CN216210646U - Coating system capable of detecting concentration of titanium dioxide base material on line - Google Patents

Coating system capable of detecting concentration of titanium dioxide base material on line Download PDF

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Publication number
CN216210646U
CN216210646U CN202122594774.XU CN202122594774U CN216210646U CN 216210646 U CN216210646 U CN 216210646U CN 202122594774 U CN202122594774 U CN 202122594774U CN 216210646 U CN216210646 U CN 216210646U
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titanium dioxide
base material
concentration
coating
system capable
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CN202122594774.XU
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Chinese (zh)
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朱左美
刘红星
李建军
刘峰
邓吉周
许有保
代朝永
何正波
杨春成
苗委然
赵振生
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Longbai Lufeng Titanium Industry Co ltd
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Longbai Lufeng Titanium Industry Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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Abstract

The utility model discloses a coating system capable of detecting the concentration of a titanium dioxide base material on line, belongs to the technical field of coating equipment, and solves the problems that the feeding amount cannot be accurately controlled and the coating effect and the coating speed are influenced in the traditional technology.

Description

Coating system capable of detecting concentration of titanium dioxide base material on line
Technical Field
The utility model belongs to the technical field of coating equipment, and particularly relates to a coating system capable of detecting the concentration of titanium dioxide base material on line
Background
Titanium dioxide is an important inorganic chemical pigment, and the main component is titanium dioxide. The production process of titanium dioxide has two process routes of sulfuric acid process and chlorination process, and has important application in the industries of paint, printing ink, paper making, plastic rubber, chemical fiber, ceramic and the like.
In the production process of titanium dioxide, coating is a core process. According to different formulas, the concentration of the base material before coating needs to be controlled, and when the volume of the coating tank is constant, the feeding amount of the coating tank needs to be seriously controlled. However, the base stock is stored in the base stock storage tank before coating, and because the base stock storage tank is designed to be conical and a thickener is adopted in a stirring mode, the concentration of the base stock in the base stock storage tank is not uniform, and the feeding amount of the coating tank cannot be accurately controlled during feeding. Affecting the coating effect and the coating speed.
SUMMERY OF THE UTILITY MODEL
Aiming at the problems that the feeding quantity cannot be accurately controlled and the coating effect and the coating speed are influenced in the prior art, the utility model provides a coating system capable of detecting the concentration of a titanium dioxide base material on line, which aims to solve the problems that: on-line detecting the concentration of the base material and accurately controlling the feeding amount of the coating
The technical scheme adopted by the utility model is as follows:
the coating system capable of detecting the concentration of the titanium dioxide base material on line is characterized by comprising a titanium dioxide storage tank, wherein the titanium dioxide storage tank is connected with a stirring device, the bottom of the stirring device is connected with a coating tank, a mass flow meter is connected between the stirring device and the coating tank, and the mass flow meter is connected with a control console.
By adopting the scheme, the quality of the powder flowing through the pipeline can be detected through the mass flow meter, the detected quality can be reflected on the console, and the concentration, the flow and the quality accumulation of the powder base material can be seen in the console, so that an operator can conveniently master the concentration of the base material, and the smooth production is facilitated.
The stirring device is a thickener, an overflow pipe is arranged at the upper part of the thickener, and the overflow pipe is connected with the titanium dioxide storage tank.
By adopting the scheme, the supernatant obtained by the thickener flows back to the titanium dioxide storage tank to mix in the titanium dioxide storage tank, and by adopting the device, the recovery of water resources can be realized, and the energy consumption and the cost are reduced.
An electric control ball valve is arranged on a pipeline between the titanium dioxide storage tank and the stirring device, a pressure detector is arranged on a pipeline between the stirring device and the coating tank, and the pressure detector and the electric control ball valve are both connected with a control console.
Adopt above-mentioned scheme, pressure detector can real-time detection agitating unit discharge gate discharge pressure, if the undersize of pressure, then probably take place to block up, and at this moment, the automatically controlled ball valve of control cabinet control reduces the ejection of compact speed from the titanium white powder storage tank, through above-mentioned device, can be through the ejection of compact pressure of control cabinet real time monitoring agitating unit to the ejection of compact speed of control titanium white powder storage tank.
The overflow pipe is provided with a first valve, and a pipeline between the thickener and the coating tank is provided with a second valve.
And a first display screen is fixedly arranged at the top of the pressure detector.
Adopt above-mentioned scheme, can see the pressure that pressure detector detected through the first display screen at pressure detector top directly perceivedly, make the staff can carry out ejection of compact pressure's control at the operation scene.
And a second display screen is fixedly arranged on the console.
The control console is a DCS system
In summary, due to the adoption of the technical scheme, the utility model has the beneficial effects that:
1. the mass flowmeter can detect the quality of the powder flowing through the pipeline, the detected quality can be reflected on the console, and the concentration, flow and quality accumulation of the powder base material can be seen in the console, so that an operator can conveniently master the concentration of the base material, and smooth production is facilitated.
2. During the supernatant that the thickener obtained flows back to the titanium white powder storage tank, mix in the titanium white powder storage tank, through above-mentioned device, can realize the recovery to the water resource, reduce energy consumption and cost.
3. Pressure detector can real-time detection agitating unit discharge gate's discharge pressure, if the undersize, then probably take place to block up, and at this moment, the automatically controlled ball valve of control cabinet control reduces the ejection of compact speed from the titanium white powder storage tank, through above-mentioned device, can be through the discharge pressure of control cabinet real time monitoring agitating unit to the ejection of compact speed of control titanium white powder storage tank.
4. The pressure detected by the pressure detector can be visually seen through the first display screen at the top of the pressure detector, so that the worker can monitor the discharge pressure on the operation site.
Drawings
The utility model will now be described, by way of example, with reference to the accompanying drawings, in which:
FIG. 1 is a schematic pipeline diagram of one embodiment of the present invention;
reference numerals: 1-a titanium dioxide storage tank; 2-a stirring device; 3-a first valve; 4-mass flow meter; 5-a second valve; 6-coating a tank; 7-an electrically controlled ball valve; 8-a console; 9-pressure monitor.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
The present invention will be described in detail with reference to fig. 1.
The coating system capable of detecting the concentration of the titanium dioxide base material on line is characterized by comprising a titanium dioxide storage tank 1, wherein the titanium dioxide storage tank 1 is connected with a stirring device 2, the bottom of the stirring device 2 is connected with a coating tank 6, a mass flow meter 4 is connected between the stirring device 2 and the coating tank 6, and the mass flow meter 4 is connected with a control console 8.
The stirring device 2 is a thickener, an overflow pipe is arranged at the upper part of the thickener, and the overflow pipe is connected with the titanium dioxide storage tank 1.
An electric control ball valve 7 is arranged on a pipeline between the titanium dioxide storage tank 1 and the stirring device 2, a pressure detector 9 is arranged on a pipeline between the stirring device 2 and the coating tank 6, and the pressure detector 9 and the electric control ball valve 7 are both connected with a control console 8.
The overflow pipe is provided with a first valve 3, and a second valve 5 is arranged on a pipeline between the thickener and the coating tank 6.
The top of the pressure detector 9 is fixedly provided with a first display screen.
And a second display screen is fixedly arranged on the console 8.
The console 8 is a DCS system.
In the above embodiment, the titanium dioxide storage tank 1 conveys the base material to the stirring device 2, the base material is stirred and precipitated in the stirring device 2, wherein the stirring device 2 is a thickener, the top of the thickener is a supernatant, the lower part of the thickener is the stirred base material, the supernatant flows back to the titanium dioxide storage tank 1 through an overflow pipe, the stirred base material passes through a pressure detector 9, a mass flow meter 4 and a second valve 5 in sequence through a pipeline at the bottom, and the pressure detector 9 and the mass flow meter 4 are connected with the console 8;
through control cabinet 8, can real-time detection mass flowmeter 4 obtain the quality, the density of the powder of flowing through, the staff is through the control to above-mentioned index, can adjust the production process in real time, is favorable to going on smoothly of production.
Wherein be connected with automatically controlled ball valve 7 between titanium white powder storage tank 1 and agitating unit 2, wherein the unloading speed that can all control titanium white powder storage tank 1 is opened and shut to automatically controlled ball valve 7, and automatically controlled ball valve 7 connection control platform 8, the staff can carry out the remote control to automatically controlled ball valve 7 through control platform 8, the staff adjusts the degree of opening and shutting of automatically controlled ball valve 7 according to the fluid pressure that pressure detector 9 detected, if pressure is less, then need reduce the flow of automatically controlled ball valve 7, if pressure is great, multiplicable automatically controlled ball valve 7's flow.
It should be noted that the control of the console to the electrically controlled ball valve and the display of the mass flow meter and the degree of the pressure detector 9 on the console are all the prior art and are not explained in this application.
The above-mentioned embodiments only express the specific embodiments of the present application, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present application. It should be noted that, for those skilled in the art, without departing from the technical idea of the present application, several changes and modifications can be made, which are all within the protection scope of the present application.

Claims (7)

1. The utility model provides a but diolame system of on-line measuring titanium white powder base-stock concentration which characterized in that, includes titanium white powder storage tank (1), titanium white powder storage tank (1) is connected with agitating unit (2), the bottom of agitating unit (2) is connected with diolame jar (6), agitating unit (2) with be connected with mass flow meter (4) between diolame jar (6), mass flow meter (4) are connected with control cabinet (8).
2. The coating system capable of detecting the concentration of the titanium dioxide base material on line according to claim 1, wherein the stirring device (2) is a thickener, an overflow pipe is arranged at the upper part of the thickener, and the overflow pipe is connected with the titanium dioxide storage tank (1).
3. The coating system capable of detecting the concentration of the titanium dioxide base material on line according to claim 2, wherein an electric control ball valve (7) is arranged on a pipeline between the titanium dioxide storage tank (1) and the stirring device (2), a pressure detector (9) is arranged on a pipeline between the stirring device (2) and the coating tank (6), and both the pressure detector (9) and the electric control ball valve (7) are connected with a control console (8).
4. The coating system capable of detecting the concentration of the titanium dioxide base material on line according to claim 2, wherein a first valve (3) is arranged on the overflow pipe, and a second valve (5) is arranged on a pipeline between the thickener and the coating tank (6).
5. The envelope system capable of detecting the concentration of the titanium dioxide base material on line according to claim 3, wherein a first display screen is fixedly arranged at the top of the pressure detector (9).
6. The coating system capable of detecting the concentration of the titanium dioxide base material on line according to claim 1, wherein a second display screen is fixedly arranged on the console (8).
7. The coating system capable of detecting the concentration of the titanium dioxide base material on line according to claim 1, wherein the console (8) is a DCS system.
CN202122594774.XU 2021-10-27 2021-10-27 Coating system capable of detecting concentration of titanium dioxide base material on line Active CN216210646U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122594774.XU CN216210646U (en) 2021-10-27 2021-10-27 Coating system capable of detecting concentration of titanium dioxide base material on line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122594774.XU CN216210646U (en) 2021-10-27 2021-10-27 Coating system capable of detecting concentration of titanium dioxide base material on line

Publications (1)

Publication Number Publication Date
CN216210646U true CN216210646U (en) 2022-04-05

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CN202122594774.XU Active CN216210646U (en) 2021-10-27 2021-10-27 Coating system capable of detecting concentration of titanium dioxide base material on line

Country Status (1)

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CN (1) CN216210646U (en)

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