WO2022083474A1 - 冰淇淋机用保温装置 - Google Patents

冰淇淋机用保温装置 Download PDF

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Publication number
WO2022083474A1
WO2022083474A1 PCT/CN2021/123238 CN2021123238W WO2022083474A1 WO 2022083474 A1 WO2022083474 A1 WO 2022083474A1 CN 2021123238 W CN2021123238 W CN 2021123238W WO 2022083474 A1 WO2022083474 A1 WO 2022083474A1
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WIPO (PCT)
Prior art keywords
thermal insulation
base
ice cream
wiper
water collecting
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PCT/CN2021/123238
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English (en)
French (fr)
Inventor
冯云凌
王铭坤
孟庆鹏
张亮
刘洋
文翔
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珠海格力电器股份有限公司
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Publication of WO2022083474A1 publication Critical patent/WO2022083474A1/zh

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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • A23G9/04Production of frozen sweets, e.g. ice-cream
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • A23G9/04Production of frozen sweets, e.g. ice-cream
    • A23G9/22Details, component parts or accessories of apparatus insofar as not peculiar to a single one of the preceding groups
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • A23G9/04Production of frozen sweets, e.g. ice-cream
    • A23G9/22Details, component parts or accessories of apparatus insofar as not peculiar to a single one of the preceding groups
    • A23G9/30Cleaning; Keeping clean; Sterilisation

Definitions

  • the present application relates to the technical field of food processing, in particular to a heat preservation device for an ice cream machine.
  • the cold storage type ice cream machine is equipped with a cold storage liquid inside the ice cream machine.
  • the cold storage liquid needs to be frozen before use.
  • the ice cream machine is taken out, and the prepared ice cream liquid is poured into it to make ice cream.
  • the cold storage liquid will not only absorb the heat of the ice cream liquid, but also absorb the heat in the air, so that condensation water will form on the outer wall of the ice cream machine. Cleaning will seriously affect the user experience.
  • the present application discloses a heat preservation device for an ice cream machine, which solves the problem of affecting user experience due to the formation of condensed water on the outer wall of the ice cream machine.
  • the present application discloses a heat preservation device for an ice cream machine, comprising: a base on which a water collecting structure is arranged; a heat preservation cover, the heat preservation cover is connected to the base along the circumferential direction of the base, and the heat preservation cover is
  • the base encloses an accommodating space; the wiper part is arranged on the inner wall of the heat preservation sleeve and protrudes inward toward the accommodating space; the ice cream machine is placed in the accommodating space, and is located on the water collecting structure of the base; the inner edge of the wiper part located in the accommodating space abuts the outer wall of the ice cream machine; the outer wall of the ice cream machine, the wiper part ,
  • the inner wall of the thermal insulation jacket and the base form a thermal insulation space.
  • the water collecting structure includes a water collecting tank, and the bottom of the ice cream machine is located in the water collecting tank.
  • the water collecting structure further includes a water storage cavity disposed inside the base, and a diversion hole communicated with the water storage cavity is disposed on the water collecting tank.
  • the water collecting structure is provided with a support protrusion, and the support protrusion protrudes toward the bottom of the ice cream machine.
  • the groove wall of the water collecting groove forms a guide surface.
  • the wiper portion is arranged along the circumference of the inner wall of the thermal insulation jacket.
  • the wiper portion is an integral wiper structure, and the inner edge of the wiper portion located in the accommodating space is a circular edge.
  • the wiper portion is made of elastic material, and the radius of the inner edge of the wiper portion located in the accommodating space can be adjusted through elastic deformation.
  • the wiper portion includes a plurality of wiper structural members arranged along the circumference of the inner wall of the thermal insulation jacket, and the plurality of wiper structural members of the wiper portion are located at the innermost part in the accommodating space Edges are arcs that lie on the same circle.
  • the plurality of wiper members are made of elastic materials, and the radius of the circle where the inner edges of the plurality of structural members located in the accommodating space are located can be adjusted through elastic deformation.
  • the plurality of wiper structural members of the thermal insulation cover are uniformly arranged along the circumferential direction of the inner wall of the thermal insulation cover.
  • the water collecting structure includes a water collecting groove, the groove wall of the water collecting groove is formed with a flow guide surface, and the inner wall surface of the heat preservation jacket is connected with the flow guide surface and smoothly transitions.
  • the base and the thermal insulation cover are integrally formed.
  • the base is detachably connected to the thermal insulation jacket.
  • the guide surface (111) is an inclined surface or an arc surface.
  • the base and the thermal insulation jacket are connected by a magnetic suction structure.
  • the thermal insulation device of the present application is provided with a thermal insulation cover on the base, and while the base collects condensed water, the thermal insulation cover can also play a role of thermal insulation, reduce the loss of cooling capacity in the process of making ice cream by the ice cream machine, and improve the use efficiency of the cooling capacity. At the same time, it can also reduce the generation of condensed water.
  • the wiper part on the heat preservation sleeve, on the one hand, in the process of taking out the ice cream machine, the wiper part can scrape off the condensed water on the surface of the ice cream machine, so that the ice cream machine can be cleaned after being taken out, and the user experience can be improved.
  • the outer wall of the ice cream machine, the wiper part, the inner wall of the insulation cover and the base form a closed insulation space, so as to cooperate with the insulation cover to form a double-layer insulation structure, because the insulation cavity 40 It can be a closed structure or a non-closed thermal insulation space. Whether the insulation space is closed or not, it can avoid the convective heat exchange between the air inside the insulation space and the outside air to a certain extent, which greatly improves the insulation effect. source, thus greatly reducing the generation of condensed water and effectively avoiding frosting.
  • FIG. 1 is a schematic structural diagram of a heat preservation device according to Embodiment 1 of the present application.
  • Fig. 2 is the schematic diagram of the use state of the heat preservation device of the first embodiment of the present application
  • Fig. 3 is a partial enlarged view of A in Fig. 2;
  • FIG. 4 is a perspective view of the base of the first embodiment of the present application.
  • Reference numerals 10, base; 11, water collection tank; 111, guide surface; 12, water storage cavity; 13, guide hole; 14, support protrusion; 20, heat preservation cover; 21, wiper part; 30, Ice cream machine; 40, insulation space; 50, accommodation space.
  • the present application discloses a thermal insulation device, comprising: a base 10 , a thermal insulation cover 20 and a wiper part 21 , the base 10 is provided with a water collecting structure, and the water collecting structure is used for The ice cream maker 30 is placed and the condensed water of the ice cream maker 30 is collected; the insulation cover 20 is connected to the base 10 along the circumference of the base 10, and the insulation cover 20 and the base 10 enclose an accommodation space 50 (that is, an accommodation cavity), and the accommodation space 50 is used for For accommodating the ice cream maker 30 ; the wiper portion 21 is arranged on the inner wall of the heat preservation jacket 20 and protrudes inward toward the accommodating space.
  • the ice cream maker 30 is placed in the accommodating space 50 and located on the water collecting structure of the base 10 ; the inner edge of the wiper portion 21 in the accommodating space abuts against the outer wall of the ice cream maker 30 , the outer wall of the ice cream maker 30 , the wiper part 21 , the inner wall of the heat preservation sleeve 20 and the base 10 enclose a heat preservation space 40 (ie, a heat preservation cavity).
  • a heat preservation space 40 ie, a heat preservation cavity
  • the thermal insulation cover 20 is arranged on the base 10. While the base collects the condensed water, the thermal insulation cover 20 can also play a role of thermal insulation, thereby reducing the loss of cooling capacity of the ice cream machine 30 during the ice cream making process, and improving the cooling capacity. The use efficiency can also reduce the generation of condensed water.
  • the wiper part 21 on the heat preservation jacket 20, on the one hand, in the process of taking out the ice cream maker, the wiper part 21 can scrape off the condensed water on the surface of the ice cream maker 30, so that the ice cream maker 30 can be removed from the ice cream maker.
  • the outer wall of the ice cream maker 30 , the wiper part 21 , the inner wall of the thermal insulation cover 20 and the base 10 enclose the thermal insulation space 40 , thereby forming the thermal insulation space 40 together with the thermal insulation jacket 20 .
  • the double-layer thermal insulation structure is formed in cooperation, since the thermal insulation cavity 40 may be a closed structure or a non-closed thermal insulation space.
  • the heat preservation space 40 can avoid the convective heat exchange between the air inside the heat preservation space 40 and the outside air to a certain extent, so that the heat preservation effect is greatly improved, and at the same time, the water vapor outside the heat preservation space 40 is isolated as much as possible, reducing the The source of water vapor is eliminated, thereby greatly reducing the generation of condensed water and effectively avoiding frost.
  • the water collecting structure includes a water collecting tank 11 , and the bottom of the ice cream maker 30 is located in the water collecting tank 11 .
  • the base 10 of the heat preservation device of the present application is provided with a water collecting tank 11, and the bottom of the ice cream machine 30 is arranged in the water collecting tank 11, so that the condensed water can flow directly into the water collecting tank 11 along the outer wall of the ice cream machine 30, so as to facilitate the collection of condensation Water, while avoiding the condensed water flowing around, improving the user experience.
  • the water collecting structure further includes a water storage cavity 12 disposed inside the base 10 , and the water collecting tank 11 is provided with a guide hole 13 that communicates with the water storage cavity 12 .
  • the base 10 of the thermal insulation device of the present application is provided with a water storage cavity 12 and a guide hole 13 communicating with the water storage cavity 12, so that the condensed water in the water collecting tank 11 can flow into the water storage cavity 12 through the guide hole 13, so that the The base 10 can increase the amount of condensed water received, and avoid excessive condensed water in the water collecting tank 11 from overflowing.
  • the bottom of the ice cream machine 30 and the water collection tank 11 will not form water accumulation, thereby effectively preventing the ice cream machine 30 and the base 10 from freezing. Together, improve the user experience.
  • the condensed water can be guided into the water storage cavity 12 by providing the guide holes 13, since the bottom surface of the ice cream machine 30 is still in surface contact with the bottom of the water collecting tank 11, water will enter the two through capillary action. Meanwhile, in the process of making ice cream, the ice cream maker 30 and the base 10 are still frozen together.
  • the water collecting structure is provided with a support protrusion 14 , and the support protrusion 14 protrudes toward the bottom of the ice cream machine 30 .
  • the supporting protrusion 14 is supported on the bottom of the ice cream maker 30 .
  • the water collecting structure of the heat preservation device of the present application is provided with support protrusions 14, which can change the original surface support to multi-point support, greatly reducing the contact area, thereby preventing the ice cream maker 30 and the base 10 from freezing together, and facilitating ice cream Machine 30 is taken out.
  • a flow guide surface 111 is formed on the wall of the water collecting tank 11 , and the flow guide surface 111 is used to guide the condensed water of the ice cream machine 30 .
  • the guide surface is an inclined surface or an arc surface, so that the condensed water on the tank wall of the water collecting tank 11 can also flow into the water collecting tank 11 along the guide surface 111 to prevent the condensed water from overflowing.
  • the wiper portion 21 is disposed along the circumference of the inner wall of the thermal insulation jacket 20 .
  • the wiper portion 21 is an integral wiper structural member, and the inner edge of the wiper portion 21 located in the accommodating space is a circular edge.
  • the outer wall of the ice cream maker 30, the wiper part 21, the inner wall of the insulation cover 20 and the base 10 form a closed insulation space 40, so as to cooperate with the insulation cover 20 to form a double-layer insulation structure to avoid insulation.
  • the air inside the space 40 exchanges heat with the outside air by convection, which greatly improves the thermal insulation effect.
  • it also isolates the water vapor outside the thermal insulation space 40 and cuts off the source of water vapor, thereby greatly reducing the generation of condensed water and effectively avoiding frost.
  • the wiper portion 21 is made of elastic material, and the inner diameter of the wiper portion 21 can be adjusted through elastic deformation.
  • the inner edge of the wiper portion 21 located in the accommodating space can be The radius is adjustable by elastic deformation.
  • the wiper portion 21 includes a plurality of wiper structural members disposed along the circumference of the inner wall of the thermal insulation cover 20 , and the plurality of wiper structural members of the wiper portion 21 are located in the The innermost edge in the accommodating space is a plurality of arc edges located on the same circle.
  • the wiper part can scrape off the condensed water on the surface of the ice cream machine, so that the ice cream machine can be cleaned after being taken out; on the other hand, in the process of taking out the ice cream machine, the ice cream machine The frictional resistance is greatly reduced.
  • the plurality of wiper members are made of elastic materials, and the radius of the circle where the inner edges of the plurality of structural members located in the accommodating space are located can be adjusted through elastic deformation.
  • the plurality of wiper structural members of the thermal insulation cover are uniformly arranged along the circumference of the inner wall of the thermal insulation cover. In this way, during the process of taking out the ice cream maker, the frictional resistance received by the ice cream maker in the removing direction is uniform, thereby increasing the balance of the ice cream maker during the taking out process.
  • the water collecting structure includes a water collecting tank 11, the wall of the water collecting tank 11 is formed with a flow guide surface 111, and the flow guide surface 111 is used to guide the condensed water.
  • the inner wall surface of the thermal insulation jacket 20 is connected with the guide surface 111 and smoothly transitions, so that the condensed water can smoothly transition into the water collecting tank 11 .
  • the base 10 and the thermal insulation cover 20 are integrally formed, which is convenient to take and will not cause parts to be lost.
  • the base 10 is detachably connected to the thermal insulation cover 20, which can facilitate cleaning and storage.
  • the base 10 and the thermal insulation cover 20 are connected by a magnetic suction structure, which can not only ensure the reliability during use, but also facilitate cleaning.
  • the thermal insulation device further includes a thermal insulation structure, and the thermal insulation structure is arranged between the base 10 and the thermal insulation jacket 20 .
  • the thermal insulation structure includes a sealing ring to make the whole more thermally insulated.

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Confectionery (AREA)

Abstract

一种冰淇淋机(30)用保温装置,包括底座(10),保温套(20)和刮水部(21)。底座(10)上设置有集水结构;保温套(20)沿底座(10)的周向连接在底座(10)上,保温套(20)与底座(10)围成一容纳空间(50);刮水部设置在保温套(20)的内壁上,朝所述容纳空间(50)向里凸出。冰淇淋机(30)置于容纳空间(50)内,并位于底座(10)的集水结构之上。刮水部(21)位于容纳空间内的内边缘抵顶冰淇淋机(30)的外壁。所述冰淇淋机(30)的外壁、刮水部(21)、保温套(20)内壁和底座(10)围成保温空间(40)。

Description

冰淇淋机用保温装置
相关申请的交叉引用
本申请要求于2020年10月19日提交中国专利局,申请号为202011119863.2,申请名称为“保温装置及冰淇淋组件”的中国专利申请的优先权,在此将其全文引入作为参考。
技术领域
本申请涉及食品加工技术领域,具体涉及一种冰淇淋机用保温装置。
背景技术
目前蓄冷型冰淇淋机,在冰淇淋机内部装有蓄冷液,在使用之前需将蓄冷液冷冻,使用时,将冰淇淋机取出,倒入调制好的冰淇淋液,制作冰淇淋。在制作过程中,蓄冷液不仅会吸收冰淇淋液的热量,同时还会吸收空气中的热量,从而使冰淇淋机外壁形成冷凝水,冷凝水不仅会往外流出,还会结霜导致外壁湿滑,不易清洗,严重影响用户体验。
发明内容
本申请公开了一种冰淇淋机用保温装置,解决了由于冰淇淋机外壁形成冷凝水,影响用户体验的问题。
本申请公开了一种冰淇淋机用保温装置,包括:底座,所述底座上设置有集水结构;保温套,所述保温套沿底座的周向连接在所述底座上,所述保温套与所述底座围成一容纳空间;刮水部,所述刮水部设置于所述保温套的内壁上,朝所述容纳空间向里凸出;所述冰淇淋机置于所述容纳空间内,并位于所述底座的所述集水结构之上;所述刮水部的位于所述容纳空间内的内边缘抵顶所述冰淇淋机的外壁;所述冰淇淋机的外壁、所述刮水部、所述保温套内壁和所述底座围成保温空间。
进一步地,所述集水结构包括集水槽,所述冰淇淋机底部位于所述集水槽内。
进一步地,所述集水结构还包括设置在所述底座内部的储水腔,所述集水槽上设置有与所述储水腔连通的导流孔。
进一步地,所述集水结构设置有支撑凸起,所述支撑凸起朝向所述冰淇淋机的底部凸出。
进一步地,所述集水槽的槽壁形成导流面。
进一步地,所述刮水部沿所述保温套的内壁周向设置。
进一步地,所述刮水部为一整体刮水结构件,所述刮水部的位于所述容纳空间内的所述内边缘为一圆形边。
进一步地,所述刮水部为弹性材质,所述刮水部的位于所述容纳空间内的所述内边缘的半径通过弹性形变可调节。
进一步地,所述刮水部包括沿所述保温套的内壁周向设置的多个刮水结构件,所述刮水部的所述多个刮水结构件位于所述容纳空间内的最内边缘为位于同一圆上的多段弧形边。
进一步地,所述多个刮水构件为弹性材质,所述多个结构件的位于所述容纳空间内的所述内边缘所在圆的半径通过弹性形变可调节。
进一步地,所述保温套的所述多个刮水结构件沿所述保温套的内壁周向均匀设置。
进一步地,所述集水结构包括集水槽,所述集水槽的槽壁形成有导流面,所述保温套的内壁面与所述导流面相连并平滑过渡。
进一步地,所述底座与所述保温套为一体成型结构。
进一步地,所述底座可拆卸地连接所述保温套上。
进一步地,所述导流面(111)呈斜面或弧形面。
进一步地,所述底座与所述保温套之间通过磁吸式结构连接。
本申请的保温装置通过在底座上设置保温套,在底座收集冷凝水的同时,保温套还可以起到保温作用,减少冰淇淋机在制作冰淇淋过程中冷量的散失,提高冷量的使用效率,同时还可以减少冷凝水的产生。另外,通过在保温套上设置刮水部,一方面,在取出冰淇淋机的过程中,刮水部可以将冰淇淋机表面的冷凝水刮掉,使冰淇淋机拿出后避免更加清洁,提高用户体验;另一方面,冰淇淋机位于容纳空间内时,使冰淇淋机的外壁、刮水部、保温套内壁和底座围成封闭的保温空间,从而与保温套配合形成双层保温结构,由于保温腔40可以是封闭结构,也可以是非封闭的保温空间。保温空间无论是否为封闭的,都能够一定程度上避免保温空间内部的空气与外部空气对流换热,使保温效果大大提高,同时还尽可能地隔离了保温空间外部的水蒸气,减少了水蒸气的来源,从而大大减少冷凝水产生,有效避免结霜。
附图说明
图1是本申请实施例一的保温装置的结构示意图;
图2是本申请实施例一的保温装置使用状态的示意图;
图3是图2中A的局部放大图;
图4是本申请实施例一的底座的立体图。
附图标记:10、底座;11、集水槽;111、导流面;12、储水腔;13、导流孔;14、支撑凸起;20、保温套;21、刮水部;30、冰淇淋机;40、保温空间;50、容纳空间。
具体实施方式
下面结合实施例对本申请做进一步说明,但不局限于说明书上的内容。
如图1至4所示的实施例一中,本申请公开了一种保温装置,包括:底座10、保温套20和刮水部21,底座10上设置有集水结构,集水结构用于放置冰淇淋机30并收集冰淇淋机30的冷凝水;保温套20沿底座10的周向连接在底座10上,保温套20与底座10围成一容纳空间50(即容纳腔),容纳空间50用于容纳冰淇淋机30;刮水部21设置于保温套20的内壁上,朝所述容纳空间向里凸出,刮水部21用于抵顶在冰淇淋机30的外壁上进行刮水。冰淇淋机30置于容纳空间50内,并位于所述底座10的所述集水结构之上;所述刮水部21的位于所述容纳空间内的内边缘抵顶所述冰淇淋机30的外壁,冰淇淋机30的外壁、刮水部21、保温套20内壁和底座10围成保温空间40(即保温腔)。
本申请的保温装置通过在底座10上设置保温套20,在底座收集冷凝水的同时,保温套20还可以起到保温作用,减少冰淇淋机30在制作冰淇淋过程中冷量的散失,提高冷量的使用效率,同时还可以减少冷凝水的产生。另外,通过在保温套20上设置刮水部21,一方面,在取出冰淇淋机的过程中,刮水部21可以将冰淇淋机30表面的冷凝水刮掉,使冰淇淋机30拿出后避免更加清洁,提高用户体验;另一方面,冰淇淋机30位于容纳空间50内时,使冰淇淋机30的外壁、刮水部21、保温套20内壁和底座10围成保温空间40,从而与保温套20配合形成双层保温结构,由于保温腔40可以是封闭结构,也可以是非封闭的保温空间。保温空间40无论是否为封闭的,都能够一定程度上避免保温空间40内部的空气与外部空气对流换热,使保温效果大大提高,同时还尽可能地隔离了保温空间40外部的水蒸气,减少了水蒸气的来源,从而大大减少冷凝水产生,有效避免结霜。
在上述实施例中,集水结构包括集水槽11,冰淇淋机30的底部位于集水槽11内。本申请的保温装置的底座10通过设置集水槽11,并将冰淇淋机30底部设置在集水槽11内,从而可以使冷凝水顺着冰淇淋机30外壁直接流到集水槽11中,从而方便收集冷凝水,同时避免冷凝水四处流淌,提高用户体验。
在上述实施例中,集水结构还包括设置在底座10内部的储水腔12,集水槽11上设置有与储水腔12连通的导流孔13。本申请的保温装置的底座10通过设置储水腔12以及与储水腔12连通的导流孔13,使集水槽11内的冷凝水可以通过导流孔13流到储水腔12中,使底座10可以提高冷凝水的接收量,避免集水槽11中的冷凝水过多而溢出。另外,由于 集水槽11中的冷凝水通过导流孔13进入储水腔12中,使冰淇淋机30的底部与集水槽11接触位置不会形成积水,从而有效避免冰淇淋机30与底座10冻在一起,提高用户体验。
虽然通过设置导流孔13可以将冷凝水导流到储水腔12中,但是由于冰淇淋机30底面与集水槽11的槽底仍是面接触,因此,会有水通过毛细作用进入到二者之间,在制作冰淇淋过程中,仍会导致冰淇淋机30与底座10之间冻在一起。
为了解决上述问题,在本实施例中,集水结构设置有支撑凸起14,所述支撑凸起14朝向所述冰淇淋机30的底部凸出。所述支撑凸起14支撑在冰淇淋机30的底部。本申请的保温装置的集水结构设置有支撑凸起14,可以将原来的面支撑,改为多点支撑,大大减少接触面积,从而避免冰淇淋机30与底座10之间冻在一起,方便冰淇淋机30取出。
在上述实施例中,集水槽11的槽壁形成有导流面111,导流面111用于引导冰淇淋机30的冷凝水。导流面呈斜面或弧形面,可以使集水槽11槽壁上的冷凝水也可以沿着导流面111流至集水槽11中,防止冷凝水外溢。
所述刮水部21沿所述保温套20的内壁周向设置。具体的,所述刮水部21为一整体刮水结构件,所述刮水部21的位于所述容纳空间内的所述内边缘为一圆形边。冰淇淋机30位于容纳空间50内时,使冰淇淋机30的外壁、刮水部21、保温套20内壁和底座10围成封闭的保温空间40,从而与保温套20配合形成双层保温结构避免保温空间40内部的空气与外部空气对流换热,使保温效果大大提高,同时还隔离了保温空间40外部的水蒸气,切断了水蒸气的来源,从而大大减少冷凝水产生,有效避免结霜。
在上述实施例中,刮水部21为弹性材质,刮水部21的内径通过弹性形变可调节,通过采用弹性材质,可以使刮水部21的位于所述容纳空间内的所述内边缘的半径通过弹性形变可调节。
在一些实施例中,所述刮水部21包括沿所述保温套20的内壁周向设置的多个刮水结构件,所述刮水部21的所述多个刮水结构件位于所述容纳空间内的最内边缘为位于同一圆上的多段弧形边。一方面,在取出冰淇淋机的过程中,刮水部可以将冰淇淋机表面的冷凝水刮掉,使冰淇淋机拿出后避免更加清洁;另一方面,在取出冰淇淋机的过程中,冰淇淋机所受到的摩擦阻力大大减少。
在一些实施例中,所述多个刮水构件为弹性材质,所述多个结构件的位于所述容纳空间内的所述内边缘所在圆的半径通过弹性形变可调节。
在一些实施例中,所述保温套的所述多个刮水结构件沿所述保温套的内壁周向均匀设置。这样,在取出冰淇淋机的过程中,冰淇淋机在移除方向上所受到的摩擦阻力均匀,从而增加冰淇淋机在取出过程中的平衡性。
在上述实施例中,集水结构包括集水槽11,集水槽11的槽壁形成有导流面111,导 流面111用于引导冷凝水。保温套20的内壁面与导流面111相连并平滑过渡,使冷凝水可以平滑过渡到集水槽11内。
在上述实施例中,底座10与保温套20为一体成型结构,方便拿取,不会使部件丢失。
在另一种实施例中,底座10可拆卸地连接保温套20上,可以方便清洗和收纳。例如,底座10与保温套20之间通过磁吸式结构连接,既可以保证使用时的可靠性,又可以方便清洗。
在上述实施例中,保温装置还包括保温结构,保温结构设置在底座10与保温套20之间。保温结构包括密封圈,使整体更加保温。
显然,本申请的上述实施方式仅仅是为清楚地说明本申请所作的举例,而并非是对本申请的实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无法对所有的实施方式予以穷举。凡是属于本申请的技术方案所引伸出的显而易见的变化或变动仍处于本申请的保护范围之列。

Claims (15)

  1. 一种冰淇淋机(30)用保温装置,其特征在于,包括:
    底座(10),所述底座(10)上设置有集水结构;
    保温套(20),所述保温套(20)沿底座(10)的周向连接在所述底座(10)上,所述保温套(20)与所述底座(10)围成一容纳空间(50);
    刮水部(21),所述刮水部(21)设置于所述保温套(20)的内壁上,朝所述容纳空间(50)向里凸出;
    其中,所述冰淇淋机(30)置于所述容纳空间(50)内,并位于所述底座(10)的所述集水结构之上;所述刮水部(21)的位于所述容纳空间内的内边缘抵顶所述冰淇淋机(30)的外壁;所述冰淇淋机(30)的外壁、所述刮水部(21)、所述保温套(20)内壁和所述底座(10)围成保温空间(40)。
  2. 根据权利要求1所述的保温装置,其特征在于,
    所述集水结构包括集水槽(11),所述冰淇淋机(30)的底部位于所述集水槽(11)内。
  3. 根据权利要求2所述的保温装置,其特征在于,
    所述集水结构还包括设置在所述底座(10)内部的储水腔(12),所述集水槽(11)上设置有与所述储水腔(12)连通的导流孔(13)。
  4. 根据权利要求1所述的保温装置,其特征在于,
    所述集水结构设置有支撑凸起(14),所述支撑凸起(14)朝向所述冰淇淋机(30)的底部凸出。
  5. 根据权利要求2所述的保温装置,其特征在于,所述集水槽(11)的槽壁形成导流面(111)。
  6. 根据权利要求1所述的保温装置,其特征在于,所述刮水部(21)沿所述保温套(20)的内壁周向设置。
  7. 根据权利要求6所述的保温装置,其特征在于,
    所述刮水部(21)为一整体刮水结构件,所述刮水部(21)的位于所述容纳空间内的所述内边缘为一圆形边。
  8. 根据权利要求7所述的保温装置,其特征在于,
    所述刮水部(21)为弹性材质,所述刮水部(21)的位于所述容纳空间内的所述内边缘的半径通过弹性形变可调节。
  9. 根据权利要求6所述的保温装置,其特征在于,
    所述刮水部(21)包括沿所述保温套(20)的内壁周向设置的多个刮水结构件,所述刮水部(21)的所述多个刮水结构件位于所述容纳空间内的最内边缘为位于同一圆上的多段弧形边。
  10. 根据权利要求9所述的保温装置,其特征在于,
    所述多个刮水构件为弹性材质,所述多个结构件的位于所述容纳空间内的所述内边缘所在圆的半径通过弹性形变可调节。
  11. 根据权利要求9所述的保温装置,其特征在于,
    所述保温套(20)的所述多个刮水结构件沿所述保温套(20)的内壁周向均匀设置。
  12. 根据权利要求1所述的保温装置,其特征在于,
    所述集水结构包括集水槽(11),所述集水槽(11)的槽壁形成有导流面(111),所述保温套(20)的内壁面与所述导流面(111)相连并平滑过渡。
  13. 根据权利要求1所述的保温装置,其特征在于,
    所述底座(10)与所述保温套(20)为一体成型结构,或者所述底座(10)可拆卸地连接所述保温套(20)上。
  14. 根据权利要求5所述的保温装置,其特征在于,所述导流面(111)呈斜面或弧形面。
  15. 根据权利要求1所述的保温装置,其特征在于,所述底座(10)与所述保温套(20)之间通过磁吸式结构连接。
PCT/CN2021/123238 2020-10-19 2021-10-12 冰淇淋机用保温装置 WO2022083474A1 (zh)

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