CN218756233U - Aramid fiber spinning assembly - Google Patents
Aramid fiber spinning assembly Download PDFInfo
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- CN218756233U CN218756233U CN202222829520.6U CN202222829520U CN218756233U CN 218756233 U CN218756233 U CN 218756233U CN 202222829520 U CN202222829520 U CN 202222829520U CN 218756233 U CN218756233 U CN 218756233U
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- backup pad
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Abstract
The utility model discloses an aramid fiber spinning subassembly, an adopt equipment of aramid fiber spinning, including the front end backup pad, the front end backup pad rear side is rotated and is installed and rotate spinning wheel, and rotate spinning wheel opposite side and install the rear end backup pad, rear end backup pad rear side welding has top mounting panel and bottom mounting panel, top driving motor is installed to top mounting panel one side, and top driving motor opposite side installs driving pulley, the spinning revolving rack is installed to the driving pulley other end, and the driving pulley outside installs limit drive belt, the spinning standing groove has been seted up in the limit drive belt outside, the welding of front end backup pad top has the spinning to place the board, and front end backup pad one side installs multi-rod actuating mechanism, the running-board is installed to multi-rod actuating mechanism bottom, and install in inside mounting bracket one side in the running-board outside. The utility model provides a spinning machine have can't realize multi-thread spinning simultaneously, the easy dislocation problem of spinning in-process spinning.
Description
Technical Field
The utility model relates to a spinning field especially relates to an aramid fiber spinning subassembly.
Background
The spinning machine can twist a plurality of animal and plant fibers together to form threads or yarns, the threads or yarns can be used for weaving cloth, and the current spinning machine has two types of manual driving and motor driving.
The existing spinning machine has the problem that multi-thread spinning cannot be realized simultaneously.
The applicant has found that the following problems exist in practical use: the spinning line is easy to be misplaced in the spinning process of the spinning machine.
Therefore, it is necessary to provide an aramid spinning assembly to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that, the above-mentioned defect to prior art is directed against, an aramid fiber spinning subassembly is provided, including the front end backup pad, the front end backup pad rear side is rotated and is installed and rotate spinning wheel, and rotate spinning wheel opposite side and install the rear end backup pad, rear end backup pad rear side welding has top mounting panel and bottom mounting panel, top driving motor is installed to top mounting panel one side, and the top driving motor opposite side installs driving pulley, the spinning revolving rack is installed to the driving pulley other end, and the driving pulley outside installs limit drive belt, the spinning standing groove has been seted up in the limit drive belt outside, the welding of front end backup pad top has the spinning to place the board, and front end backup pad installs many pole actuating mechanism in one side, the running-board is installed to many pole actuating mechanism bottom, and install in inside mounting bracket one side in the running-board outside. The utility model provides a spinning machine exist can't realize multi-thread spinning simultaneously, the easy dislocation problem of spinning among the spinning process.
In order to achieve the above purpose, the technical scheme of the utility model is that: the utility model provides an aramid fiber spinning subassembly, includes the front end backup pad, the front end backup pad rear side is rotated and is installed and rotate spinning wheel, and rotates spinning wheel opposite side and install the rear end backup pad, rear end backup pad rear side welding has top mounting panel and bottom mounting panel, top driving motor is installed to top mounting panel one side, and top driving motor opposite side installs driving pulley, the spinning revolving rack is installed to the driving pulley other end, and installs limit drive belt in the driving pulley outside, the spinning standing groove has been seted up in the limit drive belt outside, front end backup pad top welding has the spinning to place the board, and installs many pole actuating mechanism in front end backup pad one side, the running-board is installed to many pole actuating mechanism bottom, and the running-board outside installs in inside mounting bracket one side, spinning wheel driving motor is installed to bottom mounting panel one side, has the multi-thread spinning simultaneously, advantages such as the non-dislocation of spinning in-process silk thread.
Further setting, driving coupling is installed to top driving motor one side, the driving pulley inboard is equipped with the transmission main shaft, and transmission main shaft and driving coupling cooperation installation, can realize the rotation of spinning revolving rack.
Further setting, the inboard welding of rear end backup pad has epitaxial mounting bracket, and it is fixed with inside mounting bracket that the inboard side of epitaxial mounting bracket passes through side set screw, can realize the assembly of inside mounting bracket.
And a pedal connecting steel wire is arranged at one end of the pedal, and the other side of the pedal connecting steel wire is fixedly connected with the multi-rod driving mechanism, so that the power input of manual spinning can be realized.
Further, the spinning hook connecting frame is welded on the outer side of the spinning rotating frame, the spinning auxiliary frame is welded on the end portion of the spinning rotating frame, and multi-thread spinning can be achieved.
Further setting up, the spinning standing groove has been seted up to the spacing drive belt outside, can protect the smooth transportation of spinning.
Further setting, many pole actuating mechanism includes first actuating lever, and the middle part connecting rod is installed to first actuating lever tip, the second actuating lever is installed to middle part connecting rod opposite side, the tip quarter butt is installed to middle part connecting rod opposite side, can realize rotating the biasing rotation of spinning wheel.
Further setting, the tip quarter butt opposite side is installed through fixed subassembly and rotation spinning wheel cooperation, can realize rotating the manpower drive of spinning wheel.
Compared with the prior art, the utility model provides a pair of aramid fiber spinning subassembly has following beneficial effect:
the utility model provides an aramid fiber spinning subassembly, adopt parts such as board are placed in spacing drive belt and spinning, in order to improve the efficiency of spinning, this scheme adopts the manpower to add electronic dual power driven rotation spinning wheel and rotates the drive, install spacing drive belt and spinning standing groove in the outside of rotating the spinning wheel simultaneously, can place the silk thread in the spinning standing groove, transmission through spacing drive belt, it places the same height of board to transport to the spinning, the user links many spinning branches with the hook of many spinning respectively in the even frame of spinning hook of difference this moment, spinning when can realizing the multithreading along with the rotation of spinning revolving rack, the efficiency of spinning is improved, the spinning machine has been solved and has had the technical problem that can't realize multi-thread spinning simultaneously.
The utility model provides an aramid fiber spinning subassembly, adopt parts such as spinning hook even frame and spinning revolving rack, in order to prevent the spinning in-process, the mutual knot of silk thread, adopt in this scheme to wait spaced spinning hook even frame side by side, and install the spinning auxiliary frame at the tip of spinning revolving rack, can place a silk thread or many silk threads on the spinning auxiliary frame temporarily at the spinning in-process, close top driving motor and spinning wheel driving motor simultaneously, the man power foot is stepped on and the hand mode is adjusted into the fast and slow degree of silk, slowly make up the silk thread, the running-board is stepped on to the foot at this in-process, connect the steel wire through the footboard and swing with first actuating lever and second actuating lever, realize that the tip quarter butt drives the rotation that rotates the spinning wheel, and then realize the slow rotation of spinning standing groove, the technical problem of the easy dislocation of spinning in the spinning machine spinning in-process has been solved.
Drawings
Fig. 1 is a schematic structural diagram of a preferred embodiment of an aramid fiber spinning assembly provided by the present invention;
FIG. 2 is a front view of the spinning assembly of the present invention;
figure 3 is an isometric view of the spin pack assembly of the present invention;
FIG. 4 is a partial view of the spinning turret of the present invention;
fig. 5 is a partial view of the multi-rod driving mechanism of the present invention.
Reference numbers in the figures: 1. a top drive motor; 101. a drive coupling; 102. a top mounting plate; 2. limiting the transmission belt; 3. rotating the spinning wheel; 4. a front end support plate; 5. a rear end support plate; 501. an epitaxial mounting frame; 6. side fixing screws; 7. an inner mounting bracket; 8. a foot pedal; 801. the pedal is connected with a steel wire; 9. a multi-bar drive mechanism; 901. a first drive lever; 902. a second drive lever; 903. a middle connecting rod; 904. a short end bar; 905. a fixing assembly; 10. a spinning placing plate; 11. spinning and rotating; 1101. spinning hook connecting frames; 1102. a spinning auxiliary frame; 12. a drive pulley; 1201. a transmission main shaft; 13. a spinning placing groove; 14. a spinning wheel driving motor; 1401. and (7) mounting a bottom mounting plate.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Exemplary embodiments of the present invention are shown in the drawings.
The first embodiment is as follows:
as shown in fig. 1, the utility model discloses an aramid fiber spinning subassembly, including front end backup pad 4, 4 rear sides of front end backup pad are rotated and are installed rotation spinning wheel 3, and rotate spinning wheel 3 opposite side and install rear end backup pad 5, rear end backup pad 5 rear side welding has top mounting panel 102 and bottom mounting panel 1401, top driving motor 1 is installed to top mounting panel 102 one side, and top driving motor 1 opposite side installs driving pulley 12, driving pulley 12 installs the other end spinning revolving rack 11, and driving pulley 12 installs limit drive belt 2 in the outside, spinning standing groove 13 has been seted up in the 2 outsides of limit drive belt, the welding of front end backup pad 4 top has spinning standing plate 10, and front end backup pad 4 one side installs multi-rod actuating mechanism 9, running-board 8 is installed to multi-rod actuating mechanism 9 bottom, and the running-board 8 outside is installed in inside mounting bracket 7 one side, multi-thread simultaneous spinning has, advantages such as the spinning is not misplaced to the spinning in-process silk.
As shown in fig. 2, a driving coupling 101 is installed at one side of the top driving motor 1; the spinning hooking frame 1101 is welded on the outer side of the spinning rotating frame 11, the spinning auxiliary frame 1102 is welded on the end portion of the spinning rotating frame 11, and multi-thread spinning can be achieved.
As an optional solution, in an embodiment of the present invention, as shown in fig. 3, a spinning wheel driving motor 14 is installed on one side of the bottom mounting plate 1401; 5 inboard welding of rear end backup pad has epitaxial mounting bracket 501, and the mounting bracket 501 inboard of extending is fixed with inside mounting bracket 7 through side set screw 6, can realize inside mounting bracket 7's assembly.
In the implementation, in order to improve the efficiency of spinning, this scheme adopts manpower and electronic dual power driven rotation spinning wheel 3 to rotate the drive, install spacing drive belt 2 and spinning standing groove 13 in the outside of rotation spinning wheel 3 simultaneously, can place the silk thread in spinning standing groove 13, through spacing drive belt 2's transmission, transport to spinning and place board 10 same height, the user links to each other many spinning separately in different spinning hooking frame 1101 this moment, can realize the simultaneous spinning of multithread along with the rotation of spinning revolving rack 11, the efficiency of spinning has been improved.
Example two:
as shown in fig. 4, on the basis of the first embodiment, the utility model provides a technical solution: a transmission main shaft 1201 is assembled on the inner side of the transmission belt pulley 12, and the transmission main shaft 1201 is installed in a matching way with the driving coupling 101, so that the spinning rotary frame 11 can rotate; spinning standing groove 13 has been seted up in the 2 outsides of spacing drive belt, can protect the smooth transportation of spinning.
As an alternative, in this embodiment, as shown in fig. 5, one end of the pedal 8 is provided with a pedal connecting steel wire 801, and the other side of the pedal connecting steel wire 801 is fixedly connected with the multi-rod driving mechanism 9, so that power input of manual spinning can be realized; the multi-rod driving mechanism 9 comprises a first driving rod 901, a middle connecting rod 903 is installed at the end part of the first driving rod 901, a second driving rod 902 is installed at the other side of the middle connecting rod 903, and an end short rod 904 is installed at the other side of the middle connecting rod 903, so that the offset rotation of the rotary spinning wheel 3 can be realized; the other side of the end short rod 904 is matched and installed with the rotary spinning wheel 3 through a fixing component 905, and the manual driving of the rotary spinning wheel 3 can be realized.
In implementation, in order to prevent the spinning process, the yarns are knotted with each other, the spinning hooking frame 1101 arranged side by side at equal intervals is adopted in the scheme, the spinning auxiliary frame 1102 is installed at the end of the spinning rotary frame 11, one yarn or a plurality of yarns can be temporarily placed on the spinning auxiliary frame 1102 in the spinning process, the top driving motor 1 and the spinning wheel driving motor 14 are closed simultaneously, the yarn feeding speed is adjusted in a manual foot stepping mode and a hand-cranking mode, the yarns are combined slowly, the pedal plate 8 is stepped on by a foot in the spinning process, the pedal connecting steel wire 801 swings with the first driving rod 901 and the second driving rod 902 through the pedal, the end short rod 904 drives the spinning wheel 3 to rotate, the spinning placing groove 13 rotates slowly, and the slow yarn supply is realized to adjust the spinning process.
In this embodiment: the spinning wheel driving motor 14 and the top driving motor 1 adopt YD2-TEFC-50Hz, the side fixing screw 6 is a DIN-7984-M6 hexagon socket head cap screw, and the driving belt wheel 12 is SPZ450-08.
The advantages of the technical solution in practical application include, but are not limited to, the following:
1. the spinning machine can simultaneously perform multi-thread spinning;
2. the yarn can be ensured not to be dislocated in the spinning process of the spinning machine.
The technical scheme adopts the spinning hooking frame 1101, the spinning placing groove 13, the spinning placing plate 10 and other parts, the equipment is different from the traditional aramid fiber spinning equipment, and the equipment has the advantages of simultaneous multi-thread spinning, no dislocation of threads in the spinning process and the like; in order to improve the spinning efficiency, the scheme adopts a manual and electric dual-power driven rotating spinning wheel 3 to carry out rotation driving, and meanwhile, a limiting transmission belt 2 and a spinning placing groove 13 are arranged on the outer side of the rotating spinning wheel 3, so that silk threads can be placed in the spinning placing groove 13 and conveyed to the same height of a spinning placing plate 10 through the transmission of the limiting transmission belt 2, at the moment, a user respectively hooks a plurality of spinning threads in different spinning hooking frames 1101, and the simultaneous spinning of multiple threads can be realized along with the rotation of a spinning rotating frame 11, so that the spinning efficiency is improved; in order to prevent the yarns from knotting, the scheme adopts spinning hooking frames 1101 which are arranged side by side and are spaced at equal intervals, a spinning auxiliary frame 1102 is installed at the end part of a spinning rotating frame 11, one yarn or a plurality of yarns can be temporarily placed on the spinning auxiliary frame 1102 in the spinning process, a top driving motor 1 and a spinning wheel driving motor 14 are closed at the same time, the yarn feeding speed is adjusted in a manual foot stepping and hand-cranking mode, the yarns are combined slowly, a foot pedal 8 is stepped on by a foot in the process, a pedal connecting steel wire 801 swings with a first driving rod 901 and a second driving rod 902 through a pedal, a short rod 904 at the end part drives a rotating spinning wheel 3 to rotate, the spinning placing groove 13 rotates slowly, and the spinning process is adjusted by slow yarn supply; the scheme mainly aims at spinning forming of aramid fiber which is an existing chemical yarn, and is structured into threads, yarns or cloth through equipment so as to facilitate subsequent secondary processing and use.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (8)
1. The utility model provides an aramid fiber spinning subassembly, includes front end backup pad (4), its characterized in that: the spinning machine is characterized in that a rotary spinning wheel (3) is rotatably mounted at the rear side of a front end supporting plate (4), a rear end supporting plate (5) is mounted at the other side of the rotary spinning wheel (3), a top mounting plate (102) and a bottom mounting plate (1401) are welded at the rear side of the rear end supporting plate (5), a top driving motor (1) is mounted at one side of the top mounting plate (102), a driving belt pulley (12) is mounted at the other side of the top driving motor (1), a spinning rotating frame (11) is mounted at the other end of the driving belt pulley (12), a limiting driving belt (2) is mounted at the outer side of the driving belt (12), a spinning placing groove (13) is formed in the outer side of the limiting driving belt (2), a spinning placing plate (10) is welded at the top of the front end supporting plate (4), a multi-rod driving mechanism (9) is mounted at one side of the front end supporting plate (4), a pedal (8) is mounted at the bottom of the multi-rod driving mechanism (9), and the outer side of the pedal (8) is mounted at one side of an internal mounting frame (7), and a spinning wheel driving motor (14) is mounted at one side of the bottom mounting plate (1401).
2. The aramid spinning assembly as claimed in claim 1, wherein a driving coupling (101) is installed on one side of the top driving motor (1), a transmission main shaft (1201) is installed on the inner side of the transmission belt wheel (12), and the transmission main shaft (1201) is installed in a matching mode with the driving coupling (101).
3. Aramid spinning pack according to claim 1, characterised in that the rear support plate (5) is welded with an extension mounting frame (501) on the inside, and the extension mounting frame (501) is fixed on the inside with an internal mounting frame (7) by side fixing screws (6).
4. The aramid spinning assembly as claimed in claim 1, wherein one end of the pedal (8) is provided with a pedal connecting steel wire (801), and the other side of the pedal connecting steel wire (801) is fixedly connected with the multi-rod driving mechanism (9).
5. The aramid spinning assembly as claimed in claim 1, wherein a spinning hook connecting frame (1101) is welded on the outer side of the spinning rotary frame (11), and a spinning auxiliary frame (1102) is welded on the end part of the spinning rotary frame (11).
6. The aramid spinning assembly as claimed in claim 1, wherein a spinning placing groove (13) is formed in the outer side of the limit transmission belt (2).
7. The aramid spinning assembly according to claim 1, wherein the multi-rod driving mechanism (9) comprises a first driving rod (901), a middle connecting rod (903) is mounted at the end of the first driving rod (901), a second driving rod (902) is mounted at the other side of the middle connecting rod (903), and a short end rod (904) is mounted at the other side of the middle connecting rod (903).
8. Aramid spinning pack according to claim 7, characterised in that the other side of the end short bar (904) is fitted with a rotating spinning wheel (3) by means of a fixing assembly (905).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222829520.6U CN218756233U (en) | 2022-10-26 | 2022-10-26 | Aramid fiber spinning assembly |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222829520.6U CN218756233U (en) | 2022-10-26 | 2022-10-26 | Aramid fiber spinning assembly |
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Publication Number | Publication Date |
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CN218756233U true CN218756233U (en) | 2023-03-28 |
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CN202222829520.6U Active CN218756233U (en) | 2022-10-26 | 2022-10-26 | Aramid fiber spinning assembly |
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2022
- 2022-10-26 CN CN202222829520.6U patent/CN218756233U/en active Active
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