Microbial fermentation gene recombinant protein water bath device
By introducing a drive component and a clamping component into the water bath device, the problem of burns caused by the high internal temperature of the water bath device is solved, and the safe handling of the culture box is achieved, improving the convenience and safety of use.
Patent Information
- Application Number
- CN202422884491.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing microbial fermentation recombinant protein water bath devices experience an increase in internal temperature after operation, which can easily cause burns to users when handling the culture boxes.
A microbial fermentation recombinant protein water bath device was designed, including a water bath, support feet, adjustment components, observation window, and scraper. The device uses a drive component to drive a rotating rod and a lifting plate to lift the grid box and fix the clamping components, ensuring the safe placement and removal of the culture box.
This effectively prevents users from getting burned when handling the culture box, improving the ease of use and safety of the device.
Smart Images

Figure CN223766326U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water bath device technology, and in particular to a water bath device for microbial fermentation of recombinant protein genes. Background Technology
[0002] Microbial fermentation of recombinant proteins requires water bath treatment during the production process. Currently, water bath is a heating method that uses water as a heat transfer medium. The vessel containing the substance to be heated is placed in the water and heated after the water boils. However, the boiling water temperature inside the water bath is not uniform. The water temperature near the heating device is higher than that far from the heating device, and the vessel is heated while still soaking, which easily leads to uneven heating of the vessel.
[0003] To address the aforementioned issues, existing patent (CN210856099U) discloses a microbial fermentation recombinant albumin water bath device, comprising a water bath, an internal support rod, a grid seat at the top of the support rod, a culture box inside the grid seat, an anti-slip ring on the inner wall of the grid seat, a sliding annular groove on the top surface of the grid seat, a connecting plate connected inside the sliding annular groove, a connecting rod on the surface of the connecting plate, the connecting rod being fixed to the bottom surface of a turntable, and an extension rod on the side wall of the turntable. The beneficial effect is that the water bath device proposed in this invention adds a rotating handle to the cover plate, which is fixed to the upper part of the turntable. This handle can drive the turntable and the stirring structure connected to the turntable to stir the boiling water, making the boiling water temperature uniform. Furthermore, during the stirring process, the boiling water forms a fluid that rotates around the culture box, improving the heating uniformity of the culture box.
[0004] However, in the aforementioned prior art, the internal temperature of the water bath device will rise after the operation is completed. The culture box is placed inside the water bath device, which can easily cause burns to the hands of users when they take it out. Utility Model Content
[0005] The purpose of this invention is to provide a water bath device for microbial fermentation of recombinant proteins, which solves the technical problem in the prior art where the internal temperature of the water bath device rises after operation, and the culture box placed inside the water bath device can easily cause burns to the hands of users when they handle it.
[0006] To achieve the above objectives, this utility model employs a microbial fermentation recombinant protein water bath device, comprising a water bath, four supporting legs, and an adjustment assembly. The four supporting legs are fixedly connected to the water bath and located below it. The adjustment assembly includes a drive component, a rotating rod, a fixed seat, a sealing bushing, a lifting plate, a lifting frame, a mesh box, and a clamping component. The drive component is fixedly connected to the water bath and located outside it. The rotating rod is fixedly connected to the drive component and located inside the water bath, with threads on its surface. The fixed seat is rotatably connected to the rotating rod and located above it. The sealing bushing is fixedly connected to the water bath and fitted onto the outside of the rotating rod. The lifting plate is threadedly connected to the rotating rod and located above the sealing bushing. The lifting frame is fixedly connected to the lifting plate and located above it. The mesh box is fixedly connected to the lifting frame and located above it. The clamping component is rotatably connected to the mesh box and located inside it.
[0007] The driving component includes a lifting motor, a fixed frame, and two stabilizing rods. The output end of the lifting motor is fixedly connected to the rotating rod and located below the water bath. The fixed frame is fixedly connected to the water bath and located outside the fixed base. The two stabilizing rods are fixedly connected to the water bath and located inside the fixed frame, and the stabilizing rods pass through the lifting plate.
[0008] The clamping component includes an adjusting block, an adjusting rod, and a limiting rod. The adjusting block is fixedly connected to one end of the adjusting rod and is located outside the mesh box. The other end of the adjusting rod is rotatably connected to the mesh box and is located inside the mesh box. The adjusting rod has a bidirectional thread on its surface. The limiting rod is fixedly connected to the mesh box and is located outside the adjusting rod.
[0009] The clamping component further includes two movable blocks and two heat-conducting plates. The two movable blocks are threadedly connected to the adjusting rod, and the adjusting rod and the limiting rod pass through the movable blocks. The heat-conducting plates are fixedly connected to the movable blocks and are located on the outside of the movable blocks.
[0010] The microbial fermentation recombinant protein water bath device further includes an observation window and a scraper. The observation window is fixedly connected to the water bath and extends through the water bath. The scraper is slidably connected to the water bath and is located outside the observation window.
[0011] This utility model discloses a microbial fermentation recombinant protein water bath device. In practical use, the driving component drives the rotating rod to rotate within the fixed base. The sealing bushing improves the sealing of the bottom of the water bath. The rotating rod drives the lifting plate to move upward, and the lifting frame pushes the grid box upward to place the culture box inside the grid box. The clamping component fixes the culture box. The driving component rotates in the opposite direction to lower the grid box. This method can effectively solve the problem that the high internal temperature of the water bath device can easily cause burns to the hands of users when handling the culture box. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0013] Figure 1 This is a schematic diagram of the structure of a microbial fermentation recombinant protein water bath device according to the present invention.
[0014] Figure 2 This is a structural cross-sectional view of a microbial fermentation recombinant protein water bath device according to this utility model.
[0015] Figure 3 This is a partial structural schematic diagram of a microbial fermentation recombinant protein water bath device according to the present invention.
[0016] Figure 4 This is a partial three-dimensional view of a microbial fermentation recombinant protein water bath device according to the present invention.
[0017] 101-Water bath, 102-Supporting foot, 103-Rotating rod, 104-Fixed seat, 105-Sealing bushing, 106-Lifting plate, 107-Lifting frame, 108-Grid box, 109-Lifting motor, 110-Fixed frame, 111-Stabilizing rod, 112-Adjusting block, 113-Adjusting rod, 114-Limiting rod, 115-Moving block, 116-Heat-conducting plate, 117-Observation window, 118-Scraper. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] Please see Figures 1-4,in Figure 1 This is a schematic diagram of the structure of a microbial fermentation recombinant protein water bath device according to this utility model. Figure 2 This is a structural cross-sectional view of a microbial fermentation recombinant protein water bath device according to this utility model. Figure 3 This is a partial structural schematic diagram of a microbial fermentation recombinant protein water bath device according to the present invention. Figure 4 This is a partial three-dimensional view of a microbial fermentation recombinant protein water bath device according to the present invention.
[0020] This utility model provides a water bath device for microbial fermentation of recombinant proteins, including a water bath 101, four supporting legs 102, an adjustment component, an observation window 117, and a scraper 118. The adjustment component includes a drive component, a rotating rod 103, a fixed seat 104, a sealing bushing 105, a lifting plate 106, a lifting frame 107, a mesh box 108, and a clamping component. The drive component includes a lifting motor 109, a fixed frame 110, and two stabilizing rods 111. The clamping component includes an adjustment block 112, an adjustment rod 113, a limiting rod 114, two moving blocks 115, and two heat-conducting plates 116. The aforementioned solution solves the problem that the internal temperature of the water bath device will rise after operation, and the culture box placed inside the water bath device is prone to burns when users handle it.
[0021] In this specific embodiment, the four supporting feet 102 are fixedly connected to the water bath 101 and located below the water bath 101. The adjustment assembly includes a driving component, a rotating rod 103, a fixed seat 104, a sealing bushing 105, a lifting plate 106, a lifting frame 107, a mesh box 108, and a clamping component. The driving component is fixedly connected to the water bath 101 and located outside the water bath 101. The rotating rod 103 is fixedly connected to the driving component and located inside the water bath 101, and the surface of the rotating rod 103 is threaded. The fixed seat 104 is rotatably connected to the rotating rod 103 and located above the rotating rod 103. The sealing bushing 105 is fixedly connected to the water bath 101 and sleeved on the outside of the rotating rod 103. The lifting plate 106 is threadedly connected to the rotating rod 103 and located above the sealing bushing 105. The lifting frame 107 is connected to the lifting plate 106. The support foot 102 supports the water bath 101. The driving component drives the rotating rod 103 to rotate within the fixed seat 104. The sealing bushing 105 improves the sealing of the bottom of the water bath 101. The rotating rod 103 drives the lifting plate 106 to move upward. The lifting frame 107 pushes the grid box 108 to move upward, placing the culture box inside the grid box 108. The clamping component fixes the culture box. The driving component rotates in the opposite direction to lower the grid box 108. This method can effectively solve the problem that the high internal temperature of the water bath device can easily cause burns to the hands of users when handling the culture box.
[0022] The output end of the lifting motor 109 is fixedly connected to the rotating rod 103 and located below the water bath 101. The fixed frame 110 is fixedly connected to the water bath 101 and located outside the fixed base 104. Two stabilizing rods 111 are fixedly connected to the water bath 101 and located inside the fixed frame 110, with the stabilizing rods 111 penetrating the lifting plate 106. The lifting motor 109 drives the rotating rod 103 to rotate. The fixed base 104 is fixed below the fixed frame 110. When the lifting plate 106 moves upward, it slides outside the stabilizing rods 111, thereby enabling the lifting plate 106 to perform stable lifting operations.
[0023] Secondly, the adjusting block 112 is fixedly connected to one end of the adjusting rod 113 and is located outside the mesh box 108. The other end of the adjusting rod 113 is rotatably connected to the mesh box 108 and is located inside the mesh box 108. The surface of the adjusting rod 113 has a bidirectional thread. The limiting rod 114 is fixedly connected to the mesh box 108 and is located outside the adjusting rod 113. When the adjusting block 112 is rotated, the adjusting block 112 drives the adjusting rod 113 to rotate. The limiting rod 114 is located outside the adjusting rod 113.
[0024] Meanwhile, the two movable blocks 115 are threadedly connected to the adjusting rod 113, and the adjusting rod 113 and the limiting rod 114 pass through the movable blocks 115. The heat-conducting plate 116 is fixedly connected to the movable blocks 115 and is located on the outside of the movable blocks 115. The adjusting rod 113 drives the movable blocks 115 to move, and the limiting rod 114 prevents the movable blocks 115 from deviating when moving. The heat-conducting plate 116 clamps and fixes the culture box, and the heat-conducting plate 116 transfers external heat to the culture box, thereby fixing culture boxes of different sizes.
[0025] In addition, the observation window 117 is fixedly connected to the water bath 101 and passes through the water bath 101. The scraper 118 is slidably connected to the water bath 101 and is located outside the observation window 117. The observation window 117 facilitates the observation of the operation inside the water bath 101, and the scraper 118 is used to scrape off the mist inside the observation window 117.
[0026] Using the microbial fermentation recombinant protein water bath device of this embodiment, by setting four support feet 102 and the adjustment component, in specific use, the lifting motor 109 operates, driving the rotating rod 103 to rotate within the fixed base 104. The sealing bushing 105 improves the sealing of the liquid at the bottom of the water bath 101. The rotating rod 103 drives the lifting plate 106 to move upward. When the lifting plate 106 moves, it slides on the outside of the stabilizing rod 111, so that the lifting plate 106 can stably push the lifting frame 107 upward. The frame 107 pushes the grid box 108 upward, placing the culture box inside. The adjusting block 112 is rotated, and the adjusting rod 113 drives the moving block 115 to move. The limiting rod 114 prevents the moving block 115 from shifting during movement. The heat-conducting plate 116 clamps and fixes the culture box. After fixing, the lifting motor 109 reverses to lower and reset the grid box 108. This facilitates convenient placement and retrieval of the culture box by the user, effectively preventing burns to the hands when using the water bath device, and improving the convenience and safety of the device.
[0027] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of the present utility model are still within the scope of the utility model.
Claims
1. A microbial fermentation gene recombination protein water bath device comprising a water bath, characterized in that, It also comprises four supporting feet and an adjusting assembly, the four supporting feet are fixedly connected with the water bath and located below the water bath, the adjusting assembly comprises a driving part, a rotating rod, a fixed seat, a sealing shaft sleeve, a lifting plate, a lifting frame, a grid box and a clamping part, the driving part is fixedly connected with the water bath and located outside the water bath, the rotating rod is fixedly connected with the driving part and located in the water bath, and the surface of the rotating rod is provided with threads, the fixed seat is rotatably connected with the rotating rod and located above the rotating rod, the sealing shaft sleeve is fixedly connected with the water bath and sleeved outside the rotating rod, the lifting plate is threadedly connected with the rotating rod and located above the sealing shaft sleeve, the lifting frame is fixedly connected with the lifting plate and located above the lifting plate, the grid box is fixedly connected with the lifting frame and located above the lifting frame, and the clamping part is rotatably connected with the grid box and located in the grid box.
2. The microbial fermentation gene recombination protein water bath device according to claim 1, characterized in that, the driving part comprises a lifting motor, a fixed frame and two stabilizing rods, the output end of the lifting motor is fixedly connected with the rotating rod and located below the water bath, the fixed frame is fixedly connected with the water bath and located outside the fixed seat, the two stabilizing rods are fixedly connected with the water bath and located in the fixed frame, and the stabilizing rods penetrate through the lifting plate.
3. The microbial fermentation gene recombination protein water bath device according to claim 2, characterized in that, the clamping part comprises an adjusting block, an adjusting rod and a limiting rod, the adjusting block is fixedly connected with one end of the adjusting rod and located outside the grid box, the other end of the adjusting rod is rotatably connected with the grid box and located in the grid box, and the surface of the adjusting rod is provided with bidirectional threads, and the limiting rod is fixedly connected with the grid box and located outside the adjusting rod.
4. The microbial fermentation gene recombination protein water bath device according to claim 3, characterized in that, the clamping part further comprises two moving blocks and two heat-conducting plates, the two moving blocks are threadedly connected with the adjusting rod, and the adjusting rod and the limiting rod penetrate through the moving blocks, and the heat-conducting plates are fixedly connected with the moving blocks and located outside the moving blocks.
5. The microbial fermentation gene recombination protein water bath device according to claim 4, characterized in that, the microbial fermentation gene recombination protein water bath device further comprises an observation window and a scraper, the observation window is fixedly connected with the water bath and penetrates through the water bath, and the scraper is slidably connected with the water bath and located outside the observation window.
Citation Information
Patent Citations
Microbial fermentation gene recombinant albumin water bath device
CN210856099U