portion 112 and the second conductive portion 122 electrically connected.
[0139] After the first conductive portion 112 and the second conductive portion 122 are electrically connected, the clamping member 130 can be pushed so that the clamping member 130 is in the second position relative to the mounting groove, realizing the fixation of the first main body 111 and the second main body 121, improving the connection reliability, reducing the process of repeatedly disassembling the connector, simplifying the operation process, facilitating the connection of two wire harnesses, and improving the connection efficiency of the wire harness.
[0140] Please refer to Figure 2 , in some embodiments of the present application, when the first main body 111 is inserted into the second main body 121, the mounting groove extends in the first direction, and the clamping member 130 moves in the mounting groove along the first direction.
[0141] It should be noted that the first direction may be the extending direction of the first connecting member 110 and the second connecting member 120, that is, the extending direction of the high-voltage wire harness to which the first connecting member 110 and the second connecting member 120 are connected.
[0142] In some embodiments of the present application, the extending direction of the mounting groove and the first direction may be arranged in parallel, and the clamping member 130 can move in the mounting groove along the first direction.
[0143] In some embodiments of the present application, when the first main body 111 is inserted into the second main body 121, the first part 113 of the mounting groove and the second part 123 of the mounting groove may communicate to form a complete mounting groove extending in the first direction.
[0144] Please refer to Figures 6 - 7In some embodiments of the present application, the first connecting member 110 is provided with an extension hole 114 , the extension hole 114 extends along the first direction, and the extension hole 114 is connected to the first portion 113 of the mounting groove.
[0145] In some embodiments of the present application, the extension hole 114 may be provided on the first connecting member 110 , and the extension direction of the extension hole 114 may be a first direction.
[0146] In some embodiments of the present application, one end of the first portion 113 of the mounting groove facing the extension hole 114 may be connected to the extension hole 114. After the extension hole 114 is connected to the first portion 113 of the mounting groove, a portion of the structure of the clamping member 130 inserted into the first portion 113 of the mounting groove may extend out of the first connecting member 110 from the extension hole 114, so as to facilitate the adjustment of the position of the clamping member 130 by moving the clamping member 130.
[0147] See also Figures 8 - 9 In some embodiments of the present application, the second connecting member 120 is provided with a first fixing hole 124 and a second fixing hole 125 , and the first fixing hole 124 and the second fixing hole 125 are connected to the second portion 123 of the mounting groove.
[0148] In some embodiments of the present application, the first fixing hole 124 and the second fixing hole 125 may both be provided on the second connecting member 120 , and the connection direction of the first fixing hole 124 and the second fixing hole 125 may be parallel to the extension direction of the extension hole 114 .
[0149] In some embodiments of the present application, one end of the second portion 123 of the mounting slot facing the first fixing hole 124 may be in communication with the first fixing hole 124. One end of the second portion 123 of the mounting slot facing the second fixing hole 125 may be in communication with the second fixing hole 125.
[0150] In some embodiments of the present application, after the first fixing hole 124 and the second fixing hole 125 are connected to the second part 123 of the mounting groove, a partial structure of the snap-in component 130 inserted into the second part 123 of the mounting groove can extend the second connecting member 120 from the first fixing hole 124 or the second fixing hole 125, thereby facilitating the fixation of the snap-in component 130.
[0151] By designing the extension hole 114 , the first fixing hole 124 and the second fixing hole 125 , the movement of the clamping member 130 in the installation slot can be accurately controlled, thereby improving the stability and reliability of the clamping member 130 in different positions.
[0152] See also Figure 10 In some embodiments of the present application, the clamping member 130 includes a first clamping block 131 and a second clamping block 132 .
[0153] In some embodiments of the present application, the clamping member 130 includes at least two clamping blocks, namely a first clamping block 131 and a second clamping block 132. The first clamping block 131 and the second clamping block 132 can be located at different positions of the clamping member 130. The first clamping block 131 and the second clamping block 132 can move in a first direction within the installation groove.
[0154] In some embodiments of the present application, a gap can be formed between the first clamping block 131 and the second clamping block 132. By reasonably setting the gap between the first clamping block 131 and the second clamping block 132, the connection stability between the first connecting member 110 and the second connecting member 120 can be improved.
[0155] In some embodiments of the present application, the materials of the first clamping block 131 and the second clamping block 132 can be the same or different. When the materials of the first clamping block 131 and the second clamping block 132 are the same, it is convenient for processing and manufacturing, and the processing and manufacturing cost can be reduced.
[0156] In some embodiments of the present application, the first clamping block 131 and the second clamping block 132 can be plastic parts. Plastic parts have a lower cost and good insulation properties, reducing the possibility of conducting electricity with high-voltage wire harnesses.
[0157] Please refer to Figure 2 and Figure 11 , in some embodiments of the present application, when the clamping member 130 is in a first position relative to the installation groove, the first clamping block 131 is located at the first end of the extension hole 114, and the second clamping block 132 is located within the first fixing hole 124.
[0158] In some embodiments of the present application, along the first direction, the end of the extension hole 114 facing away from the second connecting member 120 is the first end of the extension hole 114. When the first clamping block 131 is located at the first end of the extension hole 114 and the second clamping block 132 is located within the first fixing hole 124, the relative fixation of the clamping member 130 and the installation groove is achieved through the first clamping block 131 and the second clamping block 132, so that the clamping member 130 is restricted on the first connecting member 110 and the second connecting member 120. The outer surface of the clamping member 130 is mutually extruded with the inner surface of the first connecting member 110, and the outer surface of the clamping member 130 is mutually extruded with the inner surface of the second connecting member 120. The first connecting member 110 and the second connecting member 120 are pre-connected but not clamped tightly, which is convenient for disassembly.
[0159] It should be noted that when the clamping member 130 is in the first position relative to the installation groove, a fault test of the first conductive portion 112 and the second conductive portion 122 can be performed. The first connecting member 110 and the second connecting member 120 are pre-connected but not clamped tightly. If the test result is not ideal, the clamping member 130 can be moved in a direction away from the second connecting member 120, which is convenient for disassembling the first connecting member 110 and the second connecting member 120 for fault troubleshooting.
[0160] Please refer to Figure 3 and Figure 12 In some embodiments of the present application, when the clamping member 130 is in the second position relative to the mounting groove, the first clamping block 131 is located at the second end of the extension hole 114, and the second clamping block 132 is located in the second fixing hole 125.
[0161] In some embodiments of the present application, along the first direction, the end of the extension hole 114 facing the second connecting member 120 is the second end of the extension hole 114. When the first clamping block 131 is located at the second end of the extension hole 114, the second clamping block 132 is located in the second fixing hole 125. The first connecting member 110 and the second connecting member 120 are fixedly locked by the first clamping block 131 and the second clamping block 132.
[0162] It should be noted that after the first conductive portion 112 and the second conductive portion 122 are electrically connected, the clamping member 130 is pushed so that the clamping member 130 is in the second position relative to the mounting groove. The first connecting member 110 and the second connecting member 120 are fixedly locked by the clamping member 130, improving the connection stability between the first connecting member 110 and the second connecting member 120, and it is not easy for the first connecting member 110 and the second connecting member 120 to become loose.
[0163] In some embodiments of the present application, the insertion of the clamping member 130 into the mounting groove is beneficial to the miniaturization of the connector and provides a basis for the subsequent development of an ultra-thin air duct.
[0164] Please refer to Figures 2 - 3 and Figures 8 - 9 In the first direction, the distance between the first fixing hole 124 and the first connecting member 110 is less than the distance between the second fixing hole 125 and the first connecting member 110.
[0165] In some embodiments of the present application, the first fixing hole 124 and the second fixing hole 125 may be located at different positions on the second connecting member 120, and the first fixing hole 124 is closer to the first connecting member 110 than the second fixing hole 125.
[0166] In some embodiments of the present application, the widths of the first fixing hole 124 and the second fixing hole 125 may be the same, which is convenient for processing.
[0167] In some embodiments of the present application, the widths of the first fixing hole 124 and the second fixing hole 125 may be different, and the widths of the first fixing hole 124 and the second fixing hole 125 can be adjusted adaptively according to the sizes of the first clamping block 131 and the second clamping block 132.
[0168] Please refer to Figure 5 、 Figure 8 and Figure 9 In some embodiments of the present application, the first fixing hole 124 is provided with an opening.
[0169] In some embodiments of the present application, along the first direction, an opening may be provided at one end of the first fixing hole 124 facing away from the second fixing hole 125.
[0170] Please refer to Figure 2 、 Figure 5 、 Figure 10 and Figure 11 ., in some embodiments of the present application, when the clamping member 130 is in the first position relative to the mounting groove, the second clamping block 132 abuts against a portion of the inner wall of the first fixing hole 124 facing away from the opening. The movement of the second clamping block 132 can be restricted.
[0171] Please refer to Figure 10 ., in some embodiments of the present application, the second clamping block 132 has an inclined surface 1321 and an abutting surface 1322 that are spaced apart from each other along the first direction. The abutting surface 1322 faces the first clamping block 131, and the inclined surface 1321 faces away from the first clamping block 131.
[0172] In some embodiments of the present application, an angle may be formed between the inclined surface 1321 and the upper surface of the first connecting member 110, facilitating the entry of the second clamping block 132 into the mounting groove.
[0173] In some embodiments of the present application, the abutting surface 1322 may be perpendicular to the upper surface of the first connecting member 110. After the second clamping block 132 enters the second fixing hole 125, the reverse movement of the second clamping block 132 can be restricted.
[0174] Please refer to Figure 2 、 Figure 10 and Figure 11 ., in some embodiments of the present application, when the clamping member 130 is in the first position relative to the mounting groove, the second clamping block 132 abuts against a portion of the inner wall of the first fixing hole 124 facing away from the first connecting member 110 through the inclined surface 1321.
[0175] It should be noted that after the portion of the inner wall of the first fixing hole 124 facing away from the first connecting member 110 abuts against the inclined surface 1321, the outer surface of the clamping member 130 and the inner surface of the first connecting member 110 are mutually extruded, and the outer surface of the clamping member 130 and the inner surface of the second connecting member 120 are mutually extruded.
[0176] Please refer to Figure 3 and Figure 10 ., in some embodiments of the present application, when the clamping member 130 is in the second position relative to the mounting groove, the second clamping block 132 abuts against a portion of the inner wall of the second fixing hole 125 facing the first connecting member 110 through the abutting surface 1322.
[0177] It should be noted that after the portion of the inner wall of the second fixing hole 125 facing the first connecting member 110 abuts against the abutting surface 1322 , the abutting surface 1322 can restrict the second clamping block 132 from moving in the reverse direction.
[0178] See also Figure 10 In some embodiments of the present application, the clamping member 130 includes an elastic body 133. The elastic body 133 is elastic and convenient for entering and exiting the installation slot.
[0179] In some embodiments of the present application, the elastic body 133 may be a plastic part, and the shape of the elastic body 133 may be U-shaped. The two opposite sides of the U-shaped elastic body 133 may approach each other when squeezed by an external force; after the external force acting on the two opposite sides of the U-shaped elastic body 133 disappears, the U-shaped elastic body 133 may return to its original shape.
[0180] See also Figure 10 In some embodiments of the present application, the first card block 131 and the second card block 132 are disposed on the elastic body 133 .
[0181] In some embodiments of the present application, the first block 131 and the second block 132 may be fixedly mounted on the elastic body 133. The first block 131 and the second block 132 are fixed on the elastic body 133 so that the first block 131, the second block 132 and the elastic body 133 can move synchronously.
[0182] In some embodiments of the present application, the first card block 131 is moved, and the first card block 131 drives the second card block 132 to move synchronously through the elastic body 133, so that the movement speeds of the first card block 131 and the second card block 132 are equal. When the first card block 131 reaches the predetermined position, the second card block 132 also reaches the predetermined position at the same time, so that the accurate positioning of the clamping member 130 can be achieved.
[0183] In some embodiments of the present application, in a direction perpendicular to the first direction, the second clamping block 132 can move in a direction close to or away from the first fixing hole 124 and the second fixing hole 125 .
[0184] It should be noted that before the second clamping block 132 enters the second fixing hole 125 , it first passes through the extension hole 114 and the first fixing hole 124 in sequence.
[0185] In some embodiments of the present application, when the second locking block 132 enters the first fixing hole 124 from the extension hole 114, it needs to first enter the installation groove and then enter the first fixing hole 124 from the installation groove. The second locking block 132 is extruded by the wall surface of the first connecting member 110 and moves in the direction close to the first fixing hole 124 and the second fixing hole 125 and enters the installation groove. After the extrusion force of the wall surface of the first connecting member 110 disappears, the second locking block 132 moves in the direction away from the first fixing hole 124 and the second fixing hole 125 and leaves the installation groove.
[0186] In some embodiments of the present application, when the second locking block 132 enters the second fixing hole 125 from the first fixing hole 124, it needs to first enter the installation groove and then enter the second fixing hole 125 from the installation groove. The second locking block 132 is extruded by the wall surface of the second connecting member 120 and moves in the direction close to the first fixing hole 124 and the second fixing hole 125 and enters the installation groove. After the extrusion force of the wall surface of the second connecting member 120 disappears, the second locking block 132 moves in the direction away from the first fixing hole 124 and the second fixing hole 125 and leaves the installation groove.
[0187] Please refer to Figures 11 - 13 , in some embodiments of the present application, in a direction perpendicular to the first direction, the first locking block 131 can move in a direction close to or away from the extension hole 114.
[0188] It should be noted that when being extruded by the wall surface of the first connecting member 110 or being extruded by the wall surface of the second connecting member 120, the second locking block 132 makes two opposite sides of the U-shaped elastic body 133 approach each other, and at the same time drives the first locking block 131 to move in the direction close to the extension hole 114. After the extrusion force on the second locking block 132 disappears, the elastic body 133 returns to its original state, and at the same time drives the first locking block 131 to move in the direction away from the extension hole 114.
[0189] In some embodiments of the present application, when the engaging member 130 is between the first position and the second position relative to the installation groove, the second locking block 132 is located in the installation groove.
[0190] In some embodiments of the present application, when the engaging member 130 is in the first position relative to the installation groove, the second locking block 132 is located in the first fixing hole 124, and when the engaging member 130 is in the second position relative to the installation groove, the second locking block 132 is located in the second fixing hole 125. When the engaging member 130 moves from the first position to the second position relative to the installation groove, the second locking block 132 needs to first enter the installation groove and then leave the installation groove.
[0191] Please refer to Figures 6 - 7, in some embodiments of the present application, the extension hole 114 is provided with an installation opening 1141. The installation opening 1141 may be provided at one end of the extension hole 114 facing away from the second connecting member 120, and the installation opening 1141 can facilitate the access of the engaging member 130 to and from the installation groove.
[0192] In some embodiments of the present application, in the width direction of the extension hole 114, the width of the installation opening 1141 is smaller than the width of the extension hole 114.
[0193] In some embodiments of the present application, the width direction of the extension hole 114 may be perpendicular to the connecting line direction of the first connecting member 110 and the second connecting member 120.
[0194] Along the direction perpendicular to the connecting line of the first connecting member 110 and the second connecting member 120, the width of the installation opening 1141 may be smaller than the width of the extension hole 114, so that the first locking block 131 can be locked at the first end of the extension hole 114.
[0195] It should be noted that if the width of the installation opening 1141 is greater than or equal to the width of the extension hole 114 along the direction perpendicular to the connecting line of the first connecting member 110 and the second connecting member 120, it is difficult for the first locking block 131 to be locked at the first end of the extension hole 114, which is not conducive to the installation of the engaging member 130.
[0196] Please refer to Figure 10 , in some embodiments of the present application, the first locking block 131 is provided with a pressing portion 1311. The pressing portion 1311 may be provided at one end of the first locking block 131 facing away from the elastic body 133.
[0197] Please refer to Figures 10 - 11 , in some embodiments of the present application, when the engaging member 130 is in the first position relative to the installation groove, the pressing portion 1311 is outside the extension hole 114; when the engaging member 130 is in the second position relative to the installation groove, the pressing portion 1311 is also outside the extension hole 114. The pressing portion 1311 protrudes from the outer surfaces of the first connecting member 110 and the second connecting member 120, which facilitates pushing the engaging member 130 to access and exit the installation groove by pushing the pressing portion 1311.
[0198] In some embodiments of the present application, when the first locking block 131 is located in the installation groove and the engaging member 130 is in the third position relative to the installation groove, the pressing portion 1311 can move in the installation opening 1141 along the first direction, and the third position is on the side of the first position away from the second position.
[0199] It should be noted that when the clamping member 130 is located at the first position relative to the installation slot, the clamping member 130 can be located at the second position relative to the installation slot by pushing the clamping member 130 to move in the direction close to the second connecting member 120. Before the clamping member 130 is located at the first position relative to the installation slot, the clamping member 130 can be located at the third position relative to the installation slot. That is, the clamping member 130 is first located at the third position relative to the installation slot, then the clamping member 130 is first located at the first position relative to the installation slot, and finally the clamping member 130 is first located at the second position relative to the installation slot.
[0200] When the first clamping block 131 enters the first portion 113 of the installation groove, the first clamping block 131 is pressed by the inner wall surface of the first connecting member 110 , and the pressing portion 1311 can move in the installation opening 1141 along the first direction and pass through the installation opening 1141 .
[0201] See also Figures 2 - 4 In some embodiments of the present application, when the first body 111 is plugged into the second body 121, the first portion of the first conductive portion 112 and the second portion of the first conductive portion 112 are arranged along the second direction. The second direction may be perpendicular to the first direction.
[0202] In some embodiments of the present application, the first portion and the second portion of the first conductive portion 112 may be symmetrically arranged. The first portion and the second portion of the first conductive portion 112 may be symmetrically arranged along the second direction.
[0203] In some embodiments of the present application, in the second direction, the mounting groove is located between the first portion of the first conductive portion 112 and the second portion of the first conductive portion 112, so that the first portion of the first conductive portion 112 and the second portion of the first conductive portion 112 can be spaced apart.
[0204] See also Figure 2 , Figure 3 and Figure 5 In some embodiments of the present application, when the first body 111 is plugged into the second body 121 , the first portion of the second conductive portion 122 and the second portion of the second conductive portion 122 are arranged along the second direction.
[0205] In some embodiments of the present application, the first portion of the second conductive portion 122 and the second portion of the second conductive portion 122 may be symmetrically arranged. The first portion and the second portion of the second conductive portion 122 may be symmetrically arranged along the second direction.
[0206] In some embodiments of the present application, in the second direction, the mounting groove is located between the first portion of the second conductive portion 122 and the second portion of the second conductive portion 122, so that the first portion and the second portion of the second conductive portion 122 can be spaced apart.
[0207] See alsoFigure 2 - 13 , an embodiment of the present application provides a refrigerator, including a box body 300, an ion generator, and a plurality of connectors 100; the box body 300 is provided with a plurality of chambers separated from each other; the box body 300 includes a plurality of air ducts for supplying air to the plurality of chambers.
[0208] In some embodiments of the present application, the ion generator includes a main component 401 and a plurality of sub-components 402. The main component 401 is disposed in the box body 300. The main component 401 is electrically connected to the plurality of sub-components 402 through a plurality of connectors 100, and the sub-components 402 are disposed in the air ducts.
[0209] In some embodiments of the present application, the connector 100 includes a first connecting member 110 and a second connecting member 120.
[0210] In some embodiments of the present application, the first connecting member 110 includes a first main body 111 and a first conductive portion 112 disposed on the first main body 111; the second connecting member 120 includes a second main body 121 and a second conductive portion 122 disposed on the second main body 121.
[0211] In some embodiments of the present application, when the main component 401 is electrically connected to the sub-component 402 through the connector 100, the first main body 111 and the second main body 121 are fixed, and the main component 401 is electrically connected to the sub-component 402 through the electrically connected first conductive portion 112 and second conductive portion 122.
[0212] By installing one or more connectors 100 on the high-voltage wire harness between the main component 401 and the sub-components 402, the part of the high-voltage wire harness connected to the connector 100 can be pre-buried in the box body. The connecting members of the connector 100 on the high-voltage wire harness connected to the sub-components 402 are connected to the connecting members of the connector 100 on the pre-buried high-voltage wire harness, so that the plurality of sub-components 402 can be directly installed in a plurality of temperature zones without passing through the foam layer or the inner liner, which is convenient for the installation of the main component 401 and the sub-components 402.
[0213] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, rather than limiting them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
[0214] For the sake of convenience in explanation, the above description has been made in connection with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. Various modifications and variations can be derived according to the above teachings. The selection and description of the above embodiments are for the purpose of better explaining the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.
Claims
1. A refrigerator, characterized in that: include: The box (300) is provided with a plurality of chambers separated from each other; the box (300) comprises a plurality of air ducts, and the plurality of air ducts are used to supply air to the plurality of chambers; An ion generator, comprising a main component (401) and a plurality of auxiliary components (402), wherein the main component (401) is arranged in the housing (300), the main component (401) is electrically connected to the plurality of auxiliary components (402), and the auxiliary components (402) are arranged in the air duct; A plurality of connectors (100), wherein the connectors (100) are used to connect the main component (401) and the secondary component (402); The connector (100) comprises: A first connecting member (110) comprises a first main body (111) and a first conductive portion (112) arranged on the first main body (111); the first conductive portion (112) is electrically connected to one of the main component (401) and the auxiliary component (402) through a first high-voltage wire harness; A second connecting member (120) comprises a second body (121) and a second conductive portion (122) arranged on the second body (121); the second conductive portion (122) is electrically connected to the other of the main component (401) and the auxiliary component (402) through a second high-voltage wire harness; The connector (100) is configured such that when the first body (111) and the second body (121) are fixed and locked, the first conductive part (112) and the second conductive part (122) are electrically connected.
2. The refrigerator according to claim 1, characterized in that: The first conductive portion (112) includes a first portion and a second portion, and the second conductive portion (122) includes a first portion and a second portion; When the first body (111) is plugged into the second body (121), the first part of the first conductive part (112) and the first part of the second conductive part (122) are close to each other, and the second part of the first conductive part (112) and the second part of the second conductive part (122) are close to each other; The distance between the first part of the first conductive part (112) and the second part of the first conductive part (112) is greater than or equal to 1.5 mm and less than or equal to 6.5 mm; and / or the distance between the first part of the second conductive part (122) and the second part of the second conductive part (122) is greater than or equal to 1.5 mm and less than or equal to 6.5 mm.
3. The refrigerator according to claim 1 or 2, characterized in that: The connector further comprises a clamping member (130), and the first body (111) and the second body (121) are fixed by means of the clamping member (130); When the first body (111) and the second body (121) are plugged together, the first conductive portion (112) and the second conductive portion (122) are close to each other, and the first body (111) and the second body (121) jointly form a mounting groove; The first connecting member (110) forms a first portion (113) of the mounting groove, the second connecting member (120) forms a second portion (123) of the mounting groove, and the first portion (113) of the mounting groove and the second portion (123) of the mounting groove are connected to form the mounting groove; The clamping member (130) is movable relative to the mounting slot; when the clamping member (130) is in a first position relative to the mounting slot, the clamping member (130) and the mounting slot are fixed relative to each other; when the clamping member (130) is in a second position relative to the mounting slot, the first body (111) and the second body (121) are fixed and locked via the clamping member (130).
4. The refrigerator according to claim 3, characterized in that: When the first body (111) is plugged into the second body (121), the installation slot extends along a first direction, and the clamping member (130) moves in the installation slot along the first direction; The first connecting member (110) is provided with an extension hole (114), the extension hole (114) extends along a first direction, and the extension hole (114) is communicated with the first portion (113) of the mounting groove; The second connecting member (120) is provided with a first fixing hole (124) and a second fixing hole (125), and the first fixing hole (124) and the second fixing hole (125) are in communication with the second portion (123) of the mounting groove; The clamping member (130) comprises a first clamping block (131) and a second clamping block (132); When the clamping member (130) is in a first position relative to the mounting slot, the first clamping block (131) is located at a first end of the extension hole (114), and the second clamping block (132) is located in the first fixing hole (124); When the clamping member (130) is in a second position relative to the mounting slot, the first clamping block (131) is located at the second end of the extension hole (114), and the second clamping block (132) is located in the second fixing hole (125).
5. The refrigerator according to claim 4, characterized in that: In the first direction, the distance between the first fixing hole (124) and the first connecting member (110) is smaller than the distance between the second fixing hole (125) and the first connecting member (110); The first fixing hole (124) is provided with an opening; when the clamping member (130) is in a first position relative to the mounting slot, the second clamping block (132) abuts against a portion of the inner wall of the first fixing hole (124) away from the opening.
6. The refrigerator according to claim 4, characterized in that: The second card block (132) has an inclined surface (1321) and an abutting surface (1322) that are away from each other along the first direction, the abutting surface (1322) faces the first card block (131), and the inclined surface (1321) faces away from the first card block (131); When the clamping member (130) is in a first position relative to the mounting groove, the second clamping block (132) abuts against a portion of the inner wall of the first fixing hole (124) away from the first connecting member (110) via the inclined surface (1321); When the clamping member (130) is in the second position relative to the mounting groove, the second clamping block (132) abuts against a portion of the inner wall of the second fixing hole (125) facing the first connecting member (110) via the abutting surface (1322).
7. The refrigerator according to claim 4, characterized in that: The clamping member (130) comprises an elastic body (133); The first clamping block (131) and the second clamping block (132) are arranged on the elastic body (133); in a direction perpendicular to the first direction, the first clamping block (131) can move in a direction approaching or moving away from the extension hole (114), and the second clamping block (132) can move in a direction approaching or moving away from the first fixing hole (124) and the second fixing hole (125); When the clamping member (130) is located between a first position and a second position relative to the installation slot, the second clamping block (132) is located in the installation slot.
8. The refrigerator according to claim 7, characterized in that: The extension hole (114) is provided with a mounting opening (1141); in the width direction of the extension hole (114), the width of the mounting opening (1141) is smaller than the width of the extension hole (114); The first clamping block (131) is provided with a pressing portion (1311); when the first clamping block (131) is located in the installation slot and the clamping member (130) is located in a third position relative to the installation slot, the pressing portion (1311) can move in the installation opening (1141) along the first direction, and the third position is located on a side of the first position away from the second position.
9. The refrigerator according to claim 3, characterized in that: When the first body (111) is plugged into the second body (121), the first part of the first conductive part (112) and the second part of the first conductive part (112) are arranged along a second direction; in the second direction, the mounting groove is located between the first part of the first conductive part (112) and the second part of the first conductive part (112); When the first body (111) is plugged into the second body (121), the first part of the second conductive part (122) and the second part of the second conductive part (122) are arranged along the second direction; in the second direction, the mounting groove is located between the first part of the second conductive part (122) and the second part of the second conductive part (122).
10. A refrigerator, characterized in that: It comprises a housing (300), an ion generator and a plurality of connectors (100); the housing (300) is provided with a plurality of chambers separated from each other; the housing (300) comprises a plurality of air ducts, and the plurality of air ducts are used to supply air to the plurality of chambers; The ion generator comprises a main component (401) and a plurality of auxiliary components (402), the main component (401) being arranged in the housing (300), the main component (401) being electrically connected to the plurality of auxiliary components (402) via the plurality of connectors (100), and the auxiliary components (402) being arranged in the air duct; The connector (100) comprises a first connecting member (110) and a second connecting member (120); The first connecting member (110) comprises a first body (111) and a first conductive portion (112) arranged on the first body (111); the second connecting member (120) comprises a second body (121) and a second conductive portion (122) arranged on the second body (121); When the main component (401) is electrically connected to the auxiliary component (402) through the connector (100), the first body (111) and the second body (121) are fixed, and the main component (401) is electrically connected to the auxiliary component (402) through the electrically connected first conductive part (112) and the second conductive part (122).