WO2022100536A1 - 制冰容器 - Google Patents

制冰容器 Download PDF

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Publication number
WO2022100536A1
WO2022100536A1 PCT/CN2021/129197 CN2021129197W WO2022100536A1 WO 2022100536 A1 WO2022100536 A1 WO 2022100536A1 CN 2021129197 W CN2021129197 W CN 2021129197W WO 2022100536 A1 WO2022100536 A1 WO 2022100536A1
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WO
WIPO (PCT)
Prior art keywords
container
ice
making
storage area
center
Prior art date
Application number
PCT/CN2021/129197
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English (en)
French (fr)
Inventor
吉池真史
Original Assignee
海尔智家股份有限公司
青岛海尔电冰箱有限公司
Aqua 株式会社
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.)
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Publication date
Application filed by 海尔智家股份有限公司, 青岛海尔电冰箱有限公司, Aqua 株式会社 filed Critical 海尔智家股份有限公司
Priority to CN202180076406.6A priority Critical patent/CN116547484A/zh
Publication of WO2022100536A1 publication Critical patent/WO2022100536A1/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
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C1/00Producing ice
    • F25C1/22Construction of moulds; Filling devices for moulds
    • 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
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C1/00Producing ice
    • F25C1/22Construction of moulds; Filling devices for moulds
    • F25C1/24Construction of moulds; Filling devices for moulds for refrigerators, e.g. freezing trays
    • 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
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C5/00Working or handling ice
    • F25C5/02Apparatus for disintegrating, removing or harvesting ice
    • F25C5/04Apparatus for disintegrating, removing or harvesting ice without the use of saws
    • F25C5/06Apparatus for disintegrating, removing or harvesting ice without the use of saws by deforming bodies with which the ice is in contact, e.g. using inflatable members

Definitions

  • the present invention relates to an ice-making container, in particular to an ice-making container for manually de-icing.
  • Patent Document 1 Japanese Patent Laid-Open No. 2003-65641.
  • the automatic ice maker includes a water supply tank 100 arranged in a refrigerator compartment, an ice tray 101 arranged in a freezer compartment, and an ice tray 103 in which manufactured ice is accommodated.
  • the ice making area 102 is formed by recessing the ice making trays 101 in a matrix.
  • the user When making ice, first, the user stores water such as tap water in the water supply tank 100 .
  • the water stored in the water supply tank 100 is sent to the ice making area 102 of the ice making tray 101 by using the pressure of a pump (not shown).
  • the water stored in the ice making area 102 of the ice making tray 101 is frozen by being cooled to a freezing temperature range inside the freezer compartment.
  • a bending stress is applied to the ice making area 102 , whereby the ice frozen in the ice making area 102 is de-iced from the ice making tray 101 , and then stored in the ice making box 103 .
  • the user can take out and use ice from the ice tray 103 only by supplying water to the water supply tank 100 without manually supplying water to the ice tray 101 or removing the ice from the ice tray 101 manually.
  • the present invention has been made in view of the above-mentioned circumstances, and an object thereof is to provide an ice-making container that can easily perform manual deicing work.
  • the ice-making container of the present invention is an ice-making container comprising a lower container portion and a container lid portion, wherein a storage area for storing water is formed in the lower container portion, and the container lid portion covers from above.
  • the storage region of the lower container portion is separable from the lower container portion, and the container lid portion has a partition wall for partitioning the storage region.
  • the opening part is formed in the said container cover part.
  • a plurality of the partition walls extending radially from the center of the container cover to the periphery are formed, and the partition walls are formed on the surface of the container cover. Centers are separated from each other.
  • the partition wall further includes a pressing portion inserted movably with respect to the container lid portion, and the pressing portion is inserted between the partition walls.
  • the storage area and the container lid portion are characterized in that the storage area and the container lid have a circular shape when viewed from above.
  • the ice-making container of the present invention is an ice-making container comprising a lower container portion and a container lid portion, wherein a storage area for storing water is formed in the lower container portion, and the container lid portion covers from above.
  • the storage region of the lower container portion is separable from the lower container portion, and the container lid portion has a partition wall for partitioning the storage region. Therefore, according to the ice making container of the present invention, it is possible to provide an ice making container that can easily perform deicing work.
  • the container lid that closes the storage area has a partition wall that partitions the storage area, whereby a plurality of ices matching the shape of the storage area can be produced.
  • the opening part is formed in the said container cover part. Therefore, according to the ice maker of the present invention, cool air can be introduced into the storage area through the opening, and water stored in the storage area can be frozen at an early stage.
  • a plurality of the partition walls extending radially from the center of the container lid to the periphery are formed, and the partition walls are located in the container lid.
  • the centers are separated from each other. Therefore, according to the ice making container of the present invention, the partition walls are separated from each other, and thus, when the ice is detached from the container lid portion, the separation walls are moved to each other while deforming the container lid portion, whereby the separation can be easily performed. ice.
  • the partition wall further includes a pressing portion inserted movably with respect to the container lid portion, and the pressing portion is inserted between the partition walls. . Therefore, according to the ice making container of the present invention, when the ice is difficult to be released from the container lid, by pushing the pressing portion, the partition wall can be pushed outward by the pressing portion, and the ice can be removed smoothly.
  • the storage area and the container lid portion are characterized in that the storage area and the container lid have a circular shape when viewed from above. Therefore, according to the ice making container of the present invention, the storage area and the container cover have a circular shape, whereby the ice can be easily removed even if the user is an infant or an elderly person by relatively rotating the lower container and the container cover.
  • FIG. 1(A) is a perspective view showing an ice making container according to an embodiment of the present invention.
  • Fig. 1(B) is a cross-sectional view along section line A-A of Fig. 1(A);
  • FIG. 2 is a perspective view showing a lower container portion of the ice making container according to the embodiment of the present invention
  • Figure 3 (A) is a perspective view of the container lid viewed from above;
  • Fig. 3(B) is a perspective view of the container lid viewed from below;
  • FIG. 4 is a perspective view illustrating a method of de-icing from an ice-making container according to an embodiment of the present invention
  • FIG. 5 is a perspective view showing an ice making container according to another aspect of the present invention.
  • FIG. 6(A) is a perspective view of the container lid as viewed from above;
  • FIG. 6(B) is a perspective view of the container lid as viewed from below;
  • FIG. 7 is a perspective view showing an automatic ice maker of the background art.
  • FIG. 1(A) is a perspective view showing the ice making container 10
  • FIG. 1(B) is a cross-sectional view taken along the line A-A of FIG. 1(A).
  • the ice making container 10 is a container for manually making ice by freezing water, and mainly includes a lower container portion 12 and a container lid portion 13 .
  • the lower container portion 12 is made of a synthetic resin plate formed into a predetermined shape and having a thickness of about 1 mm, which constitutes the main body portion of the ice making container 10 .
  • the lower container portion 12 has a substantially rectangular shape elongated in the front-rear direction, and two container lid portions 13 are arranged. As shown in FIG. 1(B) , two storage areas 11 are formed in the front part and the rear part of the lower container part 12 .
  • the specific structure and the like of the lower container portion 12 will be described later with reference to FIG. 2 .
  • the container lid portion 13 is made of synthetic resin molded into a substantially circular shape when viewed from above, surrounds the storage area 11 of the lower container portion 12 from above, and is configured to be manually separable from the lower container portion 12 .
  • the specific structure of the container lid portion 13 will be described later with reference to Fig. 3 .
  • FIG. 2 is a perspective view showing the lower container portion 12 of the ice making container 10 .
  • region 11 which stores water is formed.
  • two storage areas 11 are formed in the front part of the lower container part 12 and the rear part of the lower container part 12 .
  • the storage area 11 exhibits a substantially circular shape.
  • the surface of the storage area 11 is made into a smooth curved surface for easy deicing operation during use.
  • FIG. 3(A) is a perspective view of the container lid portion 13 viewed from above
  • FIG. 3(B) is a perspective view of the container lid portion 13 viewed from below.
  • the general shape of the container lid portion 13 is a substantially circular lid shape when viewed from above, and gradually swells upward from the periphery toward the center.
  • the opening portion 15 is formed by partially opening the container lid portion 13 .
  • each opening portion 15 exhibits a fan shape expanding from the center to the periphery.
  • the three opening portions 15 are provided in the circumferential direction of the container lid portion 13 at substantially equal intervals.
  • the rib portion 16 is constituted by a portion of the main body of the container lid portion 13 where the opening portion 15 is not formed. Below the rib portion 16, a partition wall 14, which will be described later, is continuous.
  • the thick portion 17 is a portion where the rib 16 thickens in the peripheral portion of the opening portion 15 .
  • the thick portion 17 is formed along the peripheral edge of the opening portion 15 .
  • the peripheral portion of the opening portion 15 can be reinforced. Therefore, when a bending stress is applied to the container lid portion 13 during the deicing operation, it is possible to prevent cracks or the like from occurring in the container lid portion 13 .
  • the partition wall 14 is a wall-shaped member extending downward from the lower surface of the rib 16 , and has a function of partitioning the storage area 11 shown in FIG. 2 .
  • the partition wall 14 extends radially outward from the center of the container lid 13 in a plate shape.
  • three partition walls 14 are formed radially extending from the center of the container lid portion 13 toward the periphery. Further, the three partition walls 14 are separated at the center of the container lid portion 13 .
  • FIG. 4 is a perspective view showing a state of de-icing from the ice making container 10 when ice is made using the ice making container 10 .
  • the user When making ice using the ice making container 10 , first, the user stores water in the storage area 11 of the lower container part 12 . Next, the container lid part 13 is fitted into the storage area 11 of the lower container part 12 from above. Thereby, the storage area 11 is surrounded by the container cover part 13, and when the lower container part 12 is moved, the overflow of water from the storage area 11 to the outside can be prevented.
  • the ice making container 10 is stored in the freezer compartment of the refrigerator. When a certain period of time elapses, the water stored in the storage area 11 freezes and becomes ice. After that, the user takes out the ice making container 10 from the freezer compartment, and performs deicing work.
  • the user presses the lower container portion 12 with one hand and turns the container lid portion 13 with the other hand. In this way, the container lid portion 13 rotates together with the ice, and is separated from the storage area 11 of the lower container portion 12 . After that, when the user applies pressure such that the container lid 13 is held, the ice 18 is de-iced from the container lid 13 . Thereby, the user can obtain the ice 18 for cooling drinking water or the like. In addition, when the user is an infant or the like, it is also possible to learn and enjoy the ice making operation.
  • FIG. 5 is a perspective view showing the ice maker container 10 according to another aspect of the present invention.
  • the structure and the like of the ice making container 10 shown in this figure are basically the same as those shown in FIG. 1 , and the structure and the like of the lower container portion 12 are different.
  • the lower container portion 12 here has substantially the same shape and size as the container lid portion 13 when viewed from the upper surface. Moreover, in the inside of the lower container part 12, the storage area 11 shown in FIG. 2 etc. is formed. That is, the inside of the lower container portion 12 has a shape that is smoothly recessed downward toward the center. Further, the peripheral edge portion of the lower container portion 12 is fitted with the peripheral edge portion of the container lid portion 13 .
  • FIG. 6 shows the structure of the container lid 13 according to another aspect
  • FIG. 6(A) is a perspective view of the container lid 13 viewed from above
  • FIG. 6(B) is a perspective view of the container lid 13 viewed from below.
  • the pressing portion 19 is attached to the center portion of the rib portion 16 of the container lid portion 13 .
  • the pressing portion 19 is a substantially cylindrical member made of synthetic resin, and is inserted into a through hole formed in the center of the container lid portion 13 .
  • the pressing portion 19 is mounted so as to be movable in the axial direction.
  • the pressing portion 19 is used to promote de-icing from the container lid portion 13 .
  • the ice 18 may adhere to the container lid 13 , and it is not easy to remove the ice.
  • the pressing portion 19 enters between the partition walls 14 and the partition walls 14 are deformed so as to be slightly opened outward. By doing so, the ice 18 can be reliably separated from the container lid 13 .
  • the container lid 13 that closes the storage area 11 has the partition wall 14 that partitions the storage area 11 , whereby a plurality of ices 18 matching the shape of the storage area 11 can be produced.
  • cool air can be introduced into the storage area 11 through the opening 15 , and the water stored in the storage area 11 can be frozen at an early stage.
  • the partition walls 14 are separated from each other, whereby when the ice 18 is detached from the container lid portion 13, the container lid portion 13 is deformed and the partition walls 14 are moved to each other, whereby it is possible to easily Perform deicing.
  • the storage area 11 and the container cover 13 have a circular shape, so that the lower container 12 and the container cover 13 are relatively rotated, thereby enabling easy de-icing.
  • the partition wall 14 is separated at the center of the container lid portion 13 , but three partition walls 14 may be continuous at the center of the container lid portion 13 . In this way, the mechanical strength of the partition wall 14 as a whole can be improved.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Closures For Containers (AREA)
  • Production, Working, Storing, Or Distribution Of Ice (AREA)

Abstract

提供了一种能够简易地进行脱冰作业的制冰容器。制冰容器10是用于通过冻结水来制造冰的容器,包括下方容器部12和容器盖部13,所述下方容器部12形成有储存水的储存区域11,所述容器盖部13从上方包围下方容器部12的储存区域11并且能手动地与下方容器部12分离。此外,容器盖部13具有对储存区域11进行分隔的分隔壁14。因此,能够提供一种能够简易地进行脱冰作业的制冰容器。

Description

制冰容器 技术领域
本发明涉及一种制冰容器,特别涉及一种手动地脱冰的制冰容器。
背景技术
在近年的冰箱中,包括自动地制冰的自动制冰装置。在图7中示出了这种自动制冰装置(专利文献1:日本特开2003-65641号公报)。
自动制冰装置具有:配置在冷藏室中的供水箱100、配置在冷冻室中的制冰皿101、以及收纳所制造的冰的制冰盒103。此外,通过使制冰皿101呈矩阵状地凹陷,而形成制冰区域102。
在制冰时,首先,用户将自来水等水储存在供水箱100中。储存在供水箱100中的水通过使用未图示的泵的压力,而被送到制冰皿101的制冰区域102。储存在制冰皿101的制冰区域102中的水通过在冷冻室的内部被冷却到冷冻温度范围,而被冻结。在翻转制冰区域102后,向制冰区域102施加弯曲应力,由此,使在制冰区域102中被冻结的冰从制冰皿101脱冰,之后,储存在制冰盒103中。
由此,用户只需向供水箱100供水,而无需手动地向制冰皿101供水也无需手动从制冰皿101脱冰,就能够从制冰盒103中取出并利用冰。
发明要解决的问题
然而,上述的自动制冰装置具有以下的问题。
即,习惯了历来存在的手动制冰的老人、或想要体验制冰的幼儿及其监护人往往更喜欢手动制冰设备,而不是自动制冰装置。此外,在亚洲各国,仍然根深蒂固地利用手动制冰设备。
另一方面,手动制冰设备不容易脱冰。
发明内容
本发明鉴于前述情况而完成,其目的在于,提供一种能够简易地进行手动的脱冰作业的制冰容器。
解决问题的方案
本发明的制冰容器是一种由下方容器部和容器盖部构成的制冰容器,其特征在 于,在所述下方容器部中形成有储存水的储存区域,所述容器盖部从上方覆盖所述下方容器部的所述储存区域,能与所述下方容器部分离,所述容器盖部具有分隔所述储存区域的分隔壁。
此外,在本发明的制冰容器中,其特征在于,在所述容器盖部中形成有开口部。
此外,在本发明的制冰容器中,其特征在于,所述分隔壁从所述容器盖部的中心向周围呈放射状地延伸并且形成有多个,所述分隔壁在所述容器盖部的中心相互分离。
此外,在本发明的制冰容器中,其特征在于,所述分隔壁还包括相对于所述容器盖部可移动地插入的按压部,所述按压部被插入在所述分隔壁之间。
此外,在本发明的制冰容器中,其特征在于,当从上方观察时,所述储存区域和所述容器盖部呈现圆形形状。
发明效果
本发明的制冰容器是一种由下方容器部和容器盖部构成的制冰容器,其特征在于,在所述下方容器部中形成有储存水的储存区域,所述容器盖部从上方覆盖所述下方容器部的所述储存区域,能与所述下方容器部分离,所述容器盖部具有分隔所述储存区域的分隔壁。因此,根据本发明的制冰容器,能够提供一种能够简易地进行脱冰作业的制冰容器。此外,对储存区域进行封闭的容器盖部具有对储存区域进行分隔的分隔壁,由此,能够制造与储存区域的形状相匹配的多个冰。
此外,在本发明的制冰容器中,其特征在于,在所述容器盖部中形成有开口部。因此,根据本发明的制冰容器,能够经由开口部将冷空气导入储存区域,能够早期地使储存在储存区域中的水冻结。
此外,在本发明的制冰容器中,其特征在于,所述分隔壁从所述容器盖部的中心向周围呈放射状地延伸并且形成有多个,所述分隔壁彼此在所述容器盖部的中心相互分离。因此,根据本发明的制冰容器,分隔壁彼此分离,由此,当使冰从容器盖部脱离时,一边使容器盖部变形,一边使分隔壁彼此移动,由此,能够容易地进行脱冰。
此外,在本发明的制冰容器中,其特征在于,所述分隔壁还包括相对于所述容器盖部可移动地插入的按压部,所述按压部被插入在所述分隔壁彼此之间。因此,根据本发明的制冰容器,当冰难以从容器盖部脱冰时,通过推动按压部,从而能够利用按压部向外侧推开分隔壁,而平滑地脱冰。
此外,在本发明的制冰容器中,其特征在于,当从上方观察时,所述储存区域和所述容器盖部呈现圆形形状。因此,根据本发明的制冰容器,储存区域和容器盖部呈现圆形形状,由此,通过使下方容器部和容器盖部相对转动,即使用户是幼儿或老人,也能够容易地脱冰。
附图说明
图1(A)是示出本发明的一实施方式制冰容器的立体图;
图1(B)是沿图1(A)的剖切线A-A的截面图;
图2是示出本发明的实施方式的制冰容器的下方容器部的立体图;
图3(A)是从上方观察容器盖部的立体图;
图3(B)是从下方观察容器盖部的立体图;
图4是示出本发明的实施方式的从制冰容器脱冰的方法的立体图;
图5是示出本发明的另一方式的制冰容器的立体图;
图6(A)是从上方观察容器盖部的立体图;
图6(B)是从下方观察容器盖部的立体图;
图7是示出背景技术的自动制冰装置的立体图。
具体实施方式
以下,基于附图来详细地说明本发明的实施方式的制冰容器10。在以下的说明中,原则上,对相同的构件标注相同的附图标记,省略重复的说明。
图1(A)是示出制冰容器10的立体图,图1(B)是沿图1(A)的剖切线A-A的截面图。
参照图1(A),制冰容器10是一种通过使水冻结来手动地制造冰的容器,主要包括下方容器部12和容器盖部13。
下方容器部12由合成树脂板制成,构成制冰容器10的主体部分,所述合成树脂板被成形为规定形状并且厚度为1mm左右。下方容器部12呈现沿前后方向细长地形成的大致矩形形状,配置有两个容器盖部13。如图1(B)所示,在下方容器部12的前方部分和后方部分,形成有两个储存区域11。之后参照图2对下方容器部12的具体结构等进行描述。
容器盖部13由从上方观察而成形为大致圆形的合成树脂制成,从上方包围下方容器部12的储存区域11,被构成为能够通过手动与下方容器部12分离。之后参照 图3对容器盖部13的具体结构进行描述。
图2是示出制冰容器10的下方容器部12的立体图。通过使下方容器部12的上表面凹陷,从而形成储存水的储存区域11。在此,在下方容器部12的前方部分和下方容器部12的后方部分,形成有两个储存区域11。当从上方观察下方容器部12时,储存区域11呈现大致圆形。此外,储存区域11的表面被做成光滑的曲面,以便在使用时容易地进行脱冰作业。
图3(A)是从上方观察容器盖部13的立体图,图3(B)是从下方观察容器盖部13的立体图。
参照图3(A),容器盖部13的概略形状呈现从上方观察而是大致圆形的盖形状,从周围向中心逐渐向上方隆起。
开口部15是通过使容器盖部13部分地开口而形成的。当从上方观察容器盖部13时,每个开口部15呈现从中心向周边扩展的扇形形状。在此,三个开口部15大致等间隔地设置在容器盖部13的圆周方向上。
肋部16由容器盖部13的主体中未形成开口部15的部分构成。在肋部16的下方,后述的分隔壁14是连续的。
厚壁部17是肋部16在开口部15的周缘部分中变厚的部分。厚壁部17沿着开口部15的周缘形成。通过形成厚壁部17,能够加强开口部15的周缘部分。因此,当在脱冰作业中向容器盖部13施加弯曲应力时,能够防止在容器盖部13中出现裂纹等。
参照图3(B),分隔壁14是从肋部16的下表面向下方延伸的壁状构件,具有对图2所示的储存区域11进行分隔的功能。在此,分隔壁14从容器盖部13的中心朝向径向外侧呈板状延伸。此外,形成了从容器盖部13的中心朝向周围呈放射状延伸的三个分隔壁14。此外,三个分隔壁14在容器盖部13的中心处分离。当将容器盖部13组装到图2所示的下方容器部12的储存区域11时,分隔壁14的下侧表面与储存区域11的底表面接触。
图4是示出当使用制冰容器10制冰时从制冰容器10脱冰的状况的立体图。
当使用制冰容器10制冰时,首先,用户将水储存在下方容器部12的储存区域11中。接着,从上方将容器盖部13嵌入到下方容器部12的储存区域11。由此,储存区域11被容器盖部13包围,当使下方容器部12移动时,能够防止水从储存区域11溢出到外部。此外,将制冰容器10储藏在冰箱的冷冻室中。当经过一定期间时,储存在储存区域11中的水冻结而变成冰。之后,用户从冷冻室中取出制冰容器10, 进行脱冰作业。
在脱冰时,用户用一只手按住下方容器部12,并用另一只手转动容器盖部13。这样,容器盖部13与冰一起转动,而与下方容器部12的储存区域11分离。之后,当用户施加压力以使得握住容器盖部13时,冰18从容器盖部13脱冰。由此,用户能够得到用于冷却饮用水等的冰18。此外,当用户是幼儿等时,还能够学习并且享受制冰作业。
图5是示出本发明的另一方式的制冰容器10的立体图。该图所示的制冰容器10的结构等与图1所示的结构基本上是相同的,下方容器部12的结构等是不同的。
当从上表面观察时,此处的下方容器部12具有与容器盖部13大致相同的形状和大小。此外,在下方容器部12的内部,形成有图2等所示的储存区域11。即,下方容器部12的内部呈现了朝向中心平滑地向下方凹陷的形状。此外,下方容器部12的周缘部与容器盖部13的周缘部嵌合。
此外,即使是图5所示的制冰容器10,也能够取得与图1所示的容器相同的效果。
图6示出了另一方式的容器盖部13的结构,图6(A)是从上方观察容器盖部13的立体图,图6(B)是从下方观察容器盖部13的立体图。
参照图6(A),在此,按压部19被安装到容器盖部13的肋部16的中央部。按压部19是由合成树脂制成的大致圆柱状的构件,被插于贯通孔中,所述贯通孔形成在容器盖部13的中央。按压部19被安装成能够沿轴向移动。
参照图6(B),按压部19被用于促进从容器盖部13的脱冰。具体地,如图4所示,在完成了冰的冻结之后,从下方容器部12取出容器盖部13时,有时,冰18会粘附于容器盖部13,脱冰并不简单。在这种情况下,当用户向下方推动按压部19时,按压部19进入分隔壁14彼此之间,分隔壁14变形,而使得稍微向外侧打开。通过这样做,能够使冰18可靠地与容器盖部13分离。
根据前述的本实施方式,能够取得以下的主要效果。
参照图3(A),能够提供一种能够简易地进行脱冰作业的制冰容器10。具体地,对储存区域11进行封闭的容器盖部13具有对储存区域11进行分隔的分隔壁14,由此,能够制造与储存区域11的形状相匹配的多个冰18。
参照图3(A),能够经由开口部15将冷空气导入储存区域11,能够早期地使储存在储存区域11中的水冻结。
参照图3(B),分隔壁14彼此分离,由此,当使冰18从容器盖部13脱离时, 一边使容器盖部13变形,一边使分隔壁14彼此移动,由此,能够容易地进行脱冰。
参照图6(B),当冰18难以从容器盖部13脱冰时,通过推动按压部19,从而能够利用按压部19向外侧推开分隔壁14,而平滑地脱冰。
参照图1(A)和图2,储存区域11和容器盖部13呈现圆形形状,由此,通过使下方容器部12和容器盖部13相对转动,从而能够容易地脱冰。
本发明不限定于前述实施方式,在其他情况下,能够在不脱离本发明的主旨的范围内进行各种变更实施。此外,前述的各方式能够相互组合。
例如,参照图3(B),分隔壁14在容器盖部13的中心部处分离,但是,也能够使三个分隔壁14在容器盖部13的中央处连续。这样,能够提高分隔壁14的作为整体的机械强度。

Claims (10)

  1. 一种制冰容器,包括下方容器部和容器盖部,其特征在于,
    在所述下方容器部中形成有储存水的储存区域,
    所述容器盖部从上方覆盖所述下方容器部的所述储存区域,所述容器盖部可与所述下方容器部分离,
    所述容器盖部设置有分隔所述储存区域的分隔壁。
  2. 如权利要求1所述的制冰容器,其特征在于,在所述容器盖部包括开口部。
  3. 如权利要求1或2所述的制冰容器,其特征在于,所述分隔壁从所述容器盖部的中心向周围呈放射状地延伸并且形成有多个,所述分隔壁在所述容器盖部的中心处相互分离。
  4. 如权利要求3所述的制冰容器,其特征在于,所述制冰容器还包括相对于所述容器盖部可移动地插入的按压部,所述按压部被插入所述分隔壁之间。
  5. 如权利要求1至4中任一项所述的制冰容器,其特征在于,当从上方观察时,所述储存区域和所述容器盖部呈现圆形形状。
  6. 如权利要求2所述的制冰容器,其特征在于,所述容器盖部还包括肋部,所述肋部在所述开口部的周缘部分加厚形成厚壁部。
  7. 如权利要求6所述的制冰容器,其特征在于,所述开口部具有多个,每个开口部呈所述容器盖部中心向周边扩展的扇形形状,多个开口部沿所述容器盖部的圆周间隔设置。
  8. 如权利要求7所述的制冰容器,其特征在于,相邻两个开口部之间的肋部的下表面设置有向下方延伸的壁状构件形成所述分隔壁。
  9. 如权利要求4所述的制冰容器,其特征在于,所述容器盖部的中央设置有贯通孔,所述按压部插于所述贯通孔中。
  10. 如权利要求1或2所述的制冰容器,其特征在于,所述分隔壁从所述容器盖部的中心向外围径向延伸并且形成有多个,所述多个分隔壁在所述容器盖部的中央处连续。
PCT/CN2021/129197 2020-11-13 2021-11-08 制冰容器 WO2022100536A1 (zh)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202101483U (zh) * 2011-03-08 2012-01-04 苏州三星电子有限公司 一种制冰盒
JP2012068003A (ja) * 2010-09-27 2012-04-05 Kashiwagi Mold:Kk 製氷容器
CN202188708U (zh) * 2011-06-02 2012-04-11 尚思环球有限公司 一种罐头形冰格

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012068003A (ja) * 2010-09-27 2012-04-05 Kashiwagi Mold:Kk 製氷容器
CN202101483U (zh) * 2011-03-08 2012-01-04 苏州三星电子有限公司 一种制冰盒
CN202188708U (zh) * 2011-06-02 2012-04-11 尚思环球有限公司 一种罐头形冰格

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