CN220919117U - Micro-reactor fluid feeding auxiliary component - Google Patents

Micro-reactor fluid feeding auxiliary component Download PDF

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Publication number
CN220919117U
CN220919117U CN202322536304.7U CN202322536304U CN220919117U CN 220919117 U CN220919117 U CN 220919117U CN 202322536304 U CN202322536304 U CN 202322536304U CN 220919117 U CN220919117 U CN 220919117U
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China
Prior art keywords
cooperation
post
installation
main part
matching
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CN202322536304.7U
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Chinese (zh)
Inventor
杨滨
陈鑫
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Jiangsu Diyuan Precision Instrument Technology Co ltd
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Jiangsu Diyuan Precision Instrument Technology Co ltd
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Abstract

The utility model relates to the technical field of microreactor conveying channels, in particular to a microreactor fluid feeding auxiliary component. The technical scheme adopted by the utility model is as follows: including the center pin is the cylindrical main part transport cooperation post of upper and lower direction, the upper end of main part transport cooperation post is equipped with integrated into one piece's cylindrical installation cooperation steady post, the left side of installation cooperation steady post is equipped with the opening outside and with the spacing cooperation groove of installation that runs through of upper and lower direction, the upper end of installation cooperation steady post is equipped with the excessive cooperation groove of transport that the cross-section is convex, the lower extreme central point in excessive cooperation groove of transport is put and is equipped with will the cylindrical main part transport mating holes that the terminal surface runs through completely under the main part transport cooperation post. The utility model has the advantages that: through inside reinforcement buffering cooperation post when using, not only can improve the impact resistance when inside feeding, also can shunt the buffering to the feeding material simultaneously, the material when making the entering container can be softer.

Description

Micro-reactor fluid feeding auxiliary component
Technical Field
The utility model relates to the technical field of microreactor conveying channels, in particular to a microreactor fluid feeding auxiliary component.
Background
The micro-reactor is carried out the material and is carried the cooperation no matter whether the feeding district or the discharging district all need carry the material when carrying out the material, when carrying out the feeding, the feeding position is because when adopting multiple material to carry the cooperation, need cooperation between the different conveying channel to assist excessive subassembly to accomplish the cooperation, current excessive auxiliary assembly need assemble through the sealed accessory of bolt fastening cooperation when carrying out the cooperation and connect, the efficiency ratio when installing the cooperation is lower, and because the impact force ratio of the feeding position of vertical direction is great, fastening position produces easily looseness, also can produce impact damage to the container inside when carrying in the feeding container.
Disclosure of utility model
The utility model aims to provide a micro-reactor fluid feeding auxiliary component which adopts a brand-new structural design, is directly assembled with a feeding pipeline in a combination manner during use, can be accurately and limitedly matched with an external component through a limit matching groove at the outer side, can improve the impact resistance during internal feeding through an internal reinforcing buffer matching column during use, can split and buffer feeding substances, enables the materials entering a container to be softer, has higher efficiency during installation, is more convenient to replace during later maintenance, and can play a role in reliable safety protection for the feeding device.
The technical scheme of the utility model is as follows:
A micro-inverter fluid feed assist assembly, characterized by: including the center pin is the cylindrical main part transport cooperation post of upper and lower direction, the upper end of main part transport cooperation post is equipped with integrated into one piece's cylindrical installation cooperation steady post, the left side of installation cooperation steady post is equipped with the opening outside and with the spacing cooperation groove of installation that runs through of upper and lower direction, the upper end of installation cooperation steady post is equipped with the cross-section and is convex transport excessive cooperation groove, the lower extreme central point in transport excessive cooperation groove puts and is equipped with will the cylindrical main part transport cooperation hole that the terminal surface runs through completely under the main part transport cooperation post, be equipped with circumference evenly distributed cross-section and be semicircular reinforcement buffering cooperation post on the interior cylindrical surface of main part transport cooperation hole, the upper end of reinforcement buffering cooperation post is planar structure, the length of reinforcement buffering cooperation post upper and lower direction is less than the depth of main part transport cooperation hole upper and lower direction, the lower extreme edge position in main part transport cooperation hole is equipped with the conical output safety cooperation groove.
Further, the upper end of the main body conveying and matching column and the outer side of the connecting position of the installation and matching stabilizing column are provided with installation and matching circular arc columns.
Further, the projection of the installation limit matching groove in the up-down direction is of a V-shaped structure.
Further, the length of the reinforcing buffer matching column in the up-down direction is greater than half of the depth of the main body conveying matching hole in the up-down direction.
Furthermore, the outer lower end edge position of the main body conveying and matching column is provided with an installation and matching position avoiding chamfer structure.
The utility model has the beneficial effects that:
The utility model adopts a brand new structural design, is directly assembled with a feeding pipeline in a combination manner by insertion, and can be accurately and limitedly matched with an external component at the outer side by virtue of the limit matching groove, and the impact resistance of the feeding device can be improved by virtue of the internal reinforcing buffer matching column during use, and meanwhile, the feeding substances can be shunted and buffered, so that the materials entering the container can be softer, the efficiency of the component during installation is higher, the replacement during later maintenance is more convenient, and the feeding device can be reliably and safely protected.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic front view of the present utility model;
FIG. 3 is a left side schematic view of the present utility model;
FIG. 4 is a right side schematic view of the present utility model;
FIG. 5 is a schematic top view of the present utility model;
FIG. 6 is a schematic bottom view of the present utility model;
FIG. 7 is a schematic perspective view of a second direction of the present utility model;
In the figure: 1. the main part is carried the cooperation post, 2, the stable post of installation cooperation, 3, installation spacing cooperation groove, 4, carry excessive cooperation groove, 5, main part and is carried the mating hole, 6, consolidate the buffering cooperation post, 7, export safe cooperation groove.
Detailed Description
As shown in fig. 1 to 7, a micro-reactor fluid feeding auxiliary component comprises a cylindrical main body conveying and matching column 1 with a central shaft in the up-down direction, wherein an integrally formed cylindrical mounting and matching stabilizing column 2 is arranged at the upper end of the main body conveying and matching column 1, and the main body conveying and matching column and the main body stabilizing column form a main body structure of the component. The left side of installation cooperation stable post 2 is equipped with the spacing cooperation groove 3 of installation that the opening was to the outside and run through upper and lower direction, and lower end structure inserts the passageway of lower extreme through embolia complex mode in the installation, and the spacing cooperation groove 3 of installation can carry out inseparable laminating with the outside position. The upper end of the installation cooperation stabilizing column 2 is provided with an excessive conveying cooperation groove 4 with a circular arc-shaped cross section, the center position of the lower end of the excessive conveying cooperation groove 4 is provided with a cylindrical main body conveying cooperation hole 5 which completely penetrates through the lower end face of the main body conveying cooperation column 1, and materials are conveyed and matched through the cylindrical main body conveying cooperation hole. The reinforcing buffer matching column 6 with the semicircular circumference evenly distributed cross section is arranged on the inner cylindrical surface of the main body conveying matching hole 5, so that on one hand, the strength of the inner structure is improved, on the other hand, the effect of diversion buffer is achieved, and the impact force of conveyed materials is smaller. The upper end of the reinforcement buffer fit column 6 is of a planar structure, the buffer fit area is larger when materials are conveyed downwards, and the buffer effect is better. The length of the reinforcing buffer matching column 6 in the up-down direction is smaller than the depth of the main body conveying matching hole 5 in the up-down direction, and an inverted conical output safety matching groove 7 is formed in the edge position of the lower end of the main body conveying matching hole 5, so that the space of an output position is ensured to be larger. The novel structure design is adopted, the novel structure design is directly assembled with a feeding pipeline through a mode of inserting the assembly when the novel structure design is used, the outer side position can be accurately matched with an external component through the limiting matching groove, the novel structure design not only can improve the impact resistance of the internal feeding, but also can shunt and buffer feeding materials, so that the materials in a container can be softer, the efficiency of the novel structure design is higher when the novel structure design is installed, the novel structure design is convenient to replace during later maintenance, and the novel structure design can play a reliable role in protecting the feeding device.
Preferably, the upper end of the main body conveying and matching column 1 and the outer side of the connecting position of the installation and matching stabilizing column 2 are provided with installation and matching circular arc columns, so that the connection tightness of the outer side position in installation and matching is better, the matching area is larger, and the impact resistance of the matching position in use is also better.
Preferably, the projection of the installation limit matching groove 3 in the up-down direction is of a V-shaped structure, so that the installation limit matching groove is easier to match with the installation limit matching groove, and meanwhile, the influence of the structure on the strength of the main body is smaller.
Preferably, the length of the reinforcing buffer engaging column 6 in the up-down direction is greater than half the depth of the main body conveying engaging hole 5 in the up-down direction, so that the internal structural strength is higher and the durability is better in use.
Preferably, the outer lower end edge position of the main body conveying and matching column 1 is provided with an installation and matching position avoiding chamfer structure, and the matching convenience is stronger when the main body conveying and matching column is sleeved with a channel below during installation.
While the foregoing is directed to the preferred embodiments of the present utility model, it should be noted that modifications and substitutions can be made by those skilled in the art without departing from the principles of the present utility model, and such modifications and substitutions should also be considered to be within the scope of the present utility model.

Claims (5)

1. A micro-inverter fluid feed assist assembly, characterized by: including center pin is cylindrical main part transport cooperation post (1) of upper and lower direction, the upper end of main part transport cooperation post (1) is equipped with integrated into one piece's cylindrical installation cooperation steady post (2), the left side of installation cooperation steady post (2) is equipped with opening outside and with the spacing cooperation groove (3) of installation that runs through of upper and lower direction, the upper end of installation cooperation steady post (2) is equipped with the transport excessive cooperation groove (4) that the cross-section is convex, the lower extreme central point of transport excessive cooperation groove (4) is put and is equipped with will the cylindrical main part transport cooperation hole (5) that the terminal surface runs through completely under main part transport cooperation post (1), be equipped with circumference evenly distributed cross-section on the interior cylinder of main part transport cooperation hole (5) and be semicircular reinforcement buffering cooperation post (6), the upper end of reinforcement buffering cooperation post (6) is planar structure, the length of reinforcement buffering cooperation post (6) upper and lower direction is less than the depth of main part transport cooperation hole (5), the lower extreme edge position of main part transport cooperation hole (5) is equipped with down conical output safety cooperation groove (7).
2. A micro-inverter fluid feed assist member as defined in claim 1 wherein: the outer side of the connecting position of the upper end of the main body conveying and matching column (1) and the installation and matching stabilizing column (2) is provided with an installation and matching circular arc column.
3. A micro-inverter fluid feed assist member as defined in claim 1 wherein: the projection of the installation limit matching groove (3) in the up-down direction is of a V-shaped structure.
4. A micro-inverter fluid feed assist member as defined in claim 1 wherein: the length of the reinforcing buffer matching column (6) in the up-down direction is larger than half of the depth of the main body conveying matching hole (5) in the up-down direction.
5. A micro-inverter fluid feed assist member as defined in claim 1 wherein: the edge position of the lower end of the outer side of the main body conveying and matching column (1) is provided with an installation and matching position avoiding chamfer structure.
CN202322536304.7U 2023-09-19 2023-09-19 Micro-reactor fluid feeding auxiliary component Active CN220919117U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322536304.7U CN220919117U (en) 2023-09-19 2023-09-19 Micro-reactor fluid feeding auxiliary component

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322536304.7U CN220919117U (en) 2023-09-19 2023-09-19 Micro-reactor fluid feeding auxiliary component

Publications (1)

Publication Number Publication Date
CN220919117U true CN220919117U (en) 2024-05-10

Family

ID=90960946

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322536304.7U Active CN220919117U (en) 2023-09-19 2023-09-19 Micro-reactor fluid feeding auxiliary component

Country Status (1)

Country Link
CN (1) CN220919117U (en)

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