CN217638533U - Coating viscosity on-line measuring device - Google Patents

Coating viscosity on-line measuring device Download PDF

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Publication number
CN217638533U
CN217638533U CN202220735152.6U CN202220735152U CN217638533U CN 217638533 U CN217638533 U CN 217638533U CN 202220735152 U CN202220735152 U CN 202220735152U CN 217638533 U CN217638533 U CN 217638533U
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Prior art keywords
pipe
viscosity
coating
paint
container
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CN202220735152.6U
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Chinese (zh)
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黄世昱
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Huierming Fujian Chemical Industry Co ltd
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Huierming Fujian Chemical Industry Co ltd
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Abstract

The utility model relates to a paint viscosity on-line measuring device, which comprises a viscosity detector and a base, wherein the base is provided with a measuring container, one side of the base is fixedly connected with a corresponding fixed guide pillar upwards, and the fixed guide pillar is provided with a viscosity measuring instrument which can be used for measuring the viscosity of the material in the measuring container in a lifting way; the material circulating mechanism comprises a coating pump, a coating feeding pipe and a coating discharging pipe which are connected to the coating pump, and the coating feeding pipe and the coating discharging pipe are respectively connected to the stirring barrels of the corresponding stirring equipment for coating production; the material extraction mechanism comprises a material extraction pipe connected with the coating discharge pipe of the material circulation mechanism, a corresponding material taking valve is arranged at one end, close to the coating discharge pipe, of the material extraction pipe, and one end, which is not connected with the coating discharge pipe, of the material extraction pipe is connected to the lower side of the detection container. The utility model discloses intensity of labour can effectively be reduced, and detection efficiency can effectively be promoted.

Description

Coating viscosity on-line measuring device
Technical Field
The utility model relates to a coating viscosity detection device specifically indicates a coating viscosity on-line measuring device.
Background
Viscosity is one of the most important parameters in the production process of the coating, and most of the existing coating viscosity detection modes are to take materials in a shutdown state and then send the materials for inspection; subsequently, the amount of the added raw and auxiliary materials is adjusted according to the detection data; after the raw and auxiliary materials are adjusted, stopping the machine again to take materials and inspect until the viscosity of the coating is finally adjusted. The whole material taking and feeding process completely depends on manual work, so that the labor intensity is increased, and the detection efficiency is obviously lower.
Consequently, design a section can effectively reduce intensity of labour, and can effectively promote detection efficiency's coating viscosity on-line measuring device is the utility model discloses a research purpose.
Disclosure of Invention
To the technical problem that above-mentioned prior art exists, the utility model aims at providing a coating viscosity on-line measuring device, this coating viscosity on-line measuring device can effectively solve the technical problem that above-mentioned prior art exists.
The technical scheme of the utility model is that:
an on-line detecting device for the viscosity of paint comprises
The viscosity detector is used for detecting the viscosity of the coating and comprises a base, a detection container for containing materials is fixedly arranged on the base, a corresponding fixed guide pillar is fixedly connected to one side of the base upwards, and a viscosity detector capable of being used for detecting the viscosity of the materials in the detection container is arranged on the fixed guide pillar in a lifting mode;
the material circulating mechanism comprises a coating pump, a coating material feeding pipe and a coating material discharging pipe which are connected to the feeding and discharging ends of the coating pump, and the coating material feeding pipe and the coating material discharging pipe are respectively connected to the corresponding stirring barrels of the stirring equipment for coating production;
the material extraction mechanism comprises a material extraction pipe connected with the coating material discharging pipe of the material circulation mechanism, a corresponding material taking valve is arranged at one end, close to the coating material discharging pipe, of the material extraction pipe, and one end, not connected with the coating material discharging pipe, of the material extraction pipe is connected to the lower side of the detection container.
The bottom of the detection container is outwards connected with a corresponding discharge pipe, and a discharge valve is arranged on the discharge pipe in a fixing mode.
The material extraction pipe is provided with a corresponding pressure relief pipe at one side of the discharge end of the material extraction valve, and a pressure relief valve is arranged on the pressure relief pipe.
The device also comprises a flushing mechanism used for flushing the detection container on line.
The flushing mechanism comprises a flushing pipe connected to a material extraction pipe on one side of the discharge end of the material taking valve, and the flushing pipe is connected to an external tap water source through a corresponding flushing valve.
The middle part of base is equipped with the container fixed slot, the bottom of detecting the container is fixed inlay adorned in the container fixed slot.
The utility model has the advantages that:
1) When the utility model does not carry out viscosity detection, the coating pump of the material circulating mechanism and the stirring equipment for coating production work synchronously, so that in the process of material stirring, materials in the stirring barrel of the stirring equipment are effectively pumped and discharged circularly, and the stirring effect of the materials is effectively improved by matching the stirring action of the stirring mechanism; when the viscosity detection is needed, the material taking valve of the material extracting mechanism is opened to convey part of the materials in the circulation to a detection container fixed on a base of the viscosity detector, and when the material extracting amount meets the detection requirement, the material taking valve is closed; and then the viscosity detector descends to the detection end of the viscosity detector and enters the detection container, and then the viscosity detector is started to detect the viscosity of the material. The viscosity of the coating in production is effectively detected on line, so that the labor intensity is effectively reduced, and the detection efficiency is effectively improved.
2) The utility model discloses a bottom of detecting the container is outwards connected with a corresponding row's material pipe, and row material manages to go up fixing device has the blow-off valve, and the material extraction pipe has a corresponding pressure release pipe in the discharge end one side fixing device who gets the material valve, the last device of pressure release pipe is provided with the relief valve. After the materials are detected, the discharge valve and the pressure release valve are opened, and the materials in the detection container and the material extraction pipe can be effectively discharged and collected through the discharge pipe. It is very convenient to can effectively ensure the utility model discloses a practical function.
3) The utility model discloses still including washing the mechanism, washing the mechanism and containing the flushing pipe of connecting on the material extraction pipe of the discharge end one side of fetching valve, the flushing pipe is connected to external water source through corresponding flushometer. After the detected materials are discharged and collected, closing the discharge valve and the pressure release valve, and opening the flushing valve to effectively introduce clean water into the detection container, effectively cleaning the detection container through manual assistance, and discharging waste water generated by cleaning through the discharge valve again; after cleaning is finished, the flushing valve is closed, and the pressure release valve is opened again, so that the water body in the material extraction pipe can be effectively and simultaneously discharged; and then closing the discharge valve and the pressure relief valve. It is very convenient, and can further effectively ensure the utility model discloses a practical function.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a usage state diagram of the present invention.
FIG. 3 is a schematic view of the structure of the viscometer.
Detailed Description
To facilitate understanding of those skilled in the art, the structure of the present invention will now be described in further detail with reference to the following examples:
referring to FIGS. 1-3, an on-line detecting device for viscosity of paint comprises
A viscosity detector 1 for detecting the viscosity of the paint, wherein the viscosity detector 1 includes a base 101, a material holding detection container 2 is mounted on the base 101, a corresponding fixing guide pillar 102 is fixedly connected to one side of the base 101, and a viscosity detector 103 capable of detecting the viscosity of the material in the detection container 2 is mounted on the fixing guide pillar 102 in a lifting manner (the viscosity detector 1 in this embodiment is a commercially available stormer viscometer, which is an existing product and is not described herein again);
the material circulating mechanism 3 comprises a paint pump 301, and a paint feed pipe 302 and a paint discharge pipe 303 connected to the feed and discharge ends of the paint pump 301, wherein the paint feed pipe 302 and the paint discharge pipe 303 are respectively connected to the corresponding mixing tanks of the mixing equipment 4 for paint production;
the material extraction mechanism 5 comprises a material extraction pipe 501 connected to the coating material discharge pipe 303 of the material circulation mechanism 3, a corresponding material taking valve 502 is arranged at one end of the material extraction pipe 501 close to the coating material discharge pipe 303, and one end, which is not connected to the coating material discharge pipe 303, of the material extraction pipe 501 is connected to the lower side of the detection container 2.
The bottom of the detection container 2 is connected with a corresponding discharge pipe 6 outwards, and a discharge valve 7 is arranged on the discharge pipe 6 in a fixing mode.
A corresponding pressure relief pipe 8 is fixed on the material extraction pipe 501 at the discharge end of the material extraction valve 502, and a pressure relief valve 9 is arranged on the pressure relief pipe.
The device also comprises a flushing mechanism 10 which is used for flushing the detection container 2 on line.
The flushing mechanism 10 comprises a flushing pipe 1001 connected to the material drawing pipe 501 on the side of the discharge end of the material taking valve 502, and the flushing pipe 1001 is connected to an external tap water source through a corresponding flushing valve 1002.
The middle part of the base 101 is provided with a container fixing groove 11, and the bottom of the detection container 2 is fixedly embedded in the container fixing groove 11.
When the utility model does not detect the viscosity, the coating pump 301 of the material circulating mechanism 3 and the stirring device 4 for coating production work synchronously, so that in the process of material stirring, the materials in the stirring barrel of the stirring device 4 are effectively pumped and discharged circularly, and the stirring effect of the materials is effectively improved by matching the stirring action of the stirring mechanism; when the viscosity detection is needed, the material taking valve 502 of the material extracting mechanism 5 is opened to convey part of the materials in the circulation to the detection container 2 fixed on the base 101 of the viscosity detector 1, and when the material extracting amount meets the detection requirement, the material taking valve 502 is closed; then the viscosity detector 103 descends to the detection end thereof to enter the detection container 2, and then the material viscosity detection is carried out.
After the materials are detected, the discharge valve 7 and the pressure release valve 9 are opened, and the materials in the detection container 2 and the material extraction pipe 501 can be effectively discharged and collected through the discharge pipe 6; after the detected materials are discharged and collected, closing the discharge valve 7 and the pressure release valve 9, opening the flushing valve 1002 to effectively introduce clean water into the detection container 2, effectively cleaning the detection container 2 through manual assistance, and discharging the wastewater generated by cleaning through the discharge valve 7 again; after cleaning is finished, the flushing valve 1002 is closed, and the pressure release valve 9 is opened again, so that the water in the material extraction pipe 501 can be effectively discharged at the same time; then, the discharge valve 7 and the pressure relief valve 9 are closed.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (6)

1. The utility model provides a coating viscosity on-line measuring device which characterized in that: comprises that
The viscosity detection device comprises a viscosity detection meter (1) and a control module, wherein the viscosity detection meter (1) is used for detecting the viscosity of a coating, the viscosity detection meter (1) comprises a base (101), a detection container (2) for containing a material is fixedly arranged on the base (101), one side of the base (101) is fixedly connected with a corresponding fixed guide pillar (102) upwards, and a viscosity detector (103) capable of detecting the viscosity of the material in the detection container (2) is arranged on the fixed guide pillar (102) in a lifting mode;
the material circulating mechanism (3) comprises a paint pump (301), and a paint feeding pipe (302) and a paint discharging pipe (303) which are connected to the feeding and discharging ends of the paint pump (301), wherein the paint feeding pipe (302) and the paint discharging pipe (303) are respectively connected to the stirring barrels of the corresponding stirring equipment (4) for paint production;
material extraction mechanism (5), contain connect in material extraction pipe (501) of coating discharging pipe (303) of material circulation mechanism (3), material extraction pipe (501) are close to one end fixing device of coating discharging pipe (303) and have a corresponding material valve (502), and material extraction pipe (501) do not connect in the one end of coating discharging pipe (303) and are connected to the downside of detection container (2).
2. The on-line paint viscosity detection device according to claim 1, characterized in that: the bottom of the detection container (2) is connected with a corresponding discharge pipe (6) outwards, and a discharge valve (7) is arranged on the discharge pipe (6) in a fixing mode.
3. The on-line paint viscosity detection device according to claim 2, characterized in that: a corresponding pressure relief pipe (8) is fixedly arranged on one side of the material extraction pipe (501) at the discharge end of the material taking valve (502), and a pressure relief valve (9) is arranged on the pressure relief pipe.
4. The on-line paint viscosity detection device according to claim 3, characterized in that: the device also comprises a flushing mechanism (10) which is used for flushing the detection container (2) on line.
5. The on-line paint viscosity detection device according to claim 4, characterized in that: the flushing mechanism (10) comprises a flushing pipe (1001) connected to a material extraction pipe (501) on the side of the discharge end of the material taking valve (502), and the flushing pipe (1001) is connected to an external tap water source through a corresponding flushing valve (1002).
6. The on-line paint viscosity detection device according to claim 1, characterized in that: the middle part of base (101) is equipped with container fixed slot (11), the bottom of detecting container (2) is fixed inlay adorn in container fixed slot (11).
CN202220735152.6U 2022-03-31 2022-03-31 Coating viscosity on-line measuring device Active CN217638533U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220735152.6U CN217638533U (en) 2022-03-31 2022-03-31 Coating viscosity on-line measuring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220735152.6U CN217638533U (en) 2022-03-31 2022-03-31 Coating viscosity on-line measuring device

Publications (1)

Publication Number Publication Date
CN217638533U true CN217638533U (en) 2022-10-21

Family

ID=83647085

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220735152.6U Active CN217638533U (en) 2022-03-31 2022-03-31 Coating viscosity on-line measuring device

Country Status (1)

Country Link
CN (1) CN217638533U (en)

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