Anti-toppling coating viscosity detection device

By introducing limiting and clamping components into the coating viscosity testing device, the problem of containers tipping over due to rotor contact with the sidewall during testing is solved, achieving stable container fixation and smooth testing, and adapting to containers of different sizes and heights.

CN223679013UActive Publication Date: 2025-12-16SULI KEWEI NEW MATERIAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422969089.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-12-16
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

In existing paint viscosity testing devices, the container is prone to displacement or tipping during the testing process due to the rotor contacting the container sidewall, resulting in paint spillage and causing inconvenience to the testing, especially when testing containers of different sizes and heights.

Method used

A paint viscosity testing device designed to prevent tipping includes a limiting component and a clamping component. The limiting component consists of a first clamping plate, and the clamping component consists of a push frame, a bearing seat, a lead screw, an internal thread seat, a fixing plate, and a knob. Through the V-shaped structure of the limiting component and the arc-shaped structure of the clamping component, combined with the adjustment mechanism, the container can be fixed and adjusted to prevent the container from moving or tipping during the testing process.

Benefits of technology

It effectively prevents paint spillage due to container movement or tipping during testing, improving the stability and versatility of the testing process. It adapts to containers of different heights and sizes, ensuring smooth testing.

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Abstract

The utility model discloses an anti-toppling coating viscosity detection device, and belongs to the technical field of coating detection equipment. The device mainly comprises a detection table and a viscosity measuring instrument which is installed on the detection table and used for detecting the viscosity of the coating, the top face of the detection table is fixedly connected with an anti-toppling assembly used for containing a container, and the anti-toppling assembly comprises a limiting assembly used for limiting the position of the container and a clamping assembly used for clamping the container; the limiting assembly is fixedly installed on the detection table to be matched with the adjustable clamping assembly to fix the placement position of the container so as to prevent the container from moving in the detection process, and the adjusting mechanism is matched with the first lifting plate and the second lifting plate to be adjusted up and down on the limiting assembly and the clamping assembly. Containers with different heights can be better fixed, so that the situation that the containers with different heights are toppled due to the fact that the containers are moved is avoided.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of paint detection equipment, in particular to a paint viscosity detection device capable of preventing tilting. BACKGROUND

[0002] Viscosity is an important indicator of paint fluidity and application performance. Proper viscosity can ensure uniform distribution of paint during spraying, brushing or rolling, and avoid problems such as sagging and dripping. It is often necessary to detect the viscosity of the produced paint by a viscosity detector to determine whether the paint meets the factory standard.

[0003] According to the search, the online viscosity measuring instrument for heat conducting oil disclosed in the patent No. CN218674628U relates to the technical field of heat conducting oil measurement, and comprises a machine body and a base. A connecting groove block is arranged on the lower surface of the machine body. Cavities are formed around the inner wall of the connecting groove block. A test rod is arranged on the inner wall of the connecting groove block. Rubber pads are fixedly connected to the lower surface of the connecting groove block. Slots are formed around the upper wall of the test rod on one side of the cavities. Clamping mechanisms are arranged on the inner walls of the cavities. The traditional equipment rotor thread connection mode is changed to avoid the problem of increasing the rotating work intensity of the operator when installing the rotor on the equipment, improve the efficiency of the equipment measurement, avoid the problem of loosening of the rotor thread connection during the measurement of the product, and improve the accuracy of the equipment measurement.

[0004] However, when the viscosity detector detects the viscosity of the paint stored in the container, the existing method is to place the container on the detection table and place the rotor of the viscosity detector in the container to detect the viscosity of the paint. Due to the different shapes of the rotor, displacement of the container on the detection table may occur during the detection process, especially when different sizes and heights of containers are detected. When the rotor contacts the side wall of the container, the container may even be tilted, and the paint stored inside may be spilled, which brings inconvenience to the detection of viscosity.

[0005] Therefore, it is necessary to provide a paint viscosity detection device capable of preventing tilting to solve the above problems.

[0006] It should be noted that the above information disclosed in the background section of the present application is only used to understand the background technology of the concept of the present application, and therefore, it can contain information which does not constitute prior art. CONTENT OF THE UTILITY MODEL

[0007] The utility model aims at providing a paint viscosity detection device capable of preventing tilting to solve the problems raised in the background technology.

[0008] The technical scheme adopted by the application to solve its technical problems is:

[0009] The application discloses a kind of anti-toppling paint viscosity detection devices, including detection table and be installed on the detection table for paint viscosity detection viscosity measuring instrument, the top surface of the detection table is fixedly connected with the anti-toppling component for placing container, the anti-toppling component includes the limiting component for limiting the position of container and the clamping component for clamping container;

[0010] The limiting component includes a first clamping plate, which has a "V" shape structure, and the inner side of the first clamping plate and the top surface of the detection table form an open V-shaped groove, the clamping component includes a push frame, a bearing seat, a lead screw, an internally threaded seat, a fixed plate and a knob, the bearing seat is fixedly installed on the center of the side wall of the push frame through a screw, one end of the lead screw is fixedly installed with the inner ring of the bearing seat, the fixed plate is installed at the edge of the top surface of the detection table, a through hole is formed in the inside of the fixed plate for the lead screw to pass through, and the side wall of the fixed plate at the position of the through hole is fixedly installed with the internally threaded seat through a screw, and the side wall of the lead screw is connected with the internal thread of the internally threaded seat.

[0011] Preferably, the push frame includes a moving plate and a second clamping plate, one side of the moving plate is fixedly installed with the bearing seat, the other side of the moving plate is fixedly connected with one side of the second clamping plate, and the other side of the second clamping plate has an arc surface structure.

[0012] Preferably, a sliding groove is formed in the top surface of the detection table at the open position of the V-shaped groove, and a sliding block is fixedly connected to the bottom surface of the moving plate, and the sliding block is slidingly connected in the sliding groove.

[0013] Preferably, a first lifting plate is slidingly connected to the top surface of the first clamping plate through an adjusting mechanism in a sliding hole formed in the inside of the first clamping plate, and the first lifting plate has a "V" shape structure.

[0014] Preferably, a second lifting plate is slidingly connected to the top surface of the second clamping plate through an adjusting mechanism in a sliding hole formed in the inside of the second clamping plate, and the second lifting plate has an arc structure.

[0015] Preferably, the adjusting mechanism includes a sliding rod, a mounting hole, a spring, a marble and a limiting groove, the limiting groove has a wave shape, the limiting groove is formed in the side wall of the sliding hole, the sliding rod is slidingly connected in the sliding hole, the mounting hole is formed in the side wall of the bottom of the sliding rod, the spring is installed in the mounting hole, the marble is slidingly connected in the inside of the mounting hole, the opening of the mounting hole has a converging shape, the side wall of the spring is in contact with the marble, part of the marble is exposed outside the side wall of the sliding rod, and the side wall of the marble is in contact with the limiting groove.

[0016] The application has the following beneficial effects:

[0017] 1. The position of the container is fixed by fixing the limiting assembly on the detection table and adjusting the clamping assembly, so as to avoid the position movement of the container during the detection process, and the first lifting plate and the second lifting plate are adjusted up and down on the limiting assembly and the clamping assembly respectively through the adjusting mechanism, so that the containers of different heights can be better fixed, thereby avoiding the situation that the containers of different heights and the containers move and cause tilting.

[0018] 2. The first clamping plate is provided as a V-shaped structure, and the second clamping plate is provided as an arc surface structure, so that containers of different sizes can be fixed, thereby improving the universality of the paint viscosity detection device.

[0019] In addition to the purposes, features and advantages described above, the present application has other purposes, features and advantages. The present application will be described in detail below with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0020] The drawings accompanying the specification of the present application form a part thereof, serve to provide further understanding of the present application, and together with the description of the present application, serve to explain the present application, and do not constitute improper limitations on the present application.

[0021] In the drawings:

[0022] Figure 1 It is a whole schematic view of the anti-toppling paint viscosity detection device of the present application.

[0023] Figure 2 It is a limiting assembly structure schematic view of the present application.

[0024] Figure 3 It is a clamping assembly structure schematic view of the present application.

[0025] Figure 4 It is an adjusting mechanism structure schematic view of the present application.

[0026] Figure 5 It is a Figure 4 It is an enlarged structure schematic view of A in the figure.

[0027] In the drawings, various reference signs represent:

[0028] 1, detection table; 11, sliding groove; 2, viscosity measuring instrument; 3, limiting assembly; 31, first clamping plate; 32, V-shaped groove; 33, first lifting plate; 4, clamping assembly; 41, moving plate; 42, sliding block; 43, bearing seat; 44, lead screw; 45, fixed plate; 46, knob; 47, second lifting plate; 48, second clamping plate; 49, internal thread seat; 5, adjusting mechanism; 51, sliding rod; 52, mounting hole; 53, spring; 54, ball; 55, limiting groove; 6, sliding hole. DETAILED DESCRIPTION

[0029] It should be noted that the embodiments and features in the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.

[0030] In order for those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings. Obviously, the described embodiments are only a 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 work should fall within the scope of protection of the present application.

[0031] Please refer to Figures 1-5 The embodiments provided by the present application have the following beneficial effects:

[0032] A paint viscosity detection device capable of preventing tilting, comprising a detection table 1 and a viscosity measuring instrument 2 for paint viscosity detection installed on the detection table 1. The paint sample to be detected is placed in the measuring container of the viscosity measuring instrument 2 to ensure uniformity of the sample,

[0033] Then, the container containing the paint is placed on the top surface of the detection table 1, so that the rotor of the viscosity measuring instrument 2 is placed in the container. The viscosity meter is started, and the rotor starts to rotate at a constant speed. The speed of rotation and the geometry of the rotor will affect the flow of the paint. The paint generates resistance to the rotation of the rotor, and the resistance is proportional to the viscosity of the paint. The built-in sensor in the viscosity measuring instrument 2 measures the torque required by the rotor in real time. According to the measured torque and the rotation speed of the rotor, the instrument calculates the viscosity value of the paint.

[0034] During the process, if the container is placed too high or too low, it will cause the container to move or tilt on the detection table 1. Therefore, the top surface of the detection table 1 is fixedly connected with an anti-tilting assembly for placing the container. The anti-tilting assembly comprises a limiting assembly 3 for limiting the position of the container and a clamping assembly 4 for clamping the container. The limiting assembly 3 comprises a first clamping plate 31, which is in a "V" shape structure. The inner side of the first clamping plate 31 and the top surface of the detection table 1 form an open V-shaped groove 32. The clamping assembly 4 comprises a push frame, a bearing seat 43, a lead screw 44, an internal threaded seat 49, a fixed plate 45 and a knob 46. The bearing seat 43 is fixedly installed on the center of the side wall of the push frame through a screw. One end of the lead screw 44 is fixedly installed with the inner ring of the bearing seat 43. The fixed plate 45 is installed at the edge of the top surface of the detection table 1. A through hole is formed in the inside of the fixed plate 45 for the lead screw 44 to pass through. The side wall of the fixed plate 45 at the position of the through hole is fixedly installed with the internal threaded seat 49 through a screw. The side wall of the lead screw 44 is internally threadedly connected with the internal threaded seat 49.

[0035] The push frame comprises a moving plate 41 and a second clamping plate 48, one side wall center of the moving plate 41 is fixedly installed with a bearing seat 43, the other side wall of the moving plate 41 is fixedly connected with one side of the second clamping plate 48, the other side wall of the second clamping plate 48 is in an arc surface structure, a sliding groove 11 is formed in the top surface of the detection table 1 at the open position of the V-shaped groove 32, and the bottom surface of the moving plate 41 is fixedly connected with a sliding block 42 which is slidingly connected in the sliding groove 11.

[0036] The principle is that a container containing paint to be detected is placed on the detection table 1, and is pushed into the first clamping plate 31 from the opening of the V-shaped groove 32, so that the inner side wall of the first clamping plate 31 is in contact with the side wall of the container, then the knob 46 is rotated by hand, the knob 46 drives the lead screw 44 to rotate in the internal threaded seat 49 installed on the fixed plate 45, so that the lead screw 44 moves towards the first clamping plate 31, and the second clamping plate 48 is also in contact with the side wall of the container, so that the first clamping plate 31 and the second clamping plate 48 clamp and fix the bottom of the container, thereby preventing the container from shaking or moving during detection of the paint stored in the container by the viscosity measuring instrument 2.

[0037] Further, the top surface of the first clamping plate 31 is slidingly connected with a first lifting plate 33 through an adjusting mechanism 5 in a sliding hole 6, the first lifting plate 33 is in a "V" shape structure, the top surface of the second clamping plate 48 is slidingly connected with a second lifting plate 47 through the adjusting mechanism 5 in the sliding hole 6, and the second lifting plate 47 is in an arc shape structure.

[0038] The adjusting mechanism 5 comprises a sliding rod 51, a mounting hole 52, a spring 53, a ball 54 and a limiting groove 55, the limiting groove 55 is in a wave shape, the limiting groove 55 is formed in the side wall of the sliding hole 6, the sliding rod 51 is slidingly connected in the sliding hole 6, the mounting hole 52 is formed in the bottom side wall of the sliding rod 51, the spring 53 is installed in the mounting hole 52, the ball 54 is slidingly connected in the mounting hole 52, the opening of the mounting hole 52 is in a converging shape, the side wall of the spring 53 is in contact with the ball 54, the ball 54 is partially exposed outside the side wall of the sliding rod 51, and the side wall of the ball 54 is in contact with the limiting groove 55.

[0039] If the container is higher, the container is easy to fall during the detection process, therefore, when detecting the higher container, the first lifting plate 33 and the second lifting plate 47 are pulled out from the first clamping plate 31 and the second clamping plate 48, the slide rod 51 slides upward in the slide hole 6, the ball 54 slides on the wavy limiting groove 55, and the spring 53 is squeezed and reset by the ball 54 sliding in the mounting hole 52, so that when the height is adjusted to the required height, the ball 54 can be clamped in the recess in the limiting groove 55 under the cooperation of the ball 54 and the spring 53, so as to ensure that the first lifting plate 33 and the second lifting plate 47 are placed on the first clamping plate 31 and the second clamping plate 48, and the first lifting plate 33 and the second lifting plate 47 can also resist the side wall of the container, so as to prevent the container from falling.

[0040] In addition, since the first clamping plate 31 is an open "V" structure and the second clamping plate 48 is an arc surface structure, different containers with different bottom areas can be clamped and fixed, and different sizes of containers can be well fixed to prevent the position from shifting, shaking and falling during the detection of the paint stored inside.

[0041] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various changes and variations. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An anti-toppling paint viscosity detection device, comprising a detection table (1) and a viscosity measuring instrument (2) for paint viscosity detection installed on the detection table (1), characterized in that: The top surface of the detection table (1) is fixedly connected with an anti-toppling assembly for placing a container, which comprises a limiting assembly (3) for limiting the position of the container and a clamping assembly (4) for clamping the container; The limiting assembly (3) comprises a first clamping plate (31) in a "V" shape structure, and an open V-shaped groove (32) is formed between the inner side of the first clamping plate (31) and the top surface of the detection table (1), and the clamping assembly (4) comprises a push frame, a bearing seat (43), a lead screw (44), an internally threaded seat (49), a fixed plate (45) and a knob (46), the bearing seat (43) is fixedly installed on the center of the side wall of the push frame through a screw, one end of the lead screw (44) is fixedly installed with the inner ring of the bearing seat (43), the fixed plate (45) is installed at the edge of the top surface of the detection table (1), a through hole is formed in the inside of the fixed plate (45) for the lead screw (44) to pass through, and the side wall of the fixed plate (45) at the position of the through hole is fixedly installed with the internally threaded seat (49) through a screw, and the side wall of the lead screw (44) is connected with the internal thread of the internally threaded seat (49).

2. The anti-toppling paint viscosity detection device of claim 1, wherein: The push frame comprises a moving plate (41) and a second clamping plate (48), one side of the moving plate (41) is fixedly installed with the bearing seat (43), and the other side of the moving plate (41) is fixedly connected with one side of the second clamping plate (48), and the other side of the second clamping plate (48) is in an arc surface structure.

3. A pour-down viscosity detection device according to claim 2, wherein: A sliding groove (11) is formed in the top surface of the detection table (1) at the open position of the V-shaped groove (32), and a sliding block (42) is fixedly connected to the bottom surface of the moving plate (41), and the sliding block (42) is slidingly connected in the sliding groove (11).

4. The anti-toppling paint viscosity detection device of claim 1, wherein: A first lifting plate (33) is slidingly connected to the top surface of the first clamping plate (31) through an adjusting mechanism (5) in a sliding hole (6) formed in the inside, and the first lifting plate (33) is in a "V" shape structure.

5. The anti-toppling paint viscosity detection device of claim 2, wherein: A second lifting plate (47) is slidingly connected to the top surface of the second clamping plate (48) through an adjusting mechanism (5) in a sliding hole (6) formed in the inside, and the second lifting plate (47) is in an arc structure.

6. An anti-sag coating viscosity detection device according to any of claims 4 or 5, characterised in that: The adjusting mechanism (5) comprises a sliding rod (51), a mounting hole (52), a spring (53), a ball (54) and a limiting groove (55), the limiting groove (55) is in a wave shape, the limiting groove (55) is formed on the side wall of the sliding hole (6), the sliding rod (51) is slidingly connected in the sliding hole (6), the mounting hole (52) is formed on the bottom side wall of the sliding rod (51), the spring (53) is installed in the mounting hole (52), the ball (54) is slidingly connected in the inside of the mounting hole (52), the opening of the mounting hole (52) is in a converging shape, the side wall of the spring (53) and the ball (54) are in contact, the ball (54) is partially exposed outside the side wall of the sliding rod (51), and the side wall of the ball (54) is in contact with the limiting groove (55).