Portable detachable barreled liquid viscosity detection device
The portable, detachable container liquid viscosity testing device solves the problems of long testing time and low efficiency in flavor and fragrance testing, enabling rapid and accurate on-site viscosity testing of entire batches and avoiding sample waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGXI ZHENLONG IND
- Filing Date
- 2025-04-14
- Publication Date
- 2026-05-15
AI Technical Summary
Existing technologies for viscosity testing of fragrances and flavorings are time-consuming and inefficient, and cannot provide comprehensive coverage of the entire batch of incoming materials, resulting in insufficient testing accuracy.
A portable, detachable container liquid viscosity testing device was designed, including a pump, a stirring device, and a sample cell. It can be used to directly test on the fragrance and flavor container. The viscosity is determined by extracting the sample after stirring and measuring the time it takes for the sample to flow through the sample cell.
It enables rapid on-site testing, improves testing efficiency and accuracy, avoids sample waste, and is suitable for viscosity testing of entire batches of incoming materials.
Smart Images

Figure CN224247535U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of viscosity testing technology for fragrances and flavorings, and in particular to a portable, detachable containerized liquid viscosity testing device. Background Technology
[0002] Adding fragrances and flavorings to paper printing production to enhance aroma and moisture retention has become widely accepted and applied. Therefore, monitoring the viscosity of the fragrances and flavorings used in production is necessary to better help the workshop adjust proportions and parameters during printing, maintaining production stability.
[0003] Existing viscosity testing methods typically involve randomly sampling the entire batch of incoming materials and sending them to a laboratory for viscosity testing. This process is time-consuming and only uses the test data from the sample taken to determine the entire batch of materials. It fails to provide comprehensive coverage testing and cannot reveal the viscosity stability of the entire batch of flavorings and fragrances. Utility Model Content
[0004] The technical problem to be solved by this utility model is to address the above-mentioned shortcomings of the prior art by providing a portable, detachable barrel-type liquid viscosity testing device, which solves the problems of long testing time and low efficiency required for flavor and fragrance testing, and can realize viscosity testing of the entire batch of incoming materials, thereby improving accuracy. It has the characteristics of wide applicability and strong practicality.
[0005] The technical solution adopted by this utility model is as follows: a portable, detachable barrel-type liquid viscosity testing device, including a main board frame, a pump mounted on the main board frame, a suction tube at the input end of the pump, the suction tube extending downward through the main board frame into the barrel, an outlet tube at the output end of the pump, a support plate frame on the outlet tube, a sample cell on the support plate frame below the outlet end of the outlet tube, a flow orifice at the bottom of the sample cell, a switch for controlling opening and closing on the flow orifice, a receiving device below the flow orifice extending downward through the main board frame into the barrel, a barrel cap for installation at the barrel opening fitted on the suction tube and the receiving device, and a stirring device for stirring the fragrance and flavoring in the barrel on the main board frame.
[0006] As a further improvement, the main board frame is provided with a clearance hole, and a mounting plate is provided on the liquid suction pipe above the clearance hole. The stirring device is mounted on the mounting plate, and the liquid suction pipe passes through the mounting plate and the clearance hole in sequence before extending into the barrel.
[0007] Furthermore, the receiving device includes a drain tray and a drain pipe. The drain tray is arranged below the sample cell, and the drain pipe is connected below the drain tray. The drain pipe passes through the mounting plate, the clearance hole, and the barrel lid in sequence before extending into the barrel.
[0008] Furthermore, the stirring device includes a stirring motor, a stirring rod, a controller, and a stirring paddle. The controller is mounted on a main board frame, the stirring motor is mounted on a mounting plate, the output end of the stirring motor is detachably connected to one end of the stirring rod, the other end of the stirring rod passes through the bucket lid and is connected to the stirring paddle, and the controller is electrically connected to the stirring motor.
[0009] Furthermore, the switch includes a pull tab, a protective cover is fitted around the sample cell, one end of the pull tab is movably inserted into the protective cover, and the other end is inserted into the flow port of the sample cell.
[0010] Furthermore, an observation window is provided on the side of the protective cover.
[0011] Furthermore, the motherboard frame has hand grip holes at both ends for easy handling.
[0012] Furthermore, the sample cell is funnel-shaped, with a boss at the upper end, the boss being arranged above the support plate frame, and the lower end of the sample cell being movably inserted into the support plate frame.
[0013] Beneficial effects
[0014] Compared with the prior art, this utility model has the following advantages:
[0015] This utility model discloses a portable, detachable, containerized liquid viscosity testing device. The entire device is placed on a fragrance and flavor container using a lid. The controller activates the stirring motor, which drives the stirring rod and paddle to rotate. The rotating paddle thoroughly mixes the fragrance and flavor. Then, the extraction pump is activated, drawing the liquid to be tested from the suction tube and allowing it to flow through the outlet tube into the sample cell. Once the sample cell is full, the extraction pump is turned off, and the pull tab is quickly pulled back, allowing the sample to flow under its own weight. The time required for the sample to completely flow through the flow orifice at the bottom of the sample cell at a fixed temperature, expressed in seconds, is the viscosity of the liquid. This device effectively solves the problem of fragrance and flavor viscosity testing requiring on-site sampling and laboratory testing, significantly improving testing efficiency. It also allows for viscosity testing of entire batches of incoming materials, improving accuracy. The sample flows back into the container through the drain tube, avoiding waste and losses during the testing process. This device is highly practical and has a wide range of applications. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model with the protective cover omitted;
[0017] Figure 2 This is a schematic diagram of the main structure of this utility model;
[0018] Figure 3 This is a schematic diagram of the rear view structure of this utility model.
[0019] The components are: 1-Main board frame, 2-Receiving device, 3-Stirring device, 4-Extraction pump, 5-Suction pipe, 6-Exit pipe, 7-Support plate frame, 8-Sample cell, 9-Pull-out plate, 10-Boss, 11-Mounting plate, 12-Hand grip hole, 13-Lid holder, 14-Leaning hole, 15-Protective cover, 16-Observation window, 21-Draining tray, 22-Draining pipe, 31-Stirring motor, 32-Controller, 33-Stirring rod, 34-Stirring paddle. Detailed Implementation
[0020] The present invention will be further described below with reference to specific embodiments shown in the accompanying drawings.
[0021] See Figure 1-3 As shown, this utility model discloses a portable, detachable container liquid viscosity testing device, comprising a main board frame 1, a pump 4 mounted on the main board frame 1, a suction pipe 5 at the input end of the pump 4 extending downward through the main board frame 1 into the container, an outlet pipe 6 at the output end of the pump 4, a support plate frame 7 mounted on the outlet pipe 6, a sample cell 8 mounted on the support plate frame 7 below the outlet end of the outlet pipe 6, a flow orifice at the bottom of the sample cell 8, a switch for controlling its opening and closing on the flow orifice, and a receiving device 2 below the flow orifice, which passes through the main board frame 1. Extending downwards into the barrel, the suction pipe 5 and the receiving device 2 are fitted with a barrel cap 13 for installation at the barrel opening. The main board frame 1 is equipped with a stirring device 3 for stirring the fragrance and flavoring in the barrel. The entire device is placed on the fragrance and flavoring barrel through the barrel cap 13. The controller 32 is started, and the controller 32 controls the stirring motor 31 to work. The stirring motor 31 drives the stirring rod 33 and the stirring paddle 34 to rotate. After the stirring paddle 34 rotates and stirs the fragrance and flavoring evenly, the extraction pump 4 is started to draw the liquid to be tested from the suction pipe 5 and flow through the liquid outlet pipe 6 into the sample cell 8. After the sample cell 8 is filled with the liquid to be tested, turn off the pump 4 and quickly pull the pull tab 9 back, allowing the sample to flow under its own weight. The time required for the sample to completely flow through the flow orifice below the sample cell 8 at a fixed temperature, expressed in seconds, is the viscosity of the liquid. This device can effectively solve the problem that fragrances and flavorings cannot be tested on-site and can only be sampled and sent to the laboratory for viscosity testing, effectively improving testing efficiency. It can also perform viscosity testing on the entire batch of incoming materials, effectively improving accuracy. The sample flows back to the container through the drain pipe 22 to avoid waste and loss during the testing process.
[0022] Specifically, the main board frame 1 has a clearance hole 14, and the suction pipe 5 above the clearance hole 14 is provided with a mounting plate 11. The stirring device 3 is mounted on the mounting plate 11. The suction pipe 5 passes through the mounting plate 11 and the clearance hole 14 in sequence and extends into the bucket. The mounting plate 11 is fixedly connected to the suction pipe 5. The mounting plate 11 plays a supporting role and is used to install the stirring device 3. The clearance hole 14 facilitates the passage and placement of the suction pipe 5.
[0023] Preferably, the receiving device 2 includes a drain tray 21 and a drain pipe 22. The drain tray 21 is arranged below the sample cell 8, and the drain pipe 22 is connected to the bottom of the drain tray 21. The drain pipe 22 passes through the mounting plate 11, the clearance hole 14, and the bucket lid 13 in sequence and extends into the bucket. The sample flows from the sample cell 8 into the drain tray 21, flows through the drain tray 21 into the drain pipe 22, and then flows back into the bucket, avoiding waste and loss during the detection process.
[0024] Furthermore, the stirring device 3 includes a stirring motor 31, a stirring rod 33, a controller 32, and a stirring paddle 34. The controller 32 is mounted on the main board frame 1, and the stirring motor 31 is mounted on the mounting plate 11. The output end of the stirring motor 31 is detachably connected to one end of the stirring rod 33. The other end of the stirring rod 33 passes through the lid 13 and is connected to the stirring paddle 34. The controller 32 is electrically connected to the stirring motor 31. When the controller 32 is started, it controls the stirring motor 31 to work. The stirring motor 31 drives the stirring rod 33 and the stirring paddle 34 to rotate. The rotating stirring paddle 34 stirs the fragrance and flavor evenly, making the test results more accurate. One end of the main board frame 1 of the stirring motor 31 and the stirring rod 33 is located above the lid 1. The lid 1 can be selected according to the different specifications and dimensions of the fragrance and flavor barrel opening.
[0025] Furthermore, the switch includes a pull tab 9, and a protective cover 15 is fitted on the outside of the sample cell 8. One end of the pull tab 9 is movably inserted into the protective cover 15, and the other end is inserted into the flow orifice of the sample cell 8. The pull tab 9 controls the opening and closing of the flow orifice. The structure is simple and effective, and it is easy for operators to control. The protective cover 15 plays a protective role and avoids external interference when the sample is dripping.
[0026] Furthermore, an observation window 16 is provided on the side of the protective cover 15 to facilitate the operator's observation of the dripping situation.
[0027] Furthermore, the main board frame 1 has hand grip holes 12 at both ends for easy handling, making it convenient for operators to pick up the entire device.
[0028] Furthermore, the sample cell 8 is funnel-shaped, with a boss 10 at the upper end. The boss 10 is arranged above the support plate frame 7, and the lower end of the sample cell 8 is movably inserted into the support plate frame 7. The boss 10 acts as a block to prevent the sample cell 8 from falling down. The detachable connection method facilitates the cleaning of the sample cell 8 later.
[0029] In this embodiment, a portable detachable barrel liquid viscosity testing device is used by placing the entire device on a fragrance and flavor barrel using the barrel lid 13, activating the controller 32, which controls the stirring motor 31 to work. The stirring motor 31 drives the stirring rod 33 and the stirring paddle 34 to rotate. After the stirring paddle 34 rotates and stirs the fragrance and flavor evenly, the extraction pump 4 is activated to draw the liquid to be tested from the suction pipe 5 and flow through the outlet pipe 6 into the sample cell 8. After the sample cell 8 is filled with the liquid to be tested, turn off the pump 4 and quickly pull the pull tab 9 back, allowing the sample to flow under its own weight. The time required for the sample to completely flow through the flow orifice below the sample cell 8 at a fixed temperature, expressed in seconds, is the viscosity of the liquid. This device effectively solves the problem of viscosity testing of fragrances and flavorings not being possible on-site and requiring samples to be sent to a laboratory, significantly improving testing efficiency. Furthermore, it allows for viscosity testing of entire batches of incoming materials, effectively improving accuracy. The sample is returned to the container through the drain pipe 22, avoiding waste and losses during the testing process. This utility model provides a portable, detachable containerized liquid viscosity testing device. It solves the problems of long testing times and low efficiency in fragrance and flavoring testing, and allows for viscosity testing of entire batches of incoming materials, improving accuracy. It has the characteristics of wide applicability and strong practicality.
[0030] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the structure of the present utility model. These modifications and improvements will not affect the effectiveness of the present utility model or the practicality of the patent.
Claims
1. A portable, detachable containerized liquid viscosity testing device, characterized in that, The system includes a main board frame (1), on which a suction pump (4) is provided. The suction pump (4) has a suction pipe (5) at its input end, which extends through the main board frame (1) and down into the container. The suction pump (4) has an outlet pipe (6) at its output end, which has a support plate frame (7) on its outlet pipe (6). The support plate frame (7) below the outlet end of the outlet pipe (6) has a sample pool (8). The sample pool (8) has a flow hole at its bottom, which has a switch for controlling opening and closing. A receiving device (2) is located below the flow hole, which extends through the main board frame (1) and down into the container. A container cap (13) for installation at the container opening is fitted on the suction pipe (5) and the receiving device (2). The main board frame (1) has a stirring device (3) for stirring the fragrance and flavoring in the container.
2. The portable, detachable container liquid viscosity testing device according to claim 1, characterized in that, The main board frame (1) is provided with a clearance hole (14), and the liquid suction pipe (5) above the clearance hole (14) is provided with a mounting plate (11). The stirring device (3) is mounted on the mounting plate (11), and the liquid suction pipe (5) passes through the mounting plate (11) and the clearance hole (14) in sequence and extends into the barrel.
3. The portable, detachable container liquid viscosity testing device according to claim 2, characterized in that, The receiving device (2) includes a drain tray (21) and a drain pipe (22). The drain tray (21) is arranged below the sample pool (8). The drain pipe (22) is connected to the bottom of the drain tray (21). The drain pipe (22) passes through the mounting plate (11), the clearance hole (14), and the bucket lid (13) in sequence and extends into the bucket.
4. The portable, detachable container liquid viscosity testing device according to claim 2, characterized in that, The stirring device (3) includes a stirring motor (31), a stirring rod (33), a controller (32), and a stirring paddle (34). The controller (32) is mounted on the main board frame (1), and the stirring motor (31) is mounted on the mounting plate (11). The output end of the stirring motor (31) is detachably connected to one end of the stirring rod (33). The other end of the stirring rod (33) passes through the bucket lid (13) and is connected to the stirring paddle (34). The controller (32) is electrically connected to the stirring motor (31).
5. The portable, detachable container liquid viscosity testing device according to claim 1, characterized in that, The switch includes a pull tab (9), and a protective cover (15) is fitted on the outside of the sample cell (8). One end of the pull tab (9) is movably inserted into the protective cover (15), and the other end is inserted into the flow hole of the sample cell (8).
6. The portable, detachable container liquid viscosity testing device according to claim 5, characterized in that, The protective cover (15) has an observation window (16) on its side.
7. The portable, detachable container liquid viscosity testing device according to claim 1, characterized in that, The motherboard frame (1) has hand grip holes (12) at both ends for easy handling.
8. The portable, detachable container liquid viscosity testing device according to claim 1, characterized in that, The sample cell (8) is funnel-shaped, and a boss (10) is provided at the upper end of the sample cell (8). The boss (10) is arranged above the support plate frame (7), and the lower end of the sample cell (8) is movably inserted into the support plate frame (7).