CN105291281A - Multi-piece cutting machine for perlite insulation board blank - Google Patents
Multi-piece cutting machine for perlite insulation board blank Download PDFInfo
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- CN105291281A CN105291281A CN201510730365.4A CN201510730365A CN105291281A CN 105291281 A CN105291281 A CN 105291281A CN 201510730365 A CN201510730365 A CN 201510730365A CN 105291281 A CN105291281 A CN 105291281A
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Abstract
The invention belongs to the field of cutting machines, and particularly relates to a multi-piece cutting machine for a perlite insulation board blank. The multi-piece cutting machine comprises a removed skin conveying module and a cut piece conveying module, wherein a discharging outlet of the removed skin conveying module is connected with a feeding inlet of the cut piece conveying module; the conveying direction of the removed skin conveying module is perpendicular to the conveying direction of the cut piece conveying module in the same horizontal plane; the removed skin conveying module is provided with a conveying belt, and a horizontal cutting line is arranged on the conveying belt; the cut piece conveying module is provided with a conveying carrier roller and a cutting line perpendicular to the upper surface of the conveying carrier roller. The multi-piece cutting machine for the perlite insulation board blank is ingenious in structure, reduces the occupation rate of a site, improves production efficiency and greatly improves the quality of finished products.
Description
Technical field
The invention belongs to cutting machine field, particularly relate to a kind of pearlite heat-insulation plate embryo multi-bit cutting machine.
Background technology
In the production process of pearlite heat-insulation plate, first produce pearlite heat-insulation plate idiosome on one machine, then need adopt artificial or remove the peel pearlite heat-insulation plate idiosome on special machine and cut into slices, inefficiency when adopting artificial peeling and cut into slices, the warming plate flatness cut out is bad, and more existing machines adopt the machine construction of straight line from head to tail, occupied ground is large, and existing machine all adopts conveyer belt transmission, when cutting into slices, plate embryo is easily at conveyer belt slippery surface, plate embryo also can rub with the sidewall of frame sometimes, affect the quality of finished product.
Summary of the invention
The object of the invention is to overcome deficiency of the prior art and a kind of pearlite heat-insulation plate embryo multi-bit cutting machine invented.
The present invention is achieved in that a kind of pearlite heat-insulation plate embryo multi-bit cutting machine, comprise and transmit peeling module and transmit section module, the discharging opening transmitting peeling module is connected with the charging aperture transmitting module of cutting into slices, it is characterized in that: the direction of transfer of described transmission peeling module is vertical with the direction of transfer transmitting module of cutting into slices, described transmission peeling module comprises the first frame, the first described frame is the frame structure of rectangle, the bottom of the first frame arranges the first transmission motor, first transmits above motor, first central rack is provided with the conveyer belt traversing frame left and right directions, in first frame, left side is charging aperture, right side is discharging opening, above driving-belt, first frame front and back sides inner surface is provided with the relative backplate in plate face, described backplate is rectangular box, backplate is provided with directive wheel, the axes normal of described directive wheel is in the upper surface of conveyer belt, and the most outer of directive wheel is positioned at the top of driving-belt, first frame is also provided with peeling mechanism, described peeling mechanism comprises peeling motor, first transmission device, first backing roll and line of cut, the first described backing roll is for comprising two bearings, axis is supported with between two bearings, axis is outside equipped with roller, its middle roller is provided with annular groove, first frame front and back sides outer surface is provided with two the first backing rolls opposing upper and lower, four rollers are provided with the line of cut that a trap is closed in annular groove, the plane orthogonal at annular line of cut place is in conveyer belt upper surface, and conveyer belt passes from the closed circle that line of cut forms, peeling motor drives the central axis on the first backing roll by the first transmission device.
Described transmission section module comprises the second frame, the second described frame is the frame structure of rectangle, the right side of the first frame is connected with the left surface of the second frame, the left surface of the second frame and the connectivity part of the first frame are charging aperture, second frame is provided with transmission carrying roller, backspin rolls and conveyer belt are positioned in same level, in same level the direction of transfer of backspin rolls and the transmission direction of conveyer belt vertical, rear end face in second frame is arranged the second driving motor, track, rack and pinion drive mechanism and the first push pedal, described track is strip groove, and the trend of groove is identical with the direction of transfer transmitting carrying roller, gear is connected with the second driving motor be arranged in the second frame, wheel and rack is meshed, tooth bar is arranged in orbit, one end of tooth bar is connected with the side plate face of the first push pedal, first push pedal is positioned at the top of transmitting carrying roller, first push pedal is perpendicular to the upper surface transmitting carrying roller, and be parallel to rear end face, the top of the second frame and be provided with slicing mechanism on transmitting below carrying roller the second frame, described slicing mechanism comprises section motor, second transmission device, second backing roll and line of cut, the second described backing roll is for comprising two bearings, axis is supported with between two bearings, axis is outside equipped with roller, its middle roller is provided with multiple annular groove be parallel to each other, in second frame, on end face, front and back are provided with two the second backing rolls be parallel to each other, transmit in the second frame below carrying roller and be provided with two the second backing rolls be parallel to each other, the axis of four second backing rolls is all parallel to the rear end face of the second frame, four rollers are provided with the line of cut that a trap is closed in each annular groove, annular line of cut surrounds out a coffin, section motor drives the central axis on the second backing roll by the second transmission device, left side wall in second frame is provided with the 3rd driving motor is set, track, rack and pinion drive mechanism and the second push pedal, described track is strip groove, and the axis of groove is parallel to each other with the axis transmitting carrying roller, gear is connected with the 3rd driving motor be arranged in the second frame, wheel and rack is meshed, tooth bar is arranged in orbit, one end of tooth bar is connected with the side plate face of the second push pedal, second push pedal is positioned at the coffin that annular line of cut surrounds, transmit the top of carrying roller, second push pedal is perpendicular to the upper surface transmitting carrying roller, and perpendicular to the rear end face of the second frame, the right side wall of the second frame is provided with discharging opening, another lateral plates forward of described discharging opening and the second push pedal is relative.
Further, the initiating terminal place the first frame being positioned at driving-belt is provided with carrying roller, and described carrying roller reaches the outside of the first frame charging aperture, and on carrying roller the height of end face lower than conveyer belt upper surface.
Further, described conveyer belt upper surface is provided with the many support bars be parallel to each other, support bar is parallel to the left side of the first frame, and support bar is provided with antiskid groove, and the outer surface of support bar scribbles skid resistant course.
Further, be provided with syndeton between backplate and the first frame, described syndeton comprises the sleeve pipe be arranged in the first frame and the round bar be connected with backplate, and the periphery of sleeve pipe is provided with screw hole, be provided with dog screw in screw hole, round bar passes in sleeve pipe.
Further, first backing roll in the first frame has adjustment positioning function, and the bearing of this first backing roll is provided with strip hole, is provided with axis in strip hole, axis is fixed on bearing by nut, and axis is outside equipped with roller.
The present invention has the following advantages:
Peeling and section are distributed in two frames by this device, and two frames adopt the arranged in form bent, thus reduce the place taken; In addition, this device adopts driving-belt transmission when peeling, and adopts the mode that backspin rolls and push pedal combine when section, and push pedal is by plate embryo by being pressed on line of cut, and avoiding plate embryo skids; First frame of conveyer belt both sides is provided with backplate, and the distance between backplate and the first frame can be arranged, and in addition backplate is provided with directive wheel, thus avoids plate embryo and have and rub with the sidewall of frame, thus improves product quality; Adopt line of cut, 20 multi-disc warming plates can be cut out simultaneously, substantially increase production efficiency.
This apparatus structure is ingenious, while enhancing productivity, substantially increases the quality of finished product.
Accompanying drawing explanation
Fig. 1 is the front view of embodiment 1 in the present invention.
Fig. 2 is the left view of embodiment 1 in the present invention.
Fig. 3 is the front view of embodiment 2 in the present invention.
Fig. 4 is the left view of embodiment 2 in the present invention.
Detailed description of the invention
Embodiment 1:
As depicted in figs. 1 and 2, a kind of pearlite heat-insulation plate embryo multi-bit cutting machine, comprise and transmit peeling module and transmit section module, the discharging opening transmitting peeling module is connected with the charging aperture transmitting module of cutting into slices, the direction of transfer of described transmission peeling module is vertical with the direction of transfer transmitting module of cutting into slices, described transmission peeling module comprises the first frame 1, the first described frame 1 is the frame structure of rectangle, the bottom of the first frame 1 arranges the first transmission motor 2, first transmits above motor 2, the conveyer belt 3 traversing frame left and right directions is provided with in the middle part of first frame 1, in first frame 1, left side is charging aperture, right side is discharging opening, above driving-belt 3, first frame 1 front and back sides inner surface is provided with the relative backplate in plate face 4, described backplate 4 is rectangular box, backplate 4 is provided with directive wheel 5, wherein be provided with syndeton between backplate 4 and the first frame 1, described syndeton comprises the sleeve pipe be arranged in the first frame 1 and the round bar be connected with backplate 4, the periphery of sleeve pipe is provided with screw hole, dog screw is provided with in screw hole, round bar passes in sleeve pipe, when needing to adjust the distance between backplate, only need to unclamp dog screw, then after moving backplate 4 to suitable position, again screwed in place screw, on described backplate 4, the axes normal of directive wheel 5 is in the upper surface of conveyer belt 3, and the most outer of directive wheel 5 is positioned at the top of driving-belt 3, first frame 1 is also provided with peeling mechanism, described peeling mechanism comprises peeling motor 6, first transmission device 7, first backing roll 8 and line of cut 9, the first described backing roll 8 is for comprising two bearings, axis is supported with between two bearings, axis is outside equipped with roller, its middle roller is provided with annular groove, before first frame 1, trailing flank outer surface is provided with two the first backing rolls 8 opposing upper and lower, one of them first backing roll 8 has adjustment positioning function, the bearing of this first backing roll 8 is provided with strip hole, axis is provided with in strip hole, axis is fixed on bearing by nut, axis is outside equipped with roller, four rollers are provided with the line of cut 9 that a trap is closed in annular groove, the plane orthogonal at annular line of cut 9 place is in conveyer belt 3 upper surface, and conveyer belt 3 passes from the closed circle that line of cut 9 forms, line of cut is merely able to cut away the uppermost one deck epidermis of plate embryo, peeling motor 6 drives the central axis on the first backing roll 8 by the first transmission device 7, and then roller turn, line of cut 9 is driven to rotate, and then cut, the first described transmission device 7 is belt wheel transmission mechanism.
Described transmission section module comprises the second frame 10, the second described frame 10 is the frame structure of rectangle, the right side of the first frame 1 is connected with the left surface of the second frame 10, wherein, the left surface of the second frame and the connectivity part of the first frame are charging aperture, namely the discharging opening of the first frame 1 is connected with the charging aperture of the second frame 10, second frame 10 is provided with and transmits carrying roller 11, backspin rolls 11 and conveyer belt 3 are positioned in same level, in same level, the direction of transfer of backspin rolls 11 is vertical with the transmission direction of conveyer belt 3, rear end face in second frame 10 is arranged the second driving motor 12, track 13, rack and pinion drive mechanism and the first push pedal 14, described track 13 is strip groove, and the trend of groove is identical with the direction of transfer transmitting carrying roller 11, gear is connected with the second driving motor 12 be arranged in the second frame 10, wheel and rack is meshed, tooth bar is arranged in track 13, one end of tooth bar is connected with the side plate face of the first push pedal 14, first push pedal 14 is positioned at the top of transmitting carrying roller 11, first push pedal 14 is perpendicular to the upper surface transmitting carrying roller 11, and be parallel to the rear end face of the second frame 10, the top of the second frame 10 and be provided with slicing mechanism on transmitting below carrying roller 11 the second frame 10, described slicing mechanism comprises section motor 15, second transmission device 16, second backing roll 17 and line of cut 18, the second described backing roll 17 is for comprising two bearings, axis is supported with between two bearings, axis is outside equipped with roller, its middle roller is provided with multiple annular groove be parallel to each other, end face is provided with two the second backing rolls 17 be parallel to each other along front and back position to second frame 10, transmit in the second frame 1 below carrying roller 11 and be provided with two the second backing rolls 17 be parallel to each other, the axis of four second backing rolls 17 is all parallel to the rear end face of the second frame 10, four rollers are provided with the line of cut 18 that a trap is closed in each annular groove, annular line of cut 18 surrounds out a coffin, section motor 15 drives the central axis on the second backing roll 17 by the second transmission device 16, left side wall in second frame 10 is provided with the 3rd driving motor 19 is set, track 20, rack and pinion drive mechanism and the second push pedal 21, described track 20 is strip groove, and the axis of groove is parallel to each other with the axis transmitting carrying roller 11, gear is connected with the 3rd driving motor 19 be arranged in the second frame 10, wheel and rack is meshed, tooth bar is arranged in track 20, one end of tooth bar is connected with the side plate face of the second push pedal 21, second push pedal 21 is positioned at the coffin that annular line of cut 18 surrounds, transmit the top of carrying roller 11, second push pedal 21 is perpendicular to the upper surface transmitting carrying roller 11, and perpendicular to the rear end face of the second frame 10, the right side wall of the second frame 10 is provided with discharging opening, described discharging opening is relative with another lateral plates forward of the second push pedal 21.
When producing, pearlite heat-insulation plate embryo is put into driving-belt from the charging aperture of the first frame by staff, then driving-belt drives the motion of pearlite heat-insulation plate embryo, in motion process, the backplate of the first frame both sides and the directive wheel be arranged on backplate play the guiding role to pearlite heat-insulation plate embryo, prevent from rubbing with sidewall in pearlite heat-insulation plate embryo transport process, affect the position of pearlite heat-insulation plate embryo, subsequently, when pearlite heat-insulation plate embryonic breeding contacts the horizontal cut line above driving-belt, now line of cut cuts under the drive of peeling motor, cut away the crust of pearlite heat-insulation plate embryo the top one deck, the pearlite heat-insulation plate embryo being now cut off the superiors' one deck crust continues to advance to the right, the charging aperture of the second frame is entered into from the discharging opening of the first frame, and then be slipped on transmission carrying roller, the direction of transfer transmitting carrying roller is vertical with the direction of transfer of driving-belt, backspin rolls does not have power, second frame rear end face is provided with the first push pedal, move in the direction that first push pedal can be moved along backspin rolls under the drive of the second driving motor, namely the pearlite heat-insulation plate embryo after peeling moves towards the front end face of the second frame under the promotion of the first push pedal, until pearlite heat-insulation plate embryo contacts with the line of cut in the second frame, under the effect of line of cut first push pedal pressure, pearlite heat-insulation plate embryo is cut into multi-disc finished product pearlite heat-insulation plate, the second push pedal that the pearlite heat-insulation plate cut originally is arranged on the second frame side promotes, release from the discharging opening be positioned at the second frame right flank, complete one action process.
Embodiment 2:
As shown in Figure 3 and Figure 4, on the basis of technical scheme described in the tangible embodiment 1 of technical scheme of the present embodiment, the initiating terminal place that first frame 1 is positioned at driving-belt 3 is provided with carrying roller 22, described carrying roller 22 reaches the outside of the first frame 1 charging aperture, and on carrying roller 22 height of end face lower than conveyer belt 3 upper surface.Conveyer belt 3 upper surface is provided with the many support bars be parallel to each other 23, each root support bar 23 is parallel to the left side of the first frame 1, and support bar 23 is provided with antiskid groove, and the outer surface of support bar 23 scribbles skid resistant course.
Carrying roller outside first frame can facilitate charging, and workman can first ride over pearlite heat-insulation plate plate embryo on carrying roller, then pushes pearlite heat-insulation plate plate embryo and send on conveyer belt, facilitate personnel's charging; The support bar that conveyer belt is arranged, increases the frictional force of pearlite heat-insulation plate plate embryo and conveyer belt, ensures the quality that pearlite heat-insulation plate plate is produced.
Above-described embodiment is only the preferred embodiments of the present invention; not in order to limit the present invention; for a person skilled in the art; the present invention can have various modifications and variations; within the spirit and principles in the present invention all; any amendment of doing, equivalent replacement, improvement etc., all should be included within protection scope of the present invention.
Claims (5)
1. a pearlite heat-insulation plate embryo multi-bit cutting machine, comprise and transmit peeling module and transmit section module, the discharging opening transmitting peeling module is connected with the arrival end transmitting module of cutting into slices, it is characterized in that: the direction of transfer of described transmission peeling module is vertical with the direction of transfer transmitting module of cutting into slices
Described transmission peeling module comprises the first frame, the first described frame is the frame structure of rectangle, the bottom of the first frame arranges the first transmission motor, first transmits above motor, first central rack is provided with the conveyer belt traversing frame left and right directions, in first frame, left side is charging aperture, right side is discharging opening, above driving-belt, first frame front and back sides inner surface is provided with the relative backplate in plate face, described backplate is rectangular box, backplate is provided with directive wheel, the axes normal of described directive wheel is in the upper surface of conveyer belt, and the most outer of directive wheel is positioned at the top of driving-belt, first frame is also provided with peeling mechanism, described peeling mechanism comprises peeling motor, first transmission device, first backing roll and line of cut, the first described backing roll is for comprising two bearings, axis is supported with between two bearings, axis is outside equipped with roller, its middle roller is provided with annular groove, first frame front and back sides outer surface is provided with two the first backing rolls opposing upper and lower, four rollers are provided with the line of cut that a trap is closed in annular groove, the plane orthogonal at annular line of cut place is in conveyer belt upper surface, and conveyer belt passes from the closed circle that line of cut forms, peeling motor drives the central axis on the first backing roll by the first transmission device,
Described transmission section module comprises the second frame, the second described frame is the frame structure of rectangle, the right side of the first frame is connected with the left surface of the second frame, the left surface of the second frame and the connectivity part of the first frame are charging aperture, second frame is provided with transmission carrying roller, backspin rolls and conveyer belt are positioned in same level, in same level the direction of transfer of backspin rolls and the transmission direction of conveyer belt vertical, rear end face in second frame is arranged the second driving motor, track, rack and pinion drive mechanism and the first push pedal, described track is strip groove, and the trend of groove is identical with the direction of transfer transmitting carrying roller, gear is connected with the second driving motor be arranged in the second frame, wheel and rack is meshed, tooth bar is arranged in orbit, one end of tooth bar is connected with the side plate face of the first push pedal, first push pedal is positioned at the top of transmitting carrying roller, first push pedal is perpendicular to the upper surface transmitting carrying roller, and be parallel to rear end face, the top of the second frame and be provided with slicing mechanism on transmitting below carrying roller the second frame, described slicing mechanism comprises section motor, second transmission device, second backing roll and line of cut, the second described backing roll is for comprising two bearings, axis is supported with between two bearings, axis is outside equipped with roller, its middle roller is provided with multiple annular groove be parallel to each other, in second frame, on end face, front and back are provided with two the second backing rolls be parallel to each other, transmit in the second frame below carrying roller and be provided with two the second backing rolls be parallel to each other, the axis of four second backing rolls is all parallel to the rear end face of the second frame, four rollers are provided with the line of cut that a trap is closed in each annular groove, annular line of cut surrounds out a coffin, section motor drives the central axis on the second backing roll by the second transmission device, left side wall in second frame is provided with the 3rd driving motor is set, track, rack and pinion drive mechanism and the second push pedal, described track is strip groove, and the axis of groove is parallel to each other with the axis transmitting carrying roller, gear is connected with the 3rd driving motor be arranged in the second frame, wheel and rack is meshed, tooth bar is arranged in orbit, one end of tooth bar is connected with the side plate face of the second push pedal, second push pedal is positioned at the coffin that annular line of cut surrounds, transmit the top of carrying roller, second push pedal is perpendicular to the upper surface transmitting carrying roller, and perpendicular to the rear end face of the second frame, the right side wall of the second frame is provided with discharging opening, another lateral plates forward of described discharging opening and the second push pedal is relative.
2. pearlite heat-insulation plate embryo multi-bit cutting machine according to claim 1, it is characterized in that: the initiating terminal place the first frame being positioned at driving-belt is provided with carrying roller, described carrying roller reaches the outside of the first frame charging aperture, and on carrying roller the height of end face lower than conveyer belt upper surface.
3. pearlite heat-insulation plate embryo multi-bit cutting machine according to claim 1, it is characterized in that: described conveyer belt upper surface is provided with the many support bars be parallel to each other, support bar is parallel to the left side of the first frame, support bar is provided with antiskid groove, and the outer surface of support bar scribbles skid resistant course.
4. pearlite heat-insulation plate embryo multi-bit cutting machine according to claim 1, it is characterized in that: between backplate and the first frame, be provided with syndeton, described syndeton comprises the sleeve pipe be arranged in the first frame and the round bar be connected with backplate, the periphery of sleeve pipe is provided with screw hole, be provided with dog screw in screw hole, round bar passes in sleeve pipe.
5. pearlite heat-insulation plate embryo multi-bit cutting machine according to claim 1, it is characterized in that: first backing roll in the first frame has adjustment positioning function, the bearing of this first backing roll is provided with strip hole, axis is provided with in strip hole, axis is fixed on bearing by nut, and axis is outside equipped with roller.
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CN201510730365.4A CN105291281B (en) | 2015-11-02 | 2015-11-02 | Pearlite heat-insulation plate embryo multi-bit cutting machine |
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CN201510730365.4A CN105291281B (en) | 2015-11-02 | 2015-11-02 | Pearlite heat-insulation plate embryo multi-bit cutting machine |
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CN105291281A true CN105291281A (en) | 2016-02-03 |
CN105291281B CN105291281B (en) | 2017-04-05 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110435968A (en) * | 2019-09-06 | 2019-11-12 | 浙江揭迪智能科技有限公司 | The automatic packing work platform of reel |
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WO1986004295A1 (en) * | 1985-01-25 | 1986-07-31 | Officina B M S.N.C. | Alternating saw with two blade-holding frames |
US5605141A (en) * | 1994-03-31 | 1997-02-25 | Bilotta; Alessandro | Making non-vertical planar cuts in masonry slabs |
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Effective date of registration: 20200921 Address after: 244100 Jinqiao Avenue, Yi'an Economic Development Zone, Tongling City, Anhui Province Patentee after: TONGLING BOFENG INDUSTRIAL Co.,Ltd. Address before: Hami City, the Xinjiang Uygur Autonomous Region Hami industrial area 839000 small cross residential building 1-1-302 Patentee before: HAMI XIANGHAO INDUSTRY & TRADE Co.,Ltd. |
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