Novel water bath kettle

By using a fixed part controlled by a drive source and an annular sleeve design, the problem of reagent bottles floating in the water bath was solved, achieving stable heating of the reagent bottles and improving the accuracy and safety of the experiment.

CN223655066UActive Publication Date: 2025-12-12TIANJIN JIANKANG HUAMEI MEDICAL DIAGNOSTIC TECH CO LTD
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Patent Information

Application Number
CN202423123512.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-12
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

The existing water bath lacks a reliable fixing device, causing reagent bottles to float in the water, which affects the accuracy and repeatability of the experiment.

Method used

The device employs a drive-source controlled fixing part and annular sleeve design to automatically adjust the position of the reagent bottle in the water, adapting to reagent bottles of different sizes. The combination of the annular sleeve and the fixing device ensures the stability of the reagent bottle.

Benefits of technology

It improves the stability of reagent bottles during the heating process, enhances the reliability and safety of experiments, and simplifies the operation procedure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of experimental equipment, and provides a novel water bath kettle which comprises a kettle body, the driving source is mounted at the bottom of the pot body; the lifting parts are installed on the two sides of the pot body, the lifting parts are connected with the driving source, and the fixing parts are fixedly connected with the lifting parts; the plurality of annular sleeves are mounted on the fixing part, the plurality of annular sleeves are matched with the fixing part, and the plurality of annular sleeves move up and down along with the fixing part and are used for fixing reagent bottles to be measured; the position of the reagent bottle in water can be automatically adjusted through the design that the driving source controls the fixing part to move up and down, the device is matched with the annular sleeve to adapt to the reagent bottles of different sizes, the stability of the reagent bottle in the heating process is ensured through the design, and the experiment reliability is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to experimental equipment field more specifically, relate to a novel water bath pot. BACKGROUND

[0002] With the continuous development of science and technology, experimental research and various kinds of analysis and detection demand increasing for accurate temperature control. Water bath pot as a commonly used laboratory heating equipment, plays an important role in many fields.

[0003] The existing water bath pot needs to warm a small amount of reagent, such as tens of milliliters, because the amount of reagent is too small, lacks reliable fixing device, and cannot lift reagent bottle, so that the reagent bottle in the water bath pot will float due to the buoyancy of water and cannot be fixed, which brings great inconvenience to the small amount of reagent warm experiment needing accurate temperature control, and seriously affects the accuracy and repeatability of the experiment.

[0004] Therefore, we propose a novel water bath pot to solve the above problems. UTILITY MODEL CONTENT

[0005] In view of the problems in the prior art, the utility model aims at providing a novel water bath pot, which solves the problem of affecting the accuracy and repeatability of the experiment caused by the lack of reliable fixing device and the inability to lift the reagent bottle.

[0006] Technical scheme: in order to solve the above problems, the utility model adopts the following technical scheme: a novel water bath pot, comprising: a pot body; a driving source installed at the bottom of the pot body; a fixed part fixedly connected with the driving source, the fixed part moves up and down with the driving source; a lifting part installed on both sides of the pot body, the fixed part is slidingly connected with the lifting part, and is arranged to move up and down on the lifting part through the driving source; a plurality of annular sleeves installed on the fixed part, the plurality of annular sleeves are matched with the fixed part, and are arranged to move up and down with the fixed part, for fixing the reagent bottle to be measured; after starting the driving source, the driving source starts to push the fixed part to move up and down, the fixed part moves up and down under the guidance of the sliding connection of the lifting part, with the lifting of the fixed part, the annular sleeve moves, so as to fix the reagent bottle to be measured, and ensure the stability of the reagent bottle in the water bath.

[0007] In a new embodiment, the pull rod motor; telescopic rod, installed on the pull rod motor, the telescopic rod moves up and down through the pull rod motor; support block, installed on the telescopic rod; a plurality of connecting rods, installed on both sides of the support block.

[0008] In a new embodiment, a square frame is mounted on the support block, and the square frame is fixedly connected with the plurality of connecting rods, so that the square frame moves up and down with the telescopic rod; a connecting frame is mounted on the square frame.

[0009] In a new embodiment, a lifting platform is mounted on both sides of the pot body; a groove rail is provided on both sides of the lifting platform; a sliding block connecting piece is slidably connected with the groove rail, and the sliding block connecting piece is fixedly connected with the connecting frame, and is arranged such that when the connecting frame moves up and down on the groove rail with the sliding block connecting piece, the square frame does not interfere with the lifting platform.

[0010] In a new embodiment, a plurality of first annular grooves are provided on the plurality of annular sleeves; a plurality of second annular grooves are provided on the plurality of annular sleeves, the plurality of second annular grooves are in a mirror image state with the plurality of first annular grooves, and the first annular grooves do not interfere with the second annular grooves; a plurality of first annular fixtures are mounted on the plurality of first annular grooves, and the first annular fixtures match the first annular grooves; a plurality of second annular fixtures are mounted on the plurality of second annular grooves, and the second annular fixtures match the second annular grooves, and are arranged such that the first annular fixtures and the second annular fixtures move forward and backward on the annular sleeves through the first annular grooves and the second annular grooves.

[0011] In a new embodiment, a plurality of openings are provided on the plurality of second annular fixtures; a plurality of U-shaped buckles are mounted on the plurality of first annular fixtures, and are arranged such that when the first annular fixtures and the second annular fixtures move forward and backward on the annular sleeves through the first annular grooves and the second annular grooves, the U-shaped buckles enter the openings; a plurality of U-shaped elastic members are mounted inside the plurality of openings, and are arranged such that when the U-shaped buckles enter the openings, the U-shaped buckles contact the U-shaped elastic members, and the U-shaped elastic members are deformed.

[0012] In a new embodiment, a plurality of water outlets are provided on both sides of the pot body; a plurality of triangular guide plates are mounted on the square frame, and the hypotenuse of the triangular guide plate extends to the water outlet, the right angle of the triangular guide plate extends to the top of the pull rod motor, and the right angle of the triangular guide plate does not interfere with the telescopic rod, so that the water in the pot body flows out of the opening directly through the triangular guide plate; a plurality of baffles are rotatably connected with the water outlet.

[0013] In a new embodiment, a temperature instrument is mounted inside the pot body; a pot cover is rotatably connected with the pot body; a plurality of air outlets are provided on both sides of the pot cover; and a glass plate is mounted on the pot cover.

[0014] The utility model discloses a reagent bottle heating device has the advantages that compared with the prior art, the utility model discloses the advantage lies in: the design that driving source controls fixed part up and down movement can automatically adjust the position of reagent bottle in water, and the device is adapted to reagent bottles of different sizes by matching annular sleeve, and the design ensures the stability of reagent bottle during heating, and improves the reliability of experiment. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the overall schematic view of the utility model.

[0016] Figure 2 It is the sectional view of the pot body of the utility model.

[0017] Figure 3 It is the fixed part structure schematic view of the utility model.

[0018] Figure 4 It is the driving source detail schematic view of the utility model.

[0019] Figure 5 It is the lifting part detail schematic view of the utility model.

[0020] Figure 6 It is the annular sleeve detail schematic view of the utility model.

[0021] The figure mark is: 1, the pot body;101, the water outlet;102, the triangular deflector;103, the baffle;104, the temperature instrument;105, the pot cover;106, the air outlet;107, the glass plate;2, the driving source;201, the pull rod motor;202, the telescopic link;203, the support block;204, the connecting rod;3, the fixed part;301, the square frame;302, the connecting frame;4, the lifting part;401, the lifting platform;402, the slot rail;403, the sliding block connecting piece;5, the annular sleeve;501, the first annular notch;502, the second annular notch;503, the first annular fixer;504, the second annular fixer;505, the opening;506, the back-shaped buckle;507, the U-shaped elastic piece. DETAILED DESCRIPTION

[0022] Please refer to Figures 1-6 , Figure 1 It is the overall schematic view of the utility model; Figure 2The utility model discloses a water bath pot, including: the pot body 1;Driving source 2, install in the bottom of pot body 1;Fixed part 3, with driving source 2 fixed connection, fixed part 3 with driving source 2 moves up and down;Lifting part 4, install in both sides of pot body 1, fixed part 3 with lifting part 4 sliding connection, and be set up as fixed part 3 through driving source 2 moves up and down on lifting part 4;Multiple annular sleeves 5, install on fixed part 3, multiple annular sleeves 5 with fixed part 3 match, and be set up as multiple annular sleeves 5 with fixed part 3 moves up and down, for the reagent bottle of fixed measurement.

[0023] The pot body 1 is the main part for containing heating medium, the driving source 2 is located at the bottom of the pot body 1, responsible for providing power to make the fixed part 3 move up and down, the fixed part 3 is directly connected with the driving source 2, and can move up and down with the operation of the driving source 2, the annular sleeve 5 and the reagent bottle to be measured are borne above the fixed part 3, the lifting part 4 is installed on both sides of the pot body 1, provides a slide rail system for the fixed part 3, and ensures that it moves vertically stably, the multiple annular sleeves 5 are installed on the fixed part 3, are designed to stably clamp reagent bottles of different sizes, and move together with the fixed part 3, the pot body 1 usually adopts stainless steel material, because stainless steel is corrosion-resistant, easy to clean and has good heat conduction performance.

[0024] Reference Figure 4 The pull rod motor 201;Telescopic rod 202, install in pull rod motor 201, telescopic rod 202 through pull rod motor 201 moves up and down;Supporting block 203, install in telescopic rod 202;Multiple connecting rods 204, install in both sides of supporting block 203.

[0025] The telescopic rod 202 is directly connected with the pull rod motor 201, can move up and down with the driving of the motor, the supporting block 203 is fixed on the telescopic rod 202 and moves together with the telescopic rod 202, it is used as the installation base of other components such as the connecting rod 204, the multiple connecting rods 204 are installed on both sides of the supporting block 203, can be used for connecting other components or carrying objects, the whole adopts steel or engineering plastic, has corrosion resistance and ensures sufficient rigidity and carrying capacity, compared with traditional equipment, such design reduces manual intervention, greatly improves the safety factor.

[0026] Reference Figure 3 The square frame 301 is installed on the supporting block 203, and the square frame 301 is fixedly connected with the multiple connecting rods 204, so that the square frame 301 moves up and down with the telescopic rod 202;Connecting frame 302, install in square frame 301.

[0027] The square frame 301 is mounted on the support block 203 and reinforced by the connecting rod 204, and moves vertically together with the telescopic rod 202. The square frame 301 can be used to carry experimental equipment, sensors or other devices that require precise positioning. The connecting frame 302 is further mounted on the square frame 301, and the square frame 301 is made of aluminum alloy, which increases the flexibility and adaptability of the whole.

[0028] Reference Figure 3 Figure 5 The lifting platform 401 is installed on both sides of the pot body 1, the groove rail 402 is opened on both sides of the lifting platform 401, the sliding block connecting piece 403 is in sliding connection with the groove rail 402, and the sliding block connecting piece 403 is fixedly connected with the connecting frame 302, and is arranged to be connected with the connecting frame 302 to move up and down on the groove rail 402, so that the square frame 301 does not interfere with the lifting platform 401.

[0029] The lifting platform 401 is installed on both sides of the pot body 1, which provides a basic support for the vertical movement of the whole system. The groove rail 402 is opened on both sides of the lifting platform 401, which is used as a guide path for the sliding block connecting piece 403 to ensure the linearity and stability during sliding. The sliding block connecting piece 403 is in sliding connection with the groove rail 402, which can smoothly move up and down along the groove rail 402. The sliding block connecting piece 403 is also fixedly connected with the connecting frame 302, so as to drive the square frame 301 above to move together. Through the cooperation of the groove rail 402 and the sliding block connecting piece 403, very precise vertical position control can be realized. The groove rail 402 system provides stable guidance, reduces shaking during movement, and makes the square frame 301 maintain horizontal within the entire moving range. Compared with traditional equipment, this design reduces the opportunity for experimental personnel to directly contact high-temperature liquids or other dangerous substances, and improves the safety of the working environment.

[0030] Reference Figure 3 Figure 6 A plurality of first annular grooves 501 are opened on the plurality of annular sleeves 5, a plurality of second annular grooves 502 are opened on the plurality of annular sleeves 5, the plurality of second annular grooves 502 are in a mirror image state with the plurality of first annular grooves 501, and the first annular grooves 501 do not interfere with the second annular grooves 502; a plurality of first annular fixers 503 are installed on the plurality of first annular grooves 501, and the first annular fixers 503 are matched with the first annular grooves 501; a plurality of second annular fixers 504 are installed on the plurality of second annular grooves 502, and the second annular fixers 504 are matched with the second annular grooves 502, and are arranged to move forward and backward on the annular sleeve 5 through the first annular grooves 501 and the second annular grooves 502.

[0031] The first annular notch 501 is provided on one side of the annular sleeve 5 for mounting the first annular holder 503, and the second annular notch 502 is provided on the other side of the annular sleeve 5 in a mirror image state with the first annular notch 501 for mounting the second annular holder 504. The first annular holder 503 is mounted in the first annular notch 501 and can move back and forth along the notch to adapt to bottles of different diameters. The second annular holder 504 is mounted in the second annular notch 502 and can also move back and forth, and is used in cooperation with the first annular holder 503 to clamp the bottle together. By adjusting the positions of the first annular holder 503 and the second annular holder 504, various bottles of different diameters can be easily adapted, increasing the versatility of the device. The design of closely fitting the bottle reduces the risk of the bottle slipping or tipping over during the experiment. The user only needs to simply adjust the position of the holder to quickly replace bottles of different sizes without the need to replace the entire sleeve, saving time and simplifying the operation process.

[0032] Reference Figure 3 Figure 6 A plurality of openings 505 are provided on the second annular holder 504 for accommodating the L-shaped buckle 506. A plurality of L-shaped buckles 506 are mounted on the first annular holder 503, and are arranged such that when the first annular holder 503 and the second annular holder 504 move back and forth on the annular sleeve 5 through the first annular notch 501 and the second annular notch 502, the L-shaped buckle 506 enters the opening 505. A plurality of U-shaped elastic members 507 are mounted inside the opening 505, and are arranged such that when the L-shaped buckle 506 enters the opening 505, the L-shaped buckle 506 contacts the U-shaped elastic member 507, and the U-shaped elastic member 507 deforms.

[0033] A plurality of openings 505 are provided on the second annular holder 504 for accommodating the L-shaped buckle 506. A plurality of L-shaped buckles 506 are mounted on the first annular holder 503, and are arranged such that when the first annular holder 503 and the second annular holder 504 move back and forth on the annular sleeve 5 through the first annular notch 501 and the second annular notch 502, the L-shaped buckle 506 enters the opening 505. A plurality of U-shaped elastic members 507 are mounted inside the opening 505, and are arranged such that when the L-shaped buckle 506 enters the opening 505, the L-shaped buckle 506 contacts the U-shaped elastic member 507, and the U-shaped elastic member 507 deforms.

[0034] Reference Figure 2, multiple water outlets 101 are arranged on both sides of the kettle body 1; multiple triangular guide plates 102 are installed on the square frame 301, and the oblique edges of the triangular guide plates 102 extend to the water outlets 101, and the right-angle edges of the triangular guide plates 102 extend to the top of the pull rod motor 201, and the right-angle edges of the triangular guide plates 102 do not interfere with the telescopic rod 202, so that the water in the kettle body 1 flows out of the opening 505 directly through the triangular guide plates 102; multiple baffles 103 are rotatably connected with the water outlets 101.

[0035] The multiple water outlets 101 are arranged on both sides of the kettle body 1, and are used to drain the water in the kettle body 1. The multiple triangular guide plates 102 are installed on the square frame 301, and the oblique edges of the guide plates extend to the water outlets 101, and the right-angle edges extend to the top of the pull rod motor 201, but do not interfere with the telescopic rod 202. This design is to ensure that the water in the kettle body 1 can flow smoothly through the guide plates to the water outlets 101. The traditional water bath kettle may only have a simple water outlet hole, and the drainage speed is slow and easy to accumulate water. This design optimizes the water flow path through the triangular guide plates 102, improves the drainage efficiency, and the design of the angle and position of the triangular guide plates 102 enables the water flow to flow smoothly along the oblique edge to the water outlet 101, and does not splash upward or flow into the area where the pull rod motor 201 is located. The right-angle edge of the triangular guide plate 102 does not interfere with the telescopic rod 202, and does not hinder the normal movement of the telescopic rod 202. The existence of the right-angle edge prevents the water flow from directly impacting the pull rod motor 201 and its parts. The multiple baffles 103 are rotatably connected with the water outlets 101, and can control the opening and closing state of the water outlets 101. When drainage is needed, the baffle 103 can be opened; when drainage is not needed, it is closed to maintain the water level in the kettle body 1.

[0036] Reference Figure 1 , a temperature instrument 104 is installed inside the kettle body 1; a kettle cover 105 is rotatably connected with the kettle body 1; multiple air outlets 106 are arranged on both sides of the kettle cover 105; and a glass plate 107 is installed on the kettle cover 105.

[0037] The temperature instrument 104 is installed inside the kettle body 1 and is used for monitoring and displaying the water temperature in the kettle body 1 in real time. An accurate temperature reading is usually obtained by directly contacting the water body with a probe. The kettle cover 105 is rotationally connected with the kettle body 1 and can be conveniently opened or closed. The design of the kettle cover 105 helps to reduce heat loss and maintain the stability of the temperature inside the kettle body 1. Multiple air outlets 106 are arranged on both sides of the kettle cover 105 and are used for releasing the steam generated inside the kettle body 1 due to heating, preventing excessive pressure. The glass plate 107 is installed on the kettle cover 105 and is convenient for users to observe the situation inside the kettle body 1, such as the state of the reagent bottle and the water level. The built-in temperature instrument 104 can monitor and display the temperature inside the kettle body 1 in real time, helping users to more accurately control the experimental conditions. The design of the kettle cover 105 reduces heat loss and helps to maintain a constant temperature inside the kettle body 1. The existence of the air outlet 106 can effectively release the steam inside the kettle body 1, preventing safety hazards caused by pressure accumulation. The glass plate 107 provides a transparent window, allowing users to observe the situation inside the kettle body 1 without opening the kettle cover 105, increasing the safety and convenience of operation.

[0038] The novel water bath kettle in the utility model can automatically adjust the position of the reagent bottle in the water by controlling the up-down movement of the fixed part 3 through the driving source 2, and is matched with the annular sleeve 5 to adapt to reagent bottles of different sizes. Such a design ensures the stability of the reagent bottle during the heating process and improves the reliability of the experiment.

[0039] The above is only a preferred specific embodiment of the utility model; however, the protection scope of the utility model is not limited to this. Any person skilled in the art can make equivalent replacement or change according to the technical scheme and improvement concept of the utility model within the technical range disclosed by the utility model, and all of them should be covered in the protection scope of the utility model.

Claims

1. A novel water bath characterized in that, Include: Pot (1); Driving source (2) installed at the bottom of the pot (1); Fixed part (3) fixedly connected with the driving source (2), the fixed part (3) moves up and down with the driving source (2); Lifting part (4) installed on both sides of the pot (1), the fixed part (3) is slidingly connected with the lifting part (4), and the fixed part (3) is arranged to move up and down on the lifting part (4) through the driving source (2); A plurality of annular sleeves (5) are installed on the fixed part (3), the plurality of annular sleeves (5) are matched with the fixed part (3), and the plurality of annular sleeves (5) are arranged to move up and down with the fixed part (3) for fixing the reagent bottle to be measured.

2. A novel water bath as claimed in claim 1, wherein, The driving source (2) comprises: Pull rod motor (201); Telescopic rod (202) installed on the pull rod motor (201), the telescopic rod (202) moves up and down through the pull rod motor (201); Support block (203) installed on the telescopic rod (202); A plurality of connecting rods (204) are installed on both sides of the support block (203).

3. A novel water bath as claimed in claim 2, wherein, The fixed part (3) comprises: Square frame (301) installed on the support block (203), and the square frame (301) is fixedly connected with a plurality of connecting rods (204) to make the square frame (301) move up and down with the telescopic rod (202); Connecting frame (302) installed on the square frame (301).

4. A novel water bath as claimed in claim 3, wherein, The lifting part (4) comprises: Lifting platform (401) installed on both sides of the pot (1); Groove rail (402) opened on both sides of the lifting platform (401); Sliding block connecting piece (403) slidingly connected with the groove rail (402), and the sliding block connecting piece (403) is fixedly connected with the connecting frame (302), and the connecting frame (302) is arranged to move up and down on the groove rail (402) with the sliding block connecting piece (403), and the square frame (301) does not interfere with the lifting platform (401).

5. A new water bath as claimed in claim 1, characterized in that, Further comprising: A plurality of first annular notches (501) are opened in a plurality of annular sleeves (5); A plurality of second annular notches (502) are opened in a plurality of annular sleeves (5), a plurality of second annular notches (502) are in mirror image state with a plurality of first annular notches (501), and the first annular notches (501) do not interfere with the second annular notches (502); A plurality of first annular fixers (503) are installed on a plurality of first annular notches (501), and the first annular fixers (503) are matched with the first annular notches (501); A plurality of second annular retainers (504) are installed on the plurality of second annular notches (502), and the second annular retainers (504) are matched with the second annular notches (502), and are arranged to move the first annular retainers (503) and the second annular retainers (504) forward and backward on the annular sleeve (5) through the first annular notches (501) and the second annular notches (502).

6. A novel water bath as claimed in claim 5, wherein, Further comprising: A plurality of openings (505) are opened on the plurality of second annular retainers (504); A plurality of U-shaped buckles (506) are installed on the plurality of first annular retainers (503), and are arranged to enter the openings (505) when the first annular retainers (503) and the second annular retainers (504) move forward and backward on the annular sleeve (5) through the first annular notches (501) and the second annular notches (502); A plurality of U-shaped elastic members (507) are installed inside the plurality of openings (505), and are arranged to contact the U-shaped elastic members (507) when the U-shaped buckles (506) enter the openings (505), and the U-shaped elastic members (507) are deformed.

7. A new water bath as claimed in claim 3, wherein, Further comprising: A plurality of water outlets (101) are opened on both sides of the pot body (1); A plurality of triangular flow guides (102) are installed on the square frame (301), and the hypotenuse of the triangular flow guide (102) extends to the water outlet (101), and the right angle side of the triangular flow guide (102) extends to the top of the pull rod motor (201), and the right angle side of the triangular flow guide (102) does not interfere with the telescopic rod (202), so that the water in the pot body (1) flows out of the opening (505) directly through the triangular flow guide (102); A plurality of baffles (103) are rotatably connected with the water outlet (101).

8. A new water bath as claimed in claim 1, characterized in that, Further comprising: A temperature instrument (104) is installed inside the pot body (1); A pot cover (105) is rotatably connected with the pot body (1); A plurality of air outlets (106) are opened on both sides of the pot cover (105); A glass plate (107) is installed on the pot cover (105).