Multifunctional enzymolysis extraction equipment
By designing a multifunctional enzymatic extraction device, which utilizes heating wire, mixing components, and filtration components, the problem of complex operation of traditional equipment has been solved, achieving efficient extraction of anti-aging raw materials and reducing workload.
Patent Information
- Application Number
- CN202520275051.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-20
AI Technical Summary
In existing technologies, traditional raw material mixing equipment is complex to operate during enzymatic hydrolysis, resulting in low extraction efficiency of anti-aging raw materials and increasing the workload of staff.
A multifunctional enzymatic hydrolysis extraction device was designed, comprising a stirring component and a separation component. The device simplifies the process and improves extraction efficiency through heating with an electric heating wire, monitoring with a temperature sensor, mixing with a stirring rack, and filtration with a separation chamber.
By simplifying the process, the extraction efficiency of anti-aging raw materials has been improved, and the workload of staff has been reduced.
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Figure CN223793172U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of anti-aging raw material extraction technology, and in particular to a multifunctional enzymatic extraction device. Background Technology
[0002] With the continuous advancement of biotechnology and the expansion of its application fields, collagen peptides and glutathione, as important anti-aging raw materials, require efficient extraction and separation for their application in health products, cosmetics, and pharmaceuticals. Traditional extraction methods have low efficiency and are not conducive to rapid production.
[0003] Currently, mixing is achieved using raw material mixing equipment. Existing raw material mixing equipment is generally equipped with a mixing rack and a mechanism that tumbles the base material inside the rotating drum. This ensures uniform mixing of the base material and enzyme solution, facilitating subsequent use. This method is highly efficient and convenient for workers in production.
[0004] However, using the above method, the stirring rack is rotated by a drive motor to evenly mix the base material and enzyme solution, facilitating subsequent heating and purification. However, the entire enzymatic hydrolysis process is relatively complex, which is not conducive to improving the efficiency of extracting anti-aging raw materials (collagen peptides, glutathione) and increases the workload of staff. Utility Model Content
[0005] The purpose of this invention is to provide a multifunctional enzymatic extraction device, which aims to solve the problems of complex operation in the existing technology, which is not conducive to improving the efficiency of extracting anti-aging raw materials and increasing the workload of staff.
[0006] To achieve the above objectives, this utility model provides a multifunctional enzymatic extraction device, comprising a housing and a connecting unit. The connecting unit includes an inner shell, a connecting chamber, a discharge pipe, a solenoid valve, a temperature sensor, a heating wire, a mounting base, a side door, a controller, a stirring assembly, and a separation assembly. The connecting unit is disposed on the inner wall of the housing. The inner shell is fixedly connected to the housing and located on the inner wall of the housing. The side door is hinged to the housing and located on one side of the housing. The connecting chamber is fixedly connected to the inner shell and located on the outer wall of the inner shell. The mounting base is fixedly connected to the connecting chamber and located on the outer wall of the connecting chamber. The inner wall of the housing is provided. The heating wire is detachably connected to the mounting base and located on one side of the mounting base. The discharge pipe is connected to the inner shell and located below the inner shell. The discharge pipe passes through the connecting chamber and the housing in sequence. The controller is fixedly connected to the housing and located on the outer wall of the housing. The temperature sensor is fixedly connected to the housing and located on the inner wall of the housing. The temperature sensor is electrically connected to the controller. The solenoid valve is connected to the discharge pipe and located on the inner wall of the discharge pipe. The stirring assembly is connected to the housing. The separation assembly is located below the discharge pipe.
[0007] The stirring assembly includes a stirring frame, a mounting frame, and a connecting frame. The stirring frame is disposed on the inner side wall of the housing and is adapted to the inner shell. The connecting frame is fixedly connected to the stirring frame and is located above the stirring frame. The mounting frame is fixedly connected to the housing and is located above the housing.
[0008] The stirring assembly further includes a pH sensor, which is fixedly connected to the stirring frame and located on the outer side wall of the stirring frame. The pH sensor is electrically connected to the controller.
[0009] The separation assembly includes a separation chamber, a screening plate, and a sealing plate. The separation chamber is connected to the discharge pipe and is located below the discharge pipe. The separation chamber has a slid groove that is slidably engaged with the screening plate. The sealing plate is fixedly connected to the screening plate and is located on one side of the screening plate. The sealing plate is detachably engaged with the separation chamber.
[0010] The separation assembly further includes a valve pipe and a vibrator. The valve pipe is connected to the separation chamber and is located below the separation chamber. The vibrator is fixedly connected to the screening plate and is located below the screening plate.
[0011] This utility model discloses a multifunctional enzymatic extraction device. During use, the base material and enzyme solution are placed inside the inner shell, the side door is closed, and the heating wire is activated by clicking the controller. Heat is generated using thermal conductivity. A temperature sensor transmits the internal temperature of the chamber to the controller in real time. After processing, the separation component performs filtration, and the stirring component mixes the base material and enzyme solution. This method improves the efficiency of extracting anti-aging raw materials, reduces complex processes, and effectively decreases the workload of workers. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the structure of the multifunctional enzymatic hydrolysis extraction device of this utility model.
[0014] Figure 2 This is a right view of the multifunctional enzymatic hydrolysis extraction device of this utility model.
[0015] Figure 3 This is the utility model Figure 2 A sectional view along line AA.
[0016] Figure 4 This is the utility model Figure 3 Enlarged view of the local structure at point B.
[0017] 101-Box body, 102-Inner shell, 103-Connecting chamber, 104-Discharge pipe, 105-Solenoid valve, 106-Temperature sensor, 107-Heating wire, 108-Mounting base, 109-Side door, 110-Controller, 111-Stirring rack, 112-Mounting rack, 113-Connecting rack, 114-pH sensor, 115-Separation chamber, 116-Sieve plate, 117-Sealing plate, 118-Valve pipe, 119-Vibrator, 120-Chutter, 121-Drive motor. Detailed Implementation
[0018] Please see Figures 1 to 4 ,in, Figure 1 This is a schematic diagram of the structure of the multifunctional enzymatic hydrolysis extraction device of this utility model. Figure 2 This is a right view of the multifunctional enzymatic extraction device of this utility model. Figure 3 This is the utility model Figure 2 AA-line sectional view, Figure 4 This is the utility model Figure 3 Enlarged view of the local structure at point B.
[0019] This utility model provides a multifunctional enzymatic extraction device, including a housing 101 and a connecting unit. The connecting unit includes an inner shell 102, a connecting chamber 103, a discharge pipe 104, a solenoid valve 105, a temperature sensor 106, a heating wire 107, a mounting base 108, a side door 109, a controller 110, a stirring assembly, and a separation assembly. The stirring assembly includes a stirring frame 111, a mounting frame 112, a connecting frame 113, and a pH sensor 114. The separation assembly includes a separation chamber 115, a sieve plate 116, a sealing plate 117, a valve pipe 118, and a vibrator 119. The separation chamber 115 has a chute 120.
[0020] The connecting unit is disposed on the inner side wall of the housing 101; the inner shell 102 is fixedly connected to the housing 101 and located on the inner side wall of the housing 101; the side door 109 is hinged to the housing 101 and located on one side of the housing 101; the connecting compartment 103 is fixedly connected to the inner shell 102 and located on the outer side wall of the inner shell 102; the mounting base 108 is fixedly connected to the connecting compartment 103 and located on the inner side wall of the connecting compartment 103; the heating wire 107 is detachably connected to the mounting base 108 and located on one side of the mounting base 108; the discharge pipe 104 is connected to the inner shell 102. The discharge pipe 104 passes through the connecting chamber 103 and the box body 101 in sequence. The controller 110 is fixedly connected to the box body 101 and is located on the outer side wall of the box body 101. The temperature sensor 106 is fixedly connected to the box body 101 and is located on the inner side wall of the box body 101. The temperature sensor 106 is electrically connected to the controller 110. The solenoid valve 105 is connected to the discharge pipe 104 and is located on the inner side wall of the discharge pipe 104. The stirring assembly is connected to the box body 101. The separation assembly is located below the discharge pipe 104.
[0021] In this embodiment, the base material and enzyme solution are placed inside the inner shell 102, the side door 109 is closed, and the heating wire 107 is activated by clicking the controller 110 to raise the temperature using thermal conductivity. The temperature sensor 106 transmits the temperature inside the chamber 101 to the controller 110 in real time. After processing, the separation component is used for filtration, and the stirring component is used to stir and mix the base material and enzyme solution. This method improves the efficiency of extracting anti-aging raw materials, reduces complex processes, and effectively reduces the workload of workers.
[0022] The controller 110 can be a programmable PLC, and the temperature sensor 106 is a PT100: its resistance is 100 ohms at 0℃ and changes with temperature.
[0023] Furthermore, the stirring rack 111 is disposed on the inner side wall of the housing 101, and the stirring rack 111 is adapted to the inner shell 102. The connecting frame 113 is fixedly connected to the stirring rack 111 and is located above the stirring rack 111. The mounting frame 112 is fixedly connected to the housing 101 and is located above the housing 101.
[0024] In this embodiment, the drive motor 121 is fixed to the mounting frame 112 and its output end is connected to the connecting frame 113. The controller 110 is clicked to start the drive motor 121, which drives the stirring frame 111 to rotate, thereby generating a stirring force to evenly stir and mix the base material and enzyme solution.
[0025] Furthermore, the pH sensor 114 is fixedly connected to the stirring rack 111 and located on the outer side wall of the stirring rack 111, and the pH sensor 114 is electrically connected to the controller 110.
[0026] In this embodiment, the pH sensor 114 monitors the acidity and alkalinity values inside the inner shell 102 in real time, which is convenient for staff to observe.
[0027] The pH sensor 114 is a pHEX112SE type: a sealed glass column pH electrode, without silver chloride material, with a measurement range of pH value of 112 and temperature of 0℃ to 100℃.
[0028] Furthermore, the separation chamber 115 is connected to the discharge pipe 104 and is located below the discharge pipe 104. The separation chamber 115 has a sliding groove 120, which is slidably engaged with the screening plate 116. The sealing plate 117 is fixedly connected to the screening plate 116 and is located on one side of the screening plate 116. The sealing plate 117 is detachably engaged with the separation chamber 115.
[0029] In this embodiment, when the solenoid valve 105 is opened, the processed liquid is discharged from the discharge pipe 104 into the separation chamber 115. The original liquid drips from the small holes on the sieve plate 116 to the bottom of the separation chamber 115 by gravity, while impurities accumulate on the top of the sieve plate 116, making it convenient for workers to use.
[0030] Furthermore, the valve pipe 118 is connected to the separation chamber 115 and is located below the separation chamber 115, and the vibrator 119 is fixedly connected to the screening plate 116 and is located below the screening plate 116.
[0031] In this embodiment, the valve pipe 118 is used to discharge the processed raw liquid, and the vibration generated by the vibrator 119, in conjunction with the sieve plate 116, can quickly filter the liquid and improve production efficiency.
[0032] The above-disclosed embodiments are merely preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art will understand that all or part of the processes for implementing the above embodiments, and equivalent variations made in accordance with the claims of this application, still fall within the scope of this application.
Claims
1. A multifunctional enzymatic extraction device comprising a box, characterized in that, It also includes a connecting unit, which is arranged on the inner side wall of the box; The connecting unit comprises an inner shell, a connecting bin, a discharge pipe, a solenoid valve, a temperature sensor, an electric heating wire, a mounting seat, a side door, a controller, a stirring assembly and a separation assembly, the inner shell is fixedly connected with the box and located on the inner side wall of the box, the side door is hingedly connected with the box and located on one side of the box, the connecting bin is fixedly connected with the inner shell and located on the outer side wall of the inner shell, the mounting seat is fixedly connected with the connecting bin and located on the inner side wall of the connecting bin, the electric heating wire is detachably connected with the mounting seat and located on one side of the mounting seat, the discharge pipe is in communication with the inner shell and located below the inner shell, and the discharge pipe penetrates the connecting bin and the box in sequence, the controller is fixedly connected with the box and located on the outer side wall of the box, the temperature sensor is fixedly connected with the box and located on the inner side wall of the box, and the temperature sensor is electrically connected with the controller, the solenoid valve is in communication with the discharge pipe and located on the inner side wall of the discharge pipe, the stirring assembly is connected with the box, and the separation assembly is arranged below the discharge pipe.
2. The multifunctional enzymatic extraction device according to claim 1, characterized in that, The stirring assembly comprises a stirring frame, a mounting frame and a connecting frame, the stirring frame is arranged on the inner side wall of the box, and the stirring frame is adapted to the inner shell, the connecting frame is fixedly connected with the stirring frame and located above the stirring frame, and the mounting frame is fixedly connected with the box and located above the box.
3. The multifunctional enzymatic extraction device according to claim 2, characterized in that, The stirring assembly further comprises a pH sensor, the pH sensor is fixedly connected with the stirring frame and located on the outer side wall of the stirring frame, and the pH sensor is electrically connected with the controller.
4. The multifunctional enzymatic extraction device according to claim 3, characterized in that, The separation assembly comprises a separation bin, a screening plate and a sealing plate, the separation bin is in communication with the discharge pipe and located below the discharge pipe, the separation bin has a chute, the chute is slidingly matched with the screening plate, the sealing plate is fixedly connected with the screening plate and located on one side of the screening plate, and the sealing plate is detachably matched with the separation bin.
5. The multifunctional enzymatic extraction device according to claim 4, characterized in that, The separation assembly further comprises a valve pipe and a vibrator, the valve pipe is in communication with the separation bin and located below the separation bin, and the vibrator is fixedly connected with the screening plate and located below the screening plate.