Blister part discharging mechanism and blister flanging machine

By designing a blister part cutting mechanism including a frame, cradle part, feeding assembly, cutting assembly and pressing assembly, the problem of the stability of the downward arrangement of the special-shaped blister parts is solved, and the stable downward stacking and neat arrangement of the blister parts are achieved.

CN223013870UActive Publication Date: 2025-06-24梁宇珩
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Patent Information

Application Number
CN202420487867.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-13
Publication Date
2025-06-24
Estimated Expiration
2034-03-13

AI Technical Summary

Technical Problem

The prior art is difficult to stabilize the down-pressing arrangement of the special-shaped blister parts, which can easily lead to the blister parts being crushed.

Method used

A blister part cutter mechanism is designed, including a rack, a cradle piece, a feeding assembly, a cutter assembly and a pressing assembly. Through the collaborative work of these components, blisters are limited, transferred, down-pressed and stacked on the transit platform to ensure stability and orderliness.

Benefits of technology

The stable down-press stacking of special-shaped blister parts is achieved, which reduces the contact area of ​​the blister parts, avoids the compression of the special-shaped position, and ensures neat arrangement and stacking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a plastic uptake part discharging mechanism which comprises a machine frame provided with a transfer platform, a material blocking part is arranged on the transfer platform, two material supporting parts are arranged on the machine frame and located on the side of the transfer platform in the horizontal direction in a spaced mode, and a discharging hole is formed between the two material supporting parts. The material stirring assembly is arranged on the machine frame and provided with a material stirring piece capable of moving in the direction of moving up and down or moving close to or away from the material blocking piece; the discharging assembly is arranged on the rack, and the discharging assembly is provided with a discharging piece capable of moving in the vertical direction or the direction close to or away from the discharging hole; the retainer plate is arranged at the position, below the discharging hole, of the rack; the material pressing assembly is arranged on the machine frame, the material pressing assembly is provided with a material pressing suction cup capable of entering the discharging hole downwards or moving out of the discharging hole upwards, the material pressing suction cup is used for pressing the plastic uptake parts downwards, avoiding of special-shaped positions of the plastic uptake parts is facilitated, and neat stacking and discharging are achieved.
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Description

Technical Field

[0001] The utility model relates to a blanking device, in particular to a blanking mechanism for plastic suction parts and a plastic suction hemming machine. Background Technique

[0002] After the plastic suction parts are processed and formed, it is usually necessary to press them down and stack them for discharging, which is convenient for subsequent processes such as packing and shipping. For some special-shaped plastic suction parts, due to their irregular shapes, when the current pressing plate is used to directly press them down and stack them, it is easy to damage the special-shaped plastic suction parts. Therefore, a blanking mechanism that can more stably press and arrange the plastic suction parts is needed, especially suitable for some special-shaped plastic suction parts. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a blanking mechanism for plastic suction parts and a plastic suction hemming machine to solve one or more technical problems existing in the prior art, and at least provide a beneficial choice or create conditions.

[0004] The solution of the utility model to solve its technical problems is as follows:

[0005] The blanking mechanism for plastic suction parts includes: a frame, which is provided with a transfer platform, a baffle is arranged on the transfer platform, two supporting parts are arranged at intervals in the horizontal direction beside the transfer platform on the frame, and a blanking hole is formed between the two supporting parts; a material pushing component, which is arranged on the frame, and the material pushing component has a material pushing part that can move up and down, close to or away from the baffle; a blanking component, which is arranged on the frame, and the blanking component has a blanking part that can move up and down, close to or away from the blanking hole; a supporting plate, which is arranged on the frame at a position below the blanking hole; a material pressing component, which is arranged on the frame, and the material pressing component has a material pressing suction cup that can move down into the blanking hole or move up out of the blanking hole.

[0006] The technical solution has at least the following beneficial effects: After the plastic suction piece is processed and formed at a position beside the transfer platform, the pusher of the pusher component first moves away from the baffle plate, then moves downward to abut against one side of the pusher, and then moves toward the transfer platform to push the processed and formed plastic suction piece onto the transfer platform and move upward to reset. The plastic suction piece moves on the transfer platform until it abuts against the stopper, and the stopper limits its position. Then, the pusher in the blanking component moves away from the blanking hole and moves downward to abut against one side of the plastic suction piece, and then moves toward the blanking hole to push the plastic suction piece onto the two supporting pieces and move upward to reset. The pressing suction cup in the pressing component moves downward to the top side of the plastic suction piece, stably adsorbs the plastic suction piece and then continues to press down, causing the side of the plastic suction piece to elastically deform and move downward past the two supporting pieces, and move downward from the blanking hole to the supporting plate, completing the downward stacking of the plastic suction piece. In this way, using the pressing suction cup to press the plastic suction piece can reduce the contact area when pressing the plastic suction piece, is beneficial to avoiding the special-shaped position of the plastic suction piece, and can also maintain its stability by adsorbing the plastic suction piece during the pressing process, so as to achieve neat stacking and discharging.

[0007] As a further improvement of the above technical solution, the pressing component includes a pressing lifting driving part, a pressing plate, a mounting plate, a guide post and a counterweight. The pressing lifting driving part is connected to the machine frame, the pressing lifting driving part is drivingly connected to the pressing plate, and the pressing plate can drive the pressing plate to move up and down. The mounting plate is located below the pressing plate, the guide post is connected to the mounting plate, the guide post is slidably connected to the pressing plate in the up and down direction, a counterweight is connected to the guide post at a position on the top side of the pressing plate, and a plurality of the pressing suction cups are connected to the bottom side of the mounting plate. The pressing lifting driving part provides a driving force for the pressing suction cup to move downward into the blanking hole or upward out of the blanking hole. In the normal state, the counterweight abuts against the top side of the pressing plate, and the mounting plate is located below the blanking plate. When the pressing lifting driving part drives the plastic suction piece to move to the top sides of the two supporting pieces, the plastic suction piece pushes the pressing suction cup upward, causing the mounting plate to move upward relative to the pressing plate. At this time, it can flexibly adapt to the shape of the plastic suction piece, and then stably adsorb the plastic suction piece through the pressing suction cup. When the blanking is completed, the pressing lifting driving part drives the pressing plate to move upward, and after the pressing suction cup leaves the plastic suction piece, the gravity of the counterweight causes the mounting plate to move downward relative to the pressing plate to reset.

[0008] As a further improvement of the above technical solution, the pressing lifting driving part is an electric screw rod. When the pressing lifting driving part drives the pressing plate to move downward, it can reduce the height of each downward movement as the height of the stacked plastic suction pieces increases, so as to avoid damaging the gradually stacked and rising plastic suction pieces.

[0009] As a further improvement of the above technical solution, a limiting plate is connected to the top side of the material supporting plate inside the machine frame. There are two limiting plates arranged at intervals along the arrangement direction of the two material supporting members, and a limiting interval is formed between the two limiting plates. The two limiting plates can limit the two sides of the plastic suction parts, preventing the plastic suction parts that are gradually stacked and raised from falling to the two sides, and ensuring the smooth upward stacking of the plastic suction parts.

[0010] As a further improvement of the above technical solution, a limiting lifting driving member is connected to the bottom side of the material supporting plate. The limiting lifting driving member is drivingly connected with a limiting rod. The limiting lifting driving member can drive the limiting rod to penetrate upward through the material supporting plate or withdraw downward from the material supporting plate. The limiting rod is located on one side of the limiting interval. When it is necessary to stack and discharge the plastic suction parts, the limiting lifting driving member drives the limiting rod to protrude upward from the material supporting plate to limit the stacked plastic suction parts from one side of the limiting interval. When it is necessary to move the stacked plastic suction parts outwards, the limiting lifting driving member drives the limiting rod to withdraw downward from the material supporting plate. After removing the block of the limiting rod, the stacked plastic suction parts can be moved out, improving the convenience of operation.

[0011] As a further improvement of the above technical solution, a pushing driving member is connected to the machine frame. The pushing driving member is drivingly connected with a pushing member. The pushing driving member can drive the pushing member to enter or exit the limiting interval from the other side of the limiting interval. When it is necessary to move out the stacked plastic suction parts, the pushing driving member can drive the pushing member to enter the limiting interval from the other side of the limiting interval to automatically move out the stacked plastic suction parts. After completion, it withdraws from the limiting space again, improving the convenience of operation.

[0012] As a further improvement of the above technical solution, the material shifting assembly includes a material shifting translation driving member, a material shifting seat and a material shifting lifting driving member. The material shifting translation driving member is connected to the machine frame. The material shifting translation driving member is drivingly connected with the material shifting seat. The material shifting translation driving member can drive the material shifting seat to move along the direction close to or away from the material blocking member. The material shifting lifting driving member is connected to the material shifting seat. The material shifting lifting driving member is drivingly connected with the material shifting member. The material shifting translation driving member can provide a driving force for the material shifting member along the direction close to or away from the material blocking member, and the material shifting lifting driving member can provide a driving force for the material shifting member to move in the up and down direction. In this way, the material shifting member can be driven to move to the working position after the plastic suction parts are processed and formed, and the plastic suction parts are shifted to the transfer platform.

[0013] As a further improvement of the above technical solution, the blanking assembly includes a blanking translation driving member, a blanking seat and a blanking lifting driving member. The blanking translation driving member is connected to the frame. The blanking translation driving member is drivingly connected to the blanking seat. The blanking translation driving member can drive the blanking seat to move in a direction close to or away from the blanking opening. The blanking lifting driving member is connected to the blanking seat. The blanking lifting driving member is drivingly connected to the blanking member. The blanking driving member can provide a driving force for the blanking member to move in a direction close to or away from the blanking opening, and the blanking lifting driving member can provide a driving force for the blanking member to move in the up and down direction. In this way, the blanking member can be driven to move onto the transfer platform and push the plastic suction molded part to the top sides of the two material supporting members.

[0014] As a further improvement of the above technical solution, a limiting member is connected to a position on the top side of the transfer platform away from the blanking opening. When the plastic suction molded part after processing and forming is pushed onto the transfer platform, the limiting member and the material blocking member can abut against two adjacent sides of the plastic suction molded part to limit and align the plastic suction molded part. In this way, it is convenient to stack the plastic suction molded parts neatly.

[0015] The plastic suction molding and flanging machine includes the above-mentioned plastic suction molded part blanking mechanism.

[0016] The technical solution has at least the following beneficial effects: After the plastic suction molding and flanging machine processes and forms the plastic suction molded part, the pushing member transfers the processed and formed plastic suction molded part onto the transfer platform, and then transfers it to the top sides of the two material supporting members and presses it for stacking. In this way, the arranged stacking of the processed plastic suction molded parts can be realized, especially suitable for special-shaped plastic suction molded parts. Description of the Drawings

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly describe the drawings required for the description of the embodiments. Obviously, the described drawings are only a part of the embodiments of the present invention, rather than all the embodiments. Those skilled in the art can also obtain other design solutions and drawings based on these drawings without creative efforts.

[0018] Figure 1 It is a top view of the present invention.

[0019] Figure 2 It is a front view of the present invention excluding the material pressing assembly.

[0020] Figure 3 It is a side view of the present invention.

[0021] In the attached drawings: 1 - frame, 11 - transfer platform, 12 - material blocking member, 13 - material supporting member, 14 - limiting member, 21 - material pushing member, 22 - material pushing and translating driving member, 23 - material pushing and lifting driving member, 31 - blanking member, 32 - blanking and translating driving member, 33 - blanking and lifting driving member, 41 - material pressing suction cup, 42 - material pressing and lifting driving member, 43 - material pressing plate, 44 - mounting plate, 45 - guide post, 46 - counterweight, 5 - limiting plate, 61 - limiting and lifting driving member, 62 - limiting rod, 71 - material pushing driving member, 72 - material pushing member. Detailed implementation manners

[0022] The following will clearly and completely describe the concept, specific structure and technical effects generated by the present utility model in combination with the embodiments and the attached drawings, so as to fully understand the purpose, features and effects of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, other embodiments obtained by those skilled in the art without creative efforts shall fall within the scope of protection of the present utility model. In addition, all the connection relationships mentioned in the text do not simply refer to the direct connection of components, but refer to the more optimal connection structure that can be formed by adding or reducing connection auxiliary components according to the specific implementation situation. The various technical features in the present invention can be combined with each other without conflicting with each other.

[0023] Refer to Figure 1 , Figure 2 And Figure 3 , a plastic suction part blanking mechanism, comprising: a frame 1, which is provided with a transfer platform 11, a material blocking member 12 is arranged on the transfer platform 11, two material supporting members 13 are arranged on the frame 1 at intervals in the horizontal direction beside the transfer platform 11, and a blanking opening is formed between the two material supporting members 13; a material pushing assembly, which is arranged on the frame 1, and the material pushing assembly has a material pushing member 21 that can move up and down, closer to or away from the material blocking member 12; a blanking assembly, which is arranged on the frame 1, and the blanking assembly has a blanking member 31 that can move up and down, closer to or away from the blanking opening; a material supporting plate, which is arranged on the frame 1 at a position below the blanking opening; a material pressing assembly, which is arranged on the frame 1, and the material pressing assembly has a material pressing suction cup 41 that can move downward into the blanking opening or upward out of the blanking opening.

[0024] In this blister part blanking mechanism, after the blister part is processed and formed at a position beside the transfer platform 11, the material pushing part 21 of the material pushing component first moves away from the material blocking plate, then moves downward to abut against one side of the material pushing part 21, and then moves toward the transfer platform 11 to push the processed and formed blister part onto the transfer platform 11 and move upward to reset. The blister part moves on the transfer platform 11 until it abuts against the material blocking part 12, and the material blocking part 12 limits its position. Then, the blanking part 31 in the blanking component moves away from the blanking opening and moves downward to abut against one side of the blister part, and then moves toward the blanking opening to push the blister part onto the two material supporting parts 13 and move upward to reset. The pressing suction cup 41 in the pressing component moves downward to the top side of the blister part, stably adsorbs the blister part and then continues to press down, causing the side of the blister part to elastically deform and move downward past the two material supporting parts 13, and move downward from the blanking opening to the material supporting plate, completing the downward stacking of the blister part. In this way, using the pressing suction cup 41 to press down the blister part can reduce the contact area when pressing down the blister part, is conducive to avoiding the special-shaped positions of the blister part, and can also maintain its stability by adsorbing the blister part during the pressing process, so as to achieve neat stacking and discharging.

[0025] The blank holding suction cups 41 inside the blank holding assembly are vacuum suction cups. In actual applications, multiple of them are installed. However, during the installation process, factors such as installation errors always exist, making it difficult to completely avoid the concave and convex positions of the plastic part to be sucked. To better solve this problem, in this embodiment, the blank holding assembly includes a blank holding lifting drive member 42, a blank holding plate 43, a mounting plate 44, guide posts 45 and a counterweight 46. The blank holding lifting drive member 42 is connected to the frame 1, and the blank holding lifting drive member 42 is drivingly connected to the blank holding plate 43. The blank holding plate 43 can drive the blank holding plate 43 to move up and down. The mounting plate 44 is located below the blank holding plate 43. The guide posts 45 are connected to the mounting plate 44, and the guide posts 45 are slidably connected to the blank holding plate 43 in the up and down direction. A counterweight 46 is connected to the position of the guide posts 45 on the top side of the blank holding plate 43. A plurality of the blank holding suction cups 41 are connected to the bottom side of the mounting plate 44. In actual applications, there are multiple guide posts 45. Correspondingly, counterweights 46 should be connected to the multiple guide posts 45. The blank holding lifting drive member 42 provides a driving force for the blank holding suction cups 41 to move downward into the blanking opening or upward out of the blanking opening. In the normal state, the counterweight 46 abuts against the top side of the blank holding plate 43, and the mounting plate 44 is located below the blanking plate. When the blank holding lifting drive member 42 drives the plastic part to be sucked to the top sides of the two supporting members 13, the plastic part to be sucked pushes the blank holding suction cups 41 upward, causing the mounting plate 44 to move upward relative to the blank holding plate 43. At this time, it can flexibly adapt to the shape of the plastic part to be sucked, and then stably adsorb the plastic part to be sucked through the blank holding suction cups 41. When the blanking is completed, the blank holding lifting drive member 42 drives the blank holding plate 43 to move upward. After the blank holding suction cups 41 leave the plastic part to be sucked, the gravity of the counterweight 46 causes the mounting plate 44 to move downward relative to the blank holding plate 43 to reset.

[0026] The blank holding lifting drive is mainly used to provide a driving force for the blank holding part to move in the up and down direction. There are various structural forms, such as air cylinders, hydraulic cylinders, etc. Since the overall height of the plastic parts to be sucked will gradually increase when they are arranged and stacked, the supporting plate can be directly designed as a structure that can gradually move downward. In this embodiment, the blank holding lifting drive member 42 is an electric lead screw. When the blank holding lifting drive member 42 drives the blank holding plate 43 to move downward, the height of each downward movement can be reduced as the height of the stacked plastic parts to be sucked increases, so as to avoid damaging the gradually stacked and rising plastic parts to be sucked.

[0027] In some embodiments, a limiting plate 5 is connected to the position of the top side of the supporting plate inside the frame 1. The limiting plate 5 is arranged in two at intervals along the arrangement direction of the two supporting members 13. A limiting interval is formed between the two limiting plates 5. The two limiting plates 5 can limit the two sides of the plastic part to be sucked, preventing the gradually stacked and rising plastic parts to be sucked from falling down to both sides, and ensuring the smooth upward arrangement and stacking of the plastic parts to be sucked.

[0028] To better limit the stacked plastic suction parts, in this embodiment, a limiting lifting driving member 61 is connected to the bottom side of the material supporting plate. The limiting lifting driving member 61 is drivingly connected to a limiting rod 62. The limiting lifting driving member 61 can drive the limiting rod 62 to protrude upward through the material supporting plate or retract downward from the material supporting plate. The limiting rod 62 is located on one side of the limiting interval. When stacking and discharging the plastic suction parts, the limiting lifting driving member drives the limiting rod 62 to protrude upward from the material supporting plate to limit the stacked plastic suction parts from one side of the limiting interval. When the stacked plastic suction parts need to be moved outwards, the limiting lifting driving member drives the limiting rod 62 to retract downward from the material supporting plate. After removing the blockage of the limiting rod 62, the stacked plastic suction parts can be moved out, improving the operation convenience. In practical applications, the installation position of the limiting lifting driving member can be adjusted to adjust the position of the plastic suction parts to adapt to different sizes of plastic suction parts.

[0029] Furthermore, a pushing driving member 71 is connected to the frame 1. The pushing driving member 71 is drivingly connected to a pushing member 72. The pushing driving member 71 can drive the pushing member 72 to enter or exit the limiting interval from the other side of the limiting interval. When the stacked plastic suction parts need to be moved out, the pushing driving member 71 can drive the pushing member 72 to enter the limiting interval from the other side of the limiting interval to automatically move out the stacked plastic suction parts. After completion, it exits the limiting space again, improving the operation convenience.

[0030] The dialing component mainly has a driving force that can drive the dialing member 21 to translate and move up and down. In this embodiment, the dialing component includes a dialing translation driving member 22, a dialing seat and a dialing lifting driving member 23. The dialing translation driving member 22 is connected to the frame 1. The dialing translation driving member 22 is drivingly connected to the dialing seat. The dialing translation driving member 22 can drive the dialing seat to move in a direction close to or away from the material blocking member 12. The dialing lifting driving member 23 is connected to the dialing seat. The dialing lifting driving member 23 is drivingly connected to the dialing member 21. The dialing translation driving member 22 can provide a driving force for the dialing member 21 in a direction close to or away from the material blocking member 12. The dialing lifting driving member 23 can provide a driving force for the dialing member 21 to move in the up and down direction. In this way, the dialing member 21 can be driven to move to the working position after the plastic suction part is processed and formed, and the plastic suction part is dialed onto the transfer platform 11.

[0031] Similarly, the blanking assembly mainly has a driving force that can drive the blanking member 31 to translate and move up and down. In this embodiment, the blanking assembly includes a blanking translation driving member 32, a blanking seat, and a blanking lifting driving member 33. The blanking translation driving member 32 is connected to the frame 1, and the blanking translation driving member 32 is drivingly connected to the blanking seat. The blanking translation driving member 32 can drive the blanking seat to move in a direction close to or away from the blanking opening. The blanking lifting driving member 33 is connected to the blanking seat, and the blanking lifting driving member 33 is drivingly connected to the blanking member 31. The blanking driving member can provide a driving force for the blanking member 31 to move in a direction close to or away from the blanking opening, and the blanking lifting driving member 33 can provide a driving force for the blanking member 31 to move in the up and down direction. In this way, the blanking member 31 can be driven to move onto the transfer platform 11 and push the plastic suction molded part to the top sides of the two material supporting members 13.

[0032] The limit lifting drive, the material pushing drive member 71, the material pushing translation drive member 22, the material pushing lifting drive member 23, the blanking translation drive member 32, and the blanking lifting drive member 33 are all mainly used to provide a driving force for reciprocating movement in a straight line direction, and there are various structural forms, such as electric screw rods, cylinders, or hydraulic cylinders, etc.

[0033] In some embodiments, a limiting member 14 is connected to a position on the top side of the transfer platform 11 away from the blanking opening. When the plastic suction molded part after processing and forming is pushed onto the transfer platform 11, the limiting member 14 and the material blocking member 12 can abut against two adjacent sides of the plastic suction molded part to limit and align the plastic suction molded part. In this way, it is convenient to stack the plastic suction molded parts neatly. In practical applications, the position of the limiting member 14 can be adjusted in a direction close to or away from the blanking opening, and the material blocking member 12 can also be adjusted in a direction close to or away from the material pushing member 21, so as to better adapt to different sizes of plastic suction molded parts.

[0034] A plastic suction molding and flanging machine includes the above-mentioned plastic suction molded part blanking mechanism.

[0035] In this plastic suction molding and flanging machine, after the plastic suction molded part is processed and formed by the plastic suction molding and flanging machine, the material pushing member 21 transfers the processed and formed plastic suction molded part onto the transfer platform 11, and then transfers it to the top sides of the two material supporting members 13 and presses it down for stacking. In this way, the arranged stacking of the processed plastic suction molded parts can be realized, especially suitable for special-shaped plastic suction molded parts.

[0036] The above has specifically described the preferred embodiments of the present invention, but the present invention is not limited to the above embodiments. Those skilled in the art can also make various equivalent variations or substitutions without departing from the spirit of the present invention, and these equivalent variations or substitutions are all included within the scope defined by the claims of this application.

Claims

1. Blister unloading mechanism, characterized by: include: A frame (1) is provided with a transfer platform (11), a material blocking member (12) is provided on the transfer platform (11), two material supporting members (13) are provided on the frame (1) at intervals in the horizontal direction beside the transfer platform (11), and a material discharge opening is formed between the two material supporting members (13); A material shifting assembly, which is arranged on the frame (1), and comprises a material shifting member (21) that can move in an upward and downward direction and in a direction close to or away from the material blocking member (12); A material discharge assembly, which is arranged on the frame (1), and has a material discharge piece (31) that can move in an upward and downward direction and in a direction close to or away from the material discharge opening; A supporting plate, which is arranged on the frame (1) at a position below the material discharge opening; A material pressing assembly is arranged on the frame (1), and the material pressing assembly has a material pressing suction cup (41) that can enter the material discharge hole downwards or move out of the material discharge hole upwards.

2. The blister unloading mechanism according to claim 1, characterized in that: The material pressing assembly comprises a material pressing lifting drive member (42), a material pressing plate (43), a mounting plate (44), a guide column (45) and a counterweight (46); the material pressing lifting drive member (42) is connected to the frame (1); the material pressing lifting drive member (42) is drivingly connected to the material pressing plate (43); the material pressing plate (43) can drive the material pressing plate (43) to move up and down; the mounting plate (44) is located below the material pressing plate (43); the guide column (45) is connected to the mounting plate (44); the guide column (45) is slidably connected to the material pressing plate (43) in an up and down direction; the guide column (45) is located on the top side of the material pressing plate (43) and is connected to a counterweight (46); and the bottom side of the mounting plate (44) is connected to a plurality of material pressing suction cups (41).

3. The blister unloading mechanism according to claim 2, characterized in that: The material pressing and lifting driving component (42) is an electric screw.

4. The blister unloading mechanism according to claim 1, characterized in that: A limit plate (5) is connected to the top side of the support plate in the frame (1), and two limit plates (5) are arranged at intervals along the arrangement direction of the two support members (13), with a limit interval formed between the two limit plates (5).

5. The blister unloading mechanism according to claim 4, characterized in that: The bottom side of the material support plate is connected to a limit lifting drive member (61), and the limit lifting drive member (61) is drivingly connected to a limit rod (62). The limit lifting drive member (61) can drive the limit rod (62) to pass through the material support plate upward or exit the material support plate downward, and the limit rod (62) is located at one side of the limit interval.

6. The blister unloading mechanism according to claim 4, characterized in that: The frame (1) is connected to a material pushing driving member (71), and the material pushing driving member (71) is drivingly connected to a material pushing member (72). The material pushing driving member (71) can drive the material pushing member (72) to enter or exit the limit interval from the other side of the limit interval.

7. The blister unloading mechanism according to claim 1, characterized in that: The material shifting assembly comprises a material shifting translation driving member (22), a material shifting seat and a material shifting lifting driving member (23); the material shifting translation driving member (22) is connected to the frame (1); the material shifting translation driving member (22) is drivingly connected to the material shifting seat; the material shifting translation driving member (22) can drive the material shifting seat to move in a direction approaching or away from the material blocking member (12); the material shifting lifting driving member (23) is connected to the material shifting seat; the material shifting lifting driving member (23) is drivingly connected to the material shifting member (21).

8. The blister unloading mechanism according to claim 1, characterized in that: The material unloading assembly comprises a material unloading translation drive member (32), a material unloading seat and a material unloading lifting drive member (33), wherein the material unloading translation drive member (32) is connected to the frame (1), the material unloading translation drive member (32) is drivingly connected to the material unloading seat, the material unloading translation drive member (32) can drive the material unloading seat to move in a direction approaching or away from the material unloading opening, the material unloading lifting drive member (33) is connected to the material unloading seat, and the material unloading lifting drive member (33) is drivingly connected to the material unloading member (31).

9. The blister unloading mechanism according to claim 1, characterized in that: A position on the top side of the transfer platform (11) away from the material discharge opening is connected to a limiting member (14).

10. Blister folding machine, characterized by: It comprises a blister unloading mechanism as claimed in any one of claims 1 to 9.