A domestic environment-friendly enzyme fermentation machine

CN116814412BActive Publication Date: 2026-08-21JIANGNAN UNIV
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Patent Information

Application Number
CN202310794912.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-30
Publication Date
2026-08-21
Estimated Expiration
2043-06-30

AI Technical Summary

Technical Problem

[0007]鉴于上述或现有技术中存在原料在水中容易浮起,不利于充分发酵的问题,提出了本发明

Benefits of technology

[0019]本发明的家用型环保酵素发酵机的有益效果:本发明通过转动存放机构,使得端盖朝上,转动取下端盖,将环保酵素发酵用的原料放置于滤存机构内部,并向容纳体的内部加入适量的水,加水完毕后将端盖和螺纹套螺纹连接,再次转动存放机构,使得端盖朝下,此时滤存机构将环保酵素发酵用的原料限制于液面之下进行发酵,通过将环保酵素发酵用的原料限制于液面内,可以有效的提升发酵效率,更利于充分发酵。

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Abstract

The application relates to the field of environment-friendly enzyme fermentation technology, in particular to a household environment-friendly enzyme fermentation machine, which comprises a supporting mechanism, a storage mechanism rotatably arranged on the supporting mechanism, a containing body rotatably arranged on the supporting mechanism, a sealing assembly arranged on the containing body, a limiting piece arranged on the containing body, a threaded sleeve arranged on the limiting piece, an end cover arranged on the threaded sleeve, a filtering and storing mechanism arranged on the limiting piece and a stirring mechanism arranged on the sealing assembly. The end cover faces downward by rotating the storage mechanism, the filtering and storing mechanism limits the raw materials for environment-friendly enzyme fermentation below the liquid surface to carry out fermentation, the raw materials for environment-friendly enzyme fermentation are limited in the liquid surface, the fermentation efficiency is effectively improved, and the raw materials can be fully fermented.
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Description

Technical Field

[0001] This invention relates to the field of environmental enzyme fermentation technology, and in particular to a household environmental enzyme fermentation machine. Background Technology

[0002] Eco-enzymes are formed from raw materials such as brown sugar, vegetable and fruit waste, and water through anaerobic respiration by microorganisms in a closed environment. Essentially, they are active macromolecular enzymes with catalytic effects produced by living organisms, and are a type of enzyme. The production process of eco-enzymes does not use any chemically synthesized substances, and after fermentation, a complex and stable ecosystem with multiple functions is formed. Fermenting household kitchen waste into eco-enzymes is an effective way to utilize resources. Because eco-enzymes contain various functional enzymes, they have a certain cleaning ability and can be used as a natural cleaning agent.

[0003] Fermentation tanks are needed in the industrial production of environmental enzymes. The main body is generally a cylindrical body made of stainless steel plate, with a volume of one to several hundred cubic meters. Other components include a sealing cover, exhaust valve, heating jacket, main shaft, motor and impeller. However, fermentation tanks used in industrial production have a complex structure, are cumbersome to operate, and are expensive, making it difficult to promote them on a large scale in households.

[0004] Currently, the containers available on the market for fermenting eco-enzymes at home are generally plastic jars with sealed lids, some with vent valves. They have a relatively simple structure and require a high level of user experience.

[0005] In actual use, the raw materials tend to float in water, which is not conducive to full fermentation, increases the fermentation cycle, and reduces the fermentation efficiency. Therefore, a household-type environmentally friendly enzyme fermentation machine is proposed. Summary of the Invention

[0006] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.

[0007] In view of the problem that the raw materials in the above or existing technologies tend to float in water, which is not conducive to full fermentation, the present invention is proposed.

[0008] Therefore, the purpose of this invention is to provide a household-use environmentally friendly enzyme fermentation machine.

[0009] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a household environmentally friendly enzyme fermentation machine, comprising a support mechanism and a storage mechanism rotatably disposed on the support mechanism; the storage mechanism includes a container rotatably disposed on the support mechanism and a sealing component disposed on the container, the container being provided with a limiting member, the limiting member being provided with a threaded sleeve, and an end cap disposed on the threaded sleeve; the limiting member being provided with a filtering and storage mechanism; and the sealing component being provided with a stirring mechanism.

[0010] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the filtration mechanism includes a filter screen sleeve disposed on the limiting member, and a filter bucket slidably disposed on the filter screen sleeve, and also includes a snap fastener disposed on the filter bucket; the stirring mechanism includes a motor disposed on the sealing component, and a stirring component disposed on the motor, a locking component slidably disposed on the stirring component, and also includes a pushing component disposed on the locking component.

[0011] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the container includes an outer barrel, a heating layer disposed on the outer barrel, and an inner liner disposed on the heating layer; the sealing component includes an end on the outer barrel, a discharge component disposed on the end, and a discharge cavity disposed on the end; the limiting component includes a middle ring disposed on the outer barrel and an embedding groove disposed on the middle ring.

[0012] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the stirring component includes a rotating shaft disposed on the motor, a positive stirring blade and a negative stirring blade disposed on the rotating shaft, and a spiral blade disposed on the positive stirring blade and the negative stirring blade.

[0013] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the following features are provided: the container further includes a guide groove on the inner liner; the stirring component further includes a square groove on the rotating shaft; the locking assembly includes a sliding component slidably disposed on the square groove, and a connecting plate disposed on the sliding component, and a locking component disposed on the sliding component; the pushing component includes a connecting piece disposed on the connecting plate, and a sliding ring disposed on the connecting piece, and a guide block disposed on the sliding ring.

[0014] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the sliding component includes a square column slidably disposed on the square groove and a square block disposed on the square column; the locking component includes a sliding sleeve slidably disposed on the square column and a locking block disposed on the sliding sleeve, and also includes a fixing plate disposed on the sliding sleeve, and a spring is sleeved on the outside of the sliding sleeve.

[0015] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the pushing component further includes a guide plate disposed on the sliding ring, the guide plate being wavy and inclinedly disposed on the inner surface of the sliding ring.

[0016] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the buckle is provided with an outer arc surface and an inner arc surface; the locking block is provided with an upper arc surface and a lower arc surface.

[0017] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the supporting mechanism includes a supporting base and a supporting frame disposed on the supporting base, and a rotating component disposed on the supporting frame; the rotating component includes a shaft disposed on the supporting frame and a snap-fit ​​portion disposed on the shaft; the storage mechanism further includes a connecting component disposed on the receiving body; the connecting component includes a limiting sleeve disposed on the receiving body and a limiting groove disposed on the limiting sleeve.

[0018] As a preferred embodiment of the household environmentally friendly enzyme fermentation machine of the present invention, the snap-fit ​​part includes a snap-fit ​​plate and a protrusion on the shaft; the limiting groove includes a sliding groove, a first positioning groove, a second positioning groove and a receiving groove on the limiting sleeve.

[0019] The beneficial effects of the household eco-enzyme fermentation machine of the present invention are as follows: By rotating the storage mechanism so that the end cap faces upward, the end cap is removed by rotating it, and the raw materials for eco-enzyme fermentation are placed inside the storage mechanism. An appropriate amount of water is added to the inside of the container. After the water is added, the end cap and the threaded sleeve are connected by thread. The storage mechanism is rotated again so that the end cap faces downward. At this time, the storage mechanism restricts the raw materials for eco-enzyme fermentation to be below the liquid surface for fermentation. By restricting the raw materials for eco-enzyme fermentation to be within the liquid surface, the fermentation efficiency can be effectively improved, which is more conducive to full fermentation. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of a household-use environmentally friendly enzyme fermentation machine.

[0022] Figure 2 This is a schematic diagram of the internal structure of a household-use environmentally friendly enzyme fermentation machine.

[0023] Figure 3This is a schematic diagram of the storage structure of a household-use environmentally friendly enzyme fermentation machine.

[0024] Figure 4 This is a schematic diagram of the filtration mechanism of a household-use eco-friendly enzyme fermentation machine.

[0025] Figure 5 This is a schematic diagram of the stirring mechanism of a household-use eco-friendly enzyme fermentation machine.

[0026] Figure 6 This is a schematic diagram of the stirring component structure of a household-use environmentally friendly enzyme fermentation machine.

[0027] Figure 7 This is a schematic diagram of the locking component structure for a household-use eco-friendly enzyme fermentation machine.

[0028] Figure 8 This is a schematic diagram of the locking block structure of a household-use environmentally friendly enzyme fermentation machine.

[0029] Figure 9 This is a schematic diagram of the support structure for a household-use eco-friendly enzyme fermentation machine.

[0030] Figure 10 This is a schematic diagram of the connecting parts structure of a household environmentally friendly enzyme fermentation machine.

[0031] Figure 11 This is a schematic diagram of the guide trough structure for a household-use environmentally friendly enzyme fermentation machine.

[0032] Figure 12 This is a schematic diagram of the snap-fit ​​structure of a household eco-friendly enzyme fermentation machine. Detailed Implementation

[0033] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0034] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0035] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.

[0036] Example 1, referring to Figures 1 to 12This is the first embodiment of the present invention, which provides a household environmentally friendly enzyme fermentation machine, including a support mechanism 100 and a storage mechanism 200 rotatably disposed on the support mechanism 100. In this embodiment, the storage mechanism 200 can rotate on the support mechanism 100, thereby changing the orientation of the storage mechanism 200. The storage mechanism 200 includes a receiving body 201 rotatably disposed on the support mechanism 100, and a closing component 202 disposed on the receiving body 201. The receiving body 201 is provided with a limiting member 203, and the limiting member 203 is provided with a threaded sleeve 204. It also includes an end cap 205 disposed on the threaded sleeve 204. The mechanism 200 also includes a pH detection module 207 disposed on the sealing component 202. In this embodiment, the sealing component 202 is used to seal the end of the container 201. The limiting member 203 is disposed at the end of the container 201 away from the sealing component 202. The end cap 205 can be installed by the threaded sleeve 204. The end cap 205 and the threaded sleeve 204 are threadedly connected, which facilitates the opening and closing of the container 201. The pH detection module 207 can detect the pH value of the liquid inside the container 201. By detecting the pH value, the acidity and alkalinity data during the fermentation process can be obtained, and the fermentation status can be monitored based on this.

[0037] Furthermore, the limiting member 203 is provided with a filter storage mechanism 300. In this embodiment, the filter storage mechanism 300 is limited and set inside the container 201 by the limiting member 203. The filter storage mechanism 300 can store and isolate the raw materials for environmental enzyme fermentation. When in use, the storage mechanism 200 can be rotated and inverted so that the raw materials for environmental enzyme fermentation are in the liquid. By limiting the filter storage mechanism 300, the phenomenon of the raw materials floating in the water is effectively avoided, which facilitates full fermentation.

[0038] Furthermore, the closed component 202 is provided with a stirring mechanism 400. In this embodiment, the stirring mechanism 400 is located inside the storage mechanism 200, which can stir and mix the liquid inside the storage mechanism 200, thereby fully mixing the liquid and the environmental enzyme, and making the nutrients in the raw materials evenly distributed inside the storage mechanism 200, further improving the fermentation speed.

[0039] Specifically, the filtration mechanism 300 includes a filter sleeve 301 disposed on the limiting member 203, and a filter barrel 302 slidably disposed on the filter sleeve 301, and also includes a snap fastener 303 disposed on the filter barrel 302; in this embodiment, the end of the filter sleeve 301 is provided with an outwardly extending disc-shaped structure, which can snap the filter sleeve 301 onto the limiting member 203, and the end of the filter barrel 302 is provided with an outwardly extending disc-shaped structure, which restricts the filter barrel 302 from sliding inside the filter sleeve 301, such as... Figure 4As shown, the filter holes of the filter sleeve 301 and the filter barrel 302 are opened on the peripheral surface. The end of the filter barrel 302 away from the filter sleeve 301 is closed. The snap fastener 303 is provided at the end of the filter barrel 302 away from the filter sleeve 301, and there are two snap fasteners 303.

[0040] Preferably, the stirring mechanism 400 includes a motor 401 disposed on the enclosed component 202, and a stirring element 402 disposed on the motor 401. A locking component 403 is slidably disposed on the stirring element 402, and a pushing element 404 disposed on the locking component 403. In this embodiment, the motor 401 is embedded inside the enclosed component 202. The operation of the motor 401 can cause the stirring element 402 to rotate. The locking component 403 is used to connect and lock with the snap fastener 303. When the pushing element 404 rotates, it can push the locking component 403 to slide up and down.

[0041] Furthermore, the container 201 includes an outer barrel 201a, a heating layer 201b disposed on the outer barrel 201a, and an inner liner 201c disposed on the heating layer 201b. In this embodiment, the inner wall of the outer barrel 201a is nested with the heating layer 201b, which is a PTC graphene electric heating film. The inner liner 201c is made of 304 stainless steel. The heating layer 201b can heat the inner liner 201c. Heating can keep the storage mechanism 200 at a relatively constant temperature, which is conducive to the rapid reproduction of microorganisms.

[0042] Preferably, the sealing component 202 includes an end 202a disposed on the outer barrel 201a, a discharge component 202b disposed on the end 202a, and a discharge chamber 202c disposed on the end 202a; in this embodiment, the end 202a is fixedly disposed on one end of the outer barrel 201a, and the discharge component 202b can control the opening and closing of the discharge chamber 202c, so as to facilitate the pouring out and taking out of the enzyme liquid after fermentation is completed.

[0043] The discharge component 202b includes a cover plate 202b-1 disposed on the end 202a, a push block 202b-2 disposed on the cover plate 202b-1, and a buckle 202b-3 disposed on the push block 202b-2. In this embodiment, the cover plate 202b-1 and the end 202a are rotatably connected. The cover plate 202b-1 can be rotated open. The push block 202b-2 allows the user to easily push the cover plate 202b-1. The buckle 202b-3 can lock and fix the cover plate 202b-1, making it easy to close the cover plate 202b-1.

[0044] It should be noted that the limiting member 203 includes a middle ring 203a disposed on the outer barrel 201a and an embedding groove 203b disposed on the middle ring 203a. In this embodiment, the middle ring 203a is fixedly disposed on the end of the outer barrel 201a, and the embedding groove 203b is provided at the end of the middle ring 203a away from the outer barrel 201a. The embedding groove 203b can be used to place the disc-shaped structure extending outward from the end of the filter sleeve 301 to limit the filter storage mechanism 300.

[0045] When using, first rotate the storage mechanism 200 so that the end cap 205 faces upward, rotate to remove the end cap 205, place the raw materials for environmental enzyme fermentation into the filter storage mechanism 300, and add an appropriate amount of water into the container 201. After adding water, connect the end cap 205 and the threaded sleeve 204 with threads, rotate the storage mechanism 200 again so that the end cap 205 faces downward. At this time, the filter storage mechanism 300 restricts the raw materials for environmental enzyme fermentation below the liquid surface for fermentation.

[0046] During fermentation, the liquid inside the inner container 201c is heated by the heating layer 201b to maintain a relatively constant temperature. The operation of the motor 401 causes the stirring element 402 to rotate and stir, mixing the liquid inside the container 201. During the rotation of the stirring element 402, the locking component 403 will rotate together. In conjunction with the pushing component 404, the locking component 403 will slide up and down. The latch 303 locked with the locking component 403 will cause the filter bucket 302 to rotate and slide on the inner wall of the filter screen sleeve 301. When the filter bucket 302 slides into the filter screen sleeve 301, it squeezes out the water inside. When the filter bucket 302 slides out of the filter screen sleeve 301, it draws water into the filter bucket 302 and the filter screen sleeve 301, performing water absorption and drainage operations. In conjunction with the stirring of the stirring element 402, the nutrients in the liquid are circulated and mixed. During this process, the pH value of the liquid can be detected by the pH detection module 207, and the fermentation status can be monitored by the pH value.

[0047] After fermentation is complete, push the push block 202b-2 to separate the buckle 202b-3, rotate the cover plate 202b-1 to open, and rotate the storage mechanism 200 to discharge the enzyme liquid from the discharge chamber 202c. After removing the enzyme liquid, fasten the buckle 202b-3 and seal the discharge chamber 202c with the cover plate 202b-1. Then rotate the end cap 205 to remove the filter storage mechanism 300 and clean the remaining residue. After cleaning, water can be injected into the container 201 again, and the stirring of the stirring component 402 and the water absorption and drainage of the filter bucket 302 and the filter screen sleeve 301 can be used for auxiliary cleaning.

[0048] In summary, by confining the raw materials used for environmental enzyme fermentation within the liquid surface during the fermentation process, the fermentation efficiency can be effectively improved.

[0049] Example 2, refer to Figures 1-12 This is the second embodiment of the present invention. Unlike the previous embodiment, the stirring element 402 includes a rotating shaft 402a mounted on the motor 401, and forward stirring blades 402b and reverse stirring blades 402c mounted on the rotating shaft 402a. It also includes spiral blades 402d mounted on the forward stirring blades 402b and reverse stirring blades 402c. In this embodiment, the output shaft of the motor 401 is fixedly connected to the rotating shaft 402a via a coupling, and both ends of the rotating shaft 402a are fixedly mounted with... The positive stirring blade 402b and the negative stirring blade 402c have opposite inclination angles. There are three positive stirring blades 402b and three negative stirring blades 402c, which are evenly distributed in a circle on the outer wall of the rotating shaft 402a. The spiral blade 402d is arranged in a spiral shape. When the rotating shaft 402a rotates, the rotation of the positive stirring blade 402b and the negative stirring blade 402c can make the fluid flow in opposite directions, further improving the mixing effect and making the nutrient solution evenly distributed.

[0050] Specifically, the container 201 also includes a guide groove 201d provided on the inner liner 201c; in this embodiment, the guide groove 201d is in an inclined state and is an annular groove inclinedly provided along the inner circumferential surface of the inner liner 201c.

[0051] Preferably, the stirring component 402 further includes a square groove 402e disposed on the rotating shaft 402a; the locking component 403 includes a sliding component 403a slidably disposed on the square groove 402e, and a connecting plate 403b disposed on the sliding component 403a, and a locking component 403c disposed on the sliding component 403a; in this embodiment, the sliding component 403a can slide on the inner wall of the square groove 402e, the connecting plate 403b is fixedly disposed on the outer wall of the sliding component 403a, and the locking component 403c can be locked with the snap-fit ​​buckle 303.

[0052] It should be noted that the pushing component 404 includes a connecting piece 404a disposed on the connecting plate 403b, a sliding ring 404b disposed on the connecting piece 404a, and a guide block 404c disposed on the sliding ring 404b. In this embodiment, three connecting pieces 404a are provided, and the three connecting pieces 404a are evenly disposed on the outer wall of the connecting plate 403b. The sliding ring 404b is fixed on the connecting piece 404a. The sliding ring 404b is slidably connected to the inner surface of the inner liner 201c. The guide block 404c is fixedly disposed on the outer surface of the sliding ring 404b. The guide block 404c is slidably connected to the guide groove 201d.

[0053] Furthermore, the sliding member 403a includes a square post 403a-1 slidably disposed on the square groove 402e, and a square block 403a-2 disposed on the square post 403a-1; the locking member 403c includes a sliding sleeve 403c-1 slidably disposed on the square post 403a-1, and a locking block 403c-2 disposed on the sliding sleeve 403c-1, and also includes a fixed disk 403c-3 disposed on the sliding sleeve 403c-1, and a spring 40 is sleeved on the outside of the sliding sleeve 403c-1. 3c-4 In this embodiment, the dimensions of the square column 403a-1 and the square groove 402e are matched. The square block 403a-2 is fixedly disposed at the end of the square column 403a-1. The square block 403a-2 and the sliding sleeve 403c-1 are slidably connected. Two locking blocks 403c-2 are provided. The two locking blocks 403c-2 are fixedly disposed on the outer surface of the sliding sleeve 403c-1. The two ends of the spring 403c-4 are respectively attached to the fixed plate 403c-3 and the connecting plate 403b.

[0054] It should be noted that the pusher 404 also includes a guide plate 404d disposed on the sliding ring 404b. The guide plate 404d is wavy and is inclinedly disposed on the inner surface of the sliding ring 404b. In this embodiment, three guide plates 404d are disposed and are distributed at equal intervals on the inner surface of the sliding ring 404b.

[0055] Preferably, the snap fastener 303 has an outer arc surface M and an inner arc surface P; the locking block 403c-2 has an upper arc surface Q and a lower arc surface N.

[0056] The rest of the structure is the same as in Example 1.

[0057] In the initial state, locking block 403c-2 and snap fastener 303 are in the snap-fit ​​state, spring 403c-4 is in the compressed state, filter canister 302 is stored inside filter screen sleeve 301, the part of guide groove 201d closest to limit member 203 is set as the lowest point, and the part of guide groove 201d furthest from limit member 203 is set as the highest point, and guide block 404c is at the lowest point of guide groove 201d.

[0058] When the motor 401 rotates in the forward direction, the locking block 403c-2 will drive the latch 303 to rotate together. At the same time, the sliding ring 404b rotates. Through the guide block 404c and the guide groove 201d, the sliding ring 404b slides, which in turn causes the square column 403a-1 to slide inside the square groove 402e. In the initial stage of sliding, the spring 403c-4 stretches first, and the sliding sleeve 403c-1 slides. When the sliding sleeve 403c-1 and the square block 403a-2 come into contact, the locking block 403c-2 will drive the latch 303 to slide, which will pull the filter canister 302 out from inside the filter screen sleeve 301, so that the filter canister 302... Water from outside the filter sleeve 301 is drawn into the filter barrel 302 and the filter sleeve 301 through the filter holes. When the guide block 404c slides to the highest point of the guide groove 201d, the continued rotation of the rotating shaft 402a will cause the sliding ring 404b to slide in the opposite direction. The square column 403a-1 slides out from inside the square groove 402e. The spring 403c-4 is compressed first, providing a certain buffer force. As the sliding ring 404b slides, the locking block 403c-2 will drive the snap fastener 303 to press the filter barrel 302 into the filter sleeve 301, thereby squeezing out the liquid inside the filter barrel 302 and the filter sleeve 301, realizing the cyclic squeezing operation.

[0059] During the repeated squeezing and pumping of liquid in the filter tank 302 and filter screen sleeve 301, the rotation of the sliding ring 404b will drive the guide plate 404d to rotate together. When the guide plate 404d rotates, it pushes the surrounding liquid upward. The wave-shaped guide plate 404d can increase the difficulty of the surrounding liquid being pumped into the filter tank 302 and filter screen sleeve 301, making it easier for the liquid above the filter tank 302 to be pumped into the filter tank 302 and filter screen sleeve 301. The squeezed liquid is more easily transported upward, realizing circulation and mixing and improving the mixing effect of the nutrient solution.

[0060] When the filter storage mechanism 300 needs to be disassembled, the control motor 401 rotates in the reverse direction. When the locking block 403c-2 rotates in the reverse direction, the lower arc surface N abuts against the outer arc surface M, causing the locking block 403c-2 to slide upward, thereby unlocking the locking block 403c-2 and the buckle 202b-3. When the filter storage mechanism 300 needs to be installed, the filter screen sleeve 301 is first placed into the embedding groove 203b on the middle ring 203a. The filter barrel 302 abuts against the locking block 403c-2, causing the spring 403c-4 to compress. The control motor 401 rotates in the forward direction. Under the pushing force of the spring 403c-4, the locking block 403c-2, with the guidance of the upper arc surface Q and the inner arc surface P, locks and connects with the buckle 202b-3, completing the installation.

[0061] In summary, during the fermentation process, the mixing effect can be further improved by the stirring of the stirring component 402 and the extraction of the filtration and storage mechanism 300, thereby improving the fermentation efficiency.

[0062] Example 3, referring to Figures 1-12 This is the third embodiment of the present invention. Unlike the previous embodiment, the support mechanism 100 includes a support base 101 and a support frame 102 disposed on the support base 101, and also includes a rotating member 103 disposed on the support frame 102. The rotating member 103 includes a shaft 103a disposed on the support frame 102 and a snap-fit ​​portion 103b disposed on the shaft 103a. In this embodiment, the support frame 102 is fixedly installed on both sides of the top end of the support base 101. The support frame 102 is made of plastic material and can produce slight deformation. The shaft 103a is fixedly disposed on the support frame 102.

[0063] Preferably, the storage mechanism 200 further includes a connector 206 disposed on the accommodating body 201; the connector 206 includes a limiting sleeve 206a disposed on the accommodating body 201 and a limiting groove 206b disposed on the limiting sleeve 206a. In this embodiment, the limiting sleeve 206a is sleeved on the outside of the shaft 103a, and the limiting groove 206b and the snap-fit ​​portion 103b are slidably connected.

[0064] Specifically, the latching part 103b includes a latching plate 103b-1 and a protrusion 103b-2 disposed on the shaft 103a; the limiting groove 206b includes a sliding groove 206b-1, a first positioning groove 206b-2, a second positioning groove 206b-3 and a receiving groove 206b-4 disposed on the limiting sleeve 206a. In this embodiment, the latching plate 103b-1 and the protrusion 103b-2 are an integrated structure, and the latching plate 103b-1 and the protrusion 103b-2 can slide inside the sliding groove 206b-1.

[0065] The rest of the structure is the same as in Example 2.

[0066] In the initial state, the protrusion 103b-2 is located inside the first positioning groove 206b-2, and the clamping plate 103b-1 is located inside the slide groove 206b-1. The protrusion 103b-2, in conjunction with the first positioning groove 206b-2, assists in positioning the shaft 103a. When the storage mechanism 200 is rotated, the arc surface of the protrusion 103b-2 is compressed, pushing the shaft 103a. The support frame 102 deforms and expands outward, and the protrusion 103b-2 slides into the slide groove 206b-1. After the storage mechanism 200 rotates ninety degrees, the clamping plate 103b-1 slides into the receiving groove 206b-4, and the protrusion 103b-2 slides into the second positioning groove 206b-3. The support frame 102 returns to its original deformation, and the protrusion 103b-2, in conjunction with the second positioning groove 206b-3, assists in positioning the shaft 103a.

[0067] In summary, the storage mechanism 200 has good stability after rotation, is easy to place, and can effectively prevent tipping over.

[0068] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape, and proportions of various elements, as well as parameter values ​​(e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of the invention. The order or sequence of any process or method steps may be changed or rearranged according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structurally equivalent but also equivalent in structure. Other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments without departing from the scope of the invention. Therefore, the present invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.

[0069] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the best mode of carrying out the invention as currently considered, or those features that are not relevant to implementing the invention) may be omitted.

[0070] It should be understood that numerous specific implementation decisions can be made during the development of any practical implementation, such as in any engineering or design project. Such development efforts may be complex and time-consuming, but for those skilled in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.

[0071] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A household-use environmentally friendly enzyme fermentation machine, characterized in that: It includes a support mechanism (100) and a storage mechanism (200) rotatably mounted on the support mechanism (100). The storage mechanism (200) includes a container (201) rotatably mounted on the support mechanism (100), and a closing component (202) mounted on the container (201). The container (201) is provided with a limiting member (203), and the limiting member (203) is provided with a threaded sleeve (204). The storage mechanism (200) also includes an end cap (205) mounted on the threaded sleeve (204). The limiting member (203) is provided with a filter storage mechanism (300); The enclosed assembly (202) is provided with a stirring mechanism (400); The filtration mechanism (300) includes a filter screen sleeve (301) disposed on the limiting member (203), and a filter barrel (302) slidably disposed on the filter screen sleeve (301), and also includes a snap fastener (303) disposed on the filter barrel (302). The stirring mechanism (400) includes a motor (401) mounted on the enclosure assembly (202) and a stirring element (402) mounted on the motor (401). A locking assembly (403) is slidably mounted on the stirring element (402), and a pushing element (404) is also mounted on the locking assembly (403). The container (201) includes an outer barrel (201a), a heating layer (201b) disposed on the outer barrel (201a), and an inner liner (201c) disposed on the heating layer (201b). The container (201) also includes a guide groove (201d) provided on the inner liner (201c); The stirring component (402) also includes a square groove (402e) provided on the rotating shaft (402a); The locking assembly (403) includes a sliding member (403a) slidably disposed on the square groove (402e), a connecting plate (403b) disposed on the sliding member (403a), and a locking member (403c) disposed on the sliding member (403a). The pushing member (404) includes a connecting piece (404a) disposed on the connecting plate (403b), a sliding ring (404b) disposed on the connecting piece (404a), and a guide block (404c) disposed on the sliding ring (404b). The sliding member (403a) includes a square column (403a-1) that is slidably disposed on the square groove (402e), and a square block (403a-2) disposed on the square column (403a-1). The locking element (403c) includes a sliding sleeve (403c-1) that slides on the square post (403a-1), a locking block (403c-2) on the sliding sleeve (403c-1), and a fixing plate (403c-3) on the sliding sleeve (403c-1). A spring (403c-4) is sleeved on the outside of the sliding sleeve (403c-1).

2. The household-use environmentally friendly enzyme fermentation machine as described in claim 1, characterized in that: The closure assembly (202) includes an end (202a) disposed on the outer barrel (201a), a discharge component (202b) disposed on the end (202a), and a discharge chamber (202c) disposed on the end (202a). The limiting member (203) includes a middle ring (203a) disposed on the outer barrel (201a) and an embedding groove (203b) disposed on the middle ring (203a).

3. The household-use environmentally friendly enzyme fermentation machine as described in claim 2, characterized in that: The stirring component (402) includes a rotating shaft (402a) disposed on the motor (401), a positive stirring blade (402b) and a negative stirring blade (402c) disposed on the rotating shaft (402a), and a spiral blade (402d) disposed on the positive stirring blade (402b) and the negative stirring blade (402c).

4. The household-use environmentally friendly enzyme fermentation machine as described in claim 3, characterized in that: The pushing member (404) also includes a guide plate (404d) disposed on the sliding ring (404b), the guide plate (404d) being wavy and inclinedly disposed on the inner surface of the sliding ring (404b).

5. The household-use environmentally friendly enzyme fermentation machine as described in claim 3 or 4, characterized in that: The snap fastener (303) is provided with an outer arc surface (M) and an inner arc surface (P); The locking block (403c-2) is provided with an upper arc surface (Q) and a lower arc surface (N).

6. The household-use environmentally friendly enzyme fermentation machine as described in any one of claims 1-4, characterized in that: The support mechanism (100) includes a support base (101), a support frame (102) disposed on the support base (101), and a rotating component (103) disposed on the support frame (102). The rotating component (103) includes a shaft (103a) disposed on the support frame (102) and a snap-fit ​​portion (103b) disposed on the shaft (103a). The storage mechanism (200) also includes a connector (206) disposed on the container (201); The connector (206) includes a limiting sleeve (206a) disposed on the receiving body (201) and a limiting groove (206b) disposed on the limiting sleeve (206a).

7. The household-use environmentally friendly enzyme fermentation machine as described in claim 6, characterized in that: The snap-fit ​​part (103b) includes a snap-fit ​​plate (103b-1) and a protrusion (103b-2) disposed on the shaft (103a). The limiting groove (206b) includes a sliding groove (206b-1), a first positioning groove (206b-2), a second positioning groove (206b-3), and a receiving groove (206b-4) provided on the limiting sleeve (206a).

Citation Information

Patent Citations

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