Manufacturing equipment and technology of suede paper for anus cleaning

By using a combination of press plate and cutter technology in suede paper production equipment, the problem of cutting opening offset caused by suede paper due to its fluffy is solved, achieving more accurate cutting and higher production efficiency.

CN119974078APending Publication Date: 2025-05-13刘宛平

Patent Information

Application Number
CN202510337548.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Due to its fluffy nature, the stacked suede paper will cause the cutting port to shift and reduce production quality when the downward-moving cutter comes into contact with it.

Method used

A suede paper production equipment including a cutting platform and a cutting mechanism is designed. The paper is flattened through a pressing plate, and then cut by a cutter. The structure is reset by an elastic reset member to ensure the accuracy of the cutting port.

Benefits of technology

Through this method, the paper size error after cutting can be significantly reduced, the shaping efficiency can be improved, the incidence of production accidents can be reduced, and the production efficiency can be improved.

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Abstract

The invention relates to the technical field of paper production, and discloses suede paper manufacturing equipment for anus cleaning and a process thereof, the suede paper manufacturing equipment comprises a cutting platform and a cutting mechanism, and the cutting mechanism is arranged on the upper side of the cutting platform; the cutting mechanism comprises a mounting frame, a connecting plate, a pressing plate, a cutter and a driving part; the connecting plate is movably mounted on the lower side of the mounting frame in the longitudinal direction; the pressing plate is movably installed on the lower side of the connecting plate in the longitudinal direction, and a first elastic reset piece is installed between the pressing plate and the connecting plate. The cutter is installed between the connecting plate and the pressing plate, a cutter handle of the cutter is fixed to the connecting plate, and a cutting edge of the cutter can penetrate through the pressing plate and move to the cutting platform. The driving part is used for driving the connecting plate to reciprocate longitudinally. By means of the technical scheme, the cutting opening of the paper is more accurate, the size error of the cut paper is reduced, meanwhile, the paper can be flattened, and the shaping efficiency of subsequent steps is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of paper production, and in particular to a velvet paper manufacturing device for anus cleaning and a process thereof. Background Art

[0002] Fluff paper is a special processed paper with a fluffy structure on the surface. It plays an important role in many fields, especially in the cleaning field. Fluff paper can be divided into wood pulp velvet paper, cotton pulp velvet paper, fiber velvet paper, etc. according to the raw materials; there are short velvet paper and long velvet paper according to the length of the surface velvet; there are also special varieties such as colored velvet paper, gold and silver velvet paper, etc. Different types are suitable for different scenarios, such as short velvet paper for book covers and packaging boxes, long velvet paper for decoration, colored and gold and silver velvet paper for high-end decoration and gift packaging, and multi-layer structure sanitary velvet paper.

[0003] The production process of making sanitary velvet paper includes five main steps: substrate preparation, wire drawing process, paper curing, paper cutting and paper shaping. Among them, the process of cutting paper is to cut the cured paper according to the predetermined size and specifications, and cut the large-sized and stacked multi-layer paper into a size that meets the actual use requirements. At present, the paper cutting equipment used in industrial production has a cutter that can move longitudinally. When the cutter moves downward, it can cut the stacked multi-layer paper, such as a paper cutting device for papermaking disclosed in application No. 202021050968.2.

[0004] However, the stacked velvet paper is usually fluffy. When the downwardly moving cutter contacts the velvet paper, the fluffy velvet paper will be squeezed, causing the cutting edge of part of the velvet paper to shift, making the size of the cut velvet paper differ greatly from the predetermined size, thereby reducing the production quality of the velvet paper. Summary of the invention

[0005] In view of this, the purpose of the present invention is to provide a velvet paper production device and process for anal cleaning, so as to solve the problem pointed out in the background technology that the stacked velvet paper is usually fluffy, and when the downward moving cutter contacts the velvet paper, the fluffy velvet paper will be squeezed, causing the cutting edge of part of the velvet paper to be offset, so that the size of the cut velvet paper is greatly different from the predetermined size.

[0006] The present invention solves the above technical problems by the following technical means:

[0007] In the first aspect, the present application provides a velvet paper making device for anal cleaning, comprising a cutting platform and a cutting mechanism, wherein the cutting mechanism is arranged on the upper side of the cutting platform; the cutting mechanism comprises a mounting frame, a connecting plate, a pressing plate, a cutter and a driving member; the connecting plate is movably mounted on the lower side of the mounting frame along the longitudinal direction; the pressing plate is movably mounted on the lower side of the connecting plate along the longitudinal direction, and a first elastic reset member is installed between the pressing plate and the connecting plate; the cutter is installed between the connecting plate and the pressing plate, the handle of the cutter is fixed on the connecting plate, and the blade of the cutter can penetrate the pressing plate and move to the cutting platform; the driving member is used to drive the connecting plate to reciprocate along the longitudinal direction.

[0008] In one embodiment, it also includes a feed conveyor, a discharge conveyor and a pushing mechanism; the tail end of the feed conveyor is connected to the feed side of the cutting platform, the head end of the discharge conveyor is connected to the discharge side of the cutting platform, and the feed conveyor and the discharge conveyor are arranged in a right angle structure; the pushing mechanism is installed on the side of the cutting platform away from the discharge conveyor, and is used to push the cut paper to the discharge conveyor.

[0009] In one embodiment, the pushing mechanism includes a mounting platform, a pushing member and a transmission mechanism; the mounting platform is arranged on a side of the cutting platform away from the discharge conveyor; the pushing member is slidably mounted on the mounting platform along the length direction of the discharge conveyor, and at least part of the structure of the pushing member can be moved to the cutting platform; the transmission mechanism is used to drive the pushing member to reciprocate.

[0010] In one embodiment, the pushing member includes a push plate and a push rod, the push plate is fixed to one end of the push rod close to the cutting platform, a sliding member is installed on the push rod, and a slide rail adapted to the sliding member is installed on the mounting platform.

[0011] In one embodiment, the transmission mechanism includes a winding wheel, a pull rope, a gear, a rack, a second elastic reset member, a driving plate and a transmission plate; the winding wheel is rotatably mounted on the mounting platform; the pull rope is at least partially wound around the winding wheel; the rack is mounted on the push rod and extends along the length direction of the push rod; the gear is mounted on the rotating shaft of the winding wheel and meshes with the rack; the second elastic reset member is mounted between the push rod and the mounting platform; one end of the driving plate is hinged to a side of the connecting plate close to the mounting platform; the transmission plate is movably mounted on the mounting platform along a track inclined to the longitudinal direction, the transmission plate can be transmission-connected to the driving plate, and the transmission plate is connected to the free end of the pull rope.

[0012] In one embodiment, a second bracket is installed on the mounting platform, a plurality of first guide rods are installed on the second bracket, the axes of the first guide rods are inclined to the longitudinal axis, and the transmission plate is movably mounted on the first guide rods.

[0013] In one embodiment, a third elastic reset member is installed between the driving plate and the connecting plate.

[0014] In one embodiment, a feed hole adapted for the cutter is provided on the cutting platform, and the blade of the cutter can enter the feed hole; a holding plate is movably installed in the feed hole on the cutting platform, and the upper side surface of the holding plate can be maintained at the same level as the plane of the cutting platform, and a fourth elastic reset member is installed between the holding plate and the cutting platform.

[0015] In one embodiment, a baffle for limiting the movement of paper is installed on the cutting platform, and a paper detection sensor is installed on the baffle.

[0016] In a second aspect, the present application provides a process for making velvet paper for anal cleaning, comprising: cutting stacked paper by the velvet paper making device described in any one of the first aspects.

[0017] Beneficial effects of this application:

[0018] 1. According to the technical solution of the present application, when cutting paper, the part of the paper to be cut is first transported to the cutting platform, and then the connecting plate is driven downward by the driving member. During the downward movement of the connecting plate, the pressing plate first contacts the paper, and the fluffy paper is flattened by the downward pressure of the pressing plate. Then the cutter contacts the paper, and the flattened paper is cut by the cutter. After the cutting is completed, the connecting plate, the pressing plate, the cutter and other structures are reset by the driving member and the first elastic reset member. Through such a setting, the cutting edge of the paper is more accurate, the size error of the paper after cutting is reduced, and the paper can also be flattened to improve the shaping efficiency of the subsequent steps.

[0019] 2. Through the technical solution of the present application, when the cutter moves downward to cut the paper, it can eventually enter the cutter feed hole, thereby ensuring that each piece of paper can be cut; in addition, since the upper side of the holding plate can be flush with the plane of the cutting platform, when the paper is fed into the cutting platform, the bottom layer of paper will not be rolled into the cutter feed hole.

[0020] 3. Through the technical solution of the present application, only one power source is needed for the driving part to continuously complete the two steps of cutting and pushing, which can not only reduce the occurrence rate of production accidents, but also improve production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a structural schematic diagram of a velvet paper making device in an embodiment of the present application;

[0022] Figure 2 is a partial cross-sectional view of a velvet paper making device in an embodiment of the present application;

[0023] Figure 3 This is an embodiment of the present application Figure 1 The enlarged schematic diagram of point A in the middle;

[0024] Figure 4 It is a structural schematic diagram of the pushing mechanism in the embodiment of the present application;

[0025] Among them, 100, base; 200, cutting platform; 210, holding plate; 220, baffle; 310, mounting frame; 320, connecting plate; 321, second guide rod; 330, pressure plate; 331, third guide rod; 332, first elastic reset member; 340, cutter; 350, driving member; 400, feeding conveyor; 500, discharging conveyor; 610, mounting table; 611, first bracket; 612, second bracket; 613, guide wheel; 614, first guide rod; 620, pushing member; 621, pushing plate; 622, pushing rod; 623, sliding member; 631, winding wheel; 632, pull rope; 633, gear; 634, rack; 635, second elastic reset member; 636, driving plate; 637, transmission plate. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0027] Embodiment 1

[0028] like Figure 1-Figure 4 As shown, the embodiment of the present application provides a velvet paper making device for anal cleaning, including a base 100, and a cutting platform 200 and a cutting mechanism installed on the base 100, the cutting mechanism is arranged on the upper side of the cutting platform 200, the cutting platform 200 has a smooth surface for accommodating paper, and there is a gap between the cutting mechanism and the cutting platform 200 for accommodating paper. It should be noted that the paper referred to in this embodiment is a stacked multi-layer paper.

[0029] The cutting mechanism includes a mounting frame 310, a connecting plate 320, a pressing plate 330, a cutter 340 and a driving member 350. The mounting frame 310 is fixed on the base 100 and is located directly above the cutting platform 200. The connecting plate 320 is movably mounted on the lower side of the mounting frame 310 in the longitudinal direction. Specifically, at least two second guide rods 321 are provided on the connecting plate 320. The axes of the second guide rods 321 are parallel to the longitudinal axis and extend upward. The second guide rods 321 penetrate the mounting frame 310, so that the connecting plate 320 is movably mounted on the lower side of the mounting frame 310 in the longitudinal direction. The pressing plate 330 is movably mounted on the lower side of the connecting plate 320 in the longitudinal direction. Specifically, at least two third guide rods 331 are provided on the pressing plate 330. The axes of the third guide rods 331 are parallel to the longitudinal axis and extend upward. The third guide rods 331 penetrate the connecting plate 320, so that the pressing plate 330 is movably mounted on the lower side of the connecting plate 320 in the longitudinal direction. A first elastic reset member 332 is installed between the pressure plate 330 and the connecting plate 320. The first elastic reset member 332 can be an elastic member such as a coil spring or a compression spring, preferably a coil spring. The coil spring can be mounted on the third guide rod 331 so that the pressure plate 330 can be reset after moving relative to the connecting plate 320.

[0030] The cutter 340 is arranged between the connecting plate 320 and the pressing plate 330. The handle of the cutter 340 is fixed on the connecting plate 320. The blade of the cutter 340 can penetrate the pressing plate 330 and move to the cutting platform 200. The pressing plate 330 is provided with a through hole for the cutter 340 to pass through. The driving member 350 is used to drive the connecting plate 320 to reciprocate in the longitudinal direction. The driving member 350 can be a structure such as a cylinder, an electric cylinder, an electric push rod 622, etc. The driving member 350 is fixed on the mounting frame 310. The output shaft of the driving member 350 faces the lower side and is fixed to the connecting plate 320.

[0031] Through the above technical solution, when cutting paper, the paper part to be cut is first transported to the cutting platform 200, and then the connecting plate 320 is driven to move downward by the driving member 350. During the downward movement of the connecting plate 320, the pressing plate 330 first contacts the paper, and the fluffy paper is flattened by the downward pressure of the pressing plate 330, and then the cutter 340 contacts the paper, and the flattened paper is cut by the cutter 340. After the cutting is completed, the connecting plate 320, the pressing plate 330, the cutter 340 and other structures are controlled to reset by the driving member 350 and the first elastic reset member 332. Through such a setting, the cutting edge of the paper is made more accurate, the size error of the paper after cutting is reduced, and the paper can also be flattened to improve the shaping efficiency of the subsequent steps.

[0032] In a possible embodiment, a feed hole adapted to the cutter 340 is provided on the cutting platform 200, and the blade of the cutter 340 can enter the feed hole. The cutting platform 200 is provided with a holding plate 210 movably mounted in the longitudinal direction in the feed hole, and the upper side of the holding plate 210 can be kept at the same level as the plane of the cutting platform 200. A fourth elastic reset member is installed between the holding plate 210 and the cutting platform 200, and the fourth elastic reset member can be an elastic member such as a coil spring, a compression spring, etc., preferably a coil spring. In the absence of external interference, the upper side of the holding plate 210 and the plane of the cutting platform 200 are always at the same level; when the holding plate 210 is driven by an external force, it can move axially; when the holding plate 210 is no longer driven by pressure, it can be reset under the elastic force of the fourth elastic reset member. Through such a setting, when the cutter 340 moves downward to cut the paper, it can eventually enter the feed hole, thereby ensuring that each piece of paper can be cut. In addition, since the upper side of the holding plate 210 can be flush with the plane of the cutting platform 200, when the paper is fed into the cutting platform 200, the bottom layer of paper will not be rolled into the feed hole.

[0033] In a possible embodiment, a baffle 220 for limiting the movement of paper is installed on the cutting platform 200, and a paper detection sensor for detecting paper is installed on the baffle 220. The paper detection sensor can be a pressure sensor, an infrared sensor, etc. The paper detection sensor and the driving member 350 are both electrically connected to the main controller of the velvet paper making equipment. When the paper detection sensor on the baffle 220 detects that the paper has reached a predetermined position, the signal is fed back to the main controller, and the main controller controls the paper to stop moving and controls the driving member 350 to work.

[0034] In a possible embodiment, it also includes a feed conveyor 400, a discharge conveyor 500 and a pushing mechanism. The feed conveyor 400, the discharge conveyor 500 and the pushing mechanism are all installed on the base 100. Among them, the feed conveyor 400 and the discharge conveyor 500 are both belt conveyors. The tail end of the feed conveyor 400 is connected to the feed side of the cutting platform 200, and the feed conveyor 400 sends part of the paper to the cutting platform 200. The head end of the discharge conveyor 500 is connected to the discharge side of the cutting platform 200, and the feed conveyor 400 and the discharge conveyor 500 are arranged at a right angle. The pushing mechanism is installed on the side of the cutting platform 200 away from the discharge conveyor 500, and is used to push the cut paper to the discharge conveyor 500, and the cut paper is sent to the next process through the discharge conveyor 500.

[0035] In a possible embodiment, the pushing mechanism includes a mounting platform 610, a pushing member 620 and a transmission mechanism. The mounting platform 610 is arranged on a side of the cutting platform 200 away from the discharge conveyor 500 and is fixed on the base 100. The pushing member 620 is slidably mounted on the mounting platform 610 along the length direction of the discharge conveyor 500, and at least part of the structure of the pushing member 620 can be moved to the cutting platform 200. The transmission mechanism is used to drive the pushing member 620 to move back and forth. Through such an arrangement, when the cutting mechanism completes cutting of the paper, the transmission mechanism drives the pushing member 620 to work, and the paper on the cutting platform 200 is pushed to the discharge conveyor 500.

[0036] In a possible embodiment, the push member 620 includes a push plate 621 and a push rod 622. The push plate 621 is fixed to one end of the push rod 622 close to the cutting platform 200. A sliding member 623 is installed on the bottom side of the push rod 622, and the cross section of the sliding member 623 is an inverted "T"-shaped structure. A slide rail adapted to the sliding member 623 is installed on the mounting platform 610, and the sliding member 623 is slidably installed on the slide rail. Through such an arrangement, the push member 620 can slide along the length direction of the discharge conveyor 500, so as to facilitate the pushing of the cut paper.

[0037] In other embodiments, the transmission mechanism may adopt structures such as a cylinder, an electric cylinder, an electric push rod 622, etc., to drive the push member 620 to move back and forth. However, the above structures must be designed with corresponding algorithms to cooperate with the drive member 350 to achieve the sequential working sequence of the two, that is, the sequence of cutting and pushing. If the working time difference between the two is designed to be short, accidents of material or structure collision may occur; if the working time difference between the two is designed to be long, the production efficiency will be seriously reduced.

[0038] In order to solve the above problem, in a possible embodiment, the transmission mechanism is connected between the driving member 350 and the pushing member 620, and only the driving member 350 is used as the only driving source to realize the two steps of cutting and pushing the paper, and control the sequence.

[0039] Specifically, the transmission mechanism includes a reel 631, a pull rope 632, a gear 633, a rack 634, a second elastic reset member 635, a drive plate 636 and a transmission plate 637. A first bracket 611 is fixed on the mounting platform 610, and the reel 631 is rotatably mounted on the first bracket 611 of the mounting platform 610 through a rotating shaft. The pull rope 632 is at least partially wound on the reel 631. The rack 634 is mounted on the push rod 622 and extends along the length direction of the push rod 622; the gear 633 is mounted on the rotating shaft of the reel 631, so that the reel 631 and the gear 633 can rotate synchronously, and the gear 633 and the rack 634 are meshed with each other. The second elastic return member 635 is installed between the push rod 622 and the mounting platform 610. The second elastic return member 635 can be an elastic member such as a coil spring, a compression spring, a tension spring, etc. In this embodiment, a tension spring is preferably used. One end of the tension spring is fixed on the end of the push rod 622 away from the push plate 621, and the other end is fixed on the mounting platform 610.

[0040] One end of the driving plate 636 is hinged to the side of the connecting plate 320 close to the mounting platform 610. The rotation range of the driving plate 636 is limited to 90 degrees, that is, the driving plate 636 can rotate within a range of 90 degrees. Specifically, the initial position of the driving plate 636 is flush with the horizontal plane, and the end away from the hinged portion is toward the side of the mounting platform 610; the maximum rotation position of the driving plate 636 is perpendicular to the horizontal plane, and the end away from the hinged portion is toward the upper side. The transmission plate 637 is movably mounted on the mounting platform 610 along a track inclined to the longitudinal direction, and the angle between the moving track of the transmission plate 637 and the longitudinal axis is designed to be an acute angle with a value of 5-10 degrees. Specifically, a second bracket 612 is mounted on the mounting platform 610, and at least two first guide rods 614 are mounted on the second bracket 612. The axis of the first guide rod 614 is inclined to the longitudinal axis. The transmission plate 637 is movably sleeved on the first guide rod 614, and the axis of the first guide rod 614 is the moving track of the transmission plate 637. The transmission plate 637 can be connected to the driving plate by transmission, and the transmission plate 637 is connected to the free end of the pull rope 632. In addition, a guide wheel 613 for tensioning the pull rope 632 is mounted on the second bracket 612. Under the action of the second elastic reset member 635, the push rod 622, the gear 633, the rack 634, the winding wheel 631 and the pull rope 632, the initial position of the transmission plate 637 is located at the lower end of the first guide rod 614.

[0041] Through the above technical solution, in the process of the driving member 350 driving the connecting plate 320 to move downward, the driving plate 636 can contact with the transmission plate 637, but the transmission plate 637 cannot move downward any further, and can only force the driving plate 636 to flip upward until the driving plate 636 and the transmission plate 637 are separated and restored to the initial position, and then the paper is flattened by the pressing plate 330, and the paper is cut by the cutter 340; in the process of the driving member 350 driving the connecting plate 320 to return upward, when the pressing plate 330 is separated from the paper, the driving plate 636 can contact with the transmission plate 637 and drive the transmission plate 637 to move upward along the axis of the first guide rod 614; in the process of the transmission plate 637 moving upward, the transmission plate 637 pulls The pull rope 632 drives the winding wheel 631 to rotate, and drives the gear 633 to rotate, and then drives the push rod 622 to move to the side close to the cutting platform 200 through the rack 634, so that the cut paper is pushed to the discharge conveyor 500 through the push plate 621; in addition, since the first guide rod 614 is inclined, during the upward movement of the transmission plate 637, it can also move toward the side away from the driving member 350 at the same time, and when the transmission plate 637 moves upward to a preset position, the transmission plate 637 can be separated from the driving plate 636; finally, under the elastic force of the second elastic reset member 635, the push member 620, the gear 633, the rack 634, the winding wheel 631, the pull rope 632 and the transmission plate 637 can be reset. Through such a setting, without setting up a separate power source, the two steps of cutting and pushing can be completed in a coherent manner, which can not only reduce the incidence of production accidents, but also improve production efficiency.

[0042] In a possible embodiment, a third elastic reset member is installed between the driving plate 636 and the connecting plate 320. The third elastic reset member can be an elastic member such as a coil spring, a compression spring, a torsion spring, etc. In this embodiment, a torsion spring is preferably used. The main body of the torsion spring can be sleeved on the rotating shaft of the driving plate 636, and the two torsion arms are respectively connected to the driving plate 636 and the connecting plate 320. This arrangement facilitates the smooth reset of the driving plate 636 after rotation.

[0043] Embodiment 2

[0044] The embodiment of the present application provides a process for making velvet paper for anal cleaning, the process comprising: cutting stacked paper by the velvet paper making device described in embodiment 1. Since the process adopts all the technical solutions of the above embodiments, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be described one by one here.

[0045] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the purpose and scope of the technical solutions of the present invention, which should be included in the scope of the claims of the present invention. The techniques, shapes, and structural parts not described in detail in the present invention are all known technologies.

Claims

1. A velvet paper making device for anal cleaning, characterized in that: The invention comprises a cutting platform (200) and a cutting mechanism, wherein the cutting mechanism is arranged on the upper side of the cutting platform (200); the cutting mechanism comprises a mounting frame (310), a connecting plate (320), a pressing plate (330), a cutting knife (340) and a driving member (350); the connecting plate (320) is movably mounted on the lower side of the mounting frame (310) in the longitudinal direction; the pressing plate (330) is movably mounted on the lower side of the connecting plate (320) in the longitudinal direction, and the pressing plate (330) is movably mounted on the lower side of the connecting plate (320) in the longitudinal direction. A first elastic reset member (332) is installed between the connecting plate (30) and the connecting plate (320); the cutter (340) is installed between the connecting plate (320) and the pressing plate (330), the handle of the cutter (340) is fixed on the connecting plate (320), the blade of the cutter (340) can penetrate the pressing plate (330) and move to the cutting platform (200); the driving member (350) is used to drive the connecting plate (320) to move back and forth in the longitudinal direction.

2. The velvet paper making device according to claim 1, characterized in that: The paper feeding machine also comprises an infeed conveyor (400), an outfeed conveyor (500) and a pushing mechanism; the tail end of the infeed conveyor (400) is connected to the infeed side of the cutting platform (200), the head end of the outfeed conveyor (500) is connected to the outfeed side of the cutting platform (200), and the infeed conveyor (400) and the outfeed conveyor (500) are arranged in a right-angle structure; the pushing mechanism is installed on a side of the cutting platform (200) away from the outfeed conveyor (500) and is used to push the cut paper to the outfeed conveyor (500).

3. The velvet paper making device according to claim 2, characterized in that: The pushing mechanism comprises a mounting platform (610), a pushing member (620) and a transmission mechanism; the mounting platform (610) is arranged on a side of the cutting platform (200) away from the discharge conveyor (500); the pushing member (620) is slidably mounted on the mounting platform (610) along the length direction of the discharge conveyor (500), and at least a part of the structure of the pushing member (620) can be moved to the cutting platform (200); the transmission mechanism is used to drive the pushing member (620) to move back and forth.

4. The velvet paper making device according to claim 3, characterized in that: The pushing member (620) comprises a pushing plate (621) and a pushing rod (622); the pushing plate (621) is fixed to one end of the pushing rod (622) close to the cutting platform (200); a sliding member (623) is installed on the pushing rod (622); and a sliding rail adapted to the sliding member (623) is installed on the mounting platform (610).

5. The velvet paper making device according to claim 4, characterized in that: The transmission mechanism comprises a winding wheel (631), a pull rope (632), a gear (633), a rack (634), a second elastic reset member (635), a driving plate (636) and a transmission plate (637); the winding wheel (631) is rotatably mounted on the mounting platform (610); the pull rope (632) is at least partially wound around the winding wheel (631); the rack (634) is mounted on the push rod (622) and extends along the length direction of the push rod (622); the gear (633) is mounted on the rotation of the winding wheel (631); The second elastic reset member (635) is installed between the push rod (622) and the mounting platform (610); one end of the drive plate (636) is hinged on the side of the connecting plate (320) close to the mounting platform (610); the transmission plate (637) is movably installed on the mounting platform (610) along a track inclined to the longitudinal direction, and the transmission plate (637) can be connected to the drive plate (636) in transmission, and the transmission plate (637) is connected to the free end of the pull rope (632).

6. The velvet paper making device according to claim 5, characterized in that: A second bracket (612) is mounted on the mounting platform (610), a plurality of first guide rods (614) are mounted on the second bracket (612), the axes of the first guide rods (614) are inclined to the longitudinal axis, and the transmission plate (637) is movably sleeved on the first guide rods (614).

7. The velvet paper making device according to claim 5, characterized in that: A third elastic reset member is installed between the driving plate (636) and the connecting plate (320).

8. The velvet paper making device according to any one of claims 1 to 7, characterized in that: The cutting platform (200) is provided with a feed hole adapted for the cutter (340), and the blade of the cutter (340) can enter the feed hole; the cutting platform (200) is movably equipped with a holding plate (210) in the feed hole, and the upper side surface of the holding plate (210) can be maintained at the same horizontal plane as the plane of the cutting platform (200), and a fourth elastic reset member is installed between the holding plate (210) and the cutting platform (200).

9. The velvet paper making device according to any one of claims 1 to 7, characterized in that: A baffle (220) for limiting the movement of paper is installed on the cutting platform (200), and a paper detection sensor is installed on the baffle (220).

10. A process for making velvet paper for anal cleaning, characterized in that: include: The stacked paper is cut by the velvet paper making device according to any one of claims 1 to 9.

Citation Information

Patent Citations

  • Paper cutting device for papermaking

    CN213320326U

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