Stirring equipment for transfer film glue

By designing a mixing device for transfer film adhesive, and utilizing a combination of a conveying pipe, a circular shell, a support frame, and a cutting blade, the problems of uneven adhesive mixing and low efficiency were solved, achieving efficient and uniform adhesive mixing and stable output.

CN223818599UActive Publication Date: 2026-01-23KUNSHAN FILMTRONICS TECH CO LTD
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Patent Information

Application Number
CN202423270244.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-23
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In existing technologies, the mixing of adhesives is inefficient, results in uneven mixing, and requires a long mixing time.

Method used

A mixing device for transfer film adhesive is adopted. Through the design of the conveying pipe, circular shell, support frame and cutting blade, the multi-component materials in the fluid are fully mixed. Cutting collision is increased during the adhesive circulation process. Combined with the movement of the moving disc and the guide shroud, the mixing uniformity and discharge stability are improved.

Benefits of technology

It improves the mixing uniformity and stirring efficiency of the adhesive, ensures stable discharge of the fluid after stirring, and enhances the coating effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223818599U_ABST
Patent Text Reader

Abstract

The utility model discloses stirring equipment for transfer film glue, which comprises a tank body provided with a feed port and a discharge port respectively, a driving shaft of which the upper end is connected with an output shaft of a second motor, and the lower end is rotationally connected with the top of a circular shell, and at least one upper annular bracket is arranged on a support frame and is positioned on the outer side of the circular shell; the inner wall of each upper annular support is provided with a plurality of cutting blades corresponding to the discharging through holes in the circular shell, and at least two lower annular supports which are arranged at intervals in the vertical direction are installed on the supporting frame and located on the lower portion of the tank body. A plurality of stirring rods which extend in the radial direction and are distributed at intervals in the circumferential direction are mounted on the inner circumferential surface of each lower annular bracket. According to the utility model, not only can full mixing of multi-component materials in fluid be realized, but also cutting collision to the fluid can be increased, the mixing uniformity can be improved, and respective effects and the stability of the stirred fluid during discharging can be ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of stirring equipment of transfer film glue, belong to glue processing field. BACKGROUND

[0002] The hot transfer film is a kind of material for transferring pattern, character or image from one carrier (for example, polyester film) to another substrate (for example, plastic, metal, etc.). The adhesive surface of the hot transfer film is obtained by glue coating, and the coating quality of the glue largely determines the quality of its adhesive surface. Therefore, before coating, the glue needs to be stirred to ensure its uniformity. However, in the current stirring process, a large amount of glue is directly put into the stirring cylinder for stirring, which results in a long stirring time and low efficiency. SUMMARY

[0003] The utility model discloses a kind of stirring equipment of transfer film glue, the stirring equipment of transfer film glue can realize the sufficient mixing of multiple components in fluid, can increase the cutting collision of fluid, improve the uniformity of mixing, can also guarantee the stability of respective effect and the stability when discharging fluid after stirring.

[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme: a kind of stirring equipment of transfer film glue, comprising: the tank body with inlet, outlet is respectively set, the central region in the tank body is vertically provided with a material conveying pipe, the lower end of the material conveying pipe is sealingly connected with the inner wall of the tank body bottom, the upper end of the material conveying pipe is installed with a circular shell which is communicated with the material conveying pipe, the lower end of the rotating shaft concentrically arranged in the material conveying pipe is connected with the output shaft of the first motor installed on the bottom surface outside the tank body, the upper end of the rotating shaft is connected with the circular shell and is used to drive the circular shell to rotate, a plurality of inlet through holes are formed on the side wall of the lower end of the material conveying pipe, a plurality of outlet through holes are formed on the side wall of the circular shell which is concentrically arranged with the tank body and are distributed along the circumferential direction at intervals.

[0005] A second motor is installed on the top surface of the outside of the tank body and directly above the rotating shaft, the lower end of a drive shaft connected with the output shaft of the second motor is rotationally connected with the top of the circular shell, the upper end of a support frame arranged in the tank body is connected with the drive shaft and can rotate therewith, the lower end of the support frame is rotatably sleeved on the outside of the material conveying pipe, at least one upper annular support is installed on the support frame and outside the circular shell, a plurality of cutting blades corresponding to the outlet through holes on the circular shell are installed on the inner wall of each upper annular support, at least two lower annular supports are installed on the support frame and below the tank body and are arranged at intervals in the vertical direction, a plurality of stirring rods are installed on the inner circumferential surface of each lower annular support and extend along the radial direction and are distributed along the circumferential direction at intervals.

[0006] The bottom surface of the tank body and the lower annular support are provided with a flow guide cover, the bottom of the flow guide cover which is sealedly connected with the outer side wall of the tank body is provided with a material collecting disc, the central part of the flow guide cover and the material collecting disc is respectively provided with a position avoiding through hole through which the material conveying pipe passes and which is sealedly matched with the outer side surface of the material conveying pipe, the upper surface of the material collecting disc which is in contact with the bottom surface of the tank body is provided as a tapered inclined surface which gradually inclines downward in the direction of the radial direction, the tapered inclined surface which inclines downward in the direction of the radial direction is lower than the feeding through hole on the material conveying pipe near the material conveying pipe, a movable disc which is movably sleeved on the outer side of the material conveying pipe is arranged between the flow guide cover and the material collecting disc, a plurality of feeding through holes which are spaced apart in the circumferential direction are arranged on the movable disc, a strip-shaped protrusion is arranged on the upper surface of the movable disc and between any two adjacent feeding through holes, a plurality of strip-shaped holes in which the strip-shaped protrusions are embedded are arranged on the flow guide cover, and a driving assembly for driving the movable disc to move back and forth is arranged below the movable disc.

[0007] The further improved scheme in the above technical scheme is as follows:

[0008] 1. In the above scheme, the driving assembly comprises a first electromagnet, a second electromagnet and a return spring which cooperate with each other, the outer side wall of the material conveying pipe is provided with a flange portion in the radial direction outwardly below the movable disc, the first electromagnet is installed above the flange portion, the second electromagnet installed on the movable disc is arranged directly above the first electromagnet, and the return spring is sleeved on the outer side of the material conveying pipe and arranged between the flange portion and the movable disc.

[0009] 2. In the above scheme, the feeding through holes are all arranged to be inclined, so that an acute angle is formed between the feeding direction of each feeding through hole and the axial direction of the corresponding circular shell, an acute angle is formed between the inclined direction of the cutting piece arranged to be inclined and the axial direction of the corresponding upper annular support, the inclined direction of each cutting piece intersects with the feeding direction of the corresponding feeding through hole, and the rotation direction of the second motor is opposite to that of the first motor.

[0010] 3. In the above scheme, the discharge port is arranged on the side wall of the tank body and above the top surface edge of the flow guide cover.

[0011] 4. In the above scheme, the top surface of the flow guide cover is arranged as a tapered inclined surface which inclines downward in the direction of the radial direction outwardly.

[0012] 5. In the above scheme, a spiral blade is wound on the outer surface of the region inside the material conveying pipe.

[0013] 6. In the above scheme, the material conveying pipe is installed with a pump body near one end of the circular shell for conveying the fluid in the lower part of the tank body into the circular shell, and the fluid is glue containing granular fillers.

[0014] 7. The scheme, each of the discharge holes is a strip-shaped hole extending in the vertical direction, and the three upper annular supports are distributed in the vertical direction.

[0015] 8. The scheme, each of the connections between the driving shaft and the circular housing, the circular housing and the material conveying pipe, and the material conveying pipe and the lower end of the support frame is a bearing.

[0016] Thanks to the above technical scheme, the present application has the following advantages compared with the prior art:

[0017] 1. The stirring equipment for transferring adhesive, a plurality of feeding holes are formed in the side wall of the lower end of the material conveying pipe, a plurality of discharge holes are formed in the side wall of the circular housing concentrically arranged with the tank body, a second motor is installed on the top surface of the tank body and located directly above the rotating shaft, the lower end of a driving shaft connected with the output shaft of the second motor is rotatably connected with the top of the circular housing, the upper end of a support frame arranged in the tank body is connected with the driving shaft and can rotate with the driving shaft, the lower end of the support frame is rotatably sleeved on the outside of the material conveying pipe, at least one upper annular support is installed on the support frame and located outside the circular housing, a plurality of cutting pieces corresponding to the discharge holes of the circular housing are installed on the inner wall of each upper annular support, at least two lower annular supports are installed on the support frame and located below the tank body, a plurality of stirring rods are installed on the inner circumferential surface of each lower annular support, each of which extends in the radial direction and is spaced apart in the circumferential direction, which can not only realize the full mixing of multi-component materials in the fluid by circulating and stirring the fluid in the tank body, but also increase the cutting and collision of the fluid during the circulation and falling of the adhesive, further improving the uniformity of the mixing of the fluid; further, the discharge holes are inclined, so that the discharge direction of each discharge hole and the axial direction of the corresponding circular housing form an acute angle, the inclination direction of the inclined cutting piece and the axial direction of the corresponding upper annular support form an acute angle, so that the inclination direction of each cutting piece intersects with the discharge direction of the corresponding discharge hole, the rotating direction of the second motor is opposite to that of the first motor, which can further improve the collision intensity and effectiveness between the fluid thrown out after circulation and the cutting piece, and further improve the mixing effect of the fluid.

[0018] 2, The utility model discloses a stirring equipment of transfer film glue, be provided with a fairing between the bottom surface of its jar body and lower annular support, the bottom of the fairing that outer lateral wall and jar body inner wall seal connection is provided with a material collecting disc, the central part of fairing and material collecting disc respectively is all set up the position-avoiding through -hole that supplies the material pipe to pass through and seals the cooperation of the outer side surface of material pipe, the upper surface of material collecting disc that lower surface contacts jar body bottom surface is set as conical slope, and the conical slope that gradually inclines downward in the direction of along the radial direction is lower than the feeding through -hole on material pipe at the place close to material pipe, be provided with a movable disc that can be movably sleeved on the outside of material pipe between fairing and material collecting disc, a plurality of spacing distribution's material falling through -hole that is set up on movable disc is along the circumference, and the upper surface of movable disc and be located between any 2 adjacent material falling through -hole all are provided with a strip convex, a plurality of strip holes that are set up on fairing are for strip convex embedding, the lower of movable disc is provided with a drive assembly for driving its reciprocating movement, can through the opening and closing of movable disc and fairing between movement, the cycle and stirring operation is isolated to guarantee respective effect and the stability when discharging after stirring fluid. BRIEF DESCRIPTION OF DRAWINGS

[0019] ATTACHED Figure 1 It is the structure schematic drawing of the stirring equipment of transfer film glue of the utility model,

[0020] ATTACHED Figure 2 It is the cross section schematic drawing of one visual angle of the stirring equipment of transfer film glue of the utility model,

[0021] ATTACHED Figure 3 It is the cross section schematic drawing of another visual angle of the stirring equipment of transfer film glue of the utility model,

[0022] ATTACHED Figure 4 It is Figure 3 The local structure amplification schematic drawing in,

[0023] ATTACHED Figure 5 It is the local structure schematic drawing of the stirring equipment of transfer film glue of the utility model,

[0024] ATTACHED Figure 6 It is Figure 5 The exploded schematic drawing of structure in.

[0025] In the above figure: 100, tank body; 101, feed inlet; 102, discharge outlet; 103, support leg; 1, material conveying pipe; 2, circular housing; 3, rotating shaft; 4, first motor; 51, feed hole; 52, discharge hole; 6, spiral blade; 7, connecting shaft; 8, second motor; 9, drive shaft; 10, support frame; 11, upper annular support; 12, cutting piece; 13, lower annular support; 14, stirring rod; 15, flow guide cover; 151, strip-shaped hole; 16, material collecting disc; 17, movable disc; 171, material falling hole; 172, strip-shaped protrusion; 18, drive assembly; 181, first electromagnet; 182, second electromagnet; 183, return spring; 19, flange part; 20, bearing. DETAILED DESCRIPTION

[0026] The specific embodiments given below can further clarify the present patent, but they are not a limitation of the present patent.

[0027] Example 1: A stirring device for transfer film glue, comprising a tank body 100 provided with a feed inlet 101 and a discharge outlet 102 respectively, a material conveying pipe 1 vertically arranged in the central region of the tank body 100, a circular housing 2 with an inner part communicating with the material conveying pipe 1 mounted on the upper end of the material conveying pipe 1 sealingly connected with the inner wall of the bottom of the tank body 100, a rotating shaft 3 concentrically arranged in the material conveying pipe 1, the lower end of the rotating shaft 3 connected with the output shaft of a first motor 4 mounted on the bottom surface outside the tank body 100, the upper end of the rotating shaft 3 connected with the circular housing 2 and used to drive the circular housing 2 to rotate, a plurality of feed holes 51 arranged on the side wall of the lower end of the material conveying pipe 1, and a plurality of discharge holes 52 arranged on the side wall of the circular housing 2 concentrically arranged with the tank body 100 and distributed along the circumference at intervals.

[0028] A second motor 8 mounted on the top surface outside the tank body 100 directly above the rotating shaft 3, a drive shaft 9 with the upper end connected with the output shaft of the second motor 8 and the lower end rotatably connected with the top of the circular housing 2, a support frame 10 arranged in the tank body 100, the upper end of the support frame 10 connected with the drive shaft 9 and rotatable therewith, the lower end of the support frame 10 rotatably sleeved outside the material conveying pipe 1, at least one upper annular support 11 mounted on the support frame 10 and outside the circular housing 2, a plurality of cutting pieces 12 mounted on the inner wall of each upper annular support 11 corresponding to the discharge holes 52 on the circular housing 2, and at least two lower annular supports 13 mounted on the support frame 10 and located at the lower part of the tank body 100 and arranged at intervals in the vertical direction, a plurality of stirring rods 14 mounted on the inner circumferential surface of each lower annular support 13 and extending along the radial direction and distributed along the circumference at intervals.

[0029] A flow guide cover 15 is arranged between the bottom surface of the tank body 100 and the lower annular support 13, the bottom of the flow guide cover 15 which is sealedly connected with the outer side wall of the tank body 100 is provided with a material collecting disc 16, the central part of each of the flow guide cover 15 and the material collecting disc 16 is provided with a clearance hole through which the material conveying pipe 1 passes and which is sealedly matched with the outer side surface of the material conveying pipe 1, the upper surface of the material collecting disc 16 which is in contact with the bottom surface of the tank body 100 is provided as a tapered inclined surface which gradually inclines downward in the direction of the radial direction, the tapered inclined surface close to the material conveying pipe 1 is lower than the feeding hole 51 on the material conveying pipe 1, a movable disc 17 which is movably sleeved on the outer side of the material conveying pipe 1 is arranged between the flow guide cover 15 and the material collecting disc 16, a plurality of material dropping holes 171 which are spacedly distributed in the circumferential direction are formed on the movable disc 17, a strip-shaped protrusion 172 is arranged on the upper surface of the movable disc 17 and between any two adjacent material dropping holes 171, a plurality of strip-shaped holes 151 in which the strip-shaped protrusions 172 are embedded are formed on the flow guide cover 15, and a driving assembly 18 for driving the movable disc 17 to reciprocally move is arranged below the movable disc 17.

[0030] The driving assembly 18 comprises a first electromagnet 181, a second electromagnet 182 and a reset spring 183 which cooperate with each other, a flange portion 19 which extends radially outward is arranged on the outer side wall of the material conveying pipe 1 and below the movable disc 17, the first electromagnet 181 is arranged above the flange portion 19, the second electromagnet 182 which is arranged on the movable disc 17 is arranged directly above the first electromagnet 181, and the reset spring 183 is sleeved on the outer side of the material conveying pipe 1 and arranged between the flange portion 19 and the movable disc 17.

[0031] Each of the discharging holes 52 is arranged to be inclined, so that the discharging direction of each of the discharging holes 52 forms an acute angle with the axial direction of the corresponding circular shell 2, the inclined direction of each of the cutting blades 12 forms an acute angle with the axial direction of the corresponding upper annular support 11, so that the inclined direction of each of the cutting blades 12 intersects with the discharging direction of the corresponding discharging hole 52, and the rotating direction of the second motor 8 is opposite to that of the first motor 4.

[0032] A helical blade 6 is wound on the outer surface of the rotating shaft 3 which is located in the inner region of the material conveying pipe 1; a pump body for conveying the fluid in the lower part of the tank body 100 into the circular shell 2 is arranged on one end of the material conveying pipe 1 close to the circular shell 2, and the fluid is glue containing granular filler.

[0033] Each of the discharging holes 52 is a strip-shaped hole which extends in the vertical direction, and the three upper annular supports 11 are spacedly distributed in the vertical direction; each of the driving shaft 9 and the circular shell 2, the circular shell 2 and the material conveying pipe 1, and the material conveying pipe 1 and the lower end of the support frame 10 is rotatably connected through a bearing 20.

[0034] The embodiment 2 is a stirring device for transfer film glue, which comprises a tank 100 provided with a feeding port 101 and a discharging port 102, a material conveying pipe 1 vertically arranged in the central region of the tank 100, a circular shell 2 mounted on the upper end of the material conveying pipe 1 and in communication with the material conveying pipe 1, a rotating shaft 3 concentrically arranged in the material conveying pipe 1, a first motor 4 mounted on the bottom surface of the tank 100 and connected with the output shaft of the rotating shaft 3, and a second motor 8 mounted on the top surface of the tank 100 and vertically above the rotating shaft 3.

[0035] The lower end of the rotating shaft 3 is connected with the output shaft of the second motor 8, the upper end of the rotating shaft 3 is connected with the circular shell 2 and used to drive the circular shell 2 to rotate, a plurality of feeding through holes 51 are arranged on the side wall of the lower end of the material conveying pipe 1, a plurality of discharging through holes 52 are arranged on the side wall of the circular shell 2 and spaced along the circumferential direction.

[0036] A driving shaft 9 is arranged on the output shaft of the second motor 8 and connected with the top of the circular shell 2, a support frame 10 is arranged in the tank 100 and connected with the driving shaft 9 and can rotate with the driving shaft 9, the lower end of the support frame 10 is rotatably sleeved on the outer side of the material conveying pipe 1, at least one upper annular support 11 is arranged on the support frame 10 and located on the outer side of the circular shell 2, a plurality of cutting pieces 12 are arranged on the inner wall of each upper annular support 11 and correspond to the discharging through holes 52 of the circular shell 2, at least two lower annular supports 13 are arranged on the support frame 10 and located on the lower part of the tank 100 and spaced in the vertical direction, a plurality of stirring rods 14 are arranged on the inner circumferential surface of each lower annular support 13 and respectively extend along the radial direction and are spaced along the circumferential direction. A flow guide cover 15 is arranged between the bottom surface of the tank 100 and the lower annular support 13, a collecting disc 16 is arranged on the bottom of the flow guide cover 15 and connected with the inner wall of the tank 100, a position avoiding through hole is arranged in the center of each of the flow guide cover 15 and the collecting disc 16 and passes through the material conveying pipe 1 and is in sealing fit with the outer side surface of the material conveying pipe 1, the upper surface of the collecting disc 16 is arranged as a tapered inclined surface, the tapered inclined surface gradually inclines downward in the direction of the radial direction and is lower than the feeding through holes 51 on the material conveying pipe 1 near the material conveying pipe 1, an active disc 17 is arranged between the flow guide cover 15 and the collecting disc 16 and is movably sleeved on the outer side of the material conveying pipe 1, a plurality of discharging through holes 171 are arranged on the active disc 17 and spaced along the circumferential direction, a strip-shaped protrusion 172 is arranged on the upper surface of the active disc 17 and located between any two adjacent discharging through holes 171, a plurality of strip-shaped holes 151 are arranged on the flow guide cover 15 and embedded with the strip-shaped protrusions 172, and a driving assembly 18 is arranged below the active disc 17 and used to drive the active disc 17 to reciprocate.

[0037] The discharge port 102 is arranged on the side wall of the tank body 100 and above the top edge of the flow guide cover 15; the top of the flow guide cover 15 is arranged as a conical inclined surface inclined downward in the radial outward direction.

[0038] The upper end of the rotating shaft 3 is fixedly connected with the top of the circular shell 2 through a connecting shaft 7 arranged in the circular shell 2.

[0039] The feeding port 101 is arranged at the edge of the top of the tank body 100; the bottom of the tank body 100 is provided with at least three support legs 103 arranged at intervals in the circumferential direction; a plurality of feeding through holes 51 are arranged at intervals in the circumferential direction, and each feeding through hole 51 is a strip-shaped through hole extending in the axial direction of the material conveying pipe 1.

[0040] The inner side wall of the tank body 100 is a cylindrical surface, and the outer circumferential surfaces of the upper annular support 11 and the lower annular support 13 concentrically arranged with the tank body 100 are arranged close to the inner side wall of the tank body 100; the stirring rods 14 on any two adjacent lower annular supports 13 are arranged staggered in the circumferential direction.

[0041] Working principle:

[0042] Before the coating of the adhesive layer on the film material, the glue is first stirred to ensure the uniformity of the glue when it is discharged, thereby ensuring the uniformity of the coating effect;

[0043] The glue is injected from the feeding port 101 at the top of the tank body; when the glue needs to be stirred, the action disc is located at the uppermost position of its stroke through the action of the return spring 183 in the driving assembly, at this time, the strip-shaped protrusion 172 on the action disc 17 is embedded in the strip-shaped hole 151 on the flow guide cover 15, so that the glue gradually gathers above the flow guide cover 15, and then the second motor 8 drives the support frame 10 to drive the cutting blade 12 on the upper annular support 11 and the stirring rod 14 on the lower annular support 13 to rotate, so as to fully stir and mix the glue and improve the uniformity of the glue;

[0044] When the glue is stirred for a period of time, the movable disc can be moved to the lowermost position of its stroke by the attraction of the first electromagnet 181 to the second electromagnet 182 in the driving assembly. At this time, the strip-shaped protrusion 172 on the movable disc 17 moves out of the strip-shaped hole 151 on the flow guide cover 15, and the glue originally above the flow guide cover 15 can flow from the strip-shaped hole 151 and the blanking hole 171 to the bottom of the tank body, enter the conveying pipe 1 from the feeding hole 51 at the lower end of the conveying pipe 1, and then be lifted upwards into the circular shell 2 under the action of the rotating helical blade 6 driven by the first motor 4. The glue transported into the circular shell 2 is then spun outwards by the force from the several discharge holes 52 on the side wall of the circular shell 2 and hits the rotating cutting blade 12 on the outside, and then flows back downwards. In the process of flowing back, the glue can be continuously stirred by the rotating stirring rod 14.

[0045] By interlacing or combining the circulation and stirring of the glue, and increasing the cutting and collision of the glue in the process of circulating and falling, the uniformity and efficiency of stirring the glue are improved. By controlling the rotation of the circular shell 2 and the cutting blade 12 by the first motor 4 and the second motor 8 respectively, the opposite directions of rotation of the two can be realized, which further improves the collision intensity and effectiveness between the glue spun out after circulation and the cutting blade, and further enhances the mixing effect of the glue.

[0046] When the circulation and stirring are completed, the movable disc is moved to the uppermost position of its stroke by the action of the reset spring 183 in the driving assembly, the glue is gathered above the flow guide cover 15, and then the uniformly stirred glue is discharged outwards through the discharge port 102 opened above the flow guide cover 15, and the coating operation is continued.

[0047] When the above-mentioned stirring equipment for transfer film glue is used, the fluid in the tank body can be fully mixed by circulation and stirring, the cutting and collision of the fluid can be increased in the process of circulating and falling, the uniformity of mixing the fluid is further improved, the collision intensity and effectiveness between the fluid spun out after circulation and the cutting blade are further improved, the mixing effect of the fluid is further enhanced, the circulation and stirring operations can be isolated by the movement between the movable disc and the flow guide cover, the stability of the discharged fluid after stirring is ensured, and the like.

[0048] The above examples are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and cannot limit the protection scope of the present application. Any equivalent changes or modifications made according to the spirit and essence of the present application shall be covered within the protection scope of the present application.

Claims

1. A mixing device for transfer film adhesive, comprising: A tank (100) is provided with an inlet (101) and an outlet (102) respectively. A conveying pipe (1) is vertically arranged in the central area of ​​the tank (100). The upper end of the conveying pipe (1) is sealed to the inner wall of the bottom of the tank (100) and a circular shell (2) is installed inside the conveying pipe (1). The characteristic is that the lower end of a rotating shaft (3) concentrically arranged in the conveying pipe (1) is connected to the output shaft of a first motor (4) installed on the bottom surface of the outer side of the tank (100). The upper end of the rotating shaft (3) is connected to the circular shell (2) and is used to drive the circular shell (2) to rotate. A number of inlet holes (51) are opened on the side wall of the lower end of the conveying pipe (1). A number of outlet holes (52) are opened on the side wall of the circular shell (2) concentrically arranged with the tank (100). A second motor (8) is installed on the top surface of the outer side of the tank (100) and directly above the rotating shaft (3). The lower end of a drive shaft (9) whose upper end is connected to the output shaft of the second motor (8) is rotatably connected to the top of the circular shell (2). The upper end of a support frame (10) disposed inside the tank (100) is connected to the drive shaft (9) and can rotate accordingly. The lower end of the support frame (10) is rotatably fitted onto the outside of the conveying pipe (1). The support frame (10) is located on the outer side of the circular shell (2). At least one upper annular support (11) is installed on the side. Each upper annular support (11) has several cutting blades (12) installed on its inner wall, which correspond to the discharge through holes (52) on the circular shell (2). At least two lower annular supports (13) are installed on the support frame (10) and located at the lower part of the tank (100) and are spaced apart in the vertical direction. Each lower annular support (13) has several stirring rods (14) that extend radially and are spaced apart in the circumferential direction on its inner circumferential surface. A flow guide shroud (15) is provided between the bottom surface of the tank (100) and the lower annular support (13). A collection tray (16) is provided at the bottom of the flow guide shroud (15), whose outer wall is sealed to the inner wall of the tank (100). A clearance through hole is provided in the center of both the flow guide shroud (15) and the collection tray (16) for the material conveying pipe (1) to pass through and to seal with the outer surface of the material conveying pipe (1). The upper surface of the collection tray (16), whose lower surface is in contact with the bottom surface of the tank (100), is set as a conical slope. The conical slope, which gradually slopes downward in the radial inward direction, is lower than the material conveying pipe (1) near the material conveying pipe (1). The feed through hole (51) is provided on the upper part of the guide shroud (15) and the collecting plate (16). A movable plate (17) is movably fitted on the outside of the conveying pipe (1). The movable plate (17) has several discharge through holes (171) distributed circumferentially. A strip-shaped protrusion (172) is provided on the upper surface of the movable plate (17) between any two adjacent discharge through holes (171). A strip-shaped hole (151) for the strip-shaped protrusion (172) to be inserted is provided on the guide shroud (15). A drive assembly (18) for driving its reciprocating movement is provided below the movable plate (17).

2. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: The drive assembly (18) includes a first electromagnet (181), a second electromagnet (182), and a return spring (183) that cooperate with each other. A radially outward flange (19) is provided on the outer side wall of the conveying tube (1) and below the movable disk (17). The first electromagnet (181) is installed above the flange (19). The second electromagnet (182), which is installed on the movable disk (17), is correspondingly arranged directly above the first electromagnet (181). The return spring (183) is fitted on the outside of the conveying tube (1) and is located between the flange (19) and the movable disk (17).

3. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: The discharge through holes (52) are all inclined, so that the discharge direction of each discharge through hole (52) forms an acute angle with the axial direction of the corresponding circular shell (2). The inclined direction of the cutting blade (12) forms an acute angle with the axial direction of the corresponding upper annular bracket (11), so that the inclined direction of each cutting blade (12) intersects with the discharge direction of the corresponding discharge through hole (52). The rotation direction of the second motor (8) is opposite to that of the first motor (4).

4. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: The discharge port (102) is located on the side wall of the tank (100) and above the top edge of the guide shroud (15).

5. The mixing equipment for the transfer film adhesive according to claim 4, characterized in that: The top surface of the shroud (15) is configured as a tapered slope that is inclined downward in a radially outward direction.

6. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: The rotating shaft (3) is located on the outer surface of the inner region of the conveying pipe (1) and a spiral blade (6) is wound around it.

7. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: The conveying pipe (1) is equipped with a pump at one end near the circular shell (2) for conveying fluid from the lower part of the tank (100) into the circular shell (2), the fluid being glue containing particulate filler.

8. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: Each of the discharge through holes (52) is a strip-shaped through hole extending in the vertical direction, and the three upper annular supports (11) are distributed at intervals in the vertical direction.

9. The mixing equipment for the transfer film adhesive according to claim 1, characterized in that: The drive shaft (9) is rotatably connected to the circular housing (2), the circular housing (2) is rotatably connected to the material conveying pipe (1), and the material conveying pipe (1) is rotatably connected to the lower end of the support frame (10) by a bearing (20).