WO2022179212A1 - 冰箱门体的制备方法、冰箱门体以及支撑组件 - Google Patents

冰箱门体的制备方法、冰箱门体以及支撑组件 Download PDF

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Publication number
WO2022179212A1
WO2022179212A1 PCT/CN2021/132427 CN2021132427W WO2022179212A1 WO 2022179212 A1 WO2022179212 A1 WO 2022179212A1 CN 2021132427 W CN2021132427 W CN 2021132427W WO 2022179212 A1 WO2022179212 A1 WO 2022179212A1
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WIPO (PCT)
Prior art keywords
support assembly
plate
state
refrigerator door
door body
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PCT/CN2021/132427
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English (en)
French (fr)
Inventor
卢晓东
李高杰
王文涛
郑元志
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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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Publication of WO2022179212A1 publication Critical patent/WO2022179212A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C44/00Shaping by internal pressure generated in the material, e.g. swelling or foaming ; Producing porous or cellular expanded plastics articles
    • B29C44/34Auxiliary operations
    • B29C44/35Component parts; Details or accessories
    • 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 devices, in particular to a preparation method of a refrigerator door body, a refrigerator door body and a support assembly prepared by the preparation method.
  • the doors of the existing smart refrigerators are generally equipped with large display screens.
  • Most refrigerators in the market adopt the method of arranging a pre-embedded box with a display panel installation cavity between the door panel and the door lining for the display panel.
  • a large amount of foaming material filled in the refrigerator door body will squeeze the embedded box during the foaming and expansion process, resulting in deformation of the embedded box, thereby affecting the display panel.
  • Chinese Patent No. CN207741419U discloses a display-controlled pre-embedded box, auxiliary foaming process equipment and refrigeration equipment.
  • the auxiliary foaming process equipment includes a support part and a reciprocating drive device connected to the support part.
  • the reciprocating driving device drives the support part to enter the cavity of the pre-embedded box from the installation hole of the pre-embedded box, so as to pass through the pre-embedded box.
  • the support portion supports the cavity.
  • the support portion is in the shape of a plate, and is only suitable for the refrigerator door with the size of the mounting hole not smaller than the cross-sectional size of the cavity.
  • the support portion When the size of the mounting hole is smaller than the cross-sectional size of the cavity, the support portion cannot pass through the mounting hole. It is installed into the cavity, and at the same time, after foaming, the surface pressure of the support portion is relatively large, and it is difficult to take it out from the door body.
  • the purpose of the present invention is to provide a preparation method of a refrigerator door body, a refrigerator door body and a support assembly.
  • a preparation method of a refrigerator door body the refrigerator door body comprises a display panel installation cavity formed by a pre-embedded box, and an entrance and exit communicated with the display panel installation cavity, The size of the entrance and exit in the first direction is smaller than the size of the installation cavity of the display panel;
  • the preparation method of the refrigerator door body includes the following steps:
  • a support assembly is provided, the support assembly includes a first plate, a second plate arranged side by side with the first plate in the first direction, an adjustment for adjusting the gap between the first plate and the second plate structure, the support assembly has a first state in which the first board and the second board are attached, and a second state in which the first board and the second board are separated along the first direction;
  • the gap between the first plate and the second plate is adjusted by the adjustment structure, so that the support assembly is switched from the second state to the first state, and the support assembly is moved from the Take out the entrance.
  • the adjustment structure includes a plurality of bumps disposed on the side of the first plate facing the second plate, a plurality of bumps disposed on the second plate and the plurality of bumps One-to-one corresponding grooves, the support assembly is in the first state when the protrusion is accommodated in the corresponding groove, and the support assembly is in the second state when the protrusion is located outside the groove.
  • both the bump and the groove are provided with a guide slope for guiding the bump into and out of the groove.
  • the guide slope is located on the side of the protrusion and the groove away from the inlet and outlet.
  • the edge of the side of the groove corresponding to the guiding inclined surface has a plane-shaped abutting portion.
  • a plurality of the bumps form multiple rows of bump groups arranged at intervals; the bumps in the two adjacent rows of bump groups are along the length direction. Offset settings in the vertical direction.
  • the support assembly further includes a driving member for driving the first plate and the second plate to move relatively; located at one end of the support assembly in the length direction, the first plate One of the plate and the second plate is provided with a stop block protruding toward the other, and the other is provided with a long groove matched with the stop block.
  • the grooves together form an adjustment cavity;
  • the driving member includes a cam matched with the adjustment cavity and an operating handle connected with the cam.
  • the present invention also provides a refrigerator door, which is prepared by the above-mentioned method for preparing a refrigerator door.
  • the present invention also provides a support assembly, the support assembly includes:
  • a second board arranged side by side with the first board along the first direction;
  • the adjustment structure adjusts the gap between the first plate and the second plate so that the support assembly at least includes a first state and a second state with different thicknesses in the first direction.
  • the adjustment structure includes a plurality of bumps disposed on the side of the first plate facing the second plate, a plurality of bumps disposed on the second plate and the plurality of bumps One-to-one corresponding grooves, the support assembly is in the first state when the protrusion is accommodated in the corresponding groove, and the support assembly is in the second state when the protrusion is located outside the groove.
  • both the bump and the groove are provided with a guide slope for guiding the bump into and out of the groove.
  • the edge of the side of the groove corresponding to the guiding inclined surface has a plane-shaped abutting portion.
  • a plurality of the bumps form a plurality of rows of bump groups arranged at intervals.
  • the bumps in the two adjacent rows of bump groups are arranged in a staggered position along a direction perpendicular to the length direction.
  • the support assembly further includes a driving member for driving the first plate and the second plate to move relatively.
  • one of the first plate and the second plate is provided with a stopper protruding toward the other, and the other
  • the driving member includes a cam matched with the adjustment cavity and a cam matched with the cam. Connected handle.
  • the beneficial effect of the present invention is that: in the method for preparing a refrigerator door body of the present invention, by introducing supporting components with different thicknesses in a first state and a second state, and along the first direction, the The thickness of the support assembly is not greater than the dimension W1 of the entrance and exit, and the thickness of the support assembly in the second state is consistent with the dimension W2 in the display panel installation cavity, so that when the support assembly is in the first state, it can be Installed into the display panel installation cavity from the entrance and exit, after the support assembly is installed in the display panel installation cavity, the support assembly is switched to a second state, and the support assembly supports the embedded box It can effectively resist foaming deformation. After the foaming is completed, the support assembly is switched to the first state, and it is also easy to take out from the display panel installation cavity, so that the size of the entrance and exit is smaller than that in the display panel installation cavity. Effective support for embedded boxes.
  • FIG. 1 is a schematic structural diagram of a refrigerator door body in the present invention.
  • FIG. 2 is a cross-sectional view taken along the line A-A in FIG. 1 .
  • Figure 3 is an exploded view of the support assembly of the present invention.
  • FIG. 4 is a schematic structural diagram of the support assembly in FIG. 3 when it is in a first state.
  • FIG. 5 is a schematic structural diagram of the support assembly in FIG. 3 when it is in a second state.
  • FIG. 6 is a schematic structural diagram of another angle of the support assembly in FIG. 5 .
  • FIG. 1 to FIG. 6 are preferred embodiments of the present invention.
  • these embodiments do not limit the present invention, and equivalent transformations or substitutions in functions, methods, or structures made by those of ordinary skill in the art according to these embodiments all fall within the protection scope of the present invention.
  • the invention provides a preparation method of a refrigerator door body.
  • the refrigerator door body prepared by the preparation method is relatively flat in the pre-embedded box after foaming, which facilitates the installation of the display panel into the pre-embedded box and is not easy to damage the refrigerator door. body parts.
  • the refrigerator door 1 includes a glass panel 11 , and a pre-embedded box mounted on the rear side of the glass panel 11 and forming a display panel installation cavity 14 together with the glass panel 11 . 12.
  • the inlet and outlet 13 communicated with the display panel installation cavity 14 , and the inlet and outlet 13 are used for installing the display panel in the display panel installation cavity 14 .
  • the dimension W1 of the inlet and outlet 13 is smaller than the dimension W2 of the display panel mounting cavity 14 .
  • the above-mentioned first direction refers to the thickness direction of the refrigerator door body 1 , which, of course, is not limited to this.
  • the preparation method of the refrigerator door body 1 comprises the following steps:
  • a support assembly 2 is provided, the support assembly 2 includes a first plate 21, a second plate 22 arranged side by side with the first plate 21 in the first direction, adjusting the first plate 21 and the second plate
  • the structure for adjusting the gap between 22, the support assembly 2 has a first state in which the first plate 21 and the second plate 22 are in contact, and the first plate 21 and the first plate 21 are in the first direction. the second state in which the second plate 22 is phase-separated;
  • the gap between the first plate 21 and the second plate 22 is adjusted by the adjustment structure, so that the support assembly 2 is switched from the second state to the first state, and the support assembly 2 is taken out from the port 13.
  • the thickness of the support assembly 2 is not greater than the dimension W1 of the inlet and outlet 13, so that the support assembly in the first state 2.
  • the display panel installation cavity 14 can be entered and exited from the entrance and exit 13.
  • the thickness of the support assembly 2 is consistent with the dimension W2 in the display panel installation cavity 14 , so that one side of the support assembly 2 supports On the glass panel 11 , the opposite side is supported on the side wall of the pre-embedded box 12 corresponding to the glass panel 11 , and the pre-embedded box 12 is supported, which can effectively resist foaming deformation.
  • the thickness of the support assembly 2 in the first state Not larger than the dimension W1 of the inlet and outlet 13, the thickness of the support assembly 2 in the second state is consistent with the dimension W2 in the display panel installation cavity 14, so that when the support assembly 2 is in the first state, it can be Installed into the display panel installation cavity 14 from the inlet and outlet 13, after the support assembly 2 is installed in the display panel installation cavity 14, the support assembly 2 is switched to the second state, the support assembly 2 Supporting the pre-embedded box 12 can effectively resist foaming deformation. After the foaming is completed, the support assembly 2 is switched to the first state and can be easily taken out from the display panel installation cavity 14 .
  • the above-mentioned support assembly 2 can be applied to the support of the embedded box 12 in which the size of the entrance and exit 13 is smaller than that in the display panel installation cavity 14 .
  • the support assembly 2 is switched from the second state to the first state, so that the support assembly 2 can also be easily taken out from the display panel installation cavity 14 .
  • the adjustment structure includes a plurality of bumps 23 disposed on the side of the first plate 21 facing the second plate 22, a
  • the grooves 24 on the second plate 22 correspond to the plurality of bumps 23 one-to-one.
  • the support assembly 2 is in the first state.
  • the support assembly 2 is in the second state when the protrusion 23 is located outside the groove 24 . That is, in this embodiment, the gap between the first plate 21 and the second plate 22 is adjusted by adjusting the relative position between the protrusion 23 and the groove 24, so that the support assembly 2 Switch between the first state and the second state.
  • the protrusions 23 and the grooves 24 are provided with guiding slopes for guiding the protrusions 23 into and out of the grooves 24 , which can reduce the amount of the protrusions 23 and the grooves during the adjustment process.
  • the interference between 24 is more conducive to user adjustment.
  • the bump 23 is provided with a first guiding inclined surface 231
  • the groove 24 is provided with a second guiding inclined surface 241 that matches the first guiding inclined surface 231 .
  • the inclination directions of the first guide slope 231 and the second guide slope 241 are the same.
  • the guide slope is located on the side of the protrusion 23 and the groove 24 away from the inlet and outlet 13, so that, After the support assembly 2 in the first state is located in the display panel installation cavity 14 , the support assembly 2 can be switched to the second state by pushing the first plate 21 inwards. After completion, the support assembly 2 can be switched to the first state by pulling the first plate 21 outward, which is easy to operate and easy to implement.
  • the support assembly 2 can be switched to the second state by pushing the first plate 21 inward, and by pulling the first plate 21 outward, that is,
  • the support assembly 2 can be switched to the first state as an example for specific description.
  • the technical spirit involved in the following embodiments can be alternatively applied to the support assembly 2 that switches the support assembly 2 between the first state and the second state in other pushing directions.
  • the above-mentioned inner refers to the side facing the display panel installation cavity 14
  • the above-mentioned outer refers to the side facing the outside of the display panel installation cavity 14 .
  • the edge of the side of the groove 24 corresponding to the guiding inclined surface has a flat abutting portion (not numbered), so that when the supporting assembly 2 is in the second state, the The bumps 23 abut against the abutting portions, that is, the bumps 23 and the second plate 22 are in line contact, which is relatively stable. Therefore, during the foaming process of the refrigerator, the first plate 21 and the second plate 22 will not be dislocated and loosened due to being squeezed in the first direction, resulting in support failure, and enhancing the support stability of the support assembly 2 to the embedded box 12 .
  • a plurality of the bumps 23 form a plurality of rows of bump groups arranged at intervals, so that the support between the first plate 21 and the second plate 22 is relatively uniform , to further enhance the stability of the support of the support assembly 2 .
  • the bumps 23 in the two adjacent rows of bump groups are arranged in a dislocation along the direction perpendicular to the length direction, so as to further enhance the stability of the support of the support assembly 2 .
  • the support assembly 2 further includes a driving member 25 for driving the first plate 21 and the second plate 22 to move relatively, so that the support assembly 2 can be easily switched from the second state to first state.
  • one of the first plate 21 and the second plate 22 is provided with a stop block 221 protruding toward the other, and the other is provided with a stopper 221 .
  • the driving member 25 includes a cam 251 matched with the adjustment cavity 26 And the operating handle 252 connected with the cam 251 .
  • the stopper block 221 is provided on the second plate 22, and the long slot 211 is provided on the first plate 21.
  • the stopper block 221 is located in the long groove 211 , and the outer end surface of the stopper block 221 and the long groove 211 form the adjustment cavity 26 .
  • the length of the adjustment cavity 26 is adapted to the short diameter of the cam 251, so that after the cam 251 is installed in the adjustment cavity 26, the cam 251 can be adjusted in the adjustment through the operating handle 252.
  • the rotation in the cavity 26 drives the first plate 21 to move outward relative to the second plate 22 , so that the support assembly 2 is switched from the second state to the first state.
  • the stopper 221 can also be provided on the first plate 21, and the long groove 211 can be provided on the second plate 22 , at this time, the inner end surface of the stopper block 221 and the long groove 211 form the adjustment cavity 26 .
  • the adjustment cavity 26 and the operation handle 252 are only set so that the operation handle 252 can push the first plate 21 to move outward through the adjustment cavity 26 , so that the support assembly 2 can be automatically moved out.
  • the second state can be switched to the first state.
  • the above-mentioned end located in the length direction of the support assembly 2 refers to the end of the support assembly 2 corresponding to the inlet and outlet 13 . one end.
  • the present invention also provides a refrigerator door body 1 prepared by the above-mentioned preparation method of the refrigerator door body 1 .
  • the present invention also provides a support assembly 2 , which can be applied to the support of the embedded box 12 whose size of the entrance 13 is smaller than the size of the display panel installation cavity 14 .
  • the support assembly 2 by introducing the support assembly 2 with different thicknesses in the first state and the second state, and along the first direction, the The thickness of the support assembly 2 is not greater than the dimension W1 of the inlet and outlet 13, and the thickness of the support assembly 2 in the second state is consistent with the dimension W2 in the display panel installation cavity 14. Therefore, when the support assembly 2 is in the first In a state, it can be installed into the display panel installation cavity 14 from the inlet and outlet 13, and after the support assembly 2 is installed in the display panel installation cavity 14, the support assembly 2 is switched to the second state, The support assembly 2 supports the pre-embedded box 12 and can effectively resist foaming deformation.
  • the support assembly 2 is switched to the first state, and can also be easily taken out from the display panel installation cavity 14. Effective support for the pre-embedded box 12 whose size of the entrance and exit 13 is smaller than the size of the display panel installation cavity 14 is realized.

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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

本发明提供一种冰箱门体的制备方法、冰箱门体、支撑组件,制备方法包括:提供包括第一板、第二板的支撑组件,所述第一板与第二板具有相贴合的第一状态、相分离的第二状态;将第一状态下的支撑组件置入显示板安装腔内;将支撑组件切换至第二状态;在发泡后,将支撑组件切换至第一状态,并取出。

Description

冰箱门体的制备方法、冰箱门体以及支撑组件 技术领域
本发明涉及制冷装置领域,尤其涉及一种冰箱门体的制备方法、由所述制备方法制备的冰箱门体、支撑组件。
背景技术
现有的智能冰箱的门体上一般均设置有较大的显示屏,市场中的冰箱大都采用在门面板与门衬之间设置具有显示板安装腔的预埋盒的方式为显示板预留安装空间,但是,在冰箱门体发泡的过程中,冰箱门体内填充的大量的发泡料发泡膨胀过程中会挤压所述预埋盒,导致预埋盒变形,从而影响显示板的正常安装。
第CN207741419U号中国专利,公开了一种显控预埋盒、辅助发泡工艺装备和制冷设备,所述辅助发泡工艺设备包括支撑部、与所述支撑部相连接的往复驱动装置,在所述预埋盒安装在门胆与玻璃门体之间发泡时,所述往复驱动装置驱动所述支撑部自所述预埋盒的安装孔进入所述预埋盒的腔体内,以通过所述支撑部支撑所述腔体。但是,该支撑部呈板状,仅适用于安装孔的尺寸不小于腔体的截面尺寸的冰箱门体,在安装孔的尺寸小于腔体的截面尺寸时,该支撑部无法自所述安装孔安装入所述腔体内,同时,在发泡后,所述支撑部表面压强较大,难以从门体内取出。
有鉴于此,有必要提供一种新的冰箱门体的制备方法、冰箱门体及支撑组件以解决上述问题。
发明内容
本发明的目的在于提供一种冰箱门体的制备方法、冰箱门体及支撑组件。
为实现上述发明目的,本发明采用如下技术方案:一种冰箱门体的制备方法,所述冰箱门体包括由预埋盒形成的显示板安装腔、与所述显示板安装腔连通的出入口,在第一方向上所述出入口的尺寸小于所述显示板安装腔内的尺寸;所述冰箱门体的制备方法包括如下步骤:
提供支撑组件,所述支撑组件包括第一板、沿所述第一方向与所述第一板并排设置的第二板、调节所述第一板与所述第二板之间的间隙的调节结构,所述支撑组件具有所述第一板与所述第二板相贴合的第一状态、沿所述第一方向所述第一板与所述第二板相分离的第二状态;
将在第一状态下的支撑组件自所述出入口置入所述显示板安装腔内;
通过所述调节结构调节所述第一板与所述第二板之间的间隙,使所述支撑组件由第一状态切换至第二状态以支撑所述预埋盒;
发泡;
发泡后,通过所述调节结构调节所述第一板与所述第二板之间的间隙,使得所述支撑组件由第二状态切换至第一状态,并将所述支撑组件自所述出入口取出。
作为本发明进一步改进的技术方案,所述调节结构包括设于所述第一板朝向所述第二板一侧的多个凸块、设于所述第二板上与所述多个凸块一一对应的凹槽,在所述凸块收容于对应的凹槽内时所述支撑组件为第一状态,在所述凸块位于凹槽外侧时所述支撑组件为第二状态。
作为本发明进一步改进的技术方案,所述凸块与所述凹槽上均设有引导所述凸块进出所述凹槽的导引斜面。
作为本发明进一步改进的技术方案,在所述支撑组件位于所述显示板安装腔内后,所述导引斜面位于所述凸块以及所述凹槽远离所述出入口的一侧。
作为本发明进一步改进的技术方案,所述凹槽与所述导引斜面相对应的一侧的边缘具有呈平面状的抵持部。
作为本发明进一步改进的技术方案,沿所述支撑组件的长度方向,多个所述凸块形成间隔设置的多排凸块组;相邻两排凸块组中的凸块沿与长度方向相垂直的方向上错位设置。
作为本发明进一步改进的技术方案,所述支撑组件还包括用以驱动所述第一板与所述第二板相对移动的驱动件;位于所述支撑组件的长度方向的一端,所述第一板与所述第二板中的一个上凸设有朝向另一个突伸的止挡块,另一个上设有与所述止挡块相配合的长槽,所述止挡块与所述长槽共同形成调节腔;所述驱动件包括与所述调节腔相配合的凸轮以及与所述凸轮相连接的操作柄。
为实现上述发明目的,本发明还提供一种冰箱门体,所述冰箱门体由上述的冰箱门体的制备方法制备形成。
为实现上述发明目的,本发明还提供一种支撑组件,所述支撑组件包括:
第一板,
第二板,沿第一方向与所述第一板并排设置;
调节结构,调节所述第一板与所述第二板之间的间隙以使所述支撑组件在第一方向上至少包括厚度不同的第一状态、第二状态。
作为本发明进一步改进的技术方案,所述调节结构包括设于所述第一板朝向所述第二板一侧的多个凸块、设于所述第二板上与所述多个凸块一一对应的凹槽,在所述凸块收容于对应的凹槽内时所述支撑组件为第一状态,在所述凸块位于凹槽外侧时所述支撑组件为第二状态。
作为本发明进一步改进的技术方案,所述凸块与所述凹槽上均设有引导所述凸块进出所述凹槽内的导引斜面。
作为本发明进一步改进的技术方案,所述凹槽与所述导引斜面相对应的一侧的边缘具有呈平面状的抵持部。
作为本发明进一步改进的技术方案,沿所述支撑组件的长度方向,多个所述凸块形成间隔设置的多排凸块组。
作为本发明进一步改进的技术方案,相邻两排凸块组中的凸块沿与长度方向相垂直的方向上错位设置。
作为本发明进一步改进的技术方案,所述支撑组件还包括用以驱动所述第一板与所述第二板相对移动的驱动件。
作为本发明进一步改进的技术方案,位于所述支撑组件的长度方向的一端,所述第一板与所述第二板中的一个上凸设有朝向另一个突伸的止挡块,另一个上设有与所述止挡块相配合的长槽,所述止挡块与所述长槽共同形成调节腔;所述驱动件包括与所述调节腔相配合的凸轮以及与所述凸轮相连接的操作柄。
本发明的有益效果是:本发明中的冰箱门体的制备方法中,通过引入具有不同厚度的第一状态与第二状态的支撑组件,且沿所述第一方向,第一状态的所述支撑组件的厚度不大于所述出入口的尺寸W1,第二状态的所述支撑组件的厚度与所述显示板安装腔内的尺寸W2一致,从而,在所述支撑组件处于第一状态时,能够自所述出入口安装入所述显示板安装腔内,在所述支撑组件安装至所述显示板安装腔内后,所述支撑组件切换至第二状态,所述支撑组件支撑所述预埋盒能够有效抗击发泡变形,在完成发泡后,所述支撑组件切换至第一状态,也易于自所述显示板安装腔内取出,能够实现对出入口的尺寸小于显示板安装腔内的尺寸的预埋盒的有效支撑。
附图说明
图1是本发明中的冰箱门体的结构示意图。
图2是图1中A-A向的剖视图。
图3是本发明中的支撑组件的分解图。
图4是图3中的支撑组件处于第一状态时的结构示意图。
图5是图3中的支撑组件处于第二状态时的结构示意图。
图6时图5中的支撑组件的另一角度的结构示意图。
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6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。
本发明提供一种冰箱门体的制备方法,采用该制备方法制备的冰箱门体在发泡后预埋盒也比较平整,便于将显示板安装至所述预埋盒内,且不易损伤冰箱门体部件。
请参图1-图2所示,所述冰箱门体1包括玻璃面板11、安装于所述玻璃面板11后侧且与所述玻璃面板11共同围设形成显示板安装腔14的预埋盒12、与所述显示板安装腔14相 连通的出入口13,所述出入口13用以将显示板安装于所述显示板安装腔14内。
请参图2所示,在第一方向上,所述出入口13的尺寸W1小于所述显示板安装腔14内的尺寸W2。
本发明中,上述的第一方向即指所述冰箱门体1的厚度方向,当然,并不以此为限。
所述冰箱门体1的制备方法包括如下步骤:
提供支撑组件2,所述支撑组件2包括第一板21、沿所述第一方向与所述第一板21并排设置的第二板22、调节所述第一板21与所述第二板22之间的间隙的调节结构,所述支撑组件2具有所述第一板21与所述第二板22相贴合的第一状态、沿所述第一方向所述第一板21与所述第二板22相分离的第二状态;
将在第一状态下的支撑组件2自所述出入口13置入所述显示板安装腔14内;
通过所述调节结构调节所述第一板21与所述第二板22之间的间隙,使所述支撑组件2由第一状态切换至第二状态以支撑所述预埋盒12;
发泡;
发泡后,通过所述调节结构调节所述第一板21与所述第二板22之间的间隙,使得所述支撑组件2由第二状态切换至第一状态,并将所述支撑组件2自所述出入口13取出。
具体地,在所述支撑组件2处于第一状态时,沿所述第一方向,所述支撑组件2的厚度不大于所述出入口13的尺寸W1,以使处于第一状态的所述支撑组件2能够自所述出入口13进出所述显示板安装腔14。
在所述支撑组件2处于第二状态时,沿所述第一方向,所述支撑组件2的厚度与所述显示板安装腔14内的尺寸W2一致,从而所述支撑组件2的一侧支撑于所述玻璃面板11上、相对侧支撑于所述预埋盒12与所述玻璃面板11相对应的侧壁上,支撑所述预埋盒12,能够有效抗击发泡变形。
本发明中的冰箱门体1的制备方法中,通过引入具有不同厚度的第一状态与第二状态的支撑组件2,且沿所述第一方向,第一状态的所述支撑组件2的厚度不大于所述出入口13的尺寸W1,第二状态的所述支撑组件2的厚度与所述显示板安装腔14内的尺寸W2一致,从而,在所述支撑组件2处于第一状态时,能够自所述出入口13安装入所述显示板安装腔14内,在所述支撑组件2安装至所述显示板安装腔14内后,所述支撑组件2切换至第二状态,所述支撑组件2支撑所述预埋盒12能够有效抗击发泡变形,在完成发泡后,所述支撑组件2切换至第一状态,也易于自所述显示板安装腔14内取出。
即,上述的支撑组件2能够应用于出入口13的尺寸小于显示板安装腔14内的尺寸的预埋盒12的支撑。
同时,在发泡完成后,将所述支撑组件2自第二状态切换至第一状态,使所述支撑组件2也易于自所述显示板安装腔14内取出。
进一步地,请参图3-图6所示,于一具体实施方式中,所述调节结构包括设于所述第 一板21朝向所述第二板22一侧的多个凸块23、设于所述第二板22上与所述多个凸块23一一对应的凹槽24,在所述凸块23收容于对应的凹槽24内时所述支撑组件2为第一状态,在所述凸块23位于凹槽24外侧时所述支撑组件2为第二状态。即,本实施方式中,通过调节所述凸块23与所述凹槽24的之间的相对位置调节所述第一板21与所述第二板22之间的间隙,使所述支撑组件2在第一状态与第二状态之间切换。当然,并不以此为限,所有能够实现沿第一方向调节所述第一板21与所述第二板22之间的间隙的调节结构均在本发明的保护范围之内。
进一步地,所述凸块23与所述凹槽24上均设有引导所述凸块23进出所述凹槽24的导引斜面,能够减少调节过程中所述凸块23与所述凹槽24之间的干涉,更有利于用户调节。
具体地,所述凸块23上设有第一导引斜面231,所述凹槽24上设有与所述第一导引斜面231相适配的第二导引斜面241。所述第一导引斜面231与所述第二导引斜面241的倾斜方向相同。
本实施方式中,在所述支撑组件2位于所述显示板安装腔14内后,所述导引斜面位于所述凸块23以及所述凹槽24远离所述出入口13的一侧,从而,在处于第一状态的所述支撑组件2位于所述显示板安装腔14内后,通过向内推动所述第一板21,即可使所述支撑组件2切换至第二状态,在发泡完成后,通过向外拉动所述第一板21,即可使所述支撑组件2切换至第一状态,操作简便,且便于实施。
为了简化描述,下述的实施方式中,均以通过向内推动所述第一板21,即可使所述支撑组件2切换至第二状态,通过向外拉动所述第一板21,即可使所述支撑组件2切换至第一状态为例进行具体阐述。但应当说明的是,在下述的实施方式中所涉及的技艺精神可以被替换地应用到以其他推动方向使所述支撑组件2在第一状态与第二状态之间切换的支撑组件2上。
可以理解的是,上述的内即指朝向显示板安装腔14的一侧,上述的外即指朝向显示板安装腔14外侧的一侧。
进一步地,所述凹槽24与所述导引斜面相对应的一侧的边缘具有呈平面状的抵持部(未标号),从而,在所述支撑组件2处于第二状态时,所述凸块23抵持于所述抵持部,即,所述凸块23与所述第二板22之间为线接触,比较稳定,从而,在冰箱发泡的过程中,所述第一板21与所述第二板22不会因受到第一方向的挤压而错位松脱,导致支撑失效,增强所述支撑组件2对所述预埋盒12的支撑稳定性。
进一步地,沿所述支撑组件2的长度方向,多个所述凸块23形成间隔设置的多排凸块组,使所述第一板21与所述第二板22之间的支撑比较均匀,进一步增强所述支撑组件2支撑的稳定性。
进一步地,相邻两排凸块组中的凸块23沿与长度方向相垂直的方向上错位设置,以进一步增强所述支撑组件2支撑的稳定性。
进一步地,所述支撑组件2还包括用以驱动所述第一板21与所述第二板22相对移动的驱动件25,以使所述支撑组件2能够较为简单地自第二状态切换至第一状态。
具体地,位于所述支撑组件2的长度方向的一端,所述第一板21与所述第二板22中的一个上凸设有朝向另一个突伸的止挡块221,另一个上设有与所述止挡块221相配合的长槽211,所述止挡块221与所述长槽211共同形成调节腔26;所述驱动件25包括与所述调节腔26相配合的凸轮251以及与所述凸轮251相连接的操作柄252。
于一具体实施方式中,所述止挡块221设于所述第二板22上,所述长槽211设于所述第一板21上,在所述支撑组件2处于第二状态时,所述止挡块221位于所述长槽211内,所述止挡块221的外端面与所述长槽211形成所述调节腔26,此时,沿所述支撑组件2的长度方向,所述调节腔26的长度与所述凸轮251的短径相适配,从而,将所述凸轮251安装入所述调节腔26内后,通过所述操作柄252使所述凸轮251在所述调节腔26内转动带动所述第一板21相对所述第二板22向外移动,以使所述支撑组件2自第二状态切换至第一状态。
当然,并不以此为限,可以理解的是,于其他实施方式中,所述止挡块221也可以设于所述第一板21上,所述长槽211设于所述第二板22上,此时,所述止挡块221的内端面与所述长槽211形成所述调节腔26。
可以理解的是,所述调节腔26与所述操作柄252只要设置为所述操作柄252能够通过所述调节腔26推动所述第一板21向外移动,以使所述支撑组件2自第二状态切换至第一状态即可。
可以理解的是,在所述支撑组件2位于所述显示板安装腔14内后,上述的位于所述支撑组件2的长度方向的一端即指所述支撑组件2与所述出入口13相对应的一端。
进一步地,本发明还提供一种由上述冰箱门体1的制备方法制备形成的冰箱门体1。
进一步地,本发明还提供一种支撑组件2,所述支撑组件2能够应用于出入口13的尺寸小于显示板安装腔14内的尺寸的预埋盒12的支撑。
所述支撑组件2的具体结构如上文中所述,于此,不再赘述。
综上所述,本发明中的冰箱门体1的制备方法中,通过引入具有不同厚度的第一状态与第二状态的支撑组件2,且沿所述第一方向,第一状态的所述支撑组件2的厚度不大于所述出入口13的尺寸W1,第二状态的所述支撑组件2的厚度与所述显示板安装腔14内的尺寸W2一致,从而,在所述支撑组件2处于第一状态时,能够自所述出入口13安装入所述显示板安装腔14内,在所述支撑组件2安装至所述显示板安装腔14内后,所述支撑组件2切换至第二状态,所述支撑组件2支撑所述预埋盒12能够有效抗击发泡变形,在完成发泡后,所述支撑组件2切换至第一状态,也易于自所述显示板安装腔14内取出,能够实现对出入口13的尺寸小于显示板安装腔14内的尺寸的预埋盒12的有效支撑。
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. 一种冰箱门体的制备方法,所述冰箱门体包括由预埋盒形成的显示板安装腔、与所述显示板安装腔连通的出入口,在第一方向上所述出入口的尺寸小于所述显示板安装腔内的尺寸;其特征在于:所述冰箱门体的制备方法包括如下步骤:
    提供支撑组件,所述支撑组件包括第一板、沿所述第一方向与所述第一板并排设置的第二板、调节所述第一板与所述第二板之间的间隙的调节结构,所述支撑组件具有所述第一板与所述第二板相贴合的第一状态、沿所述第一方向所述第一板与所述第二板相分离的第二状态;
    将在第一状态下的支撑组件自所述出入口置入所述显示板安装腔内;
    通过所述调节结构调节所述第一板与所述第二板之间的间隙,使所述支撑组件由第一状态切换至第二状态以支撑所述预埋盒;
    发泡;
    发泡后,通过所述调节结构调节所述第一板与所述第二板之间的间隙,使得所述支撑组件由第二状态切换至第一状态,并将所述支撑组件自所述出入口取出。
  2. 如权利要求1所述的冰箱门体的制备方法,其特征在于:所述调节结构包括设于所述第一板朝向所述第二板一侧的多个凸块、设于所述第二板上与所述多个凸块一一对应的凹槽,在所述凸块收容于对应的凹槽内时所述支撑组件为第一状态,在所述凸块位于凹槽外侧时所述支撑组件为第二状态。
  3. 如权利要求2所述的冰箱门体的制备方法,其特征在于:所述凸块与所述凹槽上均设有引导所述凸块进出所述凹槽的导引斜面。
  4. 如权利要求3所述的冰箱门体的制备方法,其特征在于:在所述支撑组件位于所述显示板安装腔内后,所述导引斜面位于所述凸块以及所述凹槽远离所述出入口的一侧。
  5. 如权利要求3所述的冰箱门体的制备方法,其特征在于:所述凹槽与所述导引斜面相对应的一侧的边缘具有呈平面状的抵持部。
  6. 如权利要求2所述的冰箱门体的制备方法,其特征在于:沿所述支撑组件的长度方向,多个所述凸块形成间隔设置的多排凸块组;相邻两排凸块组中的凸块沿与长度方向相垂直的方向上错位设置。
  7. 如权利要求2所述的冰箱门体的制备方法,其特征在于:所述支撑组件还包括用以驱动所述第一板与所述第二板相对移动的驱动件;位于所述支撑组件的长度方向的一端,所述第一板与所述第二板中的一个上凸设有朝向另一个突伸的止挡块,另一个上设有与所述止挡块相配合的长槽,所述止挡块与所述长槽共同形成调节腔;所述驱动件包括与所述调节腔相配合的凸轮以及与所述凸轮相连接的操作柄。
  8. 一种冰箱门体,其特征在于:所述冰箱门体由权利要求1-7中任意一项所述的冰箱门体的制备方法制备形成。
  9. 一种支撑组件,其特征在于:所述支撑组件包括:
    第一板,
    第二板,沿第一方向与所述第一板并排设置;
    调节结构,调节所述第一板与所述第二板之间的间隙以使所述支撑组件在第一方向上至少包括厚度不同的第一状态、第二状态。
  10. 如权利要求9所述的支撑组件,其特征在于:所述调节结构包括设于所述第一板朝向所述第二板一侧的多个凸块、设于所述第二板上与所述多个凸块一一对应的凹槽,在所述凸块收容于对应的凹槽内时所述支撑组件为第一状态,在所述凸块位于凹槽外侧时所述支撑组件为第二状态。
  11. 如权利要求10所述的支撑组件,其特征在于:所述凸块与所述凹槽上均设有引导所述凸块进出所述凹槽内的导引斜面。
  12. 如权利要求11所述的支撑组件,其特征在于:所述凹槽与所述导引斜面相对应的一侧的边缘具有呈平面状的抵持部。
  13. 如权利要求10所述的支撑组件,其特征在于:沿所述支撑组件的长度方向,多个所述凸块形成间隔设置的多排凸块组。
  14. 如权利要求13所述的支撑组件,其特征在于:相邻两排凸块组中的凸块沿与长度方向相垂直的方向上错位设置。
  15. 如权利要求10所述的支撑组件,其特征在于:所述支撑组件还包括用以驱动所述第一板与所述第二板相对移动的驱动件。
PCT/CN2021/132427 2021-02-23 2021-11-23 冰箱门体的制备方法、冰箱门体以及支撑组件 WO2022179212A1 (zh)

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