CN211256485U - Automatic inserting machine for producing paper-making meshes - Google Patents

Automatic inserting machine for producing paper-making meshes Download PDF

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Publication number
CN211256485U
CN211256485U CN201921901131.1U CN201921901131U CN211256485U CN 211256485 U CN211256485 U CN 211256485U CN 201921901131 U CN201921901131 U CN 201921901131U CN 211256485 U CN211256485 U CN 211256485U
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China
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dust
machine
net
collecting
frame
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CN201921901131.1U
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高志锋
卢春营
陈善文
曹文祥
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Henan Hengxing Paper Net Co ltd
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Henan Hengxing Paper Net Co ltd
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Abstract

The utility model provides a production paper-making meshes uses automatic plug-in machine, including connecting seat, crossbeam, linear slide rail, limit switch, electric slider, I shape frame, plug-in machine aircraft nose, left part support frame, right part support frame, top roof beam, casing, master control all-in-one, but height control bracing piece structure, but dust filtration net twine head receiving flask structure and dust collection anti-pollution processor structure. The utility model discloses deep groove ball bearing, adjusting screw, internal thread pipe, rotatory handle, support the setting of lining frame and base, be favorable to adjusting the height of machine according to the operation demand to guarantee machine job stabilization nature; the arrangement of the flow guide pipe and the net wire head collecting hopper is beneficial to collecting the net wire heads generated in the insertion, and the environmental pollution can be avoided; the arrangement of the dust filtering pipe, the dust collecting bottle, the dust filtering net and the disassembling bolt is favorable for collecting dust and avoiding environmental pollution.

Description

Automatic inserting machine for producing paper-making meshes
Technical Field
The utility model belongs to the technical field of paper-making meshes processing equipment, especially, relate to production paper-making meshes is with automatic plug-in machine.
Background
At present, the plug-in machine for the papermaking mesh mainly comprises three parts, namely a machine head, a net rack and a frame. The machine head is arranged on the machine frame and mainly comprises a PLC control center and a mechanical arm, and the machine head is mainly used for connecting two ends of a woven net surface together through a weaving method. The net rack is generally two parallel square timbers or channel steels, and the net rack mainly functions as a track for the movement of the machine head and a support frame.
However, the existing plug-in machine also has the problems that the net twine head cannot be collected, the position of the machine cannot be adjusted according to the operation requirement, and dust pollution is easily caused.
Therefore, the invention of the automatic inserting machine for producing the papermaking mesh is very necessary.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a production paper-making meshes uses automatic plug-in connection machine to there is unable net twine head of collecting in solving current plug-in connection machine, can't carry out the position of altitude mixture control machine and produce dust pollution's problem easily according to operation demand.
The automatic splicing machine for producing the paper-making meshes comprises a connecting seat, a cross beam, a linear slide rail, a limit switch, an electric slide block, an I-shaped frame, a splicing machine head, a left supporting frame, a right supporting frame, a top beam, a machine shell, a master control all-in-one machine, a height-adjustable supporting rod structure, a dust-filterable net thread end collecting bottle structure and a dust-collectable anti-pollution processor structure, wherein one end of the connecting seat is respectively bolted on the left side and the right side of the upper part of the cross beam arranged at the front part, and the other end of the connecting seat is respectively bolted on the left side and the; the middle position of the upper part of the cross beam is transversely bolted with a linear slide rail; the left side and the right side of the upper part of the linear slide rail are respectively connected with a limit switch by a longitudinal bolt; the electric sliding block is connected to the upper part of the outer wall of the linear sliding rail in a sliding and clamping manner; one end of the I-shaped frame is connected with the right lower side of the machine head of the splicing machine through a bolt, and the other end of the I-shaped frame is connected with the middle position of the upper part of the electric sliding block through a bolt; the left support frame and the right support frame are respectively longitudinally bolted at one end to the left and right sides of the lower part of the top beam, and the other ends are respectively bolted at the left and right ends of the cross beam; the machine shell is longitudinally connected with the right lower side of the right supporting frame through screws; the middle position of the right side inside the shell is connected with a master control all-in-one machine through a screw; the height-adjustable supporting rod structure and the dust-filtering net thread head collecting bottle structure are respectively connected with the cross beam; the dust collecting and pollution preventing processor is connected with the top beam; the height-adjustable support rod structure comprises a deep groove ball bearing, an adjusting screw rod, an internal thread pipe, a rotating handle, a support lining frame and a base, wherein the inner ring of the deep groove ball bearing is arranged on the outer wall of the upper end of the adjusting screw rod in an interference fit manner; the adjusting screw rod is longitudinally in threaded connection with the inner part of the internal threaded pipe; the rotating handle is connected to the lower end of the adjusting screw rod through a bolt; and one end of each support lining frame is connected to the left side and the right side of the upper part of the base through bolts, and the other end of each support lining frame is connected to the middle position of the left side and the right side of the internal threaded pipe through bolts.
Preferably, the structure of the dust-filterable net thread head collecting bottle comprises a flow guide pipe, a net thread head collecting hopper, a dust-filterable pipe, a dust collecting bottle, a dust-filterable net and a disassembling bolt, wherein the flow guide pipe is in threaded connection with the upper end of the net thread head collecting hopper; one end of the dust filtering pipe is in threaded connection with the upper end of the dust collecting bottle, and the other end of the dust filtering pipe is in threaded connection with the lower end of the net thread head collecting hopper; the dust filter net is installed in the middle of the interior of the dust filter pipe through a dismounting bolt.
Preferably, the dust collecting and pollution preventing processor structure comprises a fan, a dust box, a processing net, a hollow plate and a wing-shaped screw, wherein the fan is connected to an inlet at the middle position of the upper end of the dust box through the screw; the treatment net is transversely arranged at the middle position in the dust box through a wing screw; the hollow-out plate is transversely bolted at the lower end of the dust box.
Preferably, the deep groove ball bearings are respectively embedded in the middle positions of the left side and the right side of the inner part of the cross beam.
Preferably, the rotating handle is a concave rubber handle on the left and right sides.
Preferably, the honeycomb duct is bolted at an inner middle position between the cross beams.
Preferably, the net twine head collecting hopper is a trumpet-shaped stainless steel hopper.
Preferably, the dust collecting bottle is a transparent PVC plastic bottle.
Preferably, the dust filter screen is a circular stainless steel filter screen.
Preferably, the treatment net is a rectangular stainless steel filter net.
Preferably, the hollowed-out plate is a hollowed-out aluminum alloy plate.
Preferably, the dust boxes are respectively and transversely screwed at the middle positions of the left side and the right side of the inner part of the top beam.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses in, deep groove ball bearing, adjusting screw, the internal thread pipe, the setting of rotatory handle, support liner frame and base is favorable to adjusting the height of machine according to the operation demand to guarantee machine job stabilization nature.
2. The utility model discloses in, honeycomb duct and net twine head collect the setting of fighting, be favorable to collecting the net twine head that produces in pegging graft, can avoid environmental pollution.
3. The utility model discloses in, the setting of dirt tube, dust collecting flask, dust screen and dismantlement bolt is favorable to collecting the dust, avoids environmental pollution.
4. The utility model discloses in, fan, dust case, handle the net, the setting of fretwork board and thumb screw is favorable to collecting dust and tiny dust that produces in the grafting work.
5. The utility model discloses in, limit switch's setting, be favorable to playing spacing effect.
6. The utility model discloses in, the setting of master control all-in-one be favorable to automatic control, guarantee the work convenience of machine.
7. The utility model discloses in, the setting of left part support frame, right part support frame and top roof beam be favorable to playing good support stability.
8. The utility model discloses in, linear slide rail, limit switch and electric slider's setting, be favorable to guaranteeing to remove the simple operation nature.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the height adjustable support rod structure of the present invention.
Fig. 3 is a schematic structural diagram of the structure of the dust-filtering net thread end collecting bottle of the present invention.
Fig. 4 is a schematic structural view of the structure of the dust collecting and pollution preventing processor of the present invention.
Fig. 5 is a schematic diagram of the electrical connection of the present invention.
In the figure:
1. a connecting seat; 2. a cross beam; 3. a linear slide rail; 4. a limit switch; 5. an electric slider; 6. an I-shaped frame; 7. a machine head of the plug-in machine; 8. a left support frame; 9. a right support frame; 10. a top beam; 11. a housing; 12. a master control all-in-one machine; 13. a supporting rod structure capable of adjusting height; 131. a deep groove ball bearing; 132. adjusting the screw rod; 133. an internally threaded tube; 134. a rotation handle; 135. a support liner frame; 136. a base; 14. a dust filtering net thread head collecting bottle structure; 141. a flow guide pipe; 142. a net thread end collecting hopper; 143. a dust filter pipe; 144. a dust collecting bottle; 145. a dust filter screen; 146. disassembling the bolt; 15. the dust collecting and pollution preventing processor structure; 151. a fan; 152. a dust box; 153. a processing net; 154. a hollowed-out plate; 155. a thumb screw.
Detailed Description
The utility model is described in detail with reference to the accompanying drawings, as shown in fig. 1 and fig. 2, an automatic plug-in machine for producing paper-making meshes comprises a connecting seat 1, a beam 2, a linear slide rail 3, a limit switch 4, an electric slider 5, an I-shaped frame 6, a plug-in machine head 7, a left support frame 8, a right support frame 9, a top beam 10, a casing 11, a main control integrated machine 12, a height-adjustable support rod structure 13, a dust-filterable mesh wire head collecting bottle structure 14 and a dust-collectable anti-pollution processor structure 15, wherein one end of the connecting seat 1 is respectively bolted on the left and right sides of the upper part of the beam 2 arranged at the front part, and the other end is respectively bolted on the left and right sides of the upper part of the; the middle position of the upper part of the cross beam 2 is transversely bolted with a linear slide rail 3; the left side and the right side of the upper part of the linear slide rail 3 are respectively connected with a limit switch 4 by a longitudinal bolt; the electric slide block 5 is slidably clamped at the upper part of the outer wall of the linear slide rail 3; one end of the I-shaped frame 6 is bolted on the right lower side of the plug-in machine head 7, and the other end is bolted on the middle position of the upper part of the electric sliding block 5; the left support frame 8 and the right support frame 9 are respectively connected with the left side and the right side of the lower part of the top beam 10 by bolts at one longitudinal end, and the other ends are respectively connected with the left end and the right end of the cross beam 2 by bolts; the machine shell 11 is longitudinally connected with the right lower side of the right supporting frame 9 through screws; a main control integrated machine 12 is connected to the middle position of the right side inside the casing 11 through a screw; the height-adjustable supporting rod structure 13 and the dust-filtering net thread head collecting bottle structure 14 are respectively connected with the cross beam 2; the dust-collecting pollution-preventing processor structure 15 is connected with the top beam 10; the height-adjustable support rod structure 13 comprises a deep groove ball bearing 131, an adjusting screw 132, an internal thread pipe 133, a rotating handle 134, a support lining frame 135 and a base 136, wherein the inner ring of the deep groove ball bearing 131 is arranged on the outer wall of the upper end of the adjusting screw 132 in an interference fit manner; the adjusting screw 132 is longitudinally screwed inside the internal threaded pipe 133; the rotating handle 134 is connected to the lower end of the adjusting screw 132 through a bolt; the support lining frames 135 are respectively bolted on the left side and the right side of the upper part of the base 136 at one end, and are respectively bolted on the middle positions of the left side and the right side of the internal threaded pipe 133 at the other end, according to the processing operation requirements, the adjusting screw rod 132 can be rotationally adjusted by holding the rotating handle 134, the deep groove ball bearing 131 drives the cross beam 2 to start moving up or possibly descending, the height adjustment work can be carried out, and good support stability can be achieved through the support lining frames 135 and the base 136.
In this embodiment, referring to fig. 3, the dust-filterable net head collecting bottle structure 14 includes a flow guide pipe 141, a net head collecting hopper 142, a dust-filtration pipe 143, a dust bottle 144, a dust-filtration net 145 and a detaching bolt 146, wherein the flow guide pipe 141 is connected to the upper end of the net head collecting hopper 142 in a threaded manner; one end of the dust filter pipe 143 is connected to the upper end of the dust bottle 144 by screw thread, and the other end is connected to the lower end of the net thread head collecting bucket 142 by screw thread; filter dirt net 145 install the inside intermediate position at dirt filter pipe 143 through dismantling bolt 146, when grafting during operation, can produce net twine head or dust, accessible honeycomb duct 141 collects through net twine head collection fill 142 and collects, the dust filters through dirt filter net 145, accessible dust bottle 144 is collected, can avoid environmental pollution, can clear up through taking off dust bottle 144, convenient operation, through taking off dismantling bolt 146, can clear up dirt filter net 145, in order to guarantee the simple operation nature.
In this embodiment, referring to fig. 4, the dust-collectable and anti-contamination processor structure 15 includes a fan 151, a dust box 152, a processing net 153, a hollow-out plate 154 and a wing screw 155, wherein the fan 151 is screwed to an inlet at an intermediate position of an upper end of the dust box 152; the processing net 153 is transversely arranged at the middle position in the dust box 152 through a wing screw 155; hollow-out board 154 horizontal bolted connection at the lower extreme of dust case 152, in the grafting work, can produce the dust, move through fan 151, can filter the miscellaneous with the dust that produces through hollow-out board 154, via the processing net 153 in the dust case 152 again, adsorb, can discharge through fan 151 at last, can avoid environmental pollution.
In this embodiment, specifically, the deep groove ball bearings 131 are respectively embedded in the middle positions of the left and right sides inside the cross beam 2.
In this embodiment, the rotation handle 134 is a concave rubber handle on the left and right sides.
In this embodiment, specifically, the draft tube 141 is bolted to the middle position inside the cross beam 2.
In this embodiment, the net head collecting hopper 142 is specifically a trumpet-shaped stainless steel hopper.
In this embodiment, the dust collecting bottle 144 is a transparent PVC plastic bottle.
In this embodiment, specifically, the dust filter 145 specifically employs a circular stainless steel filter screen.
In this embodiment, the processing net 153 specifically adopts a rectangular stainless steel filter screen.
In this embodiment, the hollow-out plate 154 is specifically a hollow-out aluminum alloy plate.
In this embodiment, specifically, the dust boxes 152 are respectively connected to the middle positions of the left and right sides of the inside of the roof beam 10 by the transverse screws.
In this embodiment, specifically, the limit switch 4, the electric slider 5, the plug-in machine head 7 and the fan 151 are respectively connected with the main control integrated machine 12 through wires.
In this embodiment, specifically, the limit switch 4 specifically adopts an LXW5-11G1 type travel switch, the electric slider 5 specifically adopts A TW-02-30 type electric slider, the fan 151 specifically adopts an sf type axial flow fan, and the main control integrated machine 12 specifically adopts A5-inch 500ES-A type PLC touch screen integrated machine.
Principle of operation
In the utility model, the electric slider 5 can be controlled by the main control integrated machine 12 to move on the outer wall of the linear slide rail 3, so that the I-shaped frame 6 can drive the insertion machine head 7 to carry out insertion operation, the limit switch 4 can limit the insertion operation, and the fan 151 can be controlled at the same time, so that the operation is convenient, according to the processing operation requirement, the rotating handle 134 can be held by hand to rotate and adjust the position of the adjusting screw 132 in the inner threaded pipe 133, at the moment, the deep groove ball bearing 131 drives the beam 2 to move upwards or descend, so that the height adjustment work can be carried out, the good supporting stability can be achieved through the supporting liner frame 135 and the base 136, when the insertion work is carried out, the net thread head or dust can be generated, the dust can be collected through the net thread head collecting hopper 142 by the guide pipe 141, the dust is filtered through the dust filtering net 145, the dust can be collected through the dust collecting bottle, convenient operation through taking off dismantlement bolt 146, can clear up dust filter 145 to guarantee the simple operation nature, in the grafting work, can produce the dust, move through fan 151, can filter the miscellaneous through the processing net 153 in dust box 152 with the dust of production through fretwork board 154, adsorb, can discharge through fan 151 at last, can avoid environmental pollution.
Utilize technical scheme, or technical personnel in the field are in the utility model discloses under technical scheme's the inspiration, design similar technical scheme, and reach above-mentioned technological effect, all fall into the utility model discloses a protection scope.

Claims (10)

1. The automatic plug-in machine for producing the paper-making meshes is characterized by comprising a connecting seat (1), a cross beam (2), a linear slide rail (3), a limit switch (4), an electric slide block (5), an I-shaped rack (6), a plug-in machine head (7), a left supporting frame (8), a right supporting frame (9), a top beam (10), a shell (11), a master control all-in-one machine (12), a height-adjustable supporting rod structure (13), a dust-filtering net wire head collecting bottle structure (14) and a dust-collecting anti-pollution processor structure (15), wherein one end of the connecting seat (1) is respectively bolted on the left side and the right side of the upper part of the cross beam (2) arranged at the front part, and the other end of the connecting seat is respectively bolted on the left side and the right side of the upper part of the cross beam (2); a linear slide rail (3) is connected to the middle position of the upper part of the cross beam (2) through a transverse bolt; the left side and the right side of the upper part of the linear slide rail (3) are respectively connected with a limit switch (4) by a longitudinal bolt; the electric sliding block (5) is clamped on the upper part of the outer wall of the linear sliding rail (3) in a sliding manner; one end of the I-shaped frame (6) is connected with the right lower side of the plug-in machine head (7) through a bolt, and the other end of the I-shaped frame is connected with the middle position of the upper part of the electric sliding block (5) through a bolt; the left support frame (8) and the right support frame (9) are respectively connected with the left side and the right side of the lower part of the top beam (10) through bolts at one longitudinal end, and the other ends of the left support frame and the right support frame are respectively connected with the left end and the right end of the cross beam (2) through bolts; the machine shell (11) is longitudinally connected with the right lower side of the right supporting frame (9) through screws; a main control integrated machine (12) is connected with the middle position of the right side inside the shell (11) through a screw; the height-adjustable supporting rod structure (13) and the dust-filtering net thread head collecting bottle structure (14) are respectively connected with the cross beam (2); the dust-collecting pollution-preventing processor structure (15) is connected with the top beam (10); the height-adjustable support rod structure (13) comprises a deep groove ball bearing (131), an adjusting screw rod (132), an internal threaded pipe (133), a rotating handle (134), a support lining frame (135) and a base (136), wherein the inner ring of the deep groove ball bearing (131) is arranged on the outer wall of the upper end of the adjusting screw rod (132) in an interference fit manner; the adjusting screw rod (132) is longitudinally and threadedly connected inside the internal threaded pipe (133); the rotating handle (134) is connected to the lower end of the adjusting screw rod (132) through a bolt; one end of each support lining frame (135) is connected to the left side and the right side of the upper portion of the base (136) through bolts, and the other end of each support lining frame is connected to the middle position of the left side and the right side of the inner threaded pipe (133) through bolts.
2. The automatic plug-in machine for producing the papermaking mesh according to claim 1, wherein the dust filterable net thread end collecting bottle structure (14) comprises a guide pipe (141), a net thread end collecting hopper (142), a dust filtration pipe (143), a dust collection bottle (144), a dust filtration net (145) and a disassembly bolt (146), wherein the guide pipe (141) is in threaded connection with the upper end of the net thread end collecting hopper (142); one end of the dust filtering pipe (143) is connected with the upper end of the dust collecting bottle (144) in a threaded manner, and the other end of the dust filtering pipe is connected with the lower end of the net thread head collecting hopper (142) in a threaded manner; the dust filter screen (145) is arranged at the middle position inside the dust filter pipe (143) through a dismounting bolt (146).
3. The automatic plug-in machine for the production of papermaking wires according to claim 1, wherein said dust collectable and contamination preventive processor structure (15) comprises a fan (151), a dust box (152), a processing net (153), a stencil (154) and a wing screw (155), said fan (151) being screw-connected to an inlet at an intermediate position of an upper end of the dust box (152); the processing net (153) is transversely arranged at the middle position in the dust box (152) through a wing screw (155); the hollow-out plate (154) is transversely bolted at the lower end of the dust box (152).
4. The automatic plug-in machine for producing the paper making mesh according to claim 1, characterized in that the deep groove ball bearings (131) are respectively embedded in the middle positions of the left side and the right side of the inside of the cross beam (2).
5. The automatic plug-in machine for producing a papermaking mesh according to claim 1, wherein the rotary handle (134) is a rubber handle having a concave shape on both left and right sides.
6. The automatic plug-in machine for producing a paper making mesh according to claim 2, wherein said draft tube (141) is bolted to an inner middle position between said beams (2).
7. The automatic plug-in machine for producing a papermaking wire according to claim 2, wherein the wire end collecting bucket (142) is a trumpet-shaped stainless steel bucket.
8. The automatic plug-in machine for producing a paper making mesh according to claim 2, wherein the dust collecting bottle (144) is a transparent PVC plastic bottle.
9. The automatic plug-in machine for the production of papermaking wires according to claim 2, characterized in that the dust screen (145) is a round stainless steel screen.
10. The automatic plug-in machine for the production of papermaking wires according to claim 3, characterized in that the processing screen (153) is embodied as a rectangular stainless steel screen.
CN201921901131.1U 2019-11-06 2019-11-06 Automatic inserting machine for producing paper-making meshes Active CN211256485U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921901131.1U CN211256485U (en) 2019-11-06 2019-11-06 Automatic inserting machine for producing paper-making meshes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921901131.1U CN211256485U (en) 2019-11-06 2019-11-06 Automatic inserting machine for producing paper-making meshes

Publications (1)

Publication Number Publication Date
CN211256485U true CN211256485U (en) 2020-08-14

Family

ID=71959712

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921901131.1U Active CN211256485U (en) 2019-11-06 2019-11-06 Automatic inserting machine for producing paper-making meshes

Country Status (1)

Country Link
CN (1) CN211256485U (en)

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