Demoulding cup receiving debugging mechanism

By introducing a demolding and cup-collecting mechanism into the plastic product molding equipment, and using an air-blowing pipe to assist in demolding and collect plastic cups, the problem of unsuccessful demolding of plastic cups during the debugging process was solved, and the stability of equipment debugging and environmental cleanliness were achieved.

CN223520191UActive Publication Date: 2025-11-07RUIAN ZHUORUI MASCH CO LTD
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Patent Information

Application Number
CN202422914654.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-11-07
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

During the debugging of the plastic product molding equipment, the cup receiving structure did not participate in the operation, resulting in unsuccessful demolding of the plastic cup, causing a messy factory environment and affecting the normal operation of the equipment.

Method used

The system employs a demolding and cup-receiving mechanism, which includes an auxiliary demolding device and a cup-receiving device. It uses an air blowing pipe to assist in demolding the plastic cups and collects the demolded plastic cups through a cup-receiving hopper and a cup-storage bin.

Benefits of technology

This method enables stable demolding and centralized collection of plastic cups during the debugging process, preventing plastic cups from remaining on the flipping mold and ensuring smooth equipment debugging.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223520191U_ABST
Patent Text Reader

Abstract

The utility model relates to a debugging demoulding cup receiving mechanism which comprises an auxiliary demoulding device and a cup receiving device, the auxiliary demoulding device comprises air blowpipes, the air blowpipes are arranged on the left side and the right side of a plastic product output side of a plastic product forming machine, air outlets of the air blowpipes face the middle position, and the cup receiving device comprises a cup receiving hopper and a cup storage bin. A hopper body of the cup receiving hopper is provided with a material receiving opening and a discharging opening, the material receiving opening is located above the discharging opening, and the cup storage bin is connected to the lower portion of the discharging opening. According to the debugging demolding cup receiving mechanism, the auxiliary demolding device can be matched to assist in smoothly demolding a plastic product output from a plastic product forming machine (a turnover mold of the plastic product forming machine) in the debugging process, the problem that the plastic product is left on the turnover mold and cannot be smoothly demolded is solved, and subsequent operation of the turnover mold and debugging work are affected due to the fact that demolding cannot be smoothly performed; in addition, plastic products which are smoothly demolded in the debugging process are received by the cup receiving device for centralized treatment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the debugging demoulding cup connecting mechanism in plastic product making equipment. BACKGROUND

[0002] In the plastic product forming equipment, the plastic sheet is completed after heating in the forming machine (such as plastic cup, etc.) forming, wherein the forming machine (for example, CN118181721A plastic product forming machine, CN204431576U cam connecting rod opening and closing turnover mold mechanism) has a turnover mold, and in the equipment debugging process, the plastic cup completed in the turnover mold will be continuously demoulded and output, and the cup receiving structure (for example, CN209038515U product cup box arrangement stacking mechanism, CN209038582U product cup box turnover suction mechanism, CN202988131U a plastic cup forming machine cup feeding mechanism) is used to receive and arrange the demoulding output plastic cup.

[0003] However, in the debugging, the cup receiving structure does not participate in the work, and the cup receiving structure does not need to run, resulting in that the demoulding output plastic cup is everywhere in the debugging process, causing the whole factory environment to be messy. In addition, in the normal running process, the cup receiving structure can assist (such as sucking) the plastic cup to separate from the turnover mold when receiving the material, so that the plastic cup smoothly leaves the turnover mold and enters the next link; however, when the cup receiving structure does not participate in the work, the plastic cup cannot be stably separated from the turnover mold, causing the debugging process to be not smooth. Moreover, in the debugging, the plastic product forming equipment (such as forming machine, etc.) does not have all the functions and all the programs started, which also leads to the demoulding of the plastic cup not being smooth. UTILITY MODEL CONTENTS

[0004] In view of the technical problems existing in the background art, the technical problem solved by the utility model is to provide a debugging demoulding cup connecting mechanism for smoothly completing the demoulding of the plastic product on the turnover mold of the plastic product forming equipment.

[0005] In order to solve the above technical problems, the utility model adopts the following technical scheme: the debugging demoulding cup connecting mechanism comprises an auxiliary demoulding device and a cup receiving device, characterized in that: the auxiliary demoulding device comprises a blowing pipe, the blowing pipe is arranged on the left and right sides of the plastic product output side of the plastic product forming machine, the gas outlet of the blowing pipe faces the middle position, the cup receiving device comprises a cup receiving hopper and a cup storage bin, the hopper body of the cup receiving hopper has a material receiving port and a material outlet, the material receiving port is located above the material outlet, and the cup storage bin is connected below the material outlet.

[0006] The above technical solutions can be variously optimized or supplemented as follows.

[0007] The air blowing pipe is arranged on the left and right sides of the turnover mold of the plastic product forming machine, and the cup receiving hopper is connected to the plastic product output side of the turnover mold of the plastic product forming machine, and the material receiving port is lower than the plastic product output position of the turnover mold.

[0008] The air blowing pipe can be arranged on the left and right side wall plates of the plastic product forming machine.

[0009] In addition, the cup receiving device is arranged on the rack of the cup collecting structure, and the rack of the cup collecting structure is movably arranged on the ground rail for folding and unfolding the cup collecting structure and the plastic product forming machine.

[0010] Further optimization is that the cup receiving hopper is arranged below the turnover material suction mechanism of the cup collecting structure, and the turnover material suction mechanism is arranged on the rack of the cup collecting structure.

[0011] The cup receiving device further comprises a material discharging conveying belt, and the material discharging conveying belt is arranged at the bottom of the cup storage bin.

[0012] In addition, the cup receiving device further comprises a material discharging air blowing component, and the material discharging air blowing component is arranged on the left side of the cup storage bin.

[0013] The beneficial effects of the present application are that the debugging demolding and cup receiving mechanism can cooperate with the auxiliary demolding device to smoothly demold the plastic product output from the plastic product forming machine (its turnover mold) during the debugging process, avoid the problem that the plastic product cannot be smoothly demolded due to being left on the turnover mold, and affect the subsequent operation of the turnover mold and the debugging work. BRIEF DESCRIPTION OF DRAWINGS

[0014] The embodiments and examples of the present application will be described below in detail with reference to the accompanying drawings.

[0015] Figure 1 The present application is a structural schematic diagram.

[0016] Figure 2 The present application is Figure 1 The present application is an enlarged view.

[0017] Figure 3 The present application is a structural schematic diagram of the frame 32 of the plastic product forming machine and the rack of the cup collecting structure in a folded state.

[0018] Figure 4 The present application is a three-dimensional structural schematic diagram of the auxiliary demolding device on the plastic product output side of the plastic product forming machine.

[0019] Figure 5The utility model discloses a cup receiving structure and a cup receiving mechanism.

[0020] In the drawings:

[0021] 1, auxiliary demoulding device;10, blow pipe;11, air outlet;13, fixed seat;14, detachable clamp block;

[0022] 2, cup receiving device;20, cup receiving hopper;21, cup storage bin;22, discharge conveyor belt;23, discharge outlet;24, discharge blowing component;201, material receiving port;

[0023] 3, plastic product forming machine;30, turnover mould;31, wallboard;301, forming mould;32, frame of plastic product forming machine;

[0024] 4, cup receiving structure;40, rack;41, ground rail;42, turnover material suction mechanism. DETAILED DESCRIPTION

[0025] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model;Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments, and all other embodiments obtained by those skilled in the art without creative work based on the embodiments of the utility model belong to the protection scope of the utility model.

[0026] Referring to the drawings, the debugging demoulding cup receiving mechanism in the embodiments of the present embodiment includes auxiliary demoulding device 1 and cup receiving device 2. Among them, auxiliary demoulding device 1 includes blow pipe 10, and blow pipe 10 is arranged on the left and right sides of the plastic product output side of plastic product forming machine 3, and the air outlet 11 of blow pipe 10 faces the middle position, and the left and right blow pipes 10 can blow air to the plastic product output side of plastic product forming machine 3 in the middle position, cooperate with auxiliary demoulding, ensure that the plastic product (for example, plastic cup) is separated from the turnover mould 30 (provided with forming mould 301) of plastic product forming machine 3, avoid the problem that the plastic cup cannot be demoulded smoothly due to the too smooth bottom of the plastic cup or the card of burr. In addition, cup receiving device 2 includes cup receiving hopper 20 and cup storage bin 21, and the hopper body of cup receiving hopper 20 has material receiving port 201 and discharge port, and material receiving port 201 is located above discharge port, and plastic cup can enter from material receiving port 201 of cup receiving hopper 20 and exit from discharge port of cup receiving hopper 20, and cup storage bin 21 is connected below discharge port, and the plastic cup after cup receiving hopper 20 will fall into cup storage bin 21 and be stored.

[0027] The debugging demolding cup receiving mechanism can cooperate with the auxiliary demolding device 1 to smoothly demold the plastic product output from the plastic product forming machine 3 (its turnover mold 30) during debugging, avoid the problem that the plastic product cannot be smoothly demolded because it is left on the turnover mold 30, affect the subsequent operation of the turnover mold 30, and affect the debugging work. In addition, the plastic product that is smoothly demolded during debugging will be received, concentrated and processed by the cup receiving device 2.

[0028] The following optimizations or further explanations can be made based on the above embodiments respectively.

[0029] For example, the air blowing pipe 10 is located on the left and right sides of the turnover mold 30 of the plastic product forming machine 3, that is, the air blowing pipe 10 is located at the center position of the turnover mold 30 on the left and right sides. Air can be blown from the left and right sides to the middle direction to assist the plastic product to be smoothly demolded from the turnover mold 30, and the plastic product is relatively balanced, controllable and stable to fall into the cup receiving hopper 20 and is not easy to fly out. The cup receiving hopper 20 is connected to the plastic product output side of the turnover mold 30 of the plastic product forming machine 3, and the receiving port 201 is lower than the plastic product output position of the turnover mold 30, so that when the plastic product on the turnover mold 30 is demolded and output, it can smoothly enter the cup receiving hopper 20 from the receiving port 201.

[0030] For example, the air blowing pipe 10 is installed on the left and right side wall plates 31 of the plastic product forming machine 3, and the relative position of the air blowing pipe 10 to the plastic product forming machine 3 (and its turnover mold 30) remains unchanged to avoid position changes after the equipment is moved out of the factory. The air blowing pipe 10 is vertically arranged, and the air outlet hole 11 is directly machined on the air blowing pipe 10 by drilling according to the needs. The position and number of the air outlet hole 11 can be set according to the needs, for example, the air outlet hole 11 is arranged uniformly from top to bottom on the inner side of the air blowing pipe 10. During use, the gas source is connected to the air blowing pipe 10 through the pipe 15, and the gas can be blown out from the air outlet hole 11. In addition, the air blowing pipe 10 can be clamped by a clamping device. The clamping device includes a fixed seat 13 and a detachable clamping block 14. The detachable clamping block 14 and the fixed seat 13 are locked by screws. The relative position of the air outlet hole 11 can be adjusted by rotating or lifting the air blowing pipe 10 when the clamping device is tightened or loosened, so as to ensure smooth and stable blowing for auxiliary demolding.

[0031] The cup receiving device 2 is arranged on the rack 40 of the cup collecting structure 4 (a mature technology, such as CN209038515U product cup box arrangement stacking mechanism, CN209038582U product cup box turnover suction mechanism, CN202988131U plastic cup forming machine cup feeding mechanism, etc. The rack 40 of the cup collecting structure 4 is movably arranged on the ground rail 41, so that the entire cup collecting structure 4 can move on the ground rail 41, and the ground rail 41 is used for folding and separating the cup collecting structure 4 and the plastic product forming machine 3. Among them, the rack 40 of the cup collecting structure 4 is provided with a corresponding turnover suction mechanism 42 (not fully shown in the figure), which is a mature technology. In the present embodiment, the cup receiving hopper 20 is arranged below the turnover suction mechanism 42 of the cup collecting structure 4. When the plastic cup accidentally falls during the normal operation of the turnover suction mechanism 42, it can be caught and collected by the cup receiving hopper 20.

[0032] In addition, the plastic cups entering the cup storage bin 21 through the cup receiving hopper 20 can be discharged by a conveying belt or air blowing. For example, the cup receiving device 2 further comprises a discharge conveying belt 22; the discharge conveying belt 22 is arranged at the bottom of the cup storage bin 21, and the cup storage bin 21 has a discharge outlet 23 located at the output end of the discharge conveying belt 22. The plastic cups will fall onto the discharge conveying belt 22 and be output in the direction of the discharge outlet 23. The discharge conveying belt 22 can also be provided with a push plate to facilitate the conveying of plastic products. Alternatively, for example, the cup receiving device 2 further comprises a discharge air blowing component 24 (such as the air blowing output end of a blower, etc.); the discharge air blowing component 24 is arranged on the left side of the cup storage bin 21, and the right side of the cup storage bin 21 has a discharge outlet 23. The discharge air blowing component 24 is arranged opposite to the discharge outlet 23. The plastic cups will fall into the cup storage bin 21 and be blown out of the cup storage bin 21 through the discharge outlet 23 by the air blowing of the discharge air blowing component 24.

Claims

1. Debugging demoulding cup mechanism, comprising auxiliary demoulding device (1) and cup receiving device (2), characterized in that: auxiliary demoulding device (1) comprises air blowing pipe (10), air blowing pipe (10) is arranged on both sides of plastic product forming machine (3) on the output side of plastic product, air blowing pipe (10) gas outlet (11) is towards the middle position, cup receiving device (2) comprises cup receiving hopper (20) and cup storage bin (21), cup receiving hopper (20) has receiving port (201) and discharge port, receiving port (201) is located above the discharge port, cup storage bin (21) is connected below the discharge port.

2. The debugging demolding cupping mechanism of claim 1, wherein: Air blowing pipe (10) is located on both sides of the turnover mold (30) of the plastic product forming machine (3), the cup receiving hopper (20) is connected to the output side of the plastic product forming machine (3) on the turnover mold (30), the receiving port (201) is lower than the output position of the turnover mold (30).

3. The debugging demolding cupping mechanism of claim 1, wherein: Air blowing pipe (10) is installed on the left and right side walls (31) of the plastic product forming machine (3).

4. The debugging demolding cupping mechanism of claim 1, wherein: The cup receiving device (2) is arranged on the rack (40) of the cup collecting structure (4), and the rack (40) of the cup collecting structure (4) is movably arranged on the ground rail (41) for folding and separating the cup collecting structure (4) and the plastic product forming machine (3).

5. The debugging demolding cupping mechanism of claim 4, wherein: The cup receiving hopper (20) is arranged below the turnover suction mechanism (42) of the cup collecting structure (4), and the turnover suction mechanism is arranged on the rack (40) of the cup collecting structure (4).

6. The debugging demolding cupping mechanism of claim 1, wherein: The cup receiving device (2) further comprises a discharge conveying belt (22); The discharge conveying belt (22) is arranged at the bottom of the cup storage bin (21), the cup storage bin (21) has a discharge outlet (23), and the discharge outlet (23) is located at the output end of the discharge conveying belt.

7. The debugging demolding cupping mechanism of claim 1, wherein: The cup receiving device (2) further comprises a discharge air blowing component (24); The discharge air blowing component (24) is arranged on the left side of the cup storage bin (21), the right side of the cup storage bin (21) has a discharge outlet (23), and the discharge air blowing component (24) is arranged opposite to the discharge outlet (23).

Citation Information

Patent Citations

  • Plastic product forming machine

    CN118181721A

  • Cup delivery mechanism of plastic cup forming machine

    CN202988131U

  • Cam connection rod opening and closing overturning mold mechanism

    CN204431576U

  • Arranging and stacking mechanism for product cup boxes

    CN209038515U

  • Product cup box overturning and sucking mechanism

    CN209038582U