Stirring device capable of checking viscosity

By introducing a detection mechanism consisting of a sliding column, a screw rod, and scale lines into the mixing device, the problem of difficulty in detecting the viscosity during the mixing process of colored clay is solved, enabling real-time monitoring and efficient production.

CN224024788UActive Publication Date: 2026-03-24FOSHAN XINCHENYU CULTURE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing mixing devices make it difficult to visually detect the viscosity of colored clay during mixing, requiring the machine to be stopped for sampling and testing, resulting in low production efficiency.

Method used

A detection mechanism including a sliding column, a screw rod, a turntable, and scale lines was designed. The sliding plate is inserted into the material during the stirring process, and the resistance of the sliding plate drives the winding wheel and the screw rod to monitor the viscosity in real time and display it through the scale lines.

Benefits of technology

This technology enables real-time monitoring of clay viscosity during mixing, reducing operational difficulty, avoiding downtime for sampling, and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stirring device capable of checking viscosity, which relates to the technical field of stirring devices and comprises a stirring container with a hollow structure and a top cover mounted at the top of the stirring container. A first vertically-penetrating channel is coaxially formed in the center of the inner side wall, away from the stirring container, of the first storage groove, and a detection mechanism is arranged in the first storage groove in the top cover. According to the stirring device, the viscosity of a product can be monitored in real time in the stirring process through the detection mechanism, and when the sliding plate is inserted into a material being stirred, the sliding plate slides in the limiting frame due to resistance borne by the sliding plate, so that the fixed rope is driven to pull the winding roller, and then the spiral rod is meshed to slide towards the top cover in the axial direction of the spiral rod; the sliding column is driven to protrude out of the first channel, the viscosity of the colored clay can be visually judged by observing the sliding distance or scale marks of the sliding column, the operation difficulty is reduced, and shutdown is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to stirring device technical field, concretely is a kind of stirring device of checking viscosity. BACKGROUND

[0002] Safe non-toxic easy-to-form clay is a kind of handcrafting material specially designed for children, which has the following characteristics: it is made of environmentally friendly and non-toxic raw materials, has soft and moderate texture, is easy to shape into various shapes, can meet the needs of children during play and creation, provides clay of various colors, can meet the different preferences of children for colors, stimulates their imagination and creativity, and can be used repeatedly without cracking, prolonging the service life of the product.

[0003] In the existing clay production process, various raw materials need to be added to the stirring device for mixing and stirring. However, the traditional stirring device used in clay production has some problems during stirring, especially the problem of viscosity detection. Since the existing stirring device is in a sealed state during stirring to prevent splashing or impurities from falling in, it is not convenient for the operator to directly detect the viscosity of the product during stirring, and further manual sampling and measurement are required, which not only wastes time and effort, but also reduces production efficiency.

[0004] Therefore, the present application is proposed. UTILITY MODEL CONTENT

[0005] The utility model aims to provide a kind of stirring device of checking viscosity to solve the problems raised in the above background.

[0006] To solve the above technical problems, the utility model provides a kind of stirring device of checking viscosity, which comprises a hollow stirring container and a top cover installed on the top of the stirring container. A storage groove is formed on one side wall of the top cover close to the stirring container. A vertical through channel is coaxially formed on the inner side wall of the storage groove away from the stirring container. A detection mechanism is arranged in the storage groove on the top cover. The detection mechanism comprises a sliding column sliding in the channel. A screw rod is coaxially fixed on one end of the sliding column close to the stirring container. A rotating disc is engaged and connected to one end of the screw rod away from the sliding column.

[0007] A rotating cylinder is coaxially fixed on one side wall of the rotating disc away from the sliding column. A winding wheel is fixed on one side wall of the rotating cylinder away from the rotating disc. A fixed rope is arranged in the groove of the winding wheel. One end of the fixed rope away from the winding wheel is fixed with a sliding plate. A limiting frame is arranged on the outer side of the sliding plate. The sliding plate slides on the inner arc wall of the limiting frame. One end of the sliding plate away from the sliding column protrudes out of the limiting frame.

[0008] Further, the outer arc wall of the rotating disc is provided with a fixed cylinder one, the fixed cylinder one is fixed to the inner side wall of the storage groove one away from the stirring container, the fixed plate is fixed to the two ends of the side wall of the limiting frame close to the fixed plate, and the vertical support rods are fixed to the limiting frame away from the fixed plate.

[0009] The side wall of the fixed cylinder one away from the storage groove one is fixedly connected with a fixed cylinder two, the cross section radius of the rotating disc is smaller than the cross section radius of the inner arc wall of the fixed cylinder two, the rotating cylinder is arranged in the fixed cylinder two, the winding wheel is rotatably arranged on the bottom inner wall of the fixed cylinder two away from the rotating cylinder, the side wall of the fixed cylinder two away from the fixed cylinder one is provided with a channel two, and the end of the fixed rope away from the winding wheel penetrates through the channel two to the outside of the fixed cylinder two.

[0010] Further, the end of the sliding column away from the spiral rod penetrates through the channel one to the side of the top cover away from the stirring container, the end of the sliding column penetrating through to the outside of the top cover is provided with a scale line, the side wall of the top cover away from the stirring container is fixedly provided with a motor, the side wall of the motor close to the top cover is coaxially fixedly provided with a stirring shaft, the end of the stirring shaft away from the motor penetrates through the top cover to the stirring container, and the detection mechanism is arranged away from the stirring shaft.

[0011] Further, the horizontal section of the limiting frame is a fan ring and is coaxially arranged with the stirring container, the two inner arc walls of the limiting frame along the circumferential direction of the stirring container are provided with limiting sliding grooves one, the length direction of the sliding plate is consistent with the radial direction of the stirring container, the two side walls of the sliding plate along the length direction are fixedly provided with limiting sliding blocks, the end of the limiting sliding block away from the sliding plate slides in the limiting sliding groove one, the vertical spiral sliding groove is arranged in the center of the side wall of the rotating disc close to the sliding column, the end of the rotating disc away from the sliding column is engaged in the spiral sliding groove, the outer arc wall of the sliding column is fixedly provided with a plurality of fixed strips arranged in an annular array about the axis of the sliding column, the length direction of the fixed strips is parallel to the axial direction of the sliding column, the limiting sliding groove two is arranged in the inner arc wall of the channel one, the length direction of the limiting sliding groove two is parallel to the axial direction of the sliding column, and the fixed strips slide in the limiting sliding groove two.

[0012] Compared with the prior art, the utility model has the advantages that:

[0013] Through the detection mechanism, the viscosity of the product can be monitored in real time during the stirring process, when the slide plate is inserted into the stirring material, the resistance of the slide plate will make it slide in the limiting frame, thereby driving the fixed rope to pull the winding roller, and then the meshing screw rod slides along its axial direction towards the top cover, driving the sliding column to protrude through the channel one, by observing the sliding distance or scale line of the sliding column, the viscosity of the colored clay can be directly judged, the operation difficulty is reduced and the shutdown is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is an internal structure sectional view of the stirring device capable of checking viscosity.

[0015] Figure 2 It is an internal structure sectional view of the stirring device capable of checking viscosity. Figure 1 It is an enlarged view of the structure at A in the figure.

[0016] Figure 3 It is a structure sectional view of the detection mechanism in the stirring device capable of checking viscosity.

[0017] Figure 4 It is a schematic view of the overall structure of the stirring device capable of checking viscosity.

[0018] In the figure:

[0019] 10, stirring container; 11, top cover; 12, motor; 13, stirring shaft;

[0020] 20, sliding column; 21, fixed plate; 22, support rod; 23, limiting frame; 24, fixed cylinder one; 25, fixed cylinder two;

[0021] 30, screw rod; 31, rotating disc; 32, rotating cylinder; 33, winding wheel; 34, slide plate. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below 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 in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0023] Please refer to the drawings Figure 1 to the drawings Figure 4The utility model provides a kind of stirring device of checking viscosity: including hollow structure's stirring container 10 and install at the top of stirring container 10 top cover 11, the top cover 11 is close to the side wall of stirring container 10 on the side wall of the one side of top cover 11 is equipped with article groove one, article groove one is coaxially equipped with the vertical through passage one at the inner side wall center of the side away from stirring container 10, the article groove one in the top cover 11 is equipped with detection mechanism, detection mechanism includes the sliding column 20 in the sliding of passage one, the one end of sliding column 20 close to stirring container 10 is coaxially fixed with screw rod 30, screw rod 30 outer arc wall is engagedly connected with rotating disc 31 at the one end of the side away from sliding column 20;

[0024] The rotating disc 31 is coaxially fixed with rotating cylinder 32 on the side wall of the side away from sliding column 20, rotating cylinder 32 is fixed with winding wheel 33 on the side wall of the side away from rotating disc 31, fixed rope is equipped in the wheel groove of winding wheel 33, the one end of fixed rope is fixed with sliding plate 34 at the side away from winding wheel 33, limit frame 23 is equipped on the outside of sliding plate 34, sliding plate 34 is slid in the inner arc wall of limit frame 23, the one end of sliding plate 34 is projected limit frame 23 setting at the side away from sliding column 20;

[0025] The rotating disc 31 is rotated with fixed cylinder one 24 on outer arc wall, fixed cylinder one 24 is fixed with fixed plate 21 at the one end close to sliding column 20, fixed plate 21 is fixed on the inner side wall of the side away from stirring container 10 of article groove one, the both ends of the side wall close to limit frame 23 of fixed plate 21 are all fixed with the support rod 22 of vertical setting, the one end of support rod 22 is fixed on limit frame 23 at the side away from fixed plate 21;

[0026] The one end of sliding column 20 is penetrated to the side away from stirring container 10 of top cover 11 at the side away from screw rod 30, the one end of sliding column 20 is equipped with scale line on the outer arc wall and penetrates to the outside of top cover 11, the side wall center of the side away from stirring container 10 of top cover 11 is fixed with motor 12, motor 12 is coaxially fixed with stirring shaft 13 on the side wall close to top cover 11, the one end of stirring shaft 13 is penetrated to stirring container 10 at the side away from motor 12 of top cover 11, and detection mechanism is set avoiding stirring shaft 13.

[0027] Need to be explained: when the material in stirring container 10 starts stirring, the material in it is subjected to the force of stirring shaft 13 and will rotate synchronously, then at this time, sliding plate 34 is inserted into the material being stirred, in the case where guaranteeing material temperature, stirring intensity and speed, material quantity and other conditions are not changed, the resistance that sliding plate 34 is subjected to is directly related to the viscosity of material;

[0028] The sliding plate 34 slides in the limiting frame 23, thereby pulling the fixing rope, rotating the winding wheel 33, thereby indirectly engaging the screw rod 30 to slide along the sliding column 20 in the axial direction away from the stirring container 10, thereby pushing the sliding column 20 out of the channel to the outside of the top cover 11, at this time, only by observing the scale line on the outer arc wall of the sliding column 20, the resistance caused by the current material viscosity to the sliding plate 34 can be directly observed;

[0029] In a possible embodiment, the supporting rod 22 is an electric push rod, thereby the detection can be controlled when, although the supporting rod 22 drives the limiting frame 23 to move away from the fixed plate 21, the rotating of the winding wheel 33 thereby indirectly makes the sliding column 20 retract, but when reading the scale line, the initial scale and the detected scale can also be recorded to obtain the viscosity value.

[0030] Please refer to the accompanying drawings Figure 1 to the accompanying drawings Figure 4 The utility model provides a technical scheme: fixed cylinder two 25 is fixedly connected on the side wall of fixed cylinder one 24 away from the storage groove one, the cross section radius of rotating disc 31 is less than the cross section radius of the inner arc wall of fixed cylinder two 25, rotating cylinder 32 is located in fixed cylinder two 25, winding wheel 33 rotates on the bottom inner wall of fixed cylinder two 25 away from one end of rotating cylinder 32, the side wall of fixed cylinder two 25 away from fixed cylinder one 24 is provided with channel two, and the end of fixed rope away from winding wheel 33 penetrates channel two to the outside of fixed cylinder two 25, the length direction of channel two on fixed cylinder two 25 is consistent with the length direction of limiting frame 23, both ends along the length direction of channel two are fixed with fixed pulley, and the rotating connection place of winding wheel 33 and the bottom inner wall of fixed cylinder two 25 is equipped with coil spring.

[0031] It should be noted that: fixed cylinder one 24 and fixed cylinder two 25 are used to support and protect the components in its inside, the screw rod 30 is located in fixed cylinder one 24, fixed cylinder one 24 and fixed plate 21 can one-way seal channel one, ensure that when the dust from outside falls into channel one, only falls in fixed cylinder one 24 or fixed cylinder two 25;

[0032] Channel two is reserved for the fixed rope to move, and the fixed pulley is used to reduce the damage of the fixed rope caused by more friction of the opening of the fixed rope at both ends of channel two when the sliding plate 34 slides for a long distance;

[0033] The coil spring is used to reset the winding wheel 33, in the initial state, the sliding plate 34 is located in the middle of the limiting frame 23, the fixed rope is wound on the winding wheel 33, and when the sliding plate 34 slides and thereby rotates the winding wheel 33, the coil spring synchronously stores power.

[0034] Please refer to the accompanying drawings Figure 1 to the accompanying drawings Figure 4The utility model provides a technical scheme: the horizontal section of the limiting frame 23 is fan ring shape and is coaxial with stirring container 10 setting, limiting frame 23 is all set up with limiting sliding slot one on two inner arc wall of stirring container 10 periphery, the length direction of sliding plate 34 is consistent with stirring container 10 radial, and the both sides wall of sliding plate 34 along its length direction is all fixed with limiting sliding block, and the end of limiting sliding block away from sliding plate 34 slides in limiting sliding slot one,

[0035] The vertical through helical sliding slot is set up in the center of the one side wall of the rotating disc 31 close to the sliding column 20, the end of the rotating disc 31 away from the sliding column 20 is engaged in the helical sliding slot, the outer arc wall of the sliding column 20 is fixed with a plurality of annular array distribution about the axis of the sliding column 20 fixed strip, the length direction of the fixed strip is parallel with the axial direction of the sliding column 20, the inner arc wall of the channel one is set up with limiting sliding slot two, the length direction of limiting sliding slot two is parallel with the axial direction of the sliding column 20, and the fixed strip slides in limiting sliding slot two.

[0036] Need to explain: because stirring shaft 13 is coaxial with stirring container 10 setting, then the material in it will also produce rotation around stirring shaft 13, and the axis of the inner arc wall of limiting frame 23 coincides with the axis of stirring container 10, thereby making the force that sliding plate 34 receives as uniform as possible, and the fixed strip makes the sliding column 20 not rotate, and guides and limits the movement track of the sliding column 20;

[0037] The limiting sliding strip limits the sliding of the sliding plate 34, and prevents the sliding plate 34 from coming out of the limiting frame 23.

[0038] Working principle:

[0039] Firstly, pour the corn starch of 40% of the proportion, the water of 44% of the proportion into the stirring container 10, stir for three minutes in the environment of 20-30 DEG C, then add the propylene glycol of 6% of the proportion, the sodium of 2% of the proportion, the potassium of 0.15% of the proportion continue to stir for 12 minutes, finally add the bromonitromethanol of 0.15% of the proportion, the color powder of 7.7% of the proportion, and stir for 10 minutes to complete the preparation.

[0040] During the period, the support rod 22 can be controlled to extend so that the sliding plate 34 can be inserted into the material being stirred, the sliding plate 34 is slid in the limiting frame 23 under the action force of the material being stirred, thereby pulling the fixed rope, pulling the winding wheel 33 to rotate, the winding wheel 33 drives the rotating cylinder 32 to rotate, the rotating cylinder 32 drives the rotating disc 31 to rotate, thereby indirectly engaging the screw rod 30 to slide along the axial direction of the sliding column 20 away from the stirring container 10, thereby ejecting the sliding column 20 out of the channel one to the outside of the top cover 11, at this time, only need to observe the scale line on the outer arc wall of the sliding column 20 to directly see the resistance caused by the viscosity of the current material to the sliding plate 34.

Claims

1. A stirring device capable of checking the consistency, comprising a hollow stirring container (10) and a top cover (11) installed on the top of the stirring container (10), wherein a storage groove I is formed on a side wall of the stirring container (10) close to the top cover (11), and a vertical through channel I is coaxially formed on the inner side wall of the stirring container (10) away from the center of the storage groove I. The detection mechanism is arranged in the storage groove one on the top cover (11), and comprises a sliding column (20) sliding in the channel one, and a spiral rod (30) coaxially fixed on the end of the sliding column (20) close to the stirring container (10), and a rotating disc (31) engagedly connected on the end of the spiral rod (30) away from the sliding column (20). The rotating disc (31) is coaxially fixed with a rotating cylinder (32) on the side wall away from the sliding column (20), the rotating cylinder (32) is fixed with a winding wheel (33) on the side wall away from the rotating disc (31), a fixed rope is arranged in the wheel groove of the winding wheel (33), the fixed rope is fixed with a sliding plate (34) on the end away from the winding wheel (33), the outer side of the sliding plate (34) is provided with a limiting frame (23), the sliding plate (34) slides on the inner arc wall of the limiting frame (23), and the end of the sliding plate (34) away from the sliding column (20) protrudes out of the limiting frame (23).

2. A consistency checkable stirring device according to claim 1, characterized in that: The outer arc wall of the rotating disc (31) is rotatably provided with a fixed cylinder one (24), the fixed cylinder one (24) is fixed with a fixed plate (21) on the end close to the sliding column (20), the fixed plate (21) is fixed on the inner side wall of the storage groove one away from the stirring container (10), and the two ends of the side wall close to the limiting frame (23) of the fixed plate (21) are both fixed with vertically arranged support rods (22), and the ends of the support rods (22) away from the fixed plate (21) are fixed on the limiting frame (23).

3. A consistency checkable stirring device as claimed in claim 2, characterized in that: The fixed cylinder one (24) is fixedly connected with a fixed cylinder two (25) on the side wall away from the storage groove one, the cross-sectional radius of the rotating disc (31) is smaller than that of the inner arc wall of the fixed cylinder two (25), the rotating cylinder (32) is arranged in the fixed cylinder two (25), the end of the winding wheel (33) away from the rotating cylinder (32) is rotatably arranged on the inner wall of the bottom of the fixed cylinder two (25), and the side wall of the fixed cylinder two (25) away from the fixed cylinder one (24) is provided with a channel two, and the end of the fixed rope away from the winding wheel (33) penetrates through the channel two to the outer side of the fixed cylinder two (25).

4. A consistency checkable stirring device as claimed in claim 3, characterized in that: The length direction of the channel two on the fixed cylinder two (25) is consistent with the length direction of the limiting frame (23), the two ends of the channel two along the length direction are both fixed with fixed pulleys, and the rotating connection position of the winding wheel (33) and the bottom inner wall of the fixed cylinder two (25) is provided with a coiled spring.

5. The consistency checkable stirring device according to claim 1, characterized in that: The horizontal cross section of the limiting frame (23) is in the shape of a fan ring and is coaxially arranged with the stirring container (10), the two inner arc walls of the limiting frame (23) along the circumferential direction of the stirring container (10) are both provided with a limiting sliding groove one, the length direction of the sliding plate (34) is consistent with the radial direction of the stirring container (10), the two side walls of the sliding plate (34) along the length direction are both fixed with limiting sliding blocks, and the ends of the limiting sliding blocks away from the sliding plate (34) slide in the limiting sliding groove one.

6. A consistency checkable stirring device as claimed in claim 1, characterized in that: The rotating disc (31) is provided with a vertical spiral chute near the center of one side wall of the sliding column (20), the end of the rotating disc (31) away from the sliding column (20) is engaged in the spiral chute, a plurality of fixed strips are fixed on the outer arc wall of the sliding column (20) and are arranged in a ring shape around the axis of the sliding column (20), the length direction of the fixed strips is parallel to the axis direction of the sliding column (20), the inner arc wall of the channel one is provided with a limiting chute two, the length direction of the limiting chute two is parallel to the axis direction of the sliding column (20), and the fixed strips slide in the limiting chute two.

7. A consistency checkable stirring device as claimed in claim 1, characterized in that: The end of the sliding column (20) away from the spiral rod (30) penetrates through the channel one to the side of the top cover (11) away from the stirring container (10), and the end of the outer arc wall of the sliding column (20) penetrating through the top cover (11) to the outside is provided with a scale line.

8. A consistency checkable stirring device as claimed in claim 1, characterized in that: The top cover (11) is fixed with the motor (12) at the center of the side wall away from the stirring container (10), the motor (12) is coaxially fixed with the stirring shaft (13) at the side wall close to the top cover (11), the end of the stirring shaft (13) away from the motor (12) penetrates through the top cover (11) to the stirring container (10), and the detection mechanism is arranged away from the stirring shaft (13).