Progress-visualized high-molecular polymerization reaction kettle

A technology of polymer polymerization and reactor, applied in chemical/physical/physicochemical fixed reactors, grain processing, etc., can solve the problem of affecting the melting speed of polymer materials, the inability to preheat polymer materials, and the inability to Grinding and processing of materials and other issues to achieve the effect of improving the use effect, ensuring the preheating effect and improving the polymerization efficiency

Inactive Publication Date: 2021-07-23
荡麦金属表面技术处理(上海)中心
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] When the current polymer polymerization reactor is heating and mixing materials, it usually directly pours the polymer material into the reactor. Because some polymer materials are large in size, it will affect the mixing effect of the material and other materials, and cannot Grinding the polymer materials in advance; and the current wear mechanism cannot accurately adjust the size of the material to be ground, and cannot accurately control the distance between the grinding head and the grinding disc according to the polymer materials of different sizes; and the current high Molecular polymerization reactors usually directly import materials into the reactor, and cannot preheat polymer materials, which affects the melting speed of polymer materials in the reactor and reduces the polymerization of different polymer materials in the entire reactor. Efficiency; at the same time, most of the current polymer polymerization reactors directly use U-shaped stirring paddles to stir the polymer materials in the molten state, which cannot further improve the efficiency of mixing the newly added polymer materials with the molten materials in the kettle

Method used

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  • Progress-visualized high-molecular polymerization reaction kettle
  • Progress-visualized high-molecular polymerization reaction kettle
  • Progress-visualized high-molecular polymerization reaction kettle

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] Example 1, such as Figure 1-9 As shown, when the polymer material needs to be ground, first adjust the distance between the outside of the grinding head 16 and the inside of the funnel chamber 801 according to the size of the polymer material, and control the servo motor 201 through the control panel 6 to drive two groups of second The transmission gear 203 rotates synchronously, thereby driving the rotating rod 204 to rotate. At this time, due to the effect of the screw thread on the outside of the rotating rod 204 and the threaded hole 206, the mounting ring 205 is forced to move slowly upward with the grinding head 16, and the top of the second main rotating shaft 19 A little away from the inside of the square socket 20, so as to accurately adjust the distance between the funnel chamber 801 and the grinding head 16, and then pour different polymer materials into the interior of the top chamber 1 through two groups of feed ports 3, and the polymer material The materi...

Embodiment 2

[0042] Example 2, such as Figure 1-9 As shown, when the polymer material needs to be preheated, when the polymer material inside the funnel chamber 801 needs to be preheated, the heat inside the bottom chamber 11 will gradually transfer to the funnel chamber 801, and then fall to the funnel chamber 801. The polymer material inside the bin 801 is continuously stirred by the stirring rod 23 outside the grinding head 16, and because the funnel bin 801 itself also rotates, the polymer material can be evenly contacted with the surface of the funnel bin 801, ensuring the preheating of the polymer material uniformity, and the air pump 21 pumps the hot air in the reaction kettle to the inside of the annular pipe 15, and sprays the polymer material on the surface of the funnel warehouse 801 through multiple groups of nozzles 22, further improving the polymer material inside the funnel warehouse 801. Preheating efficiency.

[0043] Working principle: connect the device to the power su...

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PUM

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Abstract

The invention discloses a progress visualized macromolecule polymerization reaction kettle which comprises a top bin, a middle bin and a bottom bin, a heat preservation bin is arranged on the outer side of the bottom bin, a supporting frame is installed at the bottom of the outer side of the bottom bin, a progress observation window is formed in the top of the outer side of the bottom bin, and a driving motor is installed in the center of the top of the top bin. A first main rotating shaft is installed at the output end of the driving motor, and the bottom of the first main rotating shaft extends into the top bin and is provided with a grinding head. Through cooperative use of the top bin, the middle bin, the auxiliary grinding assembly, the first main rotating shaft and the grinding head, through cooperation of the funnel bin and the grinding head, the first main rotating shaft drives the grinding head to rotate in the forward direction, and the first main rotating shaft drives the funnel bin to rotate in the reverse direction; and the high polymer material grinding efficiency of the device can be greatly improved without increasing the rotating speed of the driving motor, and the crushed high polymer material is easier to heat and melt in the bottom bin, so that the polymerization efficiency of the high polymer material is improved.

Description

technical field [0001] The invention relates to the technical field of reactors, in particular to a polymer polymerization reactor with process visualization. Background technique [0002] The broad understanding of the reaction kettle is a container with physical or chemical reactions. Through the structural design and parameter configuration of the container, the heating, evaporation, cooling and low-speed mixing functions required by the process are realized. Reactors are widely used in petroleum, chemical, rubber, pesticides, dyes, medicines, food, pressure vessels used to complete vulcanization, nitration, hydrogenation, alkylation, polymerization, condensation and other processes, such as reactors, reaction pots, decomposition pots , polymerization kettle, etc.; materials generally include carbon-manganese steel, stainless steel, zirconium, nickel-based, alloys and other composite materials. [0003] When the current polymer polymerization reactor is heating and mixin...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J19/18B01J19/20B02C19/00
CPCB01J19/18B01J19/20B01J2219/00135B02C19/00
Inventor 李明铭
Owner 荡麦金属表面技术处理(上海)中心
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