Raw material boiling device
By designing a raw material cooking device for meaty food processing, using a screen to separate the side walls of the cooking pot, automatic feeding and discharge of materials is achieved, and combined with the circulation pump and filter of the accumulated components to treat the foam, the problems of the paste and labor intensity are solved, and production efficiency and water resource utilization are improved.
Patent Information
- Application Number
- CN202422186200.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-09-06
AI Technical Summary
During the process of meaty food processing, existing steam pots lead to the phenomenon of paste and labor intensity, and the foam generated during the cooking process is difficult to deal with.
A raw material cooking device is designed, including a cooking pot, a screen, a feeding assembly and a dirt accumulation assembly. The screen is separated from the side wall of the cooking pot to avoid pasting the pot; the loading assembly realizes automatic loading; the accumulation assembly treats the foam through the circulation pump and the filter to realize the recycling of water.
It effectively avoids the phenomenon of pasting the pot, reduces labor intensity, realizes automation of the cooking process, reduces the froth attached to the product surface, and improves production efficiency through recycling water resources.
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Figure CN222967913U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food production equipment, in particular to a raw material cooking device. Background Art
[0002] During the processing of meat products, a steam pot is needed to cook raw meat raw materials. The steam pot uses steam to provide heat source to achieve the heating effect.
[0003] For large-scale workshop production, the steam pots used have a large capacity and need to cook a large number of meat raw materials at the same time; and for batch production, the raw materials are generally cut into larger pieces and need a certain time to cook; during the cooking process, since the inner wall temperature of the steam pot is relatively high, direct contact between the product and the inner wall of the steam pot will cause the phenomenon of sticking to the pot. At the same time, the feeding and discharging of the existing steam pots are both manual, resulting in a large labor intensity. Summary of the Utility Model
[0004] Therefore, to solve the above deficiencies, the utility model provides a raw material cooking device here, including:
[0005] A cooking pot, in which there is a water tank for limited water storage, and a heater is provided in the water tank;
[0006] A loading component, which is integrally arranged on the upper part of the cooking pot. The loading component includes a screen. The screen is integrally placed in the water tank. The screen is pivotally connected to one side of the top of the cooking pot. The screen is driven by a third power device to rotate around its pivot axis with the cooking pot to pour out the products in the screen;
[0007] A feeding component, which is arranged on one side of the cooking pot. The feeding component includes a feeding hopper. The feeding hopper is pivotally connected to one side of the top of the cooking pot. The feeding hopper is driven by a first power device to rotate around its pivot axis with the cooking pot to pour the products into the screen.
[0008] The utility model separates the product from the side wall of the cooking pot through the screen, avoiding direct contact between the product and the side wall of the cooking pot and causing sticking to the pot. The feeding hopper is driven by a first power device to rotate around its pivot axis with the cooking pot, so that the feeding hopper is turned over to pour the products in the feeding hopper into the screen, realizing automatic feeding of the cooking device. When the products are cooked, the third power device drives the screen to rotate around its pivot axis with the cooking pot, so that the screen is lifted out of the cooking pot and turned over, thereby fishing out the products and realizing automatic discharging of the products.
[0009] Further, a guide nozzle is provided on one side of the screen away from the pivot connection of the screen and the cooking pot.
[0010] When the screen is turned over, the movement of the products can be guided through the guide nozzle to avoid the products from spilling.
[0011] Further, a sewage outlet is provided at the upper part on one side of the screen, and a sewage discharge hole is provided on the side wall of the cooking pot corresponding to the sewage outlet.
[0012] The foam generated during the cooking of the product will flow into the water tank through the sewage outlet and be discharged through the sewage discharge hole, thereby reducing the foam adhering to the surface of the product.
[0013] Further, the cooking device further includes a dirt accumulation component, and the dirt accumulation component includes a dirt accumulation tank, and the water inlet of the dirt accumulation tank is communicated with the sewage discharge hole through a pipeline.
[0014] The foam discharged with the water flow is collected in the dirt accumulation tank through the pipeline for centralized treatment.
[0015] Further, the dirt accumulation component further includes:
[0016] A circulation pump, through which the water outlet of the dirt accumulation tank is communicated with the water tank;
[0017] A filter screen, and the filter screen is sleeved on the water outlet.
[0018] The liquid in the dirt accumulation tank is pumped out through the circulation pump, and when passing through the water outlet, it is filtered through the filter screen to filter out the foam substances in the liquid, and then pumped back into the water tank, realizing the recycling of water.
[0019] Further, the container component further includes a stirring mechanism, and the stirring mechanism includes:
[0020] A second power device;
[0021] A stirrer, and the stirrer is arranged inside the screen and is driven to rotate by the second power device.
[0022] The stirrer is driven to rotate by the second power device to stir the product inside the screen, thereby ensuring uniform cooking degree of the whole pot of materials.
[0023] Further, the cooking device further includes an exhaust component, through which the air flow is driven to discharge the steam;
[0024] The exhaust component includes:
[0025] A blower;
[0026] An exhaust port, which is arranged on one side above the cooking pot and is communicated with the blower through an exhaust pipeline.
[0027] The blower drives the air flow, so that the steam generated by the operation of the cooking pot is discharged outwards through the exhaust port, thereby avoiding scalding workers by the steam, avoiding excessive steam in the workshop resulting in low visibility in the workshop, and also avoiding the steam condensing and dripping to cause the ground to be slippery or polluting the product.
[0028] Further, the exhaust port includes:
[0029] A connecting pipe opening, which is arranged on one side above the cooking pot;
[0030] A sealing plate, there is at least one group of the sealing plates, at least one group of the sealing plates is pivotally installed inside the connecting pipe opening, and at least one group of the sealing plates is linearly arranged parallel to the side wall of the connecting pipe opening;
[0031] A fourth power device, which drives at least one group of the sealing plates to rotate simultaneously so as to open or close the connecting pipe opening.
[0032] Further, the exhaust port further includes:
[0033] A first connecting rod, which is driven by the fourth power device to move;
[0034] A second connecting rod, which is arranged corresponding to the sealing plate, one end of which is connected to the sealing plate, and the other end of which is pivotally connected to the first connecting rod.
[0035] The fourth power device drives the sealing plate to rotate so as to seal or open the connecting pipe opening.
[0036] The utility model has the following advantages:
[0037] In the utility model, the product is separated from the side wall of the cooking pot by a screen, so as to avoid the product directly contacting the side wall of the cooking pot and causing the pot to burn. The feeding hopper is driven by a first power device to rotate around its pivot axis with the cooking pot, so that the feeding hopper is turned over to pour the product in the feeding hopper into the screen, realizing automatic feeding of the cooking device. When the product is cooked, a third power device drives the screen to rotate around its pivot axis with the cooking pot, so that the screen is lifted out of the cooking pot and turned over, thereby fishing out the product, realizing automatic discharging of the product.
[0038] The foam generated during the cooking of the product will flow into the water tank through the sewage outlet and be discharged through the sewage hole, thereby reducing the foam attached to the surface of the product. The foam discharged with the water flow is collected in the dirt collection box through a pipeline for centralized treatment. The liquid in the dirt collection box is pumped out by a circulation pump, and when passing through the water outlet, it is filtered by a filter screen to filter out the foam substances in the liquid, and then pumped back into the water tank, realizing the recycling of water.
[0039] The second power device drives the stirrer to rotate to stir the product in the screen, so as to ensure the uniform cooking degree of the whole pot of materials.
[0040] The air is driven to flow by a blower, so that the steam generated by the cooking pot during operation is discharged outwards through the exhaust port, thereby preventing the workers from being scalded by the steam. At the same time, it avoids excessive steam in the workshop causing low visibility in the workshop, and also prevents the steam from condensing and dripping when it meets cold, resulting in slippery ground or product contamination.
[0041] The sealing plate is driven to rotate by the fourth power device to achieve the sealing or opening of the connecting pipe orifice. Description of the Drawings
[0042] Figure 1 is the first structural schematic diagram of the cooking device;
[0043] Figure 2 is Figure 1 the side schematic diagram of the cooking device shown;
[0044] Figure 3 is Figure 1 the front schematic diagram of the cooking device shown;
[0045] Figure 4 is Figure 1 the internal structural schematic diagram of the cooking device shown;
[0046] Figure 5 is Figure 2 the internal structural schematic diagram of the dirt accumulation box in the cooking device shown;
[0047] Figure 6 is the second structural schematic diagram of the cooking device;
[0048] Figure 7 is Figure 6 the structural schematic diagram of the exhaust port in the cooking device shown;
[0049] In the figure:
[0050] 100, cooking pot; 110, heater; 120, water tank;
[0051] 200, feeding assembly; 210, first power device; 220, feeding hopper;
[0052] 300, holding component; 310, stirring component; 311, second power device; 312, stirrer; 320, sieve; 321, material guiding nozzle; 322, sewage discharge port; 330, third power device;
[0053] 400, dirt accumulation component; 410, dirt accumulation box; 411, water inlet; 412, filter screen; 413, water outlet; 420, circulation pump;
[0054] 500. Exhaust assembly; 510. Blower; 520. Exhaust port; 521. Connecting pipe orifice; 522. Sealing plate; 523. Second connecting rod; 524. Fourth power device; 525. First connecting rod; 530. Exhaust pipe. Detailed implementation mode
[0055] The embodiments of the present application will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present application, and should not be construed as a limitation of the present application.
[0056] In this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0057] As described in the background art, during the cooking process, since the inner wall temperature of the steam pot is relatively high, direct contact between the product and the inner wall of the steam pot will cause the phenomenon of sticking to the pot. At the same time, the feeding and discharging of the existing steam pot are both carried out manually, resulting in a relatively large labor intensity.
[0058] Embodiment 1:
[0059] Therefore, in order to solve the above technical problems of the prior art, this embodiment provides a raw material cooking device as Figures 1 - 3 shown. The cooking device includes:
[0060] A cooking pot 100, as Figure 4 shown. A water tank 120 for limitedly containing water is provided inside the cooking pot, and a heater 110 is provided inside the water tank;
[0061] A storage component 300, the storage component is integrally arranged above the cooking pot 100, as Figure 2 、 4 shown. The storage component includes a screen 320. The screen is integrally placed inside the water tank. The screen is pivotally connected to one side of the top of the cooking pot, and the screen is driven by a third power device to rotate around its pivot axis with the cooking pot to pour out the product inside the screen;
[0062] The feeding component 200 is arranged on one side of the cooking pot 100. The feeding component includes a feeding hopper 220 which is pivotally connected to one side of the top of the cooking pot. Driven by a first power device 210, the feeding hopper rotates around its pivot axis with the cooking pot to pour the product into the sieve.
[0063] In this embodiment, as Figure 4 shown, a material guiding nozzle 321 is provided on one side of the sieve 320 away from the pivot connection of the sieve with the cooking pot.
[0064] In this embodiment, water is injected into the water tank and the heating device is started to heat the water in the water tank. When the water is heated to a preset temperature or directly at normal temperature, the product is centrally poured into the feeding hopper. Driven by the first power device, the feeding hopper rotates around its pivot axis with the cooking pot to pour the product into the sieve for cooking. After cooking for a preset time, the third power device drives the sieve to rotate around its pivot axis with the cooking pot, and the sieve gradually leaves the water body. The water filtrates from the sieve, and the product continues to move with the sieve. After rotating a preset angle, the product is discharged along the material guiding nozzle, and then the feeding and cooking are continued in this cycle.
[0065] The sieve separates the product from the side wall of the cooking pot, avoiding direct contact between the product and the side wall of the cooking pot and causing the pot to burn. Driven by the first power device, the feeding hopper rotates around its pivot axis with the cooking pot, so that the feeding hopper flips to pour the product in the feeding hopper into the sieve, realizing automatic feeding of the cooking device. When the product is cooked, the third power device drives the sieve to rotate around its pivot axis with the cooking pot, so that the sieve is lifted out of the cooking pot and flipped to fish out the product, realizing automatic discharging of the product.
[0066] In this embodiment, both the first and third power devices are selected as motors, and the motors directly drive the feeding hopper or the sieve to rotate around their pivot axes. Of course, in addition to using motors, cylinders, electric cylinders, hydraulic cylinders, etc. can also be selected and connected to the feeding hopper or the sieve through a connecting rod to drive the feeding hopper or the sieve to rotate.
[0067] When the sieve flips, the movement of the product is guided by the material guiding nozzle to avoid the product from spilling.
[0068] Embodiment 2:
[0069] Since meat itself contains a certain amount of blood, it will coagulate and float on the water surface to form foam during cooking. When the cooking is completed and the product is fished out with the movement of the sieve, a large amount of foam will adhere to the product.
[0070] Therefore, to solve this technical problem, as Figure 4 shown, in this embodiment, a sewage discharge port 322 is opened in the upper part of one side of the sieve, and a sewage discharge hole is provided on the side wall of the cooking pot corresponding to the sewage discharge port.
[0071] When injecting water, keep the liquid level height always at the height of the sewage outlet. At this time, during the cooking process, the water in the water tank will flow out from the sewage hole, thus forming a water flow. The foam on the water surface in the sieve will move from the sewage outlet to the water tank along with the water flow and finally be discharged from the sewage hole, thereby reducing the foam attached to the product surface.
[0072] In this embodiment, the way to keep the liquid level height at the height of the sewage outlet is to inject water with a constant flow rate and constant temperature while discharging sewage.
[0073] In this embodiment, as Figure 1 shown, the cooking device further includes a dirt accumulation component 400. As Figure 2 shown, the dirt accumulation component 400 includes a dirt accumulation tank 410, and the water inlet 411 of the dirt accumulation tank is communicated with the sewage hole through a pipeline.
[0074] The foam discharged with the water flow is collected in the dirt accumulation tank through the pipeline for centralized treatment.
[0075] In this embodiment, as Figure 3 、 5 shown, the dirt accumulation component further includes:
[0076] A circulation pump 420, through which the water outlet 413 of the dirt accumulation tank is communicated with the water tank;
[0077] A filter screen 412, which is sleeved on the water outlet.
[0078] The liquid in the dirt accumulation tank is pumped out by the circulation pump. When passing through the water outlet, it is filtered by the filter screen to filter out the foam substances in the liquid, and then pumped back into the water tank, realizing the recycling of water.
[0079] Embodiment 3:
[0080] As Figure 2 shown, the container component in this embodiment may further include a stirring mechanism 310. The stirring mechanism 310 includes:
[0081] A second power device 311;
[0082] A stirrer 312, which is arranged in the sieve and is driven to rotate by the second power device.
[0083] The stirrer is driven to rotate by the second power device to stir the product in the sieve, thereby ensuring uniform cooking degree of the whole pot of materials.
[0084] In this embodiment, a frame body fixedly connected to the sieve can be arranged above the sieve, and the above-mentioned second power device and stirrer can both be installed on the frame body.
[0085] In this embodiment, the second power device can be selected as a motor.
[0086] Embodiment 4:
[0087] During the cooking process of the product, a large amount of steam is generated when the water boils due to heat, which is likely to scald the workers. At the same time, the accumulation of a large amount of steam will lead to low visibility in the workshop. The pre-condensation of steam into water droplets and dripping will cause the ground to be slippery, and dripping onto the product will cause product contamination. Therefore, as Figure 6 shown, the cooking device further includes an exhaust assembly 500, which drives the air flow to discharge the steam.
[0088] The exhaust assembly 500 includes:
[0089] A blower 510;
[0090] An exhaust port 520, which is arranged on one side above the cooking pot and is connected to the blower 510 through an exhaust pipe 530.
[0091] The blower drives the air flow, so that the steam generated during the operation of the cooking pot is discharged out through the exhaust port, thus avoiding scalding the workers by the steam, and at the same time avoiding too much steam in the workshop causing too low visibility in the workshop, and also avoiding the ground being slippery or the product being contaminated due to the liquefaction and dripping of the steam when it meets cold.
[0092] In this embodiment, as Figure 7 shown, the exhaust port 520 includes:
[0093] A connecting pipe orifice 521, which is arranged on one side above the cooking pot;
[0094] A sealing plate 522, there is at least one group of the sealing plates, at least one group of the sealing plates is pivotally installed inside the connecting pipe orifice, and at least one group of the sealing plates is linearly arranged parallel to the side wall of the connecting pipe orifice;
[0095] A fourth power device 524, which drives at least one group of the sealing plates to rotate simultaneously through the fourth power device, so as to open or close the connecting pipe orifice.
[0096] The exhaust port further includes:
[0097] A first connecting rod 525, which is driven to move by the fourth power device;
[0098] A second connecting rod 523, which corresponds to the sealing plate, one end is connected to the sealing plate, and the other end is pivotally connected to the first connecting rod.
[0099] The fourth power device drives the sealing plate to rotate to realize the sealing or opening of the connecting pipe orifice.
[0100] In this embodiment, the above-mentioned fourth power device can be a cylinder, an electric cylinder or a hydraulic cylinder. At this time, the fourth power device is pivotally connected to the connecting pipe orifice, and at the same time, the first connecting rod is pivotally connected to the output end of the fourth power device. The fourth power device drives the first connecting rod to move, and then drives the plurality of sealing plates to rotate simultaneously under the transmission of the plurality of second connecting rods.
[0101] In this embodiment, in addition to adopting the above-mentioned connecting rod structure, a rack and pinion structure can also be adopted. For example, a gear is installed at the end of the sealing plate, and the gear meshes with the rack connected to the fourth power device. The fourth power device drives the rack to move linearly, thereby driving the gear to rotate, and then driving the sealing plate to rotate.
[0102] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but will be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A raw material cooking device, characterized in that: include: A cooking pot, wherein the cooking pot has a water tank for containing a limited amount of water, and a heater is arranged in the water tank; A container assembly, the container assembly is disposed as a whole on the upper part of the cooking pot, the container assembly includes a screen, the screen is disposed as a whole in the water tank, the screen is pivotally connected to one side of the top of the cooking pot, and the screen is driven by a third power device to rotate around the pivot axis between the screen and the cooking pot to pour out the product in the screen; A feeding assembly is arranged on one side of the cooking pot and comprises a feeding hopper which is pivotally connected to one side of the top of the cooking pot and driven by a first power device to rotate around a pivot axis between the feeding hopper and the cooking pot to pour the product into the screen.
2. A raw material cooking device according to claim 1, characterized in that: A material guide nozzle is arranged on one side of the screen away from the pivotal connection between the screen and the cooking pot.
3. A raw material cooking device according to claim 1, characterized in that: A sewage outlet is provided at the upper part of one side of the screen, and a sewage outlet hole is provided on the side wall of the cooking pot corresponding to the sewage outlet.
4. A raw material cooking device according to claim 3, characterized in that: The brewing device further comprises a dirt collection component, which comprises a dirt collection box, and a water inlet of the dirt collection box is connected with the dirt discharge hole through a pipeline.
5. A raw material cooking device according to claim 4, characterized in that: The dirt collection component also includes: A circulation pump, through which the water outlet of the dirt storage tank is connected to the water tank; A filter screen is mounted on the water outlet.
6. A raw material cooking device according to claim 1, characterized in that: The container assembly further includes a stirring mechanism, and the stirring mechanism includes: Second power unit; The stirrer is arranged in the screen and is driven to rotate by the second power device.
7. A raw material cooking device according to any one of claims 1 to 6, characterized in that: The brewing device also includes an exhaust assembly, through which air is driven to flow so as to exhaust the steam; The exhaust assembly comprises: Blower; The exhaust port is arranged on one side above the cooking pot and is connected to the blower through an exhaust pipe.
8. A raw material cooking device according to claim 7, characterized in that: The exhaust port comprises: A connecting pipe opening, the connecting pipe opening being arranged on one side above the cooking pot; A sealing plate, wherein the sealing plate is provided with at least one group, wherein at least one group of the sealing plates is pivotally mounted inside the connecting pipe opening, and at least one group of the sealing plates is linearly arranged parallel to the side wall of the connecting pipe opening; The fourth power device drives at least one group of sealing plates to rotate simultaneously to open or close the connecting pipe opening.
9. A raw material cooking device according to claim 8, characterized in that: The exhaust port also includes: A first connecting rod, driven to move by a fourth power device; The second connecting rod is arranged corresponding to the sealing plate, one end of the second connecting rod is connected to the sealing plate, and the other end is pivotally connected to the first connecting rod.