CN104150286B - A kind of have the sebific duct wind2 automatically receiving footpath function - Google Patents

A kind of have the sebific duct wind2 automatically receiving footpath function Download PDF

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Publication number
CN104150286B
CN104150286B CN201410311746.4A CN201410311746A CN104150286B CN 104150286 B CN104150286 B CN 104150286B CN 201410311746 A CN201410311746 A CN 201410311746A CN 104150286 B CN104150286 B CN 104150286B
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Prior art keywords
shifting board
sebific duct
assembly
connecting rod
supporting plate
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CN104150286A (en
Inventor
应永华
张通才
宋北方
王伟
肖洪顶
胡耀辉
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Ningbo Long Wall Fluid Kinetic Sci Tech Co Ltd
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Ningbo Long Wall Fluid Kinetic Sci Tech Co Ltd
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Abstract

The present invention discloses a kind of sebific duct wind2 with receipts footpath function automatically, comprise fixing baffle plate, bearing assembly and shifting board assembly, fixing baffle plate and shifting board assembly are positioned at the both sides of bearing assembly, shifting board assembly is made up of multiple shifting board, shifting board is turning under driving mechanisms control, bearing assembly is made up of in annular equally distributed supporting plate multiple, the inner side of bearing assembly is provided with anchor, automatic Shou Jing mechanism has been set between each supporting plate and anchor, when shifting board turn to level, when sebific duct moves to the direction deviating from fixed stop plate by external force effect, frictional force drives supporting plate horizontal shift between sebific duct and supporting plate, supporting plate is drawn close to the center axis of bearing assembly under the guiding of automatic Shou Jing mechanism simultaneously, when advantage unloads sebific duct from this kind of wind2, the external diameter of a support component can reduce automatically along with moving horizontally of sebific duct, so that sebific duct can easily be unloaded.

Description

A kind of have the sebific duct wind2 automatically receiving footpath function
Technical field
The present invention relates to sebific duct and manufacture field, especially relate to a kind of sebific duct wind2 with receipts footpath function automatically.
Background technology
In traditional sebific duct Production Flow Chart, after the sebific duct after shaping needs to carry out winding operation with wind2, then carry out enlacement packaging, to facilitate depositing and transporting of sebific duct.
Existing up-coiler comprises support and wind2, the applicant is in have submitted a patent of invention on the same day, the name of this patent is called a kind of sebific duct wind2, this wind2 comprises fixing baffle plate, column body and shifting board assembly, fixing baffle plate and shifting board assembly lay respectively at the both sides of column body, shifting board assembly is made up of in annular equally distributed shifting board multiple, and shifting board can overturn under driving mechanisms control;
When staff uses this device to carry out winding work, all shifting boards are driven to turn in same perpendicular by driving mechanism, now shifting board assembly is parallel with fixing baffle plate, one end of column body is resisted against on fixing baffle plate, the other end of column body is resisted against on shifting board assembly, shifting board assembly, fixing baffle plate and column body form ring groove, and up-coiler drives this device to rotate by rotating mechanism, thus sebific duct one enclose one and encloses the land and be wound in ring groove;
After completing the winding work of sebific duct, next step to be unloaded from wind2 by sebific duct, staff can drive all shifting boards to turn to level by driving mechanism, all shifting boards surround the accommodating component of a cylinder shape, the external diameter of accommodating component is less than or equal to the external diameter of column body, now the outside of sebific duct loses the stop of shifting board, and sebific duct can unload in the horizontal direction from column body.
But there is following defect in such wind2: when up-coiler carries out winding work, in order to make sebific duct arrangement neat, sebific duct can be strained exceptionally straight by staff, when wind2 rotates, sebific duct one encloses one and encloses the land on the outside surface being layered on column body, the outside surface of column body can be applied a pressure by the sebific duct of tension, when sebific duct is paved with the outside surface of column body, follow-up sebific duct can continue to be wound on the outside of the sebific duct completing winding, the sebific duct of inner side can be applied pressure again by the sebific duct in outside, the pressure superposition that column body is applied by this pressure and inner side sebific duct, the bundled sebific duct that makes finally to reel tightly is wound on the outside of column body,
When sebific duct is applied a reactive force horizontally outward by staff, producing great frictional force between column body and sebific duct, this work unloaded from column body with regard to causing sebific duct becomes very difficult.
Summary of the invention
Technical problem to be solved by this invention is to provide a kind of sebific duct wind2 with receipts footpath function automatically, when unloading sebific duct from this kind of wind2, the external diameter propping up support component can reduce automatically along with moving horizontally of sebific duct, so that sebific duct can easily be unloaded.
The present invention solves the problems of the technologies described above the technical scheme adopted: a kind of have the sebific duct wind2 automatically receiving footpath function, comprise fixing baffle plate, bearing assembly and shifting board assembly, described fixing baffle plate and described shifting board assembly are positioned at the both sides of described bearing assembly, described shifting board assembly is made up of multiple shifting board, described shifting board is turning under driving mechanisms control, described bearing assembly is made up of in annular equally distributed supporting plate multiple, the inner side of described bearing assembly is provided with anchor, supporting plate described in each and between described anchor, automatic Shou Jing mechanism has been set,
When all shifting boards turn to level, when sebific duct moves to the direction deviating from fixed stop plate by external force effect, frictional force drives supporting plate horizontal shift between described sebific duct and described supporting plate, described supporting plate is drawn close to the center axis of bearing assembly under the guiding of described automatic Shou Jing mechanism simultaneously.
Described automatic Shou Jing mechanism comprises two that are arranged at anchor front end and anchor rear end respectively and automatically receives footpath assembly, the slide shaft that described automatic receipts footpath assembly comprises Connection Block and is arranged on described supporting plate, described Connection Block is fixedly installed on described anchor, described Connection Block has tipper, described tipper is taking the one end near fixing baffle plate as initiating terminal and towards the center Axis Extension of bearing assembly, and described slide shaft is positioned at described tipper;
When described shifting board assembly is parallel with described fixing baffle plate, described slide shaft is positioned at the initiating terminal of described tipper, and one end of described supporting plate is resisted against on described shifting board;
When all shifting boards turn to level, described sebific duct moves horizontally when leaving described support component, and described slide shaft moves to the terminal of described tipper;
In this structure, when sebific duct is by the effect of horizontal external, supporting plate moves horizontally outward by frictional force effect simultaneously, owing to slide shaft is positioned at tipper, can draw close to the center axis of a support component by the guiding of tipper when slide shaft moves laterally simultaneously, the center axis that supporting plate follows slip axial support assembly is drawn close, so that the external diameter of a support component reduces;
After completing the unloading of sebific duct, staff shifting board is overturn again be reset to parallel with fixing baffle plate, in the process of fixing baffle plate turning with the end thereof contacts of supporting plate and promote supporting plate to draw close to fixing baffle plate, slide shaft moves to the initiating terminal of tipper along tipper;
Simultaneously owing to supporting plate is connected with anchor with the automatic receipts footpath assembly being positioned at anchor rear end by being positioned at the automatic receipts footpath assembly of anchor front end, this makes this structure more firm.
The interior side of described supporting plate has been wholely set two pieces of web plates, the parallel setting of web plate described in two pieces is also spaced a distance, described Connection Block is between the web plate described in two pieces, the two ends of described slide shaft are located on the web plate described in two pieces respectively, in this structure, supporting plate is positioned at the surface of Connection Block, and the two ends of slide shaft are connected with two pieces of web plates respectively, and this makes supporting plate follow when slide shaft moves firm stable more along tipper.
Described driving mechanism comprises cylinder, pedestal and multiple connecting rod assembly, described cylinder is arranged on the inner side of described anchor, described pedestal is arranged on the output shaft of described cylinder, and the shifting board of each is connected with described pedestal by described connecting rod assembly;
When pedestal described in described cylinder is released by output shaft, described shifting board assembly is parallel with described fixing baffle plate;
When described cylinder draws described pedestal over to one's side by output shaft, described shifting board turn to level;
In this structure, can controlling output shaft drivening rod assembly by cylinder, connecting rod assembly drives shifting board upset, so that this device in winding state and can unload conversion between tubulose state.
Described anchor is provided with the pivoted connection end corresponding with described connecting rod assembly, described connecting rod assembly comprises first connecting rod and second connecting rod, one end of described first connecting rod is coupling on described pedestal, the other end of described first connecting rod and one end of described second connecting rod are coupling, the bar body of described second connecting rod is coupling one to one on described pivoted connection end, and described shifting board is arranged on the other end of described second connecting rod;
When pedestal moves, pedestal drives first connecting rod, and first connecting rod drives second connecting rod to be that rotation center rotates and drives shifting board to overturn taking pivoted connection end.
Described pedestal is one piece of flange dish, described flange dish is parallel with described fixing baffle plate, described output shaft is fixedly connected with the center of described flange dish, it is provided with multiple be coupling seat corresponding with connecting rod assembly to the even interval of edge of described flange dish, described first connecting rod is coupling correspondingly and is coupling on seat described, flange dish is provided with the be coupling seat corresponding with connecting rod assembly, multiple connecting rod assembly can be driven when flange dish moves to operate so that driving mechanism is more stable.
Described shifting board has blocking surface, when described cylinder releases pedestal by output shaft, described shifting board is divergent shape distribution, all blocking surfaces are positioned at same perpendicular, the center axis of the bearing assembly described in length direction sensing of all blocking surfaces, one end of described supporting plate is resisted against on described blocking surface;
Under this state, bearing assembly is clamped in centre by shifting board assembly and fixing baffle plate, and shifting board assembly, fixing baffle plate and bearing assembly form ring groove, and in the process of winding sebific duct, shifting board assembly and fixing baffle plate are possible to prevent sebific duct slippage.
Described shifting board has upset face, described upset face is towards the opposite with described blocking surface, when described cylinder draws pedestal over to one's side by output shaft, described upset turn to level towards the direction deviating from fixing baffle plate, and all upsets are facing to the center axis of described bearing assembly;
Under this state, all shifting boards turn to level, and the external diameter of the accommodating component that shifting board forms is less than or equal to the external diameter of bearing assembly, and the outside of the bundled sebific duct that reels loses the stop of shifting board, such that it is able to carry out unloading pipe work.
Compared with prior art, it is an advantage of the current invention that between supporting plate and anchor, to be provided with automatic Shou Jing mechanism, in the process that sebific duct is removed, the frictional force drives supporting plate of sebific duct and supporting plate moves horizontally, slide shaft moves to the terminal of tipper from the initiating terminal of tipper, all supporting plates are followed slide shaft and are drawn close to the center axis of bearing assembly, so that the external diameter of bearing assembly reduces, between sebific duct and bearing assembly no longer tight, it is possible to easily from bearing assembly, unload sebific duct.
Accompanying drawing explanation
Fig. 1 is the sectional view of the present invention when receiving footpath state;
Fig. 2 is the sectional view of the present invention when not receiving footpath state;
Fig. 3 is the local structure schematic diagram of the present invention when receiving footpath state;
Fig. 4 is the local structure schematic diagram of the present invention when not receiving footpath state;
Fig. 5 is the stereographic map of the present invention;
Fig. 6 is the stereographic map of the present invention when installing on the winder.
Embodiment
Below in conjunction with accompanying drawing embodiment, the present invention is described in further detail.
Embodiment: a kind of have the sebific duct wind2 automatically receiving footpath function, comprise fixing baffle plate 1, bearing assembly 2 and shifting board assembly 3, fixing baffle plate 1 and shifting board assembly 3 are positioned at the both sides of bearing assembly 2, shifting board assembly 3 is made up of multiple shifting board 4, shifting board 4 is turning under driving mechanism 5 controls, bearing assembly 2 is made up of in annular equally distributed supporting plate 6 multiple, the inner side of bearing assembly 2 is provided with anchor 7, has arranged automatic Shou Jing mechanism 8 between each supporting plate 6 and anchor 7;
When all shifting boards 4 turn to level, when sebific duct moves to the direction deviating from fixed stop plate 1 by external force effect, frictional force drives supporting plate 6 horizontal shift between sebific duct and supporting plate 6, supporting plate 6 is drawn close to the center axis 9 of bearing assembly 2 under the guiding of automatic Shou Jing mechanism 8 simultaneously.
In the present embodiment, automatic Shou Jing mechanism 8 comprises two that are arranged at anchor 7 front end and anchor 7 rear end respectively and automatically receives footpath assembly, automatically the slide shaft 11 that footpath assembly comprises Connection Block 10 and is arranged on supporting plate 6 is received, Connection Block 10 is fixedly installed on anchor 7, Connection Block 10 has tipper 12, tipper 12 extends taking the one end near fixing baffle plate 1 as initiating terminal and towards the center axis 9 of bearing assembly 2, and slide shaft 11 is positioned at tipper 12;
When shifting board assembly 3 is parallel with fixing baffle plate 1, slide shaft 11 is positioned at the initiating terminal of tipper 12, and one end of supporting plate 6 is resisted against on shifting board 4;
When all shifting boards 4 turn to level, sebific duct moves horizontally when leaving support component 2, and slide shaft 11 moves to the terminal of tipper 12;
In this structure, when sebific duct is by the effect of horizontal external, supporting plate 6 moves horizontally outward by frictional force effect simultaneously, owing to slide shaft 11 is positioned at tipper 12, can draw close to the center axis 9 of a support component 2 by the guiding of tipper 12 when slide shaft 11 moves laterally simultaneously, supporting plate 6 is followed slide shaft 11 and is drawn close to the center axis 9 of a support component 2, so that the external diameter of a support component 2 reduces;
After completing the unloading of sebific duct, staff shifting board 4 is overturn again be reset to parallel with fixing baffle plate 1, in the process that fixing baffle plate 1 overturns with the end thereof contacts of supporting plate 6 and promote supporting plate 6 to draw close to fixing baffle plate 1, slide shaft 11 moves to the initiating terminal of tipper 12 along tipper 12;
Simultaneously owing to supporting plate 6 is connected with anchor 7 with the automatic receipts footpath assembly being positioned at anchor 7 rear end by being positioned at the automatic receipts footpath assembly of anchor 7 front end, this makes this structure more firm.
In the present embodiment, the interior side of supporting plate 6 has been wholely set two pieces of web plates 13, two pieces of parallel settings of web plate 13 are also spaced a distance, Connection Block 10 is between two pieces of web plates 13, the two ends of slide shaft 11 are located on two pieces of web plates 13 respectively, and in this structure, supporting plate 6 is positioned at the surface of Connection Block 10, the two ends of slide shaft 11 are connected with two pieces of web plates 13 respectively, and this makes supporting plate 6 follow when slide shaft 11 moves firm stable more along tipper 12.
In the present embodiment, driving mechanism 5 comprises cylinder 14, pedestal 15 and multiple connecting rod assembly 16, and cylinder 14 is arranged on the inner side of anchor 7, and pedestal 15 is arranged on the output shaft of cylinder 14, and the shifting board 4 of each is connected with pedestal 15 by connecting rod assembly 16;
When cylinder 14 releases pedestal 15 by output shaft, shifting board assembly 3 is parallel with fixing baffle plate 1;
When cylinder 14 draws pedestal 15 over to one's side by output shaft, shifting board 4 turn to level;
In this structure, can controlling output shaft drivening rod assembly 16 by cylinder 14, connecting rod assembly 16 drives shifting board 4 to overturn, so that this device in winding state and can unload conversion between tubulose state.
In the present embodiment, anchor 7 is provided with the pivoted connection end 17 corresponding with connecting rod assembly 16, connecting rod assembly 16 comprises first connecting rod 18 and second connecting rod 19, one end of first connecting rod 18 is coupling on pedestal 15, the other end of first connecting rod 18 and one end of second connecting rod 19 are coupling, the bar body of second connecting rod 19 is coupling one to one on pivoted connection end 17, and shifting board 4 is arranged on the other end of second connecting rod 19;
When pedestal 15 moves, pedestal 15 drives first connecting rod 18, and first connecting rod 18 drives second connecting rod 19 to rotate taking pivoted connection end 17 as rotation center and drive shifting board 4 to overturn.
In the present embodiment, pedestal 15 is one piece of flange dish, flange dish is parallel with fixing baffle plate 1, output shaft is fixedly connected with the center of flange dish, being provided with to the even interval of the edge of flange dish multiple be coupling seat 17 corresponding with connecting rod assembly 16, first connecting rod 18 is coupling correspondingly and is being coupling on seat 17, and flange dish is provided with the be coupling seat 17 corresponding with connecting rod assembly 16, multiple connecting rod assembly 16 can be driven when flange dish moves to operate so that driving mechanism is more stable.
In the present embodiment, shifting board 4 has blocking surface 20, when cylinder 14 releases pedestal 15 by output shaft, shifting board 4 is distribution in divergent shape, all blocking surfaces 20 are positioned at same perpendicular, the length direction of all blocking surfaces 20 points to the center axis 9 of bearing assembly 2, and one end of supporting plate 6 is resisted against on blocking surface 20;
Under this state, bearing assembly 2 is clamped in centre by shifting board assembly 3 and fixing baffle plate 1, shifting board assembly 3, fixing baffle plate 1 and bearing assembly 2 form ring groove, and in the process of winding sebific duct, shifting board assembly 3 and fixing baffle plate 1 are possible to prevent sebific duct slippage.
In the present embodiment, shifting board 4 has upset face 21, and upset face 21 is towards the opposite with blocking surface 20, when cylinder 14 draws pedestal 15 over to one's side by output shaft, upset face 21 turn to level to the direction deviating from fixed stop plate 1, and all upset faces 21 are towards the center axis 9 of bearing assembly 2;
Under this state, all shifting boards 4 turn to level, and the external diameter of the accommodating component that shifting board 4 forms is less than or equal to the external diameter of bearing assembly 2, and the outside of the bundled sebific duct that reels loses the stop of shifting board 4, such that it is able to carry out unloading pipe work.
In the process that sebific duct is removed, the frictional force drives supporting plate 6 of sebific duct and supporting plate 6 moves horizontally, slide shaft 11 moves to the terminal of tipper 12 from the initiating terminal of tipper 12, all supporting plates 6 are followed slide shaft 11 and are drawn close to the center axis 9 of bearing assembly 2, so that the external diameter of bearing assembly 2 reduces, between sebific duct and bearing assembly 2 no longer tight, it is possible to easily from bearing assembly 2, unload sebific duct.

Claims (6)

1. one kind has the sebific duct wind2 automatically receiving footpath function, comprise fixing baffle plate, bearing assembly and shifting board assembly, described fixing baffle plate and described shifting board assembly are positioned at the both sides of described bearing assembly, described shifting board assembly is made up of multiple shifting board, described shifting board is turning under driving mechanisms control, described bearing assembly is made up of in annular equally distributed supporting plate multiple, the inner side of described bearing assembly is provided with anchor, supporting plate described in each and between described anchor, automatic Shou Jing mechanism has been set,
It is characterized in that described automatic Shou Jing mechanism comprises two that are arranged at anchor front end and anchor rear end respectively and automatically receives footpath assembly, the slide shaft that described automatic receipts footpath assembly comprises Connection Block and is arranged on described supporting plate, described Connection Block is fixedly installed on described anchor, described Connection Block has tipper, described tipper is taking the one end near fixing baffle plate as initiating terminal and towards the center Axis Extension of bearing assembly, and described slide shaft is positioned at described tipper;
When described shifting board assembly is parallel with described fixing baffle plate, described slide shaft is positioned at the initiating terminal of described tipper, and one end of described supporting plate is resisted against on described shifting board;
When all shifting boards turn to level, when sebific duct moves to the direction deviating from fixed stop plate by external force effect, frictional force drives supporting plate horizontal shift between described sebific duct and described supporting plate, described supporting plate is drawn close to the center axis of bearing assembly under the guiding of described automatic Shou Jing mechanism simultaneously, described sebific duct moves horizontally when leaving described bearing assembly, described slide shaft moves to the terminal of described tipper
Described driving mechanism comprises cylinder, pedestal and multiple connecting rod assembly, described cylinder is arranged on the inner side of described anchor, described pedestal is arranged on the output shaft of described cylinder, and the shifting board of each is connected with described pedestal by described connecting rod assembly;
When pedestal described in described cylinder is released by output shaft, described shifting board assembly is parallel with described fixing baffle plate;
When described cylinder draws described pedestal over to one's side by output shaft, described shifting board turn to level.
2. a kind of sebific duct wind2 with receipts footpath function automatically according to claim 1, it is characterized in that the interior side of described supporting plate has been wholely set two pieces of web plates, the parallel setting of web plate described in two pieces is also spaced a distance, described Connection Block is between the web plate described in two pieces, and the two ends of described slide shaft are located on the web plate described in two pieces respectively.
3. a kind of sebific duct wind2 with receipts footpath function automatically according to claim 1, it is characterized in that described anchor is provided with the pivoted connection end corresponding with described connecting rod assembly, described connecting rod assembly comprises first connecting rod and second connecting rod, one end of described first connecting rod is coupling on described pedestal, the other end of described first connecting rod and one end of described second connecting rod are coupling, the bar body of described second connecting rod is coupling one to one on described pivoted connection end, and described shifting board is arranged on the other end of described second connecting rod.
4. a kind of sebific duct wind2 with receipts footpath function automatically according to claim 3, it is characterized in that described pedestal is one piece of flange dish, described flange dish is parallel with described fixing baffle plate, described output shaft is fixedly connected with the center of described flange dish, being provided with multiple be coupling seat corresponding with connecting rod assembly to the even interval of edge of described flange dish, described first connecting rod is coupling correspondingly and is coupling on seat described.
5. a kind of sebific duct wind2 with receipts footpath function automatically according to claim 1, it is characterized in that described shifting board has blocking surface, when described cylinder releases pedestal by output shaft, described shifting board is divergent shape distribution, all blocking surfaces are positioned at same perpendicular, the center axis of the bearing assembly described in length direction sensing of all blocking surfaces, one end of described supporting plate is resisted against on described blocking surface.
6. a kind of sebific duct wind2 with receipts footpath function automatically according to claim 5; it is characterized in that described shifting board has upset face; described upset face is towards the opposite with described blocking surface; when described cylinder draws pedestal over to one's side by output shaft; described upset turn to level towards the direction deviating from fixing baffle plate, and all upsets are facing to the center axis of described bearing assembly.
CN201410311746.4A 2014-07-02 2014-07-02 A kind of have the sebific duct wind2 automatically receiving footpath function Active CN104150286B (en)

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