Organic carrier additive mixing arrangement is used in production of electrically conductive silver thick liquid

文档序号:1481196 发布日期:2020-02-28 浏览:7次 中文

阅读说明:本技术 一种导电银浆生产用有机载体添加剂混合装置 (Organic carrier additive mixing arrangement is used in production of electrically conductive silver thick liquid ) 是由 殷鹏刚 赵曦 于 2019-11-28 设计创作,主要内容包括:本发明涉及导电银浆生产的技术领域,特别是涉及一种导电银浆生产用有机载体添加剂混合装置,其能够多方向对银粉和有机粘合剂等进行搅拌,提高搅拌效率,同时,使银粉和有机粘合剂等混合更为均匀,包括搅拌桶、四组支撑腿、支撑轴、驱动盘、四组驱动轴、四组驱动齿轮、四组驱动齿条、多组搅拌叶片、连接杆、驱动杆、驱动电机和传动盘,搅拌桶的内部设置有搅拌腔,四组支撑腿的顶端分别固定在搅拌桶底部的左前侧、右前侧、左后侧和右后侧,支撑轴固定在搅拌桶内部的底部中央,驱动盘的底部中央与支撑轴的顶部转动连接,驱动盘上均匀地设置有四组弧形的驱动槽,搅拌桶内部的底部的左前侧、右前侧、左后侧和右后侧分别设置有四组滑动槽。(The invention relates to the technical field of conductive silver paste production, in particular to an organic carrier additive mixing device for conductive silver paste production, which can stir silver powder, an organic adhesive and the like in multiple directions, improves the stirring efficiency, and simultaneously enables the silver powder, the organic adhesive and the like to be mixed more uniformly, and comprises a stirring barrel, four groups of supporting legs, a supporting shaft, a driving disk, four groups of driving shafts, four groups of driving gears, four groups of driving racks, a plurality of groups of stirring blades, a connecting rod, a driving motor and a driving disk, wherein a stirring cavity is arranged in the stirring barrel, the top ends of the four groups of supporting legs are respectively fixed on the left front side, the right front side, the left rear side and the right rear side of the bottom of the stirring barrel, the supporting shaft is fixed in the center of the bottom of the stirring barrel, the center of the bottom, four sets of sliding grooves are respectively arranged on the left front side, the right front side, the left rear side and the right rear side of the bottom inside the stirring barrel.)

1. The organic carrier additive mixing device for producing the conductive silver paste is characterized by comprising a stirring barrel (1), four groups of supporting legs (2), supporting shafts (3), a driving disc (4), four groups of driving shafts (5), four groups of driving gears (6), four groups of driving racks (7), a plurality of groups of stirring blades (8), connecting rods (9), driving rods (10), a driving motor (11) and a driving disc (12), wherein a stirring cavity is arranged inside the stirring barrel (1), the top ends of the four groups of supporting legs (2) are respectively fixed on the left front side, the right front side, the left rear side and the right rear side of the bottom of the stirring barrel (1), the supporting shafts (3) are fixed at the center of the bottom inside the stirring barrel (1), the center of the bottom of the driving disc (4) is rotatably connected with the top of the supporting shafts (3), and four groups of arc-shaped driving grooves are uniformly arranged on the driving disc (, the left front side, the right front side, the left rear side and the right rear side of the bottom inside the stirring barrel (1) are respectively provided with four groups of sliding grooves, the bottom ends of four groups of driving shafts (5) are respectively connected with the four groups of sliding grooves in a sliding manner, the tops of the four groups of driving shafts (5) respectively penetrate through the four groups of driving grooves, the four groups of driving gears (6) are respectively sleeved at the tops of the four groups of driving shafts (5), the four groups of driving racks (7) are respectively arranged at the inner sides of the four groups of driving grooves, the four groups of driving racks (7) are respectively arranged at the outer sides of the four groups of driving grooves in the anticlockwise direction, the four groups of driving racks (7) are respectively meshed with the four groups of driving gears (6), the multiple groups of stirring blades (8) are respectively and uniformly arranged at the outer sides of the four groups of driving shafts (5), the right end of the connecting rod (9) is hinged, the top left side intercommunication of agitator (1) is provided with the drive mouth, the inside at the drive mouth is installed in driving motor (11), the top central authorities of driving dish (12) are connected with the output of driving motor (11) bottom, and the left end of actuating lever (10) is articulated with the right side of driving dish (12) bottom, and the right side intercommunication of agitator (1) is provided with the feed inlet, and the right side lid of feed inlet is equipped with feeding apron (13), and the left side bottom and the right side bottom of agitator (1) communicate respectively and are provided with two sets of discharge gates, and the outside of two sets of discharge gates is covered respectively and is equipped with two sets of discharge apron (14).

2. The organic vehicle additive mixing device for conductive silver paste production according to claim 1, further comprising a partition plate (15), wherein the partition plate (15) is installed inside the stirring barrel (1), the middle of the partition plate (15) is sleeved outside the support shaft (3), four groups of separation through holes are respectively formed in the left front side, the right front side, the left rear side and the right rear side of the partition plate (15), and the four groups of drive shafts (5) respectively penetrate through the four groups of separation through holes.

3. The organic carrier additive mixing device for conductive silver paste production according to claim 2, it is characterized by also comprising a hydraulic driving device (16) and two groups of hydraulic lifting rods (17), the hydraulic driving device (16) is fixed at the top of the stirring barrel (1), the left side and the right side of the top of the stirring barrel (1) are respectively provided with two groups of lifting ports in a communicating way, two sets of hydraulic lifting rods (17) are installed respectively in the inside of two sets of lift mouths, and the left side and the right side of hydraulic drive device (16) are provided with two sets of hydraulic pressure pipes (18), and two sets of hydraulic lifting rods (17) are connected with hydraulic drive device (16) through two sets of hydraulic pressure pipes (18) respectively, and the bottom of two sets of hydraulic lifting rods (17) is fixed respectively the left side and the right side at division board (15) top, division board (15) and the inside sliding connection of agitator (1).

4. The mixing device of organic carrier additive for conductive silver paste production according to claim 2, wherein the four groups of through holes are provided with hard bristles (19) inside.

5. The mixing device of organic carrier additive for conductive silver paste production according to claim 1, further comprising two sets of heat preservation devices (20), wherein the two sets of heat preservation devices (20) are respectively installed on the left side and the right side of the stirring barrel (1).

6. The mixing device of organic carrier additive for conductive silver paste production according to claim 5, further comprising a temperature control device (21), wherein a temperature control groove is formed in the middle of the right side of the stirring barrel (1), the temperature control device (21) is installed inside the temperature groove, and the temperature control device (21) is electrically connected with the two sets of heat preservation devices (20).

7. The mixing device of organic carrier additive for conductive silver paste production according to claim 1, further comprising a transparent glass plate (22), wherein a viewing port is arranged on the left side of the stirring barrel (1) in a communicating manner, the viewing port is located above the two sets of heat preservation devices (20), and the transparent glass plate (22) is installed inside the viewing port.

8. The mixing device of organic carrier additive for conductive silver paste production according to claim 1, further comprising four sets of self-locking rollers (23), wherein the four sets of self-locking rollers (23) are respectively mounted at the bottom ends of the four sets of supporting legs (2).

Technical Field

The invention relates to the technical field of conductive silver paste production, in particular to an organic carrier additive mixing device for conductive silver paste production.

Background

As is well known, the organic vehicle additive mixing device for conductive silver paste production is an auxiliary device for mixing silver powder and organic binder in the conductive silver paste production process, and is widely used in the field of conductive silver paste production.

The invention patent application with chinese patent number CN109364850A discloses a production apparatus of conductive silver paste, which is described as follows: including top shell and rabbling mechanism, the below that the rabbling mechanism is located the top shell and the rabbling mechanism is linked together with last top shell is inside, be equipped with temperature control mechanism in the rabbling mechanism, be equipped with the sieve moving mechanism in going up the top shell, damper and actuating mechanism, damper is vertical setting and its both ends respectively with the bottom of sieve moving mechanism and the inner wall fixed connection of last top shell, actuating mechanism sets up in the below of sieve moving mechanism and is connected with the top transmission of rabbling mechanism, the top of going up the top shell is equipped with the ejection of compact port that is linked together with the sieve moving mechanism, the bottom of going up the top shell is equipped with four supporting legs that are the rectangular distribution. When the existing production equipment for conductive silver paste is used, silver powder, an organic adhesive and the like are added into a stirring tank, and the silver powder and the organic adhesive are mixed together through stirring of the stirring tank.

Present production facility of electrically conductive silver thick liquid discovers during the use, and it mixes through the unilateral stirring when mixing the stirring silver powder with organic adhesive to lead to it to need the longer time to stir just can reach the requirement of misce bene, lead to the efficiency of mixing lower.

Disclosure of Invention

Technical problem to be solved

Aiming at the defects of the prior art, the invention provides an organic carrier additive mixing device for conductive silver paste production, which can be used for stirring silver powder, an organic adhesive and the like in multiple directions, improving the stirring efficiency and enabling the silver powder, the organic adhesive and the like to be mixed more uniformly.

(II) technical scheme

In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides an organic carrier additive mixing arrangement is used in production of electrically conductive silver thick liquid, includes agitator, four groups of supporting legs, back shaft, driving disc, four groups of drive shafts, four groups of drive gears, four groups of drive racks, multiunit stirring vane, connecting rod, actuating lever, driving motor and driving disc, the inside of agitator is provided with the stirring chamber, the top of four groups of supporting legs is fixed respectively in left front side, right front side, left rear side and the right rear side of agitator bottom, the back shaft is fixed at the inside bottom central authorities of agitator, the bottom central authorities of driving disc are rotated with the top of back shaft and are connected, are provided with four groups of curved driving grooves on the driving disc evenly, and left front side, right front side, left rear side and the right rear side of the inside bottom of agitator are provided with four groups of sliding tray respectively, the bottom of four groups of driving shaft respectively with four groups of sliding tray sliding connection, four groups of driving grooves, the four groups of driving gears are respectively sleeved at the tops of four groups of driving shafts, the four groups of driving racks are respectively arranged at the inner sides of the four groups of driving grooves, the four groups of driving racks are all arranged at the outer side positions of the four groups of driving grooves in the anticlockwise direction, the four groups of driving racks are respectively meshed with the four groups of driving gears, the multiple groups of stirring blades are respectively and uniformly arranged at the outer sides of the four groups of driving shafts, the right end of the connecting rod is hinged with the right side of the top of the driving disc, the right end of the driving rod is hinged with the left end of the connecting rod, the left side of the top of the stirring barrel is communicated with a driving port, the driving motor is arranged in the driving port, the center of the top of the driving disc is connected with the output end of the bottom of the driving motor, the, two groups of discharge ports are respectively communicated with the bottom of the left side and the bottom of the right side of the stirring barrel, and two groups of discharge cover plates are respectively covered and installed on the outer sides of the two groups of discharge ports.

Preferably, still include the division board, the division board is installed in the fixed inside of agitator, and the well cover of division board is established the outside of back shaft, the left front side of division board, right front side, left rear side and right rear side are provided with four groups respectively and separate the through-hole, four groups of drive shafts pass four groups respectively and separate the through-hole.

On the basis of the scheme, still include hydraulic drive device and two sets of hydraulic lifting rod, hydraulic drive device fixes the top of agitator, the left side and the right side at agitator top communicate respectively and are provided with two sets of lift mouths, two sets of hydraulic lifting rod install respectively in the inside of two sets of lift mouths, and hydraulic drive device's left side and right side are provided with two sets of hydraulic pressure pipes, and two sets of hydraulic lifting rod are connected with hydraulic drive device through two sets of hydraulic pressure pipes respectively, and the bottom of two sets of hydraulic lifting rod is fixed respectively the left side and the right side at division board top, the inside sliding connection of division board and agitator.

Furthermore, hard bristles are arranged inside the four groups of separating through holes.

Preferably, the stirring device further comprises two groups of heat preservation devices, and the two groups of heat preservation devices are respectively arranged on the left side and the right side of the stirring barrel.

On the basis of the scheme, the stirring device further comprises a temperature control device, a temperature control groove is formed in the middle of the right side of the stirring barrel, the temperature control device is installed inside the temperature groove, and the temperature control device is electrically connected with the two sets of heat preservation devices.

Preferably, still include the transparent glass board, the left side intercommunication of agitator is provided with the viewing aperture, and the viewing aperture is located two sets of heat preservation device's top, the inside at the viewing aperture is installed to the transparent glass board.

Furthermore, the device also comprises four groups of self-locking rollers which are respectively arranged at the bottom ends of the four groups of supporting legs.

(III) advantageous effects

Compared with the prior art, the invention provides an organic carrier additive mixing device for conductive silver paste production, which has the following beneficial effects:

this conductive silver thick liquid production is with organic carrier additive mixing arrangement, add the inside of agitator through the feed inlet with silver powder and organic adhesive etc, then, drive the driving disc through driving motor and rotate, thereby make actuating lever and connecting rod drive the driving disc at the within range round trip rotation that the radian is pi/2, thereby drive four groups of drive racks round trip rotation, thereby make the drive rack drive gear through the meshing transmission and rotate, thereby, make drive gear drive shaft rotate and regular to the agitator inside and outside round trip movement, thereby make multiunit stirring vane round trip movement when positive and negative rotation, thereby make stirring vane stir silver powder and organic adhesive etc. in many directions, thereby improve the stirring efficiency of device, simultaneously, improve the mixing uniformity of silver powder and organic adhesive.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a cross-sectional view of the present invention;

FIG. 3 is a top plan view of a drive disk of the present invention;

FIG. 4 is a top view of the divider plate of the present invention;

FIG. 5 is an enlarged view of a portion A of FIG. 2 in accordance with the present invention;

in the drawings, the reference numbers: 1. a stirring barrel; 2. supporting legs; 3. a support shaft; 4. a drive disc; 5. a drive shaft; 6. a drive gear; 7. a drive rack; 8. a stirring blade; 9. a connecting rod; 10. a drive rod; 11. a drive motor; 12. a drive plate; 13. a feed cover plate; 14. a discharge cover plate; 15. a partition plate; 16. a hydraulic drive device; 17. a hydraulic lifting rod; 18. a hydraulic tube; 19. hard bristles; 20. a heat preservation device; 21. a temperature control device; 22. a transparent glass plate; 23. self-locking type idler wheel.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

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