WO2023040446A1 - 铰链及具有该铰链的嵌入式冰箱 - Google Patents

铰链及具有该铰链的嵌入式冰箱 Download PDF

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Publication number
WO2023040446A1
WO2023040446A1 PCT/CN2022/105742 CN2022105742W WO2023040446A1 WO 2023040446 A1 WO2023040446 A1 WO 2023040446A1 CN 2022105742 W CN2022105742 W CN 2022105742W WO 2023040446 A1 WO2023040446 A1 WO 2023040446A1
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WO
WIPO (PCT)
Prior art keywords
rocker
movable seat
guide groove
seat
hinge
Prior art date
Application number
PCT/CN2022/105742
Other languages
English (en)
French (fr)
Inventor
王常志
夏恩品
李秋芳
李康
董雨峰
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
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
Priority to EP22868823.0A priority Critical patent/EP4403734A1/en
Priority to AU2022345053A priority patent/AU2022345053A1/en
Publication of WO2023040446A1 publication Critical patent/WO2023040446A1/zh

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C17/00Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith
    • E05C17/02Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith by mechanical means
    • E05C17/04Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith by mechanical means with a movable bar or equivalent member extending between frame and wing
    • E05C17/32Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith by mechanical means with a movable bar or equivalent member extending between frame and wing consisting of two or more pivoted rods
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D3/00Hinges with pins
    • E05D3/06Hinges with pins with two or more pins
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D3/00Hinges with pins
    • E05D3/06Hinges with pins with two or more pins
    • E05D3/16Hinges with pins with two or more pins with seven parallel pins and four arms
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D3/00Hinges with pins
    • E05D3/06Hinges with pins with two or more pins
    • E05D3/18Hinges with pins with two or more pins with sliding pins or guides
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D3/00Hinges with pins
    • E05D3/06Hinges with pins with two or more pins
    • E05D3/18Hinges with pins with two or more pins with sliding pins or guides
    • E05D3/186Scissors hinges, with two crossing levers and five parallel pins
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • 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
    • F25D23/00General constructional features
    • F25D23/10Arrangements for mounting in particular locations, e.g. for built-in type, for corner type
    • 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
    • F25D2323/00General constructional features not provided for in other groups of this subclass
    • F25D2323/02Details of doors or covers not otherwise covered
    • F25D2323/024Door hinges

Definitions

  • the invention relates to the technical field of household appliances, in particular to a hinge and a built-in refrigerator with the hinge.
  • the object of the present invention is to provide a hinge and a built-in refrigerator with the hinge.
  • the present invention provides a hinge, including a fixed seat installed on the box body, a movable seat installed on the door body, and a linkage assembly hinged between the fixed seat and the movable seat
  • a hinge including a fixed seat installed on the box body, a movable seat installed on the door body, and a linkage assembly hinged between the fixed seat and the movable seat
  • One of the movable seat and the fixed seat is provided with a guide groove, at least one section of the guide groove is a curved groove, and during the rotation of the movable seat relative to the fixed seat, the linkage The assembly moves along the guide groove.
  • the present invention also provides a hinge, including a fixed seat installed on the box body, a movable seat installed on the door body, and a linkage assembly hinged between the fixed seat and the movable seat;
  • One of the movable seat and the fixed seat is provided with a guide groove matched with the linkage assembly, and during the rotation of the movable seat relative to the fixed seat, the guide groove is used to guide
  • the movable seat moves along the intersecting first direction and the second direction at the same time; the displacement ratio between the displacement of the movable seat in the first direction and the displacement in the second direction changes with the rotation angle of the movable seat.
  • the displacement ratio between the displacement of the movable seat in the first direction and the displacement in the second direction gradually increases.
  • the displacement ratio between the displacement of the movable seat in the first direction and the displacement in the second direction gradually decreases.
  • the first direction is the forward direction of the fixed seat towards the movable seat
  • the second direction is the lateral direction towards the pivoting side of the hinge
  • the first direction and The second direction is vertical.
  • the guide groove is provided on the movable seat; the section of the guide groove away from the pivoting side of the hinge is a convex curved groove, and the convex curved groove is One end of the pivoting side extends towards the pivoting side and towards the fixing seat.
  • a section of the guide groove near the pivoting side of the hinge is a linear groove, and the convex curved groove communicates with the linear groove.
  • the linkage assembly includes:
  • a first rocker, the rotating end of the first rocker is rotatably connected to the fixed seat, and the swing end of the first rocker is slidably connected in the guide groove;
  • the third rocker the rotating end of the third rocking rod is rotatably connected to the movable seat, the swinging end of the third rocking rod is rotatably connected to the swinging end of the second rocking rod, and the first rocking rod
  • the three rockers intersect with the first rocker and are rotationally connected at the intersections.
  • the rotating end of the second rocker is located on a side away from the movable seat of the rotating end of the first rocker.
  • the guide groove is provided on the fixed seat; the guide groove extends from an end away from the pivot side of the hinge toward the pivot side and toward the movable seat convex curve groove.
  • the guide groove is provided on the fixed seat; the guide groove extends from an end away from the pivot side of the hinge toward the movable seat and toward the pivot side concave curve groove.
  • the guide groove is arranged on the fixed seat;
  • the linkage assembly includes:
  • a first rocker, the rotating end of the first rocker is rotatably connected to the movable seat, and the swing end of the first rocker is slidably connected in the guide groove;
  • the third rocker, the rotation end of the third rocker is rotatably connected to the fixed base, the swing end of the third rocker is rotatably connected with the swing end of the second rocker, and the third rocker
  • the rocker intersects with the first rocker and is rotationally connected at the intersection.
  • the end of the guide groove away from the pivoting side of the hinge is located on the side of the rotating end of the third rocker away from the movable seat.
  • the movable seat or the fixed seat provided with the guide groove has a receiving cavity, and the receiving cavity is used to accommodate the linkage assembly in a folded state.
  • the hinge includes two sets of linkage components arranged in the fixed seat and arranged side by side along the height direction of the fixation seat, and two sets of linkage components respectively matched with the two sets of linkage components.
  • Activity seat includes two sets of linkage components arranged in the fixed seat and arranged side by side along the height direction of the fixation seat, and two sets of linkage components respectively matched with the two sets of linkage components.
  • the two coaxial rotating shafts in the two groups of linkage assemblies that are rotatably connected to the fixed seat are connected together through a sleeve.
  • the present invention also provides a built-in refrigerator, including a box body, a door body, and the above-mentioned hinge.
  • the beneficial effect of the present invention lies in that: in the hinge of the present invention, by setting at least one section of the guide groove as a curved groove, during the rotation of the movable seat relative to the fixed seat, the movable
  • the displacement ratio between the displacement of the seat in the first direction and the displacement in the second direction changes with the rotation angle of the movable seat, so that the opening process of the door body in the first direction and the second direction can be adjusted according to specific requirements.
  • the displacement in the direction controls the movement track of the door body, so that the door body can be adapted to various application scenarios.
  • Fig. 1 is the structural representation of refrigerator among the present invention
  • Fig. 2 is a structural schematic diagram of the hinge in the first embodiment of the present invention (the linkage assembly is in a folded state);
  • Fig. 3 is a structural schematic diagram of the hinge in the first embodiment of the present invention (the linkage assembly is in an unfolded state);
  • Fig. 4 is a schematic structural diagram of the hinge in the second embodiment of the present invention (the linkage assembly is in a folded state);
  • Fig. 5 is a schematic structural view of the hinge in the second embodiment of the present invention (the linkage assembly is in an unfolded state);
  • Fig. 6 is a schematic structural diagram of the hinge in the third embodiment of the present invention (the linkage assembly is in a folded state);
  • Fig. 7 is a schematic structural diagram of the hinge in the third embodiment of the present invention (the linkage assembly is in an unfolded state);
  • the side where the door body is located when the refrigerator is in normal use is taken as "front”, and the direction away from the refrigerator on the pivoting side is taken as "outside", such as a side-by-side refrigerator
  • the movement from the pivoting side to the direction away from the other door is outward movement, and the movement of a door from the pivoting side to the direction close to the other door during the opening process is inward. move.
  • connection should be interpreted in a broad sense, for example, a connection may be a direct connection or an indirect connection through an intermediary, a fixed connection, a movable connection, a detachable connection or an integrated connection.
  • the present invention provides a hinge 10, which is used to connect the door body 20 to the box body 30.
  • the hinge 10 is applied to a built-in refrigerator 100, and the refrigerator
  • the door body 20 of 100 is described in detail as an example for opening the door by rotating left and right.
  • the hinge 10 of this embodiment is not only applicable to the refrigerator 100, but also applicable to other scenarios, such as cabinets, wine cabinets, wardrobes, microwave ovens and other home appliances.
  • the hinge 10 includes a fixed seat 1 for mounting on the box body 30, a movable seat 2 mounted on the door body 20, and hinged between the fixed seat 1 and the movable seat.
  • the linkage assembly 3 between the seats 2, one of the movable seat 2 and the fixed seat 1 is provided with a guide groove 4, and during the rotation of the movable seat 2 relative to the fixed seat 1, the The linkage assembly 3 cooperates with the guide groove 4, that is, one end of the linkage assembly 3 moves along the guide groove 4, so that the movable seat 2 moves relative to the fixed seat 1 according to a preset track , that is, make the door body 20 move according to a preset track.
  • the linkage assembly 3 When the door body 20 is in the closed state, the linkage assembly 3 is in the folded state, and at this time, the movable seat 2 is close to the fixed seat 1 .
  • the linkage assembly 3 When the door body 20 is opened, that is, when the door body 20 moves away from the box body 30, the linkage assembly 3 gradually extends from the folded state to the unfolded state.
  • the linkage assembly 3 In the process of closing the door body 20, that is, when the door body 20 moves toward the box body 30, the linkage assembly 3 gradually shrinks from the unfolded state to the folded state, and the door body 20 is in the closed state. .
  • the aforementioned preset trajectory means that during the rotation of the movable seat 2 relative to the fixed seat 1, under the guidance of the guide groove 4, the movable seat 2 moves along the intersecting first direction and the second direction at the same time. direction, and the displacement ratio between the displacement of the movable seat 2 in the first direction and the displacement in the second direction changes with the rotation angle of the movable seat 2 .
  • the displacement in the first direction and the second direction during the opening process of the door body 20 can be adjusted to control the movement trajectory of the door body 20 .
  • the first direction is the forward direction of the fixed base 1 towards the movable base 2
  • the second direction is the lateral direction towards the pivoting side of the hinge 10
  • the first direction is consistent with the
  • the second direction is perpendicular to the second direction, that is, the first direction is the front direction of the refrigerator 100
  • the second direction is the outward direction of the refrigerator 100 on the pivoting side.
  • the pivoting end of the door body 20 is gradually moved to the front side of the wall/cabinet on the pivoting side, thereby avoiding contact with the wall/cabinet on the pivoting side during the opening process of the door body 20. Walls/cabinet etc.
  • the door body 20 can be adapted to various application scenarios, such as the application scenario of the built-in refrigerator 100; Moving outward can increase the opening angle of the door body 20 , which is convenient for the user to check and take the items in the box body 30 .
  • the movable seat 2 is set to be between the displacement in the first direction and the displacement in the second direction.
  • the displacement ratio increases gradually. Therefore, in the first stage of door opening, the main movement of the door body 20 is outward movement. At this time, the rotation angle and the forward distance of the door body 20 are small. In the side-by-side refrigerator 100, it is possible to avoid During the door opening process, the door body 20 interferes with another door body 20 . In the second stage of opening the door, the main movement of the door body 20 is to move forward.
  • the rotation angle and outward movement distance of the door body 20 are relatively small, which can prevent the door body 20 from colliding with the wall/cabinet on the pivoting side. interfere.
  • the main movement of the door body 20 is to rotate.
  • the forward and outward movement distances of the door body 20 are relatively small, so as to further increase the opening angle of the door body 20, which is convenient for users to view and remove. With the article in casing 30.
  • the movable seat 2 is set to have a displacement between the displacement in the first direction and the displacement in the second direction ratio gradually decreases. Therefore, in the first stage of opening the door, the main movement of the door body 20 is to move forward. At this time, the rotation angle and the distance of the outward movement of the door body 20 are small. It can be understood that in the door body 20 After moving forward for a certain distance, when the door body 20 continues to rotate away from the box body 30, it is less likely to interfere with the wall/cabinet on the pivoting side, so the door body 20 can be avoided. Interfering with walls/cabinets etc. on the side of the pivot.
  • the main movement of the door body 20 is outward movement. At this time, the forward movement distance of the door body 20 is relatively small, which reduces the space requirement on the front side of the refrigerator 100 during the door opening process.
  • the main movement of the door body 20 is rotation. At this time, the forward and outward movement distances of the door body 20 are relatively small, so as to further increase the opening angle of the door body 20, which is convenient for the user to view and remove. With the article in casing 30.
  • At least one section of the guide groove 4 is a curved groove. It is known that the curvature of each point of the curved groove is different. By changing the curvature, curvature change trend, shape, etc. of the curved groove, the door can be adjusted. During the opening process of the door body 20, the relationship among the rotation angle, the forward distance, and the outward distance of the door body 20.
  • the displacement ratio between the displacement of the door body 20 in the first direction and the displacement in the second direction can be driven by the movable seat 2 to change with the rotation angle of the movable seat 2, so as to avoid that the door body 20 During the opening process, it interferes with the wall/cabinet on the pivoting side, and increases the opening angle of the door body 20 , which is convenient for the user to view and access the items in the box body 30 .
  • the guide groove 4 is provided on the movable seat 2; the guide groove 4 is away from the pivoting side of the hinge 10
  • One section is a convex curved groove 41, and the convex curved groove 41 extends from an end away from the pivoting side toward the pivoting side and toward the fixing seat 1, that is, along a direction gradually approaching the pivoting side , the curvature of the convex curve groove 41 gradually decreases.
  • the end of the linkage assembly 3 that matches the guide groove 4 is located at the end of the convex curved groove 41 that is away from the pivoting side.
  • the One end of the linkage assembly 3 that matches the guide groove 4 moves along the convex curve groove 41 to control the initial movement track of the door body 20 and avoid contact with the door body 20 on the pivoting side during the opening process. Interfering with walls/cabinets etc.
  • the curvature of the convex curved groove 41 gradually decreases along the direction gradually approaching the pivoting side, and the end of the linkage assembly 3 that matches the guide groove 4 During the process of moving from the end of the convex curved groove 41 away from the pivoting side toward the pivoting side, the displacement ratio between the displacement of the movable seat 2 in the first direction and the displacement in the second direction varies with the The rotation angle of the movable seat 2 increases and gradually decreases. Therefore, in the first stage of opening the door, the curvature of the convex curved groove 41 is relatively large, and the main movement of the door body 20 is to move forward.
  • a section of the guide groove 4 close to the pivoting side of the hinge 10 is a linear groove 42, and the convex curved groove 41 communicates with the linear groove 42.
  • the linkage One end of the component 3 that matches the guide groove 4 moves toward the pivoting side along the linear groove 42.
  • the main movement of the door body 20 is to rotate.
  • the front of the door body 20 Both the movement and the outward movement are small, which can increase the opening angle of the door body 20, and facilitate the user to view and take the items in the box body 30.
  • the guide groove 4 is L-shaped. Of course, it is not limited to this.
  • the linkage assembly 3 includes a first rocker 31 , a second rocker 32 and a third rocker 33 .
  • the rotating end of the first rocker 31 is rotatably connected to the fixed seat 1 , and the swing end of the first rocker 31 is slidably connected in the guide groove 4 .
  • the rotating end of the second rocker 32 is rotatably connected to the fixed base 1 .
  • the rotating end of the third rocker 33 is rotatably connected to the movable base 2, the swing end of the third rocker 33 is rotatably connected to the swing end of the second rocker 32, and the third rocker 33
  • the rocker 33 intersects with the first rocker 31 and is rotationally connected at the intersection. That is, the linkage assembly 3 , the fixed seat 1 and the movable seat 2 jointly form a five-link structure.
  • the moment arm formed by the linkage assembly 3 is longer, so that during the door opening process, the door body 20 can move forward to a position far from the front end of the box body 30, so when the hinge 10 is applied to the embedded
  • the door body 20 of the built-in refrigerator 100 can easily move to the front end of the wall/cabinet on the pivoting side during the door opening process, effectively preventing the door body 20 from colliding with the wall/cabinet on the pivoting side. Interference between cabinets.
  • the rotating end of the second rocker 32 is located on the side of the rotating end of the first rocker 31 away from the movable seat 2, so that the linkage assembly 3 can be in the folded state and the unfolded state. Switching between, that is, the linkage assembly 3 can control the switching of the door body 20 between the closed state and the open state and control the movement trajectory of the door body 20 .
  • the movable seat 2 has a receiving chamber 5 open to the fixed seat 1 , the receiving chamber 5 is used to accommodate the linkage assembly 3 in a folded state, so as to enhance the appearance of the refrigerator 100 .
  • Fig. 4-Fig. 5 is the hinge 10a in the second embodiment of the present invention.
  • the guide groove 4a is set on the fixing base 1
  • the guide groove 4 a is a convex curved groove extending from an end away from the pivot side of the hinge 10 a toward the pivot side and toward the movable seat 2 .
  • the entire section of the guide groove 4a is a curved groove.
  • the curvature of the convex curve groove gradually increases, and the end of the linkage assembly 3 that matches the guide groove 4a moves along the direction from the convex curve groove.
  • the displacement ratio between the displacement of the movable seat 2 in the first direction and the displacement in the second direction varies with the rotation of the movable seat 2 The angle increases gradually. Therefore, in the first stage of opening the door, the curvature of the convex curved groove is small, and the main movement of the door body 20 is outward movement.
  • the rotation angle and the forward distance of the door body 20 are both small , in the side-by-side refrigerator 100, it is possible to avoid interference between the door body 20 and the other door body 20 during the door opening process.
  • the curvature of the convex curve groove is relatively large, and the main movement of the door body 20 is to move forward.
  • the rotation angle and outward movement distance of the door body 20 are small, which can avoid the Interference with walls/cabinets etc. on the pivot side.
  • the main movement of the door body 20 is to rotate.
  • the forward and outward movement distances of the door body 20 are relatively small, so as to further increase the opening angle of the door body 20, which is convenient for users to view and remove. With the article in casing 30.
  • the rotating end of the first rocker 31a in the linkage assembly 3a is rotatably connected to the movable seat 2, and the swing end of the first rocker 31a is slidably connected to the Inside the guide groove 4a.
  • the rotating end of the second rocker 32a is rotatably connected to the movable base 2 .
  • the rotating end of the third rocker 33a is rotatably connected to the fixed base 1, the swing end of the third rocker 33a is rotatably connected to the swing end of the second rocker 32a, and the third rocker
  • the rod 33a intersects with the first rocker 31a and is rotatably connected at the intersection. That is, the linkage assembly 3a, the fixed seat 1 and the movable seat 2 jointly form a five-link structure.
  • the moment arm formed by the linkage assembly 3a is longer, so that during the door opening process, the door body 20 can move forward to a position far from the front end of the box body 30. Therefore, when the hinge 10a is applied to the embedded After the refrigerator 100 is inside, the door body 20 of the built-in refrigerator 100 can easily move to the front end of the wall/cabinet on the pivoting side during the door opening process, effectively preventing the door body 20 from colliding with the wall/cabinet on the pivoting side. Interference between cabinets.
  • the end of the guide groove 4a away from the pivoting side of the hinge 10a is located on the side of the rotating end of the third rocker 33a away from the movable seat 2, that is, in the closed state
  • the The swing end of the first rocker 31a is located on the side of the rotating end of the third rocker 33a away from the movable seat 2, so that the linkage assembly 3a can switch between the folded state and the unfolded state, that is, , so that the linkage assembly 3a can control the switching of the door body 20 between the closed state and the open state and control the movement track of the door body 20 .
  • the accommodating cavity 5a is provided on the fixed seat 1 and is open toward the movable seat 2 to accommodate the linkage assembly 3a in a folded state and enhance the appearance of the refrigerator 100 .
  • the second embodiment is the same as the first embodiment except for the above differences, and will not be repeated here.
  • FIGS 6-7 are the hinge 10b in the third embodiment of the present invention.
  • the difference between the third embodiment of the present invention and the second embodiment is that the guide groove 4b is away from the hinge 10b
  • One end of the pivoting side faces the movable seat 2 and is a concave curved groove extending toward the pivoting side, that is, the curvature of the guiding groove 4b gradually decreases along the direction gradually approaching the pivoting side.
  • the entire guide groove 4b is a curved groove.
  • the curvature of the concave curved groove gradually decreases, and the end of the linkage assembly 3 that cooperates with the guide groove b starts from the concave curved groove
  • the displacement ratio between the displacement of the movable seat 2 in the first direction and the displacement in the second direction varies with the rotation of the movable seat 2
  • the angle increases and decreases gradually. Therefore, in the first stage of opening the door, the curvature of the concave curved groove is relatively large, and the main movement of the door body 20 is to move forward. , it can avoid interference between the door body 20 and the wall/cabinet on the pivoting side.
  • the curvature of the concave curved groove is small and gradually becomes smaller, and the main movement of the door body 20 is to move outward.
  • the rotation angle and forward movement distance of the door body 20 are both small, Reduce the space requirement on the front side of the refrigerator 100 during the door opening process.
  • the main movement of the door body 20 is to rotate.
  • the forward and outward movement distances of the door body 20 are relatively small, so as to further increase the opening angle of the door body 20, which is convenient for users to view and remove. With the article in casing 30.
  • the hinge includes two groups arranged in the fixed seat 1 and arranged side by side along the height direction of the fixed seat 1
  • the linkage assembly 3 and two movable seats 2 respectively matched with two groups of the linkage assembly 3 . Integrating the two fixing bases 1 of the hinge can reduce the space required for installing the hinge and reduce the cost.
  • the two sets of linkage components 3 that are rotatably connected to the fixed seat 1 and coaxially connected together through sleeves can strengthen the stability of the operation of the hinge and enhance the stability of the hinge.
  • the hinge in the fourth embodiment of the present invention is suitable as a middle hinge, and simultaneously connects the two door bodies 20 on opposite sides of the middle hinge.
  • the present invention also provides a built-in refrigerator 100, including a box body 30, a door body 20, the above-mentioned hinge 10 connected between the box body 30 and the door body 20, 10a, 10b, the fixed seat 1 in the hinges 10, 10a, 10b is fixedly connected with the box body 30, and the movable seat 2 in the hinges 10, 10a, 10b is fixedly connected with the door body 20.
  • hinges 10, 10a, 10b are as described above, and will not be repeated here.
  • the door body 20 includes a refrigerator door 201 and a cabinet door 202 connected together with the refrigerator door 201 , and the hinges 10 , 10 a , 10 b are connected between the cabinet door 202 and the box body 30 .
  • the cabinet door 202 it can drive the refrigerator door 201 to move synchronously.
  • the hinges 10, 10a, 10b in the present invention by setting at least one section of the guide grooves 4, 4a, 4b as curved grooves, during the rotation of the movable seat 2 relative to the fixed seat 1,
  • the displacement ratio between the displacement of the movable seat 2 in the first direction and the displacement in the second direction changes with the rotation angle of the movable seat 2, so that the opening process of the door body 20 can be adjusted according to specific requirements.
  • the displacements in the first direction and the second direction control the motion trajectory of the door body 20 so that the door body 20 can be adapted to various application scenarios.

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

本发明揭示了一种铰链及嵌入式冰箱,铰链包括安装于箱体上的固定座、安装于门体上的活动座、铰接于固定座与活动座之间的联动组件;活动座与固定座中的一个上设有与联动组件相配合的导引槽,导引槽的至少一段为曲线槽;能够根据具体需求,控制所述门体的运动轨迹。

Description

铰链及具有该铰链的嵌入式冰箱 技术领域
本发明涉及家电技术领域,尤其涉及一种铰链及具有该铰链的嵌入式冰箱。
背景技术
随着社会的进步,人们生活水平的提高,对冰箱在家庭的摆放位置与摆放方式越来越被普通用户看重,而针对目前的家装风格,部分家庭追求风格一体化,就需要把冰箱放入橱柜中,构成所谓的嵌入式冰箱装置。
对于嵌入式冰箱装置,门体绕着铰链轴旋转打开的过程中,门体与箱体相铰接的那一侧,常会突出于箱体侧壁,门体会与橱柜柜壁或柜门发生碰撞,不仅会影响到冰箱门体打开的幅度,而且会损伤到冰箱门体表面,影响其美观性,即,目前的冰箱难以适应这种嵌入式应用场景。
有鉴于此,有必要对现有的铰链及具有该铰链的嵌入式冰箱予以改进,以解决上述问题。
发明内容
本发明的目的在于提供一种铰链及具有该铰链的嵌入式冰箱。
为实现上述发明目的之一,本发明提供一种铰链,包括安装于箱体上的固定座、安装于门体上的活动座、铰接于所述固定座与所述活动座之间的联动组件;所述活动座与所述固定座中的一个上设有导引槽,所述导引槽的至少一段为曲线槽,在所述活动座相对所述固定座转动的过程中,所述联动组件沿所述导引槽移动。
为实现上述发明目的,本发明还提供一种铰链,包括安装于箱体上的固定座、安装于门体上的活动座、铰接于所述固定座与所述活动座之间的联动组件;所述活动座与所述固定座中的一个上设有与所述联动组件相配合的导引槽,在所述活动座相对所述固定座旋转的过程中,所述导引槽用以引导所述活动座同时沿相交的第一方向以及第二方向移动;所述活动座在第一方向的位移与在第二方向的位移之间的位移比随所述活动座的转动角度而改变。
作为本发明的进一步改进,在所述活动座相对所述固定座旋转打开的过程中,所述活动座在第一方向的位移与在第二方向的位移之间的位移比逐渐增大。
作为本发明的进一步改进,在所述活动座相对所述固定座旋转打开的过程中,所述活动座在第一方向的位移与在第二方向的位移之间的位移比逐渐减小。
作为本发明的进一步改进,所述第一方向为所述固定座朝向所述活动座的前向,所述第二方向为朝向所述铰链的枢转侧的侧向,所述第一方向与所述第二方向相垂直。
作为本发明的进一步改进,所述导引槽设于所述活动座上;所述导引槽远离所述铰链的枢转侧的一段为凸曲线槽,且所述凸曲线槽自远离所述枢转侧的一端朝向所述枢转侧且朝向所述固定座延伸。
作为本发明的进一步改进,所述导引槽靠近所述铰链的枢转侧的一段为直线槽,所述凸 曲线槽与所述直线槽相连通。
作为本发明的进一步改进,所述联动组件包括:
第一摇杆,所述第一摇杆的转动端转动连接于所述固定座上,所述第一摇杆的摆动端滑动连接于所述导引槽内;
第二摇杆,所述第二摇杆的转动端转动连接于所述固定座上;
第三摇杆,所述第三摇杆的转动端转动连接于所述活动座上,所述第三摇杆的摆动端与所述第二摇杆的摆动端相转动连接,且所述第三摇杆与所述第一摇杆相交叉且于交叉处转动连接。
作为本发明的进一步改进,所述第二摇杆的转动端位于所述第一摇杆的转动端远离所述活动座的一侧。
作为本发明的进一步改进,所述导引槽设置于所述固定座上;所述导引槽为自远离所述铰链的枢转侧的一端朝向所述枢转侧且朝向所述活动座延伸的凸曲线槽。
作为本发明的进一步改进,所述导引槽设置于所述固定座上;所述导引槽为自远离所述铰链的枢转侧的一端朝向所述活动座且朝向所述枢转侧延伸的凹曲线槽。
作为本发明的进一步改进,所述导引槽设置于所述固定座上;所述联动组件包括:
第一摇杆,所述第一摇杆的转动端转动连接于所述活动座上,所述第一摇杆的摆动端滑动连接于所述导引槽内;
第二摇杆,所述第二摇杆的转动端转动连接于所述活动座上;
第三摇杆,所述第三摇杆的转动端转动连接于所述固定座上,所述第三摇杆的摆动端与所述第二摇杆的摆动端相转动连接,所述第三摇杆与所述第一摇杆相交叉且于交叉处转动连接。
作为本发明的进一步改进,所述导引槽远离所述铰链的枢转侧的一端位于所述第三摇杆的转动端背离所述活动座的一侧。
作为本发明的进一步改进,设置有所述导引槽的活动座或者固定座上具有收容腔,所述收容腔用以容纳折叠状态的所述联动组件。
作为本发明的进一步改进,所述铰链包括设于所述固定座内且沿所述固定座的高度方向并排设置的两组所述联动组件、分别与两组所述联动组件相配合的两个活动座。
作为本发明的进一步改进,两组所述联动组件中转动连接于所述固定座上且同轴的两个转动轴通过套管相连接在一起。
为实现上述发明目的,本发明还提供一种嵌入式冰箱,包括箱体、门体、上述的铰链。
与现有技术相比,本发明的有益效果在于:本发明中的铰链,通过将导引槽至少一段设置为曲线槽,在所述活动座相对所述固定座旋转的过程中,所述活动座在第一方向的位移与在第二方向的位移之间的位移比随所述活动座的转动角度而改变,从而,能够根据具体需求,调节门体打开过程中在第一方向以及第二方向上的位移,控制所述门体的运动轨迹,使所述 门体能够适应于多种应用场景。
附图说明
图1是本发明中的冰箱的结构示意图;
图2是本发明第一实施方式中的铰链的结构示意图(联动组件处于折叠状态);
图3是本发明第一实施方式中的铰链的结构示意图(联动组件处于展开状态);
图4是本发明第二实施方式中的铰链的结构示意图(联动组件处于折叠状态);
图5是本发明第二实施方式中的铰链的结构示意图(联动组件处于展开状态);
图6是本发明第三实施方式中的铰链的结构示意图(联动组件处于折叠状态);
图7是本发明第三实施方式中的铰链的结构示意图(联动组件处于展开状态);
具体实施方式
以下将结合附图1-7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。
本发明内所描述的表达位置与方向的词,以冰箱正常使用时门体所在的一侧为“前”,以于枢转侧远离所述冰箱的方向为“外”,如,对开门冰箱中,一门体打开过程中自枢转侧向远离另一门体的方向移动即为向外移动,一门体打开过程中自枢转侧向靠近另一门体的方向移动即为向内移动。本发明中的术语第一、第二、第三等仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量;此外,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发明中的具体含义。
参图1所示,本发明提供一种铰链10,所述铰链10用以将门体20连接至箱体30上,本实施方式中,以所述铰链10应用于嵌入式的冰箱100,且冰箱100的门体20为左右旋转开门为例进行具体阐述。
当然,需要强调的是,本实施方式的铰链10不仅适用于冰箱100,也可适用于其他场景,例如橱柜、酒柜、衣柜、微波炉等其他家电。
请参图2-图3所示,所述铰链10包括用以安装于箱体30上的固定座1、安装于门体20上的活动座2、铰接于所述固定座1与所述活动座2之间的联动组件3,所述活动座2与所述固定座1中的一个上设有导引槽4,在所述活动座2相对所述固定座1转动的过程中,所述联动组件3与所述导引槽4相配合,即,所述联动组件3的一端沿所述导引槽4移动,以使所述活动座2相对于所述固定座1按预设轨迹运动,即,使所述门体20按预设轨迹运动。
在所述门体20处于关闭状态时,所述联动组件3处于折叠状态,此时,所述活动座2与所述固定座1相靠近。在打开门体20,即,所述门体20向远离所述箱体30的方向运动 时,所述联动组件3自折叠状态逐渐伸展至展开状态。在关闭所述门体20的过程中,即,所述门体20朝向所述箱体30运动时,所述联动组件3自展开状态逐渐收缩至折叠状态后,所述门体20处于关闭状态。
可以理解的是,在所述门体20向远离所述箱体30的方向转动时,所述活动座2相对所述固定座1向远离所述固定座1的方向转动。
进一步地,上述的预设轨迹是指活动座2相对所述固定座1旋转的过程中,在所述导引槽4的引导下,所述活动座2同时沿相交的第一方向以及第二方向移动,且所述活动座2在第一方向的位移与在第二方向的位移之间的位移比随所述活动座2的转动角度而改变。能够根据具体需求,调节门体20打开过程中在第一方向以及第二方向上的位移,控制所述门体20的运动轨迹。
具体地,所述第一方向为所述固定座1朝向所述活动座2的前向,所述第二方向为朝向所述铰链10的枢转侧的侧向,所述第一方向与所述第二方向相垂直,即,所述第一方向为所述冰箱100的前向,所述第二方向为所述冰箱100位于枢转侧的外向。一方面,在门体20打开过程中,使门体20的枢转端逐渐移动至位于枢转侧的墙壁/橱柜的前侧,从而,能够避免门体20打开过程中与位于枢转侧的墙壁/橱柜等产生干涉,使所述门体20能够适应于多种应用场景,如嵌入式冰箱100的应用场景;另一方面,在门体20打开过程中,使门体20的枢转端向外移动,能够增大所述门体20的打开角度,便于用户查看以及取用箱体30内的物品。
进一步地,于一具体实施方式中,在所述活动座2相对所述固定座1旋转打开的过程中,所述活动座2设置为在第一方向的位移与在第二方向的位移之间的位移比逐渐增大。从而,在开门的第一阶段,所述门体20的主要运动为外移,此时,所述门体20的转动角度以及前移的距离均较小,在对开门冰箱100中,能够避免开门过程中,该门体20与另一门体20产生干涉。在开门的第二阶段,所述门体20的主要运动为前移,此时,门体20的转动角度以及外移距离较小,能够避免门体20与位于枢转侧的墙壁/橱柜等产生干涉。在开门的第三阶段,所述门体20的主要运动为转动,此时,门体20的前移以及外移距离均较小,以进一步增大门体20的打开角度,便于用户查看以及取用箱体30内的物品。
于另一具体实施方式中,在所述活动座2相对所述固定座1旋转打开的过程中,所述活动座2设置为在第一方向的位移与在第二方向的位移之间的位移比逐渐减小。从而,在开门的第一阶段,所述门体20的主要运动为前移,此时,所述门体20的转动角度以及外移的距离均较小,可以理解的是,在门体20前移一段距离后,所述门体20继续向远离所述箱体30的方向转动时,与位于枢转侧的墙壁/橱柜等产生干涉的可能性较小,故,能够避免门体20与位于枢转侧的墙壁/橱柜等产生干涉。在开门的第二阶段,所述门体20的主要运动为外移,此时,门体20的前移距离较小,减少开门过程中对冰箱100前侧空间的需求。在开门的第三阶段,所述门体20的主要运动为转动,此时,门体20的前移以及外移距离均较小, 以进一步增大门体20的打开角度,便于用户查看以及取用箱体30内的物品。
进一步地,所述导引槽4的至少一段为曲线槽,可知的是,所述曲线槽每一点的曲率不同,通过改变所述曲线槽的曲率大小、曲率变化趋势、形状等,可以调节门体20打开过程中所述门体20的转动角度、前移距离、外移距离之间的关系。即,使所述活动座2能够带动所述门体20在第一方向的位移与在第二方向的位移之间的位移比随所述活动座2的转动角度而改变,以避免门体20打开过程中与位于枢转侧的墙壁/橱柜等产生干涉,并增大门体20的打开角度,便于用户查看以及取用箱体30内的物品。
请参图2-图3所示,于本发明第一实施方式中,所述导引槽4设于所述活动座2上;所述导引槽4远离所述铰链10的枢转侧的一段为凸曲线槽41,且所述凸曲线槽41自远离所述枢转侧的一端朝向所述枢转侧且朝向所述固定座1延伸,即,沿逐渐靠近所述枢转侧的方向,所述凸曲线槽41的曲率逐渐减小。
在门体20处于关闭状态时,所述联动组件3中与所述导引槽4相配合的一端位于所述凸曲线槽41远离所述枢转侧的一端,在打开门的过程中,所述联动组件3中与所述导引槽4相配合的一端沿所述凸曲线槽41移动,以控制所述门体20的初始运动轨迹,避免门体20打开过程中与位于枢转侧的墙壁/橱柜等产生干涉。
具体地,本实施方式中,沿逐渐靠近所述枢转侧的方向,所述凸曲线槽41的曲率逐渐减小,在所述联动组件3中与所述导引槽4相配合的一端沿自所述凸曲线槽41远离所述枢转侧的一端朝向所述枢转侧移动的过程中,所述活动座2在第一方向的位移与在第二方向的位移之间的位移比随所述活动座2的转动角度增大逐渐减小。从而,在开门的第一阶段,所述凸曲线槽41的曲率较大,所述门体20的主要运动为前移,此时,所述门体20的转动角度以及外移的距离均较小,可以理解的是,在门体20前移一段距离后,所述门体20继续向远离所述箱体30的方向转动时,与位于枢转侧的墙壁/橱柜等产生干涉的可能性较小,故,能够避免门体20与位于枢转侧的墙壁/橱柜等产生干涉。在开门的第二阶段,所述凸曲线槽41的曲率较小,所述门体20的主要运动为外移,此时,门体20的前移距离较小,减少开门过程中对冰箱100前侧空间的需求。
进一步地,所述导引槽4靠近所述铰链10的枢转侧的一段为直线槽42,所述凸曲线槽41与所述直线槽42相连通,在开门的第三阶段,所述联动组件3中与所述导引槽4相配合的一端沿所述直线槽42朝向所述枢转侧移动,此时,所述门体20的主要运动为转动,此时,门体20的前移以及外移均较小,能够增大门体20的打开角度,便于用户查看以及取用所述箱体30内的物品。
本实施方式中,所述导引槽4呈类似L型。当然,并不以此为限。
进一步地,所述联动组件3包括第一摇杆31、第二摇杆32、第三摇杆33。所述第一摇杆31的转动端转动连接于所述固定座1上,所述第一摇杆31的摆动端滑动连接于所述导引槽4内。所述第二摇杆32的转动端转动连接于所述固定座1上。所述第三摇杆33的转动端 转动连接于所述活动座2上,所述第三摇杆33的摆动端与所述第二摇杆32的摆动端相转动连接,且所述第三摇杆33与所述第一摇杆31相交叉且于交叉处转动连接。即,所述联动组件3、固定座1、活动座2共同形成了五连杆结构。
所述联动组件3构成的力臂较长,从而,在开门过程中,所述门体20可前移至箱体30前端较远的位置处,故,在将所述铰链10应用于嵌入式冰箱100内后,所述嵌入式冰箱100的门体20在开门过程中能够轻易地移动至位于枢转侧的墙壁/橱柜的前端,有效避免所述门体20与位于枢转侧的墙壁/橱柜之间产生干涉。
具体地,所述第二摇杆32的转动端位于所述第一摇杆31的转动端远离所述活动座2的一侧,使所述联动组件3能够实现在所述折叠状态以及展开状态之间切换,即,使通过所述联动组件3能够控制所述门体20在关闭状态以及打开状态之间切换并控制所述门体20的移动轨迹。
进一步地,所述活动座2上具有朝向所述固定座1开放的收容腔5,所述收容腔5用以容纳折叠状态的所述联动组件3,以增强所述冰箱100的外观效果。
请参图4-图5所示,为本发明第二实施方式中的铰链10a,本发明第二实施方式与第一实施方式的区别在于:所述导引槽4a设置于所述固定座1上,所述导引槽4a为自远离所述铰链10a的枢转侧的一端朝向所述枢转侧且朝向所述活动座2延伸的凸曲线槽。
于一具体实施方式中,整段所述导引槽4a均为曲线槽。
具体地,沿逐渐靠近所述枢转侧的方向,所述凸曲线槽的曲率逐渐增大,在所述联动组件3中与所述导引槽4a相配合的一端沿自所述凸曲线槽远离所述枢转侧的一端朝向所述枢转侧移动的过程中,所述活动座2在第一方向的位移与在第二方向的位移之间的位移比随所述活动座2的转动角度增大逐渐增大。从而,在开门的第一阶段,所述凸曲线槽的曲率较小,所述门体20的主要运动为外移,此时,所述门体20的转动角度以及前移的距离均较小,在对开门冰箱100中,能够避免开门过程中,该门体20与另一门体20产生干涉。在开门的第二阶段,所述凸曲线槽的曲率较大,所述门体20的主要运动为前移,此时,门体20的转动角度以及外移距离较小,能够避免门体20与位于枢转侧的墙壁/橱柜等产生干涉。在开门的第三阶段,所述门体20的主要运动为转动,此时,门体20的前移以及外移距离均较小,以进一步增大门体20的打开角度,便于用户查看以及取用箱体30内的物品。
进一步地,本实施方式中,所述联动组件3a中的所述第一摇杆31a的转动端转动连接于所述活动座2上,所述第一摇杆31a的摆动端滑动连接于所述导引槽4a内。所述第二摇杆32a的转动端转动连接于所述活动座2上。所述第三摇杆33a的转动端转动连接于所述固定座1上,所述第三摇杆33a的摆动端与所述第二摇杆32a的摆动端相转动连接,所述第三摇杆33a与所述第一摇杆31a相交叉且于交叉处转动连接。即,所述联动组件3a、固定座1、活动座2共同形成了五连杆结构。
所述联动组件3a构成的力臂较长,从而,在开门过程中,所述门体20可前移至箱体 30前端较远的位置处,故,在将所述铰链10a应用于嵌入式冰箱100内后,所述嵌入式冰箱100的门体20在开门过程中能够轻易地移动至位于枢转侧的墙壁/橱柜的前端,有效避免所述门体20与位于枢转侧的墙壁/橱柜之间产生干涉。
具体地,所述导引槽4a远离所述铰链10a的枢转侧的一端位于所述第三摇杆33a的转动端背离所述活动座2的一侧,即,在关门状态下,所述第一摇杆31a的摆动端位于所述第三摇杆33a的转动端背离所述活动座2的一侧,使所述联动组件3a能够实现在所述折叠状态以及展开状态之间切换,即,使通过所述联动组件3a能够控制所述门体20在关闭状态以及打开状态之间切换并控制所述门体20的移动轨迹。
进一步地,所述收容腔5a设于所述固定座1上,且朝向所述活动座2开放,以容纳折叠状态的所述联动组件3a,增强所述冰箱100的外观效果。
本发明中第二实施方式与第一实施方式除上述区别外,其他均相同,于此,不再赘述。
请参图6-图7所示,为本发明第三实施方式中的铰链10b,本发明第三实施方式与第二实施方式的区别在于:所述导引槽4b为自远离所述铰链10b的枢转侧的一端朝向所述活动座2且朝向所述枢转侧延伸的凹曲线槽,即,沿逐渐靠近所述枢转侧的方向,所述导引槽4b的曲率逐渐减小。
于一具体实施方式中,整段所述导引槽4b均为曲线槽。
具体地,沿逐渐靠近所述枢转侧的方向,所述凹曲线槽的曲率逐渐减小,在所述联动组件3中与所述导引槽b相配合的一端沿自所述凹曲线槽远离所述枢转侧的一端朝向所述枢转侧移动的过程中,所述活动座2在第一方向的位移与在第二方向的位移之间的位移比随所述活动座2的转动角度增大逐渐减小。从而,在开门的第一阶段,所述凹曲线槽的曲率较大,所述门体20的主要运动为前移,此时,所述门体20的转动角度以及外移的距离均较小,能够避免门体20与位于枢转侧的墙壁/橱柜等产生干涉。在开门的第二阶段,所述凹曲线槽的曲率较小且逐渐变小,所述门体20的主要运动为外移,此时,门体20的转动角度以及前移距离均较小,减少开门过程中对冰箱100前侧空间的需求。在开门的第三阶段,所述门体20的主要运动为转动,此时,门体20的前移以及外移距离均较小,以进一步增大门体20的打开角度,便于用户查看以及取用箱体30内的物品。
本发明中第三实施方式与第二实施方式除上述区别外,其他均相同,于此,不再赘述。
进一步地,于本发明第四实施方式中,该实施方式与前述实施方式的区别在于:所述铰链包括设于所述固定座1内且沿所述固定座1的高度方向并排设置的两组所述联动组件3、分别与两组所述联动组件3相配合的两个活动座2。将两个所述铰链的固定座1一体化能够减少安装所述铰链所需的空间,且降低成本。
进一步地,两组所述联动组件3中转动连接于所述固定座1上且同轴的两个转动轴通过套管相连接在一起,能够加强所述铰链的运行的稳定性,增强所述门体20运动的稳定性。
可以理解的是,本发明第四实施方式中的所述铰链适用于作为中铰链,同时连接位于所 述中铰链相对两侧的两个门体20。
进一步地,请参图1所示,本发明还提供一种嵌入式冰箱100,包括箱体30、门体20、连接于所述箱体30与所述门体20之间的上述铰链10、10a、10b,所述铰链10、10a、10b中的固定座1与所述箱体30相固定连接,所述铰链10、10a、10b中的活动座2与所述门体20相固定连接。
所述铰链10、10a、10b的结构如上所述,于此,不再赘述。
进一步地,所述门体20包括冰箱门201、与所述冰箱门201连接在一起的橱柜门202,所述铰链10、10a、10b连接于所述橱柜门202与所述箱体30之间。在所述橱柜门202开关门的过程中,能够带动所述冰箱门201同步移动。
综上所述,本发明中的铰链10、10a、10b,通过将导引槽4、4a、4b至少一段设置为曲线槽,在所述活动座2相对所述固定座1旋转的过程中,所述活动座2在第一方向的位移与在第二方向的位移之间的位移比随所述活动座2的转动角度而改变,从而,能够根据具体需求,调节门体20打开过程中在第一方向以及第二方向上的位移,控制所述门体20的运动轨迹,使所述门体20能够适应于多种应用场景。
以上实施例仅用以说明本发明的技术方案而非限制,尽管参照较佳实施例对本发明进行了详细说明,例如,不同的实施例中的技术若可叠加使用以同时达到对应的效果,其方案也在本发明的保护范围内。本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的精神和范围。

Claims (15)

  1. 一种铰链,包括安装于箱体上的固定座、安装于门体上的活动座、铰接于所述固定座与所述活动座之间的联动组件;其特征在于:所述活动座与所述固定座中的一个上设有导引槽,所述导引槽的至少一段为曲线槽,在所述活动座相对所述固定座转动的过程中,所述联动组件沿所述导引槽移动;或者,所述活动座与所述固定座中的一个上设有与所述联动组件相配合的导引槽,在所述活动座相对所述固定座旋转的过程中,所述导引槽用以引导所述活动座同时沿相交的第一方向以及第二方向移动;所述活动座在第一方向的位移与在第二方向的位移之间的位移比随所述活动座的转动角度而改变。
  2. 根据权利要求1所述的铰链,其特征在于:所述导引槽用以引导所述活动座同时沿相交的第一方向以及第二方向移动;在所述活动座相对所述固定座旋转打开的过程中,所述活动座在第一方向的位移与在第二方向的位移之间的位移比逐渐增大,或者在所述活动座相对所述固定座旋转打开的过程中,所述活动座在第一方向的位移与在第二方向的位移之间的位移比逐渐减小。
  3. 根据权利要求1所述的铰链,其特征在于:所述导引槽用以引导所述活动座同时沿相交的第一方向以及第二方向移动;所述第一方向为所述固定座朝向所述活动座的前向,所述第二方向为朝向所述铰链的枢转侧的侧向,所述第一方向与所述第二方向相垂直。
  4. 根据权利要求1所述的铰链,其特征在于:所述导引槽设于所述活动座上;所述导引槽远离所述铰链的枢转侧的一段为凸曲线槽,且所述凸曲线槽自远离所述枢转侧的一端朝向所述枢转侧且朝向所述固定座延伸。
  5. 根据权利要求4所述的铰链,其特征在于:所述导引槽靠近所述铰链的枢转侧的一段为直线槽,所述凸曲线槽与所述直线槽相连通。
  6. 根据权利要求4所述的铰链,其特征在于:所述联动组件包括:
    第一摇杆,所述第一摇杆的转动端转动连接于所述固定座上,所述第一摇杆的摆动端滑动连接于所述导引槽内;
    第二摇杆,所述第二摇杆的转动端转动连接于所述固定座上;
    第三摇杆,所述第三摇杆的转动端转动连接于所述活动座上,所述第三摇杆的摆动端与所述第二摇杆的摆动端相转动连接,且所述第三摇杆与所述第一摇杆相交叉且于交叉处转动连接。
  7. 根据权利要求6所述的铰链,其特征在于:所述第二摇杆的转动端位于所述第一摇杆的转动端远离所述活动座的一侧。
  8. 根据权利要求1所述的铰链,其特征在于:所述导引槽设置于所述固定座上;所述导引槽为自远离所述铰链的枢转侧的一端朝向所述枢转侧且朝向所述活动座延伸的凸曲线槽。
  9. 根据权利要求1所述的铰链,其特征在于:所述导引槽设置于所述固定座上;所述导引槽为自远离所述铰链的枢转侧的一端朝向所述活动座且朝向所述枢转侧延伸的凹曲线槽。
  10. 根据权利要求1所述的铰链,其特征在于:所述导引槽设置于所述固定座上;所述联动组件包括:
    第一摇杆,所述第一摇杆的转动端转动连接于所述活动座上,所述第一摇杆的摆动端滑动连接于所述导引槽内;
    第二摇杆,所述第二摇杆的转动端转动连接于所述活动座上;
    第三摇杆,所述第三摇杆的转动端转动连接于所述固定座上,所述第三摇杆的摆动端与所述第二摇杆的摆动端相转动连接,所述第三摇杆与所述第一摇杆相交叉且于交叉处转动连接。
  11. 根据权利要求10所述的铰链,其特征在于:所述导引槽远离所述铰链的枢转侧的一端位于所述第三摇杆的转动端背离所述活动座的一侧。
  12. 根据权利要求1所述的铰链,其特征在于:设置有所述导引槽的活动座或者固定座上具有收容腔,所述收容腔用以容纳折叠状态的所述联动组件。
  13. 根据权利要求1所述的铰链,其特征在于:所述铰链包括设于所述固定座内且沿所述固定座的高度方向并排设置的两组所述联动组件、分别与两组所述联动组件相配合的两个活动座。
  14. 根据权利要求13所述的铰链,其特征在于:两组所述联动组件中转动连接于所述固定座上且同轴的两个转动轴通过套管相连接在一起。
  15. 一种嵌入式冰箱,包括箱体、门体,其特征在于:所述嵌入式冰箱还包括如权利要求1所述的铰链。
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GB1237974A (zh) * 1968-04-05 1971-07-07
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CN110374436A (zh) * 2019-08-23 2019-10-25 合肥雪祺电气有限公司 嵌入式冰箱铰链及冰箱
CN216406491U (zh) * 2021-09-15 2022-04-29 青岛海尔电冰箱有限公司 铰链及具有该铰链的嵌入式冰箱

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GB1237974A (zh) * 1968-04-05 1971-07-07
CN104068806A (zh) * 2013-03-30 2014-10-01 海尔集团公司 洗碗机上部门体开门控制方法
CN110374436A (zh) * 2019-08-23 2019-10-25 合肥雪祺电气有限公司 嵌入式冰箱铰链及冰箱
CN216406491U (zh) * 2021-09-15 2022-04-29 青岛海尔电冰箱有限公司 铰链及具有该铰链的嵌入式冰箱

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