Non-stop sampling structure for paper collecting machine

By designing a non-stop sampling structure, paper stacking and sampling are achieved automatically using paper grippers and lifting mechanisms, solving the paper jam and downtime problems caused by sampling in existing paper receiving machines, and improving production efficiency and paper quality.

CN223722371UActive Publication Date: 2025-12-26SHANGHAI DRAGON PRINTING MACHINERY
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Patent Information

Application Number
CN202520037681.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-26
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

Existing paper receiving machines are prone to paper jams and shutdowns during sampling, requiring short-term shutdowns that affect production efficiency and quality.

Method used

A non-stop sampling structure was designed, including a paper-holding claw, a rotating mechanism, and a lifting mechanism. The paper-holding claw enables automatic paper stacking and sampling without affecting paper feeding, and the electromagnetic valve and cylinder control mechanism achieve seamless sampling.

Benefits of technology

It enables sampling to be completed without paper intervals during high-speed production, avoiding the risks of paper jams and machine downtime, ensuring that the paper processing effect is not affected, and reducing the defect rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a non-stop sampling structure for a paper collecting machine, which relates to the technical field of paper collecting machines and comprises right paper collecting wallpaper, left paper collecting wallpaper and a paper feeding and conveying roller. The paper feeding device further comprises a sliding rail fixing block, a movable sliding rail, a movable sliding block, a left fixing plate, a right fixing plate, a baffle rotating shaft, a rear baffle fixing rod, a rotating mechanism, a paper supporting claw, a lifting mechanism, a rear baffle, an electromagnetic valve and a button. According to the utility model, the sampling action can be completed in the time of multiple pieces of paper without utilizing paper intervals in high-speed production, so that the risks of paper jam, shutdown and the like caused by sampling are effectively avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a paper collecting machine technical field, concretely is a paper collecting machine with off -line sampling structure. BACKGROUND

[0002] The paper collecting machine is a kind of equipment that is automatically stacked after single paper surface processing.

[0003] As shown in Figure 1 And Figure 2 The paper collecting machine rear paper blocking structure in prior art is composed of paper collecting right wallboard (1), paper collecting left wallboard (2), paper feeding and conveying roller (3), sliding rail fixing block (4), movable sliding rail (5), movable sliding block (6), rear baffle fixing rod (7) and rear paper blocking plate (8). First, according to the length direction specification of paper, pull the rear baffle fixing rod (7) installed on the movable sliding block (6), and then drive the rear paper blocking plate (8) installed on the rear baffle fixing rod (7) to move along the movable sliding rail (5) to the rear of paper collecting, so that the rear paper blocking plate (8) can block the completely fallen paper; after the paper is treated on the surface by the previous process, the single paper conveying paper can be automatically stacked by the conveying of paper feeding and conveying roller (3) and the positioning of rear paper blocking plate (8). When sampling the paper in the stacked paper pile, the rear paper blocking plate (8) needs to be turned up, and then the uppermost paper in the paper pile is taken away for sampling observation.

[0004] However, the paper collecting machine rear paper blocking structure in prior art still has the following shortcomings:

[0005] 1. In the process of turning up the rear paper blocking plate (8), if the operation is not proper, it can easily lead to paper jamming and damage to the product (in normal production, the production speed is far more than 3600 sheets per hour);

[0006] 2. When sampling, the machine needs to be temporarily stopped, which increases the non-production auxiliary time, reduces the production efficiency of the machine, and easily affects the production quality.

[0007] Therefore, a paper collecting machine with off-line sampling structure is needed to solve the above problems. UTILITY MODEL CONTENT

[0008] The utility model embodiment aims at providing a paper collecting machine with off-line sampling structure to solve the problems in the above background.

[0009] To achieve the above object, the utility model provides the following technical scheme:

[0010] The utility model provides a structure of sampling without stopping of paper receiving machine, including paper receiving right wall paper, paper receiving left wall paper and paper feeding and conveying roller, one end of paper feeding and conveying roller is connected with paper receiving right wall paper rotationally, the other end is connected with paper receiving left wall paper rotationally, still include:

[0011] Slide rail fixed block is connected with paper receiving right wall paper and paper receiving left wall paper;

[0012] Movable slide rail is connected with slide rail fixed block;

[0013] Movable slide block is connected with movable slide rail slidingly;

[0014] Left fixed plate is connected with one side movable slide rail;

[0015] Right fixed plate is connected with the other side movable slide rail;

[0016] Baffle rotation shaft is connected with left fixed plate rotationally one end, is connected with right fixed plate rotationally the other end;

[0017] Rear baffle fixed link is connected with left fixed plate one end, is connected with right fixed plate the other end;

[0018] Rotating mechanism is connected with left fixed plate one end, is connected with baffle rotation shaft the other end;

[0019] Paper supporting claw is connected with baffle rotation shaft;

[0020] Lifting mechanism is connected with rotating mechanism one end;

[0021] Rear baffle is connected with lifting mechanism the other end;

[0022] Solenoid valve is connected with paper receiving left wall plate;

[0023] Button is connected with paper receiving left wall plate, and is connected with solenoid valve electrically.

[0024] As the further scheme of the utility model: the rotating mechanism includes:

[0025] Rotating gear is connected with baffle rotation shaft;

[0026] Movable rack is engaged with rotating gear;

[0027] Rack mounting slide rail is connected with left fixed plate, and is connected with movable rack slidingly;

[0028] Cylinder connecting pin is connected with movable rack;

[0029] I joint is connected with cylinder connecting pin;

[0030] Cylinder is connected with left fixed plate, and is connected with I joint, and the cylinder is electrically connected with solenoid valve;

[0031] The cylinder fixing pin is connected with the cylinder and the left fixing plate.

[0032] As a further scheme of the utility model, the lifting mechanism comprises:

[0033] The lifting movable rod is connected with the moving rack.

[0034] The lifting transition seat is connected with the back baffle and abuts against the lifting movable rod.

[0035] The baffle fixing seat is connected with the back baffle.

[0036] The sliding shaft is connected with the baffle fixing seat.

[0037] The linear bearing is slidingly connected with the sliding shaft.

[0038] The backstop fixing plate is connected with the linear bearing and the backstop fixing rod.

[0039] Compared with the prior art, the utility model has the beneficial effects that:

[0040] 1. In high-speed production, the sampling action can be completed without using paper spacing, and can be completed within multiple paper times, effectively avoiding the risk of paper jamming and shutdown caused by sampling;

[0041] 2. When sampling, the paper being processed in the previous process, such as paper being processed in the processes of glazing, code spraying, film covering, printing and drying, will not stop, and the effect of paper surface processing will not be affected, greatly reducing the rate of defective products and even waste products after paper processing. BRIEF DESCRIPTION OF DRAWINGS

[0042] Figure 1 It is a structural schematic view of the back paper stopping structure of the paper collecting machine in the prior art.

[0043] Figure 2 It is an A-A sectional view of Figure 1

[0044] Figure 3 It is a structural schematic view of the non-stop sampling structure of the paper collecting machine in the embodiment of the utility model in a production state.

[0045] Figure 4 It is an A-A sectional view of Figure 3

[0046] Figure 5 It is an enlarged schematic view of the structure at D in Figure 4

[0047] Figure 6 It is a B-B sectional view of Figure 3 ​​​​

[0048] Figure 7 is Figure 3 the C-C cross-sectional view in

[0049] Figure 8 is a structure schematic diagram of a non-stop sampling structure for a paper collecting machine in a sampling state in the embodiment of the utility model.

[0050] Figure 9 is Figure 8 the A-A cross-sectional view in

[0051] Figure 10 is Figure 9 the structure enlarged schematic view at E in

[0052] In the figure: 1, paper collecting right wall plate; 2, paper collecting left wall plate; 3, paper feeding and conveying roller; 4, sliding rail fixed block; 5, moving sliding rail; 6, moving sliding block; 7, left fixed plate; 8, baffle rotating shaft; 9, rear baffle fixed rod; 10, lifting movable rod; 11, rear baffle; 12, lifting transition seat; 13, baffle fixed seat; 14, sliding shaft; 15, linear bearing; 16, rear baffle fixed plate; 17, paper supporting claw; 18, rotating gear; 19, moving rack; 20, cylinder connecting pin; 21, rack mounting sliding rail; 22, I-shaped joint; 23, cylinder; 24, right fixed plate; 25, electromagnetic valve; 26, button; 27, cylinder fixed pin. DETAILED DESCRIPTION

[0053] The technical solutions 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, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0054] In the embodiments of the utility model, please refer to Figures 3 to 10 A non-stop sampling structure for a paper collecting machine, including paper collecting right wall paper 1, paper collecting left wall paper 2 and paper feeding and conveying roller 3, the paper feeding and conveying roller 3 one end is rotationally connected with paper collecting right wall paper 1, the other end is rotationally connected with paper collecting left wall paper 2, still include:

[0055] Sliding rail fixed block 4 is connected with paper collecting right wall paper 1 and paper collecting left wall paper 2;

[0056] Moving sliding rail 5 is connected with sliding rail fixed block 4;

[0057] Moving sliding block 6 is slidably connected with moving sliding rail 5;

[0058] Left fixed plate 7 is connected with one side moving sliding rail 5;

[0059] Right fixed plate 24, with the other side of the moving slide rail 5 is connected;

[0060] Baffle rotating shaft 8, one end is rotatably connected with the left fixed plate 7, and the other end is rotatably connected with the right fixed plate 24;

[0061] The rear stop fixed rod 9 is connected with the left fixed plate 7 at one end and connected with the right fixed plate 24 at the other end;

[0062] The rotating mechanism is connected with the left fixed plate 7 at one end and connected with the baffle rotating shaft 8 at the other end;

[0063] The paper supporting claw 17 is connected with the baffle rotating shaft 8;

[0064] The lifting mechanism is connected with the rotating mechanism at one end;

[0065] The rear baffle 11 is connected with the other end of the lifting mechanism;

[0066] The electromagnetic valve 25 is connected with the paper collecting left wall plate 2;

[0067] The button 26 is connected with the paper collecting left wall plate 2 and is electrically connected with the electromagnetic valve 25.

[0068] In the production state, the paper supporting claw 17 is Figure 7 The paper supporting claw 17 is far away from the paper, the moving slider 6 is moved transversely, the rear baffle 11 is moved transversely, the rear baffle 11 is abutted with the paper, the paper is limited and abutted, the paper transported by the paper feeding and transporting roller 3 can be automatically stacked together, when sampling is needed, the rotating mechanism drives the baffle rotating shaft 8 to rotate, the baffle rotating shaft 8 drives the paper supporting claw 17 to rotate, at this time, the paper supporting claw 17 is in Figure 10 The state, at the same time, the rotating mechanism drives the lifting mechanism to move, the lifting mechanism drives the rear baffle 11 to move upwards, at this time, the paper keeps coming upwards, but is blocked by the paper supporting claw 17 and does not affect manual extraction of the paper below, after sampling is finished, the button 26 is pressed to control the electromagnetic valve 25, the rotating mechanism is controlled to move reversely, so that the paper supporting claw 17 returns to the production state as shown in Figure 7 Due to the rotation of the paper supporting claw 17, the paper on the paper supporting claw 17 is automatically dropped, and one-time sampling without shutdown is completed.

[0069] In the example, the moving slider 6 is provided with a limiting bolt, and the position of the moving slider 6 is fixed.

[0070] As an embodiment of the utility model, please refer to Figures 3 to 6 、 Figures 8 to 10 The rotating mechanism comprises:

[0071] The rotating gear 18 is connected with the baffle rotating shaft 8;

[0072] The moving rack 19 is engaged with the rotating gear 18.

[0073] The rack mounting slide rail 21 is connected with the left fixed plate 7 and is in sliding connection with the moving rack 19.

[0074] The cylinder connecting pin 20 is connected with the moving rack 19.

[0075] The I-shaped joint 22 is connected with the cylinder connecting pin 20.

[0076] The cylinder 23 is connected with the left fixed plate 7 and is connected with the I-shaped joint 22, and the cylinder 23 is electrically connected with the electromagnetic valve 25.

[0077] The cylinder fixing pin 27 is connected with the cylinder 23 and is connected with the left fixed plate 7.

[0078] The cylinder 23 drives the moving rack 19 to move longitudinally along the rack mounting slide rail 21 through the I-shaped joint 22, the moving rack 19 drives the rotating gear 18 to rotate, the rotating gear 18 drives the baffle rotating shaft 8 to rotate, and the baffle rotating shaft 8 drives the paper supporting claw 17 to rotate.

[0079] As an embodiment of the utility model, referring to Figures 3 to 10 , the lifting mechanism comprises:

[0080] The lifting movable rod 10 is connected with the moving rack 19.

[0081] The lifting transition seat 12 is connected with the rear baffle 11 and is in abutment with the lifting movable rod 10.

[0082] The baffle fixing seat 13 is connected with the rear baffle 11.

[0083] The slide shaft 14 is connected with the baffle fixing seat 13.

[0084] The linear bearing 15 is in sliding connection with the slide shaft 14.

[0085] The rear baffle fixing plate 16 is connected with the linear bearing 15 and is connected with the rear baffle fixing rod 9.

[0086] The moving rack 19 drives the lifting movable rod 10 to move longitudinally, the lifting movable rod 10 drives the lifting transition seat 12 to move, the lifting transition seat 12 drives the rear baffle 11 to move longitudinally, the rear baffle 11 drives the baffle fixing seat 13 to move, the baffle fixing seat 13 drives the slide shaft 14 to move, and the linear bearing 15 ensures the rear baffle 11 to move longitudinally stably.

[0087] The working principle of the utility model is as follows: in the production state, the paper supporting claw 17 is Figure 7As shown in the state, the paper supporting claw 17 is away from the paper, the moving slider 6 is moved horizontally, the rear baffle 11 is moved horizontally, the rear baffle 11 is in abutment with the paper, the paper is limited and abutted, the paper transported by the paper feeding and transporting roller 3 can be automatically stacked together, when sampling is needed, the paper tail of the uppermost paper is manually lifted first, then the button 26 is pressed to control the electromagnetic valve 25, the pneumatic cylinder 23 is retracted, the pneumatic cylinder 23 drives the moving rack 19 to move longitudinally along the rack mounting slide rail 21 through the I-shaped joint 22, the moving rack 19 drives the rotating gear 18 to rotate, the rotating gear 18 drives the baffle rotating shaft 8 to rotate, the baffle rotating shaft 8 drives the paper supporting claw 17 to rotate to Figure 10 As shown in the state, the paper supporting claw 17 is away from the paper, the moving slider 6 is moved horizontally, the rear baffle 11 is moved horizontally, the rear baffle 11 is in abutment with the paper, the paper is limited and abutted, the paper transported by the paper feeding and transporting roller 3 can be automatically stacked together, when sampling is needed, the paper tail of the uppermost paper is manually lifted first, then the button 26 is pressed to control the electromagnetic valve 25, the pneumatic cylinder 23 is retracted, the pneumatic cylinder 23 drives the moving rack 19 to move longitudinally along the rack mounting slide rail 21 through the I-shaped joint 22, the moving rack 19 drives the rotating gear 18 to rotate, the rotating gear 18 drives the baffle rotating shaft 8 to rotate, the baffle rotating shaft 8 drives the paper supporting claw 17 to rotate to Figure 7 As shown in the state, the paper supporting claw 17 is away from the paper, the moving slider 6 is moved horizontally, the rear baffle 11 is moved horizontally, the rear baffle 11 is in abutment with the paper, the paper is limited and abutted, the paper transported by the paper feeding and transporting roller 3 can be automatically stacked together, when sampling is needed, the paper tail of the uppermost paper is manually lifted first, then the button 26 is pressed to control the electromagnetic valve 25, the pneumatic cylinder 23 is retracted, the pneumatic cylinder 23 drives the moving rack 19 to move longitudinally along the rack mounting slide rail 21 through the I-shaped joint 22, the moving rack 19 drives the rotating gear 18 to rotate, the rotating gear 18 drives the baffle rotating shaft 8 to rotate, the baffle rotating shaft 8 drives the paper supporting claw 17 to rotate to

[0088] For those skilled in the art, it is obvious that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0089] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the specification is described in this way only for the sake of clarity, those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A non-stop sampling structure for a paper reel machine, comprising a right paper reel wall, a left paper reel wall and a paper feeding and conveying roller, one end of the paper feeding and conveying roller being rotatably connected with the right paper reel wall, and the other end being rotatably connected with the left paper reel wall, characterized in that, Also include: Slide rail fixed block, with the paper right wall and paper left wall connection; Mobile slide rail, with the slide rail fixed block connection; Mobile sliding block, with the mobile slide rail sliding connection; Left fixed plate, with one side of the mobile slide rail connection; Right fixed plate, with the other side of the mobile slide rail connection; Baffle rotation axis, one end with the left fixed plate rotation connection, the other end with the right fixed plate rotation connection; Backstop fixed rod, one end with the left fixed plate connection, the other end with the right fixed plate connection; Rotary mechanism, one end with the left fixed plate connection, the other end with the baffle rotation axis connection; Paper supporting claw, with the baffle rotation axis connection; Lifting mechanism, one end with the rotary mechanism connection; Back baffle, with the lifting mechanism the other end connection; Solenoid valve, with the paper left wall plate connection; Button, with the paper left wall plate connection, and with the solenoid valve electrical connection.

2. The non-stop sampling structure for a paper reel-up according to claim 1, wherein The rotary mechanism includes: Rotary gear, with the baffle rotation axis connection; Mobile rack, with the rotary gear meshing; Rack installation slide rail, with the left fixed plate connection, and with the mobile rack sliding connection; Cylinder connecting pin, with the mobile rack connection; I type joint, with the cylinder connecting pin connection; Cylinder, with the left fixed plate connection, and with the I type joint connection, the cylinder with solenoid valve electrical connection; Cylinder fixed pin, with the cylinder connection, and with the left fixed plate connection.

3. The non-stop sampling structure for a paper reel-up as recited in claim 2, wherein The lifting mechanism includes: Lifting movable rod, with the mobile rack connection; Lift transition seat, with the back baffle connection, and with the lifting movable rod abutment; Baffle fixed seat, with the back baffle connection; Slide shaft, with the baffle fixed seat connection; Linear bearing, with the slide shaft sliding connection; Backstop fixed plate, with the linear bearing connection, and with the backstop fixed rod connection.