The following contains, as a merely indicative and non-limiting example, the description of a preferred though not exclusive embodiment of a device for improving the threading of thread-guides for warp linear knitting machines according to the invention, shown in the accompanying drawings, in which:
With reference to the figures listed above, a device for improving the threading of thread-guides is referred to as a whole in the accompanying drawings with numeral 1. Such devices 1 can apply to warp linear knitting machines 10, also known as Raschel-type warp looms, with single or double needlebed, and being preferably multibar.
A device 1 for improving the threading of thread-guides 5 according to the invention comprises at least a first support 6 that can be associated to the supporting structure 11 of a warp linear knitting machine 10, a plurality of thread-guides 5 designed to guide threads while knitting a knitted item, and at least one thread—guide bar 2 operatively associated to the first support 6 to which the thread-guides 6 are associated. As can be seen on
The device 1 is characterized in that the first support 6 is movable with respect to the supporting structure 11 between an operating position, in which the thread-guides 5 are active for the formation of the knitted item, and at least one threading position, angularly rotated with respect to said operating position, in which the thread-guides 5 are threaded (
In a preferred embodiment of the invention, the device 1 also comprises a second support 7 operatively placed between the supporting structure 11 and the first support 6 and moving between the operating and threading positions integrally with the first support 6.
Advantageously, as can be seen on
According to the invention, in order to optimize the accessibility of the thread-guides 5, independently from the bars 2 to which they are associated, the first 6 and the second 7 support are movable between an operating position and two threading positions, one rotated clockwise with respect to the operating position and one counterclockwise.
It should be pointed out that in the operating position the first support 6 is movable with respect to the second one 7 with an oscillating motion around the main axis 13 of the oscillating shaft 12 for moving the thread-guides 5 transversally to the hook of the needles 16, in order to carry out the movement commonly known as “swing”, so as to ensure a correct feeding of the threads onto the needles 16. The oscillating motion of the first support 6 with respect to the second one 7 around the main axis 13 of the oscillating shaft 12 for the “swing” movement is less broad than the integral movement of the two supports 6, 7 with respect to the supporting structure 11, still around the main axis 13, for the passage between the operating position and the threading positions.
It should be pointed out that the mechanisms enabling the first support 6 to move with an oscillating motion with respect to the second one 7 for the “swing” movement are associated to the supporting structure 11 of the machine 10.
In particular, the first support 6 is associated to the second one 7 on at least one first mounting point 9. Preferably, the first support 6 is associated to the second one 7 on two distinct mounting points 9 opposed with respect to a vertical plane containing the main axis 13 of the oscillating shaft 12, so as to move the first support 6 with an oscillating motion in a balanced way with respect to the main axis 13 (
Still according to the invention, the device 1 further comprises blocking means 20 designed to block the second support 7 and prevent the rotation thereof with respect to the supporting structure 11 so as to let it stay in the operating position, and to release it and enable the movement thereof from the operating position to the threading positions. In this case the second support 7, in its movement from the operating position to the threading positions, drags with it integrally during the rotation of the shaft 12, and therefore around the main axis 13, the first support 6.
Advantageously, the blocking means 20 comprise a bolt 21 that is movable with respect to the supporting structure 11 according to a basically vertical direction perpendicular to the main axis 13 of the oscillating shaft 12 between a lowered position and a lifted position, and an engagement element 22 operatively associated to said bolt 21 so as to move longitudinally between an active position, when the bolt 21 is in lowered position, in which it acts operatively upon the second support 7 so as to block it in rotation with respect to the supporting structure 11, and a passive position, when the bolt 21 is in lifted position, in which it is led away from the second support 7 so as to enable the rotation thereof for the passage from the operating position to the threading positions.
In further detail, the engagement element 22 comprises a rod 23 developing according to a longitudinal direction basically perpendicular to the direction of movement of the bolt 21, and a bracket 26 fitted onto a first end 24 of the rod 23, designed, when the engagement element 22 is in active position, to exert a pushing action onto the second support 7 that is basically perpendicular to said second support 7, so as to prevent the rotation thereof with respect to the supporting structure 11.
The bolt 21 further has—advantageously—a cam profile 27 to which the rod 23 is operatively associated on a second end 25 thereof, and the blocking means 20 comprise a pushing element 31 acting upon the second end 25 of the rod 23 so as to push it against the cam profile 27 so as to move the rod 23 and the bracket 26 between the passive and the active position. The blocking means 20 also comprise a first bearing 32 moving longitudinally according to the direction of movement of the rod 23 and firmly fitted onto said rod 23 on the second end 25 thereof, and as a result the pushing element 31 acts upon the rod 23 by means of said first bearing 32 and said rod 23 is operatively associated to the cam profile 27 still by means of the first bearing 32.
Preferably, the pushing element 31 consists of Belleville washers acting upon the first bearing 32 by means of a support 25 sliding longitudinally, on which said first bearing 32 is mounted.
As can be seen in particular on
The blocking means 20 further comprise an activation element 33 for moving the bolt 21 between the lifted and the lowered positions.
Preferably, the blocking means 20 can comprise at least one second bearing 34 for guiding the bolt 21 in its movement between the lifted position and the lowered one and for cooperating with the pushing element 31 and with the first bearing 32 so as to keep the rod 23 and the bracket 26 stiffly in active position. As can be seen in particular on
Eventually, it should be pointed out that the bolt 21, when it is in lowered position, engages with the second support 7 on an upper portion 7a thereof. The upper portion 7a is associated with first guide means 37a, whereas the supporting structure 11 of the machine 10 is associated, on the bolt 21, to second guide means 37b. The first 37a and the second 37b guide means have the same, though mirrored, structure. Preferably, as can be seen on
The function of the first 37a and the second 37b guide means is to improve the sliding of the bolt 21, to keep the second support 7 in position, therefore also the first one 6, with respect to the supporting structure 11 of the machine 10 by stiffly fitting the bolt 21 onto said second support 7, and to recover clearances, if present.
Still according to the invention, the device 1 further comprises movement means 40 operatively associated at least to the second support 7 and designed to move the first 6 and the second support 7 between the operating and threading positions. As is shown in
In the accompanying drawings, the movement means 40 comprise usual pneumatic means. Alternatively, equivalent means can be used, such as for instance ball screw motors or hydraulic means. In the first case, therefore, the movement means 40 comprise a pneumatic piston 43 and the actuating element 41 is a stem of said pneumatic piston 43. In particular, in the execution variant shows, the pneumatic piston 43 has two opposed, physically separated chambers and an upper stem 41a and a lower stem 41b making up together the actuating element 41. The upper stem 41a is hinged to the supporting structure 11 of the machine and is therefore fixed and cannot move along its own axis 44. If air is introduced in the area of the upper stem 41a, the lower chamber of the upper stem 41a is emptied and the upper chamber of said stem 41a is filled up. Since the upper stem 41a is fixed, air introduction makes the whole body of the piston 43 move, dragging with it the second support 7 and rotating it as shown on
Conversely, if the movement means 40 comprise a screw motor, the actuating element is a screw thereof.
Advantageously, the supporting structure 11 comprises a guide 14 having a basically curved shape and the second support 7 comprises at least one third bearing 15 designed to slide inside said guide 14 for guiding the movement of the second support 7 between the operating position and the threading positions.
The device 1 can also include a system for recovering threads that got lengthened during the threading operation (not shown).
According to the invention, the device 1 disclosed in the variant shown on the accompanying figures works as follows:
In operating position the first 6 and the second 7 support are basically vertical and the first support 6 oscillates with respect to the second one 7, around the oscillating shaft 12, so as to carry out the movement known as “swing” required for correctly feeding the threads onto the needles 16. Under these circumstances, the bolt 21 is in lowered position and the second bearings 34 are loaded with a strong pressure generated by the pushing element 31 for keeping stiffly the two supports 6, 7 in position by means of the rod 23 and of the bracket 26, and also the fourth bearings 38 are loaded accordingly. In this case the actuating element 41, represented by the group made up of the lower stem 41b and of the upper stem 41a of the pneumatic piston 43, is in rest position. In order to move the first 6 and the second 7 support in the first threading position, for instance the one in which the two supports 6, 7 are rotated to the left as is shown on
Also for bringing the two supports 6, 7 from the operating position to the second threading position, for instance rotated to the left as is shown on
Obviously, it can be switched directly from the first to the second threading position or conversely, without stopping in the operating position.
It should be pointed out that, when the two supports 6, 7 are in operating position but the bolt 21 is in lifted position, said supports 6, 7 are still supported and kept in position by the movement means 40 in rest position.
The inventive idea of the present invention also includes a warp linear knitting machine characterized in that it comprises at least one of the devices 1 for threading thread-guides 5 described above. In particular, the machine 10 comprises as a rule two of these devices 1, one placed on a first end portion 3 of the thread-guide 5 bars 2 and one placed on a second end portion 4 thereof, opposite the first one 3, so as to prevent torsions of said bars 2.
Advantageously, the machine 10 further comprises adjustment and control means designed to control the function thereof, which are of known type and will therefore not described or disclosed in detail. In particular, said means control both the blocking means 20, by activating selectively the activation element 33 of the bolt 21, and the movement means 40, by guiding for instance the movement of the pneumatic piston 43. As a consequence, the release, rotation and coupling recovery procedure is controlled and fully automated. Thanks to the adjustment and control means, the first 6 and the second 7 support are kept in the various positions, operating position and first and second threading position, in a stable and controlled manner.
Preferably, therefore, thanks to the adjustment and control means the release and positioning cycle of the two supports 6, 7 in the two threading positions is obtained by simply pressing dedicated pushbuttons, which are associated to the supporting structure 11 of the machine 10.
The invention thus conceived can undergo several changes and variants, all of which fall within the framework of the inventive idea.
In practice, any material or size can be used, depending on the various needs.
Moreover, all details can be replaced by technically equivalent elements.
The invention achieves important advantages.
Firstly, the device for improving the threading of the thread-guides shown above makes said thread-guides accessible and enables an easy and practical threading both during the setup of the machine before starting a new knitting process and in case of maintenance operations during knitting, due for instance to the breaking of one or more threads. As a matter of fact, the rotation of the two supports with respect to the supporting structure so as to bring the thread-guides outside the knitting area and improve threading can be carried out also during the knitting process without damaging the knitted items being manufactured and creating unbalances in the machine.
A further advantages consists in that operators carrying out threading can work safely and in comfortable and ergonomically correct conditions. This is due to the fact that the devices according to the invention make the thread-guides well visible and accessible before the operator, without the need for the latter to bend or work blindly.
Moreover, a knitting machine provided with the devices for improving the threading of thread-guides is extremely accurate, enables to obtain knitted items of very high quality and can be easily installed in a manufacturing plant since its structure is slim, compact, little bulky and practical.
Number | Date | Country | Kind |
---|---|---|---|
BS2006A000089 | Apr 2006 | IT | national |