CN215914212U - A fried bucket subassembly and air are fried pot dismantled for air is fried pot - Google Patents

A fried bucket subassembly and air are fried pot dismantled for air is fried pot Download PDF

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Publication number
CN215914212U
CN215914212U CN202121795160.1U CN202121795160U CN215914212U CN 215914212 U CN215914212 U CN 215914212U CN 202121795160 U CN202121795160 U CN 202121795160U CN 215914212 U CN215914212 U CN 215914212U
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China
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frame
opening
transparent
transparent cover
outer frame
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Chinese (zh)
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吕挺
陈锡雁
梁郁庆
张万粮
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Zhejiang Tianxi Kitchen Appliance Co Ltd
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Zhejiang Tianxi Kitchen Appliance Co Ltd
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Abstract

The utility model provides a detachable frying barrel assembly for an air fryer, which comprises a frying barrel body, an inner layer frame, a high-temperature-resistant transparent layer, a middle layer frame, an outer layer frame and a transparent cover body. Wherein, the front side surface of the frying barrel body is provided with a first opening of the frying barrel body. The inner layer frame is fixedly arranged on the outer side of the front side face of the frying barrel body and is provided with a first opening of the inner layer frame. The high-temperature resistant transparent layer is fixedly arranged on the inner side of the inner layer frame. The middle layer frame is fixedly arranged on the outer side of the inner layer frame and is provided with a first opening of the middle layer frame. The outer layer frame is fixedly arranged on the outer side of the middle layer frame and is provided with a first opening of the outer layer frame. The transparent cover is made of a transparent material, covers the outer surface of the first opening of the outer frame and is detachably connected with the outer frame.

Description

A fried bucket subassembly and air are fried pot dismantled for air is fried pot
Technical Field
The utility model relates to the field of kitchen cooking appliances, in particular to a detachable frying barrel assembly for an air fryer and a corresponding air fryer.
Background
With the increasing demand for food health, air fryers are gaining increasing favor of consumers in a non-fried food processing manner. An air fryer is a small household appliance that utilizes high-speed air circulation technology for cooking. In the frying process, the high-temperature air circulating at high speed in the air fryer takes away the moisture on the surface of the food and heats the food, so that the food is heated and cooked in the air fryer to achieve the frying taste and effect, and therefore, the air fryer uses less grease than the traditional frying mode, and the prepared food is healthier.
With the increasing abundance of functions of air fryer, the variety of the food materials capable of being cooked is also increased. In the frying process of the air fryer for the food, for some specific foods, the operator needs to regularly observe, stir, turn over, pick and place and the like. Then most air fryer in the market do not have the visual window that can supply the operating personnel to observe, if want to know the concrete culinary art condition of food, need open the culinary art chamber of air fryer repeatedly and confirm the culinary art condition of food. On the one hand, repeatedly opening the cooking cavity can cause excessive wear to the opening device, which easily causes the failure of the hinge or the slide rail, and on the other hand, repeatedly opening the cooking cavity can cause the loss of the heat energy for cooking accumulated in the air fryer, thereby additionally increasing the power consumption and improving the use cost.
In the face of the above problem, chinese patent application 202110305139.7 discloses a pot is fried to split type visual air, this pot is fried to air includes casing and lower casing, the internal furnace chamber of placing food that is equipped with down of casing, be equipped with the heating member that heats the furnace chamber in the upper casing, be equipped with the joint subassembly between upper casing and the lower casing, be equipped with the observation window that is used for observing the interior food state of furnace chamber on a side of casing down, through with the split type design of upper casing and lower casing, can the person of facilitating the use after the pot is fried to use air washs. Although the air fryer of this structure can observe the inside of the air fryer while cooking, there are disadvantages: on one hand, the observation window of the air fryer adopts an embedded design, so that the air fryer cannot be disassembled and cleaned; on the other hand, the observation window of the air fryer in the utility model is of a single-layer structure, has poor heat insulation effect and can cause operation danger such as scalding of users.
On the other hand, utility model application 202021477054.4 also discloses a pot liner assembly for an air fryer, which comprises a pot liner assembly, a pot surface cover and a handle, wherein the pot surface cover comprises a frame body, a front panel, a front transparent plate, a rear transparent plate and an inner window frame; the top plate of the frame body is provided with an upper vent hole, and the bottom plate of the frame body is provided with a lower vent hole; the inner window frame is in a hollow quadrangular frustum pyramid shape, the upper frame plate and the lower frame plate of the inner window frame are respectively provided with an air vent, the inner window frame is embedded in the frame hole on the frame body, and the air vent on the inner window frame is respectively communicated with the upper air vent and the lower air vent; the rear transparent plate is arranged in a rear hole of the frame body, and the front transparent plate is embedded in the through hole of the front panel to form a whole; the front panel is covered on the front side of the frame body, the inner window frame is sealed in the frame body, and the inner window frame is respectively matched with the front transparent plate and the rear transparent plate to form a window with a hollow structure. Although the observation window adopting the structure can effectively prevent the temperature rise of the outer surface from being too high, the defects still exist: this preceding transparent plate of pot is fried in air receives steam when oozing in the space between back transparent plate and the preceding transparent plate because adopting the structure of difficult dismantlement, can lead to the user can't see the inside culinary art condition of clearing up and can't in time clear up transparent part, and the structure of not easy disassembly between preceding transparent plate and the back transparent plate also leads to inside breeding bacterium or spot easily in addition, brings the influence to user's health.
Therefore, need provide a fried bucket subassembly of reasonable in design for cooking appliance, when realizing the culinary art in-process real-time observation culinary art situation, can also guarantee effectively to insulate against heat to easy dismantlement is clean to be maintained.
SUMMERY OF THE UTILITY MODEL
In order to solve the above-mentioned problems, according to a first aspect of the present invention, there is provided a detachable fry vat assembly for an air fryer, characterized by comprising:
the front side surface of the frying barrel body is provided with a first opening of the frying barrel body;
the inner layer frame is fixedly arranged on the outer side of the front side surface of the frying barrel body and is provided with a first opening of the inner layer frame;
the high-temperature resistant transparent layer is fixedly arranged on the inner side of the inner layer frame;
the middle layer frame is fixedly arranged on the outer side of the inner layer frame and is provided with a first opening of the middle layer frame;
the outer layer frame is fixedly arranged on the outer side of the middle layer frame and is provided with a first opening of the outer layer frame; and
and the transparent cover body is made of a transparent material, covers the outer surface of the first opening of the outer layer frame and is detachably connected with the outer layer frame.
According to a preferred embodiment of the present invention, the fryer barrel body first opening, the inner frame first opening, the middle frame first opening and the outer frame first opening are aligned with each other.
According to a preferred embodiment of the present invention, an outer frame longitudinal groove is formed at a longitudinal edge of the first opening of the outer frame, a first transparent cover protrusion is formed at an inner longitudinal edge of the transparent cover, and when the transparent cover is connected to the outer frame, the first transparent cover protrusion is slidably engaged with the outer frame longitudinal groove;
a transverse outer frame groove is formed in the transverse edge of the first opening of the outer frame, a second transparent cover body bulge is formed in the transverse edge of the inner side of the transparent cover body, and when the transparent cover body is connected with the outer frame, the second transparent cover body bulge is in sliding embedded with the transverse outer frame groove; and is
The first opening of outer frame is vertical border department still is equipped with outer frame bayonet socket, the inboard vertical border department of transparent lid still is equipped with transparent lid third arch, works as transparent lid with when outer frame connects, transparent lid third arch with the gomphosis is established to outer frame bayonet socket card.
According to a preferred embodiment of the present invention, a transparent cover prying opening recessed inward is further disposed at the edge of the first opening of the outer frame.
According to a preferred embodiment of the utility model, the inner frame is provided with a first mounting groove at one side close to the frying barrel body around the first opening of the inner frame;
the removable fry vat assembly further comprising:
and the sealing ring is arranged on the periphery of the high-temperature-resistant transparent layer in a surrounding manner, a second mounting groove for accommodating the high-temperature-resistant transparent layer is arranged on the inner peripheral side of the sealing ring, and the second mounting groove is matched with the first mounting groove, so that the high-temperature-resistant transparent layer can be hermetically connected with the inner layer frame.
According to a preferred embodiment of the present invention, the inner frame further comprises:
the first connecting mechanism is used for being fixedly connected with the frying barrel body;
the second connecting mechanism is used for being fixedly connected with the middle layer frame; and
the third connecting mechanism is used for being fixedly connected with the outer layer frame;
wherein the third connecting mechanism is exposed out of the middle layer frame in a state that the inner layer frame is fixedly connected with the middle layer frame through the second connecting mechanism, and the first connecting mechanism, the second connecting mechanism and the third connecting mechanism are distributed outside the corner of the high temperature resistant transparent layer,
according to a preferred embodiment of the present invention, the first connecting mechanism and the second connecting mechanism are screw connecting mechanisms, and the third connecting mechanism is a snap connecting mechanism.
According to a preferred embodiment of the present invention, the upper surface of the inner frame is further provided with a plurality of ventilation openings.
According to a preferred embodiment of the present invention, the fry vat body further comprises a fry vat body second opening, the inner frame further comprises an inner frame second opening, the middle frame further comprises a middle frame second opening and the outer frame further comprises an outer frame second opening;
another group of high-temperature resistant transparent layers and sealing rings are arranged between the second opening of the frying barrel body and the second opening of the inner layer frame; and is
The outer surface of the second opening of the outer layer frame is also provided with another transparent cover body which is detachably connected with the outer layer frame.
According to a second aspect of the present invention, there is also provided an air fryer comprising the removable fry vat assembly described above, further comprising a handle, and the handle having a gripping area located outside the transparent cover.
The utility model at least provides the following technical effects:
1. by adopting a three-layer frame structure and combining the innermost layer and the outermost layer of transparent panels, the internal cooking condition can be observed, and meanwhile, a good heat insulation effect is also considered;
2. the outermost layer is provided with the transparent cover body which is easy to assemble and disassemble, so that the space between the transparent panels is convenient to clean;
3. through the design of the upper side ventilation opening, the heat insulation effect is enhanced, and meanwhile, the generation of water vapor between the transparent panel interlayers is inhibited.
Additional features and advantages of the application will be set forth in the description which follows, or may be learned by practice of the application.
Drawings
The accompanying drawings are included to provide a further understanding of the claimed subject matter and are incorporated in and constitute a part of this specification, illustrate embodiments of the subject matter and together with the description serve to explain the principles of the subject matter, and not limit the subject matter.
FIG. 1 is a schematic view of a removable fry vat assembly of the present invention with the fry vat body, refractory glass layer and gasket in a separated condition;
FIG. 2 is a schematic view of the inner frame and the middle frame of the deep fryer assembly of the present invention in a separated state;
FIG. 3 is a schematic view of the outer frame, transparent cover and handle of the removable fry vat assembly of the present invention in a separated state;
FIG. 4 is a schematic structural view of the removable fry vat assembly of the present invention with the transparent cover removed;
fig. 5 is a schematic diagram of the overall construction of the knock-down fry vat assembly of the present invention.
Description of reference numerals:
1-frying barrel body;
11-a first opening of the fry vat body; 12-a second opening of the frying barrel body;
2-high temperature resistant transparent layer;
3-sealing ring;
31-a second mounting groove;
4-inner layer frame;
41-inner frame first opening; 42-inner frame second opening; 43-a vent;
44-a first connection mechanism; 45-a second connection mechanism; 46-a third connection mechanism;
5-middle layer frame;
51-middle layer frame first opening; 52-middle frame second opening;
6-outer frame;
6 a-outer frame longitudinal groove; 6 b-outer frame transverse groove; 6 c-outer frame bayonet;
6d, prying the opening of the transparent cover body;
61-outer frame first opening; 62-an outer frame second opening;
7-a transparent cover;
7 a-a transparent cover first protrusion; 7 b-a transparent cover second protrusion; 7 c-a third bump of the transparent cover;
8-a grip; 81-grip area.
Detailed Description
Various exemplary embodiments of the present invention will now be described in detail with reference to the accompanying drawings. The description of the exemplary embodiments is merely illustrative and is in no way intended to limit the utility model, its application, or uses. The present invention may be embodied in many different forms and is not limited to the embodiments described herein. These embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the utility model to those skilled in the art. It should be noted that: the relative arrangement of the components and steps, the numerical expressions and numerical values set forth in these embodiments should be construed as merely exemplary, and not limiting, unless otherwise specified.
Referring to fig. 1, 2 and 3, fig. 1 shows a perspective view of a detachable fry vat assembly with the fry vat body 1, the refractory glass layer 2 and the sealing ring 3 in a separated state; fig. 2 shows a three-dimensional structure of the inner frame 4 and the middle frame 5 in a separated state; fig. 3 shows a three-dimensional structure of the middle outer layer frame 6, the transparent cover 7 and the grip 8 in a separated state. It should be noted that in the following description of the embodiments, four types of directional descriptive terms, i.e., "upper/upper," "lower/lower," "outer/outer," and "inner/inner," or similar thereto, will be used. Wherein "up/above" and "down/below" are defined as relative concepts of up and down generated in the longitudinal height direction of the air oven with reference to the longitudinal height direction, and both directions of "up/above" and "down/below" are directed as vectors, with an angle therebetween of 180 degrees; "outside/outside" and "inside/inside" are defined as the relative concepts of outside and inside that are generated in a direction perpendicular to the plane of the knock-out barrel assembly with reference to the plane, wherein the concept of "outside/outside" corresponds to the side that is directed perpendicularly to the outside direction of the air oven with the knock-out barrel assembly as the starting surface, and the concept of "inside/inside" corresponds to the side that is directed perpendicularly to the inside direction of the air oven with the knock-out barrel assembly as the starting surface.
Preferably, the "fixed connection" mentioned in the context of this specification may be realized by means of a screw connection, a bayonet connection, welding (e.g. butt welding) or rivet fixing, but the utility model is not limited thereto.
The detachable frying barrel assembly mainly comprises six elements, namely a frying barrel body 1, a high-temperature-resistant glass layer 2, an inner layer frame 4, a middle layer frame 5, an outer layer frame 6 and a transparent cover body 7. Referring to fig. 1, in the frying tub body 1, a first opening 11 of the frying tub body is provided at a side surface of the frying tub body 1 to which the outer shell of the air fryer is attached, except for an opening over which food is placed. Referring to fig. 2, the inner frame 4 is fixed to the outside of the plane of the first opening 11 of the fryer barrel body, and correspondingly, a first opening 41 of the inner frame corresponding to the first opening 11 of the fryer barrel body is also arranged on the inner frame 4. The high-temperature resistant transparent layer 2 is fixedly arranged on the inner side of the inner layer frame (4) and is clamped between the inner layer frame 4 and the frying barrel body 1. Accordingly, on the outer side surface of the inner frame 4, the middle frame 5 is provided, and a middle frame first opening 51 is provided in correspondence with the first opening 11 and the inner frame first opening 41. Referring to fig. 2 and 3 together, the outer side surface of the middle frame 5 and the inner side surface of the outer frame 6 are fixedly coupled, and accordingly, an outer frame first opening 61 is provided at a position corresponding to the fryer body first opening 11, the inner frame first opening 41, and the middle frame first opening 51. Therefore, when the fry tub body 1, the inner frame 4, the middle frame 5 and the outer frame 6 are fixed to the outer side of the former in a manner of being stacked one on top of the other, the surface areas of four mutually independent planes of the fry tub body first opening 11, the inner frame first opening 41, the middle frame first opening 51 and the outer frame first opening 61 are overlapped in alignment with each other in a projection perpendicular to the height direction of the air fryer.
Referring to fig. 3, a transparent cover 7 made of a transparent material is provided on an outer surface of the outer frame 6, and the transparent cover 7 covers the outer frame first opening (61) in an insert-coupling manner. Therefore, the projection of the transparent cover 7 perpendicular to the height direction of the air fryer is aligned and overlapped with the projections of the four mutually independent planes of the first opening 11 of the fryer body, the first opening 41 of the inner frame, the first opening 51 of the middle frame and the first opening 61 of the outer frame in the height direction of the air fryer. And more importantly, the outer frame 6 and the transparent cover 7 are detachably connected.
The detachable connection of the transparent cover 7 and the outer frame 6 will be further described with reference to fig. 3 and fig. 4, wherein fig. 4 is a schematic structural view illustrating the detachable frying barrel assembly after the transparent cover 7 is detached. Referring to fig. 3, the first opening 61 of the outer frame is in a shape of a Chinese character kou, so that the first opening has two longitudinal edges at left and right and two transverse edges at upper and lower positions.
As shown in fig. 3, at the right longitudinal edge of the outer frame first opening 61, an outer frame longitudinal groove 6a is provided, and correspondingly, at the inner longitudinal edge of the transparent cover 7, a transparent cover first protrusion 7a is also provided. In a preferred embodiment, the number of the outer frame longitudinal grooves 6a and the number of the transparent cover first protrusions 7a are two, and the two are distributed on the corresponding parts at a certain distance. When combining, because the first arch 7a of transparent lid is the protrusion structure, and outer frame indulges recess 6a and is the indent structure, transparent lid 7 with the mode of slip embedding with outer frame 6 is connected, promptly, transparent lid 7 makes through the mode of "sliding in" transparent lid first arch 7a with outer frame indulges recess 6a gomphosis.
Referring to fig. 3 and 4, the outer frame lateral groove 6b is disposed at the upper and lower lateral edges of the outer frame first opening 61, and correspondingly, the transparent cover second protrusion 7b is also disposed at the inner lateral edge of the transparent cover 7. In a preferred embodiment, the number of the outer frame transverse grooves 6b and the number of the transparent cover second protrusions 7b are two, and the two are distributed on the corresponding parts at a certain distance. When the cover is combined, the second protrusion 7b of the transparent cover is a protruding structure, the transverse groove 6b of the outer frame is an inward concave structure, and the transparent cover 7 is connected with the outer frame 6 in a sliding embedded mode, namely, the first protrusion 7a of the transparent cover is embedded with the longitudinal groove 6a of the outer frame by the transparent cover 7 in a sliding-in mode.
When the transparent cover 7 is slidably engaged with the outer frame, the left longitudinal edge of the first opening 61 of the outer frame is also provided with a snap-fit structure to ensure the tight fit of the two. An outer frame bayonet 6c is arranged at the left longitudinal edge of the outer frame first opening 61, and correspondingly, a transparent cover third protrusion 7c is also arranged at the inner longitudinal edge of the transparent cover 7. In a preferred embodiment, the number of the outer frame bayonets 6c and the number of the transparent cover third protrusions 7c are two, and the two are distributed on the corresponding parts at a certain distance. When combining, because transparent lid third arch 7c is the protrusion structure, and outer frame bayonet 6c is the indent structure, transparent lid 7 with the embedding mode with outer frame 6 is connected, promptly, transparent lid 7 makes through the mode of "card income first arch 7a of transparent lid with outer frame indulges recess 6a gomphosis. In a preferred embodiment, in order to ensure the bonding firmness and the capability of quick detachment, the third protrusion 7c of the transparent cover body and the bayonet 6c of the outer layer frame are in interference fit.
In addition, since the outer frame first opening 61 is an open-cell structure, when the two are assembled, the transparent cover 7 will just fill the open-cell formed by the outer frame first opening 61 in a flush-bonding manner, and the two will be bonded in the same plane. Accordingly, in a preferred embodiment, in consideration of the difficulty of a user to easily pry out the transparent cover 7 from a plane without a drop height without using a tool, an inwardly-recessed transparent cover prying opening 6d is added at the edge of the outer frame first opening 61. In this way, when the user tries to separate the transparent cover 7 from the outer frame first opening 61, the user can easily separate the transparent cover 7 from the outer frame first opening 61 by inserting fingers into the inwardly recessed transparent cover prying openings and applying force to the outside.
On the other hand, in order to ensure a good heat insulation effect of the frying barrel assembly and avoid scalding a user, a high temperature resistant transparent layer is also arranged between the inner layer frame 4 and the frying barrel body corresponding to the transparent cover body 7, and in order to prevent oil smoke, steam, dirt and the like generated during cooking from leaking into a cavity formed between the frying barrel assembly frame body and the transparent parts in an inflow or infiltration manner, the high temperature resistant transparent layer 2 needs to ensure good sealing performance. Referring to fig. 1 and 2, a first mounting groove is formed at the inner peripheral edge of the first opening 41 of the inner frame (i.e., the side close to the frying barrel body 1), and correspondingly, a sealing ring 3 is formed at the outer peripheral edge surrounding the high temperature resistant transparent layer 2, so that a good sealing effect can be achieved by the tight combination of the two. In addition, in order to ensure the tight combination of the high temperature resistant transparent layer 2 and the sealing ring 3, a second mounting groove 31 for accommodating the high temperature resistant transparent layer 2 is also arranged on the inner circumferential side of the sealing ring 3, and the size of the second mounting groove 31 is matched with that of the first mounting groove, so that when the frying barrel body 1 is combined with the high temperature resistant transparent layer 2 and the inner layer frame 4, the sealing ring 4 arranged between the two mounting grooves can ensure that the high temperature resistant transparent layer 2 can be connected with the inner layer frame 4 in a sealing manner.
In a preferred embodiment, the inner, middle and outer frames are combined in a manner of either a snap connection or a threaded connection. Referring to fig. 2 and 3, a first connecting mechanism 44, a second connecting mechanism 45 and a third connecting mechanism 46 are further disposed on the inner frame 4, wherein the first connecting mechanism 44 is fixedly connected with the frying barrel body 1, the second connecting mechanism 45 is fixedly connected with the middle frame 5, and the third connecting mechanism 46 is fixedly connected with the outer frame 6. In addition, since both the middle frame 5 and the outer frame 6 need to be connected to the inner frame 4, when the inner frame 4 is fixedly connected to the middle frame 5 through the second connecting mechanism 45, the third connecting mechanism 46 is not blocked by the combination of the middle frame 5 and the inner frame 4, but is exposed out of the middle frame 5. In a preferred embodiment, the first connecting mechanism 44, the second connecting mechanism 45 and the third connecting mechanism 46 are provided in a plurality, preferably 4, and the plurality of first connecting mechanisms 44, the second connecting mechanism 45 and the third connecting mechanism 46 are distributed outside the corner of the high temperature resistant transparent layer 2.
In terms of connection, the first connecting mechanism 44 connects the inner frame 4 and the fryer body together by means of screw connection. The second connecting mechanism 45 is also used for connecting the inner layer frame 4 with the middle layer frame 5 in a threaded manner. The third connecting mechanism 46 adopts a snap-fit connection to fasten the inner frame 4 and the outer panel 6 by means of a snap-fit connection.
As shown in fig. 2, a plurality of ventilation openings 43 are formed in the upper surface of the inner frame 4. In the preferred embodiment, the plurality of said vents 43 serve not only to allow the natural inflow of the air stream, but also to communicate with the cold air duct in the air fryer in such a way that the intermediate chamber portion of the detachable fryer drum assembly is able to communicate with the cold air stream accelerated by the fan, taking away possible water mist or steam in the space by the rapidly flowing cold air, while on the other hand optimizing the insulation effect.
It should be noted that, as shown in fig. 1 to 5, the fryer barrel body 1 in the preferred embodiment is actually a double-barrel structure, and therefore, on the side of the fryer barrel body parallel thereto, a second opening may be provided in axial symmetry with the first opening 11 of the fryer barrel body, the first opening 41 of the inner frame, the first opening 51 of the middle frame and the first opening 61 of the outer frame, parallel thereto. Correspondingly, the frying barrel body 1 further comprises a frying barrel body second opening 12, the inner layer frame 4 further comprises an inner layer frame second opening 42, the middle layer frame 5 further comprises a middle layer frame second opening 52, and the outer layer frame 6 further comprises an outer layer frame second opening 62. As shown in fig. 1, another set of transparent isolation layers composed of the high temperature resistant transparent layer 2 and the sealing ring 2 is also interposed between the second opening 12 of the frying barrel body and the second opening 42 of the inner frame, and another transparent cover 7 is correspondingly disposed on the outer surface of the second opening 62 of the outer frame, and the transparent cover 7 is detachably and fixedly connected with the outer frame 6.
Furthermore, in a preferred embodiment, as shown in fig. 4 and 5, the detachable frying barrel assembly may further be provided with a handle 8, and the handle 8 may be of a single handle structure or a double handle structure, and the handle 8 further provides a gripping area 81 disposed outside the transparent cover 7 for a user to grip, thereby facilitating the user to take out and put in the frying barrel during cooking, and avoiding scalding.
In a preferred embodiment, the frying barrel body 1 is used for containing food materials to be cooked in an air fryer, in order to resist high-temperature heat flow generated during cooking in the air fryer, the frying barrel body 1 is made of an aluminum plated plate, and in order to prevent food from being sticky during heating, a non-stick coating for preventing food from being sticky is sprayed on the upper surface of the frying barrel body 1.
In a preferred embodiment, because the high-temperature-resistant glass layer 2 needs to have a good heat insulation effect while realizing high transparency, and prevents heat from being transmitted to the outer surface of the transparent cover 7 through the detachable frying barrel assembly too quickly, which brings a potential risk of scalding a user, the high-temperature-resistant glass layer 2 preferably adopts tempered glass, so that high transparency can be guaranteed while heat transmission can be effectively blocked, and meanwhile, the surface strength of the part is considered, and the overall structural strength of the frying barrel assembly is improved.
In the preferred embodiment, in order to ensure that the combination of the high temperature resistant glass layer 2 and the inner layer frame 4 has good sealing performance and prevent water vapor, oil or dirt from permeating into a hollow interlayer formed by the detachable frying barrel assembly when food is cooked, a sealing ring 3 is correspondingly sleeved on the outer ring of the high temperature resistant glass layer 2, and preferably, the material of the sealing ring 3 is made of food grade silica gel. Food grade silica gel has guaranteed still to keep good elasticity under long-term high temperature state on the one hand, has improved sealed effect, also ensures on the other hand that this part after the high temperature heating can not release the noxious material, has stopped to eat the possibility that material produced harmful effects.
In a preferred embodiment, the inner layer frame 4 and the middle layer frame 5 are made of PBT +20GF and are manufactured by injection molding. The PBT resin (polybutylene Terephthalate) is added with 20% of Glass Fiber (Glass Fiber), and a PBT +20GF injection molding mode is adopted, so that the high tensile strength is ensured, the material has a very high thermal deformation temperature, and the PBT resin is very suitable for kitchen electric products needing high-temperature cooking, such as air fryer.
In a preferred embodiment, the outer frame 6 and the transparent cover 7 are made of PC (Polycarbonate), wherein the outer frame 6 is made of an opaque PC material and the transparent cover is made of a transparent PC material. The reason why the PC material is used as the outer frame is that the PC material has good heat resistance and flame retardancy while having very high mechanical strength. Therefore, when the air fryer is used, the outer frame 6 embedded with the transparent cover 7 will be a part of the outer shell of the air fryer, and needs to have good surface strength and structural strength, and also needs to have good heat-resistant and flame-retardant effects.
Therefore, the detachable frying barrel assembly adopts the mode that the inner layer frame 4, the middle layer frame 5 and the outer layer frame 6 are overlapped layer by layer, and is matched with the high-temperature resistant transparent layer 2 between the inner layer frame 4 and the frying barrel body 1 and the transparent cover body 7 attached to the outer layer frame 6, so that a user can clearly observe the cooking condition in the air frying pot, and simultaneously, the detachable frying barrel assembly has good heat insulation effect, and the potential danger of scalding the user is avoided.
According to the detachable frying barrel assembly, the transparent cover body 7 which is easy to disassemble and assemble quickly is arranged at the outer layer frame 6 in a buckling connection mode and is matched with the transparent cover body prying opening 6d additionally arranged on the outer surface of the outer layer panel 6, so that a user can detach the transparent cover body 7 conveniently and quickly at any time, and therefore the user can easily clean dirt which is easy to obstruct the view, such as steam, oil stain, stain and the like attached to the outer surface of the high-temperature resistant glass layer, or clean substances which are easy to breed bacteria and are retained in the frying barrel assembly.
According to the detachable frying barrel assembly, the vent 43 is additionally arranged on the upper side surface of the inner layer frame 4, and the vent 43 is communicated with the cold air duct in the air frying pan, so that the heat insulation effect is enhanced, and the generation of water vapor between the transparent panels at the innermost layer and the outermost layer is inhibited.
So far, some specific embodiments of the present invention have been described in detail by way of examples, but it should be understood by those skilled in the art that the above examples are only for illustrative purposes and are not intended to limit the scope of the present invention. It will be understood by those skilled in the art that various changes may be made in the above embodiments or equivalents may be substituted for elements thereof without departing from the scope and spirit of the utility model. The scope of the utility model is defined by the appended claims.

Claims (10)

1. A removable fry vat assembly for an air fryer comprising:
the front side surface of the frying barrel body (1) is provided with a first opening (11) of the frying barrel body;
the inner layer frame (4) is fixedly arranged on the outer side of the front side surface of the frying barrel body (1) and is provided with a first opening (41) of the inner layer frame;
the high-temperature resistant transparent layer (2) is fixedly arranged on the inner side of the inner layer frame (4);
the middle layer frame (5) is fixedly arranged on the outer side of the inner layer frame (4) and is provided with a middle layer frame first opening (51);
the outer layer frame (6) is fixedly arranged on the outer side of the middle layer frame (5) and is provided with an outer layer frame first opening (61); and
a transparent cover (7) made of a transparent material covering an outer surface of the outer frame first opening (61) and detachably connected to the outer frame (6).
2. The removable fry vat assembly of claim 1 wherein the fry vat body first opening (11), the inner frame first opening (41), the middle frame first opening (51) and the outer frame first opening (61) are aligned with one another.
3. The knock fry vat assembly of claim 2 wherein the outer frame first opening (61) is provided at a longitudinal edge thereof with an outer frame longitudinal groove (6a), the transparent cover (7) is provided at an inner longitudinal edge thereof with a transparent cover first protrusion (7a), the transparent cover first protrusion (7a) being slidably engaged with the outer frame longitudinal groove (6a) when the transparent cover (7) is coupled to the outer frame (6);
a transverse outer frame groove (6b) is formed in the transverse edge of the first outer frame opening (61), a second transparent cover protrusion (7b) is formed in the transverse inner edge of the transparent cover body (7), and when the transparent cover body (7) is connected with the outer frame (6), the second transparent cover protrusion (7b) is in sliding embedded with the transverse outer frame groove (6 b); and is
Outer frame bayonet socket (6c) still are equipped with to the vertical border department of outer frame first opening (61), the inboard vertical border department of transparent lid (7) still is equipped with transparent lid third arch (7c), works as transparent lid (7) with when outer frame (6) are connected, transparent lid third arch (7c) with outer frame bayonet socket (6c) card is established the gomphosis.
4. The removable see-through assembly according to claim 3, wherein a transparent cover pry opening (6d) recessed inwardly is further provided at the outer frame first opening (61) edge.
5. The removable fry vat assembly of claim 4 wherein the inner frame (4) is provided with a first mounting slot around the inner frame first opening (41) on the side adjacent to the fry vat body (1); the removable fry vat assembly further comprising:
the sealing ring (3) is arranged on the outer periphery of the high-temperature-resistant transparent layer (2) in a surrounding mode, a second mounting groove (31) used for containing the high-temperature-resistant transparent layer (2) is formed in the inner peripheral side of the sealing ring (3), the second mounting groove (31) is matched with the first mounting groove, and the high-temperature-resistant transparent layer (2) can be connected with the inner layer frame (4) in a sealing mode.
6. The par-fry vat assembly of claim 5, wherein the inner frame (4) further comprises:
the first connecting mechanism (44) is fixedly connected with the frying barrel body (1);
the second connecting mechanism (45) is fixedly connected with the middle layer frame (5); and
the third connecting mechanism (46) is fixedly connected with the outer layer frame (6);
wherein the third connecting mechanism (46) is exposed from the middle layer frame (5) in a state that the inner layer frame (4) is fixedly connected with the middle layer frame (5) through the second connecting mechanism (45), and the first connecting mechanism (44), the second connecting mechanism (45) and the third connecting mechanism (46) are distributed outside the corner of the high temperature resistant transparent layer (2),
7. the par fry vat assembly of claim 6 wherein the first connection mechanism (44) and the second connection mechanism (45) are threaded connection mechanisms and the third connection mechanism (46) is a snap connection mechanism.
8. The par fry vat assembly of claim 7 wherein the upper surface of the inner frame (4) is further provided with a plurality of vents (43).
9. The removable fry vat assembly of claim 8 wherein the fry vat body (1) further comprises a fry vat body second opening (12), the inner frame (4) further comprises an inner frame second opening (42), the middle frame (5) further comprises a middle frame second opening (52) and the outer frame (6) further comprises an outer frame second opening (62);
another group of high-temperature resistant transparent layers (2) and sealing rings (3) are arranged between the second opening (12) of the frying barrel body and the second opening (42) of the inner layer frame; and is
The outer surface of the second opening (62) of the outer layer frame is also provided with another transparent cover body (7) which is detachably connected with the outer layer frame (6).
10. An air fryer comprising a removable fry vat assembly according to any one of claims 1 to 9, further comprising a handle (8), and the handle (8) having a gripping area (81) located outside the transparent cover (7).
CN202121795160.1U 2021-08-03 2021-08-03 A fried bucket subassembly and air are fried pot dismantled for air is fried pot Active CN215914212U (en)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121795160.1U CN215914212U (en) 2021-08-03 2021-08-03 A fried bucket subassembly and air are fried pot dismantled for air is fried pot

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