WO2022036767A1 - 生产透明冰的制冰装置 - Google Patents

生产透明冰的制冰装置 Download PDF

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Publication number
WO2022036767A1
WO2022036767A1 PCT/CN2020/113687 CN2020113687W WO2022036767A1 WO 2022036767 A1 WO2022036767 A1 WO 2022036767A1 CN 2020113687 W CN2020113687 W CN 2020113687W WO 2022036767 A1 WO2022036767 A1 WO 2022036767A1
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Prior art keywords
ice
making device
producing transparent
evaporator
box
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PCT/CN2020/113687
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English (en)
French (fr)
Inventor
沈利江
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宁波余通电器有限公司
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Publication of WO2022036767A1 publication Critical patent/WO2022036767A1/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
    • F25C1/18Producing ice of a particular transparency or translucency, e.g. by injecting air

Definitions

  • the invention relates to the field of ice making machines, in particular to an ice making device for producing transparent ice.
  • Existing ice making machines for producing transparent ice such as the patent number CN200320115624.5, the name is a Chinese utility model patent for a new transparent ice making mechanism, such as the patent number CN201420629098.2, the name is a kind of transparent ice making
  • Another example is the Chinese utility model patent of the ice maker device, and the patent number is CN200720109296.6, and the Chinese utility model patent named as the spray mechanism of the ice maker.
  • the method of making transparent ice is to spray water or stir water with blades.
  • the structure of an ice maker that produces transparent ice by spraying water generally uses an overturned water tank as a water storage container, and discharges the ice through a rotating motion. During the ice discharge process, it is easy to jam and cause the problem of difficulty in turning over;
  • the purpose of the present invention is to solve the problems of ice jam and inability to separate ice and water in the existing ice maker when discharging ice.
  • the present invention provides an ice making device for producing transparent ice for the above technical problems.
  • An ice-making device for producing transparent ice including an evaporator and a movable water storage device, the ice-making device is provided with an ice discharge port, the ice discharge port is arranged below the evaporator, and the water storage device is provided with an opening that can be put into the evaporator, During the ice making process, the water storage device reciprocates up and down relative to the evaporator.
  • a driving device for driving the longitudinal movement and lateral movement of the water reservoir is also included.
  • an ice amount sensor and a controller are also included, the ice amount sensor is used to detect the accumulation of ice and transmit the information to the controller, and the controller is used to control the start and stop of the evaporator.
  • the ice making device is provided with an inclined ice discharge opening baffle plate at the ice discharge opening.
  • the water storage device includes an outer box and an inner box for storing water, the inner box is arranged in the outer box, and the inner box and the outer box are separable.
  • the longitudinal driving device is mounted on the lateral driving device or the longitudinal driving device is mounted on the water storage tank, or the longitudinal driving device and the lateral driving device are independently mounted on the ice making device.
  • the longitudinal drive device drives the inner box to continuously reciprocate
  • the lateral drive device drives the outer box to move laterally.
  • the outer box is connected with the transverse driving device, and the outer box is provided with a through opening through which the longitudinal driving device can pass.
  • the outer box is connected with the transverse driving device
  • the inner box is provided with a driving matching part
  • the longitudinal driving device drives the inner box to move through the connecting driving matching part
  • it also includes a water inlet pipe capable of controlling the amount of water inflow, an ice collecting box and a collecting chamber, the ice collecting box is arranged below the ice discharge opening, and the collecting chamber is used to collect the overflowing water from the water storage or the water remaining on the evaporator.
  • a water inlet pipe capable of controlling the amount of water inflow
  • an ice collecting box is arranged below the ice discharge opening
  • the collecting chamber is used to collect the overflowing water from the water storage or the water remaining on the evaporator.
  • the ice collecting box is provided with a handle
  • the inner box is provided with a handle
  • the ice making device is provided with a leaking net on the collecting chamber.
  • the present invention has the following advantages and effects:
  • a lifting device is arranged in the ice maker, and the lifting device is used to drive the longitudinal reciprocating motion of the water storage device, so as to realize the production of transparent ice, with a simple structure and less space occupation; At the same time, the water storage and the evaporator are completely separated without interference, and the separation of ice and water is realized at the same time.
  • Fig. 1 is the structural representation of embodiment 1;
  • Fig. 2 is the schematic diagram of embodiment 1;
  • Fig. 3 is the sectional view of Fig. 2;
  • Fig. 4 is the partial exploded view of Fig. 1;
  • Fig. 5 is a partial enlarged view of Fig. 4;
  • Fig. 6 is the structural representation of embodiment 2;
  • Fig. 7 is another structural representation of embodiment 2;
  • Embodiment 8 is a schematic structural diagram of Embodiment 3.
  • FIG. 9 is another schematic structural diagram of Embodiment 3.
  • FIG. 9 is another schematic structural diagram of Embodiment 3.
  • 6-handle 7-collection chamber; 8-water inlet pipe; 9-leakage; 10-ice outlet;
  • any component described with respect to one figure in various embodiments of the invention may be equivalent to a similarly named component described with respect to any other figure.
  • at least some of these components are implicitly identified by various labels.
  • the description of these components will not be repeated for each drawing. Accordingly, each embodiment of a component in each figure is incorporated by reference and is deemed to be optionally present in each other figure having one or more similarly named components.
  • any description of a component in the figures should be construed as an alternative embodiment, which may be different from embodiments described with respect to corresponding components of the same name in other figures. Add, combine or replace.
  • ordinal numbers eg, one, two, three, etc.
  • elements ie, any nouns in this application.
  • the use of these ordinal numbers does not imply or constitute a particular order of the elements, nor does it limit any element to only a single one, and the use of these ordinal numbers is used to distinguish different elements.
  • an element number one is different from an element number two, and an element number one may include more than one element, and a first element may follow (or precede) the second element in the order of the elements.
  • Example 1 An ice maker for producing transparent ice, as shown in Figures 1-5, includes a casing 1, a compressor 2, a heat exchanger 3, an evaporator 4 and a movable water storage, wherein the compressor 2.
  • the heat exchanger 3 and the evaporator 4 are all common components in the existing ice maker.
  • the casing 1 is designed according to the needs, that is, the shape shown in Figure 1 can be used, or a rectangular parallelepiped, rounded rectangle can be used. , cube and other shapes.
  • the compressor 2, the heat exchanger 3, the evaporator 4 and the water storage are all installed in the casing 1.
  • the casing 1 is provided with an ice discharge port 10, and the ice discharge port 10 is located below the evaporator 4.
  • the ice discharge port is preferably arranged directly below the evaporator 4, and at the same time, in order to prevent the transparent ice from falling outside the ice discharge port 10, the cabinet 1 may be provided with an inclined discharge port at the upper edge of the ice discharge port 10. Ice baffle 11.
  • the water storage container includes an inner box 13 and an outer box 14.
  • the inner box 13 is installed in the outer box 14, and the two can be separated.
  • a handle can be provided on the inner box 13. 17.
  • a longitudinal driving device 15 and a transverse driving device 12 are installed on the casing 1.
  • the outer box 14 is provided with two openings 19, and the bottom surface of the inner box 13 is provided with two card slots 20.
  • the longitudinal driving device 15 and the lateral drive device 12 can be selected from conventional linear drive components, such as linear modules, cylinders and lead screws.
  • the nut and the outer box 14 are fixed by bolts, and the claws 18 are installed on the lead screw nut of the longitudinal driving device 15 .
  • an ice collecting box 5 can be optionally installed below the ice discharge opening, and a handle 6 can be optionally installed on the ice collecting box 5 to facilitate taking out the ice collecting box 5 .
  • a handle 6 can be optionally installed on the ice collecting box 5 to facilitate taking out the ice collecting box 5 .
  • the cabinet 1 in order to collect the overflowing water from the water storage or the water remaining on the evaporator, the cabinet 1 is provided with a collection chamber 7 , and the ice collecting box 5 is mounted on the collection chamber 7 , in order to prevent the transparent ice from falling into the collection chamber 7 , a leaking net 9 can be optionally installed on the collection chamber 7 .
  • a sensor 16 and a controller can be optionally installed in order to prevent the ice discharge opening 10 from being blocked due to excessive ice making.
  • the sensor 16 transmits a signal to the controller, and the controller can be integrated in the ice making.
  • the controller is used to control the working state of the compressor 2 and then control the evaporator to start and stop making ice.
  • the sensor 16 can be an infrared sensor or a distance sensor. The infrared sensor is installed at the ice discharge port 10, and the distance sensor can be used. Installed at the ice discharge port 10 or the lower edge of the ice discharge port 10 .
  • a water inlet pipe 8 with an adjustable flow rate function is installed in the ice making device. The water inlet pipe 8 can be controlled by a solenoid valve, a flow meter, etc. above.
  • the water inlet pipe 8 of the ice maker injects a corresponding amount of water into the inner box 13 according to the required amount of ice.
  • the lateral drive device 12 works to drive the outer box 14 to translate from the inner rear of the ice maker to the inner front of the ice maker.
  • the longitudinal driving device 15 works, and drives the claws 18 to move up through the openings 19 to be inserted into the card slots 20, so that the inner box 13 can be lifted from the outer box 14, and the claws 18 continue to move upward until the end of the stroke is reached.
  • the longitudinal drive device 15 drives the claws 18 to move down for a preset time.
  • Set the distance take greater than zero but less than or equal to the whole stroke, preferably half the stroke
  • continuous reciprocating motion is continuous up and down movement.
  • the evaporator 4 continues to make ice.
  • the number of times of ice making is preferably 4-6 times.
  • the claw 18 reaches the starting point of the stroke, and the inner box 13 returns to the outer box 14 .
  • the lateral drive device 12 returns to the starting point of the stroke, which means that the lateral drive device 12 moves once, the compressor 2 and the heat exchanger 3 work again, so that the ice falls off the evaporator 4, and the ice directly falls into the ice collecting box through the ice discharge port 10. 5 or in the ice collecting container (such as a cup) brought by the user to complete one ice making. If the ice collecting box 5 is used, the accumulation amount of the ice in the ice collecting box 5 can be detected by the sensor 16.
  • the sensor 16 will not be triggered (this When the infrared sensor is used), it will continue to make the next ice until the sensor 16 is triggered to stop making ice, at which time the whole work ends.
  • Embodiment 2 is basically the same as Embodiment 1, except that: as shown in FIG. 6 , in Embodiment 2, the water storage 21 is a whole, the longitudinal driving device 15 is omitted, and the driving device only has the transverse driving device 12 and the transverse driving device 12 is installed in the casing 1 obliquely, or as shown in FIG. 7 , the lateral drive device 12 is selected as a curve module, and the water storage 21 and the lateral drive device 12 are fixed by bolts.
  • the water inlet pipe 8 of the ice maker injects a corresponding amount of water into the inner box 13 according to the required amount of ice.
  • the lateral drive device 12 works to drive the water storage tank 21 to ramp up.
  • the lateral drive device 12 reaches the end of the stroke, the water storage tank 21 is located below the evaporator 4.
  • the lateral drive device 12 drives the water storage 21 to move down a preset distance (take greater than zero but less than or equal to the entire stroke, preferably It is one half of the stroke), then move up to the end of the stroke, and then move down to the preset distance, this is moving twice, in order to achieve better results, the number of moves for one ice making is preferably 4-6 times.
  • the compressor 2 and the heat exchanger 3 work again to make the ice fall off the evaporator 4, and the ice directly falls into the ice collecting box 5 or the ice collecting container brought by the user through the ice discharge port 10. (such as a cup), complete an ice making.
  • the longitudinal driving device 15 selects an air cylinder
  • the inner box 13 is provided with a driving matching part
  • the driving matching part can be designed as a flange, a hook, a card slot, etc.
  • the structure that can withstand external forces is preferably a flanged handle 17, the longitudinal drive device 15 is installed on the lateral drive device 12 and is located below the handle 17, and the longitudinal drive device 15 drives the inner box 13 to reciprocate through the lifting handle 17.
  • the longitudinal driving device 15 selects an air cylinder
  • the longitudinal driving device 15 is installed at the bottom of the outer box 14 .

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

Abstract

本发明公开一种生产透明冰的制冰装置,包括蒸发器和可移动的储水器,制冰装置设有排冰口,排冰口设置在蒸发器下方,储水器设有能放入蒸发器的开口,制冰过程中储水器相对蒸发器上下往复运动。

Description

生产透明冰的制冰装置 技术领域
本发明涉及制冰机领域,特别是一种生产透明冰的制冰装置。
背景技术
现有生产透明冰的制冰机,如专利号为CN200320115624.5,名称为一种新型制透明冰机构的中国实用新型专利,如专利号为CN201420629098.2,名称为一种制取透明冰的制冰机装置的中国实用新型专利,又如专利号为CN200720109296.6,名称为制冰机的喷淋机构的中国实用新型专利,制取透明冰的方法为通过喷水或叶片搅水。通过喷水的方式生产透明冰的制冰机结构,一般由翻转的水箱作为储水的容器,通过旋转运动排冰,在排冰过程中容易卡冰导致难以翻转的问题;而通过叶片搅水的方式生产透明冰的制冰机结构,在排冰时无法实现冰与水的分离。
发明内容
本发明的目的是解决现有制冰机在排冰时卡冰以及无法冰水分离的问题。
本发明为上述技术问题提供一种生产透明冰的制冰装置。
本发明所述的技术方案是:
生产透明冰的制冰装置,包括蒸发器和可移动的储水器,制冰装置设有排冰口,排冰口设置在蒸发器下方,储水器设有能放入蒸发器的开口,制冰过程中储水器相对蒸发器上下往复运动。
优选的,还包括带动储水器纵向运动和横向运动的驱动装置。
优选的,还包括冰量感应器和控制器,所述冰量感应器用于检测冰的堆积量并将信息传输给控制器,控制器用于控制蒸发器启动及停止。
优选的,所述制冰装置在排冰口处设置有倾斜的排冰口挡板。
优选的,所述储水器包括外盒及用于储水的内盒,内盒设置在外盒内,内盒和外盒可分离。
优选的,所述纵向驱动装置安装在横向驱动装置上或者纵向驱动装置安装 在储水器上或者纵向驱动装置与横向驱动装置相互独立地安装在制冰装置上。
优选的,所述纵向驱动装置带动内盒连续往复运动,横向驱动装置带动外盒横向运动。
优选的,所述外盒与横向驱动装置连接,外盒设有能让纵向驱动装置通过的通口。
优选的,所述外盒与横向驱动装置连接,内盒设有驱动配合部,纵向驱动装置通过连接驱动配合部带动内盒运动。
优选的,还包括能控制进水量的进水管、集冰盒和收集室,所述集冰盒设置在排冰口下方,收集室用于收集储水器溢出或蒸发器上残留的水。
优选的,所述集冰盒设置有把手,所述内盒上设置有提手,制冰装置在收集室上设置漏网。
本发明同现有技术相比具有以下优点及效果:
本发明通过在制冰机内设置升降装置,利用升降装置带动储水器纵向往复运动,实现透明冰的生产,结构简单且占用空间少;同时升降装置还带动储水器横向运动,在排冰时,使储水器与蒸发器完全分离,不会产生干涉,同时实现冰水分离。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为实施例1的结构示意图;
图2为实施例1的示意图;
图3为图2的截面视图;
图4为图1的局部爆炸图;
图5为图4的局部放大图;
图6为实施例2的结构示意图;
图7为实施例2的另一结构示意图;
图8为实施例3的结构示意图;
图9为实施例3的另一结构示意图。
附图说明:
1-机壳;2-压缩机;3-换热器;4-蒸发器;5-集冰盒;
6-把手;7-收集室;8-进水管;9-漏网;10-排冰口;
11-排冰挡板;12-横向驱动装置;13-内盒;14-外盒;
15-纵向驱动装置;16-感应器;17-提手;18-插爪;
19-通口;20-卡槽;21-储水器。
具体实施方式
下面结合实施例对本发明做进一步的详细说明,以下实施例是对本发明的解释而本发明并不局限于以下实施例。
在以下说明中,在本发明的各种不同实施例中关于一幅图描述的任意组件可等同于关于任意其他附图描述的具有相同命名的组件。为简洁起见,这些组件的至少一部分是通过各种不同的标记而隐含识别的。而且,将不会针对每个附图重复这些组件的说明。因此,每个附图中组件的每个实施例通过引用而并入,并且被视为可选地存在于具有一个或多个类似命名的组件的每个其它附图中。此外,根据本发明的若干实施例,附图中组件的任意描述应被解读为是可选的实施例,其可相对于关于其它附图中对应的具有相同命名的组件而描述的实施例而添加、结合或替换。
在整个说明书中,使用了序数(例如,一号、二号、三号等)作为元件(即,本申请中的任何名词)的形容词。这些序数的使用并非暗示或构成该元件的特定顺序、也非将任何元件限定为仅具有单个,这些序数的使用是为了区分不同的 元件。示意性地,一号元件不同于二号元件,并且一号元件可包括多于一个的元件,而且第一元件在元件顺序方面可以在该第二元件之后(或之前)。
实施例1:一种生产透明冰的制冰机,如图1-5所示,包括机壳1、压缩机2、换热器3、蒸发器4和可移动的储水器,其中压缩机2、换热器3、蒸发器4均为现有制冰机内的常用零部件,机壳1根据需求进行设计,即可以如图1中所示的外形,也可以采用长方体、圆角矩形、正方体等外形。压缩机2、换热器3、蒸发器4和储水器均安装在机壳1内,机壳1设有排冰口10,排冰口10位于蒸发器4下方,为了简化内部结构及缩小制冰装置的体积,排冰口优选设置在蒸发器4的正下方,同时为了防止透明冰掉落在排冰口10外,机壳1可以在排冰口10上边沿处设有倾斜的排冰挡板11。储水器包括内盒13和外盒14,内盒13装在外盒14内,两者之间可分离,为了方便从外盒14内取出内盒13进行清洁,内盒13上可设置提手17。为了驱动外盒14和内盒13移动,机壳1上安装纵向驱动装置15和横向驱动装置12,外盒14开设2个通口19,内盒13底面开设2个卡槽20,纵向驱动装置15和横向驱动装置12可选用常规的直线驱动件,例如直线模组、气缸和丝杆等,本实施例中纵向驱动装置15和横向驱动装置12均选用丝杠,横向驱动装置12的丝杠螺母与外盒14通过螺栓固定,纵向驱动装置15的丝杠螺母上安装插爪18。如图1所示,为了方便收集生产的透明冰,排冰口下方可选装集冰盒5,为了方便取出集冰盒5,集冰盒5上可选装把手6。如图2所示,为了收集储水器溢出或蒸发器上残留的水,机壳1设置有收集室7,集冰盒5装在收集室7上,为了预防透明冰掉入收集室7内,收集室7上可选装漏网9。如图3和4所示,为了防止制冰量过多造成排冰口10堵塞,还可选装感应器16和控制器,感应器16将信号传输给控制器,控制器可集成在制冰装置的控制电路内,控制器用于控制压缩机2的工作状态进而控制蒸发器启动及停止制冰,感应器16可选用红外传感器或距离传感器,红外传感器安装在排冰口10处,距离传感器可安装在排冰口10处或排冰口10下边沿。为了控制内盒13内的水量,制冰装置内安装带有可调流量功能的进水管8,进 水管8可采用电磁阀、流量计等控制流量,进水管8的出口设在内盒13的上方。
启动制冰机后,根据需求的制冰量,制冰机的进水管8往内盒13内注入相应量的水。随后,横向驱动装置12工作,带动外盒14由制冰机内后部平移至制冰机内前部,横向驱动装置12到达行程终点时,内盒13位于蒸发器4下方。随后,纵向驱动装置15工作,带动插爪18上移穿过通口19嵌入卡槽20,即可将内盒13从外盒14内抬起,插爪18继续上移直至到达行程终点,此时,压缩机2、换热器3和蒸发器4开始工作,制冰开始,经过预设时间后(根据制冰需求设定,例如1分钟),纵向驱动装置15带动插爪18下移预设距离(取大于零小于等于整个行程,优选为二分之一行程)后再上移到达行程终点,然后再下移到预设距离,此为纵向驱动装置15移动两次,移动两次以上为往复运动,连续往复运动即为连续上下移动,在往复运动过程中,蒸发器4持续制冰,为了达到较好的效果,一次制冰的移动次数优选为4-6次,此时水内溶解的空气全部排出,生成透明冰。达到往复运动次数后,插爪18到行程起点,内盒13回到外盒14内。随后横向驱动装置12回到行程起点,此为横向驱动装置12移动一次,压缩机2和换热器3再工作,使冰从蒸发器4脱落,冰直接通过排冰口10掉入集冰盒5或使用者自带的集冰容器(例如杯子)内,完成一次制冰。如果采用集冰盒5,则可通过感应器16检测集冰盒5内冰的堆积量,例如集冰盒5内冰的堆积不到排冰口10处,则不会触发感应器16(此时采用红外感应器),会继续下一次制冰,直至触发感应器16后停止制冰,此时整个工作结束。
实施例2:
本实施例与实施例1基本相同,区别点在于:如图6所示,实施例2中,储水器21为一整体,取消纵向驱动装置15,驱动装置只有横向驱动装置12,横向驱动装置12倾斜的安装在机壳1内,或者如图7所示,横向驱动装置12选用曲线模组,储水器21与横向驱动装置12通过螺栓固定。
启动制冰机后,根据需求的制冰量,制冰机的进水管8往内盒13内注入相应量的水。随后,横向驱动装置12工作,带动储水器21斜上升,横向驱动装 置12到达行程终点时,储水器21位于蒸发器4下方。随后,制冰开始,经过预设时间后(根据制冰需求设定,例如1分钟),横向驱动装置12带动储水器21斜向下移预设距离(取大于零小于等于整个行程,优选为二分之一行程)后再上移到达行程终点,然后再下移到预设距离,此为移动两次,为了达到较好的效果,一次制冰的移动次数优选为4-6次,之后到达预设的移动次数后,压缩机2和换热器3再工作,使冰从蒸发器4脱落,冰直接通过排冰口10掉入集冰盒5或使用者自带的集冰容器(例如杯子)内,完成一次制冰。
实施例3:
本实施例与实施例1基本相同,区别点在于:如图8所示,纵向驱动装置15选用气缸,内盒13设有驱动配合部,驱动配合部可设计为翻边、挂钩、卡槽等能承受外力的结构,优选采用翻边式的提手17,纵向驱动装置15安装在横向驱动装置12上并且位于提手17下方,纵向驱动装置15通过顶升提手17带动内盒13往复运动。如图9所示,纵向驱动装置15选用气缸,纵向驱动装置15安装在外盒14底部,纵向驱动装置15通过顶升内盒13底部实现内盒13的往复运动。
此外,需要说明的是,本说明书中所描述的具体实施例,其零、部件的形状、所取名称等可以不同。凡依本发明专利构思所述的构造、特征及原理所做的等效或简单变化,均包括于本发明专利的保护范围内。本发明所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,只要不偏离本发明的结构或者超越本权利要求书所定义的范围,均应属于本发明的保护范围。

Claims (11)

  1. 生产透明冰的制冰装置,其特征在于,包括蒸发器和可移动的储水器,制冰装置设有排冰口,排冰口设置在蒸发器下方,储水器设有能放入蒸发器的开口,制冰过程中储水器相对蒸发器上下往复运动。
  2. 根据权利要求1所述的生产透明冰的制冰装置,其特征在于,还包括带动储水器纵向运动和横向运动的驱动装置。
  3. 根据权利要求1所述的生产透明冰的制冰装置,其特征在于,还包括冰量感应器和控制器,所述冰量感应器用于检测冰的堆积量并将信息传输给控制器,控制器用于控制蒸发器启动及停止。
  4. 根据权利要求1所述的生产透明冰的制冰装置,其特征在于,所述制冰装置在排冰口处设置有倾斜的排冰口挡板。
  5. 根据权利要求2所述的生产透明冰的制冰装置,其特征在于,所述储水器包括外盒及用于储水的内盒,内盒设置在外盒内,内盒和外盒可分离;所述驱动装置包括横向驱动装置和纵向驱动装置。
  6. 根据权利要求5所述的生产透明冰的制冰装置,其特征在于,所述横向驱动装置安装在制冰装置上,纵向驱动装置安装在横向驱动装置上或者纵向驱动装置安装在外盒上或者纵向驱动装置安装在制冰装置上。
  7. 根据权利要求5所述的生产透明冰的制冰装置,其特征在于,所述纵向驱动装置带动内盒连续往复运动,横向驱动装置带动外盒横向运动。
  8. 根据权利要求5所述的生产透明冰的制冰装置,其特征在于,所述外盒与横向驱动装置连接,外盒设有能让纵向驱动装置通过的通口。
  9. 根据权利要求5所述的生产透明冰的制冰装置,其特征在于,所述外盒与横向驱动装置连接,内盒设有驱动配合部,纵向驱动装置通过连接驱动配合部带动内盒运动。
  10. 根据权利要求1-9任一所述的生产透明冰的制冰装置,其特征在于,还包括能控制进水量的进水管、集冰盒和收集室,所述集冰盒设置在排冰口下方,收集室用于收集储水器溢出或蒸发器上残留的水。
  11. 根据权利要求10所述的生产透明冰的制冰装置,其特征在于,所述集冰盒设置有把手,内盒上设置有提手,制冰装置在收集室上设置漏网。
PCT/CN2020/113687 2020-08-17 2020-09-07 生产透明冰的制冰装置 WO2022036767A1 (zh)

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