CN217189517U - Corrosion-resistant material mixing device - Google Patents

Corrosion-resistant material mixing device Download PDF

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Publication number
CN217189517U
CN217189517U CN202123313707.2U CN202123313707U CN217189517U CN 217189517 U CN217189517 U CN 217189517U CN 202123313707 U CN202123313707 U CN 202123313707U CN 217189517 U CN217189517 U CN 217189517U
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CN
China
Prior art keywords
stirring
corrosion
resistant
telescopic
shaft
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CN202123313707.2U
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Chinese (zh)
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丁宏网
丁文一
柏志鹏
孙炜祥
孙强
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Jiangsu Tianhao New Material Technology Co ltd
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Jiangsu Tianhao New Material Technology Co ltd
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Abstract

The utility model discloses a corrosion-resistant material stirring device, which comprises a rotating shaft bracket, a stirring driving motor, a stirring pipe shaft, a rotary connecting cover and corrosion-resistant telescopic stirring units; the lower part of the stirring pipe shaft is fixedly sleeved with a corrosion-resistant shaft sleeve; each corrosion-resistant flexible stirring unit is all installed on the corrosion-resistant axle sleeve to each washs the orifice on corrosion-resistant flexible stirring unit distributes and is provided with, and washs the orifice and is linked together with the stirring tubular shaft. The corrosion-resistant material stirring device is sleeved on the stirring pipe shaft by the corrosion-resistant shaft sleeve, so that the corrosion-resistant protection can be performed on the stirring pipe shaft; utilize each corrosion-resistant flexible stirring unit to install on corrosion-resistant axle sleeve, can realize the stirring of corrosive materials under stirring tubular shaft rotary drive effect.

Description

Corrosion-resistant material stirring device
Technical Field
The utility model relates to a material mixing device, especially a corrosion-resistant material mixing device.
Background
In chemical production equipment, agitating unit is equipment commonly used, can install an agitating unit and stir the material often in the retort of majority to make the material intensive mixing, improve and reflect efficiency. However, the existing corresponding stirring devices are all made of metal materials, are easy to corrode, and are difficult to meet the requirement of stirring materials with corrosive performance. Therefore, it is necessary to design a corrosion-resistant material stirring device, which has corrosion resistance and can meet the stirring requirement of the corrosion-resistant material.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an: the corrosion-resistant material stirring device has corrosion resistance and can meet the stirring requirement of corrosion-resistant materials.
In order to realize the purpose of the utility model, the utility model provides a corrosion-resistant material stirring device, which comprises a rotating shaft bracket, a stirring driving motor, a stirring pipe shaft, a rotary connecting cover and each corrosion-resistant telescopic stirring unit; the upper part of the stirring pipe shaft is rotatably arranged on the rotating shaft bracket in a penetrating way; the rotary connecting cover is rotatably and hermetically arranged at the upper end of the stirring pipe shaft, and a cleaning water pipe is communicated with the rotary connecting cover; the stirring driving motor is arranged on the side edge of the rotating shaft bracket and drives the stirring pipe shaft to rotate through the chain wheel driving mechanism; the lower part of the stirring pipe shaft is fixedly sleeved with a corrosion-resistant shaft sleeve; each corrosion-resistant flexible stirring unit is all installed on the corrosion-resistant axle sleeve to each washs the orifice on corrosion-resistant flexible stirring unit distributes and is provided with, and washs the orifice and is linked together with the stirring tubular shaft.
Further, the corrosion-resistant telescopic stirring unit comprises a stirring support pipe, a telescopic sleeve and a strip-shaped wall scraping seat; one end of the stirring support tube is fixedly arranged on the corrosion-resistant shaft sleeve, and the stirring support tube is communicated with the stirring tube shaft; one end of the telescopic sleeve is sleeved on the stirring support pipe in a sliding manner, and the other end of the telescopic sleeve is fixedly arranged on the strip-shaped wall scraping seat; a strip-shaped cavity is arranged in the strip-shaped wall scraping seat, and the telescopic sleeve is communicated with the strip-shaped cavity; the cleaning spray holes are distributed on the outer side surface of the bar-shaped scraping wall seat, two scraping wall convex bars are arranged on the bar-shaped scraping wall seat in parallel, and each cleaning spray hole is located between the two scraping wall convex bars.
Furthermore, the corrosion-resistant telescopic stirring unit also comprises a movable disc and a plugging disc; a plugging limiting sliding groove is formed in the inner wall of the telescopic sleeve along the length direction; a linkage strip-shaped plate is connected between the movable disc and the plugging disc, and a plugging limit sliding block which is embedded into a plugging limit sliding groove in a sliding manner is arranged on the side edge of the linkage strip-shaped plate; the movable disc is slidably positioned in the telescopic sleeve, and a plurality of water outlet notches are formed in the circumference of the movable disc; the plugging disc is positioned at the joint of the telescopic sleeve and the strip-shaped wall scraping seat and is used for plugging or controlling the opening of the telescopic sleeve under the push-and-pull of the movable disc.
Furthermore, a telescopic limiting sliding groove is formed in the inner wall of the telescopic sleeve along the length direction, and a telescopic limiting sliding block embedded into the telescopic limiting sliding groove in a sliding mode is arranged on the stirring supporting pipe.
Furthermore, a sealing chute is arranged on the inner wall of the pipe orifice of the telescopic pipe, a pipe orifice sealing ring is arranged on the sealing chute, and the pipe orifice sealing ring is in sliding fit with the outer wall of the stirring support pipe.
Furthermore, a synchronous limiting convex strip embedded into the corrosion-resistant shaft sleeve is vertically arranged on the stirring pipe shaft.
The beneficial effects of the utility model reside in that: the corrosion-resistant shaft sleeve is sleeved on the stirring pipe shaft, so that corrosion resistance protection can be realized on the stirring pipe shaft; the cleaning liquid conveying of the cleaning water pipe can be realized by utilizing the rotary sealing installation of the rotary connecting cover and the stirring pipe shaft; cleaning liquid can be sprayed through each cleaning spray hole, so that the inner wall of the reaction tank can be cleaned under the rotary driving; utilize each corrosion-resistant flexible stirring unit to install on corrosion-resistant axle sleeve, can realize the stirring of corrosive materials under stirring tubular shaft rotary drive effect.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is the utility model discloses a corrosion-resistant flexible stirring unit mounted position department partial cut-away structural schematic diagram.
Detailed Description
The technical solution of the present invention will be described in detail with reference to the accompanying drawings, but the scope of the present invention is not limited to the embodiments.
Example 1:
as shown in fig. 1 and 2, the utility model discloses a corrosion-resistant material mixing device includes: the stirring device comprises a rotating shaft bracket 13, a stirring driving motor 14, a stirring pipe shaft 15, a rotary connecting cover 16 and corrosion-resistant telescopic stirring units; the upper part of the stirring pipe shaft 15 is rotatably arranged on the rotating shaft bracket 13 in a penetrating way; the rotary connecting cover 16 is rotatably and hermetically arranged on the upper end of the stirring pipe shaft 15, and a cleaning water pipe 17 is communicated and arranged on the rotary connecting cover 16; the stirring driving motor 14 is arranged on the side edge of the rotating shaft bracket 13 and drives the stirring pipe shaft 15 to rotate through the chain wheel driving mechanism 12; the lower part of the stirring pipe shaft 15 is fixedly sleeved with a corrosion-resistant shaft sleeve 18; each corrosion-resistant telescopic stirring unit is arranged on the corrosion-resistant shaft sleeve 18, and cleaning spray holes 33 are distributed on the corrosion-resistant telescopic stirring unit, and the cleaning spray holes 33 are communicated with the stirring pipe shaft 15.
The corrosion-resistant shaft sleeve 18 is sleeved on the stirring pipe shaft 15, so that the corrosion-resistant protection can be realized on the stirring pipe shaft 15; the cleaning liquid delivery of the cleaning water pipe 17 can be realized by the rotary seal installation of the rotary connecting cover 16 and the stirring pipe shaft 15; cleaning liquid can be sprayed through each cleaning spray hole 33, so that the inner wall of the reaction tank can be cleaned under the rotary driving; the corrosion-resistant telescopic stirring units are arranged on the corrosion-resistant shaft sleeve 18, so that the corrosive materials can be stirred under the rotation driving action of the stirring pipe shaft 15.
Further, the corrosion-resistant telescopic stirring unit comprises a stirring support pipe 20, a telescopic sleeve 21 and a strip-shaped wall scraping seat 22; one end of the stirring support pipe 20 is fixedly arranged on the corrosion-resistant shaft sleeve 18, and the stirring support pipe 20 is communicated with the stirring pipe shaft 15; one end of the telescopic tube 21 is sleeved on the stirring support tube 20 in a sliding manner, and the other end is fixedly arranged on the strip-shaped wall scraping seat 22; a strip-shaped cavity 26 is arranged in the strip-shaped wall scraping seat 22, and the telescopic sleeve 21 is communicated with the strip-shaped cavity 26; the cleaning spray holes 33 are distributed on the outer side surface of the strip-shaped scraping seat 22, two scraping wall convex strips 23 are arranged on the strip-shaped scraping seat 22 in parallel, and each cleaning spray hole 33 is located between the two scraping wall convex strips 23. By utilizing the matching of the stirring support tube 20, the telescopic tube 21 and the strip-shaped wall scraping seat 22, materials can be stirred by rotation in a non-cleaning state, so that the reaction efficiency is improved; by utilizing the sliding fit of the stirring support tube 20 and the telescopic tube 21, the two scraping wall convex strips 23 can be pushed to press on the inner wall of the reaction tank by the pressure of the cleaning liquid in the cleaning state, and the cleaning liquid is sprayed out from the cleaning spray holes 33, so that a better inner wall cleaning effect is realized under the rotating action.
Further, the corrosion-resistant telescopic stirring unit also comprises a movable disc 29 and a plugging disc 30; a plugging limit sliding groove is formed in the inner wall of the telescopic sleeve 21 along the length direction; a linkage strip-shaped plate 31 is connected between the movable disc 29 and the blocking disc 30, and a blocking limit sliding block 32 which is embedded into the blocking limit sliding groove in a sliding manner is arranged on the side edge of the linkage strip-shaped plate 31; the movable disc 29 is slidably positioned in the telescopic sleeve 21, and a plurality of water outlet notches 10 are formed in the circumference of the movable disc 29; the plugging disc 30 is located at the joint of the telescopic tube 21 and the strip-shaped wall scraping seat 22 and is used for plugging or controlling the opening of the telescopic tube 21 under the pushing and pulling of the movable disc 29. By utilizing the matching of the movable disc 29 and the plugging disc 30, the plugging disc 30 can be separated from the telescopic sleeve 21 to remove plugging under the pushing of the cleaning liquid, meanwhile, the cleaning liquid continuously flows from the water outlet notch 10 to meet the cleaning requirement, and the plugging disc 30 can enter the telescopic sleeve 21 to be plugged under the action of negative pressure after the cleaning is finished, so that the reverse pouring of materials into a pipeline of the cleaning liquid is reduced; the cooperation of the plugging limit sliding groove and the plugging limit sliding block 32 can limit the moving range of the plugging disc 30, so as to prevent the plugging disc 30 from being close to the cleaning jet hole 33 and prevent the moving disc 29 from being close to the pipe orifice of the stirring support pipe 20.
Further, a telescopic limit chute 27 is provided on the inner wall of the telescopic tube 21 along the length direction, and a telescopic limit slider 28 slidably fitted into the telescopic limit chute 27 is provided on the stirring support tube 20. By means of the matching of the telescopic limiting sliding groove 27 and the telescopic limiting sliding block 28, the telescopic range of the telescopic sleeve 21 can be limited, the telescopic sleeve 21 is prevented from being separated from the stirring support pipe 20, meanwhile, the rotation of the telescopic sleeve 21 can be limited, and the stability of the strip-shaped wall scraping seat 22 in scraper cleaning is ensured.
Further, a sealing chute 24 is arranged on the inner wall of the pipe orifice of the telescopic sleeve 21, a pipe orifice sealing ring 25 is mounted on the sealing chute 24, and the pipe orifice sealing ring 25 is in sliding fit with the outer wall of the stirring support pipe 20. By means of the matching arrangement of the sealing chute 24 and the pipe orifice sealing ring 25, the insertion butt joint part of the stirring support pipe 20 and the telescopic sleeve 21 can be sealed, and the sealing performance is enhanced.
Furthermore, a synchronous limiting convex strip 19 embedded in the corrosion-resistant shaft sleeve 18 is vertically arranged on the stirring pipe shaft 15. The structural strength between the mixer shaft 15 and the corrosion-resistant sleeve 18 can be increased by the synchronization restriction ridge 19.
The utility model discloses an among the corrosion-resistant material mixing device, corrosion-resistant axle sleeve 18, stirring stay tube 20, telescopic tube 21, bar scrape wall seat 22, activity disc 29, linkage bar shaped plate 31 and shutoff disc 30 all adopt corrosion-resistant material to make, all adopt in this application for example that polytetrafluoroethylene material preparation forms.
As noted above, while the invention has been shown and described with reference to certain preferred embodiments, it is not to be construed as limited to the invention itself. Various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (6)

1. The utility model provides a corrosion-resistant material mixing device which characterized in that: comprises a rotating shaft bracket (13), a stirring driving motor (14), a stirring pipe shaft (15), a rotary connecting cover (16) and all corrosion-resistant telescopic stirring units; the upper part of the stirring pipe shaft (15) is rotatably arranged on the rotating shaft bracket (13) in a penetrating way; the rotary connecting cover (16) is arranged on the upper end of the stirring pipe shaft (15) in a rotary sealing manner, and a cleaning water pipe (17) is communicated with the rotary connecting cover (16); the stirring driving motor (14) is arranged on the side edge of the rotating shaft bracket (13) and drives the stirring pipe shaft (15) to rotate through the chain wheel driving mechanism (12); the lower part of the stirring pipe shaft (15) is fixedly sleeved with a corrosion-resistant shaft sleeve (18); each corrosion-resistant telescopic stirring unit is arranged on the corrosion-resistant shaft sleeve (18), each cleaning spray hole (33) is distributed on each corrosion-resistant telescopic stirring unit, and each cleaning spray hole (33) is communicated with the stirring pipe shaft (15).
2. The corrosion-resistant material mixing apparatus of claim 1, wherein: the corrosion-resistant telescopic stirring unit comprises a stirring support pipe (20), a telescopic sleeve (21) and a strip-shaped wall scraping seat (22); one end of the stirring support pipe (20) is fixedly arranged on the corrosion-resistant shaft sleeve (18), and the stirring support pipe (20) is communicated with the stirring pipe shaft (15); one end of the telescopic sleeve (21) is sleeved on the stirring support pipe (20) in a sliding manner, and the other end of the telescopic sleeve is fixedly arranged on the strip-shaped wall scraping seat (22); a strip-shaped cavity (26) is arranged in the strip-shaped wall scraping seat (22), and the telescopic sleeve (21) is communicated with the strip-shaped cavity (26); the cleaning spray holes (33) are distributed on the outer side surface of the strip-shaped scraping wall seat (22), two scraping wall convex strips (23) are arranged on the strip-shaped scraping wall seat (22) in parallel, and each cleaning spray hole (33) is located between the two scraping wall convex strips (23).
3. The corrosion-resistant material mixing apparatus of claim 2, wherein: the corrosion-resistant telescopic stirring unit also comprises a movable disc (29) and a plugging disc (30); a plugging limit sliding groove is formed in the inner wall of the telescopic sleeve (21) along the length direction; a linkage strip-shaped plate (31) is connected and arranged between the movable disc (29) and the blocking disc (30), and a blocking limiting slide block (32) which is embedded into the blocking limiting slide groove in a sliding manner is arranged on the side edge of the linkage strip-shaped plate (31); the movable disc (29) is slidably positioned in the telescopic sleeve (21), and a plurality of water outlet notches (10) are formed in the circumference of the movable disc (29); the plugging disc (30) is positioned at the joint of the telescopic sleeve (21) and the strip-shaped wall scraping seat (22) and is used for plugging or controlling the opening of the telescopic sleeve (21) under the pushing and pulling of the movable disc (29).
4. The corrosion-resistant material mixing apparatus of claim 2, wherein: a telescopic limit sliding groove (27) is arranged on the inner wall of the telescopic sleeve (21) along the length direction, and a telescopic limit sliding block (28) which is embedded into the telescopic limit sliding groove (27) in a sliding manner is arranged on the stirring support pipe (20).
5. The corrosion-resistant material mixing apparatus of claim 2, wherein: a sealing sliding groove (24) is arranged on the inner wall of the pipe orifice of the telescopic sleeve (21), a pipe orifice sealing ring (25) is arranged on the sealing sliding groove (24), and the pipe orifice sealing ring (25) is in sliding fit with the outer wall of the stirring support pipe (20).
6. The corrosion-resistant material mixing apparatus of claim 1, wherein: a synchronous limiting convex strip (19) embedded into the corrosion-resistant shaft sleeve (18) is vertically arranged on the stirring pipe shaft (15).
CN202123313707.2U 2021-12-27 2021-12-27 Corrosion-resistant material mixing device Active CN217189517U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123313707.2U CN217189517U (en) 2021-12-27 2021-12-27 Corrosion-resistant material mixing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123313707.2U CN217189517U (en) 2021-12-27 2021-12-27 Corrosion-resistant material mixing device

Publications (1)

Publication Number Publication Date
CN217189517U true CN217189517U (en) 2022-08-16

Family

ID=82785615

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123313707.2U Active CN217189517U (en) 2021-12-27 2021-12-27 Corrosion-resistant material mixing device

Country Status (1)

Country Link
CN (1) CN217189517U (en)

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