The invention relates to a kind of yarn spinning engineering position controller, which refers to the textile industry for a filament positioning control device using the composite filament staple spinning on a ring spinning machine.
There is a filament and staple fibers spinning project in our national science and technology support programs. The key points of the technical project is composed of two strands of filaments and two strands of short fibers composite yarn spinning, which relates to the filaments and strands must keep a certain distance between. General manufacturers are using a fixed type filament positioning device to ensure that the distance between the filament, processing two V groove of d1 and d2 in a wheel. The distance between d1 and d2 is fixed at 20 mm, d3 positioning axle is fixed in the cradle of the spinning machine, see
According to the principle of the filament and staple fibers spinning, the distance between the filaments and strands adjustments with sliver of short fiber length. If the distance between the two is much larger, the short fibers is much easier to escape from the strands. On the contrary, if the distance between the two is too small, strand wrapped filament angle and density is not the same, and yarn properties will change along with. Obviously, a yarn fixed device can only adapt to a certain length of the raw material.
The technical problem to be solved is to provide a special filament positioning distance device, which adjusts the distance between filaments and short fibers according to the material length and yarn filament and staple fiber requirements in the filament and staple fibers in spinning production.
Technical proposal adopted by the invention to solve technical problems is: Filament positioning control device of a filament and staple fibers includes the guide rail assembly and the regulating assembly fixed by the cradle of spinning machine.
Guide rail assembly is provided with a cradle fixed by screw and a guide rail and the two ends of the guide rail are installed by fixed bearing seats. The regulating assembly comprises a fixed shaft with a screw thread at the end, located between two fixed bearing seats. A fixed shaft is to be sheathed with a hollow shaft. Symmetrical left and right spiral helical wheels are set by the hollow shaft. The left and right spiral helical wheels are set by screws through the screw holes and hollow shaft together; Left and right helical wheels outer cover left positioning plate and right positioning plate with a positioning groove. Guide pin on each of the left and the right positioning plates falls in one of the left, right spiral grooves of the helical wheels. The guide blocks connected with the left positioning plate, right positioning plate fall in the base frame rail assembly; One end of the hollow shaft is provided with an adjusting ring, and the other end is provided with a lock nut, The hollow shaft is also fixed with an adjusting band wheel, when turning the adjusting hand wheel, the left and right spiral helical wheels move. Helical grooves of left and right helical wheels promote the movement of the guide pins on the left and right positioning plates. Left and right positioning plates move axially in the guide block under the action of the left and right positioning plates; Due to the opposite direction of the right and left helical grooves in the left and right helical wheels is rotated, the left and right positioning plates do opposite or contrary to the movement. The distance between the left and right positioning grooves on the positioning plates is reduced or increased, and the distance between the filaments and short fibers is required to change. When adjusted to the desired position, a lock nut on the positioning nail is set to prevent the left and right spiral wheels from rotation in order to guarantee the accuracy of the distance. The lock nuts on the left and right helical wheels can be loosened to adjust the retaining ring. The hollow shaft can move around, so that the center of the left positioning plate and the right positioning plate coincides with the center the spinning machine spindle, and then the lock nut is locked.
The adjustment hand wheel has engraved scale, displaying the center distance between the locating slot on the left-right positioning plates.
Compared with the positioning means of the existing fixed-pitch, the present invention has the following beneficial effects:
Implementation of the device is shown in
Through the rack screw hole 20, base frame rail assemblies are fixed with the retaining bolt 21 and the spinning frame cradle a1 altogether. Fixed bearing seat 3 through a set bolt 2 and fixed bearing seat hole 13 is fixed with guide rail 1. A fixed shaft 12 with a threaded end is mounted between two fixed bearing sets 3. A guide block 19 connected with the left and right positioning plates 5, 16 falls in the guide rail 1. Hollow shaft 8 is sheathed on the fixed shaft 12, and the left and right helical wheels 7, 9 are mounted on the hollow shaft 8 by set screws 10 through the screw holes 11. The left and right positioning plates 5, 16 are separately mounted on the outer sides of the left and right spiral wheels 7 and 9. The guide pin 6 on each of the left and right positioning plates 5, 16 falls within the left helical groove 17 and the right helical groove 18.
Filaments c1 and c2 enter into the front jaw of the spinning frame through the positioning grooves on the left and right positioning plates 5, 16 and then separately combined with the short fibers b1 and b2.
Rotating the adjustment hand wheel 15 mounted in the hollow shaft 8 causes the left and right helical wheels 7, 9 to rotate. Due to the left, the right spiral grooves 17, 18 on the helical wheels being in different directions, as the helical wheel is rotated, the guide pins 6 on the left and right positioning plate 5, 16 move along with the left and right spiral grooves 17, 18, and the guide pins 6 connected to the left and right positioning plate 5, 16 do inward or outward movement. The distance between the positioning grooves on the left and right positioning plates 5, 16 decreases or increases, thereby changing the distance between filament c1 and c2 and the short fibers b1 and b2. The moved distance can be indicated by the engraved scale on the adjustment hand wheel 15. After the adjustment is in place, the positioning pin on the locking nut 4 can be set to prevent the rotation of the left and right helical wheels 7, 9.
If the center of the fibers c1, c2 and spinning machine spindle center do not coincide, it is possible to loosen the lock nut 14 and adjust the adjustment retaining ring 14 to move the hollow shaft 8 around until the center of filaments c1, c2 coincides with the center of the spinning machine spindles, then the locking nut 4 on the threaded end of the fixed shaft 12 is fastened to prevent the hollow shaft 8 from moving along the shaft.
Number | Date | Country | Kind |
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201110079735.4 | Mar 2011 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN12/71207 | 2/16/2012 | WO | 00 | 12/5/2013 |