WO2021136439A1 - 烹饪设备 - Google Patents

烹饪设备 Download PDF

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Publication number
WO2021136439A1
WO2021136439A1 PCT/CN2020/141682 CN2020141682W WO2021136439A1 WO 2021136439 A1 WO2021136439 A1 WO 2021136439A1 CN 2020141682 W CN2020141682 W CN 2020141682W WO 2021136439 A1 WO2021136439 A1 WO 2021136439A1
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WO
WIPO (PCT)
Prior art keywords
diversion
deflector
control panel
channel
flow guiding
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PCT/CN2020/141682
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English (en)
French (fr)
Inventor
丁越
阿泰仕·K
Original Assignee
广东美的厨房电器制造有限公司
美的集团股份有限公司
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Application filed by 广东美的厨房电器制造有限公司, 美的集团股份有限公司 filed Critical 广东美的厨房电器制造有限公司
Publication of WO2021136439A1 publication Critical patent/WO2021136439A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J37/00Baking; Roasting; Grilling; Frying
    • A47J37/06Roasters; Grills; Sandwich grills
    • A47J37/0623Small-size cooking ovens, i.e. defining an at least partially closed cooking cavity
    • A47J37/0664Accessories

Definitions

  • the invention relates to the technical field of household appliances, in particular to a cooking device.
  • the present invention aims to solve at least one of the technical problems existing in the prior art. For this reason, the present invention provides a cooking device, which can improve the waterproof effect of the control panel and reduce the production cost.
  • the cooking apparatus includes: a box body with a top plate at the upper end of the box body; a control panel, the control panel being installed on the box body and having a rear plate matching the top plate; A diversion structure, the diversion structure is located below the matching place of the rear plate and the top plate, and the diversion structure defines a diversion channel and extends to both ends of the control panel along the length direction.
  • the diversion structure By providing a diversion structure located under the matching gap between the rear plate of the control panel and the top plate of the box, the diversion structure defines the diversion channel and extends to both ends of the control panel along the length direction.
  • the end of the diversion channel has The drainage diversion port discharges water away from the control panel, avoiding water entering the control panel and causing damage to the electronic control components, improving the waterproof effect of the control panel, and making the waterproof design of the cooking equipment more reliable.
  • the flow guiding channel is arranged obliquely downward along the length direction of the flow guiding structure.
  • the diversion channel is arranged obliquely downward from the middle to both ends along the length direction of the diversion structure.
  • the air deflector structure includes: a first air deflector, the first air deflector is connected to the rear plate and extends in a horizontal direction; a second air deflector, the second The deflector is connected to the first deflector and extends in the vertical direction; wherein, the rear plate, the first deflector and the second deflector are enclosed to form the deflector aisle.
  • the first guide plate is formed with a guide surface, the guide surface defines a guide groove, and the guide groove is provided with a drain toward the end of the guide channel. mouth.
  • the height of the diversion groove with respect to the vertical direction is gradually reduced in a direction toward the drainage port.
  • the width of the diversion groove with respect to the front-to-rear direction gradually decreases in the direction toward the drain.
  • the cross section of the flow guiding structure along the length direction is a "V"-shaped structure.
  • the flow guiding structure is connected to the rear plate and is integrally formed.
  • the flow guiding structure is provided with a reinforcing plate abutting against the rear plate.
  • Figure 1 is a perspective view of a cooking device according to an embodiment of the present invention.
  • Figure 2 is a top view of Figure 1;
  • FIG. 3 is a schematic cross-sectional view of a diversion structure according to an embodiment of the present invention.
  • Figure 4 is an enlarged view of the control panel and diversion structure in Figure 2;
  • Figure 5 is a partial enlarged view of Figure 4.
  • Figure 6 is a partial cross-sectional view of section A-A in Figure 5;
  • Figure 7 is a perspective view of a control panel and a diversion structure according to another embodiment of the present invention.
  • Fig. 8 is an enlarged view of B in Fig. 7;
  • Fig. 9 is a schematic cross-sectional view of a diversion structure according to another embodiment of the present invention.
  • Guide structure 300 guide channel 301; first guide plate 302; second guide plate 303;
  • Diversion port 400 diversion surface 401; diversion groove 402; drainage port 403;
  • the first and second are only used for distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the indicated technology The precedence of features.
  • a cooking device includes a box body 100 and a control panel 101.
  • the cooking equipment may be an embedded kitchen appliance such as an oven.
  • the box body 100 is used to contain food and process the food; the box body 100 has a top plate 102 at the upper end, and the top plate 102 is convenient for the user during the cooking process. When placing food or other auxiliary cooking operations, the user may overflow or splash water onto the top plate 102 during the operation.
  • the control panel 101 is installed on the box body 100, generally located at the front end of the box body 100, so that the user can operate the cooking equipment.
  • the rear end of the control panel 101 has a rear plate 201 that is matched with the top plate 102, and the front end of the top plate 102 is supported by the rear plate 201, so that a gap is formed at the matching position of the rear plate 201 and the top plate 102. 202, the water on the top plate 102 can easily flow into the control panel 101 through the gap 202 and cause damage to the electronic control components.
  • the cooking device further includes a diversion structure 300, the diversion structure 300 is located below the matching place of the rear plate 201 and the top plate 102, the diversion structure 300 defines a diversion channel 301 for collecting and passing through
  • the diversion structure 300 extends along the length direction to both ends of the control panel 101 to cover the size of the gap 202 to ensure that all the water flowing into the gap 202 can fall into the diversion channel 301; in some embodiments
  • the length direction of the diversion structure 300 is the left and right direction shown in FIG. 4, and the end of the diversion channel 301 has diversion openings 400, so that water is discharged from the diversion openings 400, and the water is prevented from entering the control panel 101.
  • the diversion structure 300 can be connected to the rear plate 201 or to the box body 100, so that the water flowing in the gap 202 can completely flow into the diversion channel 301, and the connection method can be integral molding and welding. Or bolt connection, etc., which are not specifically limited here.
  • the diversion channel 301 is arranged obliquely downward along the length direction of the diversion structure 300.
  • the bottom surface of the diversion channel 301 is downward relative to the vertical direction and from the left and right directions.
  • One end extends obliquely to the other end, and the end of the diversion channel 301 with a relatively low height in the vertical direction is provided with a diversion port 400.
  • the diversion channel 301 may be a structure that slopes downwards toward the left, so that The water is quickly discharged along the diversion port 400 provided at the left end of the diversion channel 301 to ensure that the water can be discharged smoothly and will not accumulate in the diversion channel 301; it can also be a structure that slopes downward to the right. Therefore, the water is quickly discharged along the diversion opening 400 provided at the right end of the diversion channel 301, which ensures that the water can be discharged smoothly and will not accumulate in the diversion channel 301. It should be noted that the water is transported through the diversion channel 301 to the diversion port 400 and discharged.
  • the diversion port 400 is located at the end of the control panel 101 in the left-right direction, so that the diversion port 400 is isolated from the electronic control element of the control panel 101 This prevents water from flowing into the inside of the control panel 101 and damages the electronic control components, and improves the reliability of waterproofing.
  • the diversion channel 301 is arranged obliquely downward from the middle to both ends along the length direction of the diversion structure 300.
  • the bottom surface of the diversion channel 301 is relative to the vertical direction. It extends downward and obliquely extends from the middle part in the left-right direction to both ends respectively, and the two ends of the diversion channel 301 in the left-right direction are provided with diversion ports 400.
  • the height of the two ends of the diversion channel 301 in the left-right direction is lower than the height of the middle of the diversion channel 301, so that the water is respectively diverted to the diversion ports 400 provided at the two ends of the diversion channel 301 and discharged quickly.
  • the water can be discharged smoothly and will not accumulate in the diversion channel 301; and the stroke of the water in the diversion channel 301 is shortened by half compared with the previous embodiment, which improves the efficiency of drainage.
  • the diversion openings 400 are respectively located at the left and right ends of the control panel 101, so that the diversion openings 400 are separated from the electronic control components of the control panel 101, thereby preventing water from flowing into the control panel 101 and damaging the electronic control components. Improve the reliability of waterproofing.
  • the flow guide structure 300 includes a first flow guide plate 302 and a second flow guide plate 303.
  • the first flow guide plate 302 is connected to the rear plate 201 and extends in a horizontal direction.
  • the second baffle 303 is connected to the first baffle 302 and extends in the vertical direction.
  • the second baffle 303 can be realized by a flanging process, which makes the processing of the baffle structure 300 more convenient and helps to improve production efficiency. And its structure is more stable.
  • the rear plate 201, the first baffle 302, and the second baffle 303 are enclosed to form a diversion channel 301, thereby forming a diversion channel 301 with better wrapping, which prevents water from flowing from the diversion channel 301
  • the back end overflows, causing damage to the electronic control components inside the control panel 101, and improving the reliability of waterproofing.
  • the first deflector 302 is formed with a deflector surface 401, the deflector surface 401 is located at the bottom of the deflector channel 301, on the deflector surface 401
  • the diversion groove 402 is defined so that water accumulates on the diversion surface 401.
  • the end of the diversion groove 402 extending toward the end of the diversion channel 301 is provided with a drainage port 403, that is, a drainage port 403 is provided at the diversion port 400 Therefore, the water accumulated on the diversion surface 401 is diverted, the speed of diversion of the water diversion port 400 is accelerated, and the drainage efficiency is improved.
  • the flow guide groove 402 can be realized by a process of adding a profile to the first flow guide plate 302, which is more convenient to process, is beneficial to improve production efficiency, and has a stable structure.
  • the height of the diversion groove 402 relative to the vertical direction is gradually reduced in the direction toward the drain 403, so as to realize that the water energy accumulated on the diversion groove 402 is fast. Diversion to the drainage port 403 and discharge, reducing the possibility of residual water on the diversion surface 401.
  • the diversion groove 402 includes a first groove section 500 and a second groove section 501 that are connected to each other. The inclination of the first groove section 500 is greater than the inclination of the second groove section 501, so that the Small water droplets can accumulate in the second trough section 501 through the first trough section 500.
  • the second trough section 501 is provided with a drainage port 403 at one end away from the first trough section 500, which can quickly remove the water accumulated in the second trough section 501. Drainage improves the drainage efficiency of the diversion structure 300.
  • the width of the diversion groove 402 relative to the front-rear direction is gradually reduced in the direction toward the drainage port 403, thereby realizing the accumulation of water on the diversion surface 401 on the diversion groove 402 , And the water on the diversion groove 402 can be quickly diverted to the drainage port 403 and discharged, which improves the drainage efficiency of the diversion structure 300.
  • the flow guiding structure 300 is connected to the rear plate 201.
  • the flow guiding structure 300 is connected to the rear plate 201 to extend to the rear end through the rear plate 201.
  • the integral molding can realize the integral molding structure of the flow guiding structure 300 and the rear plate 201 through a stamping process, the structure is stable, the processing is convenient, and the processing cost is reduced.
  • the diversion structure 300 is provided with a reinforcing plate 600 abutting the rear plate 201, which improves the structural strength of the diversion channel 301 and reduces the guide
  • the flow surface 401 may be deformed.
  • the reinforcing plate 600 can be realized by a flanging process, which makes the processing of the flow guiding structure 300 more convenient, which is beneficial to improve the production efficiency, and its structure is integrally formed and the structure is more stable.
  • the reinforcing plate 600 is configured into two and the two reinforcing plates 600 are respectively provided at the two ends of the flow guiding structure 300 in the left-right direction, the structure is more stable, the processing is more convenient, and the processing cost can be reduced.
  • the cross section along the length of the flow guide structure 300 is a "V"-shaped structure
  • the flow guide structure 300 includes a first guide plate 302 and a second Two deflectors 303, the first deflector 302 and the second deflector 303 are spliced to form a "V"-shaped structure.
  • the deflector structure 300 is designed so that the water flowing in from the gap 202 can be quickly deflected and accumulated in the deflector.
  • the bottom surface of the flow channel 301 accelerates the speed at which the water is guided and discharged from the end of the flow channel 301.
  • the diversion structure 300 forms a diversion channel 301 with better wrapping, which prevents water from overflowing from the rear end of the diversion channel 301 and damages the electronic control components inside the control panel 101.
  • the bottom surface of the diversion channel 301 is downward with respect to the vertical direction and extends obliquely from one end in the left-right direction to the other end, and the height of the diversion channel 301 in the vertical direction is relatively low.
  • One end is provided with a diversion port 400, so that the water is quickly discharged along the diversion port 400 provided at the end of the diversion channel 301, ensuring that the water can be discharged smoothly and will not accumulate in the diversion channel 301;
  • the diversion port 400 is located at the end of the control panel 101 in the left-right direction, so that the diversion port 400 is isolated from the electronic control components of the control panel 101, thereby preventing water from flowing into the control panel 101 and damaging the electronic control components. Waterproof reliability.
  • the bottom surface of the diversion channel 301 is downward relative to the vertical direction and extends obliquely from the middle part in the left-right direction to both ends, and both ends of the diversion channel 301 in the left-right direction are provided with The diversion port 400, so as to divert water to the diversion ports 400 provided at both ends of the diversion channel 301 for quick discharge, ensuring that the water can be discharged smoothly and will not accumulate in the diversion channel 301; and the water is in the diversion channel Compared with the previous embodiment, the stroke in 301 is shortened by half, which improves the efficiency of drainage.
  • the diversion openings 400 are respectively located at the left and right ends of the control panel 101, so that the diversion openings 400 are separated from the electronic control components of the control panel 101, thereby preventing water from flowing into the control panel 101 and damaging the electronic control components. Improve the reliability of waterproofing.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Induction Heating Cooking Devices (AREA)

Abstract

一种烹饪设备,包括:箱体(100),箱体(100)的上端具有顶板(102);控制面板(101),控制面板(101)安装于箱体(100)上且具有与顶板(102)相配合的后板(201);导流结构(300),导流结构(300)位于后板(201)与顶板(102)的配合处下方,导流结构(300)限定出导流通道(301)且沿长度方向延伸至控制面板(101)的两端。

Description

烹饪设备
相关申请的交叉引用
本申请要求于2019年12月31日提交的申请号为201911414533.3、名称为“烹饪设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及家用电器技术领域,特别涉及一种烹饪设备。
背景技术
相关技术中,烤箱的控制面板组件和顶板之间存在装配间隙,当用户在控制面板组件或顶板上操作时,如果发生溢水或泼水,水会通过间隙接触到内部电控元件,对电控元件造成损伤。现有技术一般通过在控制面板组件与顶板装配间隙下安装硅胶密封条填充,使得水从密封条的两端排出的方式进行排水,但是密封条中间与两端状态不一样,导致整个密封条的压缩量不一致,无法保证其防水效果,存在一定的安全隐患。
发明内容
本发明旨在至少解决现有技术中存在的技术问题之一。为此,本发明提出一种烹饪设备,能够提升控制面板的防水效果,且降低了生产成本。
根据本发明的实施例的烹饪设备,包括:箱体,所述箱体的上端具有顶板;控制面板,所述控制面板安装于所述箱体上且具有与所述顶板相配合的后板;导流结构,所述导流结构位于所述后板与所述顶板的配合处的下方,所述导流结构限定出导流通道且沿长度方向延伸至所述控制面板的两端。
根据本发明实施例的烹饪设备,至少具有如下有益效果:
通过设置位于控制面板的后板和箱体的顶板配合间隙下方的导流结构,导流结构限定出导流通道且沿长度方向延伸至控制面板的两端,导流通道的端部具有用于排水的导流口,将水向远离控制面板的方向排出,避免了水进入控制面板内部并对电控元件造成损伤,提升了控制面板的防水效果,使烹 饪设备的防水设计更加可靠。
根据本发明的一些实施例,所述导流通道沿所述导流结构的长度方向倾斜向下设置。
根据本发明的一些实施例,所述导流通道沿所述导流结构的长度方向自中部分别向两端倾斜向下设置。
根据本发明的一些实施例,所述导流结构包括:第一导流板,所述第一导流板与所述后板相连且沿水平方向延伸;第二导流板,所述第二导流板与所述第一导流板相连且沿竖直方向延伸;其中,所述后板、所述第一导流板和所述第二导流板之间围合形成所述导流通道。
根据本发明的一些实施例,所述第一导流板形成有导流面,所述导流面上限定出导流槽,所述导流槽朝向所述导流通道的端部设有排水口。
根据本发明的一些实施例,所述导流槽相对于竖直方向的高度在朝向所述排水口的方向上逐渐降低。
根据本发明的一些实施例,所述导流槽相对于前后方向的宽度在朝向所述排水口的方向上逐渐减小。
根据本发明的一些实施例,所述导流结构沿长度方向上的截面呈“V”字型结构。
根据本发明的一些实施例,所述导流结构与所述后板相连接且一体成型。
根据本发明的一些实施例,所述导流结构设有与所述后板相抵接的加强板。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1为本发明一种实施例的烹饪设备的立体图;
图2为图1的俯视图;
图3为本发明一种实施例的导流结构的剖视示意图;
图4为图2中控制面板和导流结构的放大图;
图5为图4的局部放大图;
图6为图5中截面A-A的局部剖视图;
图7为本发明另一种实施例的控制面板和导流结构的立体图;
图8为图7中B处的放大图;
图9为本发明另一种实施例的导流结构的剖视示意图。
附图标号:
箱体100;控制面板101;顶板102;
后板201;间隙202;
导流结构300;导流通道301;第一导流板302;第二导流板303;
导流口400;导流面401;导流槽402;排水口403;
第一槽段500;第二槽段501;
加强板600。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,涉及到方位描述,例如上、下、左、右、前、后等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必 须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
在本发明的描述中,第一、第二只是用于区分技术特征为目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量或者隐含指明所指示的技术特征的先后关系。
本发明的描述中,除非另有明确的限定,设置、安装、连接等词语应做广义理解,所属技术领域技术人员可以结合技术方案的具体内容合理确定上述词语在本发明中的具体含义。
参照图1和图2所示,本发明一种实施例的烹饪设备,包括箱体100和控制面板101。在一些实施例中,烹饪设备可以为烤箱等嵌入式厨房电器,箱体100用于容纳食物并对食物进行加工;箱体100的上端具有顶板102,在烹饪的过程中,顶板102可便于用户进行食物的放置或其他辅助烹饪的操作,用户在操作过程中会存在溢水或泼水至顶板102的可能性。另外,控制面板101安装于箱体100上,一般位于箱体100的前端,以便于用户对烹饪设备进行操作。因此,需要说明的是,控制面板101的后端具有与顶板102相配合的后板201,顶板102的前端通过后板201进行支撑,从而会使后板201与顶板102的配合处形成有间隙202,顶板102上的水容易通过间隙202流入控制面板101内部对电控元件造成损伤。
参照图3和图4所示,烹饪设备还包括导流结构300,导流结构300位于后板201与顶板102的配合处的下方,导流结构300限定出导流通道301,用于收集通过间隙202流入的水,导流结构300沿长度方向延伸至控制面板101的两端,以覆盖间隙202的尺寸,以保证间隙202流入的水能全部落入导流通道301中;在一些实施例中,导流结构300的长度方向为图4中所示的左右方向,导流通道301的端部具有导流口400,从而将水从导流口400排出,避免了水进入到控制面板101内部,对电控元件造成损伤,提升了控制面板101的防水效果,使烹饪设备的防水设计更加可靠、安全;而且其结构简单稳 定,相对于现有技术减少了硅胶密封条的结构,提高了烹饪设备的装配效率。可以理解的是,导流结构300可与后板201相连接,或与箱体100相连接,以使得间隙202上流入的水能完全流入导流通道301内,连接方式可以为一体成型、焊接或螺栓连接等,在此不作具体限定。
根据本发明的一些实施例,导流通道301沿导流结构300的长度方向倾斜向下设置,在一些实施例中,导流通道301的底面相对于竖直方向向下且从沿左右方向的一端向另一端倾斜延伸,导流通道301沿竖直方向的高度相对较低的一端设有导流口400,可以理解的是,导流通道301可以为朝向左侧向下倾斜的结构,从而将水沿设于导流通道301左侧端部的导流口400快速排出,确保了水能顺利排出,不会在导流通道301内积聚;也可以为朝向右侧向下倾斜的结构,从而将水沿设于导流通道301右侧端部的导流口400快速排出,确保了水能顺利排出,不会在导流通道301内积聚。需要说明的是,水通过导流通道301输送至导流口400排出,导流口400位于控制面板101的沿左右方向的端部,使得导流口400与控制面板101的电控元件隔离开,从而避免了水流入控制面板101内部从而损伤电控元件,提高了防水的可靠性。
作为本发明的另一种实施例,导流通道301沿导流结构300的长度方向自中部分别向两端倾斜向下设置,在一些实施例中,导流通道301的底面相对于竖直方向向下且从沿左右方向的中部分别向两端倾斜延伸,导流通道301沿左右方向的两端均设有导流口400。可以理解的是,导流通道301沿左右方向的两端的高度低于导流通道301中部的高度,从而将水分别导流至设于导流通道301两端的导流口400快速排出,确保了水能顺利排出,不会在导流通道301内积聚;而且水在导流通道301内的行程较于上一种实施例缩短了一半,提高了排水的效率。需要说明的是,导流口400分别位于控制面板101的左右两端,使得导流口400与控制面板101的电控元件隔离开,从而避免了水流入控制面板101内部并损伤电控元件,提高了防水的可靠性。
参照图3所示,根据本发明的一些实施例,导流结构300包括第一导流 板302和第二导流板303,第一导流板302与后板201相连且沿水平方向延伸,第二导流板303与第一导流板302相连且沿竖直方向延伸,第二导流板303可通过翻边工艺实现,使得导流结构300的加工更加方便,有利于提高生产效率,且其结构更加稳定。其中,后板201、第一导流板302和第二导流板303之间围合形成导流通道301,从而形成包裹性较好的导流通道301,避免了水从导流通道301的后端溢出,对控制面板101内部的电控元件造成损伤,提高了防水的可靠性。
参照图4、图5和图6所示,根据本发明的一些实施例,第一导流板302形成有导流面401,导流面401位于导流通道301的底部,导流面401上限定出导流槽402,使得水在导流面401上积聚,导流槽402朝向导流通道301的端部延伸的一端设有排水口403,即位于导流口400处设有排水口403,从而对积聚在导流面401上的水进行引流,加快了水向导流口400导流的速度,提高了排水的效率。需要说明的是,导流槽402可以通过对第一导流板302增加压型的工艺实现,其加工更加方便,有利于提高生产效率,且结构稳定。
参照图5和图6所示,在一些实施例中,导流槽402相对于竖直方向的高度在朝向排水口403的方向上逐渐降低,从而实现了导流槽402上积聚的水能快速导流至排水口403并排出,降低了导流面401上残留水的可能性。需要说明的是,导流槽402包括相互连接的第一槽段500和第二槽段501,第一槽段500的斜度大于第二槽段501的斜度,使得导流面401上的小水珠能通过第一槽段500积聚于第二槽段501内,第二槽段501远离第一槽段500的一端设有排水口403,可对第二槽段501积聚的水进行快速排出,提高了导流结构300的排水效率。
参照图5所示,在一些实施例中,导流槽402相对于前后方向的宽度在朝向排水口403的方向上逐渐减小,从而实现了导流面401上的水向导流槽402上积聚,且导流槽402上的水能快速导流至排水口403并排出,提高了导流结构300的排水效率。
参照图3所示,根据本发明的一些实施例,导流结构300与后板201相 连接,在一些实施例中,为通过后板201向后端延伸设置,导流结构300与后板201一体成型,从而可以通过冲压工艺实现导流结构300和后板201一体成型的结构,其结构稳定、加工方便,且降低了加工成本。
参考图6、图7和图8所示,根据本发明的一些实施例,导流结构300设有与后板201相抵接的加强板600,提高了导流通道301的结构强度,减少了导流面401发生变形的可能性。可以理解的是,加强板600可以通过翻边工艺实现,使得导流结构300的加工更加方便,有利于提高生产效率,且其结构一体成型,结构更加稳定。在一些实施例中,加强板600构造成两个且两个加强板600分别设于导流结构300沿左右方向的两端,其结构更加稳定,且加工更加方便,可降低加工的成本。
参照图9所示,根据本发明的一些实施例,导流结构300沿长度方向上的截面呈“V”字型结构,可以理解的是,导流结构300包括第一导流板302和第二导流板303,第一导流板302和第二导流板303拼接形成“V”字型结构,该导流结构300设计使得从间隙202中流入的水可以快速导流并积聚于导流通道301的底面,加快了水向导流通道301的端部导流并排出的速度。另外,该导流结构300形成了包裹性较好的导流通道301,避免了水从导流通道301的后端溢出,对控制面板101内部的电控元件造成损伤。作为本发明其中的一种实施例,导流通道301的底面相对于竖直方向向下且从沿左右方向的一端向另一端倾斜延伸,导流通道301沿竖直方向的高度相对较低的一端设有导流口400,从而将水沿设于导流通道301的端部的导流口400快速排出,确保了水能顺利排出,不会在导流通道301内积聚;需要说明的是,导流口400位于控制面板101的沿左右方向的端部,使得导流口400与控制面板101的电控元件隔离开,从而避免了水流入控制面板101内部从而损伤电控元件,提高了防水的可靠性。作为本发明的另一种实施例,导流通道301的底面相对于竖直方向向下且从沿左右方向的中部分别向两端倾斜延伸,导流通道301沿左右方向的两端均设有导流口400,从而将水分别导流至设于导流通道301两端的导流口400快速排出,确保了水能顺利排出,不会在导流 通道301内积聚;而且水在导流通道301内的行程较于上一种实施例缩短了一半,提高了排水的效率。需要说明的是,导流口400分别位于控制面板101的左右两端,使得导流口400与控制面板101的电控元件隔离开,从而避免了水流入控制面板101内部并损伤电控元件,提高了防水的可靠性。
上面结合附图对本发明实施例作了详细说明,但是本发明不限于上述实施例,在所述技术领域普通技术人员所具备的知识范围内,还可以在不脱离本发明宗旨的前提下作出各种变化。

Claims (10)

  1. 烹饪设备,包括:
    箱体,所述箱体的上端具有顶板;
    控制面板,所述控制面板安装于所述箱体上且具有与所述顶板相配合的后板;
    导流结构,所述导流结构位于所述后板与所述顶板的配合处的下方,所述导流结构限定出导流通道且沿长度方向延伸至所述控制面板的两端。
  2. 根据权利要求1所述的烹饪设备,其中,所述导流通道沿所述导流结构的长度方向倾斜向下设置。
  3. 根据权利要求1所述的烹饪设备,其中,所述导流通道沿所述导流结构的长度方向自中部分别向两端倾斜向下设置。
  4. 根据权利要求1至3任一项所述的烹饪设备,其中,所述导流结构包括:
    第一导流板,所述第一导流板与所述后板相连且沿水平方向延伸;
    第二导流板,所述第二导流板与所述第一导流板相连且沿竖直方向延伸;
    其中,所述后板、所述第一导流板和所述第二导流板之间围合形成所述导流通道。
  5. 根据权利要求4所述的烹饪设备,其中,所述第一导流板形成有导流面,所述导流面上限定出导流槽,所述导流槽朝向所述导流通道的端部设有排水口。
  6. 根据权利要求5所述的烹饪设备,其中,所述导流槽相对于竖直方向的高度在朝向所述排水口的方向上逐渐降低。
  7. 根据权利要求5所述的烹饪设备,其中,所述导流槽相对于前后方向的宽度在朝向所述排水口的方向上逐渐减小。
  8. 根据权利要求1至3任一项所述的烹饪设备,其中,所述导流结构沿长度方向上的截面呈“V”字型结构。
  9. 根据权利要求1所述的烹饪设备,其中,所述导流结构与所述后板相 连接且一体成型。
  10. 根据权利要求1所述的烹饪设备,其中,所述导流结构设有与所述后板相抵接的加强板。
PCT/CN2020/141682 2019-12-31 2020-12-30 烹饪设备 WO2021136439A1 (zh)

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