Cooking equipment
Technical Field
The utility model relates to the technical field of kitchen electricity, in particular to cooking equipment.
Background
The existing steaming and baking oven generally adopts an exhaust pipe to connect a cooking cavity with the outside atmosphere, and steam is naturally discharged through the pressure in the cooking cavity. When the cooking is finished and the door is opened, a large amount of steam is gushed out of the door to directly spray users, the risk of scalding exists, and user experience is affected.
Accordingly, a cooking apparatus is needed to solve the above problems.
Disclosure of utility model
The utility model aims to solve one of the problems in the prior art to at least a certain extent, and therefore, the utility model provides the cooking equipment which can more stably discharge the high-temperature steam in the cooking cavity in advance, so that the problem that a user is scalded due to the fact that a large amount of high-temperature steam is blown on the head when the user opens the door body of the cooking equipment is avoided.
The above object is achieved by the following technical scheme:
A cooking apparatus comprising:
A chassis;
The cooking inner container is arranged in the case and used for placing food to be cooked;
One end of the steam discharge pipe is communicated with the cooking cavity of the cooking inner container, and the other end of the steam discharge pipe is communicated with the atmosphere outside the cooking inner container;
the mechanism that admits air is in the outside of culinary art inner bag, mechanism one end of admitting air with culinary art chamber intercommunication, the other end with the outside atmosphere intercommunication of culinary art inner bag, the mechanism that admits air is used for to the culinary art intracavity carries gas, the mechanism that admits air includes the pneumatic valve subassembly, the pneumatic valve subassembly is used for control the break-make of the gas circuit of mechanism that admits air, the pneumatic valve subassembly includes:
The valve body is internally provided with a cavity, one end of the valve body is provided with an air inlet, and the other end of the valve body is provided with an air outlet;
The valve plate is arranged in the cavity;
The driving piece is in transmission connection with the valve plate and can drive the valve plate to move in the cavity, so that the valve plate is switched between two states of blocking or opening the air inlet; or the valve plate is switched between two states of blocking or opening the air outlet.
Optionally, one end of the valve plate is hinged with the valve body, and the driving piece can drive the valve body to swing in the cavity.
Optionally, the air valve assembly further comprises a sealing ring, wherein the sealing ring is arranged on the valve plate and is used for sealing a gap between the valve plate and the air inlet or sealing a gap between the valve plate and the air outlet.
Optionally, the valve body includes a valve body and a valve cover, and the valve body and the valve cover are covered to form the cavity.
Optionally, the air valve assembly further comprises a support plate, wherein the valve body and the driving piece are both installed on the support plate, and the support plate is connected with the inner wall of the case.
Optionally, the air intake mechanism further includes:
An air inlet pipe, a first end of which is communicated with the cooking cavity; the second end is communicated with the air outlet;
and the first end of the air blast assembly is communicated with the air inlet, and the second end of the air blast assembly is communicated with the atmosphere outside the cooking liner.
Optionally, the blower assembly includes:
The air outlet of the fan is communicated with the air inlet;
And the air filtering structure is arranged at the air inlet of the fan and is used for filtering air entering the fan.
Optionally, the air blast assembly further comprises an air outlet seat, one end of the air outlet seat is installed at an air outlet of the fan, and the other end of the air outlet seat is communicated with the air inlet.
Optionally, the fan and the air filtering structure are both installed on the support frame, and the support frame is installed in the chassis.
Compared with the prior art, the utility model at least comprises the following beneficial effects:
The utility model provides cooking equipment which comprises a machine case, a cooking liner, a steam discharge pipe and an air inlet mechanism. The cooking inner container is arranged in the case and used for placing food to be cooked. One end of the steam discharge pipe is communicated with the cooking cavity of the cooking inner container, and the other end of the steam discharge pipe is communicated with the atmosphere outside the cooking inner container. The air inlet mechanism is arranged on the outer side of the cooking inner container, one end of the air inlet mechanism is communicated with the cooking cavity, the other end of the air inlet mechanism is communicated with the atmosphere outside the cooking inner container, the air inlet mechanism is used for conveying gas into the cooking cavity, and the air inlet mechanism comprises an air valve assembly, and the air valve assembly is used for controlling on-off of an air passage of the air inlet mechanism. When cooking is finished, when the high-temperature steam in the cooking cavity is required to be discharged, the air inlet mechanism operates to convey air into the cooking cavity, so that the high-temperature steam in the cooking cavity can be discharged from the steam discharge pipe in an accelerating mode, and the problem that a user scalds due to the fact that a large amount of high-temperature steam is blown up when the user opens a door body of the cooking equipment is avoided. Meanwhile, the valve body assembly with a simple structure is arranged to control the on-off of the air passage of the air inlet mechanism, so that the on-off of the air passage of the air inlet mechanism can be controlled stably, the stability of high-temperature steam discharged by the cooking equipment is ensured, the air tightness of the cooking cavity can be ensured during cooking, and leakage of high-temperature gas during cooking is avoided.
Drawings
Fig. 1 is a schematic perspective view of a cooking apparatus according to an embodiment of the present utility model;
fig. 2 is a schematic perspective view of an air valve assembly of a cooking apparatus according to an embodiment of the present utility model;
FIG. 3 is an exploded view of FIG. 2;
Fig. 4 is a schematic view showing a state in which an air valve assembly of a cooking apparatus according to an embodiment of the present utility model is closed to an air outlet;
Fig. 5 is a schematic view showing a state in which an air valve assembly of a cooking apparatus according to an embodiment of the present utility model is opened at an air outlet;
Fig. 6 is a schematic perspective view of a blower assembly of a cooking apparatus according to an embodiment of the present utility model;
fig. 7 is an exploded view of fig. 6.
In the figure:
1. a chassis;
2. A cooking liner;
3. a blower assembly; 31. a support frame; 32. a blower; 33. an air outlet seat; 34. an air filtration structure;
4. A gas valve assembly; 41. a support plate; 42. a driving member; 421. a push rod; 43. a valve body; 430. a cavity; 431. a valve body; 432. a valve cover; 433. an air inlet; 434. an air outlet; 44. a valve plate; 45. a seal ring;
5. A steam discharge pipe;
6. And an air inlet pipe.
Detailed Description
The following examples illustrate the utility model, but the utility model is not limited to these examples. Modifications and equivalents of some of the technical features of the specific embodiments of the present utility model may be made without departing from the spirit of the present utility model, and they are all included in the scope of the claimed utility model.
Referring to fig. 1 to 7, the present utility model provides a cooking apparatus, which includes a cabinet 1, a cooking liner 2, a steam discharge pipe 5, and an air intake mechanism. The cooking liner 2 is disposed in the cabinet 1 for placing food to be cooked. One end of the steam discharge pipe 5 is communicated with the cooking cavity of the cooking inner container 2, and the other end is communicated with the atmosphere outside the cooking inner container 2. The air inlet mechanism is arranged on the outer side of the cooking inner container 2, one end of the air inlet mechanism is communicated with the cooking cavity, the other end of the air inlet mechanism is communicated with the atmosphere outside the cooking inner container 2, the air inlet mechanism is used for conveying air into the cooking cavity, the air inlet mechanism comprises an air valve assembly 4, and the air valve assembly 4 is used for controlling on-off of an air passage of the air inlet mechanism. When the cooking is completed, the air intake mechanism is operated to supply air into the cooking cavity when the high temperature steam in the cooking cavity needs to be discharged, so that the high temperature steam in the cooking cavity can be accelerated to be discharged from the steam discharge pipe 5. The valve assembly 4 includes a valve body 43, a valve plate 44, and a driver 42. A cavity 430 is provided in the valve body 43, an air inlet 433 is provided at one end of the valve body 43, and an air outlet 434 is provided at the other end. The valve plate 44 is disposed within the cavity 430. The driving piece 42 is in transmission connection with the valve piece 44, and the driving piece 42 can drive the valve piece 44 to move in the cavity 430, so that the valve piece 44 is switched between two states of blocking or opening the air inlet 433; or the valve plate 44 is switched between two states of blocking or opening the air outlet 434. When valve block 44 shutoff air inlet 433 or gas outlet 434, the gas circuit of air inlet mechanism is truncated, and when valve block 44 opened air inlet 433 or gas outlet 434, the gas circuit of air inlet mechanism is unobstructed, and the break-make of the gas circuit of air valve assembly 4 can be controlled steadily to the simple structure of pneumatic valve assembly 4, guarantees the stability of cooking equipment emission high temperature steam, and can ensure the gas tightness of cooking cavity when the culinary art, avoids the leakage of high temperature gas when the culinary art.
Optionally, one end of the valve plate 44 is hinged to the valve body 43, and the driving member 42 can drive the valve body 43 to swing in the cavity 430, so that the valve plate 44 is switched between two states of blocking or opening the air inlet 433; or the valve plate 44 is switched between two states of blocking or opening the air outlet 434.
Optionally, the air valve assembly 4 further includes a sealing ring 45, where the sealing ring 45 is disposed on the valve plate 44, for sealing a gap between the valve plate 44 and the air inlet 433, or sealing a gap between the valve plate 44 and the air outlet 434, so as to avoid air leakage.
Optionally, the valve body 43 includes a valve body 431 and a valve cover 432, and the valve body 431 and the valve cover 432 are covered to form the cavity 430.
Optionally, the air valve assembly 4 further includes a support plate 41, and the valve body 43 and the driving member 42 are mounted on the support plate 41, and the support plate 41 is connected to the inner wall of the cabinet 1.
Optionally, the driving member 42 is a push rod 421 motor, and the middle part of the valve plate 44 is hinged to the push rod 421 of the push rod 421 motor.
Specifically, referring to fig. 4, the driving member 42 drives the valve plate 44 to swing to the air outlet 434 and closes the air outlet 434, and at this time, the air path of the air inlet mechanism is blocked. Referring to fig. 5, the driving member 42 drives the valve plate 44 to swing away from the air outlet 434 to open the air outlet 434, so that the air path of the air inlet mechanism is unobstructed, and the air flows from the air inlet 433 into the cavity 430 along the direction indicated by the arrow a in fig. 5, and then flows out through the air outlet 434.
Optionally, the air intake mechanism further comprises an air intake duct 6 and a blower assembly 3. A first end of the air inlet pipe 6 is communicated with the cooking cavity; the second end communicates with an air outlet 434. The blower assembly 3 has a first end communicating with the air inlet 433 and a second end communicating with the atmosphere outside the cooking liner 2.
Optionally, the blower assembly 3 includes a blower 32 and an air filtering structure 34. The air outlet of the blower 32 communicates with the air inlet 433. The air filtering structure 34 is disposed at the air inlet of the blower 32, and is used for filtering the air entering the blower 32, so as to improve the cleanliness of the air entering the cooking cavity, and further maintain the sanitation of the cooking cavity.
Optionally, the blower assembly 3 further includes an air outlet seat 33, one end of the air outlet seat 33 is installed at an air outlet of the blower 32, and the other end of the air outlet seat 33 is communicated with the air inlet 433.
Optionally, a support 31 is further included, and the fan 32 and the air filtering structure 34 are both mounted on the support 31, and the support 31 is mounted in the chassis 1.
Specifically, referring to fig. 7, air flows from the air filtering structure 34 to the blower fan 32 in the direction indicated by the arrow B, and then flows out through the air outlet seat 33.
What has been described above is merely some embodiments of the present utility model. It will be apparent to those skilled in the art that various modifications and improvements can be made without departing from the spirit of the utility model.