CN211030217U - Connect dress paper with energy-saving cutting machine on-line monitoring facilities - Google Patents
Connect dress paper with energy-saving cutting machine on-line monitoring facilities Download PDFInfo
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- CN211030217U CN211030217U CN201921401789.6U CN201921401789U CN211030217U CN 211030217 U CN211030217 U CN 211030217U CN 201921401789 U CN201921401789 U CN 201921401789U CN 211030217 U CN211030217 U CN 211030217U
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Abstract
The utility model provides an online monitoring device of an energy-saving splitting machine for tipping paper, which comprises a telescopic cavity, an extension cavity, a distance sensor, an electric telescopic rod, a distance plate, a fixed cavity, a fixed top, a bottom monitoring area and an extension column, wherein the inner bottom end of the telescopic cavity is provided with the fixed top, one end of the fixed top is provided with the extension column, and one end of the extension column is provided with the bottom monitoring area; an extension cavity is arranged at the front end of the telescopic cavity, a fixed cavity is arranged at the front end of the extension cavity, and a distance sensor is arranged on one side of the fixed cavity; one side of the fixed cavity is provided with an electric telescopic rod, and the front end of the electric telescopic rod is provided with a distance plate. The utility model discloses electric telescopic handle, the setting of distance board and bottom monitoring area, through dividing the position to detect for the user brings the thickness that synchronous tool bit worked and detect, form the inside thickness that should contract of extending structure proofreading programming through the contact atress, form the proofreading structure, reach the requirement of control thickness, avoid because the problem of the repeated work that the cutting is not enough formed.
Description
Technical Field
The utility model belongs to the technical field of the cutting machine check out test set, especially, relate to a connect dress paper with energy-saving cutting machine on-line monitoring facilities.
Background
Tipping paper is the packing paper that is used for the production industry, is the paper that provides exquisite packing for the user, brings comparatively good packing for the user and experiences to become the comparatively stable packing usage structure of user, become one of the indispensable structure of packing trade, occupy comparatively extensive market.
Tipping paper is because the packing performance of itself needs to carry out whole cutting, has formed comparatively stable usage structure, for the user brings comparatively convenient work experience, at the in-process of cutting, people often need monitor with real-time control and cut the state, but current on-line monitoring equipment still has the monitoring and cuts thickness inaccurate, and real-time conjecture mechanism's smooth and easy nature is low, influences the problem of using experience.
Therefore, the invention discloses the online monitoring equipment for the energy-saving splitting machine for tipping paper, which is very necessary.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a connect dress paper with energy-saving cutting machine on-line monitoring equipment to solve current on-line monitoring equipment and still having the monitoring cutting thickness inaccurate, the mechanism smoothness nature of guessing in real time is low, influences the problem of using experience. An energy-saving type online monitoring device for a splitting machine for tipping paper comprises a seal, a telescopic wall, telescopic columns, an electrolytic cell, a sealing ring, a power supply area, electrodes and a switch, wherein the telescopic wall is arranged at the bottom end of the seal, the telescopic columns are arranged at four ends of the telescopic wall, and the power supply area is arranged at the bottom end of the telescopic wall; a switch is arranged at one end of the power supply area, an electrode is arranged in the power supply area, electrolytic baths are arranged at two ends of the electrode, and sealing rings are arranged on the peripheries of the electrolytic baths; the telescopic column comprises a lower column, a butt buckle and a reinforcing rib, the lower column is arranged at the bottom of the telescopic column, the reinforcing rib is arranged inside the lower column, and the butt buckle is arranged inside the upper end of the telescopic column; the electrolytic tank comprises a square tank and a circular tank, the square tank is arranged on the inner periphery of the surface of the electrolytic tank, and the circular tank is arranged on the inner periphery of the square tank; the power supply area comprises a buckling door and a buckling bulge, the surface of the power supply area is provided with the buckling door, and the surface of the buckling door is provided with the buckling bulge; the electrolytic cell adopts a diaphragm electrolytic cell with a rectangular structure, a square cell is arranged in the electrolytic cell through a forming structure, and the inner periphery of the square cell is movably connected with a circular cell through a nested structure; the circular groove adopts a diaphragm electrolytic cell with a circular structure, the radius of the circular groove is equal to the total length from the center point of the electrolytic cell to the midpoint of the long edge, and a buckle bulge is arranged in the circular groove.
The carbon alloy steel of the 'L' shaped structure of the telescopic column is characterized in that the bottom end of the telescopic column is connected with the top end of the lower column through an embedded structure, the lower column adopts the carbon alloy steel with the thickness smaller than the cavity thickness of the telescopic column, the reinforcing rib adopts the carbon alloy steel with a triangular structure, the reinforcing rib is welded in the lower column through an embedded structure, and the lower column and the telescopic column are correspondingly arranged and matched for use.
The telescopic wall is made of carbon alloy steel with a rectangular structure, the telescopic wall forms a telescopic structure through a nested structure, and the telescopic wall and the telescopic column form a shell together and perform telescopic structure work. The electrode adopts the electrolysis electrode of cylindrical structure, and the positive negative pole of electrode all is provided with the electrolysis trough through the inlay card structure, and this electrode and switch carry out series structure and connect, and wherein motor and electrolysis trough form the electrolytic field.
Seal the glass steel who adopts the rectangle structure, and seal and pass through buckle structure fixed mounting on the top of flexible wall, four ends of the lower surface that should seal all adhere to have anti-skidding rubber subsides.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the utility model discloses the setting of distance plate, the user brings comparatively stable monitoring performance, brings comparatively thorough control setting for the user through detecting thickness, avoids because the poor problem of experience is experienced in doing a work that the cutting thoroughly causes.
2. The utility model discloses the setting of bottom monitoring area brings comparatively stable experience of doing work for the user, improves the monitoring performance of doing work, and the user brings comparatively stable use and experiences.
3. The utility model discloses electric telescopic handle's setting, the whole atress of guaranteeing the device is flexible, then carries out the whole work that electric power extends through electric control and experience, for the comparatively stable experience of doing work of bringing of user, the use that improves the device is experienced and is done work the performance.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the bottom monitoring area of fig. 1 according to the present invention.
Fig. 3 is a schematic diagram of the circuit connection structure of the present invention.
In the figure:
1-telescopic cavity, 11-first alarm, 12-mounting head, 13-second alarm, 14 electric cavity, 15-single chip microcomputer, 2-extension cavity, 3-distance sensor, 4-electric telescopic rod, 5-distance plate, 6-fixed cavity, 7-fixed top, 8-bottom monitoring area, 81-mounting block, 82-positioning plate, 83-moving sensor and 9-extension column.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b):
as shown in figures 1 to 3
The utility model provides an energy-saving cutting machine on-line monitoring equipment for tipping paper, including flexible chamber 1, extension chamber 2, distance inductor 3, electric telescopic handle 4, distance plate 5, fixed chamber 6, fixed top 7, bottom monitoring area 8 and extension column 9, the inside bottom of flexible chamber 1 is provided with fixed top 7, and one end of fixed top 7 is provided with extension column 9, one end of this extension column 9 is provided with bottom monitoring area 8, the front end of flexible chamber 1 is provided with extension chamber 2, and the front end of extension chamber 2 is provided with fixed chamber 6, one side of this fixed chamber 6 is provided with distance inductor 3, one side of fixed chamber 6 is provided with electric telescopic handle 4, and the front end of electric telescopic handle 4 is provided with distance plate 5, flexible chamber 1 includes first siren 11, installation head 12, second siren 13, electric power chamber 14 and installation head 15, and the front end of flexible chamber 1 is provided with alarm 12, the both sides of this alarm 12 are provided with first siren 11 and second siren 13 respectively, wherein the inside of flexible chamber 1 is provided with electric power chamber 14 and electric telescopic head 15, and the extension chamber 2 is connected with the electric telescopic handle 2 through the inductor 2, and the telescopic rod 2, and the telescopic chamber 2 is connected with the telescopic handle 2, and the telescopic rod 2, the telescopic rod 2 is connected with the alarm, the telescopic rod 2 is connected with the telescopic rod 2, and the telescopic rod 2, the telescopic rod 2 is connected with the telescopic rod 2, the alarm, the telescopic rod 2 is connected with the telescopic rod 2, the telescopic rod of the telescopic rod 2 is connected with the telescopic rod 2, the telescopic rod of the telescopic rod.
Electric telescopic handle 4 adopts Thomson model electric telescopic handle, and electric telescopic handle 4 is provided with the inductor with circuit connection structure department, and this inductor is used for controlling electric telescopic handle 4 to carry out the electric power extension after the atress indentation, guarantees that the whole atress of device is flexible, then carries out the whole work experience of electric power extension through electric control, for the comparatively stable experience of doing work of bringing of user, improves the use experience and the performance of doing work of device.
The solid top 7 adopts the aluminum alloy of column mechanism, and the bottom of the solid top 7 is fixed with the extension column 9 through welding, and this extension column 9 is provided with the aluminum alloy of column structure, guarantees the bottom connectivity of device, brings comparatively stable job stabilization nature for the user, brings comparatively stable linking performance for the user, improves the overall structure of device and connects and stability.
Locating plate 82 adopts the aluminum alloy of oblate column structure, and the mounting groove has been seted up on the surface of locating plate 82, and the surface symmetry of this locating plate 82 installs removal inductor 83, is favorable to guaranteeing the bottom removal detectability of device, provides real-time detection performance for the equipment bottom, brings comparatively stable doing work experience for the user.
Principle of operation
In the utility model, the user installs the device on the base of the cutter head of the splitting machine through the installation head 12, the external display screen of the device is connected, then the singlechip is externally programmed through the thickness of the paper to be split and spliced, then the device is adjusted, then the splitting machine starts to work, the cutter head contacts the paper to be spliced and stretches, simultaneously the electric telescopic handle 4 contacts the surface of the paper tube to be spliced and is accompanied with the cutting of the cutter head into the paper to be spliced, the electric telescopic handle 4 is stressed to stretch into the fixed cavity 6, the cavity in the extension cavity 2 and the extension cavity 1 is extended, the distance plate 5 moves, the distance sensor 3 detects the stretching distance of the distance plate 5, the cutter head moving in the determined stretching range is completed, the cutting is completed, the sensor senses that the electric telescopic handle 4 stretches out and draws back after the completion, the electric telescopic handle 4 is controlled to be electrified to reset, otherwise, the first alarm 11 is triggered to give, and (4) adjusting the thickness, judging whether the displacement is correct or not according to the displacement condition of the slitting knife in the bottom end detection area 8 at the bottom end, and if so, giving an alarm through a second alarm 13.
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 (6)
1. An energy-saving online monitoring device for a cutting machine for tipping paper is characterized by comprising a telescopic cavity (1), an extension cavity (2), a distance sensor (3), an electric telescopic rod (4), a distance plate (5), a fixed cavity (6), a fixed top (7), a bottom monitoring area (8) and an extension column (9), wherein the bottom end of the interior of the telescopic cavity (1) is provided with the fixed top (7), one end of the fixed top (7) is provided with the extension column (9), one end of the extension column (9) is provided with the bottom monitoring area (8), the front end of the telescopic cavity (1) is provided with an extension cavity (2), the front end of the extension cavity (2) is provided with a fixed cavity (6), one side of the fixed cavity (6) is provided with the distance sensor (3), one side of the fixed cavity (6) is provided with the electric telescopic rod (4), the front end of the electric telescopic rod (4) is provided with the extension plate (5), the telescopic cavity (1) comprises a first alarm (11), a mounting head (12), a second alarm (13), an electric telescopic rod (14) and an alarm module (2), the alarm module is connected with the alarm module (2) through the telescopic structure, the movable induction structure, the telescopic rod (1) and the alarm head (2), the alarm head (2) is connected with the alarm head (2), the alarm module is connected with the alarm module.
2. An energy-saving type on-line monitoring device of a splitting machine for tipping paper according to claim 1, characterized in that: electric telescopic handle (4) adopt Thomson model electric telescopic handle, and electric telescopic handle (4) and circuit connection structure department are provided with the inductor, and this inductor is used for controlling electric telescopic handle (4) and carries out electric power extension after the atress indentation.
3. An energy-saving type on-line monitoring device of a splitting machine for tipping paper according to claim 1, characterized in that: distance board (5) adopt the aluminum alloy of platelike structure, and distance board (5) pass through welded fastening at the front end of electric telescopic handle (4), and this distance board (5) equals the distance that the cutting machine tool bit was to connecing a dress paper section of thick bamboo to the farthest distance apart from inductor (3).
4. An energy-saving type on-line monitoring device of a splitting machine for tipping paper according to claim 1, characterized in that: the fixed roof (7) adopts the aluminum alloy of column mechanism, and fixed roof (7) are fixed in the inside bottom in flexible chamber (1) through the welding, and the bottom of this fixed roof (7) is connected with bottom monitoring area (8) through extending post (9).
5. An energy-saving type on-line monitoring device of a splitting machine for tipping paper according to claim 1, characterized in that: bottom monitoring area (8) adopt the aluminum alloy of oblate structure, and the surface of bottom monitoring area (8) installs installation fender (81) through the screw thread, and locating plate (82) are installed through the screw thread to the front end that should install fender (81).
6. An energy-saving type on-line monitoring device of a splitting machine for tipping paper according to claim 1, characterized in that: the positioning plate (82) is made of aluminum alloy of an oblate structure, a movable inductor (83) is mounted on the surface of the positioning plate (82) through a stud, and the distance of the movable inductor (83) is equal to one displacement distance of a guide rail of a bottom-end splitting machine.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921401789.6U CN211030217U (en) | 2019-08-27 | 2019-08-27 | Connect dress paper with energy-saving cutting machine on-line monitoring facilities |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921401789.6U CN211030217U (en) | 2019-08-27 | 2019-08-27 | Connect dress paper with energy-saving cutting machine on-line monitoring facilities |
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Publication Number | Publication Date |
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CN211030217U true CN211030217U (en) | 2020-07-17 |
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Family Applications (1)
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CN201921401789.6U Active CN211030217U (en) | 2019-08-27 | 2019-08-27 | Connect dress paper with energy-saving cutting machine on-line monitoring facilities |
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2019
- 2019-08-27 CN CN201921401789.6U patent/CN211030217U/en active Active
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