Sterilizing pot

By designing a sterilizer that includes a stirring mechanism and a driving mechanism, the problem of scorching during the water bath heating sterilization process of soybean paste was solved, achieving a more efficient sterilization effect.

CN224038445UActive Publication Date: 2026-03-27YINGCHENG HENGMAO FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing sterilization equipment is prone to scorching during water bath heating sterilization of soybean paste, and the sterilization effect is poor.

Method used

A sterilization pot was designed, which includes a stirring mechanism and a driving mechanism. Through the cooperation of the stirring component and the support component, the soybean paste is stirred and agitated, avoiding scorching and improving the sterilization effect.

Benefits of technology

The stirring component stirs and agitates the soybean paste inside and at the bottom of the pot, preventing it from burning and improving the sterilization effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sterilizing pot, which comprises a pot body, at least one stirring mechanism and a driving mechanism, the pot body is provided with a material containing cavity, and is provided with a feed port and a discharge port which are communicated with the material containing cavity; each stirring mechanism is arranged in the material containing cavity and comprises a supporting assembly and at least one stirring assembly, each stirring assembly is fixedly connected with the bottom of the supporting assembly, and the supporting assembly has elastic force enabling the bottom of each stirring assembly to abut against the cavity bottom of the material containing cavity; the driving mechanism is connected with the tops of the supporting assemblies and used for driving the supporting assemblies to rotate synchronously, so that the stirring assemblies act. The sterilization pot has the beneficial effects that in the process of sterilizing soybean paste, the soybean paste in the pot and at the bottom of the pot can be turned and stirred through the stirring component, so that the situation that the pot is burnt is avoided, and the sterilization effect on the soybean paste is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to soybean paste production equipment technical field especially relates to a sterilization pot. BACKGROUND

[0002] Soybean paste is also called soybean paste, bean paste, it is our country traditional seasoning sauce, with soybean is fried to be made after grinding and fermenting, yellow paste has rich sauce fragrance and ester fragrance, salty sweet palatable, is used in marinating, stewing, steaming, frying, mixing etc. Variety of cooking methods, also can be used for meal, clean food etc., the main components of soybean paste have protein, fat, vitamin, calcium, phosphorus, iron etc., these are indispensable nutrient components of human body, soybean paste is rich in high-quality protein, not only can increase the nutritional value of dishes when cooking, and protein generates amino acid under the action of microorganism, can make dishes present more delicious taste, has the effect of appetizing.

[0003] The production process of traditional soybean paste generally includes the following procedures: soaking soybeans, steaming materials, preparing koji, fermenting, sterilizing, filling, and storing. The sterilization of soybean paste is usually carried out by high-temperature cooking. The existing sterilization equipment (such as the sterilization device for soybean paste production disclosed in application No. 202021748611.1) cannot stir the soybean paste in the pot during the water bath heating sterilization process, which not only easily causes the pot to stick, but also reduces the sterilization effect of the soybean paste. UTILITY MODEL CONTENT

[0004] The utility model aims at overcoming the above technical deficiencies, and provides a sterilization pot to solve the technical problems of easy pot sticking and poor sterilization effect in the water bath heating sterilization process of soybean paste in the prior art.

[0005] To achieve the above technical purpose, the technical scheme of the utility model provides a sterilization pot, which comprises:

[0006] A pot body having a material containing cavity and a feed inlet and a discharge outlet communicating with the material containing cavity;

[0007] At least one stirring mechanism is arranged in the material containing cavity, which comprises a supporting assembly and at least one stirring assembly, each stirring assembly is fixedly connected with the bottom of the supporting assembly, and the supporting assembly has elastic force for abutting the bottom of each stirring assembly with the bottom of the material containing cavity;

[0008] A driving mechanism is connected with the top of each supporting assembly for driving the synchronous rotation of each supporting assembly to make each stirring assembly work.

[0009] Further, the support assembly comprises a conduit, a piston, an inner rod and an elastic member, the piston is slidingly arranged in the conduit, the upper end of the inner rod is arranged in the conduit and fixedly connected with the bottom of the piston, the lower end of the inner rod is slidingly arranged outside the conduit, each stirring assembly is fixedly connected with the lower end of the inner rod, the elastic member is arranged in the conduit, the upper end of the elastic member is fixedly connected with the conduit, and the lower end of the elastic member is fixedly connected with the top of the piston, so that the bottom of each stirring assembly abuts against the bottom of the material containing cavity, and the driving mechanism is connected with the top of each conduit.

[0010] Further, the stirring assembly comprises a connecting rod, a mounting plate, a lower stirring plate and an upper stirring plate, the upper end of the connecting rod is fixedly connected with the bottom of the inner rod, the mounting plate is fixedly connected with the connecting rod, the lower stirring plate is detachably fixedly connected with the bottom of the mounting plate, and the upper stirring plate is detachably fixedly connected with the top of the mounting plate, and the lower stirring plate and the upper stirring plate both have a deformable structure.

[0011] Further, an included angle a is formed between the surface of the lower stirring plate and the rotation path of the lower stirring plate, and the included angle a is between 30° and 90°.

[0012] Further, the pot body comprises an inner pot and an outer pot, the inner pot has the material containing cavity, the outer pot is wrapped on the outer sidewall of the inner pot, a heating cavity is formed between the outer pot and the inner pot, the inner pot is provided with the feeding port and the discharging port, and the outer pot is provided with a gas inlet and a liquid outlet.

[0013] Further, the sterilization pot further comprises a gas feeding mechanism, and the outlet end of the gas feeding mechanism is in communication with the gas inlet, so as to introduce steam into the heating cavity.

[0014] Further, the bottom of the material containing cavity and the bottom of the heating cavity are both in arc-shaped structure, the discharging port is located at the lowest position of the bottom of the material containing cavity, and the liquid outlet is located at the lowest position of the bottom of the heating cavity.

[0015] Further, the pot body further comprises a discharging pipe and a first valve, the upper end of the discharging pipe is in communication with the discharging port, the lower end of the discharging pipe penetrates through the outer pot and extends out of the outer pot, and the inlet end of the first valve is in communication with the lower end of the discharging pipe, so as to control the opening and closing of the discharging pipe.

[0016] Further, the pot body further comprises a gas inlet pipe and a second valve, one end of the gas inlet pipe is in communication with the gas inlet, the outlet end of the second valve is in communication with the other end of the gas inlet pipe, so as to control the opening and closing of the gas inlet pipe, and the outlet end of the gas feeding mechanism is in communication with the inlet end of the second valve.

[0017] Further, the driving mechanism comprises a mounting box, a transmission assembly and a rotating driving member, the transmission assembly is arranged in the mounting box, one end of the transmission assembly is connected with the output end of the rotating driving member, and the other end of the transmission assembly is connected with the top of each guide pipe, so as to convert the rotation of the output end of the rotating driving member into the synchronous rotation of each guide pipe.

[0018] Compared with the prior art, the beneficial effects of the utility model include: in use, the soybean paste to be sterilized is poured into the material containing cavity along the feeding port, the driving mechanism can drive each supporting assembly to rotate synchronously by controlling the driving mechanism, so that each stirring assembly stirs the soybean paste, and since the supporting assembly has the elastic force that can make the bottom of each stirring assembly abut against the cavity bottom of the material containing cavity, the bottom of each stirring assembly can scrape the cavity bottom of the material containing cavity during the rotation of each stirring assembly following the supporting assembly, the sterilization pot can stir the soybean paste in the pot and at the bottom of the pot through the stirring assembly during the sterilization of the soybean paste, the situation of sticking to the pot is avoided, and the sterilization effect of the soybean paste is improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 is a three-dimensional structure schematic view of a sterilization pot provided by the utility model;

[0020] Figure 2 is Figure 1 a sectional view of the sterilization pot in the utility model;

[0021] Figure 3 is Figure 2 a three-dimensional structure schematic view of a stirring mechanism in the utility model;

[0022] Figure 4 is Figure 2 a three-dimensional structure schematic view of a driving mechanism in the utility model, wherein the rotating driving member is omitted;

[0023] In the drawing: 100-pot body, 110-material containing cavity, 120-feeding port, 130-discharge port, 140-inner pot, 150-outer pot, 151-air inlet, 152-liquid discharge port, 160-heating cavity, 170-discharge pipe, 180-air inlet pipe, 200-stirring mechanism, 210-supporting assembly, 211-guide pipe, 212-piston, 213-inner rod, 214-elastic member, 220-stirring assembly, 221-connecting rod, 222-mounting plate, 223-lower stirring plate, 224-upper stirring plate, 300-driving mechanism, 310-mounting box, 320-transmission assembly, 321-gear ring, 322-sun gear, 323-planet gear, 324-driving shaft, 325-driven shaft, 330-rotating driving member, 400-rack. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0025] The utility model provides a kind of sterilization pot, its structure as Figure 1 And Figure 2 As shown in the figure, including pot body 100, at least one stirring mechanism 200 and drive mechanism 300, the pot body 100 has a material holding cavity 110, and has the feed inlet 120 and the discharge port 130 communicated with the material holding cavity 110;Each stirring mechanism 200 is arranged in the material holding cavity 110, and it includes support assembly 210 and at least one stirring assembly 220, each stirring assembly 220 is fixedly connected with the bottom of the support assembly 210, the support assembly 210 has the elastic force that the bottom of each stirring assembly 220 is all abutted with the cavity bottom of the material holding cavity 110;The drive mechanism 300 is connected with the top of each support assembly 210, for driving each support assembly 210 synchronous rotation, to make each stirring assembly 220 act.

[0026] In use, soybean paste to be sterilized is poured into the material holding cavity 110 along the feed inlet 120, by operating the drive mechanism 300, the drive mechanism 300 can drive each support assembly 210 synchronous rotation, so that each stirring assembly 220 stirs soybean paste, because the support assembly 210 has the elastic force that the bottom of each stirring assembly 220 is all abutted with the cavity bottom of the material holding cavity 110, when each stirring assembly 220 follows the support assembly 210 rotation process, the bottom of each stirring assembly 220 will scrape the cavity bottom of the material holding cavity 110, the sterilization pot can turn over and stir the soybean paste in the pot and the bottom of the pot by the stirring assembly 220 during sterilization of soybean paste, avoid the situation of burnt pot, improve the sterilization effect of soybean paste.

[0027] As a preferred embodiment, please refer to Figure 1 And Figure 2The pot body 100 comprises an inner pot 140 and an outer pot 150, the inner pot 140 has the material containing cavity 110, the outer pot 150 is covered on the outer sidewall of the inner pot 140, the heating cavity 160 is formed between the outer pot 150 and the inner pot 140, the inner pot 140 is provided with the feeding port 120 and the discharging port 130, the outer pot 150 is provided with the air inlet 151 and the liquid outlet 152, the soybean paste in the material containing cavity 110 can be heated and sterilized by steam, and the condensed water in the heating cavity 160 can be discharged through the liquid outlet 152.

[0028] As a preferred embodiment, refer to Figure 2 The top surface of the material containing cavity 110 is provided with an opening to form the feeding port 120, so that the stirring mechanism 200 can extend into the material containing cavity 110 from the opening on the top of the material containing cavity 110.

[0029] As a preferred embodiment, refer to Figure 2 The cavity bottom of the material containing cavity 110 and the cavity bottom of the heating cavity 160 are both arc-shaped structures, the discharging port 130 is located at the lowest position of the cavity bottom of the material containing cavity 110, and the liquid outlet 152 is located at the lowest position of the cavity bottom of the heating cavity 160, so as to facilitate the discharge of the material in the material containing cavity 110 and the discharge of the condensed water in the heating cavity 160.

[0030] As a preferred embodiment, refer to Figure 2 The pot body 100 further comprises a discharging pipe 170 and a first valve, the upper end of the discharging pipe 170 is communicated with the discharging port 130, the lower end of the discharging pipe 170 penetrates through the outer pot 150 and extends out of the outer pot 150, and the inlet end of the first valve is communicated with the lower end of the discharging pipe 170 to control the opening and closing of the discharging pipe 170, so that the material can be guided through the discharging pipe 170, and the discharge of the material is facilitated.

[0031] As a preferred embodiment, refer to Figure 2 The pot body 100 further comprises an air inlet pipe 180 and a second valve, one end of the air inlet pipe 180 is communicated with the air inlet 151, the outlet end of the second valve is communicated with the other end of the air inlet pipe 180 to control the opening and closing of the air inlet pipe 180, and the outlet end of the air feeding mechanism is communicated with the inlet end of the second valve, so that the steam can be guided through the air inlet pipe 180.

[0032] As a preferred embodiment, refer to Figure 2 And Figure 3The support assembly 210 comprises a conduit 211, a piston 212, an inner rod 213 and an elastic member 214. The piston 212 is slidingly arranged in the conduit 211. The upper end of the inner rod 213 is arranged in the conduit 211 and is fixedly connected with the bottom of the piston 212. The lower end of the inner rod 213 is slidingly arranged outside the conduit 211. Each of the stirring assemblies 220 is fixedly connected with the lower end of the inner rod 213. The elastic member 214 is arranged in the conduit 211. The upper end of the elastic member 214 is fixedly connected with the conduit 211. The lower end of the elastic member 214 is fixedly connected with the top of the piston 212. Thus, the bottom of each of the stirring assemblies 220 is in abutment with the bottom of the material containing cavity 110. The driving mechanism 300 is connected with the top of each of the conduits 211. Since the elastic member 214 can exert an outward elastic force on the piston 212, the piston 212 has a tendency to move outward. Thus, the bottom of each of the stirring assemblies 220 can be in abutment with the bottom of the material containing cavity 110.

[0033] As a preferred embodiment, the elastic member 214 is a spring. When subjected to pressure, the spring can be in a compressed state and accumulate a compressed elastic potential energy.

[0034] As a preferred embodiment, the elastic member 214 is a spring. When subjected to pressure, the spring can be in a compressed state and accumulate a compressed elastic potential energy. Figure 2 and Figure 3 The stirring assembly 220 comprises a connecting rod 221, a mounting plate 222, a lower stirring plate 223 and an upper stirring plate 224. The upper end of the connecting rod 221 is fixedly connected with the bottom of the inner rod 213. The mounting plate 222 is fixedly connected with the connecting rod 221. The lower stirring plate 223 is detachably fixedly connected with the bottom of the mounting plate 222. The upper stirring plate 224 is detachably fixedly connected with the top of the mounting plate 222. The lower stirring plate 223 and the upper stirring plate 224 each have a deformable structure. The lower stirring plate 223 can stir the soybean paste at the bottom of the pot. The upper stirring plate 224 can stir the soybean paste in the middle layer. Thus, the soybean paste in the middle layer can be stirred and the stirring effect of the soybean paste can be improved.

[0035] As a preferred embodiment, an angle a is formed between the surface of the lower stirring plate 223 and the rotation path of the lower stirring plate 223. The angle a is between 30° and 90°. Thus, the lower stirring plate 223 can be in an optimal stirring area.

[0036] As a preferred embodiment, the lower stirring plate 223 and the upper stirring plate 224 are made of plastic. Thus, the lower stirring plate 223 and the upper stirring plate 224 can avoid hard contact with the pot body 100.

[0037] As a preferred embodiment, the elastic member 214 is a spring. When subjected to pressure, the spring can be in a compressed state and accumulate a compressed elastic potential energy. Figure 2 andFigure 4 The driving mechanism 300 comprises a mounting box 310, a transmission assembly 320 and a rotating driving member 330. The transmission assembly 320 is arranged in the mounting box 310. One end of the transmission assembly 320 is connected with the output end of the rotating driving member 330. The other end of the transmission assembly 320 is connected with the top of each of the conduits 211. The rotating driving member 330 is used to convert the rotation of the output end of the rotating driving member 330 into the synchronous rotation of each of the conduits 211. By controlling the rotating driving member 330, the output end of the rotating driving member 330 rotates. Since the transmission assembly 320 can convert the rotation of the output end of the rotating driving member 330 into the synchronous rotation of each of the conduits 211, the synchronous driving of each of the stirring mechanisms 200 is realized.

[0038] As a preferred embodiment, refer to Figure 4 The bottom surface of the mounting box 310 has a slot. The transmission assembly 320 comprises a ring gear 321, a sun gear 322, at least one planetary gear 323, a driving shaft 324 and at least one driven shaft 325. The ring gear 321 is fixedly connected with the mounting box 310. The sun gear 322 is arranged in the ring gear 321 and coaxial with the ring gear 321. Each of the planetary gears 323 is arranged in an annular array between the ring gear 321 and the sun gear 322. The bottom of each of the planetary gears 323 close to the sun gear 322 is in sliding abutment with the bottom surface of the mounting box 310. The tooth portion of each of the planetary gears 323 is in mesh with the tooth portion of the ring gear 321 and the tooth portion of the sun gear 322. The driving shaft 324 is coaxially arranged with the sun gear 322. The lower end of the driving shaft 324 is fixedly connected with the sun gear 322. The upper end of the driving shaft 324 is rotatably connected with the mounting box 310. Each of the driven shafts 325 is coaxially arranged with each of the planetary gears 323. The upper end of the driven shaft 325 is fixedly connected with the planetary gear 323. The lower end of the driven shaft 325 extends out of the mounting box 310 along the slot in the bottom surface of the mounting box 310. The lower end of each of the driven shafts 325 is fixedly connected with the top of each of the conduits 211. The rotating driving member 330 is fixedly connected with the mounting box 310. The output end of the rotating driving member 330 is coaxially fixedly connected with the upper end of the driving shaft 324, which is used to drive the driving shaft 324 to rotate. By controlling the rotating driving member 330, the output end of the rotating driving member 330 rotates, which drives the driving shaft 324 to rotate, and then drives the sun gear 322 to rotate. According to the gear meshing transmission principle, each of the planetary gears 323 rotates synchronously around the sun gear 322, which drives each of the driven shafts 325 to rotate synchronously around the sun gear 322, thereby driving each of the stirring mechanisms 200 to rotate synchronously.

[0039] As a preferred embodiment, the sterilization pot further comprises a steam feeding mechanism, an outlet end of the steam feeding mechanism being communicated with the steam inlet 151, so as to feed steam into the heating cavity 160, thereby the soybean paste in the material holding cavity 110 can be heated and sterilized by the steam.

[0040] As a preferred embodiment, the steam feeding mechanism comprises a steam generator and a driving pump, the steam generator being used to generate steam, an inlet end of the driving pump being communicated with an outlet end of the steam generator, an outlet end of the driving pump being communicated with an inlet end of the second valve, the steam generated by the steam generator being pumped into the heating cavity 160 by the driving pump, thereby the steam feeding into the heating cavity 160 can be realized.

[0041] As a preferred embodiment, please refer to Figure 1 and Figure 2 , the sterilization pot further comprises a rack 400, the outer pot 150 being fixedly connected with the rack 400, the mounting box 310 being fixedly connected with the rack 400, the outer pot 150 and the mounting box 310 can be supported by the rack 400.

[0042] In order to better understand the present application, the following will be combined with Figure 1 - Figure 4 to make a detailed description of the working principle of the technical scheme of the present application:

[0043] In use, soybean sauce to be sterilized is poured into the material containing cavity 110 through the feeding opening 120, steam is introduced into the heating cavity 160 through the steam feeding mechanism, so that the soybean sauce in the material containing cavity 110 is heated and sterilized by steam, the rotary driving member 330 is controlled to rotate, the driving shaft 324 is driven to rotate, and then the sun gear 322 is driven to rotate, according to the gear engagement transmission principle, each planetary gear 323 rotates synchronously around the sun gear 322, and then each driven shaft 325 rotates synchronously around the sun gear 322, so that each support assembly 210 rotates synchronously, each stirring assembly 220 stirs the soybean sauce, the elastic member 214 can apply an outward elastic force to the piston 212, so that the piston 212 has a tendency to move outward, so that the bottom of each lower stirring plate 223 is always in abutment with the bottom of the material containing cavity 110, and each lower stirring plate 223 scrapes the bottom of the material containing cavity 110 during the rotation of the stirring assembly 220 along with the support assembly 210, each upper stirring plate 224 can stir the middle layer of the soybean sauce, and the sterilization pot can stir the soybean sauce in the pot and at the bottom of the pot through the stirring assembly 220 during the sterilization of the soybean sauce, so that the pot is prevented from being burnt, and the sterilization effect of the soybean sauce is improved.

[0044] The sterilization pot has the following beneficial effects:

[0045] (1) The elastic member 214 can apply an outward elastic force to the piston 212, so that the piston 212 has a tendency to move outward, so that the bottom of each lower stirring plate 223 is always in abutment with the bottom of the material containing cavity 110.

[0046] (2) The lower stirring plate 223 can stir the soybean sauce at the bottom of the pot, and the upper stirring plate 224 can stir the middle layer of the soybean sauce, so that the middle layer of the soybean sauce is prevented from being always in the middle layer and not being stirred, and the stirring effect of the soybean sauce is improved.

[0047] (3) The sterilization pot can stir the soybean sauce in the pot and at the bottom of the pot through the stirring assembly 220 during the sterilization of the soybean sauce, so that the pot is prevented from being burnt, and the sterilization effect of the soybean sauce is improved.

[0048] The specific embodiments of the utility model described above do not constitute a limitation on the protection scope of the utility model. Any other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the utility model claims.

Claims

1. A sterilization pot, characterized by, The utility model provides a kind of cooking utensil, including: Pot, it has a material holding cavity, and it has feed inlet and discharge outlet with the material holding cavity communication; At least one stirring mechanism, it is arranged in the material holding cavity, it includes support assembly and at least one stirring assembly, each stirring assembly is fixedly connected with the bottom of support assembly, support assembly has the elastic force that the bottom of each stirring assembly is all abutted with the cavity bottom of material holding cavity; Driving mechanism, it is connected with the top of each support assembly, for driving each support assembly synchronous rotation, to make each stirring assembly action.

2. The sterilization pot of claim 1, wherein, The support assembly includes conduit, piston, inner rod and elastic member, the piston is slidably arranged in the conduit, the upper end of the inner rod is arranged in the conduit and is fixedly connected with the bottom of the piston, the lower end of the inner rod is slidably arranged outside the conduit, each stirring assembly is fixedly connected with the lower end of the inner rod, the elastic member is arranged in the conduit, the upper end of the elastic member is fixedly connected with the conduit, the lower end of the elastic member is fixedly connected with the top of the piston, so that the bottom of each stirring assembly is abutted with the cavity bottom of the material holding cavity, the driving mechanism is connected with the top of each conduit.

3. The sterilization pot of claim 2, wherein, The stirring assembly includes connecting rod, mounting plate, lower stirring plate and upper stirring plate, the upper end of the connecting rod is fixedly connected with the bottom of the inner rod, the mounting plate is fixedly connected with the connecting rod, the lower stirring plate is detachably fixedly connected with the bottom of the mounting plate, the upper stirring plate is detachably fixedly connected with the top of the mounting plate, and the lower stirring plate and the upper stirring plate both have a deformable structure.

4. The sterilization pot of claim 3, wherein, The angle a between the surface of the lower stirring plate and the rotation path of the lower stirring plate is between 30° and 90°.

5. The sterilization pot of claim 1, wherein, The pot includes an inner pot and an outer pot, the inner pot has a material holding cavity, the outer pot covers the outer sidewall of the inner pot, a heating cavity is formed between the outer pot and the inner pot, the inner pot is provided with the feed inlet and the discharge outlet, and the outer pot is provided with an air inlet and a liquid outlet.

6. The sterilization pot of claim 5, wherein, The pot also includes a gas feeding mechanism, the outlet end of the gas feeding mechanism is in communication with the air inlet to introduce steam into the heating cavity.

7. The sterilizer of claim 5 wherein, The cavity bottom of the material holding cavity and the cavity bottom of the heating cavity are both arc-shaped structures, the discharge outlet is located at the lowest part of the cavity bottom of the material holding cavity, and the liquid outlet is located at the lowest part of the cavity bottom of the heating cavity.

8. The sterilizer of claim 7, wherein, The pot also includes a discharge pipe and a first valve, the upper end of the discharge pipe is in communication with the discharge outlet, the lower end of the discharge pipe penetrates through the outer pot and extends out of the outer pot, and the inlet end of the first valve is in communication with the lower end of the discharge pipe to control the on-off of the discharge pipe.

9. The sterilizer of claim 6 wherein, The pot also includes an air inlet pipe and a second valve, one end of the air inlet pipe is in communication with the air inlet, the outlet end of the second valve is in communication with the other end of the air inlet pipe to control the on-off of the air inlet pipe, and the outlet end of the gas feeding mechanism is in communication with the inlet end of the second valve.

10. The sterilizer of claim 2, wherein, The driving mechanism comprises a mounting box, a transmission assembly and a rotating driving member, the transmission assembly is arranged in the mounting box, one end of the transmission assembly is connected with an output end of the rotating driving member, and the other end of the transmission assembly is connected with the top of each guide pipe, so as to convert the rotation of the output end of the rotating driving member into the synchronous rotation of each guide pipe.

Citation Information

Patent Citations

  • Sterilization device for soybean paste production

    CN213153806U