Ferment producing and blending device
By using heating elements and insulation components in the enzyme production and preparation device, the problem of enzyme liquid outlet pipe adhesion was solved, enabling precise control of enzyme discharge and convenient cleaning, thus improving the device's performance.
Patent Information
- Application Number
- CN202423197593.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing enzyme production and preparation equipment is prone to enzyme buildup in the outlet pipe when the enzyme is viscous and the temperature is low. This results in a difference between the actual output and the expected output, causing a large error in the mixing ratio and making cleaning inconvenient.
Heating elements are used to heat the discharge pipe, combined with a disconnection mechanism and insulation components to ensure smooth discharge of enzymes and prevent adhesion. The thermal conductivity of copper and the insulation properties of the insulation sleeve are utilized to avoid changes in enzyme viscosity and inconvenience in cleaning.
It achieves precise control of enzyme output, reduces proportioning errors, improves cleaning efficiency and device safety, and extends the service life of the insulation jacket.
Smart Images

Figure CN223805096U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to enzyme deployment technical field, concretely is a kind of enzyme production deployment device. BACKGROUND
[0002] Enzyme refers to the product containing specific biological active ingredient, which is prepared by microbial fermentation using animals, plants and fungi as raw materials. Enzyme is also known as enzyme. Enzyme is a kind of very important biological catalyst. Due to the action of enzyme, the chemical reactions in the organism can be carried out efficiently and specifically under very mild conditions. The chemical nature of enzyme is protein. According to the difference in molecular composition, enzyme can be divided into simple enzyme and combined enzyme. Simple enzyme only contains protein. Combined enzyme is composed of enzyme protein and auxiliary factor. Most hydrolytic enzymes are composed of protein. Flavin mononucleotide enzyme is composed of enzyme protein and auxiliary factor. The enzyme protein in combined enzyme is the protein part, and the auxiliary factor is the non-protein part. Only when the two are combined into whole enzyme, it has catalytic activity.
[0003] For example, the patent document with the application number CN202220896868.4 discloses a mixing and deployment device for enzyme production, which comprises a base, a support column vertically arranged on the top of the base, a support horizontally arranged on the top of the support column, a mixing cylinder vertically arranged on the center line of the base, and a liquid guide pipe connected between the bottom of the mixing cylinder and the liquid guide pipe. The utility model can make the enzyme flow into the mixing cylinder according to the proportion, control the mixing proportion of the enzyme, and fully mix and uniformly stir the enzyme. The utility model can rotate the deployment cylinder to the liquid inlet of the mixing cylinder, facilitate the collection of different types of enzyme, and solve the confusion during the deployment and injection of enzyme by pasting labels on the deployment cylinder. The utility model has a simple structure, and the stirring mechanism can scrape the enzyme adhered to the cylinder wall while ensuring the uniform mixing of the enzyme in the cylinder, avoid waste, and facilitate cleaning.
[0004] Based on the above-mentioned patent search and combined with the existing technical equipment, the above-mentioned equipment can solve the problem of proportion control during the deployment and mixing of different types of enzyme in the enzyme production process. The existing deployment and mixing equipment has the problem of difference in the concentration of deployed enzyme liquid, and the enzyme adhered to the cylinder wall after mixing needs to be cleaned in time, which requires high cleaning work and is easy to leave residues, which can mix with the enzyme during the next deployment and mixing, and affect the composition of the enzyme.
[0005] However, during use, the part of the liquid outlet pipe may be adhered with a large amount of enzyme due to the high viscosity and low temperature of the enzyme, which may cause the actual amount of discharged enzyme to be different from the expected amount of discharged enzyme, resulting in a large error in the original set ratio. SUMMARY
[0006] To solve the problems raised in the background art, the utility model discloses a kind of enzyme production blending device, with the advantage of heating anti-sticking, solve the part of liquid outlet pipe due to enzyme is relatively viscous and temperature is lower, cause enzyme to be easily caused to adhere more enzyme in the inner wall of liquid outlet pipe when the interval time of discharging is long, cause the enzyme amount of actual discharge and the enzyme amount of expected discharge are different, make the problem of relatively large error with originally set proportioning.
[0007] To achieve the above object, the utility model provides the following technical scheme: a kind of enzyme production blending device, including blending cylinder, flow control valve, metering pump and discharge pipe, the bottom of the blending cylinder is communicated with the top of the flow control valve, the bottom of the flow control valve is communicated with the input end of the metering pump, the top of the discharge pipe is communicated with the output end of the metering pump, both sides of the discharge pipe are contacted with heating sheet, the material of the discharge pipe is copper, the top of the outside of the heating sheet is fixedly connected with disconnecting mechanism, the surface of the blending cylinder is equipped with heat preservation component.
[0008] As preferred by the utility model, the disconnecting mechanism includes a plug-in column, the inside of the plug-in column is fixedly connected with the top of the outside of the heating sheet, the outside of the surface of the plug-in column is equipped with rubber ring, the bottom of both sides of the metering pump is fixedly connected with connecting plate, the bottom of the outside of the connecting plate is provided with plug-in hole.
[0009] As preferred by the utility model, the heat preservation component includes heat preservation sleeve, the heat preservation sleeve is equipped on the surface of the blending cylinder, the surface of the heat preservation sleeve is equipped with reflective heat insulation sleeve.
[0010] As preferred by the utility model, the top of the outside of the heating sheet is fixedly connected with force applying piece, the force applying piece is made of material with poor thermal conductivity.
[0011] As preferred by the utility model, the top of the force applying piece is fixedly connected with support sliding seat, support rod is slid in the inside of the support sliding seat, the inside of the support rod is fixedly connected with the outside of the connecting plate.
[0012] As preferred by the utility model, the outside of the support rod is fixedly connected with limit disc, the diameter of the limit disc is greater than the diameter of the inner wall of the support sliding seat.
[0013] As preferred by the utility model, the bottom of the front of the discharge pipe is fixedly connected with prompt block, the prompt block is made of heat-sensitive color-changing material.
[0014] Compared with prior art, the utility model has the beneficial effects as follows:
[0015] 1. The utility model discloses a heating sheet is set up, and the heating sheet can heat the discharge pipe constantly to make the ferment in the discharge pipe not adhere to the inner wall of the discharge pipe under the influence of heat, solve the part of the liquid outlet pipe under the condition that the ferment is relatively sticky and the temperature is lower, cause the ferment to be easy to cause the inner wall of the liquid outlet pipe to adhere to more ferment when the interval time of discharging is long, cause the ferment amount of actual discharge and the ferment amount of expected discharge to be different, make the problem that the matching error of originally set is big, reach the effect that heating prevents sticking.
[0016] The utility model discloses a disconnect mechanism is set up, when needing to clean the discharge pipe, the user can pull the heating sheet to the outside, make heating sheet drive the plug -in column to move to the outside, then the plug -in column will carry the rubber ring and insert the plug -in hole on the connecting plate, make the rubber ring produce deformation when contacting the plug -in hole and restore when the rubber ring is outside the connecting plate, can make the heating plate no longer contact heating with the discharge pipe, then close the heating plate, avoid the heat of heating plate to drop too slowly and thus influence the cooling speed of discharge pipe when closing the heating plate directly, make the discharge pipe can carry out the cooling of single directly, guarantee cooling efficiency, so that the user cleans the discharge pipe in time, avoid scalding the user.
[0017] The utility model discloses a heat preservation assembly is set up, and the ferment in the deployment cylinder can be set up heat preservation with heat preservation cover, avoid the ferment in the deployment cylinder with the outside heat conduction through the deployment cylinder and cause the cooling of deployment cylinder interior to improve the ferment viscosity, and the light -reflecting heat -insulating cover can have excellent reflection performance, thereby avoiding the aging damage of sunlight direct -fire to the heat -insulating cover, improve the service life of heat preservation cover. ACCURACY OF DRAWINGS
[0018] Fig. 1 It is the three -dimensional structure schematic diagram of the utility model;
[0019] Fig. 2 It is the three -dimensional structure schematic diagram of the discharge pipe of the utility model;
[0020] Fig. 3 It is the deployment cylinder structure schematic diagram of the utility model.
[0021] In the drawing: 1, deployment cylinder;2, flow control valve;3, metering pump;4, discharge pipe;5, heating sheet;6, disconnect mechanism;61, plug -in column;62, rubber ring;63, connecting plate;64, plug -in hole;7, heat preservation assembly;71, heat preservation cover;72, light -reflecting heat -insulating cover;8, force -application spare;9, support sliding seat;10, support rod;11, limit disc;12, prompt block. SPECIFIC IMPLEMENTATION
[0022] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.
[0023] As shown in Figs. 1 to 3 The present application provides an enzyme production and blending device, which comprises a blending cylinder 1, a flow control valve 2, a metering pump 3 and a discharge pipe 4. The bottom of the blending cylinder 1 is in communication with the top of the flow control valve 2. The bottom of the flow control valve 2 is in communication with the input end of the metering pump 3. The top of the discharge pipe 4 is in communication with the output end of the metering pump 3. The two sides of the discharge pipe 4 are in contact with heating sheets 5. The material of the discharge pipe 4 is copper. The top of the outer side of the heating sheet 5 is fixedly connected with a disconnecting mechanism 6. The surface of the blending cylinder 1 is provided with a heat preservation assembly 7.
[0024] Referring to Fig. 2 The disconnecting mechanism 6 comprises a plug-in column 61. The inner side of the plug-in column 61 is fixedly connected with the top of the outer side of the heating sheet 5. The outer side of the surface of the plug-in column 61 is provided with a rubber ring 62. The bottom of each side of the metering pump 3 is fixedly connected with a connecting plate 63. The bottom of the outer side of the connecting plate 63 is provided with a plug-in hole 64.
[0025] As a technical optimization scheme of the present application, when it is necessary to clean the discharge pipe 4, the user can pull the heating sheet 5 outward, so that the heating sheet 5 drives the plug-in column 61 to move outward. Then the plug-in column 61 carries the rubber ring 62 into the plug-in hole 64 on the connecting plate 63. When the rubber ring 62 is in contact with the plug-in hole 64, the rubber ring 62 deforms and restores when it is on the outer side of the connecting plate 63. Thus, the heating plate no longer contacts and heats the discharge pipe 4. Then the heating plate is turned off. Avoiding the slow decline of the heat of the heating plate caused by directly turning off the heating plate, which affects the cooling speed of the discharge pipe 4. The discharge pipe 4 can be directly cooled alone, which ensures the cooling efficiency and allows the user to clean the discharge pipe 4 in time, avoiding scalding the user.
[0026] Referring to Fig. 3 The heat preservation assembly 7 comprises a heat preservation sleeve 71. The heat preservation sleeve 71 is provided on the surface of the blending cylinder 1. The surface of the heat preservation sleeve 71 is provided with a reflective heat insulation sleeve 72.
[0027] As a technical optimization scheme of the utility model, through setting heat preservation assembly 7, the enzyme in the deployment cylinder 1 can be sleeved and preserved by heat preservation sleeve 71, which avoids the heat conduction between the deployment cylinder 1 and the outside world caused by the high temperature enzyme in the deployment cylinder 1, thereby improving the enzyme viscosity, and the light-reflecting heat insulation sleeve 72 can have excellent reflection performance, thereby avoiding the aging damage of sunlight direct irradiation on the heat insulation sleeve, and improving the service life of the heat preservation sleeve 71.
[0028] Reference Fig. 2 The top of the heating sheet 5 outside is fixedly connected with a force applying piece 8, which is made of a material with poor thermal conductivity.
[0029] As a technical optimization scheme of the utility model, when the user needs to pull the heating plate or reset the heating plate, the user can push or pull outward by buckling the force applying piece 8, thereby giving the user a convenient force applying point, and the force applying piece 8 is made of a material with poor thermal conductivity, thereby reducing the heat conduction generated by the heating plate on the force applying piece 8 and avoiding the user's hand being scalded when pulling the force applying piece 8.
[0030] Reference Fig. 2 The top of the force applying piece 8 is fixedly connected with a supporting sliding seat 9, and the supporting sliding seat 9 is internally slidably connected with a supporting rod 10, and the inner side of the supporting rod 10 is fixedly connected with the outer side of the connecting plate 63.
[0031] As a technical optimization scheme of the utility model, the supporting sliding seat 9 and the supporting rod 10 are arranged, the supporting rod 10 can limit the up and down of the heating plate during use, and the supporting effect of the heating plate is ensured, and when the heating plate needs to move left and right, the supporting sliding seat 9 and the supporting rod 10 are movably connected, thereby ensuring the movability of the heating plate while being limited and supported up and down.
[0032] Reference Fig. 2 The outer side of the supporting rod 10 is fixedly connected with a limiting disc 11, and the diameter of the limiting disc 11 is greater than the diameter of the inner wall of the supporting sliding seat 9.
[0033] As a technical optimization scheme of the utility model, the limiting disc 11 is arranged, the diameter of the limiting disc 11 is greater than the diameter of the inner wall of the supporting sliding seat 9, thereby limiting the maximum moving space of the supporting sliding seat 9 left and right, avoiding the separation between the supporting sliding seat 9 and the supporting rod 10 caused by the excessive moving distance of the supporting sliding seat 9, and improving the use stability.
[0034] Reference Fig. 2 The bottom of the front of the discharge pipe 4 is fixedly connected with a prompt block 12, and the prompt block 12 is made of a heat-sensitive color-changing material.
[0035] As a technical optimization scheme of the utility model, through setting up the prompt block 12, when the discharge pipe 4 is heated, part of the heat is conducted to the prompt block 12, the prompt block 12 is made of heat-sensitive color-changing material, so that the color of the prompt block 12 is different when the temperature is high and when the temperature is low, at this time, the user can distinguish the color of the prompt block 12 to know whether the discharge pipe 4 is hot.
[0036] The working principle and use process of the utility model: the enzyme liquid in the blending cylinder 1 is controlled to flow out through the flow control valve 2, and then the amount of enzyme is controlled through the metering pump 3, so that the enzyme can be discharged through the discharge pipe 4 according to the proportion, the heating sheet 5 is started to heat the discharge pipe 4 continuously, so that the enzyme in the discharge pipe 4 is not attached to the inner wall of the discharge pipe 4 under the influence of heat, and the enzyme flows down smoothly, and then the good heat conductivity of the metal cylinder is utilized to improve the heating efficiency of the heating sheet 5 on the discharge pipe 4.
[0037] The enzyme in the blending cylinder 1 can be sleeved with the heat preservation sleeve 71 to avoid the heat conduction between the blending cylinder 1 and the outside caused by the high-temperature enzyme in the blending cylinder 1, so as to reduce the temperature in the blending cylinder 1 and improve the viscosity of the enzyme, and the light-reflecting heat insulation sleeve 72 can have excellent reflecting performance, so as to avoid the aging damage caused by direct sunlight to the heat insulation sleeve and improve the service life of the heat preservation sleeve 71.
[0038] When the discharge pipe 4 needs to be cleaned, the user can pull the heating sheet 5 outward, so that the heating sheet 5 drives the plug-in column 61 to move outward, then the plug-in column 61 carries the rubber ring 62 and inserts it into the plug-in hole 64 on the connecting plate 63, so that the rubber ring 62 deforms when it contacts the plug-in hole 64 and restores when it is outside the connecting plate 63, so that the heating plate no longer contacts and heats the discharge pipe 4, and then the heating plate is closed, avoiding the slow heat drop of the heating plate caused by directly closing the heating plate, so as to affect the cooling speed of the discharge pipe 4, so that the discharge pipe 4 can be cooled directly and independently to ensure the cooling efficiency, so that the user can clean the discharge pipe 4 in time and avoid scalding the user.
[0039] In summary: the enzyme production blending device is provided with the heating sheet 5, the heating sheet 5 is started to heat the discharge pipe 4 continuously, so that the enzyme in the discharge pipe 4 is not attached to the inner wall of the discharge pipe 4 under the influence of heat, which solves the problem that part of the liquid outlet pipe is easily attached with more enzyme on the inner wall when the enzyme is relatively viscous and the temperature is relatively low, the actual discharge amount of enzyme is different from the expected discharge amount of enzyme, and the set proportion error is large.
[0040] It should be noted that the relational terms herein, such as first and second, and the like, are used solely to distinguish one from another entity or action without necessarily requiring or implying any actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0041] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.
Claims
1. An enzyme production formulation device comprising a formulation cylinder (1), a flow control valve (2), a metering pump (3) and a discharge pipe (4), characterized in that: The bottom of the dispensing cylinder (1) is communicated with the top of the flow control valve (2), the bottom of the flow control valve (2) is communicated with the input end of the metering pump (3), the top of the discharge pipe (4) is communicated with the output end of the metering pump (3), both sides of the discharge pipe (4) are in contact with heating pieces (5), the material of the discharge pipe (4) is copper, the top of the outer side of the heating piece (5) is fixedly connected with a disconnecting mechanism (6), and the surface of the dispensing cylinder (1) is sleeved with a heat preservation assembly (7).
2. The enzyme production preparation device according to claim 1, characterized by: The disconnecting mechanism (6) comprises a plug-in column (61), the inner side of the plug-in column (61) is fixedly connected with the top of the outer side of the heating piece (5), the outer side of the surface of the plug-in column (61) is sleeved with a rubber ring (62), the bottom of both sides of the metering pump (3) is fixedly connected with a connecting plate (63), and the bottom of the outer side of the connecting plate (63) is provided with a plug-in hole (64).
3. The enzyme production formulation device according to claim 1, wherein: The heat preservation assembly (7) comprises a heat preservation sleeve (71), the heat preservation sleeve (71) is sleeved on the surface of the dispensing cylinder (1), and the surface of the heat preservation sleeve (71) is sleeved with a reflective heat insulation sleeve (72).
4. The enzyme production preparation device according to claim 2, characterized by: The top of the outer side of the heating piece (5) is fixedly connected with a force applying piece (8), and the force applying piece (8) is made of a material with poor thermal conductivity.
5. The enzyme production formulation device according to claim 4, wherein: The top of the force applying piece (8) is fixedly connected with a supporting sliding seat (9), the supporting sliding seat (9) is internally sleeved with a supporting rod (10), and the inner side of the supporting rod (10) is fixedly connected with the outer side of the connecting plate (63).
6. The enzyme production formulation device according to claim 5, wherein: The outer side of the supporting rod (10) is fixedly connected with a limiting disc (11), and the diameter of the limiting disc (11) is greater than that of the inner wall of the supporting sliding seat (9).
7. The enzyme production formulation device according to claim 1, wherein: The bottom of the front of the discharge pipe (4) is fixedly connected with a prompt block (12), and the prompt block (12) is made of a heat-sensitive color-changing material.
Citation Information
Patent Citations
Mixing and blending device for enzyme production
CN217016305U