CN203199225U - Machine core of packing machine - Google Patents
Machine core of packing machine Download PDFInfo
- Publication number
- CN203199225U CN203199225U CN 201320081348 CN201320081348U CN203199225U CN 203199225 U CN203199225 U CN 203199225U CN 201320081348 CN201320081348 CN 201320081348 CN 201320081348 U CN201320081348 U CN 201320081348U CN 203199225 U CN203199225 U CN 203199225U
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- gear
- movement
- roller
- transmission gear
- mated condition
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Abstract
The utility model provides a machine core of a packing machine. A belt feeding-withdrawing and belt tensioning device comprises a first idler wheel and a second idler wheel, the second idler wheel is controlled through a control mechanism to shift to a first matching state with the first idler wheel and to shift and retreat from the first matching state with the first idler wheel to a second matching state, the first idler wheel is connected with a first transmission gear capable of driving the first idler wheel to rotate, the second idler wheel is also connected with a second transmission gear capable of driving the second idler wheel to rotate, and the second transmission gear and the second idler wheel shift synchronously. The first transmission gear receives power through a gear transmission mechanism to drive the first idler wheel to rotate, the second transmission gear receives power through the gear transmission mechanism, and the second transmission gear and a gear transmitting power to the second transmission gear enter a first gear matching state and retreat from the first gear matching state through shifting. The machine core of the packing machine is simple in structure, reduces the failure rate, and is good in packing effect. The packing force, the belt feeding length and temperature and the burning-connection time delay can all be adjusted through a potentiometer.
Description
Technical field
The utility model relates to the movement of compress.
Background technology
Compress is the equipment with the strap strapping goods, whole packing process will through sending band, move back band, tension, boiling hot these several steps of gluing, these several actions are mainly born by the movement of compress.Movement encircling force in the past is unstable, and complex structure adopts gear engagement, suction tube to also have inductive switch control tension, and the trouble point is many.
Summary of the invention
Technical problem to be solved in the utility model provides a kind of movement of compress, and it is simple in structure, reduces fault rate, packs effective.For this reason, the utility model by the following technical solutions: it comprises that strap scalds sticking and belt cutting mechanism, scalds stick-slip plate mechanism; It is characterized in that described movement also is provided with send-back and fastening belt device, described send-back and fastening belt device comprise the first roller and displaceable second roller that can not be shifted, the second roller is displaced to the first mated condition of the first roller and from withdrawing to the second mated condition with the first mated condition displacement of the first roller by control mechanism control, described the first mated condition is that the second roller and the first roller are in the mated condition that is close to of moving back band and fastening belt, and described the second mated condition is that the second roller and the first roller are in the mated condition that is close to of sending band; The first roller is connected with first transmission gear that can drive its rotation, and the second roller also is connected with second transmission gear that can drive its rotation, and the second transmission gear and the second roller are shifted synchronously; The first transmission gear is accepted power by gear drive and is driven the rotation of the first roller, the second transmission gear is accepted power by gear drive, the second transmission gear enters the first gear mated condition by described displacement with gear to its transferring power and withdraws from from the first gear mated condition, described the first gear mated condition is engagement, and described state after withdrawing from from the first gear mated condition is not for meshing or than the engagement of the first gear mated condition pine; Described power is provided by drive motor.
On the basis of adopting technique scheme, the utility model also can adopt following further technical scheme:
Described drive motor inputs to the first transmission gear through the gear reduction transmission first, passes to the second transmission gear from the first transmission gear through the tooth engagement again.
The first transmission gear and the first roller are coaxial, and the second transmission gear and the second roller are coaxial.
Described control mechanism comprises movement main shaft and spindle motor, control is housed on the movement main shaft scalds sticking and belt cutting mechanism, a plurality of cams of boiling hot stick-slip plate mechanism and the fastening belt cam of controlling the displacement of the second return idler, spindle motor drives the rotation of movement main shaft through speed reduction gearing.
Described the second transmission gear and the second roller are contained in the oscillation system, and described fastening belt cam is controlled the second transmission gear and the displacement of the second roller by the oscillation system that a cover contains retracing spring, regulating spring and back-moving spring.
Described oscillation system comprises the first swing arm, and described the first swing arm is provided with the roller that cooperates with cam; Described the first swing arm is connected with pull bar by lower universal connecting components, cover has the described regulating spring of being regulated by the nut on the pull bar on the described pull bar, regulating spring acts on universal attaching parts to regulate the strength of tension strap, upper universal attaching parts is connected with the second swing arm, described the second transmission gear and the second roller are contained in the second swing arm, and the second swing arm connects described extension spring; Described retracing spring acts on described the first swing arm by lower universal connecting components.
Described send-back and fastening belt device also are provided with support, axle between described the first transmission gear and the first roller passes described support, the axle of described the second swing arm also is contained on the described support, and the second swing arm is in the top of the axle between the first transmission gear and the first roller; Described the second roller and the second transmission gear are in respectively the top of the first roller and the first transmission gear, and the first transmission gear and the engagement of the second transmission gear are the gear to the second transmission gear transferring power.
The first induction cam also is housed on the movement main shaft, is provided with the first inductor that matches with the first induction cam and the second inductor that cooperates with the fastening belt cam in the described movement; The first induction cam and the first inductor cooperates the signal that produces to be used for making the controller control spindle motor of control mechanism and the mode of operation of drive motor in a packing circulation of the first roller, and fastening belt cam and the second inductor cooperate the signal that produces to be used for making after a packing circulation finishes the controller control spindle motor drive shaft of control mechanism to reset and the drive motor of controlling the first roller carries out the forward forward (FWD).
Described speed reduction gearing comprises generator shaft gear, the first gear, the second gear, movement reaction gear, described generator shaft gear and the engagement of the first gear, the first gear and the second gear are coaxial, the second gear and the engagement of movement reaction gear, generator shaft gear and the first gear are speed reducing gear pair, and the second gear and movement reaction gear are speed reducing gear pair.
Described compress is provided with the movement erecting frame, and the movement main shaft runs through the movement erecting frame; Described spindle motor and speed reduction gearing all are in the outside of movement erecting frame one side, and speed reduction gearing is provided with shell outward; Control is scalded sticking a plurality of cams with belt cutting mechanism, boiling hot stick-slip plate mechanism and is contained on the movement main shaft that is in the movement erecting frame, and fastening belt cam and the first induction cam are contained on the movement main shaft that is in movement erecting frame one side outside.
Described movement is arranging this side of scalding plate, in movement top and by this end of spindle motor, is provided with the air draught direction and is dust absorption fan upwards.
Owing to adopting the technical scheme of utility model, movement of the present utility model only needs a pair roller can finish send-back, fastening belt, and is simple in structure, reduces fault rate, packs effective.And, encircling force size, send strip length and temperature, hot pick time-delay all can regulate by potential device.
Description of drawings
Fig. 1 is the schematic perspective view of embodiment provided by the utility model.
Fig. 2 is the schematic perspective view that embodiment provided by the utility model observes from another direction.
Fig. 3 is the schematic diagram from an angle observation of send-back provided by the utility model and fastening belt device embodiment.
Fig. 4 is the schematic diagram from another angle observation of send-back provided by the utility model and fastening belt device embodiment.
Fig. 5 is the structure exploded view of send-back provided by the utility model and fastening belt device embodiment.
Fig. 6 is the schematic diagram of speed reduction gearing embodiment provided by the utility model.
Fig. 7 is exploded view embodiment illustrated in fig. 6.
Fig. 8 is installed in schematic diagram in the core rack for the utility model provides belt cutting mechanism embodiment.
Fig. 9 is exploded view embodiment illustrated in fig. 1.
Figure 10 is the cutaway view of middle cutter and guidepost assembled state thereof.
Figure 11 is the schematic diagram of movement erecting frame.
Schematic diagram when Figure 12 is fitted together for scalding plate and its swing arm set.
Figure 13 is for scalding the decomposing schematic representation of stick-slip plate and its swing arm.
The specific embodiment
With reference to accompanying drawing.The utility model comprises that strap scalds sticking and belt cutting mechanism, scalds stick-slip plate mechanism, control mechanism, and described control mechanism comprises movement main shaft and spindle motor 100, and a plurality of cams that control is scalded sticking and belt cutting mechanism, scalded stick-slip plate mechanism are housed on the movement main shaft; Described movement also is provided with send-back and fastening belt device, described send-back and fastening belt device comprise the first roller 1 and displaceable second roller 2 that can not be shifted, the second roller 2 is displaced to the first mated condition of the first roller 1 and from withdrawing to the second mated condition with the first mated condition displacement of the first roller 1 by control mechanism control, described the first mated condition is that the second roller 2 and the first roller 1 are in the mated condition that is close to of moving back band and fastening belt, described the second mated condition is that the second roller 2 and the first roller 1 are in the mated condition that is close to of sending band, the first roller 1 and the second roller 2 when the first mated condition than leaning on tightlyer when the second mated condition; The first roller 1 is connected with the first transmission gear 10, the second rollers 2 that can drive its rotation and also is connected with the second transmission gear 20, the second transmission gears 20 and second roller 2 that can drive its rotation and is shifted synchronously; The first transmission gear 10 is accepted power by gear drive and is driven 1 rotation of the first roller, the second transmission gear 20 is accepted power by gear drive, the second transmission gear 20 enters the first gear mated condition by described displacement with gear to its transferring power and withdraws from from the first gear mated condition, described the first gear mated condition is engagement, and described state after withdrawing from from the first gear mated condition is not for meshing or than the engagement of the first gear mated condition pine; Described fastening belt cam 3 is contained on the described movement main shaft, and spindle motor 100 drives 101 rotations of movement main shaft through speed reduction gearing; Described power is provided by drive motor 6.
When the first mated condition, the second roller rotational power mainly relies on the drive of the second transmission gear, when the second mated condition, when described state after withdrawing from from the first gear mated condition when not meshing, the rotation of described the second roller is driven by friction force, when described state after withdrawing from from the first gear mated condition for than the engagement of the first gear mated condition pine the time, the rotation of described the second roller is driven in conjunction with gear transmission by friction force.
Described drive motor 6 inputs to the first transmission gear 10 through the gear reduction transmission first, passes to the second transmission gear 20 from the first transmission gear 10 through the tooth engagement again.
The first transmission gear 10 and the first roller 1 are coaxial, and the second transmission gear 20 and the second roller 2 are coaxial.
Described the second transmission gear 20 and the second roller 2 are contained in the oscillation system, and described fastening belt cam 3 is controlled the second transmission gear 20 and 2 displacements of the second roller by the oscillation system that a cover contains retracing spring, regulating spring and back-moving spring.
Described oscillation system comprises the first swing arm 41, and described the first swing arm 41 is provided with the roller 42 that cooperates with fastening belt cam 3; Described the first swing arm 41 is connected with pull bar 44 by lower universal connecting components 43, cover has the described regulating spring 46 of being regulated by the nut 45 on the pull bar on the described pull bar 44, regulating spring 46 acts on universal attaching parts 47 to regulate the strength of tension strap, upper universal attaching parts 47 is connected with the second swing arm 48, described the second transmission gear 20 and the second roller 2 are contained in the second swing arm 48, connect described extension spring 49 in the second swing arm 48, extension spring 49 is stablized the first roller 1 and the second roller 2, the first transmission gear 10 and the second transmission gear 20 residing mated condition; Described retracing spring 50 acts on the first swing arm 41 by lower universal connecting components 43, so that fastening belt cam and roller are close to.
Also be provided with support 51 in send-back and the fastening belt device, axle 11 between described the first transmission gear 10 and the first roller 1 passes described support, the axle 52 of described the second swing arm 48 also is contained on the described support 51, and the second swing arm 48 is in the top of the axle 11 between the first transmission gear 10 and the first roller 1.
Described the second roller 2 and the second transmission gear 20 are in respectively the top of the first roller 1 and the first transmission gear 10, and the first transmission gear 1 and 2 engagements of the second transmission gear are the gear to the second transmission gear transferring power.
Described boiling hot gluing with belt cutting mechanism comprises the boiling hot plate 401 that is installed in the swing arm 402, described scalding glued and the left top of belt cutting mechanism cutter 211, middle cutter 212, right top cutter 213, described boiling hot gluing with belt cutting mechanism also is provided with the guiding parts 202 that is arranged on the movement erecting frame 104, and described guiding parts is the part of movement frame.Be provided with vertical left top cutter lifting pilot hole 221 in the described guiding parts, vertical middle cutter lifting pilot hole 222, vertical right top cutter lifting pilot hole 223, described boiling hot gluing with belt cutting mechanism also is provided with left top cutter guidepost 231, middle cutter guidepost 232, right top cutter guidepost 233, described left top cutter guidepost 231, middle cutter guidepost 232, right top cutter guidepost 233 is in respectively left top cutter lifting pilot hole 221, middle cutter lifting pilot hole 222, also respectively slide-and-guide cooperation in the right top cutter lifting pilot hole 223, described left top cutter 211, middle cutter 212, right top cutter 213 is separately positioned on left top cutter guidepost 231, middle cutter guidepost 232, the top of right top cutter guidepost 233.
Has respectively the mounting hole under shed in described left top cutter guidepost, middle cutter guidepost, the right top cutter guidepost.With reference to Fig. 3, take middle cutter guidepost as example, drawing reference numeral 204 is the mounting hole in the middle cutter guidepost, and described left top cutter guidepost, right top cutter guidepost have similar structure.
Left top cutter guidepost, middle cutter guidepost, right top cutter guidepost are installed in respectively on the lifting drive post, and drawing reference numeral 251,252,253 is respectively the lifting drive post of left top cutter guidepost, middle cutter guidepost, right top cutter guidepost.Described lifting drive post is inserted in the described mounting hole, has stage clip between lifting drive post and the mounting hole.With reference to Fig. 3, take middle cutter guidepost as example, drawing reference numeral 206 is described stage clip, has similar structure in described left top cutter guidepost, the right top cutter guidepost.
Be respectively equipped with bearing 271,272,273 on the lifting drive post 251,252,253, promote bearing by camming movement and make left top cutter, middle cutter, right top cutter realize respectively oscilaltion.
On left top cutter, middle cutter, the right top cutter connecting screw 281,282,283 is arranged respectively, be used for to connect extension spring and make their work and reset.
The lifting of left cutter erection column, middle cutter erection column, right cutter erection column is respectively by left top cutter cam 602, middle top cutter cam 603,601 controls of right top cutter cam.
Pass through such scheme, left top cutter lifting pilot hole, middle cutter lifting pilot hole and right top cutter lifting pilot hole have been stipulated the position between left top cutter, middle cutter, the right top cutter, in the position that need not after the installation to regulate again between left top cutter, middle cutter, the right top cutter, the dipping and heaving of left top cutter, middle cutter, right top cutter is stable accurately, good reproducibility.
Described movement is arranging this side of scalding plate 401, in movement top and by this end of spindle motor, is provided with the air draught direction for dust absorption fan 801 upwards, from the most appropriate position and angle the smoking dust suction is carried out in movement inside.
As shown in figure 13, drawing reference numeral 501 is the boiling hot stick-slip plate in the movement, and drawing reference numeral 502 is swing arm, scalds stick-slip plate 501 and is contained in the swing arm 502, and the swing of swing arm is also namely scalded the motion of stick-slip plate by saddle cam 605 controls.
In the present embodiment, the first induction cam 701 is housed also on the movement main shaft, is provided with the first inductor 711 that matches with the first induction cam 701 and the second inductor 712 that matches with fastening belt cam 3 in the described movement; The first induction cam 701 and the first inductor 711 cooperate the signal that produces to be used for making the controller control spindle motor 100 of control mechanism and the mode of operation of drive motor 6 in a packing circulation of the first roller, fastening belt cam 3 and the second inductor 712 cooperate the signal that produces to be used for making after a packing circulation finishes controller control spindle motor 100 drive shaft of control mechanism to reset and the drive motor 6 of controlling the first roller carries out the forward forward (FWD), and this controller can be the treater with calculation function.
Described speed reduction gearing comprises generator shaft gear 110, the first gear 131, the second gear 132, movement reaction gear 120, described generator shaft gear 110 and 131 engagements of the first gear, the first gear 131 and the second gear 132 are coaxial, the second gear 132 and 120 engagements of movement reaction gear, generator shaft gear 110 and the first gear 131 are speed reducing gear pair, and the second gear 132 and movement reaction gear 120 are speed reducing gear pair.
As shown in the figure, described compress is provided with movement erecting frame 104, and movement main shaft 101 runs through movement erecting frame 104; Described spindle motor 100 and speed reduction gearing all are in the outside of movement erecting frame 104 1 sides, and speed reduction gearing is provided with shell 140 outward; Control is scalded sticking a plurality of cams 601,602,603,604,605 with belt cutting mechanism, boiling hot stick-slip plate mechanism and is contained on the movement main shaft that is in the movement erecting frame, and fastening belt cam 3, the first induction cam 701 and fastening belt cam 3 are contained on the movement main shaft that is in movement erecting frame one side outside.Like this, can conveniently install, reduce the movement volume, improve movement main shaft 101 traveling comforts.
In the present embodiment, described control mechanism is controlled the action of each mechanical motion mechanism in the movement by the mode of cam, carries out work as long as can control these mechanical motion mechanisms, adopts other mode, also is fine.
Below be movement work process:
Manually inserting band starts switch connection-spindle motor 100;
---withstand at the control bottom right top of right top cutter cam 601 cutter and to take the lead in slide plate 501 places;
---by saddle cam 605 controls, swing arm 502 shrinks back;
---make the second roller 2 and the first roller 1 be in the first mated condition under the control of fastening belt cam 3, the second transmission gear 20 enters the first gear mated condition; The first induction cam 701 makes inductor 711 inductions, moves back belt switch and connects, and spindle motor 100 stops, and drive motor 6 starts counter-rotating;
---belt shrinks back, fall back on be tied on the article after, when the detection current value of drive motor 6 when setting current value, spindle motor 100 restartings;
---withstand belt in slide plate 501 places at the control bottom left top of left top cutter cam 602 cutter 211;
---the first induction cam 701 disconnects inductor 711, and drive motor 6 stops;
---scald plane cam 604 control swing arms 402 actions, scald plate 401 and inject in the middle of the two tape layers;
---up push up at the lower top of control of middle top cutter cam 603 cutter 212, cut off belt, withstand belt and boiling hot plate 401 levels band sub-surface is melted;
---the first induction cam 701 is responded to inductor 711 again, and drive motor 6 starts counter-rotating, takes the lead to shrink back a bit;
---descend at the lower top of control of middle top cutter cam 603 cutter 212, in boiling hot plane cam 604 control swing arms 402 actions, scald plate 401 and withdraw from backward
---cutter pushes up up again on the lower top of control of middle top cutter cam 603, pushes up firm belt in slide plate 501 places, makes the bonding jail of belt;
---the first induction cam 701 disconnects inductor 711 again; Spindle motor stops, and starts the hot pick time-delay; Time-delay finishes spindle motor and again starts;
---top, left, center, right cutter descends under the control of top, left, center, right cutter cam;
---by saddle cam 605 control, swing arm 502 shrinks back and drives slide plate and shrink back belt is ejected;
---by saddle cam 605 controls, 502 times original positions of swing arm, slide plate returns original position
---fastening belt cam 3 makes inductor 712 inductions, and home switch is connected; Spindle motor stops, the moment braking; Original position is returned by each mechanism of movement, to prepare to enter next working cycle; Drive motor 6 starts forward, and belt is sent, and finishes a working cycle.
Claims (10)
1. the movement of a compress comprises that strap scalds sticking and belt cutting mechanism, scalds stick-slip plate mechanism; It is characterized in that described movement also is provided with send-back and fastening belt device, described send-back and fastening belt device comprise the first roller and displaceable second roller that can not be shifted, the second roller is displaced to the first mated condition of the first roller and from withdrawing to the second mated condition with the first mated condition displacement of the first roller by control mechanism control, described the first mated condition is that the second roller and the first roller are in the mated condition that is close to of moving back band and fastening belt, and described the second mated condition is that the second roller and the first roller are in the mated condition that is close to of sending band; The first roller is connected with first transmission gear that can drive its rotation, and the second roller also is connected with second transmission gear that can drive its rotation, and the second transmission gear and the second roller are shifted synchronously; The first transmission gear is accepted power by gear drive and is driven the rotation of the first roller, the second transmission gear is accepted power by gear drive, the second transmission gear enters the first gear mated condition by described displacement with gear to its transferring power and withdraws from from the first gear mated condition, described the first gear mated condition is engagement, and described state after withdrawing from from the first gear mated condition is not for meshing or than the engagement of the first gear mated condition pine; Described power is provided by drive motor.
2. the movement of a kind of compress as claimed in claim 1 is characterized in that described drive motor inputs to the first transmission gear through the gear reduction transmission first, passes to the second transmission gear from the first transmission gear through the tooth engagement again.
3. the movement of a kind of compress as claimed in claim 1, it is characterized in that described control mechanism comprises movement main shaft and spindle motor, control is housed on the movement main shaft scalds sticking and belt cutting mechanism, a plurality of cams of boiling hot stick-slip plate mechanism and the fastening belt cam of controlling the displacement of the second return idler, spindle motor drives the rotation of movement main shaft through speed reduction gearing.
4. the movement of a kind of compress as claimed in claim 3, it is characterized in that described the second transmission gear and the second roller are contained in the oscillation system, described fastening belt cam is controlled the second transmission gear and the displacement of the second roller by the oscillation system that a cover contains retracing spring, regulating spring and back-moving spring.
5. the movement of a kind of compress as claimed in claim 4 is characterized in that described oscillation system comprises the first swing arm, and described the first swing arm is provided with the roller that cooperates with the fastening belt cam; Described the first swing arm is connected with pull bar by lower universal connecting components, cover has the described regulating spring of being regulated by the nut on the pull bar on the described pull bar, regulating spring acts on universal attaching parts to regulate the strength of tension strap, upper universal attaching parts is connected with the second swing arm, described the second transmission gear and the second roller are contained in the second swing arm, and the second swing arm connects described extension spring; Described retracing spring acts on described the first swing arm by lower universal connecting components.
6. the movement of a kind of compress as claimed in claim 5, it is characterized in that described send-back and fastening belt device also are provided with support, axle between described the first transmission gear and the first roller passes described support, the axle of described the second swing arm also is contained on the described support, and the second swing arm is in the top of the axle between the first transmission gear and the first roller; Described the second roller and the second transmission gear are in respectively the top of the first roller and the first transmission gear, and the first transmission gear and the engagement of the second transmission gear are the gear to the second transmission gear transferring power.
7. the movement of a kind of compress as claimed in claim 3 is characterized in that also being equipped with on the movement main shaft the first induction cam, is provided with the first inductor that matches with the first induction cam and the second inductor that cooperates with the fastening belt cam in the described movement; The first induction cam and the first inductor cooperates the signal that produces to be used for making the controller control spindle motor of control mechanism and the mode of operation of drive motor in a packing circulation of the first roller, and fastening belt cam and the second inductor cooperate the signal that produces to be used for making after a packing circulation finishes the controller control spindle motor drive shaft of control mechanism to reset and the drive motor of controlling the first roller carries out the forward forward (FWD).
8. the movement of a kind of compress as claimed in claim 3, it is characterized in that described speed reduction gearing comprises generator shaft gear, the first gear, the second gear, movement reaction gear, described generator shaft gear and the engagement of the first gear, the first gear and the second gear are coaxial, the second gear and the engagement of movement reaction gear, generator shaft gear and the first gear are speed reducing gear pair, and the second gear and movement reaction gear are speed reducing gear pair.
9. the movement of a kind of compress as claimed in claim 7 is characterized in that described compress is provided with the movement erecting frame, and the movement main shaft runs through the movement erecting frame; Described spindle motor and speed reduction gearing all are in the outside of movement erecting frame one side, and speed reduction gearing is provided with shell outward; Control is scalded sticking a plurality of cams with belt cutting mechanism, boiling hot stick-slip plate mechanism and is contained on the movement main shaft that is in the movement erecting frame, and fastening belt cam and the first induction cam are contained on the movement main shaft that is in movement erecting frame one side outside.
10. the movement of a kind of compress as claimed in claim 9 is characterized in that described movement is arranging this side of scalding plate, in movement top and by this end of spindle motor, is provided with the air draught direction and is dust absorption fan upwards.
Priority Applications (7)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201320081348 CN203199225U (en) | 2013-02-22 | 2013-02-22 | Machine core of packing machine |
KR1020157024927A KR101931410B1 (en) | 2013-02-22 | 2013-03-11 | Machine core of packing machine |
PL13875989T PL2960164T3 (en) | 2013-02-22 | 2013-03-11 | Machine core of packing machine |
US14/769,282 US9834332B2 (en) | 2013-02-22 | 2013-03-11 | Machine core of a packing machine |
RU2015140134A RU2606786C1 (en) | 2013-02-22 | 2013-03-11 | Packing machine internal mechanism |
EP13875989.9A EP2960164B1 (en) | 2013-02-22 | 2013-03-11 | Machine core of packing machine |
PCT/CN2013/072404 WO2014127549A1 (en) | 2013-02-22 | 2013-03-11 | Machine core of packing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201320081348 CN203199225U (en) | 2013-02-22 | 2013-02-22 | Machine core of packing machine |
Publications (1)
Publication Number | Publication Date |
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CN203199225U true CN203199225U (en) | 2013-09-18 |
Family
ID=49143359
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN 201320081348 Expired - Lifetime CN203199225U (en) | 2013-02-22 | 2013-02-22 | Machine core of packing machine |
Country Status (1)
Country | Link |
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CN (1) | CN203199225U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103086002A (en) * | 2013-02-22 | 2013-05-08 | 杭州永创智能设备股份有限公司 | Machine core of packing machine |
CN108557142A (en) * | 2018-03-20 | 2018-09-21 | 长安大学 | A kind of binding apparatus |
-
2013
- 2013-02-22 CN CN 201320081348 patent/CN203199225U/en not_active Expired - Lifetime
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103086002A (en) * | 2013-02-22 | 2013-05-08 | 杭州永创智能设备股份有限公司 | Machine core of packing machine |
CN108557142A (en) * | 2018-03-20 | 2018-09-21 | 长安大学 | A kind of binding apparatus |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CX01 | Expiry of patent term | ||
CX01 | Expiry of patent term |
Granted publication date: 20130918 |