CN113459596A - Three-fold net paper machine production line - Google Patents

Three-fold net paper machine production line Download PDF

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Publication number
CN113459596A
CN113459596A CN202110880829.5A CN202110880829A CN113459596A CN 113459596 A CN113459596 A CN 113459596A CN 202110880829 A CN202110880829 A CN 202110880829A CN 113459596 A CN113459596 A CN 113459596A
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China
Prior art keywords
groups
hole
production line
net paper
carding
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Granted
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CN202110880829.5A
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Chinese (zh)
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CN113459596B (en
Inventor
卿贵庭
吴小伟
夏彬
叶景桥
蒋成
周建新
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Zhejiang Yishu Paper Group Co ltd
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Zhejiang Tianyao Paper Co ltd
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Publication of CN113459596A publication Critical patent/CN113459596A/en
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Publication of CN113459596B publication Critical patent/CN113459596B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31FMECHANICAL WORKING OR DEFORMATION OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31F1/00Mechanical deformation without removing material, e.g. in combination with laminating
    • B31F1/07Embossing, i.e. producing impressions formed by locally deep-drawing, e.g. using rolls provided with complementary profiles

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Folding Of Thin Sheet-Like Materials, Special Discharging Devices, And Others (AREA)

Abstract

The invention discloses a three-fold net paper machine production line, relates to the technical field of net paper production, and solves the problem that net paper conveying is realized by repeatedly opening and closing a reverse power part through a control device during conveying, and the three-fold net paper machine production line does not have a convenient and fast function of continuous conveying. A three-fold net paper machine production line comprises a base, wherein a middle hole is formed in the middle of the base, and a piston cylinder is fixedly arranged on the front side inside the middle hole; two groups of side frame plates are fixedly arranged on two sides of the top of the base, and two groups of squeeze rollers are rotatably arranged on the middle front sides of the side frame plates; fixed being provided with the perforation stake between two sets of side frame plates, through being provided with bar ring gear and driven shaft, for the production line provides continuous automatic reciprocating motion conveying mechanism, realized automatic the transport through mechanical structure cooperation.

Description

Three-fold net paper machine production line
Technical Field
The invention relates to the technical field of mesh paper production, in particular to a three-fold mesh paper machine production line.
Background
The main body is composed of three layers, and the main body is formed by compounding three layers, and is extruded by a compression roller to form a layer, and then a cutter is used for cutting holes, so that the paper is convenient to cut manually, and a part of the paper is selected for use.
Through retrieval, for example, patent No. CN204020215U discloses an anilox roller printing device of a pagoda paper tube machine, which comprises a frame, a printing cylinder, an anilox roller and an ink applying roller; the printing cylinder, the reticulate pattern roller and the upper ink rubber roller are sequentially abutted and pivoted on the rack; one end of the printing cylinder is provided with a printing rubber diaphragm; ink absorption holes are uniformly distributed on the reticulate pattern roller; the printing cylinder, the reticulate pattern roller and the ink feeding rubber roller are respectively provided with a transmission gear, and the three transmission gears are meshed in sequence; one end of the printing cylinder is provided with a transmission shaft head. The anilox roller printing device of the paper cone machine has simple structure, and can knurling the head of the paper tube by arranging the printing rubber film on the printing cylinder, thereby improving the definition of the head of the paper tube; meanwhile, the ink is printed through the reticulate pattern roller, so that the ink is conveniently printed, and the quality of subsequent products is improved.
For another example, patent No. CN210854633U discloses a paper aligning device for printing paper based on screen printing processing, which comprises a base, four corners of the upper surface of the base are all vertically connected with sliding shafts, the outer surface of the sliding shafts is horizontally sleeved with a sliding plate, the outer surface of the sliding shafts is sleeved with springs, the upper ends of the springs are fixedly connected with the lower surface of the sliding plate, and the lower ends of the springs are fixedly connected with the upper surface of the base. The utility model relates to a technical field is collected to screen printing product, this neat paper ware of printing paper for processing based on screen printing, install through the front surface embedding of protruding piece from the driving wheel, from the one end fixedly connected with lead screw of driving wheel, the other end of lead screw rotates with the front surface of another protruding piece to be connected, when printing, can arrange in order printing paper automatically, it is neat to print the paper sign indicating number, need not the manual work and operate, artificial intensity of labour has been reduced, the productivity of stamp has been improved simultaneously, and the cost is saved.
Similar to the above-mentioned application, the following disadvantages also exist:
firstly, the currently used net paper machine has a single function and mainly realizes operations such as printing, and the net paper conveying is realized by repeatedly switching on and off a reverse power part through a control device during conveying, so that the net paper machine does not have a convenient and fast function of continuous conveying; secondly, the general net paper machine can not form a complete production line and does not have the structure and the function of quantitatively cutting the tooth holes through the automatic limited position of a mechanical structure in the moving process; and thirdly, the automatic auxiliary cleaning function according to the moving process of the net paper is not realized.
Thus, the existing requirements are not met, and a three-ply net paper machine production line is provided for the same.
Disclosure of Invention
Problem (A)
The invention aims to provide a three-fold net paper machine production line, which solves the problems that the prior net paper machine proposed in the background technology has single function, mainly realizes printing and other operations, needs to repeatedly switch a reverse power part through a control device during conveying to realize net paper conveying, does not have the convenient and fast function of continuous conveying, cannot form a complete production line, does not have the structure and the function of quantitatively cutting out tooth holes through automatically limiting positions of a mechanical structure in the moving process, and does not have the function of automatically performing auxiliary cleaning according to the moving process of the net paper.
(II) technical scheme
In order to achieve the purpose, the invention provides the following technical scheme: a three-fold net paper machine production line comprises a base, wherein a middle hole is formed in the middle of the base, and a piston cylinder is fixedly arranged on the front side inside the middle hole; two groups of side frame plates are fixedly arranged on two sides of the top of the base, and two groups of squeeze rollers are rotatably arranged on the middle front sides of the side frame plates; a tooth hole pile is fixedly arranged between the two groups of side frame plates;
the carding frame is fixedly arranged on the front side of the top of the side frame plate;
the tooth hole assembly is fixedly arranged at the top of the side frame plate and is positioned at the rear side of the extrusion roller;
the guide plate pieces are arranged in four groups, the four groups of guide plate pieces are fixedly arranged on the top of the side frame plate in two rows in a fitting manner, and the front guide plate pieces are fitted with the tooth hole assemblies;
the bottom of roof, the bottom of roof is provided with the stamp board.
Preferably, the carding frame further comprises:
the carding machine comprises a carding frame, a carding roller, a roller feeding mechanism and a roller discharging mechanism, wherein four groups of carding rollers are rotatably arranged on the rear side in the carding frame;
and two groups of air rows are fixedly arranged on the front side in the carding frame and are aligned with the two groups of middle carding rollers.
Preferably, the perforation assembly further comprises:
the inner side of the toothed hole assembly is vertically and slidably provided with a toothed hole cutter through a guide rail, and the bottom of the toothed hole cutter is of a wedge-shaped block tooth row structure;
two groups of connecting rods are rotatably arranged on two sides of the top of the tooth hole cutter through hinges, a fixed rod is rotatably arranged at the other end of each connecting rod through hinges, and the rear end of each connecting rod is lower than the front end of each connecting rod; the perforation cutter is vertically aligned with the perforation pile.
Preferably, the guide plate member further includes:
the inner side of the guide plate is provided with an inner sliding hole;
the middle of the inner sliding hole is fixedly provided with a bar-shaped gear ring, and the middle of the bar-shaped gear ring is provided with a bar-shaped hole.
Preferably, the top plate further comprises:
the main body of the top plate is of a turning structure with a high convex middle part, and the middle of the top part of the top plate is fixedly provided with the motor;
the middle of the bottom of the top plate is rotatably provided with a transmission shaft through a shaft bracket, and the transmission shaft is in transmission connection with a bevel gear arranged on a motor;
two driven shafts are transversely and rotatably arranged on two sides of the top plate, and gears are arranged at two ends of each driven shaft and meshed with the strip-shaped gear rings;
the limiting and guiding piece is rotatably arranged outside the two ends of the driven shaft, a cylindrical structure is integrally arranged on one side of the limiting and guiding piece, and the cylindrical structure is arranged in a strip-shaped hole in the middle of the strip-shaped gear ring in a sliding mode.
Preferably, when the driven shaft is located at the foremost end or the rearmost end of the strip-shaped gear ring, the cylindrical structure of the guide limiting piece is attached to the foremost end or the rearmost end of the strip-shaped hole in the middle of the strip-shaped gear ring.
Preferably, the printing plate further comprises:
the top of the printing plate is fixedly provided with four groups of spring rods, and the spring rods are sleeved with springs and penetrate through the top plate to be fixedly provided with retaining pieces.
Preferably, the top of base is fixed to be provided with the lower bolster through the guide rail slip, and the lower bolster still including:
the aligning rod is fixedly arranged on two sides of the top of the lower template and penetrates through the top plate to be fixedly connected with the bottom surface of the fixing rod.
Preferably, the lower template further comprises:
the piston rod, the fixed two sets of lug structures that are provided with of bottom front side of lower bolster, the fixed piston rod that is provided with of lug structure front side, the piston rod passes the fixed piston board that is provided with in rear side of piston cylinder.
Preferably, the piston cylinder further comprises:
the rear side of the piston cylinder is connected with two groups of one-way valves, one group of one-way valves are provided with pipelines matched with the three-way component to be communicated with the two groups of gas outlets, and the rear end of the other group of one-way valves is connected with a filter cover.
(III) advantageous effects
The invention provides a three-fold mesh paper machine production line, which is provided with a strip-shaped toothed ring and driven shafts, provides a continuous automatic reciprocating motion conveying mechanism for the production line, realizes automatic conveying through mechanical structure matching, a motor drives a transmission shaft to rotate through a bevel gear, the transmission shaft drives two groups of driven shafts to rotate in the same direction through the bevel gear, further the driven shafts realize movement through the matching of two side gears and the strip-shaped toothed ring, and a limiting guide piece can ensure that the two side gears of the driven shafts are attached to the strip-shaped toothed ring, so that the continuous reciprocating motion is completed, the working efficiency is improved, and the speed is balanced.
Secondly, the setting of perforation sword provides structure and the function through the automatic limit position ration cutting-out perforation of mechanical structure for production line, drives the counterpoint pole and moves backward in the in-process that the roof moved backward, and the counterpoint pole pulling connecting rod moves backward simultaneously, moves the perforation sword downwards through slider mechanism, realizes automatic ration trompil, and the ration is even, is favorable to automated production.
Moreover, the setting of piston cylinder and gas row provides the automatic function of assisting the clearance of carrying on according to the removal process of net paper for production line, can also stimulate the piston rod at the in-process that the roof moved backward and remove, passes the check valve with the air in the piston rod and passes through in the pipeline input gas row, further discharges from gas row both sides, clears up the binding face of individual layer stock form, avoids adding man-hour clamp and establishes large-scale impurity, otherwise the inside automatic charging of the in-process piston cylinder that the roof moved forward.
Drawings
FIG. 1 is a schematic perspective rear view structure in an embodiment of the present invention;
FIG. 2 is a schematic perspective front view of an embodiment of the present invention;
FIG. 3 is a schematic side view of an embodiment of the present invention;
FIG. 4 is a partial perspective view of an embodiment of the present invention;
FIG. 5 is a schematic view of a partially disassembled structure in an embodiment of the present invention;
FIG. 6 is a schematic diagram of a transmission configuration according to an embodiment of the present invention;
FIG. 7 is a schematic side view of the top plate according to the embodiment of the present invention;
FIG. 8 is an enlarged partial structural view of part A in the embodiment of the present invention;
in fig. 1 to 8, the correspondence between the part names or lines and the reference numbers is:
1. a base; 101. a middle hole; 102. a side frame plate; 103. a squeeze roll; 104. a tooth hole pile; 2. a carding frame; 201. a carding roller; 202. air exhaust; 3. a perforation assembly; 301. a tooth hole cutter; 302. a connecting rod; 303. fixing the rod; 4. a guide plate member; 401. an inner slide hole; 402. a bar-shaped toothed ring; 5. a top plate; 501. a motor; 502. a drive shaft; 503. a driven shaft; 504. a guide limiter; 6. printing plate; 601. a spring lever; 7. a lower template; 701. an alignment rod; 702. a piston rod; 8. a piston cylinder; 801. a one-way valve.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Referring to fig. 1 to 8, an embodiment of the present invention includes: a three-ply net paper machine production line comprises a base 1, wherein a middle hole 101 is formed in the middle of the base 1, and a piston cylinder 8 is fixedly arranged on the front side inside the middle hole 101; two groups of side frame plates 102 are fixedly arranged on two sides of the top of the base 1, and two groups of squeeze rollers 103 are rotatably arranged on the middle front sides of the side frame plates 102; a tooth hole pile 104 is fixedly arranged between the two groups of side frame plates 102; the carding frame 2 is fixedly arranged on the front side of the top of the side frame plate 102; the carding frame 2 further comprises: carding rollers 201, four groups of carding rollers 201 are rotatably arranged at the rear side in the carding frame 2; two groups of air rows 202 are fixedly arranged at the front side inside the carding frame 2, and the two groups of air rows 202 are aligned with the middle two groups of carding rollers 201; the tooth hole assembly 3 is fixedly arranged at the top of the side frame plate 102, and the tooth hole assembly 3 is positioned at the rear side of the extrusion roller 103; the perforation component 3 also comprises: the inner side of the toothed hole component 3 is vertically provided with the toothed hole cutter 301 in a sliding manner through a guide rail, and the bottom of the toothed hole cutter 301 is of a wedge-shaped block tooth row structure; two groups of connecting rods 302 are rotatably arranged on two sides of the top of the toothed cutter 301 through hinged connection, the other end of each connecting rod 302 is rotatably provided with a fixing rod 303 through hinged connection, and the rear end of each connecting rod 302 is lower than the front end of each connecting rod 302; the perforation knife 301 is vertically aligned with the perforation pile 104; the guide plate pieces 4 are arranged in four groups, the four groups of guide plate pieces 4 are fixedly arranged on the top of the side frame plate 102 in two rows in a fitting manner, and the front guide plate pieces 4 are fitted with the tooth hole assemblies 3; the guide plate member 4 further includes: an inner sliding hole 401, wherein the inner side of the guide plate 4 is provided with the inner sliding hole 401; a strip-shaped toothed ring 402 is fixedly arranged in the middle of the inner sliding hole 401, and a strip-shaped hole is formed in the middle of the strip-shaped toothed ring 402; the bottom of the top plate 5 is provided with a printing plate 6; the top plate 5 further includes: the motor 501, the body of the top plate 5 is a turning structure with a convex middle part, and the motor 501 is fixedly arranged in the middle of the top part of the top plate 5; the transmission shaft 502 is rotatably arranged in the middle of the bottom of the top plate 5 through a shaft bracket, and the transmission shaft 502 is in transmission connection with the motor 501 through a bevel gear; two groups of driven shafts 503 are transversely and rotatably arranged on two sides of the top plate 5, gears are arranged at two ends of each driven shaft 503 and are meshed with the strip-shaped gear ring 402, and when the driven shafts 503 are positioned at the foremost end or the rearmost end of the strip-shaped gear ring 402, the cylindrical structure of the limiting guide 504 is attached to the foremost end or the rearmost end of the strip-shaped hole in the middle of the strip-shaped gear ring 402; the limiting guide piece 504 is rotatably arranged outside the two ends of the driven shaft 503, one side of the limiting guide piece 504 is integrally provided with a cylindrical structure, and the cylindrical structure is arranged in a strip-shaped hole in the middle of the strip-shaped gear ring 402 in a sliding mode; the printing plate 6 also comprises: the spring rods 601, four groups of spring rods 601 are fixedly arranged at the top of the printing plate 6, and the spring rods 601 are sleeved with springs and fixedly provided with blocking pieces through the top plate 5; the top of base 1 is fixed to be provided with lower bolster 7 through the guide rail slip, and lower bolster 7 is still including: the alignment rod 701 and the alignment rods 701 are fixedly arranged on two sides of the top of the lower template 7, and the alignment rods 701 penetrate through the top plate 5 to be fixedly connected with the bottom surface of the fixing rod 303.
Wherein, lower bolster 7 is still including: the piston rod 702 and the front side of the bottom of the lower template 7 are fixedly provided with two sets of bump structures, the front side of each bump structure is fixedly provided with the piston rod 702, and the piston rod 702 penetrates through the rear side of the piston cylinder 8 and is fixedly provided with the piston plate.
Wherein, piston cylinder 8 still includes: the rear side of the one-way valve 801 and the piston cylinder 8 is provided with two sets of one-way valves 801, one set of one-way valves 801 is provided with a pipeline matched with a three-way piece to be communicated with the two sets of gas discharge pipes 202, and the rear end of the other set of one-way valves 801 is provided with a filter cover in a connected mode.
Referring to fig. 3, the air delivery function can be provided by arranging the piston rod 702 and the piston cylinder 8, so that the newly-inserted net paper can be cleaned in the process of moving the net paper.
The working principle is as follows: when the device is used, three groups of net paper rolls are preset on the front side of a production line, the roll heads respectively penetrate through the intervals of carding rollers 201 and then penetrate through the squeezing rollers 103 to be arranged at the bottom of the top plate 5, meanwhile, the two groups of air rows 202 are located in the intervals of the three groups of net paper, and a paper taking machine is preset on the rear side of the production line.
The motor 501 is started, the motor 501 drives the transmission shaft 502 to rotate through the bevel gears, the transmission shaft 502 drives the two driven shafts 503 to rotate in the same direction through the bevel gears, then the driven shafts 503 are matched with the bar-shaped toothed ring 402 through the gears on the two sides to realize movement, and the limiting guide piece 504 can ensure that the gears on the two sides of the driven shafts 503 are attached to the bar-shaped toothed ring 402 to complete continuous reciprocating motion.
Move down at roof 5 rearward movement's in-process, press printing plate 6 down, make printing plate 6 and lower bolster 7 laminating, promote the net paper after fixing the net paper and move the transport backward, the pressfitting of pulling front side net paper, pull up printing plate 6 when roof 5 moves forward, unclamp the net paper.
In another embodiment, the aligning rod 701 is driven to move backwards in the process that the top plate 5 moves backwards, meanwhile, the aligning rod 701 pulls the connecting rod 302 to move backwards, and the toothed hole cutter 301 moves downwards through the sliding block mechanism, so that automatic quantitative hole opening is realized.
The piston rod 702 can be pulled to move in the process that the top plate 5 moves backwards, air in the piston rod 702 passes through the one-way valve 801 and is input into the air exhaust 202 through a pipeline, the air is further exhausted from two sides of the air exhaust 202, the adhering surface of the single-layer roll paper is cleaned, and large impurities are prevented from being clamped during processing.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (10)

1. A three-ply net paper machine production line is characterized by comprising:
the piston cylinder is fixedly arranged on the front side inside the middle hole; two groups of side frame plates are fixedly arranged on two sides of the top of the base, and two groups of squeeze rollers are rotatably arranged on the middle front sides of the side frame plates; a tooth hole pile is fixedly arranged between the two groups of side frame plates;
the carding frame is fixedly arranged on the front side of the top of the side frame plate;
the tooth hole assembly is fixedly arranged at the top of the side frame plate and is positioned at the rear side of the extrusion roller;
the guide plate pieces are arranged in four groups, the four groups of guide plate pieces are fixedly arranged on the top of the side frame plate in two rows in a fitting manner, and the front guide plate pieces are fitted with the tooth hole assemblies;
the bottom of roof, the bottom of roof is provided with the stamp board.
2. A three stack web machine line as in claim 1, wherein said carding frame further comprises:
the carding machine comprises a carding frame, a carding roller, a roller feeding mechanism and a roller discharging mechanism, wherein four groups of carding rollers are rotatably arranged on the rear side in the carding frame;
and two groups of air rows are fixedly arranged on the front side in the carding frame and are aligned with the two groups of middle carding rollers.
3. A three stack machine line according to claim 1, wherein said perforation assembly further comprises:
the inner side of the toothed hole assembly is vertically and slidably provided with a toothed hole cutter through a guide rail, and the bottom of the toothed hole cutter is of a wedge-shaped block tooth row structure;
two groups of connecting rods are rotatably arranged on two sides of the top of the tooth hole cutter through hinges, a fixed rod is rotatably arranged at the other end of each connecting rod through hinges, and the rear end of each connecting rod is lower than the front end of each connecting rod; the perforation cutter is vertically aligned with the perforation pile.
4. A three stack machine line as in claim 1, wherein said guide plate member further comprises:
the inner side of the guide plate is provided with an inner sliding hole;
the middle of the inner sliding hole is fixedly provided with a bar-shaped gear ring, and the middle of the bar-shaped gear ring is provided with a bar-shaped hole.
5. A three stack machine line as in claim 1, wherein said top sheet further comprises:
the main body of the top plate is of a turning structure with a high convex middle part, and the middle of the top part of the top plate is fixedly provided with the motor;
the middle of the bottom of the top plate is rotatably provided with a transmission shaft through a shaft bracket, and the transmission shaft is in transmission connection with a bevel gear arranged on a motor;
two driven shafts are transversely and rotatably arranged on two sides of the top plate, and gears are arranged at two ends of each driven shaft and meshed with the strip-shaped gear rings;
the limiting and guiding piece is rotatably arranged outside the two ends of the driven shaft, a cylindrical structure is integrally arranged on one side of the limiting and guiding piece, and the cylindrical structure is arranged in a strip-shaped hole in the middle of the strip-shaped gear ring in a sliding mode.
6. A production line of a three-ply net paper machine according to claim 5, characterized in that when the driven shaft is positioned at the foremost end or the rearmost end of the bar-shaped toothed ring, the cylindrical structure of the guide limiting member is fitted to the foremost end or the rearmost end of the bar-shaped hole in the middle of the bar-shaped toothed ring.
7. The three-ply net paper machine production line according to claim 1, wherein the printing plate further comprises:
the top of the printing plate is fixedly provided with four groups of spring rods, and the spring rods are sleeved with springs and penetrate through the top plate to be fixedly provided with retaining pieces.
8. The production line of the three-ply net paper machine according to claim 1, wherein the top of the base is provided with a lower template through a guide rail in a sliding manner, and the lower template further comprises:
the aligning rod is fixedly arranged on two sides of the top of the lower template and penetrates through the top plate to be fixedly connected with the bottom surface of the fixing rod.
9. The three-ply net paper machine production line according to claim 8, wherein the lower template further comprises:
the piston rod, the fixed two sets of lug structures that are provided with of bottom front side of lower bolster, the fixed piston rod that is provided with of lug structure front side, the piston rod passes the fixed piston board that is provided with in rear side of piston cylinder.
10. A three stack machine line as in claim 1, wherein said piston cylinder further comprises:
the rear side of the piston cylinder is connected with two groups of one-way valves, one group of one-way valves are provided with pipelines matched with the three-way component to be communicated with the two groups of gas outlets, and the rear end of the other group of one-way valves is connected with a filter cover.
CN202110880829.5A 2021-08-02 2021-08-02 Three-fold net paper machine production line Active CN113459596B (en)

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