CN203832836U - Longitudinally-sealing mechanism for multi-row filling machine - Google Patents
Longitudinally-sealing mechanism for multi-row filling machine Download PDFInfo
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- CN203832836U CN203832836U CN201420223659.9U CN201420223659U CN203832836U CN 203832836 U CN203832836 U CN 203832836U CN 201420223659 U CN201420223659 U CN 201420223659U CN 203832836 U CN203832836 U CN 203832836U
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- connecting rod
- erecting frame
- driver train
- eccentric shaft
- rod
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Abstract
The utility model provides a longitudinally-sealing mechanism for a multi-row filling machine. The longitudinally-sealing mechanism for the multi-row filling machine comprises an installation frame I, an installation frame II, an eccentric shaft, a connecting rod I, a driving mechanism I and a driving mechanism II, wherein the installation frame I is fixedly arranged, a plurality of heat sealing bases are installed on the installation frame I, a plurality of heat sealing heads are installed on the installation frame II, the installation frame II is provided with a connecting part II, both the connecting part II and the connecting rod I are connected with the eccentric shaft in a rotary mode, an axis, located at the position connected with the connecting part II, on the eccentric shaft and the axis, located at the position connected with the connecting rod I, on the eccentric shaft are parallel to each other and do not coincide with each other, the eccentric shaft is fixedly connected with a connecting rod II, the connecting rod I is connected with the driving mechanism I, the connecting rod II is connected with the driving mechanism II, and the driving mechanism is installed at the output end of the driving mechanism I. According to the longitudinally-sealing mechanism for the multi-row filling machine, the situation that synchronous coordination is needed when power is provided is avoided, in this way, the design difficulty of a power mechanism is greatly lowered, both installation and debugging are relatively easy, disassembly, assembly and maintenance are convenient, and the working stability is high.
Description
Technical field
The utility model relates to a kind of longitudinal sealing mechanism of multiple row bottle placer.
Background technology
In prior art, the power of the longitudinal sealing mechanism of multiple row bottle placer is divided into two parts, and a part is provided by cylinder, and another part is provided by swinging gear.The power matching that the power that swinging gear provides must provide with cylinder, could start longitudinal sealing mechanism in harmonious situation.Concrete, longitudinal sealing mechanism comprises heat-sealing seat, heat-sealing head, heat-sealing seat is arranged on adapter plate, adapter plate is fixed in frame, heat-sealing seat is equidistant arrangement, heat-sealing head is arranged on another piece adapter plate, heat-sealing head is also equidistant arrangement, heat-sealing head is relative one by one with heat-sealing seat, the adapter plate that heat-sealing head is installed is flexibly connected with the adapter plate that heat-sealing seat is installed by connecting rod, this connecting rod other end connects cylinder, cylinder is fixed in frame, between adapter plate and connecting rod, by eccentric shaft connecting rod assembly, be connected, eccentric shaft connecting rod assembly is also flexibly connected with adapter plate by another connecting rod, the other end of connecting rod connects swinging gear.During work, cylinder shrinks and impels heat-sealing head near heat-sealing seat, meanwhile, swinging gear also moves, the displacement that the connecting rod being connected with swinging gear with counteracting produces because of cylinder moving, then, swinging gear continues motion, pull the motion of eccentric shaft connecting rod assembly, make heat-sealing head at the square upward movement of the flexible direction of tilt cylinders, and then make heat-sealing head vertically press to heat-sealing seat, in said structure, the mechanism structure relative complex that it provides power, not only Installation and Debugging work is brought to difficulty, and working stability is lower.
Summary of the invention
Technical problem to be solved in the utility model is to provide a kind of longitudinal sealing mechanism of multiple row bottle placer, power provides step to avoid needing the situation of synchronous coordination, thereby the design difficulty of actuating unit reduces greatly, Installation and Debugging work is relatively easy, dismounting is easy to maintenance, and working stability is high.
For solving above-mentioned existing technical matters, the utility model adopts following scheme: a kind of longitudinal sealing mechanism of multiple row bottle placer, comprise erecting frame I, erecting frame II, eccentric shaft, connecting rod I, driver train I and driver train II, described erecting frame I is fixedly installed, some heat-sealing seats are installed in erecting frame I, some heat-sealing heads are installed in erecting frame II, described heat-sealing head is corresponding one by one with heat-sealing seat, described erecting frame II has connecting portion II, described connecting portion II and connecting rod I are all rotationally connected with eccentric shaft, the axial line that is positioned at connecting portion II institute connecting portion place on described eccentric shaft with on eccentric shaft, be positioned at the axis parallel at connecting rod I institute connecting portion place but do not overlap, described eccentric shaft is fixedly connected with connecting rod II, described connecting rod I be connected with driver train I and by driver train I drive move back and forth so that heat-sealing head near or away from the heat-sealing seat of answering in contrast, described connecting rod II is connected with driver train II and is driven and swung and then drive eccentric shaft to rotate by driver train II, described driver train II is connected in the mouth of driver train I, described driver train I drivening rod I moves back and forth and drives driver train II to move back and forth simultaneously.
As preferably, described driver train I is cylinder I, and the relative erecting frame I of cylinder body of described cylinder I is fixedly installed, rod end is connected with connecting rod I.
As preferably, described driver train II is cylinder II, and the cylinder body of described cylinder II is fixedly connected with the mouth of driver train I, piston rod and connecting rod II are rotationally connected.
As preferably, the piston rod of described cylinder II is connected with connecting rod II by connecting rod III, described connecting rod III and erecting frame I sliding block joint.
As preferably, in described connecting rod III, be arranged with buffering sheath, described buffering sheath one end is against in erecting frame I, the other end is against one end that connecting rod III is connected with connecting rod II, and the one end being connected with connecting rod II in described connecting rod III has for making to cushion the abutting part of sheath butt.
As preferably, described connecting rod I and erecting frame I sliding block joint.
As preferably, in described connecting rod I, be arranged with buffering sheath, described buffering sheath one end is against in erecting frame I, the other end is against one end that connecting rod I is connected with eccentric shaft, and the one end being connected with eccentric shaft in described connecting rod I has for making to cushion the abutting part of sheath butt.
As preferably, described driver train I comprises motor I, guide rod I, screw mandrel I and erecting frame III, the body of described motor I is fixedly installed, mouth is connected with screw mandrel I, and described guide rod I is fixedly installed, and the bearing of trend of described guide rod I is axial consistent with screw mandrel I, and consistent with the moving direction of connecting rod I, described erecting frame III and guide rod I sliding block joint, described erecting frame III is threaded with screw mandrel I, and described connecting rod I is connected with erecting frame III.
As preferably, described driver train II comprises motor II, guide rod II, screw mandrel II and erecting frame IV, the body of described motor II is fixedly connected with driver train I, mouth is connected with screw mandrel II, described guide rod II is fixedly installed, the bearing of trend of described guide rod II is axial consistent with screw mandrel II, and consistent with the moving direction of connecting rod I, described erecting frame IV and guide rod II sliding block joint, described erecting frame IV is threaded with screw mandrel II, and described connecting rod II and erecting frame IV are rotationally connected.
As preferably, the mouth of described driver train I is provided with erecting frame III, and described connecting rod I is by being connected with erecting frame III and then being connected with driver train I.
Beneficial effect:
The longitudinal sealing mechanism of a kind of multiple row bottle placer that the utility model employing technique scheme provides, the situation that power provides step to avoid needing synchronous coordination, thereby the design difficulty of actuating unit reduces greatly, Installation and Debugging work is relatively easy, dismounting is easy to maintenance, and working stability is high.
Accompanying drawing explanation
Fig. 1 is the structural representation of embodiment mono-in the utility model;
Fig. 2 is the front view of Fig. 1;
Fig. 3 is the back view of Fig. 1;
Fig. 4 is the enlarged drawing at A place in Fig. 3;
Fig. 5 is the structural representation of eccentric shaft;
Fig. 6 is the structural representation of embodiment bis-in the utility model.
The specific embodiment
Embodiment mono-:
As shown in Figures 1 to 4, a kind of longitudinal sealing mechanism of multiple row bottle placer, comprise erecting frame I 1, erecting frame II 2, eccentric shaft 6, connecting rod I 7, cylinder I 9 and cylinder II 11, erecting frame I 1 is fixedly mounted in frame or is directly frame itself, some heat-sealing seats 3 are installed in erecting frame I 1, some heat-sealing heads 4 are installed in erecting frame II 2, heat-sealing head 4 is corresponding one by one with heat-sealing seat 3, erecting frame II 2 has connecting portion II 5, as shown in Figure 5, eccentric shaft 6 has axle I 61 and axle II 62, the axis parallel of the axial line of axle I 61 and axle II 62 but do not overlap, connecting portion II 5 is rotationally connected with axle I 61, connecting rod I 7 is rotationally connected with axle II 62, in axle II 62, be fixedly connected with connecting rod II 8, the cylinder body of cylinder I 9 is fixedly mounted in frame, rod end is provided with erecting frame III 10, connecting rod I 7 is connected with erecting frame III 10, the flexible erecting frame III 10 that drives of cylinder I 9 moves back and forth, and then drivening rod I 7 moves back and forth, and then drive erecting frame II 2 to move back and forth, and then drive heat-sealing head 4 near or away from the heat-sealing seat 3 of answering in contrast, the cylinder body of cylinder II 11 is fixedly mounted in erecting frame III 10, piston rod is connected with connecting rod II 8 by connecting rod III 13, connecting rod III 13 is rotationally connected with connecting rod II 8, the flexible drivening rod III 13 of cylinder II 11 moves back and forth and then drivening rod II 8 swings, and then band moving axis II 62 is rotated, and then band moving axis I 61 is around 62 revolution of axle II, and then while driving erecting frame II 2 to move heat-sealing head 4 further near or away from the heat-sealing seat 3 of answering in contrast to realize heat-sealing or homing action.
In the present embodiment, erecting frame I 1, erecting frame II 2 and erecting frame III 10 all adopt platy structure, and heat-sealing seat 3 is in column arranges and equidistantly arranges, corresponding, and heat-sealing head 4 is also in column arranges and equidistantly arranges, connecting rod I 7 adopts four, cylinder I 9, cylinder II 11, connecting rod II 8, connecting rod III 13 and eccentric shaft 6 are two, two eccentric shafts 6 be arranged in parallel, every eccentric shaft 6 has two axle I 61 and two axle II 62, as shown in Figure 5, axle I 61 and axle II 62 intervals arrange, the axial line of two axle I 61 is on same straight line, the axial line of two axle II 62 is on same straight line, four connecting rod I 7 and two connecting rod III 13 are parallel mutually, two connecting rod I 7 wherein, a connecting rod III 13, corresponding one of them eccentric shaft 6 of cylinder II 11 and connecting rod II 8 arranges, other two connecting rod I 7, another one connecting rod III 13, the corresponding another one eccentric shaft 6 of another one cylinder II 11 and another one connecting rod II 8 arranges, every connecting rod I 7 is all rotationally connected with an axle II 62 on the eccentric shaft 6 of corresponding setting with it, each connecting rod III 13 one end connects with corresponding with it cylinder II 11, another connects with corresponding with it connecting rod II 8, this connecting rod II 8 connects with the axle II 62 on corresponding with it eccentric shaft 6, the swaying direction of connecting rod II 8 is axial perpendicular to eccentric shaft 6, connecting portion II 5 is four, wherein two connecting portion II 5 are rotationally connected with respectively two axle I 61 on an eccentric shaft 6 wherein, two other connecting portion II 5 is rotationally connected with respectively two axle I 61 on an other eccentric shaft 6, adopt after this structure, structure is more reasonable on the whole in this longitudinal sealing mechanism, stable in working process.Certainly, eccentric shaft 6 also can adopt other structures, but must guarantee 7 connecting portions of connecting rod I and 13 connecting portions of connecting rod III axis parallel but not on same straight line.
In the present embodiment, the flexible direction of cylinder I 9 and cylinder II 11 is parallel; Connecting rod I 7, connecting rod III 13 all realize the sliding block joint with erecting frame I 1 by being sheathed on erecting frame I 1, and erecting frame I 1 has the trepanning that the piston rod of connecting rod III 13 is passed, and has the trepanning that connecting rod I 7 is passed; Certainly, also can adopt other as the sliding block joint mode of slide block and guide rail cooperation; In connecting rod I 7, be arranged with buffering sheath 15, buffering sheath 15 one end are against in erecting frame I 1, the other end is against one end that connecting rod I 7 is connected with eccentric shaft 6, and the one end being connected with eccentric shaft 6 in connecting rod I 7 has for making to cushion the abutting part 16 of sheath 15 butts; Equally, in connecting rod III 13, be also arranged with buffering sheath 15, buffering sheath 15 one end are against in erecting frame I 1, the other end is against one end that connecting rod III 13 is connected with connecting rod II 8, and the one end being connected with connecting rod II 8 in connecting rod III 13 also has for making to cushion the abutting part 16 of sheath 15 butts; Certainly buffering sheath 15 can also be arranged between erecting frame III 10 and erecting frame I 1.As shown in Figure 4, junction in connecting rod III 13 with connecting rod II 8, connecting rod III 13 has axle III 12, connecting rod II 8 has axis hole 14, connecting rod III 13 coordinates with connecting rod II 8 through axis hole 14 by axle III 12, its central axis hole 14 should adopt slotted hole so that axle III 12 can be in axis hole 14 sway again can perpendicular to its sense of motion upper limit in axis hole 14, like this, when cylinder II 11 is flexible, could drivening rod II 8 swing, otherwise connecting rod II 8 cannot swing.In the present embodiment, also connecting rod II 8 can be fixedly connected with axle I 61, by connecting rod II 8 swinging direct tape splicing moving axis I 61, rotate and then drive 2 motions of adapter plate II.
In the present embodiment, power provides step to avoid needing the situation of synchronous coordination, thereby the design difficulty of actuating unit reduces greatly, Installation and Debugging work is relatively easy, dismounting is easy to maintenance, and working stability is high, and directly adopt cylinder I 9 and cylinder II 11 as actuating unit, relatively simple for structure.
Embodiment bis-:
As shown in Figure 6, structure is basic identical with embodiment mono-, difference is: by cylinder I 9 use motor I 17, guide rod I 18, screw mandrel I 19 and erecting frame V 24 replace, wherein, the body of motor I 17 is fixedly installed in frame, mouth is connected with screw mandrel I 19 by speed reduction gearing, guide rod I 18 is fixedly installed in frame, the bearing of trend of guide rod I 18 is axial consistent with screw mandrel I 19, and consistent with the moving direction of connecting rod I 7, erecting frame V 24 and guide rod I 18 sliding block joints, erecting frame V 24 is threaded with screw mandrel I 19, connecting rod I 7 is connected with erecting frame V 24, erecting frame III 10 is fixedly connected with erecting frame V 24, certainly erecting frame III 10 also can be structure as a whole with erecting frame V 24, by motor I 17, rotate and drive screw mandrel I 19 to rotate and then drive erecting frame V 24 to move along 18 slips of guide rod I and then drivening rod I 7, by cylinder II 11 use motor II 20, guide rod II 21, screw mandrel II 22 and erecting frame IV 23 replace, wherein the body of motor II 20 is fixedly connected with driver train I, mouth is connected by speed reduction gearing with screw mandrel II 22, guide rod II 21 is fixedly installed in erecting frame V 24, certainly also can be located in frame or in erecting frame III 10, the bearing of trend of guide rod II 21 is axial consistent with screw mandrel II 22, and consistent with the moving direction of connecting rod I 7, erecting frame IV 23 and guide rod II 21 sliding block joints, erecting frame IV 23 is threaded with screw mandrel II 22, connecting rod II 8 is rotationally connected with erecting frame IV 23, by motor II 20, rotate and drive screw mandrel II 22 to rotate and then drive erecting frame IV 23 to slide and swing finally to realize drivening rod II 8 along guide rod II 21.
Claims (10)
1. the longitudinal sealing mechanism of a multiple row bottle placer, comprise erecting frame I (1), erecting frame II (2), eccentric shaft (6), connecting rod I (7), driver train I and driver train II, described erecting frame I (1) is fixedly installed, some heat-sealing seats (3) are installed in erecting frame I (1), some heat-sealing heads (4) are installed in erecting frame II (2), described heat-sealing head (4) is corresponding one by one with heat-sealing seat (3), described erecting frame II (2) has connecting portion II (5), described connecting portion II (5) and connecting rod I (7) are all rotationally connected with eccentric shaft (6), the axial line that is positioned at connecting portion II (5) institute connecting portion place on described eccentric shaft (6) with on eccentric shaft (6), be positioned at the axis parallel at connecting rod I (7) institute connecting portion place but do not overlap, described eccentric shaft (6) is fixedly connected with connecting rod II (8), described connecting rod I (7) be connected with driver train I and by driver train I drive move back and forth so that heat-sealing head (4) near or away from the heat-sealing seat (3) of answering in contrast, described connecting rod II (8) is connected with driver train II and is driven and swung and then drive eccentric shaft (6) to rotate by driver train II, it is characterized in that: described driver train II is fixedly connected on the mouth of driver train I, described driver train I drivening rod I (7) drives driver train II to move back and forth when moving back and forth.
2. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 1, it is characterized in that: described driver train I is cylinder I (9), the relative erecting frame I of cylinder body (1) of described cylinder I (9) is fixedly installed, rod end is connected with connecting rod I (7).
3. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 1 and 2, it is characterized in that: described driver train II is cylinder II (11), the cylinder body of described cylinder II (11) is fixedly connected with the mouth of driver train I, piston rod and connecting rod II (8) are rotationally connected.
4. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 3, it is characterized in that: the piston rod of described cylinder II (11) is connected with connecting rod II (8) by connecting rod III (13) described connecting rod III (13) and erecting frame I (1) sliding block joint.
5. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 4, it is characterized in that: in described connecting rod III (13), be arranged with buffering sheath (15), described buffering sheath (15) one end is against in erecting frame I (1), the other end is against one end that connecting rod III (13) is connected with connecting rod II (8), and the upper one end being connected with connecting rod II (8) of described connecting rod III (13) has for making to cushion the abutting part (16) of sheath (15) butt.
6. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 1 and 2, is characterized in that: described connecting rod I (7) and erecting frame I (1) sliding block joint.
7. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 6, it is characterized in that: in described connecting rod I (7), be arranged with buffering sheath (15), described buffering sheath (15) one end is against in erecting frame I (1), the other end is against one end that connecting rod I (7) is connected with eccentric shaft (6), and the upper one end being connected with eccentric shaft (6) of described connecting rod I (7) has for making to cushion the abutting part (16) of sheath (15) butt.
8. the longitudinal sealing mechanism of a kind of multiple row bottle placer according to claim 1, it is characterized in that: described driver train I comprises motor I (17), guide rod I (18), screw mandrel I (19) and erecting frame V (24), the body of described motor I (17) is fixedly installed, mouth is connected with screw mandrel I (19), described guide rod I (18) is fixedly installed, the bearing of trend of described guide rod I (18) is axial consistent with screw mandrel I (19), and consistent with the moving direction of connecting rod I (7), described erecting frame V (24) and guide rod I (18) sliding block joint, described erecting frame V (24) is threaded with screw mandrel I (19), described connecting rod I (7) is connected with erecting frame V (24).
9. according to the longitudinal sealing mechanism of a kind of multiple row bottle placer described in claim 1 or 2 or 8, it is characterized in that: described driver train II comprises motor II (20), guide rod II (21), screw mandrel II (22) and erecting frame IV (23), the body of described motor II (20) is fixedly connected with driver train I, mouth is connected with screw mandrel II (22), described guide rod II (21) is fixedly installed, the bearing of trend of described guide rod II (21) is axial consistent with screw mandrel II (22), and consistent with the moving direction of connecting rod I (7), described erecting frame IV (23) and guide rod II (21) sliding block joint, described erecting frame IV (23) is threaded with screw mandrel II (22), described connecting rod II (8) is rotationally connected with erecting frame IV (23).
10. according to the longitudinal sealing mechanism of a kind of multiple row bottle placer described in claim 1 or 2 or 8, it is characterized in that: the mouth of described driver train I is provided with erecting frame III (10), described connecting rod I (7) is by being connected with erecting frame III (10) and then being connected with driver train I.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420223659.9U CN203832836U (en) | 2014-04-30 | 2014-04-30 | Longitudinally-sealing mechanism for multi-row filling machine |
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Application Number | Priority Date | Filing Date | Title |
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CN201420223659.9U CN203832836U (en) | 2014-04-30 | 2014-04-30 | Longitudinally-sealing mechanism for multi-row filling machine |
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CN203832836U true CN203832836U (en) | 2014-09-17 |
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CN201420223659.9U Withdrawn - After Issue CN203832836U (en) | 2014-04-30 | 2014-04-30 | Longitudinally-sealing mechanism for multi-row filling machine |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103979162A (en) * | 2014-04-30 | 2014-08-13 | 杭州中亚机械股份有限公司 | Vertical sealing mechanism of multi-column filling machine |
CN105523236A (en) * | 2015-09-14 | 2016-04-27 | 杭州长川科技股份有限公司 | Hot-pressing carrier tape sealing mechanism |
CN109367906A (en) * | 2018-08-31 | 2019-02-22 | 安徽正远包装科技有限公司 | A kind of back seal structure of potato powder item column packing machine |
-
2014
- 2014-04-30 CN CN201420223659.9U patent/CN203832836U/en not_active Withdrawn - After Issue
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103979162A (en) * | 2014-04-30 | 2014-08-13 | 杭州中亚机械股份有限公司 | Vertical sealing mechanism of multi-column filling machine |
CN103979162B (en) * | 2014-04-30 | 2016-03-23 | 杭州中亚机械股份有限公司 | A kind of longitudinal sealing mechanism of multiple row bottle placer |
CN105523236A (en) * | 2015-09-14 | 2016-04-27 | 杭州长川科技股份有限公司 | Hot-pressing carrier tape sealing mechanism |
CN105523236B (en) * | 2015-09-14 | 2017-09-22 | 杭州长川科技股份有限公司 | Hot pressing carries sealing mechanism |
CN109367906A (en) * | 2018-08-31 | 2019-02-22 | 安徽正远包装科技有限公司 | A kind of back seal structure of potato powder item column packing machine |
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Granted publication date: 20140917 Effective date of abandoning: 20160323 |
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C25 | Abandonment of patent right or utility model to avoid double patenting |