Viscosity detection device for insulating paint

The assembled insulating coating testing device uses a laser transmitter and a falling ball to measure the viscosity of the coating, solving the problems of inaccurate testing and inconvenient equipment in the existing technology, and realizing efficient and accurate viscosity testing and convenient equipment management.

CN223664462UActive Publication Date: 2025-12-12ANQING KAILAI POLYMER MATERIALS CO LTD
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Patent Information

Application Number
CN202423214271.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-12
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing technologies rely on subjective judgment to detect coating viscosity, resulting in inaccurate results. Furthermore, the equipment is inconvenient to install and disassemble, and occupies a large space.

Method used

A viscosity testing device for insulating coatings was designed. It adopts an assembled structure and uses a laser transmitter and a falling ball to accurately measure the viscosity. It can also be disassembled and stored to reduce storage space.

Benefits of technology

It achieves both accuracy and convenience in coating viscosity testing, simplifies the installation and disassembly process of the equipment, and reduces storage space requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a viscosity detection device for insulating paint, which belongs to the technical field of paint detection and comprises a base, two symmetrically distributed support frames are mounted at the upper end of the base, two positioning parts are sleeved at the outer ends of the two support frames, and the two positioning parts are arranged on the base. Two correspondingly arranged laser receiving and transmitting devices are installed at the upper ends of the positioning pieces, the outer ends of the laser receiving and transmitting devices are electrically connected with counting timers, an auxiliary piece is installed on the positioning piece on the top layer, a small ball is arranged in the auxiliary piece, and a liquid storage piece is installed at the center end of the base. The laser receiving and transmitting device can be mounted and dismounted more conveniently, meanwhile, the blanking positions of the two groups of laser receiving and transmitting devices and the small balls can be positioned in a unified manner, multiple times of debugging are not needed, the detection steps are more efficient, the positions are more accurate, and the whole body can be dismounted subsequently, so that unified storage is facilitated, and the storage space is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of coating detection, more specifically, relate to a kind of viscosity detection device of insulating coating. BACKGROUND

[0002] Viscosity is a measure of the internal resistance experienced by a fluid in motion, reflecting the fluidity or consistency of the liquid. In the coating industry, viscosity is an important parameter for evaluating the performance of coatings, directly affecting the application of coatings and the final coating quality. Coatings with too high viscosity may result in difficult application, poor leveling, while coatings with too low viscosity may result in sagging, thin coating or the need for multiple coatings, affecting the final result and durability.

[0003] In the prior art, the viscosity of coatings is generally determined by subjective judgment. For example, when the coating is prepared, a wooden stick is used to stir the coating in the bucket, and then the wooden stick is lifted to observe the adhesion strength of the coating by the naked eye. The detection result is relatively vague and not accurate enough. Therefore, the present application provides a viscosity detection device for insulating coatings. SUMMARY

[0004] 1. Technical problem to be solved:

[0005] To solve the problems in the prior art, the present application provides a viscosity detection device for insulating coatings. The device is assembled for convenient installation and disassembly. The positions of the two laser transceivers and the small ball discharge can be uniformly positioned without the need for multiple adjustments. The detection steps are more efficient and the positions are more accurate. The entire device can be disassembled for unified storage, reducing the storage space.

[0006] 2. Technical solution:

[0007] To solve the above problems, the present application adopts the following technical solution.

[0008] A viscosity detection device for insulating coatings, comprising a base, the upper end of the base is provided with two symmetrically distributed support frames, the outer ends of the two support frames are provided with two positioning members, the upper ends of the positioning members are provided with two corresponding laser transceivers, the outer ends of the laser transceivers are connected with a counting timer through electrical connection, the positioning member of the top layer is provided with an auxiliary member, the auxiliary member is provided with a small ball inside, and the center of the base is provided with a liquid storage member.

[0009] Further improvement is that the support frame comprises two threaded bases one fixedly connected to the upper end of the base, and a threaded rod is threadedly connected between the inner walls of the threaded bases one.

[0010] Further improvement lies in that the positioning member comprises a positioning ring, two symmetrically distributed through holes are formed in the outer end of the positioning ring, the through holes are sleeved on the outer side of the support frame, two symmetrically distributed threaded holes are formed in the front end of the positioning ring, the threaded holes are in communication with the through holes, and a bolt one is threadedly connected between the inner walls of the threaded holes; two symmetrically distributed sliding grooves are formed in the upper end of the positioning ring, the sliding grooves are located on the horizontal side of the through holes, two sliding blocks are slidingly connected between the inner walls of the sliding grooves, springs are fixedly connected between the sliding blocks and the inner walls of the sliding grooves, and positioning frames are fixedly connected to the upper ends of the sliding blocks.

[0011] Further improvement lies in that the auxiliary member comprises a positioning rod inserted in the upper end of the top layer positioning ring, a sliding channel one is fixedly connected to the upper end of the positioning rod, a sliding channel two provided with an inclined surface is fixedly connected to the side end of the sliding channel one, a blanking cylinder is embeddedly arranged at the bottom end of the sliding channel two, the blanking cylinder is located on the upper side of the center point of the base, and a bolt two is threadedly connected to the bottom end of the positioning rod.

[0012] Further improvement lies in that the liquid storage member comprises a storage cylinder arranged on the upper side of the base, the bottom of the storage cylinder is provided in a circular truncated cone shape, a storage pipe is fixedly connected to the storage cylinder, a plunger is threadedly connected between the inner walls of the storage pipe, a limiting plate is fixedly connected to the bottom end of the plunger, a threaded base two is fixedly connected to the center end of the base, and the threaded base two is threadedly connected with the storage pipe.

[0013] 3. Beneficial effects:

[0014] Compared with the prior art, the technical scheme has the beneficial effects that:

[0015] The utility model discloses a design is reasonable, through adopting the mode of assembly to lay out, when using, first two support frames are installed respectively on the upper side of the base, then two positioning members are sleeved to the outer side of the support frame and are positioned respectively on the upper and lower two sides, and then two groups of laser transceivers are placed correspondingly above the positioning member for clamping and limiting, since the positioning member is provided as a whole on the same horizontal plane, the signals emitted by each group of two laser transceivers can be correspondingly received, without adjusting the height one by one, then the auxiliary member is inserted above the positioning member arranged on the top layer, then the liquid storage member loaded with paint is threadedly loaded on the center end of the base, finally, the small ball in the auxiliary member is released, and the small ball continuously feeds under the free fall along the center point of the liquid storage member, wherein the magnetic induction line signals between the two laser transceivers are blocked between the two groups of laser transceivers arranged correspondingly on the upper and lower sides, so that the time difference of the two electric signals is obtained in the counting timer, and finally the height difference between the two positioning members is obtained, and the viscosity value is obtained according to the fluid viscosity formula.

[0016] The utility model discloses, when not using, personnel can be through the auxiliary piece from the top layer positioning piece and divide and remove, and two positioning pieces avoid removing from the support frame, and two groups of corresponding laser transceivers remove from the positioning piece surface, and two support frames remove from the top of base, and the liquid storage piece removes from the base surface, under the one by one removal of above-mentioned steps, can split the whole to the subsequent unified storage, reduce the space of storage, and the cleaning is also more convenient.

[0017] It should be noted that the structures not introduced in the utility model are the same as the prior art or can be realized by using the prior art since they do not involve the design points and improvement direction of the utility model, and thus no further description is made herein. BRIEF DESCRIPTION OF DRAWINGS

[0018] Fig. 1 It is the whole structure schematic diagram of the utility model;

[0019] Fig. 2 It is the structure schematic diagram of the positioning piece and the auxiliary piece of the utility model;

[0020] Fig. 3 It is the structure schematic diagram of the liquid storage piece of the utility model.

[0021] Explanation of reference numerals in the drawings:

[0022] 1, base;

[0023] 2, support frame;21, threaded base one;22, threaded rod;

[0024] 3, positioning piece;31, positioning ring;32, through hole;33, threaded hole;34, bolt one;35, sliding slot;36, sliding block;37, spring;38, positioning frame;

[0025] 4, laser transceiver;5, counting timer;

[0026] 6, auxiliary piece;61, positioning rod;62, sliding way one;63, sliding way two;64, blanking cylinder;65, bolt two;

[0027] 7, liquid storage piece;71, storage cylinder;72, storage pipe;73, plunger;74, limiting plate;75, threaded base two. DETAILED DESCRIPTION

[0028] In order to facilitate understanding the utility model, below will be with reference to relevant drawings more comprehensive description of the utility model, the drawings show several embodiments of the utility model, however, the utility model can be realized in many different forms, and is not limited to the embodiments described herein, on the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0029] In the description of the utility model, it is understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "page", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like is the orientation or positional relationship shown based on the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0030] In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features.

[0031] In the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing", "providing", "providing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or indirectly connected through an intermediate medium, it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances. Embodiment

[0032] Please refer to Figs. 1-3 A kind of viscosity detection device of insulating paint, including base 1, the upper end of the base 1 is equipped with two symmetrical distribution support frames 2, two support frames 2 are equipped with two positioning members 3 outside, the upper end of the positioning member 3 is equipped with two corresponding laser transceivers 4, the outer end of the laser transceiver 4 is electrically connected with counting timer 5, the positioning member 3 of top layer is equipped with auxiliary member 6, the inside of the auxiliary member 6 is equipped with small ball, the center end of the base 1 is equipped with liquid storage member 7.

[0033] In the use process, in order to make the existing coating viscosity detection more convenient, the data is more accurate, and it is convenient to carry, in the embodiment, the arrangement is carried out by adopting the assembly mode, in use, first, two support frames 2 are respectively installed on the upper side of the base 1, then two positioning members 3 are sleeved on the outer side of the support frame 2, and are respectively positioned on the upper and lower sides, then two groups of laser transceivers 4 are correspondingly arranged on the upper side of the positioning member 3 for clamping and limiting, since the positioning member 3 is arranged on the same horizontal plane, the signals emitted by each two laser transceivers 4 can be correspondingly received, without adjusting the height one by one, then the auxiliary member 6 is inserted above the positioning member 3 arranged on the top, then the liquid storage member 7 loaded with paint is threadedly loaded on the center end of the base 1, finally, the small ball in the auxiliary member 6 is released, and the small ball continuously discharges along the center point of the liquid storage member 7 under free fall, wherein the magnetic induction line signal between the two laser transceivers 4 is blocked between the two laser transceivers 4 arranged correspondingly on the upper and lower groups, so that the time difference of the two electric signals is obtained in the counting timer 5, finally, the height difference between the two positioning members 3 is obtained, and the viscosity value is obtained according to the fluid viscosity formula;

[0034] Subsequently, when not in use, personnel can remove the auxiliary member 6 from the top positioning member 3, remove the two positioning members 3 from the support frame 2, remove the two groups of corresponding laser transceivers 4 from the surface of the positioning member 3, remove the two support frames 2 from the top of the base 1, and remove the liquid storage member 7 from the surface of the base 1. After the above steps are removed one by one, the whole can be disassembled for subsequent unified storage, reducing the storage space, and the cleaning is more convenient.

[0035] Please refer to Figs. 1-3 The support frame 2 comprises two threaded bases one 21 fixedly connected to the upper end of the base 1, and a threaded rod 22 threadedly connected between the inner walls of the threaded base one 21.

[0036] More specifically, the positioning member 3 comprises a positioning ring 31, two symmetrically distributed through holes 32 are formed in the outer end of the positioning ring 31, the through holes 32 are sleeved on the outer side of the threaded rod 22, two symmetrically distributed threaded holes 33 are formed in the front end of the positioning ring 31, the threaded holes 33 and the through holes 32 are in communication with each other, and a bolt one 34 is threadedly connected between the inner walls of the threaded holes 33, two symmetrically distributed sliding grooves 35 are formed in the upper end of the positioning ring 31, the sliding grooves 35 are located on the horizontal side of the through holes 32, and two sliding blocks 36 are slidingly connected between the inner walls of the sliding grooves 35, springs 37 are fixedly connected between the sliding blocks 36 and the inner walls of the sliding grooves 35, positioning frames 38 are fixedly connected to the upper end of the sliding blocks 36, and two positioning frames 38 are located on the outer side of the laser transceiver 4.

[0037] In the use process of the scheme, the two positioning rings 31 are respectively inserted outside the support frame 2, and then according to any height, the positioning ring 31 is fixed on the surface of the support frame 2 through the rotation of the screw 34 under the friction resistance, at this time the personnel pull the positioning frame 38 to the two sides, so that the spring 37 is contracted, and then the two corresponding laser transceivers 4 are placed above the positioning ring 31, and then under the elastic potential of the spring 37, the positioning frame 38 clamps the laser transceiver 4, and since the positioning ring 31 and the positioning frame 38 are on the same horizontal degree, the rays of one laser transceiver 4 can accurately enter the other corresponding laser transceiver 4, so that the signal receiving is realized, without making too many position adjustments, the installation is efficient and convenient.

[0038] Please refer to Figs. 1-2 The auxiliary part 6 includes a positioning rod 61 inserted into the upper end of the top positioning ring 31, the upper end of the positioning rod 61 is fixedly connected with a slide 62, the side end of the slide 62 is fixedly connected with a slide 63 provided with an inclined surface, the bottom end of the slide 63 is embeddedly installed with a blanking cylinder 64, the blanking cylinder 64 is located on the upper side of the center point of the base 1, and the bottom end of the positioning rod 61 is threadedly connected with a bolt 65.

[0039] In the use process of the scheme, the positioning rod 61 is inserted above the top positioning ring 31, and then the bolt 65 is installed at the bottom side of the positioning ring 31, so that the position of the positioning rod 61 is positioned, then the ball is placed in the slide 62, after the paint-coated liquid storage part 7 is installed at the center end of the base 1, the personnel slides the ball to the slide 63, under the inclined surface of the slide 63, the ball falls into the blanking cylinder 64, and since the blanking cylinder 64 is arranged at the center point of the base 1, the ball directly falls into the center point of the liquid storage part 7, and since the two groups of corresponding laser transceivers 4 are located on the two sides of the center point, when the ball falls, it can accurately pass through the rays emitted by the two laser transceivers 4, so as to block the magnetic induction signal of the laser transceiver 4 at the fixed position, so as to calculate the time difference of the ball passing between the upper and lower groups of laser transceivers 4.

[0040] Please refer to Fig. 1 and Fig. 3 The liquid storage part 7 includes a storage cylinder 71 provided on the upper side of the base 1, the bottom of the storage cylinder 71 is provided in a circular table shape and is fixedly connected with a storage pipe 72, the inner wall of the storage pipe 72 is threadedly connected with a plunger 73, the bottom end of the plunger 73 is fixedly connected with a limiting plate 74, the center end of the base 1 is fixedly connected with a threaded base 75, and the threaded base 75 is threadedly connected with the storage pipe 72.

[0041] In the use process of the scheme, when the personnel load paint in the storage cylinder 71 for viscosity detection, the personnel first screw the plunger 73 into the bottom of the storage pipe 72, thereby blocking it, then after the small ball falls in the storage cylinder 71 and the detection work is finished, the personnel take out the storage pipe 72 in the threaded base 75 by rotating the storage cylinder 71 again, finally when the paint in the storage cylinder 71 needs to be cleaned, the plunger 73 is taken out at the bottom of the storage pipe 72 by rotating the limiting plate 74, so that the small ball and the paint are released uniformly, and the cleaning work of the storage cylinder 71 is realized.

[0042] The above-described embodiments only express certain implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application; it should be pointed out that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application; therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. A device for detecting the viscosity of an insulating coating, comprising a base (1), characterised in that: The upper end of the base (1) is provided with two symmetrical support frames (2), the outer ends of the two support frames (2) are provided with two positioning members (3), the upper ends of the positioning members (3) are provided with two corresponding laser transceivers (4), the outer ends of the laser transceivers (4) are provided with a counting timer (5) through electrical connection, the positioning member (3) of the top layer is provided with an auxiliary member (6), the inside of the auxiliary member (6) is provided with a small ball, and the center end of the base (1) is provided with a liquid storage member (7).

2. The viscosity detection device for insulating coating according to claim 1, characterized in that: The support frame (2) comprises two threaded bases one (21) fixedly connected to the upper end of the base (1), and a threaded rod (22) threadedly connected between the inner walls of the threaded bases one (21).

3. The device for detecting the viscosity of an insulating coating according to claim 1, characterized in that: The positioning member (3) comprises a positioning ring (31), two symmetrical through holes (32) are formed in the outer end of the positioning ring (31), the through holes (32) are sleeved on the outer side of the support frame (2), two symmetrical threaded holes (33) are formed in the front end of the positioning ring (31), the threaded holes (33) and the through holes (32) are in communication with each other, and a bolt one (34) is threadedly connected between the inner walls of the threaded holes (33), two symmetrical sliding grooves (35) are formed in the upper end of the positioning ring (31), the sliding grooves (35) are located on the horizontal side of the through holes (32), and two sliding blocks (36) are slidingly connected between the inner walls of the sliding grooves (35), springs (37) are fixedly connected between the sliding blocks (36) and the inner walls of the sliding grooves (35), and positioning frames (38) are fixedly connected to the upper ends of the sliding blocks (36), and the two positioning frames (38) are located on the outer side of the laser transceiver (4).

4. The device for detecting the viscosity of an insulating coating according to claim 1, characterized in that: The auxiliary member (6) comprises a positioning rod (61) inserted into the upper end of the top layer positioning ring (31), a slide one (62) is fixedly connected to the upper end of the positioning rod (61), a slide two (63) provided with an inclined surface is fixedly connected to the side end of the slide one (62), a blanking cylinder (64) is embeddedly installed at the bottom end of the slide two (63), the blanking cylinder (64) is located on the upper side of the center point of the base (1), and a bolt two (65) is threadedly connected to the bottom end of the positioning rod (61).

5. The device for detecting the viscosity of an insulating coating according to claim 1, characterized in that: The liquid storage member (7) comprises a storage cylinder (71) provided on the upper side of the base (1), the bottom of the storage cylinder (71) is provided in a circular truncated cone shape and is fixedly connected with a storage pipe (72), a plunger (73) is threadedly connected between the inner walls of the storage pipe (72), a limiting plate (74) is fixedly connected to the bottom end of the plunger (73), a threaded base two (75) is fixedly connected to the center end of the base (1), and the threaded base two (75) is threadedly connected with the storage pipe (72).