专利摘要:
In the machine, each winding head (5) carries tape reels and is rotated about an advancing core, which itself rotates about its own axis, by the annular gear (Z13, Z14) of a gear transmission and epicyclic gear whose planet gear (Z12) is orbited at constant speed and in constant direction by gearing (shaft 10, gears Z1-4 and shaft V) and whose sun gear (Z11) is rotated by change speed gearing (gears X on shafts 11 and 111) via reversible gearing (Z5-8). This arrangement allows constant relative rotation speed of the head and core irrespective of head reversal, and constant winding pitch. The change gears may be replaced by a stepless variator (Fig. 5, not shown). <IMAGE>
公开号:SU1263202A3
申请号:SU813327704
申请日:1981-07-24
公开日:1986-10-07
发明作者:Ясаи Шандор;Вида Андраш
申请人:Диошдьери Гепдьяр (Инопредприятие);
IPC主号:
专利说明:

The invention relates to equipment for winding pipes, hoses and other flexible, long cores with insulating or protective tape material. The aim of the invention is to improve the performance of the device. In FIG. 1 shows a diagram of a device for winding a cable with tape material; in fig. 2 and 3 are diagrams of operation of the device with the same and opposite directions of rotation of the cable and the winding head; in fig. 4 and 5 are diagrams of embodiments of the drive of the device; in fig. 6 shows the speed and speed diagrams of the planetary gear in the versions of FIG. 4 and 5. The cable winding device comprises a tape material containing input packs 1 mounted in the holders, guide elements 2, a twist gauge 3, two winding heads 4 with the belt holders 5 and the drive boxes 6, means 7 for transporting the core and its rotation of its own axis with the gearbox 8 and the holder 9 of the receiving coil 10 for the wrapped core. The drive of the device includes a motor 11 and transmission shafts 12 connecting the gearbox 8 to the gearbox 6. Each winding head 4 includes rigidly mounted guide rollers 13 for the winding tape, roller 14 self-aligning of the brake lever 15, a guide pin 16 parallel to the winding cable 17. The drive boxes 6 ensure the rotation of the winding heads 4 in opposite directions. The directions of rotation of the winding head 4 n, and the cable of the pc may be opposite (Fig. 2) or the same (Fig. 3). FIG. Figure 4 shows a schematic of a water device for a mother's tape with a speed setting using pairs of interchangeable gears. The rotation of the main drive motor 11 through the transmission shaft 12 is transmitted further to the winding devices 4 for winding the tape through the gear Z ,, fixed on the key on the shaft 18, to the shaft 19 (along the gear Z), which is in conjunction with the switching mechanism 2 consisting from gears Ey-Zj, and with a toothed pulley Z and, thanks to toothed belt 20, with another toothed pulley Z. The switching mechanism also contains two interchangeable gears Zj, of which the first (like gear Zj and wheel Z) is keyed onto the shaft 19 , the second - the shaft 21. The gear Zf on the shaft 21 y tanovlena slidably. The gear Zj on the shaft 22 and the gear Z Zij on the shaft 23 are mounted on the keys. The shafts 21-23 are mounted in space in such a way that the shifting gear Zj can be connected with the gear Zg (FIG. 4) and the gear Zg (indicated by the dashed line). A reverse function is thereby provided, whereby the direction of rotation of the winding head 4 can be changed. A planetary gear is mounted above the shaft 23. A gear pulley Z for the timing belt 20 is mounted on the key 24 on the track shaft and the planetary gear carrier is fixed. The satellite K is rotatably mounted with a satellite or planetary gear Z ,, which is connected to the sun gear Z ,, mounted on the shaft 24 with the possibility of rotation, and with a crown (gear) Z ,, mounted with gear 2 ,,,,. which is connected to the gear Z ,, mounted on a key on the hollow main shaft 25, where the winding head 4 is also installed. Solar cipher Z ,, is connected via gear 9 mounted to the shaft 23 with a device for changing gear and device for changing directions eni Instead of replaceable gears Z, it is possible to build in a device for infinitely variable speed, mounted on shafts 19 and 21, a variator (Fig. 5). The parameters of the tape winding on cable 17 (FIGS. 2 and 3) depend on the relative speed between the winding head 4 and the cable 17. The helix (mm) is raised depending on the linear speed V (m / min) and the relative speed ( min): During operation of the device 4 for winding the tape, a constant number of revolutions proportional to the number of revolutions of the cable 17, through the pulley 2 ,, belt 20 and the pulley Z4 is fed to the carrier of the base transfer. This rotation coming from the main drive motor 1 has a constant direction. Then, the desired winding speed is established: in one embodiment, by appropriate selection of replacement Z gears, in another version by means of a variator. This number of revolutions is applied to the sun gear Z, planetary gear. The direction of this rotation can be changed by the shifting gear E of the reverse. The modified rotation brings with it the solar pole Z, of the planetary gear and rotation with rotational speed proportional to the rotation of the cable 17, is brought to the carrier. To the planetary gear, thanks to which it is guaranteed that constant relative speed, proportional to the number of revolutions of the cable 17. This means that the relative speed n k between the winding head 4 and the cable 17 is independent of the direction of rotation. Planetary gear has two entrances and one exit. One output (carrier) () sets the rotational speed proportional to the rotation of the cable, and the other input (sun gear Z ,,) sets the rotational speed proportional to the desired rotational speed of the winding output head (crown Z rotation is proportional to the corresponding relative speed. The diagram is shown in diagrammatic form using velocity and rotational speeds of the planetary gear unit (Fig. 6). Part XI shows the case when the cable 17 and the winding head 4 rotate in the same direction, and part B in the opposite direction. The following ratios are tgoc, ""; tgOt ,, co ,,; tg X- J,) 2, 4 ft w ,, - usoq + - co; -,} 4 -J to At the maximum cable rotation speed of .. 150 min, the maximum speed of the transmission shaft 12 is proportional to it, 10nt a a f 500 min. The task here is to ensure that the maximum relative speed of the winding head 4 is Pr 600 min. Using the kinematic chain of FIG. 5, the problem can be solved with the following numbers of teeth: Z, 27,,,,,,, Z, 27,, Z, 64, E ,, Z ,, 30, Z ,, 30, Z ,, 90,, Z ,. Using the rotational speed n of the carrier X of the planetary transmission and the rotational speed n, :) the sun gear Z ′ gets connections, which can be used to calculate the rotational speed n, crown Z, with internal gearing, which is the same with P | 4, further, ITO Z (- with a max. Ohm speed of the winding gotovka 4. 112,5 n. | IS, -1-.1 1,800 i-ixi At the opposite direction to the max. Of the process Pr, n ,,, MO kc i from 0 min. With rotation in one direction (max. 3 max max. max 750 MIN. Rj 600, while the relative speed does not change direction, and the problem to be solved ozhet real number ubev. The proposed device may not be rimeneno at Lena winding cable, but also any other flexible erdechnikov.
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权利要求:
Claims (1)
[1]
DEVICE FOR WINDING A LONG DIMENSIONAL FLEXIBLE CORE WITH TAPE MATERIAL, containing means for sequentially installing along the core means for transporting the core and rotating it around its own axis, two winding heads with tape material holders, mounted for rotation in opposite directions in planes, perpendicular , and the holder of the receiving coil for the wrapped core, kinematically connected to each other by a drive containing two Eversive gearboxes with gears, characterized in that, in order to increase productivity, the drive contains planetary gears placed between each winding head and gearbox, each of which has a ring gear with internal gear teeth and a gearbox with a gearbox and the sun wheel with a gear mechanism.
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同族专利:
公开号 | 公开日
FR2487315A1|1982-01-29|
DD201578A5|1983-07-27|
GB2081208B|1984-06-27|
IT8123105D0|1981-07-23|
PL232342A1|1982-04-26|
GB2081208A|1982-02-17|
HU180594B|1983-03-28|
IT1138858B|1986-09-17|
YU183981A|1983-12-31|
FR2487315B1|1985-01-11|
DE3127186A1|1982-06-09|
PL131453B1|1984-11-30|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

US2189314A|1938-12-13|1940-02-06|Western Electric Co|Apparatus for twisting and reeling material|
DE1234822B|1959-07-02|1967-02-23|Gen Cable Corp|Method and device for winding a paper-insulated cable core on a take-up reel|
US3216307A|1962-03-05|1965-11-09|Trojan Powder Co|Method for packaging explosives|
FR1399286A|1963-07-22|1965-05-14|Gen Cable Corp|Power supply cable|
FR1567897A|1967-09-19|1969-05-23|
FR2155936B1|1971-10-15|1977-03-18|Fressynet Jean|DE3813228A1|1988-04-20|1989-11-02|Wella Ag|DEVICE FOR MACHINE BANDAGING OR BUNDLING OF LONG, FLEXIBLE THINGS|
CN104141253A|2014-07-23|2014-11-12|贵州钢绳股份有限公司|Continuous production line equipment for plastic coating of steel wire ropes|
CN105783636A|2016-03-24|2016-07-20|安徽宝昱电子科技有限公司|Wire harness positioning rubber belt winding device with scale|
CN109052075A|2016-11-26|2018-12-21|青岛极致创新科技有限公司|A kind of tube body enhancement layer manufacturing equipment and its relevant apparatus|
CN110370361B|2019-07-02|2020-12-25|世源科技新材料有限公司|Medical apparatus holds in palm paper wound form splitter|
法律状态:
优先权:
申请号 | 申请日 | 专利标题
HU187280A|HU180594B|1980-07-25|1980-07-25|Band winding machine|
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