Disclosure of Invention
The invention aims to provide a winding automatic head-producing device of a full-automatic false twisting texturing machine. When the device carries the silk, operating speed is steady, makes the silk reach on the winding chuck with best angle automatically, and after the chuck shreds and winds, surplus silk is inhaled the silk pipeline by the automation, and waste silk is handled timely, and the head success rate is high.
The invention adopts the technical scheme that: the utility model provides a full-automatic false twist texturing machine winds automatic head device, it includes the silk part of inhaling, arrange silk part and connecting piece, inhale silk part and constitute by the connecting seat, the cavity, inhale silk pipe and piston axle, the cavity is connected with the connecting seat, the rotatable seat of connecting seat is established on arranging silk part up end, inhale silk part and arrange silk part and pass through the connecting piece and link together, be provided with in the cavity and inhale silk passageway and cylinder chamber, be provided with first air inlet nozzle and second air inlet nozzle on the cavity, wherein, first air inlet nozzle communicates with inhaling silk passageway, second air inlet nozzle communicates with cylinder chamber, piston axle, cylinder chamber and second air inlet nozzle form a cylinder structure, inhale silk passageway one end and be connected with one row of silk pipe, it communicates with arranging silk part to inhale silk pipe movably cartridge in another port of inhaling silk passageway, the piston axle is connected with inhaling silk pipe.
Further, one end of the piston shaft in the cylinder chamber is larger in diameter, the end is in sealing connection with the cylinder chamber, and a pressure spring for resetting is sleeved on the piston shaft in the cylinder chamber.
Further, one side of the cavity is provided with a cavity structure, the center line of the cavity structure is perpendicular to and intersected with the center line of the wire suction channel, a regulating valve is arranged in the cavity structure and connected with the cavity structure through a reset spring, and the wire suction channel is closed under the action of the reset spring by the regulating valve in a natural state.
Further, the hole center line of the first air inlet nozzle is parallel to the center line of the wire suction channel, the first air inlet nozzle is communicated with the wire suction channel through a connecting channel perpendicular to the wire suction channel and the center of the first air inlet nozzle, an air passage parallel to the hole center line of the first air inlet nozzle is formed in the side wall of the connecting channel, and the air passage is communicated with the cavity structure.
Further, a rotation angle limiting device is arranged on the wire arranging component in the rotation direction of the connecting seat, a stop block is arranged on the connecting seat, and the stop block rotates within a range limited by the rotation angle limiting device.
Further, the rotation angle limiting device is two bulges fixed on the wire arranging component, the bulges are fixed with adjusting screws, and the two bulges are arranged at an angle of 90 degrees.
Further, the wire arranging component consists of an upper shell and a lower shell, the upper shell and the lower shell are buckled together to form a wire arranging channel, an inserting hole is formed in the upper shell of the wire arranging component, the wire arranging pipe is communicated with the wire arranging channel through the inserting hole, and the center line of the inserting hole is used as a rotation center when the connecting seat rotates.
Compared with the prior art, the invention has the beneficial effects that: according to the invention, constant-pressure gas enters the yarn sucking component from the first air inlet nozzle and the second air inlet nozzle respectively, the air flow entering from the first air inlet nozzle is divided into two paths, one path enters the cavity structure through the air passage and pushes the regulating valve body to act downwards, at the moment, the yarn sucking channel is opened, the other part of the air flow enters the yarn sucking channel through the connecting channel and flows into the yarn discharging tube, the air flow flows out of the yarn discharging channel in the yarn discharging tube, at the moment, the air flow forms an air flow negative pressure in the yarn sucking channel, the yarn is sucked into the yarn sucking tube, and is discharged through the yarn sucking channel, the yarn discharging tube and the yarn discharging channel; the air flow entering from the second air inlet nozzle is used for pushing the piston shaft to move outwards, and the piston shaft is moved to drive the yarn sucking pipe to act so as to finish yarn sucking action of the DTY yarn on the oiling device; when the rotation angle limiting device is used for conveying the silk, the silk automatically reaches the winding chuck at an optimal angle, after the chuck shreds and winds, the residual silk is automatically sucked into the silk suction pipeline, the waste silk is treated timely, and the success rate of generating the head is high; the invention controls the opening and closing of the regulating valve through air flow, and can be used for sucking silk; in addition, the invention has stable running speed, automatically completes winding and producing the waste silk, and has high success rate of producing the head, thereby improving the production efficiency, saving the cost and increasing the economic benefit.
Detailed Description
As shown in fig. 1 and 2, an automatic winding head generating device of a full-automatic false twisting texturing machine comprises a wire sucking part 1, a wire discharging part 2 and a connecting piece 3, wherein the wire sucking part 1 consists of a connecting seat 4, a cavity 5, a wire sucking pipe 6 and a piston shaft 7, the cavity 5 is connected with the connecting seat 4, the connecting seat 4 is rotatably arranged on the upper end face of the wire discharging part 2, the wire sucking part 1 and the wire discharging part 2 are connected together through the connecting piece 3, a wire sucking channel 8 and a cylinder chamber 9 are arranged in the cavity 5, a first air inlet nozzle 10 and a second air inlet nozzle 11 are arranged on the cavity 5, the first air inlet nozzle 10 is communicated with the wire sucking channel 8, the second air inlet nozzle 11 is communicated with the cylinder chamber 9, the piston shaft 7, the cylinder chamber 9 and the second air inlet nozzle 11 form a cylinder structure, one end of the wire sucking channel 8 is connected with a wire discharging pipe 12, the wire discharging pipe 12 is communicated with the wire discharging part 2, the wire sucking pipe 6 is movably inserted into the other end of the wire sucking channel 8, and the piston shaft 7 is connected with the wire sucking pipe 6.
One end of the piston shaft 7 in the cylinder chamber 9 is larger in diameter, the end is in sealing connection with the cylinder chamber 9, and a compression spring for resetting is sleeved on the piston shaft 7 in the cylinder chamber 9.
One side of the cavity 5 is provided with a cavity structure 13, the center line of a cavity of the cavity structure 13 is vertical to and intersected with the center line of the wire suction channel 8, an adjusting valve 14 is arranged in the cavity structure 13, the adjusting valve 14 is connected with the cavity structure 13 through a return spring, and the wire suction channel 8 is closed under the action of the return spring by the adjusting valve 14 in a natural state.
The center line of the hole of the first air inlet nozzle 10 is parallel to the center line of the wire suction channel 8, the first air inlet nozzle 10 is communicated with the wire suction channel 8 through a connecting channel 15 perpendicular to the center of the wire suction channel 8 and the center of the first air inlet nozzle 10, an air passage 16 parallel to the center line of the hole of the first air inlet nozzle 10 is arranged on the side wall of the connecting channel 15, and the air passage 16 is communicated with the cavity structure 13.
A rotation angle limiting device is arranged on the wire arranging component 2 in the rotation direction of the connecting seat 4, a stop block 17 is arranged on the connecting seat 4, and the stop block 17 rotates within a range limited by the rotation angle limiting device; the rotation angle limiting device is two bulges 18 fixed on the wire arranging part 2, the bulges 18 are fixed with adjusting screws 19, and the two bulges 18 are arranged at an angle of 90 degrees.
The wire arranging part 2 consists of an upper part shell and a lower part shell, the upper part shell and the lower part shell are buckled together to form a wire arranging channel 20, an inserting hole is formed in the upper part shell of the wire arranging part 2, the wire arranging pipe 12 is communicated with the wire arranging channel 20 through the inserting hole, and the center line of the inserting hole is used as a rotation center when the connecting seat 4 rotates.