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Mn3O4 load balance production process based on MES system

A technology of load balancing and production technology, applied in general control systems, control/regulation systems, comprehensive factory control, etc., can solve problems such as low production efficiency and low equipment utilization

Pending Publication Date: 2021-07-30
SINOSTEEL ANHUI TIANYUAN TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] For existing Mn 3 o 4 In the many-to-many production process, the production system cannot automatically schedule and cooperate, resulting in low production efficiency and low equipment utilization. The present invention provides a MES system-based Mn 3 o 4 Load balance production process, the system uses the MES system to monitor the equipment status according to the collected information, and according to the equipment status combined with the reaction conditions, the Mn 3 o 4 The production process is regulated, and the response process is intelligently managed and controlled to achieve a many-to-many production load balance.

Method used

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  • Mn3O4 load balance production process based on MES system
  • Mn3O4 load balance production process based on MES system
  • Mn3O4 load balance production process based on MES system

Examples

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Embodiment 1

[0062] Mn based on the MES system of this embodiment 3 o 4 Load-balancing production processes such as figure 1 shown, including the following steps:

[0063] S1: Modeling: Input production parameters into the control unit 900 including the MES system database;

[0064] S2: Feeding: After the raw material with identification information enters the feeding unit 100, after being identified by the feeding unit 100, the information is fed back to the MES system, matches the information of the MES system, and the MES system sends an order;

[0065] S3: Mixing: select and specify an idle mixing unit 200 and the material conveying device input to the mixing unit 200 according to the raw material parameters, and the materials are ground in the tower mill 210 and then stirred in the mixing tank 220;

[0066] S4: Reaction: After the raw materials are processed by the mixing unit 200, the reaction kettle 310 and the material delivery device input into the reaction kettle 310 are match...

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Abstract

The invention discloses a Mn3O4 load balance production process based on an MES system, and relates to the field of flow industry production process control. The process comprises the following steps: S1, modeling; S2, feeding; S3, mixing; S4, reaction; S5, storing; S6, filter pressing; S7, drying: according to the equipment state, conveying the material obtained by filter pressing in the step S5 to a drying unit for drying; S8, collecting:collecting the materials obtained in the step S6 in a collecting unit; and S9, packaging: packaging the collected materials in a packaging unit. According to the load balancing production process, the MES system is used for monitoring the equipment state according to the collected information, the Mn3O4 production process is regulated and controlled according to the equipment state in combination with the reaction conditions, the equipment is intelligently managed and controlled through the reaction process, and many-to-many production load balancing is achieved.

Description

technical field [0001] The invention belongs to the field of flow industry production process control, more specifically, relates to a MES system-based Mn 3 o 4 Load balancing production process. Background technique [0002] Trimanganese tetroxide is a high-performance structural material, which is mainly used in the electronics industry. It is one of the important raw materials required for the production of soft ferrite, and it is also a high-quality raw material for the preparation of manganese-zinc ferrite. More than 60% of the total ferrite. With manganese tetraoxide replacing manganese carbonate as the manganese source to prepare manganese zinc soft ferrite, the development of manganese tetraoxide is advancing by leaps and bounds; soft ferrite is formed by mixing manganese, zinc and iron oxides in a certain proportion and then sintering Manufactured, with a narrow remanence induction curve, it can be magnetized repeatedly, and its DC resistivity is very high, which...

Claims

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Application Information

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IPC IPC(8): C01G45/02G05B19/418
CPCC01G45/02G05B19/41875G05B2219/32368Y02P90/02
Inventor 丁晓锋王以存杨洋刘阿朋费凡田甜王志鹏王军伟时品亮
Owner SINOSTEEL ANHUI TIANYUAN TECH