Automatic mylar pasting machine

By designing an automated Mylar film applicator and adopting a streamlined operation process, the problems of long application time and high labor intensity of manual applicator have been solved, realizing automated applicator application of Mylar film and improving efficiency.

CN223735466UActive Publication Date: 2025-12-30YANGSHENG (TIANJIN) METAL PROD CO LTD
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Patent Information

Application Number
CN202520008400.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2025-12-30
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

Manual application of Mylar film is time-consuming, labor-intensive, and has low overall application efficiency.

Method used

Design an automatic Mylar labeling machine, including a feeding mechanism, a transfer mechanism, a positioning and labeling mechanism, a label dispensing mechanism, and a discharge mechanism. The control mechanism coordinates these mechanisms to achieve automatic feeding, labeling, and discharge, and adopts a streamlined operation process.

Benefits of technology

It has enabled automated application of Mylar film, reducing the labor intensity of workers and significantly improving application efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of mylar pasting, in particular to an automatic mylar pasting machine which comprises a feeding mechanism, a transferring mechanism, a positioning and pasting mechanism, a label discharging mechanism, a discharging mechanism and a control mechanism. The feeding mechanism can continuously feed the to-be-mounted part; on one hand, the transferring mechanism can transfer the to-be-mounted piece fed by the feeding mechanism to the positioning and attaching mechanism, and on the other hand, the transferring mechanism can also transfer the mounted finished piece to the discharging mechanism; the positioning and attaching mechanism can attach the mylar film to the to-be-attached part; the label discharging mechanism can continuously discharge labels, so that the positioning and attaching mechanism uncovers and attaches the mylar film to the to-be-attached part; the discharging mechanism can be used for conveying the film-pasted finished product pieces so that the film-pasted finished product pieces can be collected by operators; the control mechanism can control the feeding mechanism, the transferring mechanism, the positioning and attaching mechanism, the label discharging mechanism and the discharging mechanism in a coordinated mode. The mylar film pasting device has the effect of improving the mylar film pasting efficiency.
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Description

Technical Field

[0001] This application relates to the field of Mylar application technology, and in particular to an automatic Mylar application machine. Background Technology

[0002] Mylar is a polyester film, also known as Mylar paper or Mylar film. It has excellent tear strength, heat and cold resistance, moisture and water resistance, chemical corrosion resistance, and super insulation properties. It can be used as insulation material for motors, capacitors, coils, and cables. It can also be made into composite insulation material with barley paper. It is now widely used for electrical insulation of electronic products such as household appliances, instruments, displays, motor slots, and computers.

[0003] The traditional method of applying Mylar film is manual. The specific process can be described as follows: the operator first peels the Mylar film off the material tape, then aligns the Mylar film with the part to be applied, and then pastes the Mylar film onto the corresponding position on the part to be applied. This process is repeated to complete the entire application process.

[0004] Regarding the aforementioned technologies, the inventors believe that manual application of Mylar film is time-consuming, and the labor intensity of workers applying the film for extended periods is also very high, resulting in low overall application efficiency. Utility Model Content

[0005] To improve the efficiency of Mylar film application, this application provides an automatic Mylar film application machine.

[0006] The automatic Mylar applicator provided in this application adopts the following technical solution:

[0007] An automatic Mylar film applicator includes a feeding mechanism, a transfer mechanism, a positioning and attaching mechanism, a label dispensing mechanism, a discharging mechanism, and a control mechanism. The feeding mechanism continuously feeds the parts to be applicated. The transfer mechanism transfers the parts fed by the feeding mechanism to the positioning and attaching mechanism, and also transfers the applicated finished parts to the discharging mechanism. The positioning and attaching mechanism attaches Mylar film to the parts to be applicated. The label dispensing mechanism continuously dispenses labels for the positioning and attaching mechanism to peel off and attach the Mylar film to the parts to be applicated. The discharging mechanism transports the applicated finished parts for collection by the operator. The control mechanism coordinates and controls the feeding mechanism, transfer mechanism, positioning and attaching mechanism, label dispensing mechanism, and discharging mechanism.

[0008] By adopting the above technical solution, when applying Mylar film, the parts to be applied are first placed in the feeding mechanism for continuous feeding, and then transported to the transfer mechanism. The transfer mechanism then transfers the parts to be applied from the feeding mechanism to the positioning and attaching mechanism. The positioning and attaching mechanism can peel off the Mylar film from the bidding mechanism and attach it to the parts to be applied while the bidding mechanism is continuously issuing bids. After the application is completed, the finished parts are transferred to the unloading mechanism by the transfer mechanism. The unloading mechanism then transports the finished parts to be collected by the operators. Through the above-mentioned streamlined operation process, automatic feeding, automatic application, automatic transfer and automatic unloading can be achieved. The entire operation process eliminates the delay caused by manual feeding and receiving, reduces the labor intensity of workers, and greatly improves the application efficiency of Mylar film.

[0009] Optionally, the control mechanism includes an information receiving module and an information processing module. The information receiving module can receive relevant information about the application of Mylar film. The information processing module can coordinate and control the feeding mechanism, the transfer mechanism, the positioning and attaching mechanism, the label dispensing mechanism, and the discharge mechanism according to the information received by the information receiving module, so as to perform relevant operations that match the received information.

[0010] By adopting the above technical solution, the control mechanism can coordinate the control of the feeding mechanism, the transfer mechanism, the positioning and attaching mechanism, the labeling mechanism, and the discharging mechanism, so that the feeding mechanism, the transfer mechanism, the positioning and attaching mechanism, the labeling mechanism, and the discharging mechanism can work together to accurately and efficiently complete the application of Mylar film.

[0011] Optionally, the feeding mechanism includes a feeding unit, a first lifting unit, a first handling unit, and a feeding conveying unit. The feeding unit can transport the component to be mounted to the first lifting unit; the first lifting unit can transport the component to be mounted from the feeding unit to the first handling unit; the first handling unit can transfer the component to be mounted from the first lifting unit to the feeding conveying unit; and the feeding conveying unit can transport the component to be mounted from the first handling unit to the transfer mechanism. The feeding unit, the first lifting unit, the first handling unit, and the feeding conveying unit work together to achieve automatic feeding of the component to be mounted.

[0012] By adopting the above technical solution, when feeding the parts to be mounted, the parts to be mounted are first placed in the feeding unit and then conveyed to the first lifting unit. The first lifting unit then raises the parts to be mounted to the position of the first transport unit. Then the first transport unit transfers the parts to be mounted to the feeding conveying unit. The feeding unit, the first lifting unit, the first transport unit and the feeding conveying unit work together to realize the automatic feeding of the parts to be mounted.

[0013] Optionally, the transfer mechanism includes a second transport unit and a third transport unit. The second transport unit can transfer the parts to be mounted from the feeding conveyor unit to the positioning and mounting mechanism for mounting. The third transport unit can transfer the mounted finished parts to the unloading mechanism.

[0014] By adopting the above technical solution, the parts to be mounted, which are conveyed by the feeding conveyor unit, will be transferred to the positioning and mounting mechanism by the second handling unit for mounting; the finished parts after mounting will then be transferred to the unloading mechanism by the third handling unit.

[0015] Optionally, the positioning and attaching mechanism includes a material holding unit and an attaching unit. The material holding unit can hold the parts to be attached that are transferred from the second transport unit and can transfer the parts to be attached to the attaching unit. The attaching unit can peel off the Mylar film from the label dispensing mechanism and attach it to the parts to be attached.

[0016] By adopting the above technical solution, when the part to be mounted is mounted, the part to be mounted is first transferred to the position of the mounting unit through the material holding unit, and then the mounting unit peels off the Mylar film from the label dispensing mechanism and attaches it to the part to be mounted.

[0017] Optionally, the bidding mechanism includes a feeding unit, a feeding frame assembly, and a pulling unit. The feeding unit can temporarily store the Mylar film attached to the material belt and also feed the Mylar film attached to the material belt. The feeding frame assembly can play a transition and transfer role for the Mylar film fed by the feeding unit. The pulling unit can pull the material belt and cooperate with the feeding unit and the feeding frame assembly to achieve continuous bidding. On the other hand, it can also collect the waste material belt after the Mylar film is peeled off while continuously dispensing bids.

[0018] By adopting the above technical solution, when the bid is issued, the material pulling unit acts as a power source to pull the material belt and drive the material belt through the feeding frame group and the feeding unit for transition and transfer. At this time, the Mylar film will continue to issue bids along the direction of the material belt transportation and be peeled off by the pasting unit and pasted onto the part to be pasted. The waste material belt after pasting will be collected by the material pulling unit at the same time.

[0019] Optionally, the discharging mechanism includes a discharging conveying unit, a fourth handling unit, a second lifting unit, and a discharging unit. The discharging conveying unit can transport the finished parts that have been mounted and transferred from the third handling unit to the fourth handling unit; the fourth handling unit can transport the finished parts that have been mounted and transferred from the discharging conveying unit to the second lifting unit; the second lifting unit can transport the finished parts that have been mounted and transferred from the fourth handling unit to the discharging unit; the discharging unit can transport the finished parts that have been mounted and transferred to be collected by the operator; the discharging conveying unit, the fourth handling unit, the second lifting unit, and the discharging unit work together to achieve automatic discharging of the finished parts that have been mounted and transferred.

[0020] By adopting the above technical solution, the finished parts after mounting will be transported to the fourth handling unit via the discharge conveyor unit. The fourth handling unit will then transfer the finished parts to the second lifting unit. The second lifting unit will then lower the finished parts to the discharge unit. The discharge unit will then transport the finished parts for collection by the operators.

[0021] In summary, this application includes at least one of the following beneficial technical effects:

[0022] 1. By setting up a feeding mechanism, a transfer mechanism, a positioning and attaching mechanism, a label dispensing mechanism, a discharge mechanism, and a control mechanism, automatic feeding, automatic attaching, automatic transfer, and automatic discharge can be achieved. The entire operation process eliminates the delay caused by manual feeding and receiving, reduces the labor intensity of workers, and greatly improves the attaching efficiency of Mylar film. Attached Figure Description

[0023] Figure 1 This is a schematic diagram illustrating the structure of an automatic Mylar applicator according to an embodiment of this application;

[0024] Figure 2 This is a structural diagram intended to show the internal structure of an automatic Mylar applicator.

[0025] Explanation of reference numerals in the attached drawings: 1. Machine body; 2. Feeding mechanism; 21. Feeding unit; 211. First linear drive; 212. First linear conveying assembly; 22. First lifting unit; 221. Second linear drive; 222. Second linear conveying assembly; 23. First handling unit; 24. Feeding and conveying unit; 241. Third linear drive; 242. Third linear conveying assembly; 3. Transfer mechanism; 31. Second handling unit; 32. Third handling unit; 4. Positioning and attaching mechanism; 41. Material holding unit; 411. Fourth linear drive; 412. Lower mold; 42. Attaching unit; 5. Label dispensing mechanism; 51 51. Feeding unit; 52. Feeding rack assembly; 53. Pulling unit; 531. Fifth linear drive; 532. Fourth linear conveying assembly; 6. Discharge mechanism; 61. Discharge conveying unit; 611. Sixth linear drive; 612. Fifth linear conveying assembly; 62. Fourth handling unit; 621. Suction assembly; 622. Clamping assembly; 63. Second lifting unit; 631. Seventh linear drive; 632. Sixth linear conveying assembly; 64. Discharge unit; 641. Eighth linear drive; 642. Seventh linear conveying assembly; 7. Control mechanism; 71. Information receiving module; 72. Information processing module. Detailed Implementation

[0026] The following is in conjunction with the appendix Figure 1-2 This application will be described in further detail.

[0027] This application discloses an automatic Mylar applicator. (Refer to...) Figure 1 and Figure 2 The automatic Mylar film applicator includes a body 1, a feeding mechanism 2, a transfer mechanism 3, a positioning and attaching mechanism 4, a label dispensing mechanism 5, a discharge mechanism 6, and a control mechanism 7. The feeding mechanism 2 continuously feeds the parts to be applicated. The transfer mechanism 3 can transfer the parts to be applicated fed by the feeding mechanism 2 to the positioning and attaching mechanism 4, and can also transfer the finished parts after application to the discharge mechanism 6. The positioning and attaching mechanism 4 can attach the Mylar film to the parts to be applicated. The label dispensing mechanism 5 can continuously dispense labels so that the positioning and attaching mechanism 4 can peel off and attach the Mylar film to the parts to be applicated. The discharge mechanism 6 can transport the finished parts after application so that they can be collected by the operator. The control mechanism 7 can coordinate and control the feeding mechanism 2, the transfer mechanism 3, the positioning and attaching mechanism 4, the label dispensing mechanism 5, and the discharge mechanism 6.

[0028] Reference Figure 1 and Figure 2 The control mechanism 7 is located above the body 1. The control mechanism 7 includes a device capable of centralized control, such as a computer. In this embodiment, the control mechanism 7 includes an information receiving module 71 (e.g., a WiFi module, an Internet module, a Bluetooth module, or an infrared module) and an information processing module 72 (e.g., a CPU). The information receiving module 71 can receive relevant information about the application of Mylar film. The information processing module 72 can coordinate and control the feeding mechanism 2, the transfer mechanism 3, the positioning and attaching mechanism 4, the label dispensing mechanism 5, and the dispensing mechanism 6 according to the information received by the information receiving module 71, so as to perform relevant operations that match the received information.

[0029] Reference Figure 1 and Figure 2 The feeding mechanism 2 includes a feeding unit 21, a first lifting unit 22, a first conveying unit 23, and a feeding conveying unit 24. In this embodiment, the feeding unit 21 includes a first linear drive 211 and a first linear conveying assembly 212 driven by the first linear drive 211, which can carry the parts to be mounted and send them into the first lifting unit 22. The first linear drive 211 can be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor, etc. The first linear conveying assembly 212 can be a conveyor belt (belt type, plate type, chain type, etc.).

[0030] Reference Figure 1 and Figure 2The first lifting unit 22 includes a second linear drive 221 and a second linear conveying assembly 222 driven by the second linear drive 221, which can carry the part to be mounted and lift it to the first conveying unit 23. The second linear drive 221 can be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor, etc. The second linear conveying assembly 222 can be a lead screw (sliding lead screw, rolling lead screw, hydrostatic lead screw, etc.).

[0031] Reference Figure 1 and Figure 2 The first handling unit 23 can be selected as a device composed of a conveying mechanism and a rotating mechanism, or it can be selected as a robotic arm. In this embodiment, the first handling unit 23 is selected as a robotic arm. The robotic arm can grasp the part to be mounted and place it in the feeding conveying unit 24. The feeding conveying unit 24 includes a third linear drive 241 and a third linear conveying assembly 242 driven by the third linear drive 241, which can carry the part to be mounted and convey it to the transfer mechanism 3. The third linear drive 241 can be selected as a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank connecting rod mechanism driven by a motor, etc. The third linear conveying assembly 242 can be selected as a conveyor belt (belt type, plate type, chain type, etc.).

[0032] Reference Figure 1 and Figure 2 The transfer mechanism 3 includes a second transport unit 31 and a third transport unit 32. The second transport unit 31 can be a device composed of a conveying mechanism and a rotating mechanism, or it can be a robotic arm with a suction cup at its end. In this embodiment, the second transport unit 31 is a robotic arm with a suction cup at its end. The robotic arm can pick up the part to be mounted and place it in the positioning and mounting mechanism 4. The third transport unit 32 can be a device composed of a conveying mechanism and a rotating mechanism, or it can be a robotic arm with a suction cup at its end. In this embodiment, the third transport unit 32 is a robotic arm with a suction cup at its end. The robotic arm can pick up the finished part after mounting and transfer it to the unloading mechanism 6.

[0033] Reference Figure 1 and Figure 2The positioning and attaching mechanism 4 includes a material holding unit 41 and an attaching unit 42. The material holding unit 41 includes a fourth linear drive 411 and a lower mold 412 driven by the fourth linear drive 411, which can carry the part to be attached and push it to the attaching unit 42 for attachment. The fourth linear drive 411 can be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor. The attaching unit 42 can be a device composed of a conveying mechanism and a rotating mechanism, or it can be a robotic arm with a suction cup at its end. In this embodiment, the attaching unit 42 is a robotic arm with a suction cup at its end. The robotic arm can pick up the Mylar film and attach the Mylar film to the part to be attached placed in the lower mold 412.

[0034] Reference Figure 1 and Figure 2 The dispensing mechanism 5 includes a feeding unit 51, a feeding frame assembly 52, and a pulling unit 53. The feeding unit 51 may be a device with a rotating function. In this embodiment, the feeding unit 51 is selected as a rotating roller, which can rotate as the material belt is pulled. The feeding frame assembly 52 may be a vertical frame, a horizontal frame, or a combination of vertical and horizontal frames with rotating rollers installed. In this embodiment, the feeding frame assembly 52 is selected as a combination of vertical and horizontal frames with rotating rollers installed. The combination frame can play a transition and transportation role for the material belt with Mylar film attached. The pulling unit 53 includes a fifth linear drive 531 and a fourth linear conveying assembly 532 driven by the fifth linear drive 531, which can carry the material belt and pull the material belt to rotate. The fifth linear drive 531 may be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor, etc. The fourth linear conveying assembly 532 may be a device with a rotating function. In this embodiment, the fourth linear conveying assembly 532 is selected as a rotating roller.

[0035] Reference Figure 1 and Figure 2 The discharge mechanism 6 includes a discharge conveying unit 61, a fourth handling unit 62, a second lifting unit 63, and a discharge unit 64. In this embodiment, the discharge conveying unit 61 includes a sixth linear drive 611 and a fifth linear conveying assembly 612 driven by the sixth linear drive 611, which can carry the finished parts after mounting and convey them to the position of the fourth handling unit 62. The sixth linear drive 611 can be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor, etc. The fifth linear conveying assembly 612 can be a conveyor belt (belt type, plate type, chain type, etc.).

[0036] Reference Figure 1 and Figure 2The fourth transport unit 62 includes a suction component 621 and a clamping component 622. The suction component 621 can be a device composed of a conveying mechanism and a rotating mechanism, or it can be a robotic arm with an adjustable angle and a suction cup at its end. In this embodiment, the suction component 621 is selected as a robotic arm with an adjustable angle and a suction cup at its end. The robotic arm can pick up the finished part after mounting and adjust the finished part to a vertical position. The clamping component 622 can be a device composed of a conveying mechanism and a rotating mechanism, or it can be a robotic arm. In this embodiment, the clamping component 622 is selected as a robotic arm. The robotic arm can grab the finished part whose angle has been adjusted by the suction component 621 and transfer it to the second lifting unit 63.

[0037] Reference Figure 1 and Figure 2 The second lifting unit 63 includes a seventh linear drive 631 and a sixth linear conveying assembly 632 driven by the seventh linear drive 631, which can carry the finished product and lower it to the discharge unit 64. The seventh linear drive 631 can be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor, etc. The sixth linear conveying assembly 632 can be a lead screw (sliding lead screw, rolling lead screw, hydrostatic lead screw, etc.).

[0038] Reference Figure 1 and Figure 2 The discharge unit 64 includes an eighth linear drive 641 and a seventh linear conveying assembly 642 driven by the eighth linear drive 641, which can carry finished products and transport them to be collected by operators. The eighth linear drive 641 can be a hydraulic cylinder, a pneumatic cylinder, a linear motor, or a crank-connecting rod mechanism driven by a motor, etc., and the seventh linear conveying assembly 642 can be a conveyor belt (belt type, plate type, chain type, etc.).

[0039] The implementation principle of an automatic Mylar film applicator according to an embodiment of this application is as follows: When applicating Mylar film, the part to be applicated is first placed in the first linear conveyor assembly 212 and then conveyed to the second linear conveyor assembly 222. The second linear conveyor assembly 222 then raises the part to be applicated to the first transport unit 23. The robotic arm grabs and places the part to be applicated on the third linear conveyor assembly 242. The third linear conveyor assembly 242 then conveys the part to be applicated to the second transport unit 31. The robotic arm picks up and places the part to be applicated into the lower mold 412. The lower mold 412 is driven by the fourth linear drive 411 and moves to the applicator 42. At this time, the material pulling unit 53 pulls the material belt and drives the material belt to be transferred through the loading frame assembly 52 and the loading unit 51. The Mylar film will continuously dispense along the direction of the material belt and be peeled off and applicated to the part to be applicated by the applicator 42.

[0040] After the attachment is completed, the finished part is transferred to the fifth linear conveyor assembly 612 via the third conveyor unit 32. It is then conveyed to the fourth conveyor unit 62 via the fifth linear conveyor assembly 612. The robotic arm picks up, rotates and clamps the finished part to the sixth linear conveyor assembly 632. The sixth linear conveyor assembly 632 then lowers the finished part to the seventh linear conveyor assembly 642 for collection by the operator.

[0041] Through the above-mentioned streamlined operation process, automatic feeding, automatic mounting, automatic transfer and automatic unloading can be achieved. The entire operation process eliminates the delay caused by manual feeding and receiving, reduces the labor intensity of workers, and greatly improves the mounting efficiency of Mylar film.

[0042] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An automatic mella applicator characterized by: The device comprises a feeding mechanism (2), a transfer mechanism (3), a positioning and attaching mechanism (4), a label output mechanism (5), a discharging mechanism (6) and a control mechanism (7). The feeding mechanism (2) can continuously feed the parts to be attached. The transfer mechanism (3) can transfer the parts to be attached fed by the feeding mechanism (2) to the positioning and attaching mechanism (4) and can also transfer the finished products to the discharging mechanism (6). The positioning and attaching mechanism (4) can attach the Mylar film to the parts to be attached. The label output mechanism (5) can continuously output labels for the positioning and attaching mechanism (4) to take and attach the Mylar film to the parts to be attached. The discharging mechanism (6) can transport the finished products for the operator to collect. The control mechanism (7) can coordinate the control of the feeding mechanism (2), the transfer mechanism (3), the positioning and attaching mechanism (4), the label output mechanism (5) and the discharging mechanism (6).

2. The automatic mica taping machine according to claim 1, characterized in that: The control mechanism (7) comprises an information receiving module (71) and an information processing module (72). The information receiving module (71) can receive information related to the attachment of the Mylar film. The information processing module (72) can coordinate the control of the feeding mechanism (2), the transfer mechanism (3), the positioning and attaching mechanism (4), the label output mechanism (5) and the discharging mechanism (6) according to the information received by the information receiving module (71) to perform the relevant operations matching the received information.

3. The automatic mica taping machine according to claim 1, characterized in that: The feeding mechanism (2) comprises a feeding unit (21), a first lifting unit (22), a first carrying unit (23) and a feeding conveying unit (24). The feeding unit (21) can transport the parts to be attached to the first lifting unit (22). The first lifting unit (22) can transport the parts to be attached transported by the feeding unit (21) to the first carrying unit (23). The first carrying unit (23) can transfer the parts to be attached transported by the first lifting unit (22) to the feeding conveying unit (24). The feeding conveying unit (24) can transport the parts to be attached transferred by the first carrying unit (23) to the transfer mechanism (3). The feeding unit (21), the first lifting unit (22), the first carrying unit (23) and the feeding conveying unit (24) cooperate to realize the automatic feeding of the parts to be attached.

4. The automatic mica taping machine according to claim 1, characterized in that: The transfer mechanism (3) comprises a second carrying unit (31) and a third carrying unit (32). The second carrying unit (31) can transfer the parts to be attached transported by the feeding conveying unit (24) to the positioning and attaching mechanism (4) for attachment. The third carrying unit (32) can transfer the finished products to the discharging mechanism (6).

5. The automatic mica taping machine according to claim 1, characterized in that: The positioning and attaching mechanism (4) comprises a containing unit (41) and an attaching unit (42). The containing unit (41) can contain the parts to be attached transferred by the second carrying unit (31) and can transfer the parts to be attached to the attaching unit (42). The attaching unit (42) can take the Mylar film from the label output mechanism (5) and attach it to the parts to be attached.

6. The automatic mica taping machine according to claim 1, characterized in that: The label output mechanism (5) comprises a feeding unit (51), a feeding rack group (52) and a pulling unit (53). The feeding unit (51) can temporarily store the Mylar film attached to the tape and also feed the Mylar film attached to the tape. The feeding rack group (52) can play a transition and transfer role on the Mylar film fed by the feeding unit (51). The pulling unit (53) can pull the tape and cooperate with the feeding unit (51) and the feeding rack group (52) to realize continuous label output, and can also collect the waste tape after the Mylar film is taken off while continuously outputting the label.

7. The automatic mica taping machine according to claim 1, characterized in that: The discharge mechanism (6) comprises a discharge conveying unit (61), a fourth conveying unit (62), a second lifting unit (63) and a discharge unit (64). The discharge conveying unit (61) can convey the finished product piece with the label attached, which is transferred by the third conveying unit (32), to the fourth conveying unit (62). The fourth conveying unit (62) can transfer the finished product piece with the label attached, which is conveyed by the discharge conveying unit (61), to the second lifting unit (63). The second lifting unit (63) can transfer the finished product piece with the label attached, which is transferred by the fourth conveying unit (62), to the discharge unit (64). The discharge unit (64) can transport the finished product piece with the label attached to be collected by an operator. The discharge conveying unit (61), the fourth conveying unit (62), the second lifting unit (63) and the discharge unit (64) cooperate to realize automatic discharge of the finished product piece with the label attached.