Disclosure of Invention
The invention aims to solve the problems in the prior art and provides a dishwasher which integrates a defrosting function into the prior dishwasher and does not occupy redundant space.
The purpose of the invention can be realized by the following technical scheme: a dishwasher having a thawing function, comprising: a body having a washing space therein for washing dishes; the cover plate is movably connected to the machine body and used for sealing the washing space, wherein a unfreezing assembly is arranged in the cover plate, and the unfreezing assembly is electrically connected with a control system in the dish washing machine.
In the above dishwasher with thawing function, the thawing component is embedded in the cover plate, wherein the thawing component is provided with a heated area.
In the above-mentioned dishwasher having a defrosting function, the surface of the heated region is flush with the surface of the lid plate.
In the dish washer with the unfreezing function, the unfreezing component is internally provided with the heating source, and the heating source and the frozen food material placed on the unfreezing component are unfrozen in a heat conduction mode.
In the above dishwasher with thawing function, the heating source is an electric heating wire or an electric heating rod.
In the above dishwasher having a thawing function, the heating wire is laid in the thawing assembly.
In the above-mentioned dish washer with function of unfreezing, the tiling mode of heating wire is the setting of S type structure.
In the above dishwasher having a thawing function, both ends of the heating wire laid in the thawing unit are located at the same side.
In the above-mentioned dishwasher with thawing function, a control panel is provided on the cover plate, wherein the control panel is electrically connected with a control system in the dishwasher.
In the above-mentioned dishwasher with thawing function, the dishwasher is a sump type dishwasher.
In the above-mentioned dishwasher with thawing function, the sink type dishwasher includes a tank body having a washing plane, wherein the cover plate is movably connected to the washing plane.
In the above-mentioned dishwasher with thawing function, the surface of the cover plate is flush with the surface of the tank body, and the surface of the cover plate is higher than the washing plane.
In the above dishwasher with thawing function, a handle assembly is movably connected to the side wall of the cover plate, and the cover plate can be conveniently opened through the handle assembly.
In the dishwasher having the thawing function, the handle assembly may be opened by being horizontally laterally moved to be drawn out of the cover plate, or horizontally rotated to be rotated out of the cover plate, or horizontally ejected from the cover plate.
In the above dishwasher with thawing function, a concave cavity is provided on the cover plate, wherein the movable plate of the handle assembly is embedded in the concave cavity, and wherein a button is provided on the outer side of the movable plate.
In the above-mentioned dish washer with function of unfreezing, the both sides of fly leaf respectively are provided with a joint portion, and this joint portion cooperatees with the lug on the cavity inside.
In the above-mentioned dishwasher with thawing function, the protrusions in the cavity are divided into two groups, two in each group, and the two groups of protrusions are arranged in parallel, wherein one group of protrusions is close to the bottom of the cavity, and the other group of protrusions is close to the front of the cavity.
In the above dishwasher with thawing function, two sides of the movable plate are respectively provided with a positioning portion, wherein the positioning portions and the clamping portions are respectively located at two ends of the movable plate.
In the dishwasher with thawing function, the movable plate is arranged in a Chinese character 'shan' shape, wherein the middle part of the movable plate is used as an embedded position of the elastic piece, and the clamping part and the positioning part are respectively arranged at two sides of the movable plate.
In the above-mentioned dish washer with function of unfreezing, joint portion and location portion all are the integral type structure setting with the fly leaf.
Compared with the prior art, the dish-washing machine with the unfreezing function, provided by the invention, has the advantages that the unfreezing component is arranged in the cover plate of the dish-washing machine, so that the utilization rate of the surface area of the cover plate is improved, the unfreezing speed of food materials can be accelerated through the unfreezing component, the cooking efficiency of a user is improved, in addition, the 'impatience' emotion of the user when waiting for unfreezing is relieved, and the user can thoroughly enjoy the fun brought by cooking.
Detailed Description
The following are specific embodiments of the present invention and are further described with reference to the drawings, but the present invention is not limited to these embodiments.
As shown in fig. 1 to 5, the present invention provides a dishwasher having a thawing function, including: a body 100 having a washing space 110 therein for washing dishes; and a cover plate 200 movably coupled to the body 100 to seal the washing space 110, wherein a thawing assembly is provided in the cover plate 200 and is electrically connected to a control system in the dishwasher.
The control system in this embodiment is mainly used to control the dishwasher to perform the washing operation on the dishes and to turn on or off the defrosting assembly, and does not need to relate to the specific structure of the control system and the circuit components, and therefore, will not be described in detail in the present invention.
The usage condition of the thawing assembly in this embodiment is that when the washing space 110 is in a sealed state, i.e. the cover plate 200 covers the washing space 110, the thawing assembly is turned on, and the thawing operation can be performed only at this time, and the thawing operation can be performed on frozen meat food, frozen seafood food, etc.; however, when the washing space 110 is in the open state, that is, when the cover 200 is opened, the thawing unit is turned off, and thus the thawing operation cannot be performed, it can be seen that, as long as the cover 200 is in the closed state (the washing space 110 is in the sealed state), the thawing unit is in the on state regardless of whether the washing operation of the dishes is performed inside, and the thawing unit is turned off when the cover 200 is opened.
According to the dish washing machine with the unfreezing function, the unfreezing assembly is arranged in the cover plate 200 of the dish washing machine, so that the utilization rate of the surface area of the cover plate 200 is improved, the unfreezing speed of food materials can be accelerated through the unfreezing assembly, the cooking efficiency of a user is improved, in addition, the 'impatience' emotion of the user when the user waits for unfreezing is relieved, and the user can thoroughly enjoy fun brought by cooking.
Further preferably, as shown in fig. 1 to 5, the thawing component is embedded in the cover plate 200, wherein the thawing component is provided with a heated region 210, and the surface of the heated region 210 is flush with the surface of the cover plate 200, so as to improve the appearance of the cover plate 200 itself on the one hand, and reasonably utilize the internal space of the cover plate 200 on the other hand, since the cover plate 200 has a certain thickness and the interior of the cover plate 200 is hollow, and the thawing component is just embedded in the hollow region of the cover plate 200, under the condition of improving the bearing capacity of the cover plate 200 itself, other electronic components in the cover plate 200 can be better protected at the same time.
Further preferably, as shown in fig. 1 to 5, a heating source is built in the thawing component, and the thawing operation is performed between the heating source and the frozen food material (meat or seafood) placed on the thawing component in a heat conduction manner, that is, the heating source generates heat and transfers the heat to the surface of the thawing component, so that the surface of the thawing component is heated, thereby thawing the frozen food material is realized, and thawing in the above manner does not affect the taste of the frozen food material after cooking, does not cause nutrition loss of the frozen food material, and has a faster thawing speed. Further preferably, the heating source may be a heating wire 220 or an electric heating rod, taking the heating wire 220 as an example, in this embodiment, the heating wire 220 is tiled in the thawing assembly, and further preferably, the heating wire 220 is tiled in an S-shaped structure, so that the heated area 210 in the thawing assembly is heated uniformly, the side of the frozen food material contacting the heated area 210 is thawed at the same speed, and the thawing efficiency is further improved.
Further preferably, as shown in fig. 1 to 5, both ends of the heating wire 220 laid in the thawing assembly are located at the same side, so as to shorten the length of the electric wire when the heating wire 220 is electrically connected with the control system, ensure that the line connection of the thawing assembly is clean and tidy, and simultaneously, the lines between the heating wire 220 and the control system are far away from the surface of the heating wire 220 or nearby, thereby improving the reliability of the line connection.
Preferably, as shown in fig. 1 to 5, a control panel 230 is provided on the cover plate 200, and preferably, the control panel 230 is embedded on the cover plate 200 such that the surface of the control panel 230 is flush with the surface of the cover plate 200, wherein the control panel 230 is electrically connected to a control system in the dishwasher, and a washing operation of dishes and a thawing operation of frozen foods are initiated through the control panel 230.
Preferably, as shown in fig. 1 to 5, the dishwasher in the present embodiment is a water tank type dishwasher, wherein the water tank type dishwasher includes a tank 400 having a washing plane 410, wherein a cover 200 is movably connected to the washing plane 410, preferably, a rotational connection is adopted between the cover 200 and the washing plane 410, further preferably, the surface of the cover 200 is flush with the surface of the tank 400, and the surface of the cover 200 is higher than the washing plane 410, so that an "embedded" structure is formed between the cover 200 and the tank 400, the sealing performance of the washing space 110 is ensured (when the cover 200 is closed), and the efficiency of the dishwasher for washing dishes is improved.
Preferably, as shown in fig. 1 to 5, a handle assembly 300 is movably connected to a side wall of the cover plate 200, and the cover plate 200 can be conveniently opened by the handle assembly 300, since in this embodiment, the cover plate 200 is rotatably connected to the washing plane 410 and is embedded in the tank body 400, such that the cover plate 200 is in a "half-enclosed structure", where the "half-enclosed structure" is understood that two washing tanks 420 are arranged side by side in the tank body 400 of a general sink, preferably, the washing capacities of the two washing tanks 420 are set to be one large and one small, and the dishwasher is located on the washing tank 420 with the smaller washing capacity, wherein the washing planes 410 of the two washing tanks 420 are located on the same horizontal plane and are arranged in an integrated structure, such that the cover plate 200 near the side with the larger washing capacity is in an open state, and the other three sides of the cover plate 200 are enclosed by the tank body 400, thereby forming a "semi-enclosed structure". Therefore, in the embodiment, the cover plate 200 in the "embedded" state is difficult to open only by the friction between the fingers of the user and the sidewall (the side in the open state) of the cover plate 200, and the fingers of the user in the cooking process (the cleaning process) are in the wet state, which causes the friction between the fingers and the sidewall of the cover plate 200 to be smaller, which brings trouble to the opening of the cover plate 200, and the handle assembly 300 is movably connected to the sidewall of the cover plate 200, so that the user has a "force point" when opening the cover plate 200, thereby facilitating the opening of the cover plate 200 and improving the user experience.
Further preferably, as shown in fig. 1 to 5, when the handle assembly 300 is not used, it is embedded in the cover plate 200, and when the handle assembly 300 (which is required to open the cover plate 200) is required to be used, the opening manner of the handle assembly 300 may be horizontally moved out of the cover plate 200, horizontally rotated out of the cover plate 200, or horizontally ejected out of the cover plate 200, and the handle assembly 300 may be extended out of the cover plate 200 by any one of the three manners, but is not limited to the three manners, as long as the handle assembly 300 is embedded in the cover plate 200 in the unused state and the cover plate 200 is extended out in the used state.
Further preferably, as shown in fig. 1 to 5, the following opening mode of the handle assembly 300 is described as an example of horizontal ejection from the cover 200, in this embodiment, a cavity 240 is formed on the cover 200, wherein the movable plate 310 of the handle assembly 300 is embedded in the cavity 240, wherein a button is disposed on an outer side of the movable plate 510, and the ejection of the movable plate 310 can be realized by pressing the button, that is, the movable plate 310 is extended from the cavity 240 by pressing the button, so that the cover 200 can be opened.
Further preferably, as shown in fig. 1 to 5, two sides of the movable plate 310 are respectively provided with a clamping portion 311, and the clamping portions 311 are matched with the bumps 250 inside the cavity 240, wherein the bumps 250 inside the cavity 240 are divided into two groups, each group is two, and the two groups of bumps 250 are arranged in parallel, one group of bumps 250 is close to the bottom (closed end) of the cavity 240, the other group of bumps 250 is close to the front (open end) of the cavity 240, and the clamping portions 311 on the movable plate 310 are respectively matched with the two groups of bumps 250 for use, when the movable plate 310 is embedded in the cavity 240, that is, when the movable plate 310 does not extend out of the cover plate 200, the clamping portions 311 on the movable plate 310 are clamped with the group of bumps 250 close to the bottom of the cavity 240; when the movable plate 310 extends out of the cover plate 200, the engaging portion 311 of the movable plate 310 engages with the set of protrusions 250 near the front portion of the cavity 240, and at this time, the set of protrusions 250 serves as a limiting portion of the movable plate 310 during the ejection process, so as to prevent the movable plate 310 from departing from the range of the cavity 240 during the ejection process, thereby improving the reliability of the handle assembly 300.
Further preferably, as shown in fig. 1 to 5, two sides of the movable plate 310 are further provided with a positioning portion 312, wherein the positioning portion 312 and the fastening portion 311 are respectively located at two ends of the movable plate 310, and the positioning portion 312 is used as a limiting portion when the movable plate 310 extends into the cover plate 200 when the movable plate 310 is pushed into the cavity 240, so as to prevent the movable plate 310 from being pushed too deep and affecting the reliability of the use of the movable plate 310.
Through the description of the above embodiment, the set of bumps 250 near the front of the cavity 240 serves as a limiting portion for the movable plate 310 when extending out of the cover plate 200 on one hand, and serves as a limiting portion for the movable plate 310 when extending into the cover plate 200 on the other hand, although the set of bumps 250 is always used for limiting, the limiting positions are different according to the state of the movable plate 310, that is, when the movable plate 310 extends out of the cover plate 200, the side of the bump 250 near the bottom of the cavity 240 serves as a limiting function, and when the movable plate 310 extends into the cover plate 200, the side of the bump 250 near the front of the cavity 240 serves as a limiting function.
Further preferably, as shown in fig. 1 to 5, the movable plate 310 is arranged in a chinese character "shan", wherein a middle portion of the movable plate 310 is used as an embedded position of an elastic member (not shown), the clamping portion 311 and the positioning portion 312 are respectively arranged on two sides of the movable plate 310, and both the clamping portion 311 and the positioning portion 312 are arranged in an integrated structure with the movable plate 310. Preferably, the middle portion of the movable plate 310 is higher than both sides of the movable plate 310, so that when the movable plate 310 is embedded in the cavity 240, the elastic member embedded in the middle portion of the movable plate 310 is in a compressed state, and at this time, the locking portions 311 on both sides are engaged with the protrusions 250 on one side near the bottom of the cavity 240, thereby locking the movable plate 310. The reliability of the handle assembly 300 in use is improved, wherein the elastic member is preferably a compression spring.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the spirit or ambit of the invention as defined in the appended claims.