WO2023098200A1 - 具有走线模块的冰箱 - Google Patents

具有走线模块的冰箱 Download PDF

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Publication number
WO2023098200A1
WO2023098200A1 PCT/CN2022/117156 CN2022117156W WO2023098200A1 WO 2023098200 A1 WO2023098200 A1 WO 2023098200A1 CN 2022117156 W CN2022117156 W CN 2022117156W WO 2023098200 A1 WO2023098200 A1 WO 2023098200A1
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WO
WIPO (PCT)
Prior art keywords
wiring
refrigerator
door body
adapter
wiring module
Prior art date
Application number
PCT/CN2022/117156
Other languages
English (en)
French (fr)
Inventor
赵发
窦金强
任树飞
周兆涛
Original Assignee
青岛海尔电冰箱有限公司
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202123030747.6U external-priority patent/CN216814728U/zh
Priority claimed from CN202111466515.7A external-priority patent/CN116294344A/zh
Application filed by 青岛海尔电冰箱有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔电冰箱有限公司
Publication of WO2023098200A1 publication Critical patent/WO2023098200A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers

Definitions

  • the invention relates to the field of refrigeration equipment, in particular to a refrigerator with a wiring module.
  • the wiring is generally implemented through the upper hinge of the door body, that is, the hinge shaft of the upper hinge has a through hole arranged through the upper and lower directions, and the wiring drawn from the box body passes through the through hole and extends to the door body to connect with the functional modules on the door body.
  • the size of the through hole cannot be made very large, resulting in the limitation of the thickness and the number of wiring, especially for refrigerators with door system ice function, thicker water pipes also need
  • the ice water module on the door body of the through hole is docked. At this time, the connection of all the wiring cannot be realized only through the upper hinge.
  • the object of the present invention is to provide a refrigerator with a wiring module.
  • a refrigerator with a cable routing module including a box body, a door body that is matched with the box body and can rotate around a rotation axis, and at least part of the box body is routed
  • the wire is guided to the wiring module of the door body;
  • the wiring module has a movable end that is movably connected with the door body, and one of the movable end and the door body is provided with a limit column, and the other is provided with a A limit slot matched with the limit post, during the process of opening and closing the door body, the limit post moves along the limit slot.
  • the limiting groove is provided on the door body, and the limiting groove extends from front to rear and obliquely toward the position where the rotating shaft is located.
  • the limiting groove is provided on the top wall of the door body, and the notch of the limiting groove is opened upwards, and the limiting column protrudes downward from the movable end. extend into the limiting slot.
  • the door body has a storage chamber for housing the wiring module, and during the process of opening and closing the door body, the wiring modules are all located in the storage chamber.
  • the accommodating chamber is formed by indenting downward from the top wall of the door body.
  • the wiring module further has a pivot end disposed opposite to the movable end, and the pivot end is pivotally connected to the box body.
  • the refrigerator further includes a hinge plate fixed on the box body, and the pivot end is pivotally connected to the hinge plate.
  • the refrigerator further includes an adapter piece fixed on the box body and protruding toward the door body, the pivot end is rotatably connected to the front end of the adapter piece;
  • the wiring of the box extends to the door through the adapter piece and the wiring module in sequence.
  • the adapter and/or the wiring module has an accommodating cavity for accommodating the surplus of the wiring, and the surplus of the wiring is accommodated during the opening and closing process. in the accommodating cavity.
  • the refrigerator further includes a hinge plate fixed on the box body, the rotating shaft is arranged on the hinge plate, and the door body is rotatably connected to the hinge plate through the rotating shaft.
  • the hinge plate; the adapter is arranged side by side with the hinge plate, and there is a connection connecting the adapter and the hinge plate between the adapter and the hinge plate structure.
  • the connecting structure includes a first limiting wall and a second limiting wall protruding from an end of the adapter piece close to the hinge plate toward the hinge plate, and the first limiting wall protrudes toward the hinge plate.
  • a limiting wall and the second limiting wall are spaced apart along the vertical direction, and the hinge plate is engaged between the first limiting wall and the second limiting wall.
  • the rotating shaft has a through hole provided through its axial direction, and the through hole is used to guide at least part of the wiring of the box body to the door body;
  • One side of the rotating shaft is provided with at least one fixing piece for fixing the wiring.
  • the fixing member is an L-shaped buckle.
  • the refrigerator further includes a hinge box fixed on the box body, the adapter is fixed on the hinge box, and the hinge box completely covers the adapter .
  • the wiring module includes a first housing and a second housing surrounding a wiring chamber for accommodating wiring, the first housing and the second housing One end is connected by a snap-fit structure, and the other end is fixedly connected by a fastener.
  • the engaging structure includes a boss provided on one of the first housing and the second housing, and an engaging groove provided on the other, and the engaging The slot extends along the length direction of the wiring module, and one end of the engaging slot corresponding to the end of the wiring module has an engaging opening for the boss to enter and exit.
  • the refrigerator in the present invention is additionally equipped with a wiring module, which reduces the limitation of the hinge wiring in the prior art, and can flexibly adjust the extension track of the wiring to avoid stuck wires;
  • the routing module in the present invention realizes the movable connection between the movable end and the door body through the mutually matched limiting columns and limiting grooves, and the structure is relatively simple.
  • the The limit groove guides the movement of the limit post, drives the wiring module and the wiring in the wiring module to move regularly, avoids winding or bending wear of the wiring, and improves the safety of the wiring.
  • collision and friction between the wiring module and other parts of the door body can be avoided, noise can be reduced, and the service life can be improved.
  • Fig. 1 is a structural schematic diagram of a refrigerator in the present invention (the door body is in a closed state).
  • Fig. 2 is an enlarged view of A in Fig. 1 .
  • Fig. 3 is a structural schematic diagram of the refrigerator in the present invention (the door is in an open state).
  • Fig. 4 is an enlarged view at B in Fig. 3 .
  • Fig. 5 is a structural diagram of the refrigerator in Fig. 3 with the first hinge box removed.
  • Fig. 6 is an enlarged view at point C in Fig. 5 .
  • Fig. 7 is a structural schematic diagram of cooperation between the wiring module, the adapter and the middle hinge box in Fig. 3 .
  • Fig. 8 is a schematic structural view of the adapter in the present invention.
  • Fig. 9 is an exploded view of the wiring module in the present invention.
  • FIGS. 1-9 are preferred embodiments of the present invention.
  • these embodiments do not limit the present invention, and any functional, method, or structural equivalent transformations or substitutions made by those skilled in the art based on these embodiments fall within the protection scope of the present invention.
  • connection should be understood in a broad sense, for example, a connection may be a direct connection or an indirect connection through an intermediary, a fixed connection or a movable connection or a detachable connection Or integral connection, for those of ordinary skill in the art, can understand the specific meaning of the above terms in the utility model according to the specific situation.
  • the present invention provides a refrigerator 100 with a wiring module 3 , including a box body 1 , a door that cooperates with the box body 1 and can rotate around a rotation axis 61 Body 2. Guide at least part of the wiring drawn from the box body 1 to the wiring module 3 of the door body 2, and the wiring guided into the door body 2 is connected with the functional modules on the door body 2, so as to give the door body 2 to supply power to the functional modules.
  • the routing module 3 is additionally provided, which reduces the limitation of the hinge routing in the prior art, and can flexibly adjust the extension track of the routing to avoid wire jamming.
  • the routing includes but is not limited to cables, water pipes, condensation pipes, and the like.
  • the wiring module 3 has a movable end 31 that is movably connected to the door body 2. With the opening and closing of the door body 2, the movable end 31 can move relative to the door body 2, thereby making the The wiring in the module 3 can also move freely with the opening and closing of the door body 2, and the wiring module 3 can guide the wiring in it, so that the wiring moves regularly with the wiring module 3 in the process of opening and closing the door , avoiding the winding or bending wear of the wiring, and improving the service life of the wiring.
  • one of the movable end 31 and the door body 2 is provided with a limit post 311 , and the other is provided with a limit post 311 that cooperates with the limit post 311 .
  • the groove 21, that is, the movable connection between the movable end 31 and the door body 2 is realized through the interfitting limiting post 311 and the limiting groove 21, and the structure is relatively simple.
  • the limiting groove 21 guides the movement of the limiting column 311, and the limiting column 311 drives the wire routing during the process of moving along the limiting groove 21.
  • the module 3 and the wiring located in the wiring module 3 move regularly, avoiding the winding or bending wear of the wiring, and improving the service life of the wiring.
  • it can also avoid Collision and friction occur between the wiring module 3 and other parts of the door body 2 to reduce noise and improve service life.
  • the limiting column 311 is arranged on the movable end 31, and the limiting groove 21 is correspondingly arranged on the door body 2.
  • the door body The settable space on the 2 is larger and more flexible, which can simplify the setting of the limiting groove 21 and miniaturize the wiring module 3 .
  • the limiting post 311 can also be arranged on the door body 2, and the limiting groove 21 is correspondingly arranged on the wiring on module 3.
  • the limiting groove 21 extends from front to rear and obliquely toward the rotation axis 61, so that the switch of the door body 2 Without being restricted by the wiring module 3, the door body 2 can be opened and closed freely.
  • the limiting slot 21 is not limited to the above-mentioned extending direction, and can be adaptively adjusted according to the motion track of the limiting post 311 during the process of opening and closing the door body 2 .
  • the limiting groove 21 is provided on the top wall of the door body 2, and the notch of the limiting groove 21 opens upwards, and the limiting column 311 protrudes downward from the movable end 31. , to simplify the setting of the limiting groove 21 and the limiting post 311 .
  • the notch direction of the limiting slot 21 and the protruding direction of the limiting post 311 only need to correspond, and the limiting post 311 can also be The configuration is bent, as long as the end of the limiting column 311 can protrude from the notch into the limiting groove 21 .
  • the door body 2 has a storage cavity 22 for accommodating the wiring module 3 , and the wiring modules 3 are all located in the storage cavity 22 during the process of opening and closing the door body 2 . That is, in the process of opening and closing the door body 2, none of the wiring modules 3 are exposed, thereby achieving the effect of concealing the wiring modules 3 and preventing the wiring modules 3 from affecting the appearance of the refrigerator 100 And the normal use of refrigerator 100.
  • the accommodating cavity 22 is formed downwardly from the top wall of the door body 2 , and the limiting groove 21 is formed at the bottom of the accommodating cavity 22 .
  • the refrigerator 100 also includes a shielding cover 4 matched with the storage chamber 22, the shielding cover 4 is fixed on the door body 2 by fasteners 36 such as screws and shields the storage chamber 22, Improve the overall appearance of the refrigerator 100, and at the same time, the shielding cover 4 can limit the upward movement of the wiring module 3, and limit the limit post 311 in the limit groove 21 to prevent the limit The post 311 is released to improve the stability of the wiring box movement.
  • the wiring module 3 also has a pivot end 32 opposite to the movable end 31, and the pivot end 32 is pivotally connected to the box body 1.
  • the wiring module 3 rotates around the pivot end 32, and at the same time, the movable end 31 moves along the limiting groove 21, which can limit the movement of the wiring module 3.
  • the range of movement enhances the reliability and stability of the movement of the wiring module 3 .
  • the end of the wiring module 3 opposite to the movable end 31 can also be set as a fixed end, that is, the wiring module 3 is fixedly connected to the box body 1 on.
  • the refrigerator 100 also includes an adapter 5 fixed on the box body 1 and protruding toward the door body 2 , and the pivot end 32 is rotatably connected to At the front end of the adapter piece 5, the wiring of the box body 1 extends to the door body 2 through the adapter piece 5 and the wiring module 3 in turn, so that the wiring module 3 and the box body
  • the indirect pivotal connection between the bodies 1 enables the wiring module 3 to be always accommodated in the accommodating cavity 22 , thereby achieving the effect of concealing the wiring module 3 .
  • it is not limited thereto.
  • pivot end 32 can also be pivotally connected to a hinge plate fixed to the box body, or, if it is not required that the wiring module 3 is always accommodated in In the embodiment in the receiving cavity 22 , the pivoting end 32 may also be directly pivotally connected to the box body 1 .
  • the front end of the adapter 5 will not come out of the receiving cavity 22, so that the wiring module 3 is always located in the receiving cavity 22 , can prevent the wiring module 3 from affecting the appearance of the refrigerator 100 and the normal use of the refrigerator 100 .
  • the adapter 5 has a wire groove 51 for the wires to pass through, which has certain guiding and supporting functions for the wires passing through the adapter 5 .
  • the adapter 5 may also be a plate-shaped structure similar to a hinge plate, and the wiring passes through and is supported on the upper surface of the adapter 5.
  • the wiring module 3 extends into the door body 2 .
  • the adapter 5 and/or the wiring module 3 has a cavity 52 for accommodating the margin of the wiring, and the surplus of the wiring is accommodated in the opening and closing process of the door. In the accommodating cavity 52, excessive stretching of the wires can be avoided, and the service life of the wires can be improved.
  • the accommodating cavity 52 when the accommodating cavity 52 is provided in the adapter piece 5, the accommodating cavity 52 is located at a part of the adapter piece 5 close to the pivot end 32, and the accommodating cavity 52 is located at The side of the adapter 5 that is far away from the wiring module 3 during the door opening process, the wiring near the pivot end 32 will bend in a direction away from the opening direction of the door body 2 during the door opening process. Folding and storing in the accommodation cavity 52 can reduce the axial displacement of the wiring located in the wiring module 3 and the adapter 5, prevent excessive stretching of the wiring, and improve the stability of the wiring. service life.
  • the accommodating cavity 52 is located at the part of the wiring module 3 close to the pivot end 32, and the accommodating cavity 52 is located in the opening process.
  • the wiring near the pivoting end 32 will be bent and accommodated in a direction away from the opening direction of the door body 2.
  • the axial displacement of the wires located in the wire routing module 3 and the adapter 5 can be reduced, excessive stretching of the wires can be prevented, and the service life of the wires can be improved.
  • the accommodating chamber 52 is disposed in the adapter piece 5 , but of course, it is not limited thereto.
  • the refrigerator 100 also includes a hinge plate 6 fixed on the box body 1, the rotating shaft 61 is arranged on the hinge plate 6, and the door body 2 is provided with a With the matching shaft hole, the door body 2 is rotatably connected to the hinge plate 6 through the cooperation between the rotation shaft 61 and the shaft hole, so that the door body 2 can be opened or closed by rotation.
  • the adapter 5 is provided separately from the hinge plate 6, and the adapter 5 can be made of plastic material, which can reduce costs;
  • the adapter piece 5 and the hinge plate 6 may also be integrated, that is, the adapter piece 5 is a part of the hinge plate 6 .
  • the adapter piece 5 and the hinge plate 6 are arranged side by side, and there is a connection between the adapter piece 5 and the hinge plate 6 to connect the adapter piece 5 and the hinge plate 6 .
  • the connection structure 7 together it can be seen that the hinge plate 6 is generally made of metal with high rigidity and has a good load-bearing capacity, and the adapter 5 is connected to the hinge plate 6 through the connection structure 7
  • the adapter piece 5 can be limited by the hinge plate 6, and the adapter piece 5 can be restricted from shaking in the up and down direction, thereby preventing the wiring module 3 from being dislocated in the up and down direction, and enhancing the The stability of the routing module 3.
  • connection structure 7 is not limited to the embodiment in which the adapter piece 5 and the hinge plate 6 are provided separately. In the embodiment where the adapter piece 5 and the hinge plate 6 are integrally arranged, it can also be understood that the adapter piece 5 and the hinge plate 6 are connected together through the integrally arranged connection structure 7 .
  • connection structure 7 includes a first limiting wall 71 and a second limiting wall 72 protruding from an end of the adapter 5 close to the hinge plate 6 toward the hinge plate 6 , the first limiting wall 71 and the second limiting wall 72 are arranged at intervals along the vertical direction, and the hinge plate 6 is engaged between the first limiting wall 71 and the second limiting wall 72 between.
  • first limiting wall 71 is located on the upper side of the second limiting wall 72
  • the upper surface of the hinge plate 6 is against the first limiting wall 71
  • the hinge plate 6 The lower surface is against the second limiting wall 72 to limit the adapter 5 from shaking in the up and down direction.
  • the first limiting wall 71 includes at least two sub-limiting walls arranged at intervals along the front and rear directions, so as to respectively limit the adapters 5 and improve the stability of the wiring module 3 .
  • the first limiting wall 71 includes at least two sub-limiting walls arranged at intervals along the front and rear directions, so as to respectively limit the adapters 5 and improve the stability of the wiring module 3 .
  • it is not limited to this.
  • connection structure 7 can also be arranged on the hinge plate 6 to limit the adapter 5 .
  • the refrigerator 100 also includes a hinge box 8 fixed on the box 1, the adapter 5 is fixed on the hinge box 8, and through the hinge box 8 fixed on the box 1 Realizing the fixed connection between the adapter piece 5 and the box body 1 can reduce the connection parts on the box body 1 and simplify the assembly of the refrigerator 100 .
  • the hinge box 8 completely covers the adapter 5 to completely cover the adapter 5 and enhance the appearance of the refrigerator 100 Effect.
  • the hinge box 8 includes a middle hinge box 81, a first hinge box 82 located at the end of the middle hinge box 81, the adapter 5 is fixed on the middle hinge box 81, and in the After the adapter 5 and the hinge box 8 are assembled, the first hinge box 82 covers the hinge plate 6 and part of the adapter 5 , and the middle hinge box 81 covers the hinge of the adapter 5 . other parts of the structure.
  • the middle hinge box 81 has a receiving portion 811 that protrudes toward the door body 2 and is used to accommodate the adapter piece 5 , the shape of the accommodation portion 811 is similar to that of the adapter piece 5 adaptation.
  • the receiving portion 811 includes an upper wall covering the upper surface of the adapter 5, a lower wall located on the lower surface of the adapter 5, and a connecting wall connecting one side of the upper wall and the lower wall, After the adapter piece 5 is fixed on the hinge box 8, the partial structure of the adapter piece 5 protruding toward the door body 2 is accommodated in the accommodating portion 811, and the adapter piece 5 supported on the lower wall.
  • the lower wall protrudes toward the hinge plate 6 to form the above-mentioned second limiting wall 72 , which simplifies the connection structure 7 between the adapter piece 5 and the hinge plate 6 .
  • the connection structure 7 between the adapter piece 5 and the hinge plate 6 it is not limited to this.
  • the adapter piece 5 and the accommodating portion 811 jointly form the cable routing groove 51 .
  • the side of the adapter 5 corresponding to the connecting wall is open, and the wiring can be inserted into the adapter through the adapter 5 toward the side of the connecting wall. Then assemble the adapter 5 and the middle hinge box 81 to form the wire groove 51 that guides and limits the wires, so as to facilitate the routing of the wires.
  • the rotating shaft 61 has a through hole provided through the axial direction thereof, and the through hole is used to guide at least part of the wiring of the box body 1 to the door body 2, that is, in the present invention, the wires drawn out of the box body 1 Part of the wiring extends to the door body 2 through the hinge plate 6, and the other part extends to the door body 2 through the wiring module 3, which reduces the limitation of the existing hinge wiring and can flexibly adjust the wiring of each Extend traces to avoid line jams.
  • the adapter 5 is provided with at least one fixing piece 53 on the side facing the hinge plate 6, and the pipelines that need to pass through the through holes are fixed and sorted through the fixing pieces 53 first. , and then pass through the through hole to avoid confusion in the pipelines leading out from the box body 1 .
  • the fixing member 53 is an L-shaped buckle. Of course, it is not limited to this.
  • the wiring module 3 includes a first housing 33 and a second housing 34 surrounding a wiring cavity for accommodating wiring, and the first housing 33 and the One end of the second housing 34 is connected by a snap-fit structure 35 , and the other end is fixedly connected by a fastener 36 .
  • the engaging structure 35 includes a protrusion 351 provided on one of the first housing 33 and the second housing 34, and an engaging groove 352 provided on the other, the engaging groove 352 extends along the length direction of the wiring module 3, and the end of the engaging groove 352 corresponding to the end of the wiring module 3 has an engaging opening for the boss 351 to enter and exit.
  • the boss 351 is snapped into the engaging groove 352 from the engaging opening first, and then the first shell 33 and the second shell are connected. After the other end of the body 34 is aligned with the fastening hole matched with the fastening piece 36, the fastening piece 36 can be screwed in.
  • the pivotal end 32 of the wiring module 3 is connected to the adapter 5 by rotation, which is easy to assemble.
  • first the first housing 33 and the second housing 34 are disassembled, and the wiring is put into the first housing 33 so that the wiring runs from the first housing 33 after the end corresponding to the movable end 31 is drawn out, the first housing 33 and the second housing 34 are assembled together to form a wiring cavity for guiding and accommodating the wiring, which is convenient for the wiring The arrangement of the lines.
  • the refrigerator 100 in the present invention is additionally equipped with a wiring module 3, which reduces the limitation of the hinge wiring in the prior art, and can flexibly adjust the extension track of the wiring to avoid stuck wires; on the other hand , the routing module 3 in the present invention realizes the movable connection between the movable end 31 and the door body 2 through the mutually matched limiting posts 311 and the limiting grooves 21, and the structure is relatively simple.
  • the limiting groove 21 guides the movement of the limiting column 311, driving the wiring module 3 and the wiring in the wiring module 3 to move regularly, avoiding the winding of the wiring Or bending and wear, etc., improve the service life of the wiring, and at the same time, in the process of opening and closing the door body 2, it is also possible to avoid collision and friction between the wiring module 3 and other parts of the door body 2, reduce noise, and improve service life.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Refrigerator Housings (AREA)

Abstract

本发明提供一种具有走线模块的冰箱,包括箱体、门体、将箱体的至少部分走线引导至门体的走线模块;所述走线模块具有与所述门体活动连接的活动端,所述活动端与所述门体中的一个上设有限位柱、另一个上设有与所述限位柱相配合的限位槽;避免走线产生缠绕或者折弯磨损等。

Description

具有走线模块的冰箱 技术领域
本发明涉及制冷设备领域,尤其涉及一种具有走线模块的冰箱。
背景技术
随着冰箱的智能化及多功能化的发展,冰箱门体上通常会设置一些功能模块,例如冰水模块、触控模块等,该些功能模块通常需要通过走线实现与箱体中的控制模块之间的通讯连接,以实现对门体上各功能模块的供电。
现有的冰箱中,一般通过门体的上铰链来实现走线,即,上铰链的铰链轴具有沿上下方向贯穿设置的贯穿孔,箱体上引出的走线穿过所述贯穿孔并延伸至所述门体上,以与门体上的各功能模块相对接。但是,受限于铰链轴的尺寸,贯穿孔的尺寸无法做到很大,导致走线的粗细以及走线的数量受到限制,特别是带有门体制冰功能的冰箱,较粗的水管也需要经所述贯穿孔门体上的冰水模块相对接,此时,仅通过上铰链无法实现所有走线的连接。
有鉴于此,有必要提供一种新的具有走线模块的冰箱以解决上述问题。
发明内容
本发明的目的在于提供一种具有走线模块的冰箱。
为实现上述发明目的,本发明采用如下技术方案:一种具有走线模块的冰箱,包括箱体、与所述箱体相配合且能绕旋转轴旋转的门体、将箱体的至少部分走线引导至门体的走线模块;所述走线模块具有与所述门体活动连接的活动端,所述活动端与所述门体中的一个上设有限位柱、另一个上设有与所述限位柱相配合的限位槽,在开关所述门体的过程中,所述限位柱沿所述限位槽移动。
作为本发明进一步改进的技术方案,所述限位槽设于所述门体上,所述限位槽自前向后且向所述旋转轴所在的位置倾斜延伸。
作为本发明进一步改进的技术方案,所述限位槽设于所述门体的顶壁上,且所述限位槽的槽口向上开放,所述限位柱自所述活动端向下突伸至所述限位槽内。
作为本发明进一步改进的技术方案,所述门体内具有用以收容所述走线模块的收容腔,在开关所述门体的过程中,所述走线模块均位于所述收容腔内。
作为本发明进一步改进的技术方案,所述收容腔自所述门体的顶壁向下凹陷形成。
作为本发明进一步改进的技术方案,所述走线模块还具有与所述活动端相对设置的枢转端,所述枢转端枢转连接于所述箱体上。
作为本发明进一步改进的技术方案,所述冰箱还包括固定于所述箱体上的铰链板,所述枢转端枢转连接于所述铰链板上。
作为本发明进一步改进的技术方案,所述冰箱还包括固定于所述箱体上且朝向所述门体突伸的转接件,所述枢转端转动连接于所述转接件的前端;所述箱体的走线依次经所述转接 件、走线模块延伸至所述门体。
作为本发明进一步改进的技术方案,所述转接件和/或所述走线模块内具有用以容纳所述走线的余量的容纳腔,在开关门过程中,走线的余量收容于所述容纳腔内。
作为本发明进一步改进的技术方案,所述冰箱还包括固定于所述箱体上的铰链板,所述旋转轴设于所述铰链板上,所述门体通过所述旋转轴转动连接于所述铰链板上;所述转接件与所述铰链板相并排设置,且所述转接件与所述铰链板之间设有将所述转接件与所述铰链板连接在一起的连接结构。
作为本发明进一步改进的技术方案,所述连接结构包括自所述转接件靠近所述铰链板的一端朝向所述铰链板突伸的第一限位壁、第二限位壁,所述第一限位壁与所述第二限位壁沿上下方向间隔设置,所述铰链板卡合于所述第一限位壁与所述第二限位壁之间。
作为本发明进一步改进的技术方案,所述旋转轴具有沿其轴向贯穿设置的通孔,所述通孔用以将箱体的至少部分走线引导至门体;所述转接件朝向所述旋转轴的一侧设有至少一个用以固定走线的固定件。
作为本发明进一步改进的技术方案,所述固定件为L型卡扣。
作为本发明进一步改进的技术方案,所述冰箱还包括固定于所述箱体上的铰链盒,所述转接件固定于所述铰链盒上,且所述铰链盒完全覆盖所述转接件。
作为本发明进一步改进的技术方案,所述走线模块包括围设形成容纳走线的走线腔的第一壳体、第二壳体,所述第一壳体与所述第二壳体的一端通过卡合结构连接,另一端通过紧固件固定连接。
作为本发明进一步改进的技术方案,所述卡合结构包括设于所述第一壳体与第二壳体中的一个上的凸柱、设于另一个上的卡合槽,所述卡合槽沿所述走线模块的长度方向延伸,且所述卡合槽与所述走线模块的端部相对应的一端具有供所述凸柱进出的卡合口。
本发明的有益效果是:本发明中的冰箱,一方面另外设置走线模块,减少了现有技术中的铰链走线的限制,能够灵活调节走线的延伸轨迹,避免卡线;另一方面,本发明中的走线模块通过相互配合的限位柱以及限位槽实现所述活动端与所述门体之间的活动连接,结构比较简单,在开关所述门体的过程中,所述限位槽引导所述限位柱的移动,带动所述走线模块以及位于所述走线模块内的走线规律地移动,避免了走线产生缠绕或者折弯磨损等,提高走线的使用寿命,同时,开关门体的过程中,也能够避免所述走线模块与门体的其他部件之间产生碰撞、摩擦,减少噪音,提高使用寿命。
附图说明
图1是本发明中的冰箱的结构示意图(门体处于关闭状态)。
图2是图1中A处的放大图。
图3是本发明中的冰箱的结构示意图(门体处于打开状态)。
图4是图3中B处的放大图。
图5是图3中的冰箱移开第一铰链盒后的结构示意图。
图6是图5中C处的放大图。
图7是图3中走线模块、转接件以及中铰链盒相配合的结构示意图。
图8是本发明中的转接件的结构示意图。
图9是本发明中的走线模块的分解图。
具体实施方式
以下将结合附图所示的各实施方式对本发明进行详细描述,请参照图1-图9所示,为本发明的较佳实施方式。但应当说明的是,这些实施方式并非对本发明的限制,本领域普通技术人员根据这些实施方式所作的功能、方法、或者结构上的等效变换或替代,均属于本发明的保护范围之内。
需要说明的是,除非另有明确的规定和限定,术语“连接”应作广义理解,例如,连接可以是直接连接或者通过中间媒介间接连接,可以是固定连接也可以是活动连接或者可拆卸连接或者一体式连接,对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本实用新型中的具体含义。
请参图1-图2,结合图6所示,本发明提供一种具有走线模块3的冰箱100,包括箱体1、与所述箱体1相配合且能绕旋转轴61转动的门体2、将自箱体1内引出的至少部分走线引导至门体2的走线模块3,引导至门体2内的走线与门体2上的功能模块相对接,以给门体2上的功能模块供电。
本发明中,另外设置走线模块3,减少了现有技术中的铰链走线的限制,能够灵活调节走线的延伸轨迹,避免卡线。
具体地,所述走线包括但不限于线缆、水管、凝露管等。
所述走线模块3具有与所述门体2活动连接的活动端31,随着门体2的开关动作,所述活动端31可相对所述门体2移动,进而使得位于所述走线模块3中的走线也可随着门体2的开关自由活动,所述走线模块3能够对其内的走线进行导向,使走线在开关门过程中随走线模块3规律地移动,避免了走线产生缠绕或者折弯磨损等,提高走线的使用寿命。
进一步地,结合图3-图4所示,所述活动端31与所述门体2中的一个上设有限位柱311、另一个上设有与所述限位柱311相配合的限位槽21,即,通过相互配合的限位柱311以及限位槽21实现所述活动端31与所述门体2之间的活动连接,结构比较简单。
在开关所述门体2的过程中,所述限位槽21引导所述限位柱311的移动,所述限位柱311沿所述限位槽21移动的过程中,带动所述走线模块3以及位于所述走线模块3内的走线规律地移动,避免了走线产生缠绕或者折弯磨损等,提高走线的使用寿命,同时,开关门体2的过程中,也能够避免所述走线模块3与门体2的其他部件之间产生碰撞、摩擦,减少噪音,提高使用寿命。
于图4所示的具体实施方式中,所述限位柱311设置于所述活动端31,所述限位槽21 对应设置于所述门体2上,可以理解的是,所述门体2上的可设置空间较大且较灵活,能够简化所述限位槽21的设置,且能够小型化所述走线模块3。当然,并不以此为限,可以理解的是,于其他实施方式中,所述限位柱311也可以设置于所述门体2上,所述限位槽21对应设置于所述走线模块3上。
进一步地,在所述限位槽21设置于所述门体2上的实施方式中,所述限位槽21自前向后且向所述旋转轴61倾斜延伸,使所述门体2的开关不受所述走线模块3的限制,使所述门体2能够自由开关。
当然,所述限位槽21并不限于上述的延伸方向,可以根据开关门体2的过程中,所述限位柱311的运动轨迹进行适应性调整。
具体地,所述限位槽21设于所述门体2的顶壁上,且所述限位槽21的槽口向上开放,所述限位柱311自所述活动端31向下突伸,简化所述限位槽21以及所述限位柱311的设置。当然,并不以此为限,可以理解的是,所述限位槽21的槽口方向与所述限位柱311的突伸方向只要相对应即可,且所述限位柱311也可以设置为弯折状,只要使所述限位柱311的端部能够自所述槽口突伸入所述限位槽21内即可。
进一步地,所述门体2内具有用以收容所述走线模块3的收容腔22,在开关所述门体2的过程中,所述走线模块3均位于所述收容腔22内,即,在开关门体2的过程中,所述走线模块3均不外露,从而,能够达到隐藏式设置所述走线模块3的效果,可避免走线模块3影响所述冰箱100的外观及冰箱100的正常使用。
于一具体实施方式中,所述收容腔22自所述门体2的顶壁向下凹陷形成,所述限位槽21形成于所述收容腔22的底部。
进一步地,所述冰箱100还包括与所述收容腔22相配合的遮蔽盖4,所述遮蔽盖4通过螺钉等紧固件36固定于所述门体2上且遮蔽所述收容腔22,提高所述冰箱100整体的外观效果,同时,所述遮蔽盖4能够限制所述走线模块3向上移动,将所述限位柱311限位于所述限位槽21内,以防所述限位柱311脱出,提高所述走线盒移动的稳定性。
进一步地,请参图2所示,所述走线模块3还具有与所述活动端31相对设置的枢转端32,所述枢转端32枢转连接于所述箱体1上,在开关所述门体2的过程中,所述走线模块3绕所述枢转端32转动,同时,所述活动端31沿所述限位槽21移动,能够限制所述走线模块3的移动范围,增强所述走线模块3移动的可靠性以及稳定性。当然,并不以此为限,可以理解的是,所述走线模块3上与所述活动端31相对的一端也可以设置为固定端,即,所述走线模块3固定连接于箱体1上。
进一步地,请参图5-图8所示,所述冰箱100还包括固定于所述箱体1上且朝向所述门体2突伸的转接件5,所述枢转端32转动连接于所述转接件5的前端,所述箱体1的走线依次经所述转接件5、走线模块3延伸至所述门体2,实现所述走线模块3与所述箱体1之间的间接枢转连接,且使所述走线模块3能够始终收容于所述收容腔22内,达到隐藏式 设置所述走线模块3的效果。当然,并不以此为限,可以理解的是,所述枢转端32也可以枢转连接于固定至箱体上的铰链板上,或者,在不要求所述走线模块3始终收容于所述收容腔22内的实施方式中,所述枢转端32也可以直接与所述箱体1相枢转连接。
可以理解的是,在开关所述门体2的过程中,所述转接件5的前端也不会脱出所述收容腔22,以使所述走线模块3始终位于所述收容腔22内,可避免走线模块3影响所述冰箱100的外观及冰箱100的正常使用。
于一具体实施方式中,所述转接件5内具有供所述走线穿过的走线槽51,对经过所述转接件5的走线具有一定的导向以及支撑作用。当然,并不以此为限,于其他实施方式中,所述转接件5也可以是类似铰链板的板状结构,所述走线经过并支撑于所述转接件5的上表面后经所述走线模块3延伸至门体2内。
进一步地,所述转接件5和/或所述走线模块3内具有用以容纳所述走线的余量的容纳腔52,在开关门过程中,走线的余量收容于所述容纳腔52内,能够避免走线的过度拉伸,提高走线的使用寿命。
具体地,在所述转接件5内设有所述容纳腔52时,所述容纳腔52位于所述转接件5靠近所述枢转端32的部分,且,所述容纳腔52位于在开门过程中所述转接件5与所述走线模块3相远离的一侧,在开门过程中,靠近所述枢转端32的走线会向背离门体2的打开方向的方向弯折并收容于所述容纳腔52内,能够减少位于所述走线模块3以及所述转接件5内的走线沿其轴向的位移,防止走线的过度拉伸,提高走线的使用寿命。
在所述走线模块3内设有所述容纳腔52时,所述容纳腔52位于所述走线模块3靠近所述枢转端32的部分,且,所述容纳腔52位于在开门过程中所述走线模块3与所述转接件5相远离的一侧,在开门过程中,靠近所述枢转端32的走线会向背离门体2的打开方向的方向弯折并收容于所述容纳腔52内,能够减少位于所述走线模块3以及所述转接件5内的走线沿其轴向的位移,防止走线的过度拉伸,提高走线的使用寿命。
于一具体实施方式中,所述容纳腔52设于所述转接件5内,当然,并不以此为限。
进一步地,所述冰箱100还包括固定于所述箱体1上的铰链板6,所述旋转轴61设于所述铰链板6上,所述门体2上设有与所述旋转轴61相配合的转轴孔,所述门体2通过所述旋转轴61以及所述转轴孔之间的配合转动连接于所述铰链板6上,以使所述门体2能够通过旋转打开或关闭。
本实施方式中,所述转接件5与所述铰链板6相分体设置,所述转接件5可采用塑料材质,能够降低成本;当然,并不以此为限,于其他实施方式中,所述转接件5与所述铰链板6也可以一体设置,即,所述转接件5为所述铰链板6的一部分。
进一步地,所述转接件5与所述铰链板6相并排设置,且所述转接件5与所述铰链板6之间设有将所述转接件5与所述铰链板6连接在一起的连接结构7,可知的是,所述铰链板6一般为刚性较大的金属制成,承重能力较好,通过连接结构7将所述转接件5连接至所 述铰链板6上,能够通过所述铰链板6对所述转接件5进行限位,限制所述转接件5沿上下方向晃动,从而,能够防止所述走线模块3沿上下方向发生错位,增强所述走线模块3的稳定性。
当然,上述的连接结构7并不限于所述转接件5与所述铰链板6相分体设置的实施方式中。在所述转接件5与所述铰链板6一体设置的实施方式中,也可以理解为所述转接件5与所述铰链板6通过一体设置的连接结构7相连接在一起。
于一具体实施方式中,所述连接结构7包括自所述转接件5靠近所述铰链板6的一端朝向所述铰链板6突伸的第一限位壁71、第二限位壁72,所述第一限位壁71与所述第二限位壁72沿上下方向间隔设置,所述铰链板6卡合于所述第一限位壁71与所述第二限位壁72之间。在所述第一限位壁71位于第二限位壁72上侧的实施方式中,所述铰链板6的上表面抵持于所述第一限位壁71上,所述铰链板6的下表面抵持于所述第二限位壁72上,以限制所述转接件5沿上下方向晃动。
具体地,所述第一限位壁71包括沿前后方向间隔设置的至少两个子限位壁,以分别限位所述转接件5,提高所述走线模块3的稳定性。当然,并不以此为限。
当然,并不以此为限,可以理解的是,于其他实施方式中,所述连接结构7也可以设置于所述铰链板6上,以限位所述转接件5。
进一步地,所述冰箱100还包括固定于所述箱体1上的铰链盒8,所述转接件5固定于所述铰链盒8上,通过固定于所述箱体1上的铰链盒8实现所述转接件5与箱体1之间的固定连接,能够减少所述箱体1上的连接部,简化所述冰箱100的组装。
进一步地,所述转接件5固定于所述铰链盒8上后,所述铰链盒8完全覆盖所述转接件5,以完全遮蔽所述转接件5,增强所述冰箱100的外观效果。
具体地,所述铰链盒8包括中铰链盒81、位于所述中铰链盒81的端部的第一铰链盒82,所述转接件5固定于所述中铰链盒81上,在所述转接件5以及所述铰链盒8组装完成后,所述第一铰链盒82遮蔽所述铰链板6以及部分所述转接件5,所述中铰链盒81遮蔽所述转接件5的其他部分结构。
进一步地,所述中铰链盒81具有朝向所述门体2突伸且用以收容所述转接件5的收容部811,所述收容部811的形状与所述转接件5的形状相适配。
具体地,所述收容部811包括遮蔽所述转接件5的上表面的上壁、位于所述转接件5的下表面的下壁、连接上壁与下壁的一侧的连接壁,在将所述转接件5固定于所述铰链盒8上后,所述转接件5朝向所述门体2突伸的部分结构收容于所述收容部811内,且所述转接件5支撑于所述下壁上。
于一具体实施方式中,所述下壁朝向所述铰链板6突伸形成上述的第二限位壁72,简化所述转接件5与所述铰链板6之间的连接结构7。当然,并不以此为限。
进一步地,所述转接件5与所述收容部811共同形成所述走线槽51。具体地,所述转 接件5与所述连接壁相对应的一侧呈开放状,可先将所述走线经所述转接件5朝向所述连接壁的一侧装入所述转接件5内,然后将所述转接件5与所述中铰链盒81相组装,形成引导并限位所述走线的所述走线槽51,便于所述走线的排布。
进一步地,所述旋转轴61具有沿其轴向贯穿设置的通孔,所述通孔用以将箱体1的至少部分走线引导至门体2,即,本发明中箱体1内引出的走线部分经所述铰链板6延伸至门体2,另一部分经所述走线模块3走延伸至门体2,降低了现有的铰链走线的限制,能够灵活调节各个走线的延伸轨迹,避免卡线。
进一步地,所述转接件5朝向所述铰链板6的一侧设有至少一个用以固定走线的固定件53,需要经所述通孔的管线先通过所述固定件53固定整理后,再穿过所述通孔,避免自所述箱体1引出的管线出现错乱的现象。
于一具体实施方式中,所述固定件53为L型卡扣。当然,并不以此为限。
进一步地,请参图9所示,所述走线模块3包括围设形成容纳走线的走线腔的第一壳体33、第二壳体34,所述第一壳体33与所述第二壳体34的一端通过卡合结构35连接,另一端通过紧固件36固定连接。
具体地,所述卡合结构35包括设于所述第一壳体33与第二壳体34中的一个上的凸柱351、设于另一个上的卡合槽352,所述卡合槽352沿所述走线模块3的长度方向延伸,且所述卡合槽352与所述走线模块3的端部相对应的一端具有供所述凸柱351进出的卡合口,在组装所述第一壳体33与所述第二壳体34时,先将所述凸柱351自所述卡合口卡入所述卡合槽352内,然后将所述第一壳体33与第二壳体34的另一端上与紧固件36相配合的紧固孔相对准后,拧入紧固件36即可。
在将第一壳体33与第二壳体34组装形成走线模块3后,再将所述走线模块3的枢转端32转动连接至转接件5上即可,组装简便。
在安装走线时,首先将所述第一壳体33与所述第二壳体34相拆分开,在第一壳体33内放入所述走线,使走线自第一壳体33与活动端31相对应的一端引出后,将所述第一壳体33与所述第二壳体34相组装在一起,形成引导并收容所述走线的走线腔,便于所述走线的排布。
综上所述,本发明中的冰箱100,一方面另外设置走线模块3,减少了现有技术中的铰链走线的限制,能够灵活调节走线的延伸轨迹,避免卡线;另一方面,本发明中的走线模块3通过相互配合的限位柱311以及限位槽21实现所述活动端31与所述门体2之间的活动连接,结构比较简单,在开关所述门体2的过程中,所述限位槽21引导所述限位柱311的移动,带动所述走线模块3以及位于所述走线模块3内的走线规律地移动,避免了走线产生缠绕或者折弯磨损等,提高走线的使用寿命,同时,开关门体2的过程中,也能够避免所述走线模块3与门体2的其他部件之间产生碰撞、摩擦,减少噪音,提高使用寿命。
应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立 的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施方式中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。
上文所列出的一系列的详细说明仅仅是针对本发明的可行性实施方式的具体说明,它们并非用以限制本发明的保护范围,凡未脱离本发明技艺精神所作的等效实施方式或变更均应包含在本发明的保护范围之内。

Claims (15)

  1. 一种具有走线模块的冰箱,包括箱体、与所述箱体相配合且能绕旋转轴旋转的门体、将箱体的至少部分走线引导至门体的走线模块;其特征在于:所述走线模块具有与所述门体活动连接的活动端,所述活动端与所述门体中的一个上设有限位柱、另一个上设有与所述限位柱相配合的限位槽,在开关所述门体的过程中,所述限位柱沿所述限位槽移动。
  2. 如权利要求1所述的具有走线模块的冰箱,其特征在于:所述限位槽设于所述门体上,所述限位槽自前向后且向所述旋转轴所在的位置倾斜延伸。
  3. 如权利要求1所述的具有走线模块的冰箱,其特征在于:所述限位槽设于所述门体的顶壁上,且所述限位槽的槽口向上开放,所述限位柱自所述活动端向下突伸至所述限位槽内。
  4. 如权利要求1所述的具有走线模块的冰箱,其特征在于:所述门体内具有用以收容所述走线模块的收容腔,在开关所述门体的过程中,所述走线模块均位于所述收容腔内。
  5. 如权利要求4所述的具有走线模块的冰箱,其特征在于:所述收容腔自所述门体的顶壁向下凹陷形成。
  6. 如权利要求1所述的具有走线模块的冰箱,其特征在于:所述走线模块还具有与所述活动端相对设置的枢转端,所述枢转端枢转连接于所述箱体上。
  7. 如权利要求6所述的具有走线模块的冰箱,其特征在于:所述冰箱还包括固定于所述箱体上的铰链板,所述枢转端枢转连接于所述铰链板上。
  8. 如权利要求6所述的具有走线模块的冰箱,其特征在于:所述冰箱还包括固定于所述箱体上且朝向所述门体突伸的转接件,所述枢转端转动连接于所述转接件的前端;所述箱体的走线依次经所述转接件、走线模块延伸至所述门体。
  9. 如权利要求8所述的具有走线模块的冰箱,其特征在于:所述转接件和/或所述走线模块内具有用以容纳所述走线的余量的容纳腔,在开关门过程中,走线的余量收容于所述容纳腔内。
  10. 如权利要求8所述的具有走线模块的冰箱,其特征在于:所述冰箱还包括固定于所述箱体上的铰链板,所述旋转轴设于所述铰链板上,所述门体通过所述旋转轴转动连接于所述铰链板上;所述转接件与所述铰链板相并排设置,且所述转接件与所述铰链板之间设有将所述转接件与所述铰链板连接在一起的连接结构。
  11. 如权利要求10所述的具有走线模块的冰箱,其特征在于:所述连接结构包括自所述转接件靠近所述铰链板的一端朝向所述铰链板突伸的第一限位壁、第二限位壁,所述第一限位壁与所述第二限位壁沿上下方向间隔设置,所述铰链板卡合于所述第一限位壁与所述第二限位壁之间。
  12. 如权利要求8所述的具有走线模块的冰箱,其特征在于:所述旋转轴具有沿其轴向贯穿设置的通孔,所述通孔用以将箱体的至少部分走线引导至门体;所述转接件朝向所述旋 转轴的一侧设有至少一个用以固定走线的固定件。
  13. 如权利要求8所述的具有走线模块的冰箱,其特征在于:所述冰箱还包括固定于所述箱体上的铰链盒,所述转接件固定于所述铰链盒上,且所述铰链盒完全覆盖所述转接件。
  14. 如权利要求1所述的具有走线模块的冰箱,其特征在于:所述走线模块包括围设形成容纳走线的走线腔的第一壳体、第二壳体,所述第一壳体与所述第二壳体的一端通过卡合结构连接,另一端通过紧固件固定连接。
  15. 如权利要求14所述的具有走线模块的冰箱,其特征在于:所述卡合结构包括设于所述第一壳体与第二壳体中的一个上的凸柱、设于另一个上的卡合槽,所述卡合槽沿所述走线模块的长度方向延伸,且所述卡合槽与所述走线模块的端部相对应的一端具有供所述凸柱进出的卡合口。
PCT/CN2022/117156 2021-12-03 2022-09-06 具有走线模块的冰箱 WO2023098200A1 (zh)

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