WO2022206117A1 - 用于冰箱门体的竖梁组件及冰箱 - Google Patents

用于冰箱门体的竖梁组件及冰箱 Download PDF

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Publication number
WO2022206117A1
WO2022206117A1 PCT/CN2022/071767 CN2022071767W WO2022206117A1 WO 2022206117 A1 WO2022206117 A1 WO 2022206117A1 CN 2022071767 W CN2022071767 W CN 2022071767W WO 2022206117 A1 WO2022206117 A1 WO 2022206117A1
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WO
WIPO (PCT)
Prior art keywords
vertical beam
limiting
door body
end cover
main body
Prior art date
Application number
PCT/CN2022/071767
Other languages
English (en)
French (fr)
Inventor
吕鹏
张�浩
王海娟
刘站站
赵坤坤
宋向鹏
Original Assignee
青岛海尔电冰箱有限公司
海尔智家股份有限公司
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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 WO2022206117A1 publication Critical patent/WO2022206117A1/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
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers
    • F25D23/028Details
    • 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
    • F25D11/02Self-contained movable devices, e.g. domestic refrigerators with cooling compartments at different temperatures
    • 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
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

Definitions

  • the invention relates to the field of household appliances, in particular to a vertical beam assembly for a refrigerator door body and a refrigerator.
  • An object of the present invention is to provide a vertical beam assembly for a refrigerator door body and a refrigerator that overcome the above problems or at least partially solve the above problems.
  • a further object of the present invention is to make the vertical beam assembly have a limit state and a rotation state corresponding to the opening and closing state of the refrigerator door, so as to prevent the position of the vertical beam assembly from changing after the refrigerator door is opened, thereby ensuring The normal opening and closing of the refrigerator door.
  • Another further object of the present invention is to improve the thermal insulation performance of the vertical beam assembly.
  • the present invention provides a vertical beam assembly for a refrigerator door body, comprising: a vertical beam body; a hinge assembly for rotatably connecting the vertical beam main body to the door body, and the hinge assembly includes a vertical beam disposed on the vertical beam A rotating shaft member inside the main body, one end of the rotating shaft member is provided with a limiting hole, and a first limiting portion is arranged in the limiting hole; the end cover is telescopically arranged on the top end of the vertical beam main body, and extends to the limiting hole for a limit.
  • the limiting column is provided with a second limiting portion, and the limiting column moves up and down along the limiting hole along with the end cover, so that the first limiting portion cooperates with the second limiting portion to form a limiting state and form a disengagement. rotation state.
  • the rotating shaft member includes: a first shaft portion, which is arranged inside the vertical beam body along the longitudinal direction of the vertical beam body, and a limiting hole is arranged at the top end of the first shaft portion; wherein the first limiting portion is arranged in the limiting hole On the peripheral wall of the , the second limiting portion is arranged in the circumferential direction of the limiting column, and the second limiting portion matches the height of the second limiting portion when the end cover is in an extended state, thereby forming a limiting state.
  • the gap is configured so that the first limit part has a certain rotation space; the first limit part is in the back position of the end cover. In the retracted state, it is disengaged from the second limiting portion, and rotates in the rotating space, thereby forming a rotating state.
  • the lower surface of the end cover is also provided with a guide column
  • the vertical beam main body is also provided with a positioning block under the end cover. Move to guide the end cap to move up and down along the axis of the positioning hole.
  • a first spring is sleeved on the guide column, one end of the first spring is in conflict with the lower surface of the end cover, and the other end is in conflict with the upper surface of the positioning block to apply upward elastic force to the end cover.
  • the hinge assembly further includes: a second spring, arranged below the second shaft portion , used to support the second shaft portion to apply upward elastic force to the second shaft portion; and a fixed portion, extending from the first shaft portion, mounted on the door body to rotatably connect the vertical beam main body to the door body.
  • the main body of the vertical beam is also filled with thermal insulation material, and the rotating shaft member and the limiting column are arranged on the side of the main body of the vertical beam close to the door body to provide space for the thermal insulation material to improve the thermal insulation performance of the vertical beam main body.
  • At least one clip is provided on the side wall of the vertical beam main body, and at least one clip is correspondingly provided on the end cover, and each clip is matched with each clip to limit the end cover extending out of the vertical beam.
  • the maximum extension length of the body is provided on the side wall of the vertical beam main body, and at least one clip is correspondingly provided on the end cover, and each clip is matched with each clip to limit the end cover extending out of the vertical beam.
  • the end cover is also provided with a guide protrusion, and one end of the guide protrusion away from the door body is an inclined surface, so that when the guide protrusion guides the vertical beam body to turn over, the end cover is driven to expand and contract.
  • the present invention also provides a refrigerator, comprising: any one of the above-mentioned vertical beam assemblies for refrigerator doors.
  • a limit column is arranged on the end cover at the top of the vertical beam assembly, a limit hole is arranged on the shaft member in the hinge assembly, and the limit column is arranged along the
  • the upward and downward movement of the limiting hole can form a locked state and a rotating state respectively, so as to limit the overturning position of the vertical beam assembly, avoid the change of the overturned position of the vertical beam assembly after the refrigerator door body is opened, and thus ensure the safety of the refrigerator door body. Open and close normally.
  • the first limiting portion on the first shaft portion is provided with the second limiting portion on the limiting portion when the end cover is extended.
  • the height of the refrigerator is adapted so that the first limit part and the second limit part interfere, thereby restricting the vertical beam assembly from being unable to rotate relative to the door body, ensuring that the vertical beam assembly is close to the door when the refrigerator door body is open. The state of the body, thereby ensuring the normal closing of the refrigerator door body.
  • a notch for giving way to the first limiting portion is provided on the limiting column, and the notch is configured so that the first limiting portion has a notch.
  • a certain rotation space is provided, so that the first shaft portion can be rotated relative to the limiting column, thereby ensuring the normal overturning of the vertical beam assembly.
  • the rotating shaft member and the limiting column on the side of the vertical beam main body close to the refrigerator door body, there is more space in the vertical beam main body. It is used to fill the insulation material, thereby improving the insulation performance of the vertical beam assembly.
  • FIG. 1 is a schematic structural diagram of a vertical beam assembly for a refrigerator door body according to an embodiment of the present invention
  • Fig. 2 is a partial enlarged view of area A in Fig. 1;
  • FIG. 3 is a schematic structural diagram of an end cover used in a vertical beam assembly of a refrigerator door body according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of a first shaft portion in a vertical beam assembly for a refrigerator door body according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of the installation structure of the end cover and the first shaft portion according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of the installation structure of the end cover and the first shaft portion at another angle according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of another angle of a vertical beam assembly for a refrigerator door body according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a refrigerator according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a refrigerator from another angle according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of an inner tank in a refrigerator according to an embodiment of the present invention.
  • FIG. 11 is a partial enlarged view of area B in FIG. 10 .
  • FIG. 1 is a schematic structural diagram of a vertical beam assembly 20 for a refrigerator door body according to an embodiment of the present invention.
  • FIG. 2 is a partial enlarged view of area A in FIG. 1 .
  • FIG. 1 in order to better illustrate the structure inside the vertical beam body 200 , the front side plate of the vertical beam body 200 is hidden.
  • the vertical beam assembly 20 may generally include: a vertical beam main body 200 , a hinge assembly 300 , and an end cover 400 .
  • the hinge assembly 300 is used to rotatably connect the vertical beam main body 200 to the door body 100, and the hinge assembly 300 includes a rotating shaft member 310 disposed inside the vertical beam main body 200, and one end of the rotating shaft member 310 defines a limiting hole 321,
  • the limiting hole 321 is provided with a first limiting portion 322 ;
  • the end cover 400 is telescopically arranged on the top of the vertical beam main body 200 , and a limiting column 410 extends toward the limiting hole 321 , and the limiting column 410 is provided with a
  • the second limiting portion 411, and the limiting post 410 moves up and down along the limiting hole 321 along with the end cap 400, so that the first limiting portion 322 cooperates with the second limiting portion 411 to form a limiting state and disengages form a rotating state .
  • a limiting column 410 is provided on the end cover 400 of the vertical beam assembly 20 , and a limiting hole 321 is provided on the rotating shaft member 310 of the hinge assembly 300 .
  • the limiting hole 321 and the limiting post 410 are respectively provided with a first limiting portion 322 and a second limiting portion 411 .
  • the limit post 410 When the limit post 410 moves up and down along the limit hole 321 along with the end cover 400 , it can form a limit state and a rotation state that are compatible with the opening and closing state of the door body 100 , so as to limit the turning position of the vertical beam assembly 20 , to prevent the vertical beam assembly 20 from changing the inversion position after the door body 100 is opened, and to ensure that the vertical beam assembly 20 is in the correct inversion position, so that the door body 100 can be opened and closed normally.
  • FIG. 3 is a schematic structural diagram of an end cover 400 in a vertical beam assembly 20 for a refrigerator door body according to an embodiment of the present invention.
  • 4 is a schematic structural diagram of the first shaft portion 320 in the vertical beam assembly 20 for a refrigerator door according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of the installation structure of the end cap 400 and the first shaft portion 320 according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of another angle of the installation structure of the end cap 400 and the first shaft portion 320 according to an embodiment of the present invention.
  • the rotating shaft member 310 may include: a first shaft portion 320 disposed inside the vertical beam main body 200 along the longitudinal direction of the vertical beam main body 200 , and a limiting hole 321 is disposed at a top end of the first shaft portion 320 .
  • the first limiting portion 322 is disposed on the peripheral wall of the limiting hole 321
  • the second limiting portion 411 is disposed in the circumferential direction of the limiting column 410
  • the first limiting portion 322 is in contact with the first limiting portion 322 when the end cover 400 is in the extended state.
  • the heights of the two limiting portions 411 are adapted to form a limiting state.
  • a first limiting portion 322 is provided on the peripheral wall of the limiting hole 321
  • a second limiting portion 411 is provided on the circumferential direction of the limiting post 410 .
  • the heights of the first limiting portion 322 and the second limiting portion 411 are the same when the end cover 400 is in the extended state, so that the first limiting portion 322 and the second limiting portion 411 are in the extended state of the end cover 400 ( That is, when the door body 100 is in the fully opened state), interference is formed, so that the rotation of the limiting column 410 relative to the first shaft portion 320 is restricted, thereby ensuring that the vertical beam assembly 20 always abuts against the door body 100 when the door body 100 is opened.
  • the door body 100 further ensures the normal closing of the door body 100 .
  • the limiting post 410 has a notch for giving way to the first limiting portion 322 in the circumferential direction, and the notch is configured so that the first limiting portion 322 has a certain rotation space; the first limiting portion 322 is located in the end cap 400 When in the retracted state, it is disengaged from the second limiting portion 411 and rotates in the rotating space, thereby forming a rotating state.
  • a notch for giving way to the first limiting portion 322 is provided in the circumferential direction of the limiting portion, and the notch is configured so that the first limiting portion 322 has a certain rotation space.
  • the lower surface of the end cover 400 is also provided with a guide post 420, and the vertical beam main body 200 is further provided with a positioning block 430 below the end cover 400.
  • the positioning hole moves up and down to guide the end cover 400 to move up and down along the axis direction of the positioning hole.
  • the vertical beam main body 200 is further provided with a positioning block 430 below the end cover 400 , and the positioning block 430 may generally be from the side wall of the vertical beam main body 200 to the vertical beam The inside of the main body 200 is formed to extend.
  • the guide post 420 is provided on the lower surface of the end cover 400 and the positioning block 430 is provided with a positioning hole adapted to the guide post 420, so that the guide post 420 can extend into the positioning hole along the positioning The hole moves up and down, so that the end cap 400 is guided to move up and down along the axis of the positioning hole, which not only provides positioning for the end cap 400, but also improves the smoothness of the end cap 400 in expansion and contraction.
  • a plurality of guide posts 420 may also be provided on the lower surface of the end cap 400 to guide the telescopic extension of the end cap 400, which not only improves the positioning accuracy of the end cap 400, but also further improves the The smoothness of expansion and contraction of the end cover 400 is improved.
  • a first spring 421 is sleeved on the guide post 420 .
  • One end of the first spring 421 collides with the lower surface of the end cover 400 , and the other end collides with the upper surface of the positioning block 430 to apply upward elastic force to the end cover 400 .
  • a first spring 421 is sleeved on the guide post 420 , and one end of the first spring 421 is in conflict with the lower surface of the end cover 400 , and the other end is in conflict with the upper surface of the positioning block 430 .
  • the first spring 421 exerts an upward elastic force on the end cover 400 to ensure that the end cover 400 is always in the extended position when the end cover 400 is not subjected to external force (that is, when the door body 100 is not closed and the end cover 400 is not squeezed by the refrigerator 10 ). Therefore, the vertical beam assembly 20 is in a limited state, and its inversion position relative to the door body 100 cannot be changed, thereby ensuring the normal closing of the door body 100 .
  • the lower end surface of the first shaft portion 320 is a cam surface, and a positioning post 323 extends downward from the center of the lower end surface of the first shaft portion 320 .
  • the rotating shaft member 310 further includes: a second shaft portion 330 slidably sleeved on the positioning column 323 along the longitudinal direction of the vertical beam main body 200 , and the upper end surface of the second shaft portion 330 is opposite to the lower end surface of the first shaft portion 320 . mating cam surfaces.
  • the hinge assembly 300 further includes: a second spring 331 disposed below the second shaft portion 330 for supporting the second shaft portion 330 to apply upward elastic force to the second shaft portion 330; and a fixing portion 340, extending from the second shaft portion 330
  • a shaft portion 320 protrudes and is installed on the door body 100 to rotatably connect the vertical beam main body 200 to the door body 100 .
  • the lower end surface of the first shaft portion 320 and the upper end surface of the second shaft portion 330 located below the first shaft portion 320 are cam surfaces that cooperate with each other.
  • the first shaft portion 320 rotates relative to the vertical beam main body 200, it also slides relative to the second shaft portion 330 along the cam surface, thereby driving the second shaft portion 330 to move up and down along the longitudinal direction of the vertical beam main body 200.
  • the second spring 331 is arranged below the second shaft portion 330 to exert an upward elastic force on the second shaft portion 330, so that the second shaft portion 330 can move upward, thereby promoting the first shaft portion 320
  • the sliding relative to the second shaft portion 330 along the cam surface further promotes the rotation of the first shaft portion 320 relative to the vertical beam main body 200 .
  • the second shaft portion 330 is positioned by sleeves of the second shaft portion 330 on the positioning post 323 extending from the lower end surface of the first shaft portion 320 , thereby ensuring that the second shaft portion 330 is positioned.
  • the cam surface of the first shaft portion 320 matches the cam surface of the first shaft portion 320 .
  • a fixing portion 340 extends from the first shaft portion 320 in the lateral direction, and is installed on the door body 100 through the vertical beam main body 200 , so that the vertical beam main body 200 can rotate relative to the door body 100 .
  • the second shaft portion 330 can also provide an assisting force for the relative rotation of the first shaft portion 320, so that the vertical beam body 200 is closer on the door body 100.
  • the second shaft portion 330 can also provide An assist force makes the first shaft portion 320 rotate relatively, so that the vertical beam main body 200 is closer to the box of the refrigerator 10 .
  • the vertical beam main body 200 is also filled with thermal insulation material, and the rotating shaft member 310 and the limiting column 410 are both arranged on the side of the vertical beam main body 200 close to the door body 100 to provide space for the thermal insulation material, so as to improve the stability of the vertical beam main body 200 . Insulation performance.
  • the thermal insulation material is filled in the vertical beam main body 200 to improve the thermal insulation effect of the vertical beam main body 200 .
  • the rotating shaft member 310 and the limiting column 410 on the side of the vertical beam main body 200 close to the door body 100 , the position of the rotating shaft member 310 and the limiting column 410 in the vertical beam is reduced.
  • the space occupied within the body 200 provides room for thermal insulation.
  • FIG. 7 is a schematic structural diagram of another angle of a vertical beam assembly 20 for a refrigerator door body according to an embodiment of the present invention.
  • At least one clip 210 is provided on the side wall of the vertical beam main body 200 , and at least one clip portion 440 is correspondingly provided on the end cover 400 .
  • the maximum projecting length of the riser body 200 is provided on the side wall of the vertical beam main body 200 .
  • the sidewalls of the vertical beam main body 200 are oppositely provided with two snaps 210
  • the end cover 400 is provided with two snaps 440 correspondingly.
  • the two clips 210 are in contact with the two clipping parts 440 respectively, thereby limiting the maximum extension length of the end cover 400 out of the vertical beam main body 200 .
  • the length of the end cover 400 protruding from the vertical beam main body 200 is too large, which adversely affects the overturning of the vertical beam assembly 20 and the opening and closing of the door body 100 .
  • only one clip 210 and one clip 440 may be provided on the vertical beam assembly 20 .
  • the vertical beam assembly 20 may only be provided with a plurality of clips 210 and a plurality of clips 440 .
  • the specific number and location of the clips 210 and the clips 440 can be set according to actual requirements.
  • the end cover 400 is also provided with a guide protrusion 450, and one end of the guide protrusion 450 away from the door body 100 is an inclined surface, so that when the guide protrusion 450 guides the vertical beam main body 200 to turn over, it drives the end cover 400 to expand and contract.
  • guide protrusions 450 are provided on the end cover 400, so that the guide protrusions 450 are used to guide the overturning of the vertical beam assembly 20, so that the vertical beam assembly 20 can be relative to the door body 100 during the opening and closing process.
  • the door body 100 is turned over.
  • the end of the guide protrusion 450 away from the door body 100 (that is, the end of the guide protrusion 450 facing the interior of the refrigerator 10 when the door body 100 is ready to be closed) is an inclined surface, so that the door body 100 is closed , the inclined surface of the end cover 400 collides with the inner pot 120 of the refrigerator 10 .
  • the end cover 400 slides in the direction of the inclined surface under the action of the door body 100 and the bottom wall of the inner pot 120 , thereby driving the end cover 400 to move downward along the longitudinal direction of the vertical beam main body 200 .
  • the end cover 400 is set to retract correspondingly under the pressure of the inner pot 120 of the refrigerator 10, thereby driving the limiting column 410 to move downward, so that the first limiting portion 322 and the second limiting portion 411
  • the staggered position forms a rotating state, which ensures the normal rotation of the vertical beam assembly 20 .
  • FIG. 8 is a schematic structural diagram of a refrigerator according to an embodiment of the present invention.
  • 9 is a schematic structural diagram of a refrigerator from another angle according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of an inner tank in a refrigerator according to an embodiment of the present invention.
  • FIG. 11 is a partial enlarged view of area B in FIG. 10 .
  • the solution of this embodiment further provides a refrigerator 10 , and the refrigerator 10 includes any one of the above-mentioned vertical beam assemblies 20 for a refrigerator door.
  • the refrigerator 10 of this embodiment is configured with two storage compartments 110 distributed up and down in sequence, and two left and right opposite door bodies 100 are respectively installed at the openings of the two storage compartments 110 .
  • vertical beam assemblies 20 are respectively installed on the door body 100 on the left side of the refrigerator 10 .
  • FIG. 9 in order to better illustrate the matching structure of the vertical beam assembly 20 and the door body 100 , the door body 100 on the right side of the refrigerator 10 is hidden.
  • the door body 100 of the upper storage compartment 110 is in a closed state, and the vertical beam assembly 20 is in a parallel state with respect to the door body 100 (ie, the vertical beam assembly 20 is away from the door body 100 ).
  • the door body 100 of the lower storage compartment 110 is in an open state, and the vertical beam assembly 20 is in a vertical state relative to the door body 100 (that is, the vertical beam assembly 20 is close to the door body 100 ).
  • the top wall of the inner pot 120 of the storage compartment 110 is further provided with a guide groove 121 corresponding to the guide protrusion 450 on the end cover 400, so as to cooperate with the guide protrusion 450,
  • the vertical beam assembly 20 is guided to be inverted relative to the door body 100 .
  • the guide protrusion 450 can be smoothly inserted into the guide groove 121 only when the vertical beam assembly 20 is in a position close to the door body 100 and perpendicular to the door body 100; When the door body 100 is in a parallel position, the guide protrusion 450 cannot be inserted into the guide groove 121, so that the refrigerator 10 cannot be properly closed.
  • the vertical beam assembly 20 by setting the vertical beam assembly 20 in a limited state after the door body 100 is opened, the vertical beam assembly 20 cannot be turned over relative to the door body 100 to reach a position parallel to the door body 100, thereby ensuring that When the door body 100 is closed, the guide protrusions 450 can be smoothly inserted into the guide grooves 121 on the inner container 120 , thereby ensuring the normal closing of the door body 100 .
  • the inversion position of the vertical beam assembly 20 cannot be changed after the door body 100 is opened, thereby ensuring the normal closing of the door body 100 of the refrigerator 10 and avoiding The collision between the vertical beam assembly 20 and the refrigerator 10 can cause damage and further improve the user's experience.

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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

一种用于冰箱门体的竖梁组件及冰箱,该竖梁组件包括:竖梁主体;铰链组件,用于将竖梁主体可转动地连接至门体,并且铰链组件包括设置于竖梁主体内部的转轴件,转轴件的一端开设有限位孔,限位孔内设置有第一限位部;端盖,可伸缩地设置于竖梁主体的顶端,并且向限位孔伸出一限位柱,限位柱设置有第二限位部,并且限位柱随着端盖沿限位孔上下移动,使得第一限位部与第二限位部配合形成限位状态以及脱离配合形成转动状态。本发明的方案,通过在端盖以及铰链组件上设置限位柱以及限位孔,并设置竖梁组件能够形成限位状态以及转动状态,从而避免了竖梁组件在冰箱门体打开后的翻转位置再发生变化,进而保证了冰箱门体的正常开闭。

Description

用于冰箱门体的竖梁组件及冰箱 技术领域
本发明涉及家电领域,特别是涉及一种用于冰箱门体的竖梁组件及冰箱。
背景技术
现有技术中使用对开式门体组件的冰箱越来越多,但安装在对开式门体组件上的竖梁组件常常在冰箱门体打开后,由于用户误碰或其它原因导致其位置发生变化,使得竖梁组件的导向机构无法顺利地与冰箱内胆上的导向装置进行对接,从而导致冰箱门体无法正常关闭。此外,由于竖梁组件的位置已经发生变化,用户此时关闭冰箱门体,不仅无法正常关闭冰箱门体,而且容易导致竖梁组件与冰箱发生磕碰,从而对冰箱造成损伤。在这种情况下,用户想要顺利关闭冰箱门体,就必须将竖梁组件的位置重新调整至正确的位置,这显然严重影响了用户的使用体验。
发明内容
本发明的一个目的是要提供一种克服上述问题或者至少部分地解决上述问题的用于冰箱门体的竖梁组件及冰箱。
本发明一个进一步的目的是要使得竖梁组件拥有与冰箱门体的开闭状态相对应的限位状态以及转动状态,从而避免竖梁组件的位置在冰箱门体打开后再发生变化,进而保障冰箱门体的正常开闭。
本发明另一个进一步的目的是要提高竖梁组件的保温性能。
特别地,本发明提供了一种用于冰箱门体的竖梁组件,包括:竖梁主体;铰链组件,用于将竖梁主体可转动地连接至门体,并且铰链组件包括设置于竖梁主体内部的转轴件,转轴件的一端开设有限位孔,限位孔内设置有第一限位部;端盖,可伸缩地设置于竖梁主体的顶端,并且向限位孔伸出一限位柱,限位柱设置有第二限位部,并且限位柱随着端盖沿限位孔上下移动,使得第一限位部与第二限位部配合形成限位状态以及脱离配合形成转动状态。
进一步地,转轴件包括:第一轴部,沿竖梁主体的纵向方向设置于竖梁主体内部,并且限位孔设置于第一轴部的顶端;其中第一限位部设置于限位孔的周壁上,第二限位部设置于限位柱的周向上,并且第二限位部在端盖处 于伸出状态下与第二限位部高度相适配,从而形成限位状态。
进一步地,限位柱的周向上具有用于对第一限位部让位的缺口,并且缺口被配置成使第一限位部具有一定的转动空间;第一限位部在端盖处于回缩状态时与第二限位部脱离配合,并在转动空间内转动,从而形成转动状态。
进一步地,端盖的下表面还设置有导向柱,竖梁主体在端盖的下方还设置有定位块,定位块上设置有定位孔,导向柱伸入定位孔内,并沿着定位孔上下移动,以引导端盖沿定位孔的轴线方向上下移动。
进一步地,导向柱上套设有第一弹簧,第一弹簧的一端与端盖的下表面相抵触,另一端与定位块的上表面相抵触,以向端盖施加向上的弹力。
进一步地,第一轴部的下端面为一凸轮面,并且第一轴部的下端面的中心还向下延伸出一定位柱;转轴件还包括:第二轴部,沿竖梁主体的纵向方向可滑动地套设于定位柱上,并且第二轴部的上端面为与第一轴部的下端面相配合的凸轮面;铰链组件还包括:第二弹簧,设置于第二轴部的下方,用于顶托第二轴部,以向第二轴部施加向上的弹力;以及固定部,从第一轴部伸出,安装于门体上,以将竖梁主体可转动地连接至门体。
进一步地,竖梁主体内还填充有保温材料,并且转轴件和限位柱均设置于竖梁主体内靠近门体的一侧,为保温材料提供让位,以提高竖梁主体的保温性能。
进一步地,竖梁主体的侧壁上设置有至少一个卡扣,端盖上对应设置有至少一个卡接部,每个卡接部与每个卡扣相配合,以限定端盖伸出竖梁主体的最大伸出长度。
进一步地,端盖上还设置有导向凸起,并且导向凸起远离门体的一端为一倾斜面,以使得导向凸起引导竖梁主体进行翻转时,带动端盖进行伸缩。
本发明还提供了一种冰箱,包括:上述任一种的用于冰箱门体的竖梁组件。
本发明的用于冰箱门体的竖梁组件及冰箱,通过在竖梁组件顶端的端盖上设置限位柱,以及在铰链组件中的转轴件上设置限位孔,并设置限位柱沿限位孔上下移动可分别形成锁定状态以及转动状态,从而对竖梁组件的翻转位置进行限定,避免了竖梁组件在冰箱门体打开后的翻转位置再发生变化,进而保障了冰箱门体的正常开闭。
进一步地,本发明的用于冰箱门体的竖梁组件及冰箱,通过设置第一轴 部上的第一限位部在端盖伸出的状态下与限位部上的第二限位部的高度相适配,使得第一限位部和第二限位部形成干涉,从而限制竖梁组件无法相对于门体进行转动,确保了竖梁组件在冰箱门体打开的状态下处于靠近门体的状态,进而保障了冰箱门体的正常关闭。
进一步地,本发明的用于冰箱门体的竖梁组件及冰箱,通过在限位柱上设置对第一限位部进行让位的缺口,并将该缺口配置成使第一限位部具有一定的转动空间,从而使得第一轴部能够相对于限位柱进行转动,保障了竖梁组件的正常翻转。
进一步地,本发明的用于冰箱门体的竖梁组件及冰箱,通过将转轴件和限位柱均设置在竖梁主体靠近冰箱门体的一侧,使得竖梁主体中有更多的空间用于填充保温材料,从而提高了竖梁组件的保温性能。
根据下文结合附图对本发明具体实施例的详细描述,本领域技术人员将会更加明了本发明的上述以及其他目的、优点和特征。
附图说明
后文将参照附图以示例性而非限制性的方式详细描述本发明的一些具体实施例。附图中相同的附图标记标示了相同或类似的部件或部分。本领域技术人员应该理解,这些附图未必是按比例绘制的。附图中:
图1是根据本发明一个实施例的用于冰箱门体的竖梁组件的结构示意图;
图2是图1中区域A的局部放大图;
图3是根据本发明一个实施例的用于冰箱门体的竖梁组件中的端盖的结构示意图;
图4是根据本发明一个实施例的用于冰箱门体的竖梁组件中的第一轴部的结构示意图;
图5是根据本发明一个实施例的端盖和第一轴部的安装结构示意图;
图6是根据本发明一个实施例的端盖和第一轴部的另一角度的安装结构示意图;
图7是根据本发明一个实施例的用于冰箱门体的竖梁组件的另一角度的结构示意图;
图8是根据本发明一个实施例的冰箱的结构示意图;
图9是根据本发明一个实施例的冰箱的另一角度的结构示意图;
图10是根据本发明一个实施例的冰箱中的内胆的结构示意图;
图11是图10中区域B的局部放大图。
具体实施方式
以下将结合附图1-11所示的具体实施方式对本发明进行详细描述。但这些实施方式并不限制本发明,本领域的普通技术人员根据这些实施方式所做出的结构、方法、或功能上的变换均包含在本发明的保护范围内。
在本实施例的描述中,需要理解的是,术语“横向”、“纵向”、“上”、“下”、“前”、“后”、“左”、“右”、“顶”、“底”等指示的方位或位置关系为基于冰箱正常使用状态下的方位作为参考,并参考附图所示的方位或位置关系可以确定,例如指示方位的“前”指的是冰箱在正常的使用过程中朝向用户的一侧。这仅仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
图1是根据本发明一个实施例的用于冰箱门体的竖梁组件20的结构示意图。图2是图1中区域A的局部放大图。
在图1中,为了更好地示出竖梁主体200内部的结构,隐去了竖梁主体200的前侧板。
本实施例首先提供了一种用于冰箱门体的竖梁组件20,该竖梁组件20一般性地可以包括:竖梁主体200,铰链组件300,端盖400。
其中,铰链组件300,用于将竖梁主体200可转动地连接至门体100,并且铰链组件300包括设置于竖梁主体200内部的转轴件310,转轴件310的一端开设有限位孔321,限位孔321内设置有第一限位部322;端盖400,可伸缩地设置于竖梁主体200的顶端,并且向限位孔321伸出一限位柱410,限位柱410设置有第二限位部411,并且限位柱410随着端盖400沿限位孔321上下移动,使得第一限位部322与第二限位部411配合形成限位状态以及脱离配合形成转动状态。
本实施例的方案,在竖梁组件20的端盖400上设置有限位柱410,在铰链组件300的转轴件310上设置有限位孔321。限位孔321和限位柱410上分别有第一限位部322和第二限位部411。限位柱410随着端盖400沿限位孔321上下移动时,能够形成与门体100的开闭状态相适配的限位状态以及转动状态,从而对竖梁组件20的翻转位置进行限定,避免竖梁组件20在门 体100打开后的翻转位置再发生变化,确保竖梁组件20处于正确的翻转位置,以使得门体100能够正常开闭。
图3是根据本发明一个实施例的用于冰箱门体的竖梁组件20中的端盖400的结构示意图。图4是根据本发明一个实施例的用于冰箱门体的竖梁组件20中的第一轴部320的结构示意图。图5是根据本发明一个实施例的端盖400和第一轴部320的安装结构示意图。图6是根据本发明一个实施例的端盖400和第一轴部320的另一角度的安装结构示意图。
转轴件310可以包括:第一轴部320,沿竖梁主体200的纵向方向设置于竖梁主体200内部,并且限位孔321设置于第一轴部320的顶端。第一限位部322设置于限位孔321的周壁上,第二限位部411设置于限位柱410的周向上,并且第一限位部322在端盖400处于伸出状态下与第二限位部411高度相适配,从而形成限位状态。
在一些优选的实施例中,限位孔321的周壁上设置有第一限位部322,限位柱410的周向上设置有第二限位部411。第一限位部322和第二限位部411在端盖400处于伸出状态下的高度一致,从而使得第一限位部322和第二限位部411在端盖400处于伸出状态(即门体100处于完全打开的状态)时形成干涉,使得限位柱410相对于第一轴部320的转动受到限制,进而保证了竖梁组件20在门体100打开的状态下始终贴靠于门体100,进一步保障了门体100的正常关闭。
限位柱410的周向上具有用于对第一限位部322让位的缺口,并且缺口被配置成使第一限位部322具有一定的转动空间;第一限位部322在端盖400处于回缩状态时与第二限位部411脱离配合,并在转动空间内转动,从而形成转动状态。
在本实施例的方案中,限位部的周向上设置有对第一限位部322进行让位的缺口,并且该缺口被配置成使第一限位部322具有一定的转动空间。端盖400处于回缩状态时(即门体100处于正在关闭的状态时),第一限位部322与第二限位部411脱离配合,第一限位部322可以在限位部的缺口形成的转动空间内进行转动,进而保证了竖梁组件20能够正常进行转动。
端盖400的下表面还设置有导向柱420,竖梁主体200在端盖400的下方还设置有定位块430,定位块430上设置有定位孔,导向柱420伸入定位孔内,并沿着定位孔上下移动,以引导端盖400沿定位孔的轴线方向上下移 动。
如图2所示,本实施例的方案中,竖梁主体200在端盖400的下方还设置有定位块430,该定位块430一般性地可以是自竖梁主体200的侧壁向竖梁主体200的内部延伸形成。
本实施例的方案,通过在端盖400的下表面上设置导向柱420,并在定位块430上设置与导向柱420相适配的定位孔,使得导向柱420可以伸入定位孔内沿定位孔上下移动,从而引导端盖400沿定位孔的轴线方向上下移动,不仅为端盖400提供了定位,而且提高了端盖400的伸缩顺畅度。
在另一些实施例中,在端盖400的下表面上还可以设置有多个导向柱420,用于对端盖400的伸缩进行引导,不仅提高了端盖400的定位精准度,而且进一步提高了端盖400的伸缩顺畅度。
导向柱420上套设有第一弹簧421,第一弹簧421的一端与端盖400的下表面相抵触,另一端与定位块430的上表面相抵触,以向端盖400施加向上的弹力。
本实施例的方案中,导向柱420上套设有第一弹簧421,并且第一弹簧421的一端与端盖400的下表面相抵触,另一端与定位块430的上表面相抵触。第一弹簧421向端盖400施加向上的弹力,保证了端盖400在没有受到外力作用的情况下(即门体100没有关闭,端盖400没有受到来自冰箱10的挤压时)始终处于伸出的状态,从而使得竖梁组件20处于限位状态,其相对于门体100的翻转位置无法改变,进而保障了门体100的正常关闭。
第一轴部320的下端面为一凸轮面,并且第一轴部320的下端面的中心还向下延伸出一定位柱323。
转轴件310还包括:第二轴部330,沿竖梁主体200的纵向方向可滑动地套设于定位柱323上,并且第二轴部330的上端面为与第一轴部320的下端面相配合的凸轮面。
铰链组件300还包括:第二弹簧331,设置于第二轴部330的下方,用于顶托第二轴部330,以向第二轴部330施加向上的弹力;以及固定部340,从第一轴部320伸出,安装于门体100上,以将竖梁主体200可转动地连接至门体100。
本实施例的方案中,第一轴部320的下端面以及位于第一轴部320下方的第二轴部330的上端面为相互配合的凸轮面。第一轴部320相对于竖梁主 体200发生转动时,还沿凸轮面与第二轴部330进行相对滑动,进而带动第二轴部330沿竖梁主体200的纵向方向上下移动。
本实施例的方案,通过在第二轴部330的下方设置第二弹簧331,对第二轴部330施加向上的弹力,使得第二轴部330可以向上移动,从而促进了第一轴部320相对于第二轴部330沿凸轮面进行滑动,进而促进了第一轴部320相对于竖梁主体200的转动。
本实施例的方案,通过将第二轴部330套设于第一轴部320的下端面延伸出的定位柱323上,从而对第二轴部330进行了定位,保证了第二轴部330的凸轮面与第一轴部320的凸轮面相吻合。
本实施例的方案中,第一轴部320沿横向方向延伸出一固定部340,其穿过竖梁主体200安装于门体100上,从而使得竖梁主体200可以相对于门体100进行转动。
当冰箱10的门体100打开后,在第二轴部330在第二弹簧331的弹力作用下,还能够提供一个使第一轴部320发生相对转动的助力,从而使得竖梁主体200更加贴近于门体100。当冰箱10的门体100关闭后,在第二轴部330和第一轴部320的凸轮面没有完全吻合的情况下,第二轴部330在第二弹簧331的弹力作用下,同样能够提供一个使第一轴部320发生相对转动的助力,从而使得竖梁主体200更加贴近于冰箱10的箱体。
竖梁主体200内还填充有保温材料,并且转轴件310和限位柱410均设置于竖梁主体200内靠近门体100的一侧,为保温材料提供让位,以提高竖梁主体200的保温性能。
本实施例的方案,通过在竖梁主体200内填充保温材料,从而提高竖梁主体200的保温效果。
进一步地,本实施例的方案,通过将转轴件310以及限位柱410均设置于竖梁主体200内靠近门体100的一侧,从而减小了转轴件310以及限位柱410在竖梁主体200内所占用的空间,为保温材料提供了让位。竖梁主体200内部可以有更多的空间用于填充保温材料,进一步提高了竖梁的保温性能,并使得竖梁主体200的中间结构更加简单美观。
图7是根据本发明一个实施例的用于冰箱门体的竖梁组件20的另一角度的结构示意图。
竖梁主体200的侧壁上设置有至少一个卡扣210,端盖400上对应设置 有至少一个卡接部440,每个卡接部440与卡扣210相配合,以限定端盖400伸出竖梁主体200的最大伸出长度。
本实施例的方案中,竖梁主体200的侧壁上相对地设置有两个卡扣210,端盖400上对应设置有两个卡接部440。端盖400在伸出竖梁主体200到一定长度后,这两个卡扣210分别与两个卡接部440相抵触,从而限制了端盖400伸出竖梁主体200的最大伸出长度,进而避免了端盖400伸出竖梁主体200的长度过大从而对竖梁组件20的翻转以及门体100的开闭造成不利影响。
在一些实施例中,竖梁组件20上还可以只设置有一个卡扣210和一个卡接部440。在另一些实施例中,竖梁组件20上还可以只设置有多个卡扣210以及多个卡接部440。具体的卡扣210以及卡接部440的设置数目以及设置位置可以根据实际需求进行设置。
端盖400上还设置有导向凸起450,并且导向凸起450远离门体100的一端为一倾斜面,以使得导向凸起450引导竖梁主体200进行翻转时,带动端盖400进行伸缩。
本实施例的方案,端盖400上设置导向凸起450,从而利用导向凸起450对竖梁组件20的翻转进行引导,使得竖梁组件20在门体100的开闭过程中,能够相对于门体100进行翻转。
在一些优选的实施例中,导向凸起450远离门体100的一端(即在门体100准备关闭时,导向凸起450朝向冰箱10内部的一端)为一倾斜面,从而使得门体100关闭时,端盖400的倾斜面与冰箱10的内胆120相抵触。端盖400在门体100的作用下以及内胆120底壁的挤压下沿倾斜面的方向滑动,进而带动端盖400沿竖梁主体200的纵向方向向下移动。
本实施例的方案,通过设置端盖400在冰箱10的内胆120的挤压下相应回缩,从而带动限位柱410向下移动,使得第一限位部322和第二限位部411错开位置形成转动状态,保证了竖梁组件20的正常转动。
图8是根据本发明一个实施例的冰箱的结构示意图。图9是根据本发明一个实施例的冰箱的另一角度的结构示意图。图10是根据本发明一个实施例的冰箱中的内胆的结构示意图。图11是图10中区域B的局部放大图。
本实施例的方案,还提供了一种冰箱10,该冰箱10包括上述任一种的用于冰箱门体的竖梁组件20。
如图8-9所示,本实施例的冰箱10配置有上下依次分布两个储物间室110,两个储物间室110的开口处分别安装有两扇左右相对的门体100,其中,位于冰箱10左侧的门体100上分别安装有竖梁组件20。在图9中,为了更好地示出竖梁组件20与门体100的配合结构,隐去了位于冰箱10右侧的门体100。
如图9所示,位于上方的储物间室110的门体100处于关闭的状态,竖梁组件20相对于门体100呈平行状态(即竖梁组件20远离于门体100)。位于下方的储物间室110的门体100处于打开的状态,竖梁组件20相对于门体100呈垂直状态(即竖梁组件20贴近于门体100)。
如图10-11所示,储物间室110的内胆120的顶壁上还设置有与端盖400上的导向凸起450相对应的导向凹槽121,以与导向凸起450配合,引导竖梁组件20相对于门体100进行翻转。
当门体100准备关闭时,竖梁组件20只有处于靠近门体100的相对于门体100垂直的位置时,导向凸起450才能够顺利插入导向凹槽121内;当竖梁组件20处于与门体100平行的位置时,导向凸起450无法插入导向凹槽121内,从而导致冰箱10无法正常关闭。
因此,本实施例的方案,通过设置竖梁组件20在门体100打开后处于限位状态,使得竖梁组件20无法相对于门体100发生翻转达到与门体100平行的位置,从而保证了门体100关闭时,导向凸起450能够顺利插入位于内胆120上的导向凹槽121内,从而保证了门体100的正常关闭。
本实施例的方案,通过对竖梁组件20的翻转状态进行限定,使得竖梁组件20的翻转位置在门体100打开后无法发生变化,从而保证了冰箱10的门体100的正常关闭,避免了竖梁组件20与冰箱10发生磕碰造成损伤,并进一步提高了用户的使用体验。
进一步地,本实施例的方案,通过将转轴件310和限位柱410设置于竖梁主体200的边缘处,从而使得竖梁主体200中有更多的空间可以用于填充保温材料,进而提高了竖梁组件20的保温性能。
至此,本领域技术人员应认识到,虽然本文已详尽示出和描述了本发明的多个示例性实施例,但是,在不脱离本发明精神和范围的情况下,仍可根据本发明公开的内容直接确定或推导出符合本发明原理的许多其他变型或修改。因此,本发明的范围应被理解和认定为覆盖了所有这些其他变型或修 改。

Claims (10)

  1. 一种用于冰箱门体的竖梁组件,包括:
    竖梁主体;
    铰链组件,用于将所述竖梁主体可转动地连接至所述门体,并且所述铰链组件包括设置于所述竖梁主体内部的转轴件,所述转轴件的一端开设有限位孔,所述限位孔内设置有第一限位部;
    端盖,可伸缩地设置于所述竖梁主体的顶端,并且向所述限位孔伸出一限位柱,所述限位柱设置有第二限位部,并且所述限位柱随着所述端盖沿所述限位孔上下移动,使得所述第一限位部与所述第二限位部配合形成限位状态以及脱离配合形成转动状态。
  2. 根据权利要求1所述的用于冰箱门体的竖梁组件,其中,
    所述转轴件包括:
    第一轴部,沿所述竖梁主体的纵向方向设置于所述竖梁主体内部,并且所述限位孔设置于所述第一轴部的顶端;其中
    所述第一限位部设置于所述限位孔的周壁上,所述第二限位部设置于所述限位柱的周向上,并且所述第一限位部在所述端盖处于伸出状态下与所述第二限位部高度相适配,从而形成所述限位状态。
  3. 根据权利要求2所述的用于冰箱门体的竖梁组件,其中,
    所述限位柱的周向上具有用于对所述第一限位部让位的缺口,并且所述缺口被配置成使所述第一限位部具有一定的转动空间;
    所述第一限位部在所述端盖处于回缩状态时与所述第二限位部脱离配合,并在所述转动空间内转动,从而形成所述转动状态。
  4. 根据权利要求1所述的用于冰箱门体的竖梁组件,其中,
    所述端盖的下表面还设置有导向柱,所述竖梁主体在所述端盖的下方还设置有定位块,所述定位块上设置有定位孔,所述导向柱伸入所述定位孔内,并沿着所述定位孔上下移动,以引导所述端盖沿所述定位孔的轴线方向上下移动。
  5. 根据权利要求4所述的用于冰箱门体的竖梁组件,其中,
    所述导向柱上套设有第一弹簧,所述第一弹簧的一端与所述端盖的下表面相抵触,另一端与所述定位块的上表面相抵触,以向所述端盖施加向上的弹力。
  6. 根据权利要求2所述的用于冰箱门体的竖梁组件,其中,
    所述第一轴部的下端面为一凸轮面,并且所述第一轴部的下端面的中心还向下延伸出一定位柱;
    所述转轴件还包括:
    第二轴部,沿所述竖梁主体的纵向方向可滑动地套设于所述定位柱上,并且所述第二轴部的上端面为与所述第一轴部的下端面相配合的凸轮面;
    所述铰链组件还包括:
    第二弹簧,设置于所述第二轴部的下方,用于顶托所述第二轴部,以向所述第二轴部施加向上的弹力;以及
    固定部,从所述第一轴部伸出,安装于所述门体上,以将所述竖梁主体可转动地连接至所述门体。
  7. 根据权利要求1所述的用于冰箱门体的竖梁组件,其中,
    所述竖梁主体内还填充有保温材料,并且所述转轴件和所述限位柱均设置于所述竖梁主体内靠近所述门体的一侧,为所述保温材料提供让位,以提高所述竖梁主体的保温性能。
  8. 根据权利要求1所述的用于冰箱门体的竖梁组件,其中,
    所述竖梁主体的侧壁上设置有至少一个卡扣,所述端盖上对应设置有至少一个卡接部,每个所述卡接部与每个所述卡扣相配合,以限定所述端盖伸出所述竖梁主体的最大伸出长度。
  9. 根据权利要求1所述的用于冰箱门体的竖梁组件,其中,
    所述端盖上还设置有导向凸起,并且所述导向凸起远离所述门体的一端为一倾斜面,以使得所述导向凸起引导所述竖梁主体进行翻转时,带动所述端盖进行伸缩。
  10. 一种冰箱,包括:
    根据权利要求1至9中任一项所述的用于冰箱门体的竖梁组件。
PCT/CN2022/071767 2021-04-02 2022-01-13 用于冰箱门体的竖梁组件及冰箱 WO2022206117A1 (zh)

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