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Rotary type runner rotation connection port and reaction kettle

An interface and rotary technology, applied in chemical/physical/physical chemical processes, chemical instruments and methods, chemical/physical processes, etc., can solve the problems of simultaneous rotation, complex sealing structure, multi-tube collision, etc.

Inactive Publication Date: 2012-08-01
王志训
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The technical problem to be solved by the present invention is to overcome the defect that the inlet and outlet of the rotary flow channel in the prior art must be rotated at the same time, resulting in a relatively complicated sealing structure on the top of the entire reactor, and easily causing multiple tube collisions, and provides a rotary flow channel Runner adapter and reactor

Method used

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  • Rotary type runner rotation connection port and reaction kettle
  • Rotary type runner rotation connection port and reaction kettle
  • Rotary type runner rotation connection port and reaction kettle

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] Such as figure 1 As shown, the rotary runner interface of this embodiment is applied to the reactor 1. The rotary runner interface includes a motor 2 as a rotary drive device, and a turntable 4 is provided below the motor 2 4 is fixedly connected to the output shaft 21 extending downward of the motor 2, and the turntable 4 is kept at a distance from the body of the motor 2.

[0026] A side wall 3 is provided between the motor 2 and the turntable 4, and a layer of rubber sealing ring (not shown in the figure) is provided between the side wall 3, the turntable 4 and the body of the motor 2. Of course, the side wall 3 can also include a top surface and a bottom surface. In this case, the rubber sealing ring between the side wall 3 and the motor 2 and the turntable 4 can be omitted. The motor 2 drives the turntable 4 to rotate relative to the central axis of the side wall 3. In this embodiment, the side wall 3 is fixedly connected to the top of the reactor 1, so as to always ...

Embodiment 2

[0036] Such as figure 2 As shown, the difference between this embodiment and embodiment 1 is that the turntable 4'is provided with two mutually independent right-angled flow channels 41' and 42', and the flow channels 41' and 42' both penetrate the turntable 4' The side and bottom surface. In addition, the top of the reactor 1 is provided with a mounting hole (not shown in the figure) adapted to the lower surface of the turntable 4', and a rubber sealing ring is arranged between the turntable 4'and the mounting hole.

[0037] Another difference is that the rotary runner interface further includes a liquid storage tank 3'which is arranged around the turntable 4'and is relatively static with respect to the reactor 1, which is used to replace the side wall in Embodiment 1. 3. The liquid storage tank 3'in this embodiment contains two mutually independent annular channels, thereby forming two upper and lower liquid storage chambers 31' and lower liquid storage chamber 32' which are ...

Embodiment 3

[0042] In this embodiment, the rotary runner interface of the present invention is applied to a landscape fountain.

[0043] Such as image 3 As shown, the rotary runner interface includes an annular side wall 11, the upper part of the side wall 11 is provided with a face cover 9, the bottom of the side wall 11 is provided with a bottom cover 8, the face cover 9 and the bottom cover 8 Both are fixedly connected with the output shaft of the motor 7. The bottom cover 8, the face cover 9 and the side wall 11 form a liquid storage chamber, and a liquid inlet 12 is provided on the side wall 11. The face cover 9 is provided with eight flow passages 91, and the eight water spray pipes 10 are respectively fixed on the flow passages, and all the water spray pipes are connected to the liquid storage chamber through corresponding flow passages.

[0044] Therefore, the water spray pipe 10 can follow the surface cover 9 to rotate in a horizontal plane relative to the side wall, thereby formin...

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Abstract

The invention discloses a rotary type runner rotation connection port and a reaction kettle. The rotary type runner rotation connection pot comprises a rotary disk and a driving device for driving the rotary disk to rotate in the horizontal plane, wherein at least one pipeline is fixedly connected below the rotary disk, at least one liquid storage cavity is positioned between the rotary disk and the driving device, the at least one liquid storage cavity is communicated with a liquid pipe, and at least one runner for communicating the at least one pipelines with the liquid storage cavity is positioned on the rotary disk. The rotary type runner rotation connection port uses fluidity and continuity of fluid, simultaneously substitutes an inlet and an outlet which are arranged on the pipeline and extend out of the liquid storage cavity with the runner on the rotary disk, and ingeniously leads liquid in / out of the pipeline. A relative fixed liquid pipe is in rotation connection with the one or a plurality of rotary pipelines. When the pipeline needs rotating, the inlet and the outlet of the pipe can be in rotation connection with a liquid source. A structure of the reaction kettle avoids collision of the inlet and / or the outlet caused by rotation of the pipeline or the problem that peripheral parts and lines of the reaction kettle may be knocked on.

Description

Technical field [0001] The invention relates to a reaction equipment, in particular to a rotary flow channel transfer interface and a reaction kettle. Background technique [0002] Generally, the inlet and outlet of the rotatable heat exchange tube built into the reactor are located outside the reactor at the same time, so that the liquid in the heat exchange tube can be replaced. However, in order to cooperate with the inlet and outlet extending to the outside of the reactor to rotate around the center of the reactor at the same time, an annular chute needs to be opened on the top of the reactor to match the rotation of the above inlet and opening, which inevitably makes the structure of the top of the reactor more complicated. , There are more parts that need to be sealed. Moreover, as the number of heat exchange tubes increases, the structure will become more complicated, which limits the number of rotatable heat exchange tubes in the reactor to a certain extent, and affects ...

Claims

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Application Information

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IPC IPC(8): B01J19/00
Inventor 王志训
Owner 王志训