CN104149995A - Activated carbon packing machine - Google Patents

Activated carbon packing machine Download PDF

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Publication number
CN104149995A
CN104149995A CN201410314234.3A CN201410314234A CN104149995A CN 104149995 A CN104149995 A CN 104149995A CN 201410314234 A CN201410314234 A CN 201410314234A CN 104149995 A CN104149995 A CN 104149995A
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China
Prior art keywords
riser
feed pipe
guide
width
orienting sleeve
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Granted
Application number
CN201410314234.3A
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Chinese (zh)
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CN104149995B (en
Inventor
蓝飞
吴益根
陈明通
李根发
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QINGYUAN COUNTY BLUE SKY GREEN VALLEY INDUSTRIAL Co Ltd
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QINGYUAN COUNTY BLUE SKY GREEN VALLEY INDUSTRIAL Co Ltd
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Priority to CN201410314234.3A priority Critical patent/CN104149995B/en
Publication of CN104149995A publication Critical patent/CN104149995A/en
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Publication of CN104149995B publication Critical patent/CN104149995B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention relates to the field of material packing, and provides an activated carbon packing machine. The activated carbon packing machine comprises a mounting seat with a vertical plate, a feeding pipe, a guide sleeve, two guide blocks, a side sealing device, a non-woven fabric pipe transfer device, an end sealing cut-off device and a quantitative feed device, the feeding pipe is arranged on the front side of the vertical plate, a feeding hoper connected with the mounting seat is arranged on the side body of the feeding pipe, the feeding pipe is sleeved with the guide sleeve, the guide sleeve is provided with a guide groove penetrating through the upper end and the lower end of the guide sleeve, the two guide blocks are connected with the rear end of the guide sleeve and the mounting seat respectively, the side sealing device, the non-woven fabric pipe transfer device and the end sealing cut-off device are arranged below the feeding pipe in sequence, and the quantitative feed device is arranged above the feeding hopper. The guide sleeve is in clearance fit with the feeding pipe. The activated carbon packing machine is high in packing efficiency, and cannot influence the health of packing personnel.

Description

Active carbon racking machine
Technical field
The present invention relates to material packing field, especially a kind of active carbon racking machine.
Background technology
Active carbon is a kind of solid carbonaceous of black porous, it is a kind of adsorbent that PARA FORMALDEHYDE PRILLS(91,95) etc. has very strong adsorption power, nonwoven fabrics is that many employing polypropylene (pp material) pellets are raw material, through high-temperature fusion, spray silk, paving guiding principle, hot pressing, batch the environment-friendly materials of new generation that continuous one-step produces, there is protection against the tide, ventilative, pliable and tough, light weight, not combustion-supporting, easy decomposition, nontoxic nonirritant, rich color, the feature such as use again cheap, capable of circulation; People are often divided in active carbon in non-woven bag and meet and use needs; Traditional active carbon packing, by packing personnel first active carbon in dosing container quantitatively or weigh, then active carbon is packed in the non-woven bag of making in advance, then seal; Traditional active carbon packing exists packing efficiency low and can affect packing personnel health's deficiency; Therefore, design a kind of packing efficiency high and can not affect packing personnel health's active carbon racking machine, become problem demanding prompt solution. 
Summary of the invention
The object of the invention is to exist packing efficiency low and can affect packing personnel health's deficiency in order to overcome current active carbon packing, provide a kind of packing efficiency high and can not affect packing personnel health's active carbon racking machine.
Concrete technical scheme of the present invention is:
A kind of active carbon racking machine, comprise the mount pad that is provided with riser, be positioned at the feed pipe that riser front side and gusset are provided with the feeder hopper being connected with mount pad, be enclosed within orienting sleeve and two orienting lugs that are connected with mount pad with orienting sleeve rear end respectively that the outer and rear end of feed pipe is provided with the guide groove that connects upper and lower two ends, be positioned at successively side closing device, nonwoven stringing transfer device and the end closure cutting device of feed pipe below, be positioned at the batch plant of feeder hopper top; Orienting sleeve and feed pipe free-running fit.When this active carbon racking machine uses, it is outer also through the gap between orienting sleeve and feed pipe that one end of nonwoven fabric roll is coated on feed pipe, the two side ends limit of nonwoven fabric roll overlapping and through between guide groove and two orienting lugs, side closing device and nonwoven stringing transfer device, after the heating of side closing device, the two side ends limit bonding formation nonwoven stringing that nonwoven fabric roll is overlapping; One end of nonwoven stringing forms one end of non-woven bag after the heating of end closure cutting device seals port; In batch plant, the active carbon of specified amount is through feeder hopper, from feed pipe, add nonwoven stringing, nonwoven stringing transfer device drives nonwoven stringing to move down, under active carbon Action of Gravity Field in nonwoven stringing, nonwoven stringing moves down a pocket position simultaneously, and end closure cutting device seals and cuts off sealing and forms the other end of non-woven bag and one end of next non-woven bag after heating to nonwoven stringing.This active carbon racking machine packing efficiency is high and can not affect packing personnel health.
As preferably, described feed pipe comprises upper feeding pipe, the taper type feed pipe that large end is connected with upper feeding pipe lower end, the lower feed pipe that upper end is connected with taper type feed pipe small end; Feeder hopper is positioned at the upper end of upper feeding pipe gusset; Orienting sleeve comprises the flexible guide cover being enclosed within outside taper type feed pipe and the upper orienting sleeve that is positioned at flexible guide cover below, is enclosed within the lower orienting sleeve outside lower feed pipe; Guide groove comprises the guiding groove that is positioned at flexible guide cover rear end and connects upper and lower two ends, is positioned at orienting sleeve rear end and connects the upper guide groove at upper and lower two ends, is positioned at lower orienting sleeve rear end and connects the lower guide groove at upper and lower two ends; Orienting lug comprises two bootstrap blocks that are connected with riser with flexible guide cover rear end respectively, two upper orienting lugs that are connected with riser with upper orienting sleeve rear end respectively, two lower orienting lugs that are connected with riser with lower orienting sleeve rear end respectively.Orienting sleeve comprises flexible guide cover, upper orienting sleeve and lower orienting sleeve, and feed pipe comprises upper feeding pipe, taper type feed pipe and lower feed pipe, is convenient to nonwoven fabric roll and is coated on feed pipe and progressively becomes not cracky of circle outward.
As preferably, the width of described guiding groove upper end is greater than lower end width; The width of upper guide groove upper end is greater than lower end width; The width of guiding groove lower end is greater than the width of guide groove upper end; The width of upper guide groove lower end is greater than the width of lower guide groove.The width of guide groove upper end is greater than the overlapping not cracky in two side ends limit that lower end width is convenient to nonwoven fabric roll.
As preferably, described side closing device comprises two heating components that are laterally set up in parallel; Heating component comprises the base plate being connected with riser front side, two blend stops that are set up in parallel along the vertical direction and are connected with base plate front end face respectively, be positioned at one end of two blend stops the fixed strip being connected with base plate front end face, between two blend stops and the heat block that mates with the distance between two blend stop opposite sides of width, screw front end is through fixed strip the set screw that is threaded with heat block; Two heat blocks are positioned at the opposite side of two heating components.Side seal mouth apparatus structure is simple and practical, can regulate the width in gap between two heat blocks by two set screw.
As preferably, described nonwoven stringing transfer device comprise two be laterally set up in parallel and respectively with the rotating shaft of riser pivot joint, two each rubber rolls that are connected with the front end of a rotating shaft, two transmission gears that intermesh and be respectively connected with the rear end of a rotating shaft, the fixed mount being connected with riser rear side, the motor of the mobile device being connected with fixed mount, with the engagement of transmission gear the driving gear that is in transmission connection with the output shaft of the motor of mobile device.Nonwoven stringing transfer device is simple and practical.
As preferably, described end closure cutting device comprises the fixed frame that is provided with two guide pillars and is connected with riser front side, be provided with two arrange along the vertical direction determine heating box and at two level pressure pieces of determining the relief groove between heating box and being connected with the rear moulding of fixed frame, be provided with two each determine moving heating box that heating box is relative and the dynamic pressure piece of the appearance cutter groove between two moving heating boxs with one, be arranged in the cutting knife that holds cutter groove, be provided with two crossbeams that are respectively set in a guide pin bushing outside guide pillar, be positioned at the draw back plate of riser rear side, the pull bar that two rear ends are connected with draw back plate respectively and front end is connected with crossbeam one end respectively through riser, the cylinder seat being connected with riser rear side, be connected with cylinder seat and cylinder that cylinder bar is connected with draw back plate, two guide rods and two stage clips, the front end of dynamic pressure piece is provided with two guide rod holes that mate with guide rod with the perforation of cutting knife groove and diameter, each guide rod is connected with cutting knife with crossbeam respectively through a guide rod hole and two ends, each compression spring sleeve is located at outside a guide rod and the rear end of crossbeam and the front end of dynamic pressure piece are pushed down respectively in two ends.End closure cutting device is simple and practical, and stage clip does not affect cutting knife and cuts off the sealing of nonwoven stringing after heating when heating box is compressed.
As preferably, described batch plant comprises the lower plate that is positioned at feed pipe top and is provided with the charging hole being communicated with feeder hopper, be provided with the rotating disk of several circumferential material paths and lower end and lower plate pivot joint, the side circle that internal diameter mates and is connected with lower plate upper end with rotating disk external diameter, the upper plate that is provided with feed orifice and is connected with side circle upper end, the feed hopper that lower end is communicated with and is connected with upper plate with feed orifice, be connected and stepping motor that output shaft and rotating disk lower end are in transmission connection the support being connected with lower plate with mount pad respectively with mount pad.Batch plant is simple and practical.
As preferably, described active carbon racking machine, also comprises and is positioned at feed pipe top and axis horizontal setting the slewing rollers parallel with riser, the nonwoven fabric roll feed roller that axis is parallel with the axis of slewing rollers.Slewing rollers make nonwoven fabric roll be coated on feed pipe progressively to become not cracky better effects if of circle outward.
Compared with prior art, the invention has the beneficial effects as follows: this active carbon racking machine packing efficiency is high and can not affect packing personnel health.Orienting sleeve comprises flexible guide cover, upper orienting sleeve and lower orienting sleeve, and feed pipe comprises upper feeding pipe, taper type feed pipe and lower feed pipe, is convenient to nonwoven fabric roll and is coated on feed pipe and progressively becomes not cracky of circle outward.The width of guide groove upper end is greater than the overlapping not cracky in two side ends limit that lower end width is convenient to nonwoven fabric roll.Side seal mouth apparatus structure is simple and practical, can regulate the width in gap between two heat blocks by two set screw.Nonwoven stringing transfer device, batch plant are simple and practical.End closure cutting device is simple and practical, and stage clip does not affect cutting knife and cuts off the sealing of nonwoven stringing after heating when heating box is compressed.Slewing rollers make nonwoven fabric roll be coated on feed pipe progressively to become not cracky better effects if of circle outward.
Accompanying drawing explanation
Fig. 1 is a kind of structural representation of the present invention;
Fig. 2 is the left view of Fig. 1;
Fig. 3 is that the A of Fig. 1 is to view;
Fig. 4 is the birds-eye view of end closure cutting device in Fig. 1;
Fig. 5 is the birds-eye view of Fig. 1 turntable.
In figure: slewing rollers-1, nonwoven fabric roll feed roller-2, mount pad-3, riser-31, feed pipe-4, feeder hopper-41, upper feeding pipe-42, taper type feed pipe-43, lower feed pipe-44, orienting sleeve-5, flexible guide cover-51, upper orienting sleeve-52, lower orienting sleeve-53, guiding groove-54, upper guide groove-55, lower guide groove-56, bootstrap block-57, upper orienting lug-58, lower orienting lug-59, side closing device-6, base plate-61, blend stop-62, fixed strip-63, heat block-64, set screw-65, nonwoven stringing transfer device-7, rotating shaft-71, rubber roll-72, transmission gear-73, fixed mount-74, motor-75 of mobile device, driving gear-76, end closure cutting device-8, guide pillar-81, fixed frame-82, determine heating box-83, relief groove-84, rear moulding-85, level pressure piece-86, moving heating box-87, hold cutter groove-88, dynamic pressure piece-89, cutting knife-810, guide pin bushing-811, crossbeam-812, draw back plate-813, pull bar-814, cylinder seat-815, cylinder-816, guide rod-817, stage clip-818, guide rod hole-819, batch plant-9, charging hole-91, lower plate-92, material path-93, rotating disk-94, side circle-95, feed orifice-96, upper plate-97, feed hopper-98, stepping motor-99, support-910, nonwoven fabric roll-10.
the specific embodiment
Below in conjunction with shown in accompanying drawing, the present invention is described further.
As accompanying drawing 1 accompanying drawing 5 to as shown in: a kind of active carbon racking machine, comprise the mount pad 3 that is provided with riser 31, be positioned at the feed pipe 4 that riser 31 front sides and gusset are provided with the feeder hopper 41 being connected with mount pad 3 screws, be enclosed within orienting sleeve 5 and two orienting lugs that are connected with mount pad 3 with orienting sleeve 5 rear ends respectively that the outer and rear end of feed pipe 4 is provided with the guide groove that connects upper and lower two ends, be positioned at successively the side closing device 6 of feed pipe 4 belows, nonwoven stringing transfer device 7 and end closure cutting device 8, be positioned at the batch plant 9 of feeder hopper 41 tops, be positioned at feed pipe 4 tops and axis horizontal setting the slewing rollers 1 parallel with riser 31, the nonwoven fabric roll feed roller 2 that axis is parallel with the axis of slewing rollers 1, orienting sleeve 5 and feed pipe 4 free-running fits.
In the present embodiment, described feed pipe 4 comprises upper feeding pipe 42, the taper type feed pipe 43 of large end and the 42 lower ends welding of upper feeding pipe, the lower feed pipe 44 of upper end and the 43 small ends welding of taper type feed pipe; Feeder hopper 41 is positioned at the upper end of upper feeding pipe 42 gussets; Orienting sleeve 5 comprises the flexible guide cover 51 being enclosed within outside taper type feed pipe 43 and is positioned at the upper orienting sleeve 52 that flexible guide overlaps 51 belows, is enclosed within the lower orienting sleeve 53 outside lower feed pipe 44; Guide groove comprises and is positioned at the guiding groove 54 that flexible guide overlaps 51 rear ends and connects upper and lower two ends, is positioned at orienting sleeve 52 rear ends and connects the upper guide groove 55 at upper and lower two ends, is positioned at lower orienting sleeve 53 rear ends and connects the lower guide groove 56 at upper and lower two ends; Orienting lug comprises that two are overlapped with flexible guide the bootstrap block 57 that 51 rear ends are connected with riser 31 screws respectively, 58, two lower orienting lugs 59 that are connected with riser 31 screws with lower orienting sleeve 53 rear ends respectively of two upper orienting lugs that are connected with riser 31 screws with upper orienting sleeve 52 rear ends respectively.The material of flexible guide cover 51 is the textile cloth of thickness 2mm.
The width of described guiding groove 54 upper ends is greater than lower end width; The width of upper guide groove 55 upper ends is greater than lower end width; The width of guiding groove 54 lower ends is greater than the width of guide groove 55 upper ends; The width of upper guide groove 55 lower ends is greater than the width of lower guide groove 56.
Described side closing device 6 comprises two heating components that are laterally set up in parallel; Heating component comprises the base plate 61 being connected with riser 31 front side screws, two blend stops 62 that are set up in parallel along the vertical direction and are connected with base plate 61 front end face screws respectively, be positioned at one end of two blend stops 62 fixed strip 63 being connected with base plate 61 front end face screws, at the heat block 64 of the distance free-running fit between two blend stops 62 and between width and two blend stop 62 opposite sides, the set screw 65 that screw front end passes fixed strip 63 and is threaded with heat block 64; Two heat blocks 64 are positioned at the opposite side of two heating components.Described heat block 64 is electro heat piece.
Described nonwoven stringing transfer device 7 comprises that two are laterally set up in parallel and pass through the rotating shaft 71 of bearing hinge joint with riser 31 respectively, two each rubber rolls 72 that are connected with the front end key of a rotating shaft 71, two transmission gears 73 that intermesh and be respectively connected with the rear end key of a rotating shaft 71, the fixed mount 74 being connected with riser 31 rear side screws, the motor 75 of the mobile device being connected with fixed mount 74 screws, with a transmission gear 73 engagement the driving gear 76 that is connected with the output axle key of the motor 75 of mobile device.
Described end closure cutting device 8 comprises the fixed frame 82 that is provided with two guide pillars 81 and is connected with riser 31 front side screws, be provided with two arrange along the vertical direction determine heating box 83 and at two level pressure pieces 86 of determining the relief groove 84 between heating box 83 and being connected with rear moulding 85 screws of fixed frame 82, be provided with two each determine moving heating box 87 that heating box 83 is relative and the dynamic pressure piece 89 of the appearance cutter groove 88 between two moving heating boxs 87 with one, be arranged in the cutting knife 810 that holds cutter groove 88, be provided with two crossbeams 812 that are respectively set in a guide pin bushing 811 outside guide pillar 81, be positioned at the draw back plate 813 of riser 31 rear sides, the pull bar 814 that two rear ends are connected with draw back plate 813 screws respectively and front end is connected with crossbeam 812 threaded one ends respectively through riser 31, the cylinder seat 815 being connected with riser 31 rear side screws, with the cylinder 816 that cylinder seat 815 screws are connected and cylinder bar is threaded with draw back plate 813, two guide rods 817 and two stage clips 818, the front end of dynamic pressure piece 89 is provided with two guide rod holes 819 with cutting knife 810 groove perforations and diameter and guide rod 817 free-running fits, each guide rod 817 is threaded with crossbeam 812 and cutting knife 810 respectively through a guide rod hole 819 and two ends, each stage clip 818 is set in outside a guide rod 817 and the rear end of crossbeam 812 and the front end of dynamic pressure piece 89 are pushed down respectively in two ends.Described determine heating box 83 and moving heating box 87 is electric heating bar.
Described batch plant 9 comprises the lower plate 92 that is positioned at feed pipe 4 tops and is provided with the charging hole 91 being communicated with feeder hopper 41, be provided with four circumferential material paths 93 and lower end and lower plate 92 by the rotating disk 94 of bearing hinge joint, the side circle 95 that internal diameter coordinates and is connected with lower plate 92 upper end screws with rotating disk 94 crest clearances, the upper plate 97 that is provided with feed orifice 96 and is connected with side circle 95 upper end screws, the feed hopper 98 that lower end is communicated with and is connected with upper plate 97 screws with feed orifice 96, be connected with mount pad 3 screws and stepping motor 99 that output shaft is connected with rotating disk 94 lower end keys, the support 910 being connected with lower plate 92 screws with mount pad 3 respectively.
When this active carbon racking machine uses, be contained in one end of the nonwoven fabric roll 10 on nonwoven fabric roll feed roller 2, after slewing rollers 1 turn to, be coated on outside feed pipe 4 and through the gap between orienting sleeve 5 and feed pipe 4, the two side ends limit of nonwoven fabric roll overlapping and through guide groove and two orienting lugs, two heat blocks 64 of side closing device 6, between two rubber rolls 72 of nonwoven stringing transfer device 7, after 64 heating of two heat blocks, the two side ends limit bonding formation nonwoven stringing that nonwoven fabric roll is overlapping, the cylinder bar of the cylinder 816 of end closure cutting device 8 pulls 89 motions of dynamic pressure piece through draw back plate 813, two pull bars 814, crossbeams 812, one end of nonwoven stringing is through determining to form after 87 heating of heating box 83 and moving heating box seal port one end of non-woven bag, and the cylinder bar of cylinder 816 promotes dynamic pressure pieces 89 and resets through draw back plate 813, two pull bars 814, crossbeams 812, stepping motor 99 drives rotating disk 94 to rotate, make a material path 93 relative with charging hole 91, in material path 93, the active carbon of specified amount is from charging hole 91, feeder hopper 41, in feed pipe 4, add nonwoven stringing, the motor of nonwoven stringing transfer device 7 is through driving gear 76, two transmission gears 73 and two rotating shafts 71 drive contrary rotation of two rubber rolls 72 to drive nonwoven stringing to move down, under active carbon Action of Gravity Field in nonwoven stringing, nonwoven stringing moves down a pocket position simultaneously, the cylinder bar of the cylinder 816 of end closure cutting device 8 is through draw back plate 813, two pull bars 814, crossbeam 812 pulls 89 motions of dynamic pressure piece, the sealing after two are determined heating box 83 and two moving heating box 87 heating of nonwoven stringing, cutting knife 810 cuts off the sealing formation other end of non-woven bag and one end of next non-woven bag simultaneously, the cylinder bar of cylinder 816 is through draw back plate 813, two pull bars 814, crossbeam 812 promotes dynamic pressure piece 89 and resets, stepping motor 99 drives rotating disks 94 to rotate, and makes active carbon in feed hopper 98 fall into a material path 93 and prepares next time filling.
The invention has the beneficial effects as follows: this active carbon racking machine packing efficiency is high and can not affect packing personnel health.Orienting sleeve comprises flexible guide cover, upper orienting sleeve and lower orienting sleeve, and feed pipe comprises upper feeding pipe, taper type feed pipe and lower feed pipe, is convenient to nonwoven fabric roll and is coated on feed pipe and progressively becomes not cracky of circle outward.The width of guide groove upper end is greater than the overlapping not cracky in two side ends limit that lower end width is convenient to nonwoven fabric roll.Side seal mouth apparatus structure is simple and practical, can regulate the width in gap between two heat blocks by two set screw.Nonwoven stringing transfer device, batch plant are simple and practical.End closure cutting device is simple and practical, and stage clip does not affect cutting knife and cuts off the sealing of nonwoven stringing after heating when heating box is compressed.Slewing rollers make nonwoven fabric roll be coated on feed pipe progressively to become not cracky better effects if of circle outward.
It is apparent to one skilled in the art that the present invention can change into various ways, and such change is not thought and departed from the scope of the present invention.All so apparent modifications of the technical personnel to described field, within being included in the scope of this claim.

Claims (8)

1. an active carbon racking machine, it is characterized in that: comprise the mount pad that is provided with riser, be positioned at the feed pipe that riser front side and gusset are provided with the feeder hopper being connected with mount pad, be enclosed within orienting sleeve and two orienting lugs that are connected with mount pad with orienting sleeve rear end respectively that the outer and rear end of feed pipe is provided with the guide groove that connects upper and lower two ends, be positioned at successively side closing device, nonwoven stringing transfer device and the end closure cutting device of feed pipe below, be positioned at the batch plant of feeder hopper top; Orienting sleeve and feed pipe free-running fit.
2. active carbon racking machine according to claim 1, is characterized in that: described feed pipe comprises upper feeding pipe, the taper type feed pipe that large end is connected with upper feeding pipe lower end, the lower feed pipe that upper end is connected with taper type feed pipe small end; Feeder hopper is positioned at the upper end of upper feeding pipe gusset; Orienting sleeve comprises the flexible guide cover being enclosed within outside taper type feed pipe and the upper orienting sleeve that is positioned at flexible guide cover below, is enclosed within the lower orienting sleeve outside lower feed pipe; Guide groove comprises the guiding groove that is positioned at flexible guide cover rear end and connects upper and lower two ends, is positioned at orienting sleeve rear end and connects the upper guide groove at upper and lower two ends, is positioned at lower orienting sleeve rear end and connects the lower guide groove at upper and lower two ends; Orienting lug comprises two bootstrap blocks that are connected with riser with flexible guide cover rear end respectively, two upper orienting lugs that are connected with riser with upper orienting sleeve rear end respectively, two lower orienting lugs that are connected with riser with lower orienting sleeve rear end respectively.
3. active carbon racking machine according to claim 2, is characterized in that: the width of described guiding groove upper end is greater than lower end width; The width of upper guide groove upper end is greater than lower end width; The width of guiding groove lower end is greater than the width of guide groove upper end; The width of upper guide groove lower end is greater than the width of lower guide groove.
4. according to the active carbon racking machine described in claim 1 or 2 or 3, it is characterized in that: described side closing device comprises two heating components that are laterally set up in parallel; Heating component comprises the base plate being connected with riser front side, two blend stops that are set up in parallel along the vertical direction and are connected with base plate front end face respectively, be positioned at one end of two blend stops the fixed strip being connected with base plate front end face, between two blend stops and the heat block that mates with the distance between two blend stop opposite sides of width, screw front end is through fixed strip the set screw that is threaded with heat block; Two heat blocks are positioned at the opposite side of two heating components.
5. according to the active carbon racking machine described in claim 1 or 2 or 3, it is characterized in that: described nonwoven stringing transfer device comprise two be laterally set up in parallel and respectively with the rotating shaft of riser pivot joint, two each rubber rolls that are connected with the front end of a rotating shaft, two transmission gears that intermesh and be respectively connected with the rear end of a rotating shaft, the fixed mount being connected with riser rear side, the motor of the mobile device being connected with fixed mount, with the engagement of transmission gear the driving gear that is in transmission connection with the output shaft of the motor of mobile device.
6. according to the active carbon racking machine described in claim 1 or 2 or 3, it is characterized in that: described end closure cutting device comprises the fixed frame that is provided with two guide pillars and is connected with riser front side, be provided with two arrange along the vertical direction determine heating box and at two level pressure pieces of determining the relief groove between heating box and being connected with the rear moulding of fixed frame, be provided with two each determine moving heating box that heating box is relative and the dynamic pressure piece of the appearance cutter groove between two moving heating boxs with one, be arranged in the cutting knife that holds cutter groove, be provided with two crossbeams that are respectively set in a guide pin bushing outside guide pillar, be positioned at the draw back plate of riser rear side, the pull bar that two rear ends are connected with draw back plate respectively and front end is connected with crossbeam one end respectively through riser, the cylinder seat being connected with riser rear side, be connected with cylinder seat and cylinder that cylinder bar is connected with draw back plate, two guide rods and two stage clips, the front end of dynamic pressure piece is provided with two guide rod holes that mate with guide rod with the perforation of cutting knife groove and diameter, each guide rod is connected with cutting knife with crossbeam respectively through a guide rod hole and two ends, each compression spring sleeve is located at outside a guide rod and the rear end of crossbeam and the front end of dynamic pressure piece are pushed down respectively in two ends.
7. according to the active carbon racking machine described in claim 1 or 2 or 3, it is characterized in that: described batch plant comprises the lower plate that is positioned at feed pipe top and is provided with the charging hole being communicated with feeder hopper, be provided with the rotating disk of several circumferential material paths and lower end and lower plate pivot joint, the side circle that internal diameter mates and is connected with lower plate upper end with rotating disk external diameter, the upper plate that is provided with feed orifice and is connected with side circle upper end, the feed hopper that lower end is communicated with and is connected with upper plate with feed orifice, be connected with mount pad and stepping motor that output shaft and rotating disk lower end are in transmission connection, the support being connected with lower plate with mount pad respectively.
8. according to the active carbon racking machine described in claim 1 or 2 or 3, it is characterized in that: also comprise and be positioned at feed pipe top and axis horizontal setting the slewing rollers parallel with riser, the nonwoven fabric roll feed roller that axis is parallel with the axis of slewing rollers.
CN201410314234.3A 2014-07-03 2014-07-03 Active carbon racking machine Expired - Fee Related CN104149995B (en)

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CN104803020A (en) * 2015-04-22 2015-07-29 句容市鼎盛纸箱包装有限公司 Pillow-shaped bag packaging device
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CN104803020A (en) * 2015-04-22 2015-07-29 句容市鼎盛纸箱包装有限公司 Pillow-shaped bag packaging device
CN105129163A (en) * 2015-09-25 2015-12-09 锦麒生物科技(安徽)有限公司 Scissor type simple and automatic particle packaging machine
CN114955034A (en) * 2022-06-24 2022-08-30 湖北工业大学 Bamboo salt filling production facility
CN114955034B (en) * 2022-06-24 2023-11-10 湖北工业大学 Bamboo salt filling production facility

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