CN211339899U - Full-computerized large jacquard knitting mechanism - Google Patents

Full-computerized large jacquard knitting mechanism Download PDF

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Publication number
CN211339899U
CN211339899U CN201922077315.7U CN201922077315U CN211339899U CN 211339899 U CN211339899 U CN 211339899U CN 201922077315 U CN201922077315 U CN 201922077315U CN 211339899 U CN211339899 U CN 211339899U
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coil
rod
knitting
support frame
line
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CN201922077315.7U
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沈灵益
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Hangzhou Hengyi Cloth Co ltd
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Hangzhou Hengyi Cloth Co ltd
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Abstract

The utility model discloses a full computer jacquard knitting mechanism, bear frame and electromagnetic lock line structure including weaving the line, the left side that the line that weaves bore is fixed with the industry all-in-one, and the below electric connection of industry all-in-one has the plug, the right side that the line that weaves bore installs first support frame, and the top of first support frame is connected with the hinge, the outside of hinge is connected with the second support frame, and the top of second support frame installs coil bearing structure, electromagnetic lock line structure installs in coil bearing structure's right side, and coil bearing structure's surface connection has the line coil of weaving, the outside of line coil of weaving is connected with the line of weaving, and the outside of line of weaving is connected with the lock ring. This kind of big jacquard weave knitting mechanism electromagnetic lock line structure's of full computer setting can conveniently control the output of spinning to this can avoid the spinning of output to appear in disorder problem, and the setting of lock ring can be injectd spinning, avoids appearing knoing winding spinning and influences knitting effect.

Description

Full-computerized large jacquard knitting mechanism
Technical Field
The utility model relates to a weaving device technical field specifically is full computer jacquard weave knitting mechanism.
Background
Jacquard fabric, also called as jacquard fabric, is a large pattern weave woven by a jacquard machine, and the number of warp yarns of the complete pattern weave is hundreds of warp yarns, and thousands of warp yarns. Jacquard patterns are often based on one weave and have a pattern, such as plain, satin, developed on it in another or several different weaves. Knitting refers to a process of knitting various raw materials and varieties of yarns into loops by using a knitting needle, and then connecting the loops into knitted fabrics through series connection.
Traditional big jacquard knitting mechanism is inconvenient to change the coil that uses up in the use, so can influence the knitting efficiency of device, still inconvenient winding the problem of knoing of spinning when knitting simultaneously to this weaving effect when can influencing knitting, and still inconvenient when the weaving breaks down carries out the problem of locking to the spinning, for this reason, we propose the big jacquard knitting mechanism of full computer that a practicality is higher.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a big jacquard knitting mechanism of full computer to the traditional big jacquard knitting mechanism who proposes in solving above-mentioned background art is inconvenient to change the coil that uses up in the use, so can influence the knitting efficiency of device, still inconvenient winding the problem of knoing of spinning simultaneously when knitting prevents, weaving effect when with this can influence knitting, and still inconvenient when the weaving breaks down carries out the problem of locking to the spinning.
In order to achieve the above object, the utility model provides a following technical scheme: full-computerized jacquard knitting mechanism bears frame and electromagnetic lock line structure including weaving the line, the left side that the line that weaves bore is fixed with the industry all-in-one, and the below electric connection of industry all-in-one has the plug, the right side that the line that weaves bore installs first support frame, and the top of first support frame is connected with the hinge, the outside of hinge is connected with the second support frame, and the top of second support frame installs coil bearing structure, electromagnetic lock line structure installs in coil bearing structure's right side, and coil bearing structure's surface is connected with the line coil of weaving, the outside of the line coil of weaving is connected with the line of weaving, and the outside of the line of weaving is connected with the lock ring.
Preferably, the coil bearing structure forms a rotating structure with the first support frame through the hinge and the second support frame, and the industrial all-in-one machine is electrically connected with the electromagnetic lock wire structure through the connection between the lead and the electromagnetic lock wire structure.
Preferably, the coil bearing structure comprises a fixed supporting rod, a ball, a shaft sleeve, a limiting sleeve rod and a limiting rod, the ball is arranged outside the fixed supporting rod, the shaft sleeve is arranged outside the ball, the limiting sleeve rod is arranged at the top end of the fixed supporting rod, and the limiting sleeve rod is arranged inside the limiting sleeve rod.
Preferably, the limit sleeve rod and the limit rod form a telescopic structure through threads, and the knitting wire coil and the fixed support rod form a rotating structure through balls and a shaft sleeve.
Preferably, the electromagnetic lock wire structure includes connecting main part, solenoid, armature, pull rod, spacing slider and spacing slide rail, and the internally mounted of connecting main part has solenoid to armature is installed to solenoid's inboard, the pull rod is installed to the below of armature, and the outside of pull rod is provided with spacing slider, and the outside of spacing slider is provided with spacing slide rail.
Preferably, the electromagnetic coil forms a magnetic attraction structure through the armature and the pull rod, and the pull rod forms a sliding structure through the limiting slide block and the limiting slide rail and the connecting main body.
Compared with the prior art, the beneficial effects of the utility model are that:
the full-computerized jacquard knitting mechanism can conveniently pull out the coil bearing structure for yarn feeding through the rotation between the second support frame and the first support frame, so that the used knitting yarn coil can be replaced, the replacement efficiency of the knitting yarn coil can be improved, and the spinning efficiency is improved;
the arrangement of the coil bearing structure can facilitate the bearing of the knitting yarn coil, and meanwhile, the knitting yarn coil can rotate on the coil bearing structure, so that the stable output of the spinning yarn can be ensured, and the stable rotation of the knitting yarn coil can be ensured through the extension and retraction of the limiting rod, and the problem of falling can be avoided;
the setting of electromagnetic lock line structure can conveniently be controlled the output of yarn to this can avoid the yarn of output to appear in disorder problem, and the setting of lock ring can be injectd the yarn, avoids appearing the winding yarn of knoing and influences knitting effect, has improved this kind of full-computerized jacquard knitting mechanism's practicality greatly.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the internal structure of the electromagnetic lock wire structure of the present invention;
fig. 3 is the schematic diagram of the internal structure of the coil bearing structure of the present invention.
In the figure: 1. a knitting yarn carrier; 2. an industrial all-in-one machine; 3. a plug; 4. a first support frame; 5. a hinge; 6. a second support frame; 7. a coil-carrying structure; 701. fixing the supporting rod; 702. a ball bearing; 703. a shaft sleeve; 704. a limiting sleeve rod; 705. a limiting rod; 8. an electromagnetic lockwire structure; 801. a connecting body; 802. an electromagnetic coil; 803. an armature; 804. a pull rod; 805. a limiting slide block; 806. a limiting slide rail; 9. spinning; 10. weaving a thread coil; 11. a locking ring.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: the full-computerized jacquard knitting mechanism comprises a knitting yarn bearing frame 1, an industrial all-in-one machine 2, a plug 3, a first support frame 4, a hinge 5, a second support frame 6, a coil bearing structure 7, a fixed support rod 701, a ball 702, a shaft sleeve 703, a limit sleeve rod 704, a limit rod 705, an electromagnetic lock wire structure 8, a connecting main body 801, an electromagnetic coil 802, an armature 803, a pull rod 804, a limit slider 805, a limit slide rail 806, a knitting yarn 9, a knitting yarn coil 10 and a lock ring 11, wherein the industrial all-in-one machine 2 is fixed on the left side of the knitting yarn bearing frame 1, the plug 3 is electrically connected below the industrial all-in-one machine 2, the first support frame 4 is installed on the right side of the knitting yarn bearing frame 1, the hinge 5 is connected to the top end of the first support frame 4, the second support frame 6 is connected to the outer side of the hinge 5, the coil bearing structure 7 is installed, the outer surface of the coil bearing structure 7 is connected with a knitting yarn coil 10, the coil bearing structure 7 comprises a fixed support rod 701, a ball 702, a shaft sleeve 703, a limit sleeve rod 704 and a limit rod 705, the ball 702 is arranged on the outer side of the fixed support rod 701, the shaft sleeve 703 is arranged on the outer side of the ball 702, the limit sleeve rod 704 is arranged at the top end of the fixed support rod 701, the limit sleeve rod 704 is arranged inside the limit sleeve rod 704, the limit sleeve rod 704 forms a telescopic structure with the limit rod 705 through threads, the knitting yarn coil 10 forms a rotating structure with the fixed support rod 701 through the ball 702 and the shaft sleeve 703, the coil bearing structure 7 can conveniently bear the knitting yarn coil 10, and the knitting yarn coil 10 can rotate on the coil bearing structure 7, so that the stable output of a knitting yarn 9 can be ensured, and the stable rotation of the knitting yarn coil 10 can be ensured through the telescopic structure of the limit rod 705, the problem of falling cannot occur;
the electromagnetic wire locking structure 8 comprises a connecting main body 801, an electromagnetic coil 802, an armature 803, a pull rod 804, a limit slider 805 and a limit slide 806, wherein the electromagnetic coil 802 is installed inside the connecting main body 801, an armature 803 is arranged on the inner side of the electromagnetic coil 802, a pull rod 804 is arranged below the armature 803, a limit slider 805 is arranged on the outer side of the pull rod 804, and the outer side of the limit slide block 805 is provided with a limit slide rail 806, the electromagnetic coil 802 forms a magnetic attraction structure with the pull rod 804 through the armature 803, and the pull rod 804 forms a sliding structure with the connecting main body 801 through the limit slide block 805 and the limit slide rail 806, the output of the spun yarn 9 can be conveniently controlled by the arrangement of the electromagnetic lock wire structure 8, so that the problem that the output spun yarn 9 is scattered can be avoided, the arrangement of the locking ring 11 can limit the spinning thread 9, so that the influence of knotted and wound spinning thread 9 on the knitting effect is avoided;
the outside of knitting line coil 10 is connected with spinning line 9, and the outside of spinning line 9 is connected with lock ring 11, coil bearing structure 7 passes through and constitutes revolution mechanic between hinge 5 and second support frame 6 and the first support frame 4, and industrial all-in-one 2 passes through the wire and is electric connection with being connected between the electromagnetic lock line structure 8, rotation between second support frame 6 and the first support frame 4 can conveniently pull out coil bearing structure 7 and go on the line, can change the knitting line coil 10 that makes up with this, so can improve the change efficiency of knitting line coil 10, and the efficiency of weaving is improved, and the practicality of this kind of full-computer jacquard knitting mechanism is greatly improved.
The working principle is as follows: for the full-computerized jacquard knitting mechanism, firstly, the whole device can be supported by the arranged knitting yarn bearing frame 1, and the industrial all-in-one machine 2 with the model of QY-K can be supplied with power by the plug 3 and the conducting wire, when the used knitting yarn coil 10 needs to be replaced, the second supporting frame 6 is pulled, the second supporting frame 6 can rotate on the first supporting frame 4 by the hinge 5, so that the coil bearing structure 7 can be conveniently pulled out from the multi-group supporting frame, the limiting rod 705 is rotated, the limiting rod 705 can be taken into the limiting sleeve rod 704 by threads, so that the used knitting yarn coil 10 can be taken down from the sleeve 703, so that a new knitting yarn coil 10 can be sleeved, so that the replacement of the knitting yarn coil 10 can be completed, and simultaneously, the twisting-out limiting rod 705 can play a limiting effect on the knitting yarn coil 10, and pull out the spinning yarn 9 on the knitting yarn coil 10, the spinning thread 9 passes through the locking ring 11, the spinning thread 9 is pulled, the spinning thread 9 can drive the spinning thread coil 10 to rotate, the spinning thread coil 10 can rotate on the fixed support rod 701 through the balls 702 and the shaft sleeve 703, so that the spinning thread 9 can be conveniently output, when a fault occurs in the spinning process, the industrial all-in-one machine 2 is connected with the electromagnetic coil 802 through a wire, so that the power-on and power-off conditions of the electromagnetic coil 802 can be controlled through an electric signal, the electromagnetic coil 802 is electrified, the electromagnetic coil 802 can magnetize the armature 803 inside through the magnetic induction principle, so that the magnetic adsorption can be carried out on the pull rod 804 below, the pull rod 804 can be pulled to move through the magnetic adsorption, the pull rod 804 can move in the connecting body 801 through the movement of the limiting slide block 805 in the limiting slide rail 806, so that the locking ring 11 can be driven to move up and down, the contraction of the locking ring, the spun yarn 9 can be locked, the problem that the output spun yarn 9 is scattered can be avoided, meanwhile, knotted and wound spun yarns 9 can be prevented from passing through the locking ring 11, and the using process of the whole full-computer jacquard knitting mechanism is completed.
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 (6)

1. Full computer large jacquard weave knitting mechanism bears frame (1) and electromagnetic locking wire structure (8) including the knitting wire, its characterized in that: the left side of knitting line bears frame (1) is fixed with industry all-in-one (2), and the below electric connection of industry all-in-one (2) has plug (3), first support frame (4) are installed on the right side of knitting line bears frame (1), and the top of first support frame (4) is connected with hinge (5), the outside of hinge (5) is connected with second support frame (6), and the top of second support frame (6) installs coil bearing structure (7), install in the right side of coil bearing structure (7) electromagnetic lock wire structure (8), and the surface of coil bearing structure (7) is connected with knitting line coil (10), the outside of knitting line coil (10) is connected with yarn (9), and the outside of yarn (9) is connected with lock ring (11).
2. The fully computerized jacquard knitting mechanism according to claim 1, characterized in that: the coil bearing structure (7) forms a rotating structure with the first support frame (4) through the hinge (5) and the second support frame (6), and the industrial all-in-one machine (2) is electrically connected with the electromagnetic lock wire structure (8) through a lead.
3. The fully computerized jacquard knitting mechanism according to claim 1, characterized in that: the coil bearing structure (7) comprises a fixed supporting rod (701), a ball (702), a shaft sleeve (703), a limiting sleeve rod (704) and a limiting rod (705), the ball (702) is arranged on the outer side of the fixed supporting rod (701), the shaft sleeve (703) is arranged on the outer side of the ball (702), the limiting sleeve rod (704) is arranged at the top end of the fixed supporting rod (701), and the limiting sleeve rod (704) is arranged inside the limiting sleeve rod (704).
4. The fully computerized jacquard knitting mechanism according to claim 3, characterized in that: the limiting sleeve rod (704) and the limiting rod (705) form a telescopic structure through threads, and the knitting yarn coil (10) and the fixed support rod (701) form a rotating structure through a ball (702) and a shaft sleeve (703).
5. The fully computerized jacquard knitting mechanism according to claim 1, characterized in that: electromagnetic locking wire structure (8) are including connecting main part (801), solenoid (802), armature (803), pull rod (804), spacing slider (805) and spacing slide rail (806), and the internally mounted of connecting main part (801) has solenoid (802), and armature (803) are installed to the inboard of solenoid (802), pull rod (804) are installed to the below of armature (803), and the outside of pull rod (804) is provided with spacing slider (805), and the outside of spacing slider (805) is provided with spacing slide rail (806).
6. The fully computerized jacquard knitting mechanism according to claim 5, characterized in that: the magnetic attraction structure is formed between the electromagnetic coil (802) and the pull rod (804) through the armature (803), and the sliding structure is formed between the pull rod (804) and the connecting main body (801) through the limiting sliding block (805) and the limiting sliding rail (806).
CN201922077315.7U 2019-11-27 2019-11-27 Full-computerized large jacquard knitting mechanism Active CN211339899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922077315.7U CN211339899U (en) 2019-11-27 2019-11-27 Full-computerized large jacquard knitting mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922077315.7U CN211339899U (en) 2019-11-27 2019-11-27 Full-computerized large jacquard knitting mechanism

Publications (1)

Publication Number Publication Date
CN211339899U true CN211339899U (en) 2020-08-25

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ID=72136681

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922077315.7U Active CN211339899U (en) 2019-11-27 2019-11-27 Full-computerized large jacquard knitting mechanism

Country Status (1)

Country Link
CN (1) CN211339899U (en)

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